uhci.c revision 1.159.2.1 1 /* $NetBSD: uhci.c,v 1.159.2.1 2003/01/26 09:37:05 jmc Exp $ */
2 /* $FreeBSD: src/sys/dev/usb/uhci.c,v 1.33 1999/11/17 22:33:41 n_hibma Exp $ */
3
4 /*
5 * Copyright (c) 1998 The NetBSD Foundation, Inc.
6 * All rights reserved.
7 *
8 * This code is derived from software contributed to The NetBSD Foundation
9 * by Lennart Augustsson (lennart (at) augustsson.net) at
10 * Carlstedt Research & Technology.
11 *
12 * Redistribution and use in source and binary forms, with or without
13 * modification, are permitted provided that the following conditions
14 * are met:
15 * 1. Redistributions of source code must retain the above copyright
16 * notice, this list of conditions and the following disclaimer.
17 * 2. Redistributions in binary form must reproduce the above copyright
18 * notice, this list of conditions and the following disclaimer in the
19 * documentation and/or other materials provided with the distribution.
20 * 3. All advertising materials mentioning features or use of this software
21 * must display the following acknowledgement:
22 * This product includes software developed by the NetBSD
23 * Foundation, Inc. and its contributors.
24 * 4. Neither the name of The NetBSD Foundation nor the names of its
25 * contributors may be used to endorse or promote products derived
26 * from this software without specific prior written permission.
27 *
28 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
29 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
30 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
31 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
32 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
33 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
34 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
35 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
36 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
37 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
38 * POSSIBILITY OF SUCH DAMAGE.
39 */
40
41 /*
42 * USB Universal Host Controller driver.
43 * Handles e.g. PIIX3 and PIIX4.
44 *
45 * UHCI spec: http://developer.intel.com/design/USB/UHCI11D.htm
46 * USB spec: http://www.usb.org/developers/data/usbspec.zip
47 * PIIXn spec: ftp://download.intel.com/design/intarch/datashts/29055002.pdf
48 * ftp://download.intel.com/design/intarch/datashts/29056201.pdf
49 */
50
51 #include <sys/cdefs.h>
52 __KERNEL_RCSID(0, "$NetBSD: uhci.c,v 1.159.2.1 2003/01/26 09:37:05 jmc Exp $");
53
54 #include <sys/param.h>
55 #include <sys/systm.h>
56 #include <sys/kernel.h>
57 #include <sys/malloc.h>
58 #if defined(__NetBSD__) || defined(__OpenBSD__)
59 #include <sys/device.h>
60 #include <sys/select.h>
61 #elif defined(__FreeBSD__)
62 #include <sys/module.h>
63 #include <sys/bus.h>
64 #include <machine/bus_pio.h>
65 #if defined(DIAGNOSTIC) && defined(__i386__)
66 #include <machine/cpu.h>
67 #endif
68 #endif
69 #include <sys/proc.h>
70 #include <sys/queue.h>
71
72 #include <machine/bus.h>
73 #include <machine/endian.h>
74
75 #include <dev/usb/usb.h>
76 #include <dev/usb/usbdi.h>
77 #include <dev/usb/usbdivar.h>
78 #include <dev/usb/usb_mem.h>
79 #include <dev/usb/usb_quirks.h>
80
81 #include <dev/usb/uhcireg.h>
82 #include <dev/usb/uhcivar.h>
83
84 /* Use bandwidth reclamation for control transfers. Some devices choke on it. */
85 /*#define UHCI_CTL_LOOP */
86
87 #if defined(__FreeBSD__)
88 #include <machine/clock.h>
89
90 #define delay(d) DELAY(d)
91 #endif
92
93 #define MS_TO_TICKS(ms) ((ms) * hz / 1000)
94
95 #if defined(__OpenBSD__)
96 struct cfdriver uhci_cd = {
97 NULL, "uhci", DV_DULL
98 };
99 #endif
100
101 #ifdef UHCI_DEBUG
102 uhci_softc_t *thesc;
103 #define DPRINTF(x) if (uhcidebug) printf x
104 #define DPRINTFN(n,x) if (uhcidebug>(n)) printf x
105 int uhcidebug = 0;
106 int uhcinoloop = 0;
107 #ifndef __NetBSD__
108 #define bitmask_snprintf(q,f,b,l) snprintf((b), (l), "%b", (q), (f))
109 #endif
110 #else
111 #define DPRINTF(x)
112 #define DPRINTFN(n,x)
113 #endif
114
115 /*
116 * The UHCI controller is little endian, so on big endian machines
117 * the data strored in memory needs to be swapped.
118 */
119 #if defined(__FreeBSD__) || defined(__OpenBSD__)
120 #if BYTE_ORDER == BIG_ENDIAN
121 #define htole32(x) (bswap32(x))
122 #define le32toh(x) (bswap32(x))
123 #else
124 #define htole32(x) (x)
125 #define le32toh(x) (x)
126 #endif
127 #endif
128
129 struct uhci_pipe {
130 struct usbd_pipe pipe;
131 int nexttoggle;
132
133 u_char aborting;
134 usbd_xfer_handle abortstart, abortend;
135
136 /* Info needed for different pipe kinds. */
137 union {
138 /* Control pipe */
139 struct {
140 uhci_soft_qh_t *sqh;
141 usb_dma_t reqdma;
142 uhci_soft_td_t *setup, *stat;
143 u_int length;
144 } ctl;
145 /* Interrupt pipe */
146 struct {
147 int npoll;
148 uhci_soft_qh_t **qhs;
149 } intr;
150 /* Bulk pipe */
151 struct {
152 uhci_soft_qh_t *sqh;
153 u_int length;
154 int isread;
155 } bulk;
156 /* Iso pipe */
157 struct iso {
158 uhci_soft_td_t **stds;
159 int next, inuse;
160 } iso;
161 } u;
162 };
163
164 Static void uhci_globalreset(uhci_softc_t *);
165 Static usbd_status uhci_portreset(uhci_softc_t*, int);
166 Static void uhci_reset(uhci_softc_t *);
167 Static void uhci_shutdown(void *v);
168 Static void uhci_power(int, void *);
169 Static usbd_status uhci_run(uhci_softc_t *, int run);
170 Static uhci_soft_td_t *uhci_alloc_std(uhci_softc_t *);
171 Static void uhci_free_std(uhci_softc_t *, uhci_soft_td_t *);
172 Static uhci_soft_qh_t *uhci_alloc_sqh(uhci_softc_t *);
173 Static void uhci_free_sqh(uhci_softc_t *, uhci_soft_qh_t *);
174 #if 0
175 Static void uhci_enter_ctl_q(uhci_softc_t *, uhci_soft_qh_t *,
176 uhci_intr_info_t *);
177 Static void uhci_exit_ctl_q(uhci_softc_t *, uhci_soft_qh_t *);
178 #endif
179
180 Static void uhci_free_std_chain(uhci_softc_t *,
181 uhci_soft_td_t *, uhci_soft_td_t *);
182 Static usbd_status uhci_alloc_std_chain(struct uhci_pipe *,
183 uhci_softc_t *, int, int, u_int16_t, usb_dma_t *,
184 uhci_soft_td_t **, uhci_soft_td_t **);
185 Static void uhci_poll_hub(void *);
186 Static void uhci_waitintr(uhci_softc_t *, usbd_xfer_handle);
187 Static void uhci_check_intr(uhci_softc_t *, uhci_intr_info_t *);
188 Static void uhci_idone(uhci_intr_info_t *);
189
190 Static void uhci_abort_xfer(usbd_xfer_handle, usbd_status status);
191
192 Static void uhci_timeout(void *);
193 Static void uhci_timeout_task(void *);
194 Static void uhci_add_ls_ctrl(uhci_softc_t *, uhci_soft_qh_t *);
195 Static void uhci_add_hs_ctrl(uhci_softc_t *, uhci_soft_qh_t *);
196 Static void uhci_add_bulk(uhci_softc_t *, uhci_soft_qh_t *);
197 Static void uhci_remove_ls_ctrl(uhci_softc_t *,uhci_soft_qh_t *);
198 Static void uhci_remove_hs_ctrl(uhci_softc_t *,uhci_soft_qh_t *);
199 Static void uhci_remove_bulk(uhci_softc_t *,uhci_soft_qh_t *);
200 Static int uhci_str(usb_string_descriptor_t *, int, char *);
201 Static void uhci_add_loop(uhci_softc_t *sc);
202 Static void uhci_rem_loop(uhci_softc_t *sc);
203
204 Static usbd_status uhci_setup_isoc(usbd_pipe_handle pipe);
205 Static void uhci_device_isoc_enter(usbd_xfer_handle);
206
207 Static usbd_status uhci_allocm(struct usbd_bus *, usb_dma_t *, u_int32_t);
208 Static void uhci_freem(struct usbd_bus *, usb_dma_t *);
209
210 Static usbd_xfer_handle uhci_allocx(struct usbd_bus *);
211 Static void uhci_freex(struct usbd_bus *, usbd_xfer_handle);
212
213 Static usbd_status uhci_device_ctrl_transfer(usbd_xfer_handle);
214 Static usbd_status uhci_device_ctrl_start(usbd_xfer_handle);
215 Static void uhci_device_ctrl_abort(usbd_xfer_handle);
216 Static void uhci_device_ctrl_close(usbd_pipe_handle);
217 Static void uhci_device_ctrl_done(usbd_xfer_handle);
218
219 Static usbd_status uhci_device_intr_transfer(usbd_xfer_handle);
220 Static usbd_status uhci_device_intr_start(usbd_xfer_handle);
221 Static void uhci_device_intr_abort(usbd_xfer_handle);
222 Static void uhci_device_intr_close(usbd_pipe_handle);
223 Static void uhci_device_intr_done(usbd_xfer_handle);
224
225 Static usbd_status uhci_device_bulk_transfer(usbd_xfer_handle);
226 Static usbd_status uhci_device_bulk_start(usbd_xfer_handle);
227 Static void uhci_device_bulk_abort(usbd_xfer_handle);
228 Static void uhci_device_bulk_close(usbd_pipe_handle);
229 Static void uhci_device_bulk_done(usbd_xfer_handle);
230
231 Static usbd_status uhci_device_isoc_transfer(usbd_xfer_handle);
232 Static usbd_status uhci_device_isoc_start(usbd_xfer_handle);
233 Static void uhci_device_isoc_abort(usbd_xfer_handle);
234 Static void uhci_device_isoc_close(usbd_pipe_handle);
235 Static void uhci_device_isoc_done(usbd_xfer_handle);
236
237 Static usbd_status uhci_root_ctrl_transfer(usbd_xfer_handle);
238 Static usbd_status uhci_root_ctrl_start(usbd_xfer_handle);
239 Static void uhci_root_ctrl_abort(usbd_xfer_handle);
240 Static void uhci_root_ctrl_close(usbd_pipe_handle);
241 Static void uhci_root_ctrl_done(usbd_xfer_handle);
242
243 Static usbd_status uhci_root_intr_transfer(usbd_xfer_handle);
244 Static usbd_status uhci_root_intr_start(usbd_xfer_handle);
245 Static void uhci_root_intr_abort(usbd_xfer_handle);
246 Static void uhci_root_intr_close(usbd_pipe_handle);
247 Static void uhci_root_intr_done(usbd_xfer_handle);
248
249 Static usbd_status uhci_open(usbd_pipe_handle);
250 Static void uhci_poll(struct usbd_bus *);
251 Static void uhci_softintr(void *);
252
253 Static usbd_status uhci_device_request(usbd_xfer_handle xfer);
254
255 Static void uhci_add_intr(uhci_softc_t *, uhci_soft_qh_t *);
256 Static void uhci_remove_intr(uhci_softc_t *, uhci_soft_qh_t *);
257 Static usbd_status uhci_device_setintr(uhci_softc_t *sc,
258 struct uhci_pipe *pipe, int ival);
259
260 Static void uhci_device_clear_toggle(usbd_pipe_handle pipe);
261 Static void uhci_noop(usbd_pipe_handle pipe);
262
263 Static __inline__ uhci_soft_qh_t *uhci_find_prev_qh(uhci_soft_qh_t *,
264 uhci_soft_qh_t *);
265
266 #ifdef UHCI_DEBUG
267 Static void uhci_dump_all(uhci_softc_t *);
268 Static void uhci_dumpregs(uhci_softc_t *);
269 Static void uhci_dump_qhs(uhci_soft_qh_t *);
270 Static void uhci_dump_qh(uhci_soft_qh_t *);
271 Static void uhci_dump_tds(uhci_soft_td_t *);
272 Static void uhci_dump_td(uhci_soft_td_t *);
273 Static void uhci_dump_ii(uhci_intr_info_t *ii);
274 void uhci_dump(void);
275 #endif
276
277 #define UBARR(sc) bus_space_barrier((sc)->iot, (sc)->ioh, 0, (sc)->sc_size, \
278 BUS_SPACE_BARRIER_READ|BUS_SPACE_BARRIER_WRITE)
279 #define UWRITE1(sc, r, x) \
280 do { UBARR(sc); bus_space_write_1((sc)->iot, (sc)->ioh, (r), (x)); } while (0)
281 #define UWRITE2(sc, r, x) \
282 do { UBARR(sc); bus_space_write_2((sc)->iot, (sc)->ioh, (r), (x)); } while (0)
283 #define UWRITE4(sc, r, x) \
284 do { UBARR(sc); bus_space_write_4((sc)->iot, (sc)->ioh, (r), (x)); } while (0)
285 #define UREAD1(sc, r) (UBARR(sc), bus_space_read_1((sc)->iot, (sc)->ioh, (r)))
286 #define UREAD2(sc, r) (UBARR(sc), bus_space_read_2((sc)->iot, (sc)->ioh, (r)))
287 #define UREAD4(sc, r) (UBARR(sc), bus_space_read_4((sc)->iot, (sc)->ioh, (r)))
288
289 #define UHCICMD(sc, cmd) UWRITE2(sc, UHCI_CMD, cmd)
290 #define UHCISTS(sc) UREAD2(sc, UHCI_STS)
291
292 #define UHCI_RESET_TIMEOUT 100 /* ms, reset timeout */
293
294 #define UHCI_CURFRAME(sc) (UREAD2(sc, UHCI_FRNUM) & UHCI_FRNUM_MASK)
295
296 #define UHCI_INTR_ENDPT 1
297
298 struct usbd_bus_methods uhci_bus_methods = {
299 uhci_open,
300 uhci_softintr,
301 uhci_poll,
302 uhci_allocm,
303 uhci_freem,
304 uhci_allocx,
305 uhci_freex,
306 };
307
308 struct usbd_pipe_methods uhci_root_ctrl_methods = {
309 uhci_root_ctrl_transfer,
310 uhci_root_ctrl_start,
311 uhci_root_ctrl_abort,
312 uhci_root_ctrl_close,
313 uhci_noop,
314 uhci_root_ctrl_done,
315 };
316
317 struct usbd_pipe_methods uhci_root_intr_methods = {
318 uhci_root_intr_transfer,
319 uhci_root_intr_start,
320 uhci_root_intr_abort,
321 uhci_root_intr_close,
322 uhci_noop,
323 uhci_root_intr_done,
324 };
325
326 struct usbd_pipe_methods uhci_device_ctrl_methods = {
327 uhci_device_ctrl_transfer,
328 uhci_device_ctrl_start,
329 uhci_device_ctrl_abort,
330 uhci_device_ctrl_close,
331 uhci_noop,
332 uhci_device_ctrl_done,
333 };
334
335 struct usbd_pipe_methods uhci_device_intr_methods = {
336 uhci_device_intr_transfer,
337 uhci_device_intr_start,
338 uhci_device_intr_abort,
339 uhci_device_intr_close,
340 uhci_device_clear_toggle,
341 uhci_device_intr_done,
342 };
343
344 struct usbd_pipe_methods uhci_device_bulk_methods = {
345 uhci_device_bulk_transfer,
346 uhci_device_bulk_start,
347 uhci_device_bulk_abort,
348 uhci_device_bulk_close,
349 uhci_device_clear_toggle,
350 uhci_device_bulk_done,
351 };
352
353 struct usbd_pipe_methods uhci_device_isoc_methods = {
354 uhci_device_isoc_transfer,
355 uhci_device_isoc_start,
356 uhci_device_isoc_abort,
357 uhci_device_isoc_close,
358 uhci_noop,
359 uhci_device_isoc_done,
360 };
361
362 #define uhci_add_intr_info(sc, ii) \
363 LIST_INSERT_HEAD(&(sc)->sc_intrhead, (ii), list);
364 #define uhci_del_intr_info(ii) \
365 LIST_REMOVE((ii), list)
366
367 Static __inline__ uhci_soft_qh_t *
368 uhci_find_prev_qh(uhci_soft_qh_t *pqh, uhci_soft_qh_t *sqh)
369 {
370 DPRINTFN(15,("uhci_find_prev_qh: pqh=%p sqh=%p\n", pqh, sqh));
371
372 for (; pqh->hlink != sqh; pqh = pqh->hlink) {
373 #if defined(DIAGNOSTIC) || defined(UHCI_DEBUG)
374 if (le32toh(pqh->qh.qh_hlink) & UHCI_PTR_T) {
375 printf("uhci_find_prev_qh: QH not found\n");
376 return (NULL);
377 }
378 #endif
379 }
380 return (pqh);
381 }
382
383 void
384 uhci_globalreset(uhci_softc_t *sc)
385 {
386 UHCICMD(sc, UHCI_CMD_GRESET); /* global reset */
387 usb_delay_ms(&sc->sc_bus, USB_BUS_RESET_DELAY); /* wait a little */
388 UHCICMD(sc, 0); /* do nothing */
389 }
390
391 usbd_status
392 uhci_init(uhci_softc_t *sc)
393 {
394 usbd_status err;
395 int i, j;
396 uhci_soft_qh_t *clsqh, *chsqh, *bsqh, *sqh, *lsqh;
397 uhci_soft_td_t *std;
398
399 DPRINTFN(1,("uhci_init: start\n"));
400
401 #ifdef UHCI_DEBUG
402 thesc = sc;
403
404 if (uhcidebug > 2)
405 uhci_dumpregs(sc);
406 #endif
407
408 UWRITE2(sc, UHCI_INTR, 0); /* disable interrupts */
409 uhci_globalreset(sc); /* reset the controller */
410 uhci_reset(sc);
411
412 /* Allocate and initialize real frame array. */
413 err = usb_allocmem(&sc->sc_bus,
414 UHCI_FRAMELIST_COUNT * sizeof(uhci_physaddr_t),
415 UHCI_FRAMELIST_ALIGN, &sc->sc_dma);
416 if (err)
417 return (err);
418 sc->sc_pframes = KERNADDR(&sc->sc_dma, 0);
419 UWRITE2(sc, UHCI_FRNUM, 0); /* set frame number to 0 */
420 UWRITE4(sc, UHCI_FLBASEADDR, DMAADDR(&sc->sc_dma)); /* set frame list*/
421
422 /*
423 * Allocate a TD, inactive, that hangs from the last QH.
424 * This is to avoid a bug in the PIIX that makes it run berserk
425 * otherwise.
426 */
427 std = uhci_alloc_std(sc);
428 if (std == NULL)
429 return (USBD_NOMEM);
430 std->link.std = NULL;
431 std->td.td_link = htole32(UHCI_PTR_T);
432 std->td.td_status = htole32(0); /* inactive */
433 std->td.td_token = htole32(0);
434 std->td.td_buffer = htole32(0);
435
436 /* Allocate the dummy QH marking the end and used for looping the QHs.*/
437 lsqh = uhci_alloc_sqh(sc);
438 if (lsqh == NULL)
439 return (USBD_NOMEM);
440 lsqh->hlink = NULL;
441 lsqh->qh.qh_hlink = htole32(UHCI_PTR_T); /* end of QH chain */
442 lsqh->elink = std;
443 lsqh->qh.qh_elink = htole32(std->physaddr | UHCI_PTR_TD);
444 sc->sc_last_qh = lsqh;
445
446 /* Allocate the dummy QH where bulk traffic will be queued. */
447 bsqh = uhci_alloc_sqh(sc);
448 if (bsqh == NULL)
449 return (USBD_NOMEM);
450 bsqh->hlink = lsqh;
451 bsqh->qh.qh_hlink = htole32(lsqh->physaddr | UHCI_PTR_QH);
452 bsqh->elink = NULL;
453 bsqh->qh.qh_elink = htole32(UHCI_PTR_T);
454 sc->sc_bulk_start = sc->sc_bulk_end = bsqh;
455
456 /* Allocate dummy QH where high speed control traffic will be queued. */
457 chsqh = uhci_alloc_sqh(sc);
458 if (chsqh == NULL)
459 return (USBD_NOMEM);
460 chsqh->hlink = bsqh;
461 chsqh->qh.qh_hlink = htole32(bsqh->physaddr | UHCI_PTR_QH);
462 chsqh->elink = NULL;
463 chsqh->qh.qh_elink = htole32(UHCI_PTR_T);
464 sc->sc_hctl_start = sc->sc_hctl_end = chsqh;
465
466 /* Allocate dummy QH where control traffic will be queued. */
467 clsqh = uhci_alloc_sqh(sc);
468 if (clsqh == NULL)
469 return (USBD_NOMEM);
470 clsqh->hlink = bsqh;
471 clsqh->qh.qh_hlink = htole32(chsqh->physaddr | UHCI_PTR_QH);
472 clsqh->elink = NULL;
473 clsqh->qh.qh_elink = htole32(UHCI_PTR_T);
474 sc->sc_lctl_start = sc->sc_lctl_end = clsqh;
475
476 /*
477 * Make all (virtual) frame list pointers point to the interrupt
478 * queue heads and the interrupt queue heads at the control
479 * queue head and point the physical frame list to the virtual.
480 */
481 for(i = 0; i < UHCI_VFRAMELIST_COUNT; i++) {
482 std = uhci_alloc_std(sc);
483 sqh = uhci_alloc_sqh(sc);
484 if (std == NULL || sqh == NULL)
485 return (USBD_NOMEM);
486 std->link.sqh = sqh;
487 std->td.td_link = htole32(sqh->physaddr | UHCI_PTR_QH);
488 std->td.td_status = htole32(UHCI_TD_IOS); /* iso, inactive */
489 std->td.td_token = htole32(0);
490 std->td.td_buffer = htole32(0);
491 sqh->hlink = clsqh;
492 sqh->qh.qh_hlink = htole32(clsqh->physaddr | UHCI_PTR_QH);
493 sqh->elink = NULL;
494 sqh->qh.qh_elink = htole32(UHCI_PTR_T);
495 sc->sc_vframes[i].htd = std;
496 sc->sc_vframes[i].etd = std;
497 sc->sc_vframes[i].hqh = sqh;
498 sc->sc_vframes[i].eqh = sqh;
499 for (j = i;
500 j < UHCI_FRAMELIST_COUNT;
501 j += UHCI_VFRAMELIST_COUNT)
502 sc->sc_pframes[j] = htole32(std->physaddr);
503 }
504
505 LIST_INIT(&sc->sc_intrhead);
506
507 SIMPLEQ_INIT(&sc->sc_free_xfers);
508
509 usb_callout_init(sc->sc_poll_handle);
510
511 /* Set up the bus struct. */
512 sc->sc_bus.methods = &uhci_bus_methods;
513 sc->sc_bus.pipe_size = sizeof(struct uhci_pipe);
514
515 #if defined(__NetBSD__) || defined(__OpenBSD__)
516 sc->sc_suspend = PWR_RESUME;
517 sc->sc_powerhook = powerhook_establish(uhci_power, sc);
518 sc->sc_shutdownhook = shutdownhook_establish(uhci_shutdown, sc);
519 #endif
520
521 DPRINTFN(1,("uhci_init: enabling\n"));
522 UWRITE2(sc, UHCI_INTR, UHCI_INTR_TOCRCIE | UHCI_INTR_RIE |
523 UHCI_INTR_IOCE | UHCI_INTR_SPIE); /* enable interrupts */
524
525 UHCICMD(sc, UHCI_CMD_MAXP); /* Assume 64 byte packets at frame end */
526
527 return (uhci_run(sc, 1)); /* and here we go... */
528 }
529
530 #if defined(__NetBSD__) || defined(__OpenBSD__)
531 int
532 uhci_activate(device_ptr_t self, enum devact act)
533 {
534 struct uhci_softc *sc = (struct uhci_softc *)self;
535 int rv = 0;
536
537 switch (act) {
538 case DVACT_ACTIVATE:
539 return (EOPNOTSUPP);
540 break;
541
542 case DVACT_DEACTIVATE:
543 if (sc->sc_child != NULL)
544 rv = config_deactivate(sc->sc_child);
545 break;
546 }
547 return (rv);
548 }
549
550 int
551 uhci_detach(struct uhci_softc *sc, int flags)
552 {
553 usbd_xfer_handle xfer;
554 int rv = 0;
555
556 if (sc->sc_child != NULL)
557 rv = config_detach(sc->sc_child, flags);
558
559 if (rv != 0)
560 return (rv);
561
562 #if defined(__NetBSD__) || defined(__OpenBSD__)
563 powerhook_disestablish(sc->sc_powerhook);
564 shutdownhook_disestablish(sc->sc_shutdownhook);
565 #endif
566
567 /* Free all xfers associated with this HC. */
568 for (;;) {
569 xfer = SIMPLEQ_FIRST(&sc->sc_free_xfers);
570 if (xfer == NULL)
571 break;
572 SIMPLEQ_REMOVE_HEAD(&sc->sc_free_xfers, xfer, next);
573 free(xfer, M_USB);
574 }
575
576 /* XXX free other data structures XXX */
577
578 return (rv);
579 }
580 #endif
581
582 usbd_status
583 uhci_allocm(struct usbd_bus *bus, usb_dma_t *dma, u_int32_t size)
584 {
585 struct uhci_softc *sc = (struct uhci_softc *)bus;
586 u_int32_t n;
587
588 /*
589 * XXX
590 * Since we are allocating a buffer we can assume that we will
591 * need TDs for it. Since we don't want to allocate those from
592 * an interrupt context, we allocate them here and free them again.
593 * This is no guarantee that we'll get the TDs next time...
594 */
595 n = size / 8;
596 if (n > 16) {
597 u_int32_t i;
598 uhci_soft_td_t **stds;
599 DPRINTF(("uhci_allocm: get %d TDs\n", n));
600 stds = malloc(sizeof(uhci_soft_td_t *) * n, M_TEMP,
601 M_WAITOK|M_ZERO);
602 for(i=0; i < n; i++)
603 stds[i] = uhci_alloc_std(sc);
604 for(i=0; i < n; i++)
605 if (stds[i] != NULL)
606 uhci_free_std(sc, stds[i]);
607 free(stds, M_TEMP);
608 }
609
610 return (usb_allocmem(&sc->sc_bus, size, 0, dma));
611 }
612
613 void
614 uhci_freem(struct usbd_bus *bus, usb_dma_t *dma)
615 {
616 usb_freemem(&((struct uhci_softc *)bus)->sc_bus, dma);
617 }
618
619 usbd_xfer_handle
620 uhci_allocx(struct usbd_bus *bus)
621 {
622 struct uhci_softc *sc = (struct uhci_softc *)bus;
623 usbd_xfer_handle xfer;
624
625 xfer = SIMPLEQ_FIRST(&sc->sc_free_xfers);
626 if (xfer != NULL) {
627 SIMPLEQ_REMOVE_HEAD(&sc->sc_free_xfers, xfer, next);
628 #ifdef DIAGNOSTIC
629 if (xfer->busy_free != XFER_FREE) {
630 printf("uhci_allocx: xfer=%p not free, 0x%08x\n", xfer,
631 xfer->busy_free);
632 }
633 #endif
634 } else {
635 xfer = malloc(sizeof(struct uhci_xfer), M_USB, M_NOWAIT);
636 }
637 if (xfer != NULL) {
638 memset(xfer, 0, sizeof (struct uhci_xfer));
639 UXFER(xfer)->iinfo.sc = sc;
640 #ifdef DIAGNOSTIC
641 UXFER(xfer)->iinfo.isdone = 1;
642 xfer->busy_free = XFER_BUSY;
643 #endif
644 }
645 return (xfer);
646 }
647
648 void
649 uhci_freex(struct usbd_bus *bus, usbd_xfer_handle xfer)
650 {
651 struct uhci_softc *sc = (struct uhci_softc *)bus;
652
653 #ifdef DIAGNOSTIC
654 if (xfer->busy_free != XFER_BUSY) {
655 printf("uhci_freex: xfer=%p not busy, 0x%08x\n", xfer,
656 xfer->busy_free);
657 return;
658 }
659 xfer->busy_free = XFER_FREE;
660 if (!UXFER(xfer)->iinfo.isdone) {
661 printf("uhci_freex: !isdone\n");
662 return;
663 }
664 #endif
665 SIMPLEQ_INSERT_HEAD(&sc->sc_free_xfers, xfer, next);
666 }
667
668 /*
669 * Shut down the controller when the system is going down.
670 */
671 void
672 uhci_shutdown(void *v)
673 {
674 uhci_softc_t *sc = v;
675
676 DPRINTF(("uhci_shutdown: stopping the HC\n"));
677 uhci_run(sc, 0); /* stop the controller */
678 }
679
680 /*
681 * Handle suspend/resume.
682 *
683 * We need to switch to polling mode here, because this routine is
684 * called from an interrupt context. This is all right since we
685 * are almost suspended anyway.
686 */
687 void
688 uhci_power(int why, void *v)
689 {
690 uhci_softc_t *sc = v;
691 int cmd;
692 int s;
693
694 s = splhardusb();
695 cmd = UREAD2(sc, UHCI_CMD);
696
697 DPRINTF(("uhci_power: sc=%p, why=%d (was %d), cmd=0x%x\n",
698 sc, why, sc->sc_suspend, cmd));
699
700 switch (why) {
701 case PWR_SUSPEND:
702 case PWR_STANDBY:
703 #ifdef UHCI_DEBUG
704 if (uhcidebug > 2)
705 uhci_dumpregs(sc);
706 #endif
707 if (sc->sc_intr_xfer != NULL)
708 usb_uncallout(sc->sc_poll_handle, uhci_poll_hub,
709 sc->sc_intr_xfer);
710 sc->sc_bus.use_polling++;
711 uhci_run(sc, 0); /* stop the controller */
712
713 /* save some state if BIOS doesn't */
714 sc->sc_saved_frnum = UREAD2(sc, UHCI_FRNUM);
715 sc->sc_saved_sof = UREAD1(sc, UHCI_SOF);
716
717 UWRITE2(sc, UHCI_INTR, 0); /* disable intrs */
718
719 UHCICMD(sc, cmd | UHCI_CMD_EGSM); /* enter global suspend */
720 usb_delay_ms(&sc->sc_bus, USB_RESUME_WAIT);
721 sc->sc_suspend = why;
722 sc->sc_bus.use_polling--;
723 DPRINTF(("uhci_power: cmd=0x%x\n", UREAD2(sc, UHCI_CMD)));
724 break;
725 case PWR_RESUME:
726 #ifdef DIAGNOSTIC
727 if (sc->sc_suspend == PWR_RESUME)
728 printf("uhci_power: weird, resume without suspend.\n");
729 #endif
730 sc->sc_bus.use_polling++;
731 sc->sc_suspend = why;
732 if (cmd & UHCI_CMD_RS)
733 uhci_run(sc, 0); /* in case BIOS has started it */
734
735 /* restore saved state */
736 UWRITE4(sc, UHCI_FLBASEADDR, DMAADDR(&sc->sc_dma));
737 UWRITE2(sc, UHCI_FRNUM, sc->sc_saved_frnum);
738 UWRITE1(sc, UHCI_SOF, sc->sc_saved_sof);
739
740 UHCICMD(sc, cmd | UHCI_CMD_FGR); /* force global resume */
741 usb_delay_ms(&sc->sc_bus, USB_RESUME_DELAY);
742 UHCICMD(sc, cmd & ~UHCI_CMD_EGSM); /* back to normal */
743 UHCICMD(sc, UHCI_CMD_MAXP);
744 UWRITE2(sc, UHCI_INTR, UHCI_INTR_TOCRCIE | UHCI_INTR_RIE |
745 UHCI_INTR_IOCE | UHCI_INTR_SPIE); /* re-enable intrs */
746 uhci_run(sc, 1); /* and start traffic again */
747 usb_delay_ms(&sc->sc_bus, USB_RESUME_RECOVERY);
748 sc->sc_bus.use_polling--;
749 if (sc->sc_intr_xfer != NULL)
750 usb_callout(sc->sc_poll_handle, sc->sc_ival,
751 uhci_poll_hub, sc->sc_intr_xfer);
752 #ifdef UHCI_DEBUG
753 if (uhcidebug > 2)
754 uhci_dumpregs(sc);
755 #endif
756 break;
757 case PWR_SOFTSUSPEND:
758 case PWR_SOFTSTANDBY:
759 case PWR_SOFTRESUME:
760 break;
761 }
762 splx(s);
763 }
764
765 #ifdef UHCI_DEBUG
766 Static void
767 uhci_dumpregs(uhci_softc_t *sc)
768 {
769 DPRINTFN(-1,("%s regs: cmd=%04x, sts=%04x, intr=%04x, frnum=%04x, "
770 "flbase=%08x, sof=%04x, portsc1=%04x, portsc2=%04x\n",
771 USBDEVNAME(sc->sc_bus.bdev),
772 UREAD2(sc, UHCI_CMD),
773 UREAD2(sc, UHCI_STS),
774 UREAD2(sc, UHCI_INTR),
775 UREAD2(sc, UHCI_FRNUM),
776 UREAD4(sc, UHCI_FLBASEADDR),
777 UREAD1(sc, UHCI_SOF),
778 UREAD2(sc, UHCI_PORTSC1),
779 UREAD2(sc, UHCI_PORTSC2)));
780 }
781
782 void
783 uhci_dump_td(uhci_soft_td_t *p)
784 {
785 char sbuf[128], sbuf2[128];
786
787 DPRINTFN(-1,("TD(%p) at %08lx = link=0x%08lx status=0x%08lx "
788 "token=0x%08lx buffer=0x%08lx\n",
789 p, (long)p->physaddr,
790 (long)le32toh(p->td.td_link),
791 (long)le32toh(p->td.td_status),
792 (long)le32toh(p->td.td_token),
793 (long)le32toh(p->td.td_buffer)));
794
795 bitmask_snprintf((u_int32_t)le32toh(p->td.td_link), "\20\1T\2Q\3VF",
796 sbuf, sizeof(sbuf));
797 bitmask_snprintf((u_int32_t)le32toh(p->td.td_status),
798 "\20\22BITSTUFF\23CRCTO\24NAK\25BABBLE\26DBUFFER\27"
799 "STALLED\30ACTIVE\31IOC\32ISO\33LS\36SPD",
800 sbuf2, sizeof(sbuf2));
801
802 DPRINTFN(-1,(" %s %s,errcnt=%d,actlen=%d pid=%02x,addr=%d,endpt=%d,"
803 "D=%d,maxlen=%d\n", sbuf, sbuf2,
804 UHCI_TD_GET_ERRCNT(le32toh(p->td.td_status)),
805 UHCI_TD_GET_ACTLEN(le32toh(p->td.td_status)),
806 UHCI_TD_GET_PID(le32toh(p->td.td_token)),
807 UHCI_TD_GET_DEVADDR(le32toh(p->td.td_token)),
808 UHCI_TD_GET_ENDPT(le32toh(p->td.td_token)),
809 UHCI_TD_GET_DT(le32toh(p->td.td_token)),
810 UHCI_TD_GET_MAXLEN(le32toh(p->td.td_token))));
811 }
812
813 void
814 uhci_dump_qh(uhci_soft_qh_t *sqh)
815 {
816 DPRINTFN(-1,("QH(%p) at %08x: hlink=%08x elink=%08x\n", sqh,
817 (int)sqh->physaddr, le32toh(sqh->qh.qh_hlink),
818 le32toh(sqh->qh.qh_elink)));
819 }
820
821
822 #if 1
823 void
824 uhci_dump(void)
825 {
826 uhci_dump_all(thesc);
827 }
828 #endif
829
830 void
831 uhci_dump_all(uhci_softc_t *sc)
832 {
833 uhci_dumpregs(sc);
834 printf("intrs=%d\n", sc->sc_bus.no_intrs);
835 /*printf("framelist[i].link = %08x\n", sc->sc_framelist[0].link);*/
836 uhci_dump_qh(sc->sc_lctl_start);
837 }
838
839
840 void
841 uhci_dump_qhs(uhci_soft_qh_t *sqh)
842 {
843 uhci_dump_qh(sqh);
844
845 /* uhci_dump_qhs displays all the QHs and TDs from the given QH onwards
846 * Traverses sideways first, then down.
847 *
848 * QH1
849 * QH2
850 * No QH
851 * TD2.1
852 * TD2.2
853 * TD1.1
854 * etc.
855 *
856 * TD2.x being the TDs queued at QH2 and QH1 being referenced from QH1.
857 */
858
859
860 if (sqh->hlink != NULL && !(le32toh(sqh->qh.qh_hlink) & UHCI_PTR_T))
861 uhci_dump_qhs(sqh->hlink);
862 else
863 DPRINTF(("No QH\n"));
864
865 if (sqh->elink != NULL && !(le32toh(sqh->qh.qh_elink) & UHCI_PTR_T))
866 uhci_dump_tds(sqh->elink);
867 else
868 DPRINTF(("No TD\n"));
869 }
870
871 void
872 uhci_dump_tds(uhci_soft_td_t *std)
873 {
874 uhci_soft_td_t *td;
875
876 for(td = std; td != NULL; td = td->link.std) {
877 uhci_dump_td(td);
878
879 /* Check whether the link pointer in this TD marks
880 * the link pointer as end of queue. This avoids
881 * printing the free list in case the queue/TD has
882 * already been moved there (seatbelt).
883 */
884 if (le32toh(td->td.td_link) & UHCI_PTR_T ||
885 le32toh(td->td.td_link) == 0)
886 break;
887 }
888 }
889
890 Static void
891 uhci_dump_ii(uhci_intr_info_t *ii)
892 {
893 usbd_pipe_handle pipe;
894 usb_endpoint_descriptor_t *ed;
895 usbd_device_handle dev;
896
897 #ifdef DIAGNOSTIC
898 #define DONE ii->isdone
899 #else
900 #define DONE 0
901 #endif
902 if (ii == NULL) {
903 printf("ii NULL\n");
904 return;
905 }
906 if (ii->xfer == NULL) {
907 printf("ii %p: done=%d xfer=NULL\n",
908 ii, DONE);
909 return;
910 }
911 pipe = ii->xfer->pipe;
912 if (pipe == NULL) {
913 printf("ii %p: done=%d xfer=%p pipe=NULL\n",
914 ii, DONE, ii->xfer);
915 return;
916 }
917 if (pipe->endpoint == NULL) {
918 printf("ii %p: done=%d xfer=%p pipe=%p pipe->endpoint=NULL\n",
919 ii, DONE, ii->xfer, pipe);
920 return;
921 }
922 if (pipe->device == NULL) {
923 printf("ii %p: done=%d xfer=%p pipe=%p pipe->device=NULL\n",
924 ii, DONE, ii->xfer, pipe);
925 return;
926 }
927 ed = pipe->endpoint->edesc;
928 dev = pipe->device;
929 printf("ii %p: done=%d xfer=%p dev=%p vid=0x%04x pid=0x%04x addr=%d pipe=%p ep=0x%02x attr=0x%02x\n",
930 ii, DONE, ii->xfer, dev,
931 UGETW(dev->ddesc.idVendor),
932 UGETW(dev->ddesc.idProduct),
933 dev->address, pipe,
934 ed->bEndpointAddress, ed->bmAttributes);
935 #undef DONE
936 }
937
938 void uhci_dump_iis(struct uhci_softc *sc);
939 void
940 uhci_dump_iis(struct uhci_softc *sc)
941 {
942 uhci_intr_info_t *ii;
943
944 printf("intr_info list:\n");
945 for (ii = LIST_FIRST(&sc->sc_intrhead); ii; ii = LIST_NEXT(ii, list))
946 uhci_dump_ii(ii);
947 }
948
949 void iidump(void);
950 void iidump(void) { uhci_dump_iis(thesc); }
951
952 #endif
953
954 /*
955 * This routine is executed periodically and simulates interrupts
956 * from the root controller interrupt pipe for port status change.
957 */
958 void
959 uhci_poll_hub(void *addr)
960 {
961 usbd_xfer_handle xfer = addr;
962 usbd_pipe_handle pipe = xfer->pipe;
963 uhci_softc_t *sc = (uhci_softc_t *)pipe->device->bus;
964 int s;
965 u_char *p;
966
967 DPRINTFN(20, ("uhci_poll_hub\n"));
968
969 usb_callout(sc->sc_poll_handle, sc->sc_ival, uhci_poll_hub, xfer);
970
971 p = KERNADDR(&xfer->dmabuf, 0);
972 p[0] = 0;
973 if (UREAD2(sc, UHCI_PORTSC1) & (UHCI_PORTSC_CSC|UHCI_PORTSC_OCIC))
974 p[0] |= 1<<1;
975 if (UREAD2(sc, UHCI_PORTSC2) & (UHCI_PORTSC_CSC|UHCI_PORTSC_OCIC))
976 p[0] |= 1<<2;
977 if (p[0] == 0)
978 /* No change, try again in a while */
979 return;
980
981 xfer->actlen = 1;
982 xfer->status = USBD_NORMAL_COMPLETION;
983 s = splusb();
984 xfer->device->bus->intr_context++;
985 usb_transfer_complete(xfer);
986 xfer->device->bus->intr_context--;
987 splx(s);
988 }
989
990 void
991 uhci_root_intr_done(usbd_xfer_handle xfer)
992 {
993 }
994
995 void
996 uhci_root_ctrl_done(usbd_xfer_handle xfer)
997 {
998 }
999
1000 /*
1001 * Let the last QH loop back to the high speed control transfer QH.
1002 * This is what intel calls "bandwidth reclamation" and improves
1003 * USB performance a lot for some devices.
1004 * If we are already looping, just count it.
1005 */
1006 void
1007 uhci_add_loop(uhci_softc_t *sc) {
1008 #ifdef UHCI_DEBUG
1009 if (uhcinoloop)
1010 return;
1011 #endif
1012 if (++sc->sc_loops == 1) {
1013 DPRINTFN(5,("uhci_start_loop: add\n"));
1014 /* Note, we don't loop back the soft pointer. */
1015 sc->sc_last_qh->qh.qh_hlink =
1016 htole32(sc->sc_hctl_start->physaddr | UHCI_PTR_QH);
1017 }
1018 }
1019
1020 void
1021 uhci_rem_loop(uhci_softc_t *sc) {
1022 #ifdef UHCI_DEBUG
1023 if (uhcinoloop)
1024 return;
1025 #endif
1026 if (--sc->sc_loops == 0) {
1027 DPRINTFN(5,("uhci_end_loop: remove\n"));
1028 sc->sc_last_qh->qh.qh_hlink = htole32(UHCI_PTR_T);
1029 }
1030 }
1031
1032 /* Add high speed control QH, called at splusb(). */
1033 void
1034 uhci_add_hs_ctrl(uhci_softc_t *sc, uhci_soft_qh_t *sqh)
1035 {
1036 uhci_soft_qh_t *eqh;
1037
1038 SPLUSBCHECK;
1039
1040 DPRINTFN(10, ("uhci_add_ctrl: sqh=%p\n", sqh));
1041 eqh = sc->sc_hctl_end;
1042 sqh->hlink = eqh->hlink;
1043 sqh->qh.qh_hlink = eqh->qh.qh_hlink;
1044 eqh->hlink = sqh;
1045 eqh->qh.qh_hlink = htole32(sqh->physaddr | UHCI_PTR_QH);
1046 sc->sc_hctl_end = sqh;
1047 #ifdef UHCI_CTL_LOOP
1048 uhci_add_loop(sc);
1049 #endif
1050 }
1051
1052 /* Remove high speed control QH, called at splusb(). */
1053 void
1054 uhci_remove_hs_ctrl(uhci_softc_t *sc, uhci_soft_qh_t *sqh)
1055 {
1056 uhci_soft_qh_t *pqh;
1057
1058 SPLUSBCHECK;
1059
1060 DPRINTFN(10, ("uhci_remove_hs_ctrl: sqh=%p\n", sqh));
1061 #ifdef UHCI_CTL_LOOP
1062 uhci_rem_loop(sc);
1063 #endif
1064 /*
1065 * The T bit should be set in the elink of the QH so that the HC
1066 * doesn't follow the pointer. This condition may fail if the
1067 * the transferred packet was short so that the QH still points
1068 * at the last used TD.
1069 * In this case we set the T bit and wait a little for the HC
1070 * to stop looking at the TD.
1071 */
1072 if (!(sqh->qh.qh_elink & htole32(UHCI_PTR_T))) {
1073 sqh->qh.qh_elink = htole32(UHCI_PTR_T);
1074 delay(UHCI_QH_REMOVE_DELAY);
1075 }
1076
1077 pqh = uhci_find_prev_qh(sc->sc_hctl_start, sqh);
1078 pqh->hlink = sqh->hlink;
1079 pqh->qh.qh_hlink = sqh->qh.qh_hlink;
1080 delay(UHCI_QH_REMOVE_DELAY);
1081 if (sc->sc_hctl_end == sqh)
1082 sc->sc_hctl_end = pqh;
1083 }
1084
1085 /* Add low speed control QH, called at splusb(). */
1086 void
1087 uhci_add_ls_ctrl(uhci_softc_t *sc, uhci_soft_qh_t *sqh)
1088 {
1089 uhci_soft_qh_t *eqh;
1090
1091 SPLUSBCHECK;
1092
1093 DPRINTFN(10, ("uhci_add_ls_ctrl: sqh=%p\n", sqh));
1094 eqh = sc->sc_lctl_end;
1095 sqh->hlink = eqh->hlink;
1096 sqh->qh.qh_hlink = eqh->qh.qh_hlink;
1097 eqh->hlink = sqh;
1098 eqh->qh.qh_hlink = htole32(sqh->physaddr | UHCI_PTR_QH);
1099 sc->sc_lctl_end = sqh;
1100 }
1101
1102 /* Remove low speed control QH, called at splusb(). */
1103 void
1104 uhci_remove_ls_ctrl(uhci_softc_t *sc, uhci_soft_qh_t *sqh)
1105 {
1106 uhci_soft_qh_t *pqh;
1107
1108 SPLUSBCHECK;
1109
1110 DPRINTFN(10, ("uhci_remove_ls_ctrl: sqh=%p\n", sqh));
1111 /* See comment in uhci_remove_hs_ctrl() */
1112 if (!(sqh->qh.qh_elink & htole32(UHCI_PTR_T))) {
1113 sqh->qh.qh_elink = htole32(UHCI_PTR_T);
1114 delay(UHCI_QH_REMOVE_DELAY);
1115 }
1116 pqh = uhci_find_prev_qh(sc->sc_lctl_start, sqh);
1117 pqh->hlink = sqh->hlink;
1118 pqh->qh.qh_hlink = sqh->qh.qh_hlink;
1119 delay(UHCI_QH_REMOVE_DELAY);
1120 if (sc->sc_lctl_end == sqh)
1121 sc->sc_lctl_end = pqh;
1122 }
1123
1124 /* Add bulk QH, called at splusb(). */
1125 void
1126 uhci_add_bulk(uhci_softc_t *sc, uhci_soft_qh_t *sqh)
1127 {
1128 uhci_soft_qh_t *eqh;
1129
1130 SPLUSBCHECK;
1131
1132 DPRINTFN(10, ("uhci_add_bulk: sqh=%p\n", sqh));
1133 eqh = sc->sc_bulk_end;
1134 sqh->hlink = eqh->hlink;
1135 sqh->qh.qh_hlink = eqh->qh.qh_hlink;
1136 eqh->hlink = sqh;
1137 eqh->qh.qh_hlink = htole32(sqh->physaddr | UHCI_PTR_QH);
1138 sc->sc_bulk_end = sqh;
1139 uhci_add_loop(sc);
1140 }
1141
1142 /* Remove bulk QH, called at splusb(). */
1143 void
1144 uhci_remove_bulk(uhci_softc_t *sc, uhci_soft_qh_t *sqh)
1145 {
1146 uhci_soft_qh_t *pqh;
1147
1148 SPLUSBCHECK;
1149
1150 DPRINTFN(10, ("uhci_remove_bulk: sqh=%p\n", sqh));
1151 uhci_rem_loop(sc);
1152 /* See comment in uhci_remove_hs_ctrl() */
1153 if (!(sqh->qh.qh_elink & htole32(UHCI_PTR_T))) {
1154 sqh->qh.qh_elink = htole32(UHCI_PTR_T);
1155 delay(UHCI_QH_REMOVE_DELAY);
1156 }
1157 pqh = uhci_find_prev_qh(sc->sc_bulk_start, sqh);
1158 pqh->hlink = sqh->hlink;
1159 pqh->qh.qh_hlink = sqh->qh.qh_hlink;
1160 delay(UHCI_QH_REMOVE_DELAY);
1161 if (sc->sc_bulk_end == sqh)
1162 sc->sc_bulk_end = pqh;
1163 }
1164
1165 Static int uhci_intr1(uhci_softc_t *);
1166
1167 int
1168 uhci_intr(void *arg)
1169 {
1170 uhci_softc_t *sc = arg;
1171
1172 if (sc->sc_dying)
1173 return (0);
1174
1175 DPRINTFN(15,("uhci_intr: real interrupt\n"));
1176 if (sc->sc_bus.use_polling) {
1177 #ifdef DIAGNOSTIC
1178 printf("uhci_intr: ignored interrupt while polling\n");
1179 #endif
1180 return (0);
1181 }
1182 return (uhci_intr1(sc));
1183 }
1184
1185 int
1186 uhci_intr1(uhci_softc_t *sc)
1187 {
1188 int status;
1189 int ack;
1190
1191 #ifdef UHCI_DEBUG
1192 if (uhcidebug > 15) {
1193 DPRINTF(("%s: uhci_intr1\n", USBDEVNAME(sc->sc_bus.bdev)));
1194 uhci_dumpregs(sc);
1195 }
1196 #endif
1197
1198 status = UREAD2(sc, UHCI_STS) & UHCI_STS_ALLINTRS;
1199 if (status == 0) /* The interrupt was not for us. */
1200 return (0);
1201
1202 if (sc->sc_suspend != PWR_RESUME) {
1203 printf("%s: interrupt while not operating ignored\n",
1204 USBDEVNAME(sc->sc_bus.bdev));
1205 UWRITE2(sc, UHCI_STS, status); /* acknowledge the ints */
1206 return (0);
1207 }
1208
1209 ack = 0;
1210 if (status & UHCI_STS_USBINT)
1211 ack |= UHCI_STS_USBINT;
1212 if (status & UHCI_STS_USBEI)
1213 ack |= UHCI_STS_USBEI;
1214 if (status & UHCI_STS_RD) {
1215 ack |= UHCI_STS_RD;
1216 #ifdef UHCI_DEBUG
1217 printf("%s: resume detect\n", USBDEVNAME(sc->sc_bus.bdev));
1218 #endif
1219 }
1220 if (status & UHCI_STS_HSE) {
1221 ack |= UHCI_STS_HSE;
1222 printf("%s: host system error\n", USBDEVNAME(sc->sc_bus.bdev));
1223 }
1224 if (status & UHCI_STS_HCPE) {
1225 ack |= UHCI_STS_HCPE;
1226 printf("%s: host controller process error\n",
1227 USBDEVNAME(sc->sc_bus.bdev));
1228 }
1229 if (status & UHCI_STS_HCH) {
1230 /* no acknowledge needed */
1231 if (!sc->sc_dying) {
1232 printf("%s: host controller halted\n",
1233 USBDEVNAME(sc->sc_bus.bdev));
1234 #ifdef UHCI_DEBUG
1235 uhci_dump_all(sc);
1236 #endif
1237 }
1238 sc->sc_dying = 1;
1239 }
1240
1241 if (!ack)
1242 return (0); /* nothing to acknowledge */
1243 UWRITE2(sc, UHCI_STS, ack); /* acknowledge the ints */
1244
1245 sc->sc_bus.no_intrs++;
1246 usb_schedsoftintr(&sc->sc_bus);
1247
1248 DPRINTFN(10, ("%s: uhci_intr: exit\n", USBDEVNAME(sc->sc_bus.bdev)));
1249
1250 return (1);
1251 }
1252
1253 void
1254 uhci_softintr(void *v)
1255 {
1256 uhci_softc_t *sc = v;
1257 uhci_intr_info_t *ii;
1258
1259 DPRINTFN(10,("%s: uhci_softintr (%d)\n", USBDEVNAME(sc->sc_bus.bdev),
1260 sc->sc_bus.intr_context));
1261
1262 sc->sc_bus.intr_context++;
1263
1264 /*
1265 * Interrupts on UHCI really suck. When the host controller
1266 * interrupts because a transfer is completed there is no
1267 * way of knowing which transfer it was. You can scan down
1268 * the TDs and QHs of the previous frame to limit the search,
1269 * but that assumes that the interrupt was not delayed by more
1270 * than 1 ms, which may not always be true (e.g. after debug
1271 * output on a slow console).
1272 * We scan all interrupt descriptors to see if any have
1273 * completed.
1274 */
1275 for (ii = LIST_FIRST(&sc->sc_intrhead); ii; ii = LIST_NEXT(ii, list))
1276 uhci_check_intr(sc, ii);
1277
1278 if (sc->sc_softwake) {
1279 sc->sc_softwake = 0;
1280 wakeup(&sc->sc_softwake);
1281 }
1282
1283 sc->sc_bus.intr_context--;
1284 }
1285
1286 /* Check for an interrupt. */
1287 void
1288 uhci_check_intr(uhci_softc_t *sc, uhci_intr_info_t *ii)
1289 {
1290 uhci_soft_td_t *std, *lstd;
1291 u_int32_t status;
1292
1293 DPRINTFN(15, ("uhci_check_intr: ii=%p\n", ii));
1294 #ifdef DIAGNOSTIC
1295 if (ii == NULL) {
1296 printf("uhci_check_intr: no ii? %p\n", ii);
1297 return;
1298 }
1299 #endif
1300 if (ii->xfer->status == USBD_CANCELLED ||
1301 ii->xfer->status == USBD_TIMEOUT) {
1302 DPRINTF(("uhci_check_intr: aborted xfer=%p\n", ii->xfer));
1303 return;
1304 }
1305
1306 if (ii->stdstart == NULL)
1307 return;
1308 lstd = ii->stdend;
1309 #ifdef DIAGNOSTIC
1310 if (lstd == NULL) {
1311 printf("uhci_check_intr: std==0\n");
1312 return;
1313 }
1314 #endif
1315 /*
1316 * If the last TD is still active we need to check whether there
1317 * is a an error somewhere in the middle, or whether there was a
1318 * short packet (SPD and not ACTIVE).
1319 */
1320 if (le32toh(lstd->td.td_status) & UHCI_TD_ACTIVE) {
1321 DPRINTFN(12, ("uhci_check_intr: active ii=%p\n", ii));
1322 for (std = ii->stdstart; std != lstd; std = std->link.std) {
1323 status = le32toh(std->td.td_status);
1324 /* If there's an active TD the xfer isn't done. */
1325 if (status & UHCI_TD_ACTIVE)
1326 break;
1327 /* Any kind of error makes the xfer done. */
1328 if (status & UHCI_TD_STALLED)
1329 goto done;
1330 /* We want short packets, and it is short: it's done */
1331 if ((status & UHCI_TD_SPD) &&
1332 UHCI_TD_GET_ACTLEN(status) <
1333 UHCI_TD_GET_MAXLEN(le32toh(std->td.td_token)))
1334 goto done;
1335 }
1336 DPRINTFN(12, ("uhci_check_intr: ii=%p std=%p still active\n",
1337 ii, ii->stdstart));
1338 return;
1339 }
1340 done:
1341 DPRINTFN(12, ("uhci_check_intr: ii=%p done\n", ii));
1342 usb_uncallout(ii->xfer->timeout_handle, uhci_timeout, ii);
1343 uhci_idone(ii);
1344 }
1345
1346 /* Called at splusb() */
1347 void
1348 uhci_idone(uhci_intr_info_t *ii)
1349 {
1350 usbd_xfer_handle xfer = ii->xfer;
1351 struct uhci_pipe *upipe = (struct uhci_pipe *)xfer->pipe;
1352 uhci_soft_td_t *std;
1353 u_int32_t status = 0, nstatus;
1354 int actlen;
1355
1356 DPRINTFN(12, ("uhci_idone: ii=%p\n", ii));
1357 #ifdef DIAGNOSTIC
1358 {
1359 int s = splhigh();
1360 if (ii->isdone) {
1361 splx(s);
1362 #ifdef UHCI_DEBUG
1363 printf("uhci_idone: ii is done!\n ");
1364 uhci_dump_ii(ii);
1365 #else
1366 printf("uhci_idone: ii=%p is done!\n", ii);
1367 #endif
1368 return;
1369 }
1370 ii->isdone = 1;
1371 splx(s);
1372 }
1373 #endif
1374
1375 if (xfer->nframes != 0) {
1376 /* Isoc transfer, do things differently. */
1377 uhci_soft_td_t **stds = upipe->u.iso.stds;
1378 int i, n, nframes, len;
1379
1380 DPRINTFN(5,("uhci_idone: ii=%p isoc ready\n", ii));
1381
1382 nframes = xfer->nframes;
1383 actlen = 0;
1384 n = UXFER(xfer)->curframe;
1385 for (i = 0; i < nframes; i++) {
1386 std = stds[n];
1387 #ifdef UHCI_DEBUG
1388 if (uhcidebug > 5) {
1389 DPRINTFN(-1,("uhci_idone: isoc TD %d\n", i));
1390 uhci_dump_td(std);
1391 }
1392 #endif
1393 if (++n >= UHCI_VFRAMELIST_COUNT)
1394 n = 0;
1395 status = le32toh(std->td.td_status);
1396 len = UHCI_TD_GET_ACTLEN(status);
1397 xfer->frlengths[i] = len;
1398 actlen += len;
1399 }
1400 upipe->u.iso.inuse -= nframes;
1401 xfer->actlen = actlen;
1402 xfer->status = USBD_NORMAL_COMPLETION;
1403 goto end;
1404 }
1405
1406 #ifdef UHCI_DEBUG
1407 DPRINTFN(10, ("uhci_idone: ii=%p, xfer=%p, pipe=%p ready\n",
1408 ii, xfer, upipe));
1409 if (uhcidebug > 10)
1410 uhci_dump_tds(ii->stdstart);
1411 #endif
1412
1413 /* The transfer is done, compute actual length and status. */
1414 actlen = 0;
1415 for (std = ii->stdstart; std != NULL; std = std->link.std) {
1416 nstatus = le32toh(std->td.td_status);
1417 if (nstatus & UHCI_TD_ACTIVE)
1418 break;
1419
1420 status = nstatus;
1421 if (UHCI_TD_GET_PID(le32toh(std->td.td_token)) !=
1422 UHCI_TD_PID_SETUP)
1423 actlen += UHCI_TD_GET_ACTLEN(status);
1424 }
1425 /* If there are left over TDs we need to update the toggle. */
1426 if (std != NULL)
1427 upipe->nexttoggle = UHCI_TD_GET_DT(le32toh(std->td.td_token));
1428
1429 status &= UHCI_TD_ERROR;
1430 DPRINTFN(10, ("uhci_idone: actlen=%d, status=0x%x\n",
1431 actlen, status));
1432 xfer->actlen = actlen;
1433 if (status != 0) {
1434 #ifdef UHCI_DEBUG
1435 char sbuf[128];
1436
1437 bitmask_snprintf((u_int32_t)status,
1438 "\20\22BITSTUFF\23CRCTO\24NAK\25"
1439 "BABBLE\26DBUFFER\27STALLED\30ACTIVE",
1440 sbuf, sizeof(sbuf));
1441
1442 DPRINTFN((status == UHCI_TD_STALLED)*10,
1443 ("uhci_idone: error, addr=%d, endpt=0x%02x, "
1444 "status 0x%s\n",
1445 xfer->pipe->device->address,
1446 xfer->pipe->endpoint->edesc->bEndpointAddress,
1447 sbuf));
1448 #endif
1449
1450 if (status == UHCI_TD_STALLED)
1451 xfer->status = USBD_STALLED;
1452 else
1453 xfer->status = USBD_IOERROR; /* more info XXX */
1454 } else {
1455 xfer->status = USBD_NORMAL_COMPLETION;
1456 }
1457
1458 end:
1459 usb_transfer_complete(xfer);
1460 DPRINTFN(12, ("uhci_idone: ii=%p done\n", ii));
1461 }
1462
1463 /*
1464 * Called when a request does not complete.
1465 */
1466 void
1467 uhci_timeout(void *addr)
1468 {
1469 uhci_intr_info_t *ii = addr;
1470 struct uhci_xfer *uxfer = UXFER(ii->xfer);
1471 struct uhci_pipe *upipe = (struct uhci_pipe *)uxfer->xfer.pipe;
1472 uhci_softc_t *sc = (uhci_softc_t *)upipe->pipe.device->bus;
1473
1474 DPRINTF(("uhci_timeout: uxfer=%p\n", uxfer));
1475
1476 if (sc->sc_dying) {
1477 uhci_abort_xfer(&uxfer->xfer, USBD_TIMEOUT);
1478 return;
1479 }
1480
1481 /* Execute the abort in a process context. */
1482 usb_init_task(&uxfer->abort_task, uhci_timeout_task, ii->xfer);
1483 usb_add_task(uxfer->xfer.pipe->device, &uxfer->abort_task);
1484 }
1485
1486 void
1487 uhci_timeout_task(void *addr)
1488 {
1489 usbd_xfer_handle xfer = addr;
1490 int s;
1491
1492 DPRINTF(("uhci_timeout_task: xfer=%p\n", xfer));
1493
1494 s = splusb();
1495 uhci_abort_xfer(xfer, USBD_TIMEOUT);
1496 splx(s);
1497 }
1498
1499 /*
1500 * Wait here until controller claims to have an interrupt.
1501 * Then call uhci_intr and return. Use timeout to avoid waiting
1502 * too long.
1503 * Only used during boot when interrupts are not enabled yet.
1504 */
1505 void
1506 uhci_waitintr(uhci_softc_t *sc, usbd_xfer_handle xfer)
1507 {
1508 int timo = xfer->timeout;
1509 uhci_intr_info_t *ii;
1510
1511 DPRINTFN(10,("uhci_waitintr: timeout = %dms\n", timo));
1512
1513 xfer->status = USBD_IN_PROGRESS;
1514 for (; timo >= 0; timo--) {
1515 usb_delay_ms(&sc->sc_bus, 1);
1516 DPRINTFN(20,("uhci_waitintr: 0x%04x\n", UREAD2(sc, UHCI_STS)));
1517 if (UREAD2(sc, UHCI_STS) & UHCI_STS_USBINT) {
1518 uhci_intr1(sc);
1519 if (xfer->status != USBD_IN_PROGRESS)
1520 return;
1521 }
1522 }
1523
1524 /* Timeout */
1525 DPRINTF(("uhci_waitintr: timeout\n"));
1526 for (ii = LIST_FIRST(&sc->sc_intrhead);
1527 ii != NULL && ii->xfer != xfer;
1528 ii = LIST_NEXT(ii, list))
1529 ;
1530 #ifdef DIAGNOSTIC
1531 if (ii == NULL)
1532 panic("uhci_waitintr: lost intr_info\n");
1533 #endif
1534 uhci_idone(ii);
1535 }
1536
1537 void
1538 uhci_poll(struct usbd_bus *bus)
1539 {
1540 uhci_softc_t *sc = (uhci_softc_t *)bus;
1541
1542 if (UREAD2(sc, UHCI_STS) & UHCI_STS_USBINT)
1543 uhci_intr1(sc);
1544 }
1545
1546 void
1547 uhci_reset(uhci_softc_t *sc)
1548 {
1549 int n;
1550
1551 UHCICMD(sc, UHCI_CMD_HCRESET);
1552 /* The reset bit goes low when the controller is done. */
1553 for (n = 0; n < UHCI_RESET_TIMEOUT &&
1554 (UREAD2(sc, UHCI_CMD) & UHCI_CMD_HCRESET); n++)
1555 usb_delay_ms(&sc->sc_bus, 1);
1556 if (n >= UHCI_RESET_TIMEOUT)
1557 printf("%s: controller did not reset\n",
1558 USBDEVNAME(sc->sc_bus.bdev));
1559 }
1560
1561 usbd_status
1562 uhci_run(uhci_softc_t *sc, int run)
1563 {
1564 int s, n, running;
1565 u_int16_t cmd;
1566
1567 run = run != 0;
1568 s = splhardusb();
1569 DPRINTF(("uhci_run: setting run=%d\n", run));
1570 cmd = UREAD2(sc, UHCI_CMD);
1571 if (run)
1572 cmd |= UHCI_CMD_RS;
1573 else
1574 cmd &= ~UHCI_CMD_RS;
1575 UHCICMD(sc, cmd);
1576 for(n = 0; n < 10; n++) {
1577 running = !(UREAD2(sc, UHCI_STS) & UHCI_STS_HCH);
1578 /* return when we've entered the state we want */
1579 if (run == running) {
1580 splx(s);
1581 DPRINTF(("uhci_run: done cmd=0x%x sts=0x%x\n",
1582 UREAD2(sc, UHCI_CMD), UREAD2(sc, UHCI_STS)));
1583 return (USBD_NORMAL_COMPLETION);
1584 }
1585 usb_delay_ms(&sc->sc_bus, 1);
1586 }
1587 splx(s);
1588 printf("%s: cannot %s\n", USBDEVNAME(sc->sc_bus.bdev),
1589 run ? "start" : "stop");
1590 return (USBD_IOERROR);
1591 }
1592
1593 /*
1594 * Memory management routines.
1595 * uhci_alloc_std allocates TDs
1596 * uhci_alloc_sqh allocates QHs
1597 * These two routines do their own free list management,
1598 * partly for speed, partly because allocating DMAable memory
1599 * has page size granularaity so much memory would be wasted if
1600 * only one TD/QH (32 bytes) was placed in each allocated chunk.
1601 */
1602
1603 uhci_soft_td_t *
1604 uhci_alloc_std(uhci_softc_t *sc)
1605 {
1606 uhci_soft_td_t *std;
1607 usbd_status err;
1608 int i, offs;
1609 usb_dma_t dma;
1610
1611 if (sc->sc_freetds == NULL) {
1612 DPRINTFN(2,("uhci_alloc_std: allocating chunk\n"));
1613 err = usb_allocmem(&sc->sc_bus, UHCI_STD_SIZE * UHCI_STD_CHUNK,
1614 UHCI_TD_ALIGN, &dma);
1615 if (err)
1616 return (0);
1617 for(i = 0; i < UHCI_STD_CHUNK; i++) {
1618 offs = i * UHCI_STD_SIZE;
1619 std = KERNADDR(&dma, offs);
1620 std->physaddr = DMAADDR(&dma) + offs;
1621 std->link.std = sc->sc_freetds;
1622 sc->sc_freetds = std;
1623 }
1624 }
1625 std = sc->sc_freetds;
1626 sc->sc_freetds = std->link.std;
1627 memset(&std->td, 0, sizeof(uhci_td_t));
1628 return std;
1629 }
1630
1631 void
1632 uhci_free_std(uhci_softc_t *sc, uhci_soft_td_t *std)
1633 {
1634 #ifdef DIAGNOSTIC
1635 #define TD_IS_FREE 0x12345678
1636 if (le32toh(std->td.td_token) == TD_IS_FREE) {
1637 printf("uhci_free_std: freeing free TD %p\n", std);
1638 return;
1639 }
1640 std->td.td_token = htole32(TD_IS_FREE);
1641 #endif
1642 std->link.std = sc->sc_freetds;
1643 sc->sc_freetds = std;
1644 }
1645
1646 uhci_soft_qh_t *
1647 uhci_alloc_sqh(uhci_softc_t *sc)
1648 {
1649 uhci_soft_qh_t *sqh;
1650 usbd_status err;
1651 int i, offs;
1652 usb_dma_t dma;
1653
1654 if (sc->sc_freeqhs == NULL) {
1655 DPRINTFN(2, ("uhci_alloc_sqh: allocating chunk\n"));
1656 err = usb_allocmem(&sc->sc_bus, UHCI_SQH_SIZE * UHCI_SQH_CHUNK,
1657 UHCI_QH_ALIGN, &dma);
1658 if (err)
1659 return (0);
1660 for(i = 0; i < UHCI_SQH_CHUNK; i++) {
1661 offs = i * UHCI_SQH_SIZE;
1662 sqh = KERNADDR(&dma, offs);
1663 sqh->physaddr = DMAADDR(&dma) + offs;
1664 sqh->hlink = sc->sc_freeqhs;
1665 sc->sc_freeqhs = sqh;
1666 }
1667 }
1668 sqh = sc->sc_freeqhs;
1669 sc->sc_freeqhs = sqh->hlink;
1670 memset(&sqh->qh, 0, sizeof(uhci_qh_t));
1671 return (sqh);
1672 }
1673
1674 void
1675 uhci_free_sqh(uhci_softc_t *sc, uhci_soft_qh_t *sqh)
1676 {
1677 sqh->hlink = sc->sc_freeqhs;
1678 sc->sc_freeqhs = sqh;
1679 }
1680
1681 void
1682 uhci_free_std_chain(uhci_softc_t *sc, uhci_soft_td_t *std,
1683 uhci_soft_td_t *stdend)
1684 {
1685 uhci_soft_td_t *p;
1686
1687 for (; std != stdend; std = p) {
1688 p = std->link.std;
1689 uhci_free_std(sc, std);
1690 }
1691 }
1692
1693 usbd_status
1694 uhci_alloc_std_chain(struct uhci_pipe *upipe, uhci_softc_t *sc, int len,
1695 int rd, u_int16_t flags, usb_dma_t *dma,
1696 uhci_soft_td_t **sp, uhci_soft_td_t **ep)
1697 {
1698 uhci_soft_td_t *p, *lastp;
1699 uhci_physaddr_t lastlink;
1700 int i, ntd, l, tog, maxp;
1701 u_int32_t status;
1702 int addr = upipe->pipe.device->address;
1703 int endpt = upipe->pipe.endpoint->edesc->bEndpointAddress;
1704
1705 DPRINTFN(8, ("uhci_alloc_std_chain: addr=%d endpt=%d len=%d speed=%d "
1706 "flags=0x%x\n", addr, UE_GET_ADDR(endpt), len,
1707 upipe->pipe.device->speed, flags));
1708 maxp = UGETW(upipe->pipe.endpoint->edesc->wMaxPacketSize);
1709 if (maxp == 0) {
1710 printf("uhci_alloc_std_chain: maxp=0\n");
1711 return (USBD_INVAL);
1712 }
1713 ntd = (len + maxp - 1) / maxp;
1714 if ((flags & USBD_FORCE_SHORT_XFER) && len % maxp == 0)
1715 ntd++;
1716 DPRINTFN(10, ("uhci_alloc_std_chain: maxp=%d ntd=%d\n", maxp, ntd));
1717 if (ntd == 0) {
1718 *sp = *ep = 0;
1719 DPRINTFN(-1,("uhci_alloc_std_chain: ntd=0\n"));
1720 return (USBD_NORMAL_COMPLETION);
1721 }
1722 tog = upipe->nexttoggle;
1723 if (ntd % 2 == 0)
1724 tog ^= 1;
1725 upipe->nexttoggle = tog ^ 1;
1726 lastp = NULL;
1727 lastlink = UHCI_PTR_T;
1728 ntd--;
1729 status = UHCI_TD_ZERO_ACTLEN(UHCI_TD_SET_ERRCNT(3) | UHCI_TD_ACTIVE);
1730 if (upipe->pipe.device->speed == USB_SPEED_LOW)
1731 status |= UHCI_TD_LS;
1732 if (flags & USBD_SHORT_XFER_OK)
1733 status |= UHCI_TD_SPD;
1734 for (i = ntd; i >= 0; i--) {
1735 p = uhci_alloc_std(sc);
1736 if (p == NULL) {
1737 uhci_free_std_chain(sc, lastp, NULL);
1738 return (USBD_NOMEM);
1739 }
1740 p->link.std = lastp;
1741 p->td.td_link = htole32(lastlink | UHCI_PTR_VF | UHCI_PTR_TD);
1742 lastp = p;
1743 lastlink = p->physaddr;
1744 p->td.td_status = htole32(status);
1745 if (i == ntd) {
1746 /* last TD */
1747 l = len % maxp;
1748 if (l == 0 && !(flags & USBD_FORCE_SHORT_XFER))
1749 l = maxp;
1750 *ep = p;
1751 } else
1752 l = maxp;
1753 p->td.td_token =
1754 htole32(rd ? UHCI_TD_IN (l, endpt, addr, tog) :
1755 UHCI_TD_OUT(l, endpt, addr, tog));
1756 p->td.td_buffer = htole32(DMAADDR(dma) + i * maxp);
1757 tog ^= 1;
1758 }
1759 *sp = lastp;
1760 DPRINTFN(10, ("uhci_alloc_std_chain: nexttog=%d\n",
1761 upipe->nexttoggle));
1762 return (USBD_NORMAL_COMPLETION);
1763 }
1764
1765 void
1766 uhci_device_clear_toggle(usbd_pipe_handle pipe)
1767 {
1768 struct uhci_pipe *upipe = (struct uhci_pipe *)pipe;
1769 upipe->nexttoggle = 0;
1770 }
1771
1772 void
1773 uhci_noop(usbd_pipe_handle pipe)
1774 {
1775 }
1776
1777 usbd_status
1778 uhci_device_bulk_transfer(usbd_xfer_handle xfer)
1779 {
1780 usbd_status err;
1781
1782 /* Insert last in queue. */
1783 err = usb_insert_transfer(xfer);
1784 if (err)
1785 return (err);
1786
1787 /*
1788 * Pipe isn't running (otherwise err would be USBD_INPROG),
1789 * so start it first.
1790 */
1791 return (uhci_device_bulk_start(SIMPLEQ_FIRST(&xfer->pipe->queue)));
1792 }
1793
1794 usbd_status
1795 uhci_device_bulk_start(usbd_xfer_handle xfer)
1796 {
1797 struct uhci_pipe *upipe = (struct uhci_pipe *)xfer->pipe;
1798 usbd_device_handle dev = upipe->pipe.device;
1799 uhci_softc_t *sc = (uhci_softc_t *)dev->bus;
1800 uhci_intr_info_t *ii = &UXFER(xfer)->iinfo;
1801 uhci_soft_td_t *data, *dataend;
1802 uhci_soft_qh_t *sqh;
1803 usbd_status err;
1804 int len, isread, endpt;
1805 int s;
1806
1807 DPRINTFN(3, ("uhci_device_bulk_transfer: xfer=%p len=%d flags=%d\n",
1808 xfer, xfer->length, xfer->flags));
1809
1810 if (sc->sc_dying)
1811 return (USBD_IOERROR);
1812
1813 #ifdef DIAGNOSTIC
1814 if (xfer->rqflags & URQ_REQUEST)
1815 panic("uhci_device_bulk_transfer: a request\n");
1816 #endif
1817
1818 len = xfer->length;
1819 endpt = upipe->pipe.endpoint->edesc->bEndpointAddress;
1820 isread = UE_GET_DIR(endpt) == UE_DIR_IN;
1821 sqh = upipe->u.bulk.sqh;
1822
1823 upipe->u.bulk.isread = isread;
1824 upipe->u.bulk.length = len;
1825
1826 err = uhci_alloc_std_chain(upipe, sc, len, isread, xfer->flags,
1827 &xfer->dmabuf, &data, &dataend);
1828 if (err)
1829 return (err);
1830 dataend->td.td_status |= htole32(UHCI_TD_IOC);
1831
1832 #ifdef UHCI_DEBUG
1833 if (uhcidebug > 8) {
1834 DPRINTF(("uhci_device_bulk_transfer: data(1)\n"));
1835 uhci_dump_tds(data);
1836 }
1837 #endif
1838
1839 /* Set up interrupt info. */
1840 ii->xfer = xfer;
1841 ii->stdstart = data;
1842 ii->stdend = dataend;
1843 #ifdef DIAGNOSTIC
1844 if (!ii->isdone) {
1845 printf("uhci_device_bulk_transfer: not done, ii=%p\n", ii);
1846 }
1847 ii->isdone = 0;
1848 #endif
1849
1850 sqh->elink = data;
1851 sqh->qh.qh_elink = htole32(data->physaddr | UHCI_PTR_TD);
1852
1853 s = splusb();
1854 uhci_add_bulk(sc, sqh);
1855 uhci_add_intr_info(sc, ii);
1856
1857 if (xfer->timeout && !sc->sc_bus.use_polling) {
1858 usb_callout(xfer->timeout_handle, MS_TO_TICKS(xfer->timeout),
1859 uhci_timeout, ii);
1860 }
1861 xfer->status = USBD_IN_PROGRESS;
1862 splx(s);
1863
1864 #ifdef UHCI_DEBUG
1865 if (uhcidebug > 10) {
1866 DPRINTF(("uhci_device_bulk_transfer: data(2)\n"));
1867 uhci_dump_tds(data);
1868 }
1869 #endif
1870
1871 if (sc->sc_bus.use_polling)
1872 uhci_waitintr(sc, xfer);
1873
1874 return (USBD_IN_PROGRESS);
1875 }
1876
1877 /* Abort a device bulk request. */
1878 void
1879 uhci_device_bulk_abort(usbd_xfer_handle xfer)
1880 {
1881 DPRINTF(("uhci_device_bulk_abort:\n"));
1882 uhci_abort_xfer(xfer, USBD_CANCELLED);
1883 }
1884
1885 /*
1886 * Abort a device request.
1887 * If this routine is called at splusb() it guarantees that the request
1888 * will be removed from the hardware scheduling and that the callback
1889 * for it will be called with USBD_CANCELLED status.
1890 * It's impossible to guarantee that the requested transfer will not
1891 * have happened since the hardware runs concurrently.
1892 * If the transaction has already happened we rely on the ordinary
1893 * interrupt processing to process it.
1894 */
1895 void
1896 uhci_abort_xfer(usbd_xfer_handle xfer, usbd_status status)
1897 {
1898 uhci_intr_info_t *ii = &UXFER(xfer)->iinfo;
1899 struct uhci_pipe *upipe = (struct uhci_pipe *)xfer->pipe;
1900 uhci_softc_t *sc = (uhci_softc_t *)upipe->pipe.device->bus;
1901 uhci_soft_td_t *std;
1902 int s;
1903
1904 DPRINTFN(1,("uhci_abort_xfer: xfer=%p, status=%d\n", xfer, status));
1905
1906 if (sc->sc_dying) {
1907 /* If we're dying, just do the software part. */
1908 s = splusb();
1909 xfer->status = status; /* make software ignore it */
1910 usb_uncallout(xfer->timeout_handle, uhci_timeout, xfer);
1911 usb_transfer_complete(xfer);
1912 splx(s);
1913 }
1914
1915 if (xfer->device->bus->intr_context || !curproc)
1916 panic("uhci_abort_xfer: not in process context\n");
1917
1918 /*
1919 * Step 1: Make interrupt routine and hardware ignore xfer.
1920 */
1921 s = splusb();
1922 xfer->status = status; /* make software ignore it */
1923 usb_uncallout(xfer->timeout_handle, uhci_timeout, ii);
1924 DPRINTFN(1,("uhci_abort_xfer: stop ii=%p\n", ii));
1925 for (std = ii->stdstart; std != NULL; std = std->link.std)
1926 std->td.td_status &= htole32(~(UHCI_TD_ACTIVE | UHCI_TD_IOC));
1927 splx(s);
1928
1929 /*
1930 * Step 2: Wait until we know hardware has finished any possible
1931 * use of the xfer. Also make sure the soft interrupt routine
1932 * has run.
1933 */
1934 usb_delay_ms(upipe->pipe.device->bus, 2); /* Hardware finishes in 1ms */
1935 s = splusb();
1936 sc->sc_softwake = 1;
1937 usb_schedsoftintr(&sc->sc_bus);
1938 DPRINTFN(1,("uhci_abort_xfer: tsleep\n"));
1939 tsleep(&sc->sc_softwake, PZERO, "uhciab", 0);
1940 splx(s);
1941
1942 /*
1943 * Step 3: Execute callback.
1944 */
1945 xfer->hcpriv = ii;
1946
1947 DPRINTFN(1,("uhci_abort_xfer: callback\n"));
1948 s = splusb();
1949 #ifdef DIAGNOSTIC
1950 ii->isdone = 1;
1951 #endif
1952 usb_transfer_complete(xfer);
1953 splx(s);
1954 }
1955
1956 /* Close a device bulk pipe. */
1957 void
1958 uhci_device_bulk_close(usbd_pipe_handle pipe)
1959 {
1960 struct uhci_pipe *upipe = (struct uhci_pipe *)pipe;
1961 usbd_device_handle dev = upipe->pipe.device;
1962 uhci_softc_t *sc = (uhci_softc_t *)dev->bus;
1963
1964 uhci_free_sqh(sc, upipe->u.bulk.sqh);
1965 }
1966
1967 usbd_status
1968 uhci_device_ctrl_transfer(usbd_xfer_handle xfer)
1969 {
1970 usbd_status err;
1971
1972 /* Insert last in queue. */
1973 err = usb_insert_transfer(xfer);
1974 if (err)
1975 return (err);
1976
1977 /*
1978 * Pipe isn't running (otherwise err would be USBD_INPROG),
1979 * so start it first.
1980 */
1981 return (uhci_device_ctrl_start(SIMPLEQ_FIRST(&xfer->pipe->queue)));
1982 }
1983
1984 usbd_status
1985 uhci_device_ctrl_start(usbd_xfer_handle xfer)
1986 {
1987 uhci_softc_t *sc = (uhci_softc_t *)xfer->pipe->device->bus;
1988 usbd_status err;
1989
1990 if (sc->sc_dying)
1991 return (USBD_IOERROR);
1992
1993 #ifdef DIAGNOSTIC
1994 if (!(xfer->rqflags & URQ_REQUEST))
1995 panic("uhci_device_ctrl_transfer: not a request\n");
1996 #endif
1997
1998 err = uhci_device_request(xfer);
1999 if (err)
2000 return (err);
2001
2002 if (sc->sc_bus.use_polling)
2003 uhci_waitintr(sc, xfer);
2004 return (USBD_IN_PROGRESS);
2005 }
2006
2007 usbd_status
2008 uhci_device_intr_transfer(usbd_xfer_handle xfer)
2009 {
2010 usbd_status err;
2011
2012 /* Insert last in queue. */
2013 err = usb_insert_transfer(xfer);
2014 if (err)
2015 return (err);
2016
2017 /*
2018 * Pipe isn't running (otherwise err would be USBD_INPROG),
2019 * so start it first.
2020 */
2021 return (uhci_device_intr_start(SIMPLEQ_FIRST(&xfer->pipe->queue)));
2022 }
2023
2024 usbd_status
2025 uhci_device_intr_start(usbd_xfer_handle xfer)
2026 {
2027 struct uhci_pipe *upipe = (struct uhci_pipe *)xfer->pipe;
2028 usbd_device_handle dev = upipe->pipe.device;
2029 uhci_softc_t *sc = (uhci_softc_t *)dev->bus;
2030 uhci_intr_info_t *ii = &UXFER(xfer)->iinfo;
2031 uhci_soft_td_t *data, *dataend;
2032 uhci_soft_qh_t *sqh;
2033 usbd_status err;
2034 int i, s;
2035
2036 if (sc->sc_dying)
2037 return (USBD_IOERROR);
2038
2039 DPRINTFN(3,("uhci_device_intr_transfer: xfer=%p len=%d flags=%d\n",
2040 xfer, xfer->length, xfer->flags));
2041
2042 #ifdef DIAGNOSTIC
2043 if (xfer->rqflags & URQ_REQUEST)
2044 panic("uhci_device_intr_transfer: a request\n");
2045 #endif
2046
2047 err = uhci_alloc_std_chain(upipe, sc, xfer->length, 1, xfer->flags,
2048 &xfer->dmabuf, &data, &dataend);
2049 if (err)
2050 return (err);
2051 dataend->td.td_status |= htole32(UHCI_TD_IOC);
2052
2053 #ifdef UHCI_DEBUG
2054 if (uhcidebug > 10) {
2055 DPRINTF(("uhci_device_intr_transfer: data(1)\n"));
2056 uhci_dump_tds(data);
2057 uhci_dump_qh(upipe->u.intr.qhs[0]);
2058 }
2059 #endif
2060
2061 s = splusb();
2062 /* Set up interrupt info. */
2063 ii->xfer = xfer;
2064 ii->stdstart = data;
2065 ii->stdend = dataend;
2066 #ifdef DIAGNOSTIC
2067 if (!ii->isdone) {
2068 printf("uhci_device_intr_transfer: not done, ii=%p\n", ii);
2069 }
2070 ii->isdone = 0;
2071 #endif
2072
2073 DPRINTFN(10,("uhci_device_intr_transfer: qhs[0]=%p\n",
2074 upipe->u.intr.qhs[0]));
2075 for (i = 0; i < upipe->u.intr.npoll; i++) {
2076 sqh = upipe->u.intr.qhs[i];
2077 sqh->elink = data;
2078 sqh->qh.qh_elink = htole32(data->physaddr | UHCI_PTR_TD);
2079 }
2080 uhci_add_intr_info(sc, ii);
2081 xfer->status = USBD_IN_PROGRESS;
2082 splx(s);
2083
2084 #ifdef UHCI_DEBUG
2085 if (uhcidebug > 10) {
2086 DPRINTF(("uhci_device_intr_transfer: data(2)\n"));
2087 uhci_dump_tds(data);
2088 uhci_dump_qh(upipe->u.intr.qhs[0]);
2089 }
2090 #endif
2091
2092 return (USBD_IN_PROGRESS);
2093 }
2094
2095 /* Abort a device control request. */
2096 void
2097 uhci_device_ctrl_abort(usbd_xfer_handle xfer)
2098 {
2099 DPRINTF(("uhci_device_ctrl_abort:\n"));
2100 uhci_abort_xfer(xfer, USBD_CANCELLED);
2101 }
2102
2103 /* Close a device control pipe. */
2104 void
2105 uhci_device_ctrl_close(usbd_pipe_handle pipe)
2106 {
2107 }
2108
2109 /* Abort a device interrupt request. */
2110 void
2111 uhci_device_intr_abort(usbd_xfer_handle xfer)
2112 {
2113 DPRINTFN(1,("uhci_device_intr_abort: xfer=%p\n", xfer));
2114 if (xfer->pipe->intrxfer == xfer) {
2115 DPRINTFN(1,("uhci_device_intr_abort: remove\n"));
2116 xfer->pipe->intrxfer = NULL;
2117 }
2118 uhci_abort_xfer(xfer, USBD_CANCELLED);
2119 }
2120
2121 /* Close a device interrupt pipe. */
2122 void
2123 uhci_device_intr_close(usbd_pipe_handle pipe)
2124 {
2125 struct uhci_pipe *upipe = (struct uhci_pipe *)pipe;
2126 uhci_softc_t *sc = (uhci_softc_t *)pipe->device->bus;
2127 int i, npoll;
2128 int s;
2129
2130 /* Unlink descriptors from controller data structures. */
2131 npoll = upipe->u.intr.npoll;
2132 s = splusb();
2133 for (i = 0; i < npoll; i++)
2134 uhci_remove_intr(sc, upipe->u.intr.qhs[i]);
2135 splx(s);
2136
2137 /*
2138 * We now have to wait for any activity on the physical
2139 * descriptors to stop.
2140 */
2141 usb_delay_ms(&sc->sc_bus, 2);
2142
2143 for(i = 0; i < npoll; i++)
2144 uhci_free_sqh(sc, upipe->u.intr.qhs[i]);
2145 free(upipe->u.intr.qhs, M_USBHC);
2146
2147 /* XXX free other resources */
2148 }
2149
2150 usbd_status
2151 uhci_device_request(usbd_xfer_handle xfer)
2152 {
2153 struct uhci_pipe *upipe = (struct uhci_pipe *)xfer->pipe;
2154 usb_device_request_t *req = &xfer->request;
2155 usbd_device_handle dev = upipe->pipe.device;
2156 uhci_softc_t *sc = (uhci_softc_t *)dev->bus;
2157 int addr = dev->address;
2158 int endpt = upipe->pipe.endpoint->edesc->bEndpointAddress;
2159 uhci_intr_info_t *ii = &UXFER(xfer)->iinfo;
2160 uhci_soft_td_t *setup, *data, *stat, *next, *dataend;
2161 uhci_soft_qh_t *sqh;
2162 int len;
2163 u_int32_t ls;
2164 usbd_status err;
2165 int isread;
2166 int s;
2167
2168 DPRINTFN(3,("uhci_device_control type=0x%02x, request=0x%02x, "
2169 "wValue=0x%04x, wIndex=0x%04x len=%d, addr=%d, endpt=%d\n",
2170 req->bmRequestType, req->bRequest, UGETW(req->wValue),
2171 UGETW(req->wIndex), UGETW(req->wLength),
2172 addr, endpt));
2173
2174 ls = dev->speed == USB_SPEED_LOW ? UHCI_TD_LS : 0;
2175 isread = req->bmRequestType & UT_READ;
2176 len = UGETW(req->wLength);
2177
2178 setup = upipe->u.ctl.setup;
2179 stat = upipe->u.ctl.stat;
2180 sqh = upipe->u.ctl.sqh;
2181
2182 /* Set up data transaction */
2183 if (len != 0) {
2184 upipe->nexttoggle = 1;
2185 err = uhci_alloc_std_chain(upipe, sc, len, isread, xfer->flags,
2186 &xfer->dmabuf, &data, &dataend);
2187 if (err)
2188 return (err);
2189 next = data;
2190 dataend->link.std = stat;
2191 dataend->td.td_link = htole32(stat->physaddr | UHCI_PTR_VF | UHCI_PTR_TD);
2192 } else {
2193 next = stat;
2194 }
2195 upipe->u.ctl.length = len;
2196
2197 memcpy(KERNADDR(&upipe->u.ctl.reqdma, 0), req, sizeof *req);
2198
2199 setup->link.std = next;
2200 setup->td.td_link = htole32(next->physaddr | UHCI_PTR_VF | UHCI_PTR_TD);
2201 setup->td.td_status = htole32(UHCI_TD_SET_ERRCNT(3) | ls |
2202 UHCI_TD_ACTIVE);
2203 setup->td.td_token = htole32(UHCI_TD_SETUP(sizeof *req, endpt, addr));
2204 setup->td.td_buffer = htole32(DMAADDR(&upipe->u.ctl.reqdma));
2205
2206 stat->link.std = NULL;
2207 stat->td.td_link = htole32(UHCI_PTR_T);
2208 stat->td.td_status = htole32(UHCI_TD_SET_ERRCNT(3) | ls |
2209 UHCI_TD_ACTIVE | UHCI_TD_IOC);
2210 stat->td.td_token =
2211 htole32(isread ? UHCI_TD_OUT(0, endpt, addr, 1) :
2212 UHCI_TD_IN (0, endpt, addr, 1));
2213 stat->td.td_buffer = htole32(0);
2214
2215 #ifdef UHCI_DEBUG
2216 if (uhcidebug > 10) {
2217 DPRINTF(("uhci_device_request: before transfer\n"));
2218 uhci_dump_tds(setup);
2219 }
2220 #endif
2221
2222 /* Set up interrupt info. */
2223 ii->xfer = xfer;
2224 ii->stdstart = setup;
2225 ii->stdend = stat;
2226 #ifdef DIAGNOSTIC
2227 if (!ii->isdone) {
2228 printf("uhci_device_request: not done, ii=%p\n", ii);
2229 }
2230 ii->isdone = 0;
2231 #endif
2232
2233 sqh->elink = setup;
2234 sqh->qh.qh_elink = htole32(setup->physaddr | UHCI_PTR_TD);
2235
2236 s = splusb();
2237 if (dev->speed == USB_SPEED_LOW)
2238 uhci_add_ls_ctrl(sc, sqh);
2239 else
2240 uhci_add_hs_ctrl(sc, sqh);
2241 uhci_add_intr_info(sc, ii);
2242 #ifdef UHCI_DEBUG
2243 if (uhcidebug > 12) {
2244 uhci_soft_td_t *std;
2245 uhci_soft_qh_t *xqh;
2246 uhci_soft_qh_t *sxqh;
2247 int maxqh = 0;
2248 uhci_physaddr_t link;
2249 DPRINTF(("uhci_enter_ctl_q: follow from [0]\n"));
2250 for (std = sc->sc_vframes[0].htd, link = 0;
2251 (link & UHCI_PTR_QH) == 0;
2252 std = std->link.std) {
2253 link = le32toh(std->td.td_link);
2254 uhci_dump_td(std);
2255 }
2256 sxqh = (uhci_soft_qh_t *)std;
2257 uhci_dump_qh(sxqh);
2258 for (xqh = sxqh;
2259 xqh != NULL;
2260 xqh = (maxqh++ == 5 || xqh->hlink == sxqh ||
2261 xqh->hlink == xqh ? NULL : xqh->hlink)) {
2262 uhci_dump_qh(xqh);
2263 }
2264 DPRINTF(("Enqueued QH:\n"));
2265 uhci_dump_qh(sqh);
2266 uhci_dump_tds(sqh->elink);
2267 }
2268 #endif
2269 if (xfer->timeout && !sc->sc_bus.use_polling) {
2270 usb_callout(xfer->timeout_handle, MS_TO_TICKS(xfer->timeout),
2271 uhci_timeout, ii);
2272 }
2273 xfer->status = USBD_IN_PROGRESS;
2274 splx(s);
2275
2276 return (USBD_NORMAL_COMPLETION);
2277 }
2278
2279 usbd_status
2280 uhci_device_isoc_transfer(usbd_xfer_handle xfer)
2281 {
2282 usbd_status err;
2283
2284 DPRINTFN(5,("uhci_device_isoc_transfer: xfer=%p\n", xfer));
2285
2286 /* Put it on our queue, */
2287 err = usb_insert_transfer(xfer);
2288
2289 /* bail out on error, */
2290 if (err && err != USBD_IN_PROGRESS)
2291 return (err);
2292
2293 /* XXX should check inuse here */
2294
2295 /* insert into schedule, */
2296 uhci_device_isoc_enter(xfer);
2297
2298 /* and start if the pipe wasn't running */
2299 if (!err)
2300 uhci_device_isoc_start(SIMPLEQ_FIRST(&xfer->pipe->queue));
2301
2302 return (err);
2303 }
2304
2305 void
2306 uhci_device_isoc_enter(usbd_xfer_handle xfer)
2307 {
2308 struct uhci_pipe *upipe = (struct uhci_pipe *)xfer->pipe;
2309 usbd_device_handle dev = upipe->pipe.device;
2310 uhci_softc_t *sc = (uhci_softc_t *)dev->bus;
2311 struct iso *iso = &upipe->u.iso;
2312 uhci_soft_td_t *std;
2313 u_int32_t buf, len, status;
2314 int s, i, next, nframes;
2315
2316 DPRINTFN(5,("uhci_device_isoc_enter: used=%d next=%d xfer=%p "
2317 "nframes=%d\n",
2318 iso->inuse, iso->next, xfer, xfer->nframes));
2319
2320 if (sc->sc_dying)
2321 return;
2322
2323 if (xfer->status == USBD_IN_PROGRESS) {
2324 /* This request has already been entered into the frame list */
2325 printf("uhci_device_isoc_enter: xfer=%p in frame list\n", xfer);
2326 /* XXX */
2327 }
2328
2329 #ifdef DIAGNOSTIC
2330 if (iso->inuse >= UHCI_VFRAMELIST_COUNT)
2331 printf("uhci_device_isoc_enter: overflow!\n");
2332 #endif
2333
2334 next = iso->next;
2335 if (next == -1) {
2336 /* Not in use yet, schedule it a few frames ahead. */
2337 next = (UREAD2(sc, UHCI_FRNUM) + 3) % UHCI_VFRAMELIST_COUNT;
2338 DPRINTFN(2,("uhci_device_isoc_enter: start next=%d\n", next));
2339 }
2340
2341 xfer->status = USBD_IN_PROGRESS;
2342 UXFER(xfer)->curframe = next;
2343
2344 buf = DMAADDR(&xfer->dmabuf);
2345 status = UHCI_TD_ZERO_ACTLEN(UHCI_TD_SET_ERRCNT(0) |
2346 UHCI_TD_ACTIVE |
2347 UHCI_TD_IOS);
2348 nframes = xfer->nframes;
2349 s = splusb();
2350 for (i = 0; i < nframes; i++) {
2351 std = iso->stds[next];
2352 if (++next >= UHCI_VFRAMELIST_COUNT)
2353 next = 0;
2354 len = xfer->frlengths[i];
2355 std->td.td_buffer = htole32(buf);
2356 if (i == nframes - 1)
2357 status |= UHCI_TD_IOC;
2358 std->td.td_status = htole32(status);
2359 std->td.td_token &= htole32(~UHCI_TD_MAXLEN_MASK);
2360 std->td.td_token |= htole32(UHCI_TD_SET_MAXLEN(len));
2361 #ifdef UHCI_DEBUG
2362 if (uhcidebug > 5) {
2363 DPRINTFN(5,("uhci_device_isoc_enter: TD %d\n", i));
2364 uhci_dump_td(std);
2365 }
2366 #endif
2367 buf += len;
2368 }
2369 iso->next = next;
2370 iso->inuse += xfer->nframes;
2371
2372 splx(s);
2373 }
2374
2375 usbd_status
2376 uhci_device_isoc_start(usbd_xfer_handle xfer)
2377 {
2378 struct uhci_pipe *upipe = (struct uhci_pipe *)xfer->pipe;
2379 uhci_softc_t *sc = (uhci_softc_t *)upipe->pipe.device->bus;
2380 uhci_intr_info_t *ii = &UXFER(xfer)->iinfo;
2381 uhci_soft_td_t *end;
2382 int s, i;
2383
2384 DPRINTFN(5,("uhci_device_isoc_start: xfer=%p\n", xfer));
2385
2386 if (sc->sc_dying)
2387 return (USBD_IOERROR);
2388
2389 #ifdef DIAGNOSTIC
2390 if (xfer->status != USBD_IN_PROGRESS)
2391 printf("uhci_device_isoc_start: not in progress %p\n", xfer);
2392 #endif
2393
2394 /* Find the last TD */
2395 i = UXFER(xfer)->curframe + xfer->nframes;
2396 if (i >= UHCI_VFRAMELIST_COUNT)
2397 i -= UHCI_VFRAMELIST_COUNT;
2398 end = upipe->u.iso.stds[i];
2399
2400 #ifdef DIAGNOSTIC
2401 if (end == NULL) {
2402 printf("uhci_device_isoc_start: end == NULL\n");
2403 return (USBD_INVAL);
2404 }
2405 #endif
2406
2407 s = splusb();
2408
2409 /* Set up interrupt info. */
2410 ii->xfer = xfer;
2411 ii->stdstart = end;
2412 ii->stdend = end;
2413 #ifdef DIAGNOSTIC
2414 if (!ii->isdone)
2415 printf("uhci_device_isoc_start: not done, ii=%p\n", ii);
2416 ii->isdone = 0;
2417 #endif
2418 uhci_add_intr_info(sc, ii);
2419
2420 splx(s);
2421
2422 return (USBD_IN_PROGRESS);
2423 }
2424
2425 void
2426 uhci_device_isoc_abort(usbd_xfer_handle xfer)
2427 {
2428 struct uhci_pipe *upipe = (struct uhci_pipe *)xfer->pipe;
2429 uhci_soft_td_t **stds = upipe->u.iso.stds;
2430 uhci_soft_td_t *std;
2431 int i, n, s, nframes, maxlen, len;
2432
2433 s = splusb();
2434
2435 /* Transfer is already done. */
2436 if (xfer->status != USBD_NOT_STARTED &&
2437 xfer->status != USBD_IN_PROGRESS) {
2438 splx(s);
2439 return;
2440 }
2441
2442 /* Give xfer the requested abort code. */
2443 xfer->status = USBD_CANCELLED;
2444
2445 /* make hardware ignore it, */
2446 nframes = xfer->nframes;
2447 n = UXFER(xfer)->curframe;
2448 maxlen = 0;
2449 for (i = 0; i < nframes; i++) {
2450 std = stds[n];
2451 std->td.td_status &= htole32(~(UHCI_TD_ACTIVE | UHCI_TD_IOC));
2452 len = UHCI_TD_GET_MAXLEN(le32toh(std->td.td_token));
2453 if (len > maxlen)
2454 maxlen = len;
2455 if (++n >= UHCI_VFRAMELIST_COUNT)
2456 n = 0;
2457 }
2458
2459 /* and wait until we are sure the hardware has finished. */
2460 delay(maxlen);
2461
2462 #ifdef DIAGNOSTIC
2463 UXFER(xfer)->iinfo.isdone = 1;
2464 #endif
2465 /* Run callback and remove from interrupt list. */
2466 usb_transfer_complete(xfer);
2467
2468 splx(s);
2469 }
2470
2471 void
2472 uhci_device_isoc_close(usbd_pipe_handle pipe)
2473 {
2474 struct uhci_pipe *upipe = (struct uhci_pipe *)pipe;
2475 usbd_device_handle dev = upipe->pipe.device;
2476 uhci_softc_t *sc = (uhci_softc_t *)dev->bus;
2477 uhci_soft_td_t *std, *vstd;
2478 struct iso *iso;
2479 int i, s;
2480
2481 /*
2482 * Make sure all TDs are marked as inactive.
2483 * Wait for completion.
2484 * Unschedule.
2485 * Deallocate.
2486 */
2487 iso = &upipe->u.iso;
2488
2489 for (i = 0; i < UHCI_VFRAMELIST_COUNT; i++)
2490 iso->stds[i]->td.td_status &= htole32(~UHCI_TD_ACTIVE);
2491 usb_delay_ms(&sc->sc_bus, 2); /* wait for completion */
2492
2493 s = splusb();
2494 for (i = 0; i < UHCI_VFRAMELIST_COUNT; i++) {
2495 std = iso->stds[i];
2496 for (vstd = sc->sc_vframes[i].htd;
2497 vstd != NULL && vstd->link.std != std;
2498 vstd = vstd->link.std)
2499 ;
2500 if (vstd == NULL) {
2501 /*panic*/
2502 printf("uhci_device_isoc_close: %p not found\n", std);
2503 splx(s);
2504 return;
2505 }
2506 vstd->link = std->link;
2507 vstd->td.td_link = std->td.td_link;
2508 uhci_free_std(sc, std);
2509 }
2510 splx(s);
2511
2512 free(iso->stds, M_USBHC);
2513 }
2514
2515 usbd_status
2516 uhci_setup_isoc(usbd_pipe_handle pipe)
2517 {
2518 struct uhci_pipe *upipe = (struct uhci_pipe *)pipe;
2519 usbd_device_handle dev = upipe->pipe.device;
2520 uhci_softc_t *sc = (uhci_softc_t *)dev->bus;
2521 int addr = upipe->pipe.device->address;
2522 int endpt = upipe->pipe.endpoint->edesc->bEndpointAddress;
2523 int rd = UE_GET_DIR(endpt) == UE_DIR_IN;
2524 uhci_soft_td_t *std, *vstd;
2525 u_int32_t token;
2526 struct iso *iso;
2527 int i, s;
2528
2529 iso = &upipe->u.iso;
2530 iso->stds = malloc(UHCI_VFRAMELIST_COUNT * sizeof (uhci_soft_td_t *),
2531 M_USBHC, M_WAITOK);
2532
2533 token = rd ? UHCI_TD_IN (0, endpt, addr, 0) :
2534 UHCI_TD_OUT(0, endpt, addr, 0);
2535
2536 /* Allocate the TDs and mark as inactive; */
2537 for (i = 0; i < UHCI_VFRAMELIST_COUNT; i++) {
2538 std = uhci_alloc_std(sc);
2539 if (std == 0)
2540 goto bad;
2541 std->td.td_status = htole32(UHCI_TD_IOS); /* iso, inactive */
2542 std->td.td_token = htole32(token);
2543 iso->stds[i] = std;
2544 }
2545
2546 /* Insert TDs into schedule. */
2547 s = splusb();
2548 for (i = 0; i < UHCI_VFRAMELIST_COUNT; i++) {
2549 std = iso->stds[i];
2550 vstd = sc->sc_vframes[i].htd;
2551 std->link = vstd->link;
2552 std->td.td_link = vstd->td.td_link;
2553 vstd->link.std = std;
2554 vstd->td.td_link = htole32(std->physaddr | UHCI_PTR_TD);
2555 }
2556 splx(s);
2557
2558 iso->next = -1;
2559 iso->inuse = 0;
2560
2561 return (USBD_NORMAL_COMPLETION);
2562
2563 bad:
2564 while (--i >= 0)
2565 uhci_free_std(sc, iso->stds[i]);
2566 free(iso->stds, M_USBHC);
2567 return (USBD_NOMEM);
2568 }
2569
2570 void
2571 uhci_device_isoc_done(usbd_xfer_handle xfer)
2572 {
2573 uhci_intr_info_t *ii = &UXFER(xfer)->iinfo;
2574
2575 DPRINTFN(4, ("uhci_isoc_done: length=%d\n", xfer->actlen));
2576
2577 if (ii->xfer != xfer)
2578 /* Not on interrupt list, ignore it. */
2579 return;
2580
2581 #ifdef DIAGNOSTIC
2582 if (xfer->busy_free != XFER_BUSY) {
2583 printf("uhci_device_isoc_done: xfer=%p not busy 0x%08x\n",
2584 xfer, xfer->busy_free);
2585 return;
2586 }
2587
2588 if (ii->stdend == NULL) {
2589 printf("uhci_device_isoc_done: xfer=%p stdend==NULL\n", xfer);
2590 #ifdef UHCI_DEBUG
2591 uhci_dump_ii(ii);
2592 #endif
2593 return;
2594 }
2595 #endif
2596
2597 /* Turn off the interrupt since it is active even if the TD is not. */
2598 ii->stdend->td.td_status &= htole32(~UHCI_TD_IOC);
2599
2600 uhci_del_intr_info(ii); /* remove from active list */
2601 }
2602
2603 void
2604 uhci_device_intr_done(usbd_xfer_handle xfer)
2605 {
2606 uhci_intr_info_t *ii = &UXFER(xfer)->iinfo;
2607 uhci_softc_t *sc = ii->sc;
2608 struct uhci_pipe *upipe = (struct uhci_pipe *)xfer->pipe;
2609 uhci_soft_qh_t *sqh;
2610 int i, npoll;
2611
2612 DPRINTFN(5, ("uhci_intr_done: length=%d\n", xfer->actlen));
2613
2614 npoll = upipe->u.intr.npoll;
2615 for(i = 0; i < npoll; i++) {
2616 sqh = upipe->u.intr.qhs[i];
2617 sqh->elink = NULL;
2618 sqh->qh.qh_elink = htole32(UHCI_PTR_T);
2619 }
2620 uhci_free_std_chain(sc, ii->stdstart, NULL);
2621
2622 /* XXX Wasteful. */
2623 if (xfer->pipe->repeat) {
2624 uhci_soft_td_t *data, *dataend;
2625
2626 DPRINTFN(5,("uhci_device_intr_done: requeing\n"));
2627
2628 /* This alloc cannot fail since we freed the chain above. */
2629 uhci_alloc_std_chain(upipe, sc, xfer->length, 1, xfer->flags,
2630 &xfer->dmabuf, &data, &dataend);
2631 dataend->td.td_status |= htole32(UHCI_TD_IOC);
2632
2633 #ifdef UHCI_DEBUG
2634 if (uhcidebug > 10) {
2635 DPRINTF(("uhci_device_intr_done: data(1)\n"));
2636 uhci_dump_tds(data);
2637 uhci_dump_qh(upipe->u.intr.qhs[0]);
2638 }
2639 #endif
2640
2641 ii->stdstart = data;
2642 ii->stdend = dataend;
2643 #ifdef DIAGNOSTIC
2644 if (!ii->isdone) {
2645 printf("uhci_device_intr_done: not done, ii=%p\n", ii);
2646 }
2647 ii->isdone = 0;
2648 #endif
2649 for (i = 0; i < npoll; i++) {
2650 sqh = upipe->u.intr.qhs[i];
2651 sqh->elink = data;
2652 sqh->qh.qh_elink = htole32(data->physaddr | UHCI_PTR_TD);
2653 }
2654 xfer->status = USBD_IN_PROGRESS;
2655 /* The ii is already on the examined list, just leave it. */
2656 } else {
2657 DPRINTFN(5,("uhci_device_intr_done: removing\n"));
2658 uhci_del_intr_info(ii);
2659 }
2660 }
2661
2662 /* Deallocate request data structures */
2663 void
2664 uhci_device_ctrl_done(usbd_xfer_handle xfer)
2665 {
2666 uhci_intr_info_t *ii = &UXFER(xfer)->iinfo;
2667 uhci_softc_t *sc = ii->sc;
2668 struct uhci_pipe *upipe = (struct uhci_pipe *)xfer->pipe;
2669
2670 #ifdef DIAGNOSTIC
2671 if (!(xfer->rqflags & URQ_REQUEST))
2672 panic("uhci_ctrl_done: not a request\n");
2673 #endif
2674
2675 uhci_del_intr_info(ii); /* remove from active list */
2676
2677 if (upipe->pipe.device->speed == USB_SPEED_LOW)
2678 uhci_remove_ls_ctrl(sc, upipe->u.ctl.sqh);
2679 else
2680 uhci_remove_hs_ctrl(sc, upipe->u.ctl.sqh);
2681
2682 if (upipe->u.ctl.length != 0)
2683 uhci_free_std_chain(sc, ii->stdstart->link.std, ii->stdend);
2684
2685 DPRINTFN(5, ("uhci_ctrl_done: length=%d\n", xfer->actlen));
2686 }
2687
2688 /* Deallocate request data structures */
2689 void
2690 uhci_device_bulk_done(usbd_xfer_handle xfer)
2691 {
2692 uhci_intr_info_t *ii = &UXFER(xfer)->iinfo;
2693 uhci_softc_t *sc = ii->sc;
2694 struct uhci_pipe *upipe = (struct uhci_pipe *)xfer->pipe;
2695
2696 uhci_del_intr_info(ii); /* remove from active list */
2697
2698 uhci_remove_bulk(sc, upipe->u.bulk.sqh);
2699
2700 uhci_free_std_chain(sc, ii->stdstart, NULL);
2701
2702 DPRINTFN(5, ("uhci_bulk_done: length=%d\n", xfer->actlen));
2703 }
2704
2705 /* Add interrupt QH, called with vflock. */
2706 void
2707 uhci_add_intr(uhci_softc_t *sc, uhci_soft_qh_t *sqh)
2708 {
2709 struct uhci_vframe *vf = &sc->sc_vframes[sqh->pos];
2710 uhci_soft_qh_t *eqh;
2711
2712 DPRINTFN(4, ("uhci_add_intr: n=%d sqh=%p\n", sqh->pos, sqh));
2713
2714 eqh = vf->eqh;
2715 sqh->hlink = eqh->hlink;
2716 sqh->qh.qh_hlink = eqh->qh.qh_hlink;
2717 eqh->hlink = sqh;
2718 eqh->qh.qh_hlink = htole32(sqh->physaddr | UHCI_PTR_QH);
2719 vf->eqh = sqh;
2720 vf->bandwidth++;
2721 }
2722
2723 /* Remove interrupt QH. */
2724 void
2725 uhci_remove_intr(uhci_softc_t *sc, uhci_soft_qh_t *sqh)
2726 {
2727 struct uhci_vframe *vf = &sc->sc_vframes[sqh->pos];
2728 uhci_soft_qh_t *pqh;
2729
2730 DPRINTFN(4, ("uhci_remove_intr: n=%d sqh=%p\n", sqh->pos, sqh));
2731
2732 /* See comment in uhci_remove_ctrl() */
2733 if (!(sqh->qh.qh_elink & htole32(UHCI_PTR_T))) {
2734 sqh->qh.qh_elink = htole32(UHCI_PTR_T);
2735 delay(UHCI_QH_REMOVE_DELAY);
2736 }
2737
2738 pqh = uhci_find_prev_qh(vf->hqh, sqh);
2739 pqh->hlink = sqh->hlink;
2740 pqh->qh.qh_hlink = sqh->qh.qh_hlink;
2741 delay(UHCI_QH_REMOVE_DELAY);
2742 if (vf->eqh == sqh)
2743 vf->eqh = pqh;
2744 vf->bandwidth--;
2745 }
2746
2747 usbd_status
2748 uhci_device_setintr(uhci_softc_t *sc, struct uhci_pipe *upipe, int ival)
2749 {
2750 uhci_soft_qh_t *sqh;
2751 int i, npoll, s;
2752 u_int bestbw, bw, bestoffs, offs;
2753
2754 DPRINTFN(2, ("uhci_setintr: pipe=%p\n", upipe));
2755 if (ival == 0) {
2756 printf("uhci_setintr: 0 interval\n");
2757 return (USBD_INVAL);
2758 }
2759
2760 if (ival > UHCI_VFRAMELIST_COUNT)
2761 ival = UHCI_VFRAMELIST_COUNT;
2762 npoll = (UHCI_VFRAMELIST_COUNT + ival - 1) / ival;
2763 DPRINTFN(2, ("uhci_setintr: ival=%d npoll=%d\n", ival, npoll));
2764
2765 upipe->u.intr.npoll = npoll;
2766 upipe->u.intr.qhs =
2767 malloc(npoll * sizeof(uhci_soft_qh_t *), M_USBHC, M_WAITOK);
2768
2769 /*
2770 * Figure out which offset in the schedule that has most
2771 * bandwidth left over.
2772 */
2773 #define MOD(i) ((i) & (UHCI_VFRAMELIST_COUNT-1))
2774 for (bestoffs = offs = 0, bestbw = ~0; offs < ival; offs++) {
2775 for (bw = i = 0; i < npoll; i++)
2776 bw += sc->sc_vframes[MOD(i * ival + offs)].bandwidth;
2777 if (bw < bestbw) {
2778 bestbw = bw;
2779 bestoffs = offs;
2780 }
2781 }
2782 DPRINTFN(1, ("uhci_setintr: bw=%d offs=%d\n", bestbw, bestoffs));
2783
2784 for(i = 0; i < npoll; i++) {
2785 upipe->u.intr.qhs[i] = sqh = uhci_alloc_sqh(sc);
2786 sqh->elink = NULL;
2787 sqh->qh.qh_elink = htole32(UHCI_PTR_T);
2788 sqh->pos = MOD(i * ival + bestoffs);
2789 }
2790 #undef MOD
2791
2792 s = splusb();
2793 /* Enter QHs into the controller data structures. */
2794 for(i = 0; i < npoll; i++)
2795 uhci_add_intr(sc, upipe->u.intr.qhs[i]);
2796 splx(s);
2797
2798 DPRINTFN(5, ("uhci_setintr: returns %p\n", upipe));
2799 return (USBD_NORMAL_COMPLETION);
2800 }
2801
2802 /* Open a new pipe. */
2803 usbd_status
2804 uhci_open(usbd_pipe_handle pipe)
2805 {
2806 uhci_softc_t *sc = (uhci_softc_t *)pipe->device->bus;
2807 struct uhci_pipe *upipe = (struct uhci_pipe *)pipe;
2808 usb_endpoint_descriptor_t *ed = pipe->endpoint->edesc;
2809 usbd_status err;
2810 int ival;
2811
2812 DPRINTFN(1, ("uhci_open: pipe=%p, addr=%d, endpt=%d (%d)\n",
2813 pipe, pipe->device->address,
2814 ed->bEndpointAddress, sc->sc_addr));
2815
2816 upipe->aborting = 0;
2817 upipe->nexttoggle = 0;
2818
2819 if (pipe->device->address == sc->sc_addr) {
2820 switch (ed->bEndpointAddress) {
2821 case USB_CONTROL_ENDPOINT:
2822 pipe->methods = &uhci_root_ctrl_methods;
2823 break;
2824 case UE_DIR_IN | UHCI_INTR_ENDPT:
2825 pipe->methods = &uhci_root_intr_methods;
2826 break;
2827 default:
2828 return (USBD_INVAL);
2829 }
2830 } else {
2831 switch (ed->bmAttributes & UE_XFERTYPE) {
2832 case UE_CONTROL:
2833 pipe->methods = &uhci_device_ctrl_methods;
2834 upipe->u.ctl.sqh = uhci_alloc_sqh(sc);
2835 if (upipe->u.ctl.sqh == NULL)
2836 goto bad;
2837 upipe->u.ctl.setup = uhci_alloc_std(sc);
2838 if (upipe->u.ctl.setup == NULL) {
2839 uhci_free_sqh(sc, upipe->u.ctl.sqh);
2840 goto bad;
2841 }
2842 upipe->u.ctl.stat = uhci_alloc_std(sc);
2843 if (upipe->u.ctl.stat == NULL) {
2844 uhci_free_sqh(sc, upipe->u.ctl.sqh);
2845 uhci_free_std(sc, upipe->u.ctl.setup);
2846 goto bad;
2847 }
2848 err = usb_allocmem(&sc->sc_bus,
2849 sizeof(usb_device_request_t),
2850 0, &upipe->u.ctl.reqdma);
2851 if (err) {
2852 uhci_free_sqh(sc, upipe->u.ctl.sqh);
2853 uhci_free_std(sc, upipe->u.ctl.setup);
2854 uhci_free_std(sc, upipe->u.ctl.stat);
2855 goto bad;
2856 }
2857 break;
2858 case UE_INTERRUPT:
2859 pipe->methods = &uhci_device_intr_methods;
2860 ival = pipe->interval;
2861 if (ival == USBD_DEFAULT_INTERVAL)
2862 ival = ed->bInterval;
2863 return (uhci_device_setintr(sc, upipe, ival));
2864 case UE_ISOCHRONOUS:
2865 pipe->methods = &uhci_device_isoc_methods;
2866 return (uhci_setup_isoc(pipe));
2867 case UE_BULK:
2868 pipe->methods = &uhci_device_bulk_methods;
2869 upipe->u.bulk.sqh = uhci_alloc_sqh(sc);
2870 if (upipe->u.bulk.sqh == NULL)
2871 goto bad;
2872 break;
2873 }
2874 }
2875 return (USBD_NORMAL_COMPLETION);
2876
2877 bad:
2878 return (USBD_NOMEM);
2879 }
2880
2881 /*
2882 * Data structures and routines to emulate the root hub.
2883 */
2884 usb_device_descriptor_t uhci_devd = {
2885 USB_DEVICE_DESCRIPTOR_SIZE,
2886 UDESC_DEVICE, /* type */
2887 {0x00, 0x01}, /* USB version */
2888 UDCLASS_HUB, /* class */
2889 UDSUBCLASS_HUB, /* subclass */
2890 UDPROTO_FSHUB, /* protocol */
2891 64, /* max packet */
2892 {0},{0},{0x00,0x01}, /* device id */
2893 1,2,0, /* string indicies */
2894 1 /* # of configurations */
2895 };
2896
2897 usb_config_descriptor_t uhci_confd = {
2898 USB_CONFIG_DESCRIPTOR_SIZE,
2899 UDESC_CONFIG,
2900 {USB_CONFIG_DESCRIPTOR_SIZE +
2901 USB_INTERFACE_DESCRIPTOR_SIZE +
2902 USB_ENDPOINT_DESCRIPTOR_SIZE},
2903 1,
2904 1,
2905 0,
2906 UC_SELF_POWERED,
2907 0 /* max power */
2908 };
2909
2910 usb_interface_descriptor_t uhci_ifcd = {
2911 USB_INTERFACE_DESCRIPTOR_SIZE,
2912 UDESC_INTERFACE,
2913 0,
2914 0,
2915 1,
2916 UICLASS_HUB,
2917 UISUBCLASS_HUB,
2918 UIPROTO_FSHUB,
2919 0
2920 };
2921
2922 usb_endpoint_descriptor_t uhci_endpd = {
2923 USB_ENDPOINT_DESCRIPTOR_SIZE,
2924 UDESC_ENDPOINT,
2925 UE_DIR_IN | UHCI_INTR_ENDPT,
2926 UE_INTERRUPT,
2927 {8},
2928 255
2929 };
2930
2931 usb_hub_descriptor_t uhci_hubd_piix = {
2932 USB_HUB_DESCRIPTOR_SIZE,
2933 UDESC_HUB,
2934 2,
2935 { UHD_PWR_NO_SWITCH | UHD_OC_INDIVIDUAL, 0 },
2936 50, /* power on to power good */
2937 0,
2938 { 0x00 }, /* both ports are removable */
2939 };
2940
2941 int
2942 uhci_str(usb_string_descriptor_t *p, int l, char *s)
2943 {
2944 int i;
2945
2946 if (l == 0)
2947 return (0);
2948 p->bLength = 2 * strlen(s) + 2;
2949 if (l == 1)
2950 return (1);
2951 p->bDescriptorType = UDESC_STRING;
2952 l -= 2;
2953 for (i = 0; s[i] && l > 1; i++, l -= 2)
2954 USETW2(p->bString[i], 0, s[i]);
2955 return (2*i+2);
2956 }
2957
2958 /*
2959 * The USB hub protocol requires that SET_FEATURE(PORT_RESET) also
2960 * enables the port, and also states that SET_FEATURE(PORT_ENABLE)
2961 * should not be used by the USB subsystem. As we cannot issue a
2962 * SET_FEATURE(PORT_ENABLE) externally, we must ensure that the port
2963 * will be enabled as part of the reset.
2964 *
2965 * On the VT83C572, the port cannot be successfully enabled until the
2966 * outstanding "port enable change" and "connection status change"
2967 * events have been reset.
2968 */
2969 Static usbd_status
2970 uhci_portreset(uhci_softc_t *sc, int index)
2971 {
2972 int lim, port, x;
2973
2974 if (index == 1)
2975 port = UHCI_PORTSC1;
2976 else if (index == 2)
2977 port = UHCI_PORTSC2;
2978 else
2979 return (USBD_IOERROR);
2980
2981 x = URWMASK(UREAD2(sc, port));
2982 UWRITE2(sc, port, x | UHCI_PORTSC_PR);
2983
2984 usb_delay_ms(&sc->sc_bus, USB_PORT_ROOT_RESET_DELAY);
2985
2986 DPRINTFN(3,("uhci port %d reset, status0 = 0x%04x\n",
2987 index, UREAD2(sc, port)));
2988
2989 x = URWMASK(UREAD2(sc, port));
2990 UWRITE2(sc, port, x & ~UHCI_PORTSC_PR);
2991
2992 delay(100);
2993
2994 DPRINTFN(3,("uhci port %d reset, status1 = 0x%04x\n",
2995 index, UREAD2(sc, port)));
2996
2997 x = URWMASK(UREAD2(sc, port));
2998 UWRITE2(sc, port, x | UHCI_PORTSC_PE);
2999
3000 for (lim = 10; --lim > 0;) {
3001 usb_delay_ms(&sc->sc_bus, USB_PORT_RESET_DELAY);
3002
3003 x = UREAD2(sc, port);
3004
3005 DPRINTFN(3,("uhci port %d iteration %u, status = 0x%04x\n",
3006 index, lim, x));
3007
3008 if (!(x & UHCI_PORTSC_CCS)) {
3009 /*
3010 * No device is connected (or was disconnected
3011 * during reset). Consider the port reset.
3012 * The delay must be long enough to ensure on
3013 * the initial iteration that the device
3014 * connection will have been registered. 50ms
3015 * appears to be sufficient, but 20ms is not.
3016 */
3017 DPRINTFN(3,("uhci port %d loop %u, device detached\n",
3018 index, lim));
3019 break;
3020 }
3021
3022 if (x & (UHCI_PORTSC_POEDC | UHCI_PORTSC_CSC)) {
3023 /*
3024 * Port enabled changed and/or connection
3025 * status changed were set. Reset either or
3026 * both raised flags (by writing a 1 to that
3027 * bit), and wait again for state to settle.
3028 */
3029 UWRITE2(sc, port, URWMASK(x) |
3030 (x & (UHCI_PORTSC_POEDC | UHCI_PORTSC_CSC)));
3031 continue;
3032 }
3033
3034 if (x & UHCI_PORTSC_PE)
3035 /* Port is enabled */
3036 break;
3037
3038 UWRITE2(sc, port, URWMASK(x) | UHCI_PORTSC_PE);
3039 }
3040
3041 DPRINTFN(3,("uhci port %d reset, status2 = 0x%04x\n",
3042 index, UREAD2(sc, port)));
3043
3044 if (lim <= 0) {
3045 DPRINTFN(1,("uhci port %d reset timed out\n", index));
3046 return (USBD_TIMEOUT);
3047 }
3048
3049 sc->sc_isreset = 1;
3050 return (USBD_NORMAL_COMPLETION);
3051 }
3052
3053 /*
3054 * Simulate a hardware hub by handling all the necessary requests.
3055 */
3056 usbd_status
3057 uhci_root_ctrl_transfer(usbd_xfer_handle xfer)
3058 {
3059 usbd_status err;
3060
3061 /* Insert last in queue. */
3062 err = usb_insert_transfer(xfer);
3063 if (err)
3064 return (err);
3065
3066 /*
3067 * Pipe isn't running (otherwise err would be USBD_INPROG),
3068 * so start it first.
3069 */
3070 return (uhci_root_ctrl_start(SIMPLEQ_FIRST(&xfer->pipe->queue)));
3071 }
3072
3073 usbd_status
3074 uhci_root_ctrl_start(usbd_xfer_handle xfer)
3075 {
3076 uhci_softc_t *sc = (uhci_softc_t *)xfer->pipe->device->bus;
3077 usb_device_request_t *req;
3078 void *buf = NULL;
3079 int port, x;
3080 int s, len, value, index, status, change, l, totlen = 0;
3081 usb_port_status_t ps;
3082 usbd_status err;
3083
3084 if (sc->sc_dying)
3085 return (USBD_IOERROR);
3086
3087 #ifdef DIAGNOSTIC
3088 if (!(xfer->rqflags & URQ_REQUEST))
3089 panic("uhci_root_ctrl_transfer: not a request\n");
3090 #endif
3091 req = &xfer->request;
3092
3093 DPRINTFN(2,("uhci_root_ctrl_control type=0x%02x request=%02x\n",
3094 req->bmRequestType, req->bRequest));
3095
3096 len = UGETW(req->wLength);
3097 value = UGETW(req->wValue);
3098 index = UGETW(req->wIndex);
3099
3100 if (len != 0)
3101 buf = KERNADDR(&xfer->dmabuf, 0);
3102
3103 #define C(x,y) ((x) | ((y) << 8))
3104 switch(C(req->bRequest, req->bmRequestType)) {
3105 case C(UR_CLEAR_FEATURE, UT_WRITE_DEVICE):
3106 case C(UR_CLEAR_FEATURE, UT_WRITE_INTERFACE):
3107 case C(UR_CLEAR_FEATURE, UT_WRITE_ENDPOINT):
3108 /*
3109 * DEVICE_REMOTE_WAKEUP and ENDPOINT_HALT are no-ops
3110 * for the integrated root hub.
3111 */
3112 break;
3113 case C(UR_GET_CONFIG, UT_READ_DEVICE):
3114 if (len > 0) {
3115 *(u_int8_t *)buf = sc->sc_conf;
3116 totlen = 1;
3117 }
3118 break;
3119 case C(UR_GET_DESCRIPTOR, UT_READ_DEVICE):
3120 DPRINTFN(2,("uhci_root_ctrl_control wValue=0x%04x\n", value));
3121 switch(value >> 8) {
3122 case UDESC_DEVICE:
3123 if ((value & 0xff) != 0) {
3124 err = USBD_IOERROR;
3125 goto ret;
3126 }
3127 totlen = l = min(len, USB_DEVICE_DESCRIPTOR_SIZE);
3128 USETW(uhci_devd.idVendor, sc->sc_id_vendor);
3129 memcpy(buf, &uhci_devd, l);
3130 break;
3131 case UDESC_CONFIG:
3132 if ((value & 0xff) != 0) {
3133 err = USBD_IOERROR;
3134 goto ret;
3135 }
3136 totlen = l = min(len, USB_CONFIG_DESCRIPTOR_SIZE);
3137 memcpy(buf, &uhci_confd, l);
3138 buf = (char *)buf + l;
3139 len -= l;
3140 l = min(len, USB_INTERFACE_DESCRIPTOR_SIZE);
3141 totlen += l;
3142 memcpy(buf, &uhci_ifcd, l);
3143 buf = (char *)buf + l;
3144 len -= l;
3145 l = min(len, USB_ENDPOINT_DESCRIPTOR_SIZE);
3146 totlen += l;
3147 memcpy(buf, &uhci_endpd, l);
3148 break;
3149 case UDESC_STRING:
3150 if (len == 0)
3151 break;
3152 *(u_int8_t *)buf = 0;
3153 totlen = 1;
3154 switch (value & 0xff) {
3155 case 1: /* Vendor */
3156 totlen = uhci_str(buf, len, sc->sc_vendor);
3157 break;
3158 case 2: /* Product */
3159 totlen = uhci_str(buf, len, "UHCI root hub");
3160 break;
3161 }
3162 break;
3163 default:
3164 err = USBD_IOERROR;
3165 goto ret;
3166 }
3167 break;
3168 case C(UR_GET_INTERFACE, UT_READ_INTERFACE):
3169 if (len > 0) {
3170 *(u_int8_t *)buf = 0;
3171 totlen = 1;
3172 }
3173 break;
3174 case C(UR_GET_STATUS, UT_READ_DEVICE):
3175 if (len > 1) {
3176 USETW(((usb_status_t *)buf)->wStatus,UDS_SELF_POWERED);
3177 totlen = 2;
3178 }
3179 break;
3180 case C(UR_GET_STATUS, UT_READ_INTERFACE):
3181 case C(UR_GET_STATUS, UT_READ_ENDPOINT):
3182 if (len > 1) {
3183 USETW(((usb_status_t *)buf)->wStatus, 0);
3184 totlen = 2;
3185 }
3186 break;
3187 case C(UR_SET_ADDRESS, UT_WRITE_DEVICE):
3188 if (value >= USB_MAX_DEVICES) {
3189 err = USBD_IOERROR;
3190 goto ret;
3191 }
3192 sc->sc_addr = value;
3193 break;
3194 case C(UR_SET_CONFIG, UT_WRITE_DEVICE):
3195 if (value != 0 && value != 1) {
3196 err = USBD_IOERROR;
3197 goto ret;
3198 }
3199 sc->sc_conf = value;
3200 break;
3201 case C(UR_SET_DESCRIPTOR, UT_WRITE_DEVICE):
3202 break;
3203 case C(UR_SET_FEATURE, UT_WRITE_DEVICE):
3204 case C(UR_SET_FEATURE, UT_WRITE_INTERFACE):
3205 case C(UR_SET_FEATURE, UT_WRITE_ENDPOINT):
3206 err = USBD_IOERROR;
3207 goto ret;
3208 case C(UR_SET_INTERFACE, UT_WRITE_INTERFACE):
3209 break;
3210 case C(UR_SYNCH_FRAME, UT_WRITE_ENDPOINT):
3211 break;
3212 /* Hub requests */
3213 case C(UR_CLEAR_FEATURE, UT_WRITE_CLASS_DEVICE):
3214 break;
3215 case C(UR_CLEAR_FEATURE, UT_WRITE_CLASS_OTHER):
3216 DPRINTFN(3, ("uhci_root_ctrl_control: UR_CLEAR_PORT_FEATURE "
3217 "port=%d feature=%d\n",
3218 index, value));
3219 if (index == 1)
3220 port = UHCI_PORTSC1;
3221 else if (index == 2)
3222 port = UHCI_PORTSC2;
3223 else {
3224 err = USBD_IOERROR;
3225 goto ret;
3226 }
3227 switch(value) {
3228 case UHF_PORT_ENABLE:
3229 x = URWMASK(UREAD2(sc, port));
3230 UWRITE2(sc, port, x & ~UHCI_PORTSC_PE);
3231 break;
3232 case UHF_PORT_SUSPEND:
3233 x = URWMASK(UREAD2(sc, port));
3234 UWRITE2(sc, port, x & ~UHCI_PORTSC_SUSP);
3235 break;
3236 case UHF_PORT_RESET:
3237 x = URWMASK(UREAD2(sc, port));
3238 UWRITE2(sc, port, x & ~UHCI_PORTSC_PR);
3239 break;
3240 case UHF_C_PORT_CONNECTION:
3241 x = URWMASK(UREAD2(sc, port));
3242 UWRITE2(sc, port, x | UHCI_PORTSC_CSC);
3243 break;
3244 case UHF_C_PORT_ENABLE:
3245 x = URWMASK(UREAD2(sc, port));
3246 UWRITE2(sc, port, x | UHCI_PORTSC_POEDC);
3247 break;
3248 case UHF_C_PORT_OVER_CURRENT:
3249 x = URWMASK(UREAD2(sc, port));
3250 UWRITE2(sc, port, x | UHCI_PORTSC_OCIC);
3251 break;
3252 case UHF_C_PORT_RESET:
3253 sc->sc_isreset = 0;
3254 err = USBD_NORMAL_COMPLETION;
3255 goto ret;
3256 case UHF_PORT_CONNECTION:
3257 case UHF_PORT_OVER_CURRENT:
3258 case UHF_PORT_POWER:
3259 case UHF_PORT_LOW_SPEED:
3260 case UHF_C_PORT_SUSPEND:
3261 default:
3262 err = USBD_IOERROR;
3263 goto ret;
3264 }
3265 break;
3266 case C(UR_GET_BUS_STATE, UT_READ_CLASS_OTHER):
3267 if (index == 1)
3268 port = UHCI_PORTSC1;
3269 else if (index == 2)
3270 port = UHCI_PORTSC2;
3271 else {
3272 err = USBD_IOERROR;
3273 goto ret;
3274 }
3275 if (len > 0) {
3276 *(u_int8_t *)buf =
3277 (UREAD2(sc, port) & UHCI_PORTSC_LS) >>
3278 UHCI_PORTSC_LS_SHIFT;
3279 totlen = 1;
3280 }
3281 break;
3282 case C(UR_GET_DESCRIPTOR, UT_READ_CLASS_DEVICE):
3283 if (value != 0) {
3284 err = USBD_IOERROR;
3285 goto ret;
3286 }
3287 l = min(len, USB_HUB_DESCRIPTOR_SIZE);
3288 totlen = l;
3289 memcpy(buf, &uhci_hubd_piix, l);
3290 break;
3291 case C(UR_GET_STATUS, UT_READ_CLASS_DEVICE):
3292 if (len != 4) {
3293 err = USBD_IOERROR;
3294 goto ret;
3295 }
3296 memset(buf, 0, len);
3297 totlen = len;
3298 break;
3299 case C(UR_GET_STATUS, UT_READ_CLASS_OTHER):
3300 if (index == 1)
3301 port = UHCI_PORTSC1;
3302 else if (index == 2)
3303 port = UHCI_PORTSC2;
3304 else {
3305 err = USBD_IOERROR;
3306 goto ret;
3307 }
3308 if (len != 4) {
3309 err = USBD_IOERROR;
3310 goto ret;
3311 }
3312 x = UREAD2(sc, port);
3313 status = change = 0;
3314 if (x & UHCI_PORTSC_CCS)
3315 status |= UPS_CURRENT_CONNECT_STATUS;
3316 if (x & UHCI_PORTSC_CSC)
3317 change |= UPS_C_CONNECT_STATUS;
3318 if (x & UHCI_PORTSC_PE)
3319 status |= UPS_PORT_ENABLED;
3320 if (x & UHCI_PORTSC_POEDC)
3321 change |= UPS_C_PORT_ENABLED;
3322 if (x & UHCI_PORTSC_OCI)
3323 status |= UPS_OVERCURRENT_INDICATOR;
3324 if (x & UHCI_PORTSC_OCIC)
3325 change |= UPS_C_OVERCURRENT_INDICATOR;
3326 if (x & UHCI_PORTSC_SUSP)
3327 status |= UPS_SUSPEND;
3328 if (x & UHCI_PORTSC_LSDA)
3329 status |= UPS_LOW_SPEED;
3330 status |= UPS_PORT_POWER;
3331 if (sc->sc_isreset)
3332 change |= UPS_C_PORT_RESET;
3333 USETW(ps.wPortStatus, status);
3334 USETW(ps.wPortChange, change);
3335 l = min(len, sizeof ps);
3336 memcpy(buf, &ps, l);
3337 totlen = l;
3338 break;
3339 case C(UR_SET_DESCRIPTOR, UT_WRITE_CLASS_DEVICE):
3340 err = USBD_IOERROR;
3341 goto ret;
3342 case C(UR_SET_FEATURE, UT_WRITE_CLASS_DEVICE):
3343 break;
3344 case C(UR_SET_FEATURE, UT_WRITE_CLASS_OTHER):
3345 if (index == 1)
3346 port = UHCI_PORTSC1;
3347 else if (index == 2)
3348 port = UHCI_PORTSC2;
3349 else {
3350 err = USBD_IOERROR;
3351 goto ret;
3352 }
3353 switch(value) {
3354 case UHF_PORT_ENABLE:
3355 x = URWMASK(UREAD2(sc, port));
3356 UWRITE2(sc, port, x | UHCI_PORTSC_PE);
3357 break;
3358 case UHF_PORT_SUSPEND:
3359 x = URWMASK(UREAD2(sc, port));
3360 UWRITE2(sc, port, x | UHCI_PORTSC_SUSP);
3361 break;
3362 case UHF_PORT_RESET:
3363 err = uhci_portreset(sc, index);
3364 goto ret;
3365 case UHF_PORT_POWER:
3366 /* Pretend we turned on power */
3367 err = USBD_NORMAL_COMPLETION;
3368 goto ret;
3369 case UHF_C_PORT_CONNECTION:
3370 case UHF_C_PORT_ENABLE:
3371 case UHF_C_PORT_OVER_CURRENT:
3372 case UHF_PORT_CONNECTION:
3373 case UHF_PORT_OVER_CURRENT:
3374 case UHF_PORT_LOW_SPEED:
3375 case UHF_C_PORT_SUSPEND:
3376 case UHF_C_PORT_RESET:
3377 default:
3378 err = USBD_IOERROR;
3379 goto ret;
3380 }
3381 break;
3382 default:
3383 err = USBD_IOERROR;
3384 goto ret;
3385 }
3386 xfer->actlen = totlen;
3387 err = USBD_NORMAL_COMPLETION;
3388 ret:
3389 xfer->status = err;
3390 s = splusb();
3391 usb_transfer_complete(xfer);
3392 splx(s);
3393 return (USBD_IN_PROGRESS);
3394 }
3395
3396 /* Abort a root control request. */
3397 void
3398 uhci_root_ctrl_abort(usbd_xfer_handle xfer)
3399 {
3400 /* Nothing to do, all transfers are synchronous. */
3401 }
3402
3403 /* Close the root pipe. */
3404 void
3405 uhci_root_ctrl_close(usbd_pipe_handle pipe)
3406 {
3407 DPRINTF(("uhci_root_ctrl_close\n"));
3408 }
3409
3410 /* Abort a root interrupt request. */
3411 void
3412 uhci_root_intr_abort(usbd_xfer_handle xfer)
3413 {
3414 uhci_softc_t *sc = (uhci_softc_t *)xfer->pipe->device->bus;
3415
3416 usb_uncallout(sc->sc_poll_handle, uhci_poll_hub, xfer);
3417 sc->sc_intr_xfer = NULL;
3418
3419 if (xfer->pipe->intrxfer == xfer) {
3420 DPRINTF(("uhci_root_intr_abort: remove\n"));
3421 xfer->pipe->intrxfer = 0;
3422 }
3423 xfer->status = USBD_CANCELLED;
3424 #ifdef DIAGNOSTIC
3425 UXFER(xfer)->iinfo.isdone = 1;
3426 #endif
3427 usb_transfer_complete(xfer);
3428 }
3429
3430 usbd_status
3431 uhci_root_intr_transfer(usbd_xfer_handle xfer)
3432 {
3433 usbd_status err;
3434
3435 /* Insert last in queue. */
3436 err = usb_insert_transfer(xfer);
3437 if (err)
3438 return (err);
3439
3440 /* Pipe isn't running (otherwise err would be USBD_INPROG),
3441 * start first
3442 */
3443 return (uhci_root_intr_start(SIMPLEQ_FIRST(&xfer->pipe->queue)));
3444 }
3445
3446 /* Start a transfer on the root interrupt pipe */
3447 usbd_status
3448 uhci_root_intr_start(usbd_xfer_handle xfer)
3449 {
3450 usbd_pipe_handle pipe = xfer->pipe;
3451 uhci_softc_t *sc = (uhci_softc_t *)pipe->device->bus;
3452
3453 DPRINTFN(3, ("uhci_root_intr_transfer: xfer=%p len=%d flags=%d\n",
3454 xfer, xfer->length, xfer->flags));
3455
3456 if (sc->sc_dying)
3457 return (USBD_IOERROR);
3458
3459 sc->sc_ival = MS_TO_TICKS(xfer->pipe->endpoint->edesc->bInterval);
3460 usb_callout(sc->sc_poll_handle, sc->sc_ival, uhci_poll_hub, xfer);
3461 sc->sc_intr_xfer = xfer;
3462 return (USBD_IN_PROGRESS);
3463 }
3464
3465 /* Close the root interrupt pipe. */
3466 void
3467 uhci_root_intr_close(usbd_pipe_handle pipe)
3468 {
3469 uhci_softc_t *sc = (uhci_softc_t *)pipe->device->bus;
3470
3471 usb_uncallout(sc->sc_poll_handle, uhci_poll_hub, sc->sc_intr_xfer);
3472 sc->sc_intr_xfer = NULL;
3473 DPRINTF(("uhci_root_intr_close\n"));
3474 }
3475