source: mainline/uspace/lib/usbhost/src/ddf_helpers.c@ cb89430

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since cb89430 was cb89430, checked in by Ondřej Hlavatý <aearsis@…>, 8 years ago

xhci: event rings && hc initialization (WIP)

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File size: 26.6 KB
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1/*
2 * Copyright (c) 2013 Jan Vesely
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29/** @addtogroup libusbhost
30 * @{
31 */
32/** @file
33 *
34 */
35
36#include <usb/classes/classes.h>
37#include <usb/debug.h>
38#include <usb/descriptor.h>
39#include <usb/request.h>
40#include <usb/usb.h>
41
42#include <adt/list.h>
43#include <assert.h>
44#include <async.h>
45#include <ddf/driver.h>
46#include <ddf/interrupt.h>
47#include <device/hw_res_parsed.h>
48#include <devman.h>
49#include <errno.h>
50#include <fibril_synch.h>
51#include <macros.h>
52#include <stdio.h>
53#include <stdlib.h>
54#include <str_error.h>
55#include <usb_iface.h>
56
57#include "ddf_helpers.h"
58
59#define CTRL_PIPE_MIN_PACKET_SIZE 8
60
61typedef struct usb_dev {
62 link_t link;
63 list_t devices;
64 fibril_mutex_t guard;
65 ddf_fun_t *fun;
66 usb_address_t address;
67 usb_speed_t speed;
68 usb_address_t tt_address;
69 unsigned port;
70} usb_dev_t;
71
72typedef struct hc_dev {
73 ddf_fun_t *ctl_fun;
74 hcd_t hcd;
75 usb_dev_t *root_hub;
76} hc_dev_t;
77
78static hc_dev_t *dev_to_hc_dev(ddf_dev_t *dev)
79{
80 return ddf_dev_data_get(dev);
81}
82
83hcd_t *dev_to_hcd(ddf_dev_t *dev)
84{
85 hc_dev_t *hc_dev = dev_to_hc_dev(dev);
86 if (!hc_dev) {
87 usb_log_error("Invalid HCD device.\n");
88 return NULL;
89 }
90 return &hc_dev->hcd;
91}
92
93
94static int hcd_ddf_new_device(ddf_dev_t *device, usb_dev_t *hub, unsigned port);
95static int hcd_ddf_remove_device(ddf_dev_t *device, usb_dev_t *hub, unsigned port);
96
97
98/* DDF INTERFACE */
99
100/** Register endpoint interface function.
101 * @param fun DDF function.
102 * @param address USB address of the device.
103 * @param endpoint USB endpoint number to be registered.
104 * @param transfer_type Endpoint's transfer type.
105 * @param direction USB communication direction the endpoint is capable of.
106 * @param max_packet_size Maximu size of packets the endpoint accepts.
107 * @param interval Preferred timeout between communication.
108 * @return Error code.
109 */
110static int register_endpoint(
111 ddf_fun_t *fun, usb_endpoint_t endpoint,
112 usb_transfer_type_t transfer_type, usb_direction_t direction,
113 size_t max_packet_size, unsigned packets, unsigned interval)
114{
115 assert(fun);
116 hcd_t *hcd = dev_to_hcd(ddf_fun_get_dev(fun));
117 usb_dev_t *dev = ddf_fun_data_get(fun);
118 assert(hcd);
119 assert(dev);
120 const size_t size = max_packet_size;
121 const usb_target_t target =
122 {{.address = dev->address, .endpoint = endpoint}};
123
124 usb_log_debug("Register endpoint %d:%d %s-%s %zuB %ums.\n",
125 dev->address, endpoint, usb_str_transfer_type(transfer_type),
126 usb_str_direction(direction), max_packet_size, interval);
127
128 return hcd_add_ep(hcd, target, direction, transfer_type,
129 max_packet_size, packets, size, dev->tt_address, dev->port);
130}
131
132/** Unregister endpoint interface function.
133 * @param fun DDF function.
134 * @param address USB address of the endpoint.
135 * @param endpoint USB endpoint number.
136 * @param direction Communication direction of the enpdoint to unregister.
137 * @return Error code.
138 */
139static int unregister_endpoint(
140 ddf_fun_t *fun, usb_endpoint_t endpoint, usb_direction_t direction)
141{
142 assert(fun);
143 hcd_t *hcd = dev_to_hcd(ddf_fun_get_dev(fun));
144 usb_dev_t *dev = ddf_fun_data_get(fun);
145 assert(hcd);
146 assert(dev);
147 const usb_target_t target =
148 {{.address = dev->address, .endpoint = endpoint}};
149 usb_log_debug("Unregister endpoint %d:%d %s.\n",
150 dev->address, endpoint, usb_str_direction(direction));
151 return hcd_remove_ep(hcd, target, direction);
152}
153
154static int reserve_default_address(ddf_fun_t *fun, usb_speed_t speed)
155{
156 assert(fun);
157 hcd_t *hcd = dev_to_hcd(ddf_fun_get_dev(fun));
158 usb_dev_t *dev = ddf_fun_data_get(fun);
159 assert(hcd);
160 assert(dev);
161
162 usb_log_debug("Device %d requested default address at %s speed\n",
163 dev->address, usb_str_speed(speed));
164 return hcd_reserve_default_address(hcd, speed);
165}
166
167static int release_default_address(ddf_fun_t *fun)
168{
169 assert(fun);
170 hcd_t *hcd = dev_to_hcd(ddf_fun_get_dev(fun));
171 usb_dev_t *dev = ddf_fun_data_get(fun);
172 assert(hcd);
173 assert(dev);
174
175 usb_log_debug("Device %d released default address\n", dev->address);
176 return hcd_release_default_address(hcd);
177}
178
179static int device_enumerate(ddf_fun_t *fun, unsigned port)
180{
181 assert(fun);
182 ddf_dev_t *ddf_dev = ddf_fun_get_dev(fun);
183 usb_dev_t *dev = ddf_fun_data_get(fun);
184 assert(ddf_dev);
185 assert(dev);
186 usb_log_debug("Hub %d reported a new USB device on port: %u\n",
187 dev->address, port);
188 return hcd_ddf_new_device(ddf_dev, dev, port);
189}
190
191static int device_remove(ddf_fun_t *fun, unsigned port)
192{
193 assert(fun);
194 ddf_dev_t *ddf_dev = ddf_fun_get_dev(fun);
195 usb_dev_t *dev = ddf_fun_data_get(fun);
196 assert(ddf_dev);
197 assert(dev);
198 usb_log_debug("Hub `%s' reported removal of device on port %u\n",
199 ddf_fun_get_name(fun), port);
200 return hcd_ddf_remove_device(ddf_dev, dev, port);
201}
202
203/** Gets handle of the respective device.
204 *
205 * @param[in] fun Device function.
206 * @param[out] handle Place to write the handle.
207 * @return Error code.
208 */
209static int get_my_device_handle(ddf_fun_t *fun, devman_handle_t *handle)
210{
211 assert(fun);
212 if (handle)
213 *handle = ddf_fun_get_handle(fun);
214 return EOK;
215}
216
217/** Inbound communication interface function.
218 * @param fun DDF function.
219 * @param target Communication target.
220 * @param setup_data Data to use in setup stage (control transfers).
221 * @param data Pointer to data buffer.
222 * @param size Size of the data buffer.
223 * @param callback Function to call on communication end.
224 * @param arg Argument passed to the callback function.
225 * @return Error code.
226 */
227static int dev_read(ddf_fun_t *fun, usb_endpoint_t endpoint,
228 uint64_t setup_data, uint8_t *data, size_t size,
229 usbhc_iface_transfer_in_callback_t callback, void *arg)
230{
231 assert(fun);
232 usb_dev_t *usb_dev = ddf_fun_data_get(fun);
233 assert(usb_dev);
234 const usb_target_t target = {{
235 .address = usb_dev->address,
236 .endpoint = endpoint,
237 }};
238 return hcd_send_batch(dev_to_hcd(ddf_fun_get_dev(fun)), target,
239 USB_DIRECTION_IN, data, size, setup_data, callback, NULL, arg,
240 "READ");
241}
242
243/** Outbound communication interface function.
244 * @param fun DDF function.
245 * @param target Communication target.
246 * @param setup_data Data to use in setup stage (control transfers).
247 * @param data Pointer to data buffer.
248 * @param size Size of the data buffer.
249 * @param callback Function to call on communication end.
250 * @param arg Argument passed to the callback function.
251 * @return Error code.
252 */
253static int dev_write(ddf_fun_t *fun, usb_endpoint_t endpoint,
254 uint64_t setup_data, const uint8_t *data, size_t size,
255 usbhc_iface_transfer_out_callback_t callback, void *arg)
256{
257 assert(fun);
258 usb_dev_t *usb_dev = ddf_fun_data_get(fun);
259 assert(usb_dev);
260 const usb_target_t target = {{
261 .address = usb_dev->address,
262 .endpoint = endpoint,
263 }};
264 return hcd_send_batch(dev_to_hcd(ddf_fun_get_dev(fun)),
265 target, USB_DIRECTION_OUT, (uint8_t*)data, size, setup_data, NULL,
266 callback, arg, "WRITE");
267}
268
269/** USB device interface */
270static usb_iface_t usb_iface = {
271 .get_my_device_handle = get_my_device_handle,
272
273 .reserve_default_address = reserve_default_address,
274 .release_default_address = release_default_address,
275
276 .device_enumerate = device_enumerate,
277 .device_remove = device_remove,
278
279 .register_endpoint = register_endpoint,
280 .unregister_endpoint = unregister_endpoint,
281
282 .read = dev_read,
283 .write = dev_write,
284};
285
286/** Standard USB device interface) */
287static ddf_dev_ops_t usb_ops = {
288 .interfaces[USB_DEV_IFACE] = &usb_iface,
289};
290
291
292/* DDF HELPERS */
293
294#define GET_DEVICE_DESC(size) \
295{ \
296 .request_type = SETUP_REQUEST_TYPE_DEVICE_TO_HOST \
297 | (USB_REQUEST_TYPE_STANDARD << 5) \
298 | USB_REQUEST_RECIPIENT_DEVICE, \
299 .request = USB_DEVREQ_GET_DESCRIPTOR, \
300 .value = uint16_host2usb(USB_DESCTYPE_DEVICE << 8), \
301 .index = uint16_host2usb(0), \
302 .length = uint16_host2usb(size), \
303};
304
305#define SET_ADDRESS(address) \
306{ \
307 .request_type = SETUP_REQUEST_TYPE_HOST_TO_DEVICE \
308 | (USB_REQUEST_TYPE_STANDARD << 5) \
309 | USB_REQUEST_RECIPIENT_DEVICE, \
310 .request = USB_DEVREQ_SET_ADDRESS, \
311 .value = uint16_host2usb(address), \
312 .index = uint16_host2usb(0), \
313 .length = uint16_host2usb(0), \
314};
315
316static int hcd_ddf_add_device(ddf_dev_t *parent, usb_dev_t *hub_dev,
317 unsigned port, usb_address_t address, usb_speed_t speed, const char *name,
318 const match_id_list_t *mids)
319{
320 assert(parent);
321
322 char default_name[10] = { 0 }; /* usbxyz-ss */
323 if (!name) {
324 snprintf(default_name, sizeof(default_name) - 1,
325 "usb%u-%cs", address, usb_str_speed(speed)[0]);
326 name = default_name;
327 }
328
329 ddf_fun_t *fun = ddf_fun_create(parent, fun_inner, name);
330 if (!fun)
331 return ENOMEM;
332 usb_dev_t *info = ddf_fun_data_alloc(fun, sizeof(usb_dev_t));
333 if (!info) {
334 ddf_fun_destroy(fun);
335 return ENOMEM;
336 }
337 info->address = address;
338 info->speed = speed;
339 info->fun = fun;
340 info->port = port;
341 info->tt_address = hub_dev ? hub_dev->tt_address : -1;
342 link_initialize(&info->link);
343 list_initialize(&info->devices);
344 fibril_mutex_initialize(&info->guard);
345
346 if (hub_dev && hub_dev->speed == USB_SPEED_HIGH && usb_speed_is_11(speed))
347 info->tt_address = hub_dev->address;
348
349 ddf_fun_set_ops(fun, &usb_ops);
350 list_foreach(mids->ids, link, const match_id_t, mid) {
351 ddf_fun_add_match_id(fun, mid->id, mid->score);
352 }
353
354 int ret = ddf_fun_bind(fun);
355 if (ret != EOK) {
356 ddf_fun_destroy(fun);
357 return ret;
358 }
359
360 if (hub_dev) {
361 fibril_mutex_lock(&hub_dev->guard);
362 list_append(&info->link, &hub_dev->devices);
363 fibril_mutex_unlock(&hub_dev->guard);
364 } else {
365 hc_dev_t *hc_dev = dev_to_hc_dev(parent);
366 assert(hc_dev->root_hub == NULL);
367 hc_dev->root_hub = info;
368 }
369 return EOK;
370}
371
372#define ADD_MATCHID_OR_RETURN(list, sc, str, ...) \
373do { \
374 match_id_t *mid = malloc(sizeof(match_id_t)); \
375 if (!mid) { \
376 clean_match_ids(list); \
377 return ENOMEM; \
378 } \
379 char *id = NULL; \
380 int ret = asprintf(&id, str, ##__VA_ARGS__); \
381 if (ret < 0) { \
382 clean_match_ids(list); \
383 free(mid); \
384 return ENOMEM; \
385 } \
386 mid->score = sc; \
387 mid->id = id; \
388 add_match_id(list, mid); \
389} while (0)
390
391/* This is a copy of lib/usbdev/src/recognise.c */
392static int create_match_ids(match_id_list_t *l,
393 usb_standard_device_descriptor_t *d)
394{
395 assert(l);
396 assert(d);
397
398 if (d->vendor_id != 0) {
399 /* First, with release number. */
400 ADD_MATCHID_OR_RETURN(l, 100,
401 "usb&vendor=%#04x&product=%#04x&release=%x.%x",
402 d->vendor_id, d->product_id, (d->device_version >> 8),
403 (d->device_version & 0xff));
404
405 /* Next, without release number. */
406 ADD_MATCHID_OR_RETURN(l, 90, "usb&vendor=%#04x&product=%#04x",
407 d->vendor_id, d->product_id);
408 }
409
410 /* Class match id */
411 ADD_MATCHID_OR_RETURN(l, 50, "usb&class=%s",
412 usb_str_class(d->device_class));
413
414 /* As a last resort, try fallback driver. */
415 ADD_MATCHID_OR_RETURN(l, 10, "usb&fallback");
416
417 return EOK;
418
419}
420
421static int hcd_ddf_remove_device(ddf_dev_t *device, usb_dev_t *hub,
422 unsigned port)
423{
424 assert(device);
425
426 hcd_t *hcd = dev_to_hcd(device);
427 assert(hcd);
428
429 hc_dev_t *hc_dev = dev_to_hc_dev(device);
430 assert(hc_dev);
431
432 fibril_mutex_lock(&hub->guard);
433
434 usb_dev_t *victim = NULL;
435
436 list_foreach(hub->devices, link, usb_dev_t, it) {
437 if (it->port == port) {
438 victim = it;
439 break;
440 }
441 }
442 if (victim) {
443 assert(victim->port == port);
444 list_remove(&victim->link);
445 fibril_mutex_unlock(&hub->guard);
446 const int ret = ddf_fun_unbind(victim->fun);
447 if (ret == EOK) {
448 usb_address_t address = victim->address;
449 ddf_fun_destroy(victim->fun);
450 hcd_release_address(hcd, address);
451 } else {
452 usb_log_warning("Failed to unbind device `%s': %s\n",
453 ddf_fun_get_name(victim->fun), str_error(ret));
454 }
455 return EOK;
456 }
457 fibril_mutex_unlock(&hub->guard);
458 return ENOENT;
459}
460
461static int hcd_ddf_new_device(ddf_dev_t *device, usb_dev_t *hub, unsigned port)
462{
463 assert(device);
464
465 hcd_t *hcd = dev_to_hcd(device);
466 assert(hcd);
467
468 usb_speed_t speed = USB_SPEED_MAX;
469
470 /* This checks whether the default address is reserved and gets speed */
471 int ret = usb_bus_get_speed(&hcd->bus, USB_ADDRESS_DEFAULT, &speed);
472 if (ret != EOK) {
473 usb_log_error("Failed to verify speed: %s.", str_error(ret));
474 return ret;
475 }
476
477 usb_log_debug("Found new %s speed USB device.", usb_str_speed(speed));
478
479 static const usb_target_t default_target = {{
480 .address = USB_ADDRESS_DEFAULT,
481 .endpoint = 0,
482 }};
483
484 const usb_address_t address = hcd_request_address(hcd, speed);
485 if (address < 0) {
486 usb_log_error("Failed to reserve new address: %s.",
487 str_error(address));
488 return address;
489 }
490
491 usb_log_debug("Reserved new address: %d\n", address);
492
493 const usb_target_t target = {{
494 .address = address,
495 .endpoint = 0,
496 }};
497
498 const usb_address_t tt_address = hub ? hub->tt_address : -1;
499
500 /* Add default pipe on default address */
501 usb_log_debug("Device(%d): Adding default target(0:0)\n", address);
502 ret = hcd_add_ep(hcd,
503 default_target, USB_DIRECTION_BOTH, USB_TRANSFER_CONTROL,
504 CTRL_PIPE_MIN_PACKET_SIZE, CTRL_PIPE_MIN_PACKET_SIZE, 1,
505 tt_address, port);
506 if (ret != EOK) {
507 usb_log_error("Device(%d): Failed to add default target: %s.",
508 address, str_error(ret));
509 hcd_release_address(hcd, address);
510 return ret;
511 }
512
513 /* Get max packet size for default pipe */
514 usb_standard_device_descriptor_t desc = { 0 };
515 const usb_device_request_setup_packet_t get_device_desc_8 =
516 GET_DEVICE_DESC(CTRL_PIPE_MIN_PACKET_SIZE);
517
518 // TODO CALLBACKS
519 usb_log_debug("Device(%d): Requesting first 8B of device descriptor.",
520 address);
521 ssize_t got = hcd_send_batch_sync(hcd, default_target, USB_DIRECTION_IN,
522 &desc, CTRL_PIPE_MIN_PACKET_SIZE, *(uint64_t *)&get_device_desc_8,
523 "read first 8 bytes of dev descriptor");
524
525 if (got != CTRL_PIPE_MIN_PACKET_SIZE) {
526 ret = got < 0 ? got : EOVERFLOW;
527 usb_log_error("Device(%d): Failed to get 8B of dev descr: %s.",
528 address, str_error(ret));
529 hcd_remove_ep(hcd, default_target, USB_DIRECTION_BOTH);
530 hcd_release_address(hcd, address);
531 return ret;
532 }
533
534 /* Register EP on the new address */
535 usb_log_debug("Device(%d): Registering control EP.", address);
536 ret = hcd_add_ep(hcd, target, USB_DIRECTION_BOTH, USB_TRANSFER_CONTROL,
537 ED_MPS_PACKET_SIZE_GET(uint16_usb2host(desc.max_packet_size)),
538 ED_MPS_TRANS_OPPORTUNITIES_GET(uint16_usb2host(desc.max_packet_size)),
539 ED_MPS_PACKET_SIZE_GET(uint16_usb2host(desc.max_packet_size)),
540 tt_address, port);
541 if (ret != EOK) {
542 usb_log_error("Device(%d): Failed to register EP0: %s",
543 address, str_error(ret));
544 hcd_remove_ep(hcd, default_target, USB_DIRECTION_BOTH);
545 hcd_remove_ep(hcd, target, USB_DIRECTION_BOTH);
546 hcd_release_address(hcd, address);
547 return ret;
548 }
549
550 /* Set new address */
551 const usb_device_request_setup_packet_t set_address =
552 SET_ADDRESS(target.address);
553
554 usb_log_debug("Device(%d): Setting USB address.", address);
555 got = hcd_send_batch_sync(hcd, default_target, USB_DIRECTION_OUT,
556 NULL, 0, *(uint64_t *)&set_address, "set address");
557
558 usb_log_debug("Device(%d): Removing default (0:0) EP.", address);
559 hcd_remove_ep(hcd, default_target, USB_DIRECTION_BOTH);
560
561 if (got != 0) {
562 usb_log_error("Device(%d): Failed to set new address: %s.",
563 address, str_error(got));
564 hcd_remove_ep(hcd, target, USB_DIRECTION_BOTH);
565 hcd_release_address(hcd, address);
566 return got;
567 }
568
569 /* Get std device descriptor */
570 const usb_device_request_setup_packet_t get_device_desc =
571 GET_DEVICE_DESC(sizeof(desc));
572
573 usb_log_debug("Device(%d): Requesting full device descriptor.",
574 address);
575 got = hcd_send_batch_sync(hcd, target, USB_DIRECTION_IN,
576 &desc, sizeof(desc), *(uint64_t *)&get_device_desc,
577 "read device descriptor");
578 if (ret != EOK) {
579 usb_log_error("Device(%d): Failed to set get dev descriptor: %s",
580 address, str_error(ret));
581 hcd_remove_ep(hcd, target, USB_DIRECTION_BOTH);
582 hcd_release_address(hcd, target.address);
583 return ret;
584 }
585
586 /* Create match ids from the device descriptor */
587 match_id_list_t mids;
588 init_match_ids(&mids);
589
590 usb_log_debug("Device(%d): Creating match IDs.", address);
591 ret = create_match_ids(&mids, &desc);
592 if (ret != EOK) {
593 usb_log_error("Device(%d): Failed to create match ids: %s",
594 address, str_error(ret));
595 hcd_remove_ep(hcd, target, USB_DIRECTION_BOTH);
596 hcd_release_address(hcd, target.address);
597 return ret;
598 }
599
600 /* Register device */
601 usb_log_debug("Device(%d): Registering DDF device.", address);
602 ret = hcd_ddf_add_device(device, hub, port, address, speed, NULL, &mids);
603 clean_match_ids(&mids);
604 if (ret != EOK) {
605 usb_log_error("Device(%d): Failed to register: %s.",
606 address, str_error(ret));
607 hcd_remove_ep(hcd, target, USB_DIRECTION_BOTH);
608 hcd_release_address(hcd, target.address);
609 }
610
611 return ret;
612}
613
614/** Announce root hub to the DDF
615 *
616 * @param[in] device Host controller ddf device
617 * @return Error code
618 */
619int hcd_ddf_setup_root_hub(ddf_dev_t *device)
620{
621 assert(device);
622 hcd_t *hcd = dev_to_hcd(device);
623 assert(hcd);
624
625 hcd_reserve_default_address(hcd, hcd->bus.max_speed);
626 const int ret = hcd_ddf_new_device(device, NULL, 0);
627 hcd_release_default_address(hcd);
628 return ret;
629}
630
631/** Initialize hc structures.
632 *
633 * @param[in] device DDF instance of the device to use.
634 * @param[in] max_speed Maximum supported USB speed.
635 * @param[in] bw available bandwidth.
636 * @param[in] bw_count Function to compute required ep bandwidth.
637 *
638 * @return Error code.
639 * This function does all the ddf work for hc driver.
640 */
641int hcd_ddf_setup_hc(ddf_dev_t *device, usb_speed_t max_speed,
642 size_t bw, bw_count_func_t bw_count)
643{
644 assert(device);
645
646 hc_dev_t *instance = ddf_dev_data_alloc(device, sizeof(hc_dev_t));
647 if (instance == NULL) {
648 usb_log_error("Failed to allocate HCD ddf structure.\n");
649 return ENOMEM;
650 }
651 instance->root_hub = NULL;
652 hcd_init(&instance->hcd, max_speed, bw, bw_count);
653
654 int ret = ENOMEM;
655 instance->ctl_fun = ddf_fun_create(device, fun_exposed, "ctl");
656 if (!instance->ctl_fun) {
657 usb_log_error("Failed to create HCD ddf fun.\n");
658 goto err_destroy_fun;
659 }
660
661 ret = ddf_fun_bind(instance->ctl_fun);
662 if (ret != EOK) {
663 usb_log_error("Failed to bind ctl_fun: %s.\n", str_error(ret));
664 goto err_destroy_fun;
665 }
666
667 ret = ddf_fun_add_to_category(instance->ctl_fun, USB_HC_CATEGORY);
668 if (ret != EOK) {
669 usb_log_error("Failed to add fun to category: %s.\n",
670 str_error(ret));
671 ddf_fun_unbind(instance->ctl_fun);
672 goto err_destroy_fun;
673 }
674
675 /* HC should be ok at this point (except it can't do anything) */
676 return EOK;
677
678err_destroy_fun:
679 ddf_fun_destroy(instance->ctl_fun);
680 instance->ctl_fun = NULL;
681 return ret;
682}
683
684void hcd_ddf_clean_hc(ddf_dev_t *device)
685{
686 assert(device);
687 hc_dev_t *hc = dev_to_hc_dev(device);
688 assert(hc);
689 const int ret = ddf_fun_unbind(hc->ctl_fun);
690 if (ret == EOK)
691 ddf_fun_destroy(hc->ctl_fun);
692}
693
694//TODO: Move this to generic ddf?
695/** Call the parent driver with a request to enable interrupts
696 *
697 * @param[in] device Device asking for interrupts
698 * @return Error code.
699 */
700int hcd_ddf_enable_interrupts(ddf_dev_t *device)
701{
702 assert(device);
703 async_sess_t *parent_sess =
704 devman_parent_device_connect(ddf_dev_get_handle(device),
705 IPC_FLAG_BLOCKING);
706 const bool enabled = hw_res_enable_interrupt(parent_sess);
707 async_hangup(parent_sess);
708
709 return enabled ? EOK : EIO;
710}
711
712//TODO: Move this to generic ddf?
713int hcd_ddf_get_registers(ddf_dev_t *device, hw_res_list_parsed_t *hw_res)
714{
715 assert(device);
716 assert(hw_res);
717
718 async_sess_t *parent_sess =
719 devman_parent_device_connect(ddf_dev_get_handle(device),
720 IPC_FLAG_BLOCKING);
721 hw_res_list_parsed_init(hw_res);
722 const int ret = hw_res_get_list_parsed(parent_sess, hw_res, 0);
723 async_hangup(parent_sess);
724 if (ret != EOK)
725 hw_res_list_parsed_clean(hw_res);
726 return ret;
727}
728
729// TODO: move this someplace else
730static inline void irq_code_clean(irq_code_t *code)
731{
732 if (code) {
733 free(code->ranges);
734 free(code->cmds);
735 code->ranges = NULL;
736 code->cmds = NULL;
737 code->rangecount = 0;
738 code->cmdcount = 0;
739 }
740}
741
742/** Register interrupt handler
743 *
744 * @param[in] device Host controller DDF device
745 * @param[in] regs Register range
746 * @param[in] irq Interrupt number
747 * @paran[in] handler Interrupt handler
748 * @param[in] gen_irq_code IRQ code generator.
749 *
750 * @return EOK on success or negative error code
751 */
752int hcd_ddf_setup_interrupts(ddf_dev_t *device,
753 const hw_res_list_parsed_t *hw_res,
754 interrupt_handler_t handler,
755 int (*gen_irq_code)(irq_code_t *, const hw_res_list_parsed_t *hw_res))
756{
757
758 assert(device);
759 if (!handler || !gen_irq_code)
760 return ENOTSUP;
761
762 irq_code_t irq_code = {0};
763
764 const int irq = gen_irq_code(&irq_code, hw_res);
765 if (irq < 0) {
766 usb_log_error("Failed to generate IRQ code: %s.\n",
767 str_error(irq));
768 return irq;
769 }
770
771 /* Register handler to avoid interrupt lockup */
772 int ret = register_interrupt_handler(device, irq, handler, &irq_code);
773 irq_code_clean(&irq_code);
774 if (ret != EOK) {
775 usb_log_error("Failed to register interrupt handler: %s.\n",
776 str_error(ret));
777 return ret;
778 }
779
780 /* Enable interrupts */
781 ret = hcd_ddf_enable_interrupts(device);
782 if (ret != EOK) {
783 usb_log_error("Failed to enable interrupts: %s.\n",
784 str_error(ret));
785 unregister_interrupt_handler(device, irq);
786 return ret;
787 }
788 assert(irq > 0);
789 return irq;
790}
791
792/** IRQ handling callback, forward status from call to diver structure.
793 *
794 * @param[in] dev DDF instance of the device to use.
795 * @param[in] iid (Unused).
796 * @param[in] call Pointer to the call from kernel.
797 */
798void ddf_hcd_gen_irq_handler(ipc_callid_t iid, ipc_call_t *call, ddf_dev_t *dev)
799{
800 assert(dev);
801 hcd_t *hcd = dev_to_hcd(dev);
802 if (!hcd || !hcd->ops.irq_hook) {
803 usb_log_error("Interrupt on not yet initialized device.\n");
804 return;
805 }
806 const uint32_t status = IPC_GET_ARG1(*call);
807 hcd->ops.irq_hook(hcd, status);
808}
809
810static int interrupt_polling(void *arg)
811{
812 hcd_t *hcd = arg;
813 assert(hcd);
814 if (!hcd->ops.status_hook || !hcd->ops.irq_hook)
815 return ENOTSUP;
816 uint32_t status = 0;
817 while (hcd->ops.status_hook(hcd, &status) == EOK) {
818 hcd->ops.irq_hook(hcd, status);
819 status = 0;
820 /* We should wait 1 frame - 1ms here, but this polling is a
821 * lame crutch anyway so don't hog the system. 10ms is still
822 * good enough for emergency mode */
823 async_usleep(10000);
824 }
825 return EOK;
826}
827
828/** Initialize hc and rh DDF structures and their respective drivers.
829 *
830 * @param device DDF instance of the device to use
831 * @param speed Maximum supported speed
832 * @param bw Available bandwidth (arbitrary units)
833 * @param bw_count Bandwidth computing function
834 * @param irq_handler IRQ handling function
835 * @param gen_irq_code Function to generate IRQ pseudocode
836 * (it needs to return used irq number)
837 * @param driver_init Function to initialize HC driver
838 * @param driver_fini Function to cleanup HC driver
839 * @return Error code
840 *
841 * This function does all the preparatory work for hc and rh drivers:
842 * - gets device's hw resources
843 * - attempts to enable interrupts
844 * - registers interrupt handler
845 * - calls driver specific initialization
846 * - registers root hub
847 */
848int hcd_ddf_add_hc(ddf_dev_t *device, const ddf_hc_driver_t *driver)
849{
850 assert(driver);
851 static const struct { size_t bw; bw_count_func_t bw_count; }bw[] = {
852 [USB_SPEED_FULL] = { .bw = BANDWIDTH_AVAILABLE_USB11,
853 .bw_count = bandwidth_count_usb11 },
854 [USB_SPEED_HIGH] = { .bw = BANDWIDTH_AVAILABLE_USB11,
855 .bw_count = bandwidth_count_usb11 },
856 [USB_SPEED_SUPER] = { .bw = BANDWIDTH_AVAILABLE_USB11,
857 .bw_count = bandwidth_count_usb11 },
858 };
859
860 int ret = EOK;
861 const usb_speed_t speed = driver->hc_speed;
862 if (speed >= ARRAY_SIZE(bw) || bw[speed].bw == 0) {
863 usb_log_error("Driver `%s' reported unsupported speed: %s",
864 driver->name, usb_str_speed(speed));
865 return ENOTSUP;
866 }
867
868 hw_res_list_parsed_t hw_res;
869 ret = hcd_ddf_get_registers(device, &hw_res);
870 if (ret != EOK) {
871 usb_log_error("Failed to get register memory addresses "
872 "for `%s': %s.\n", ddf_dev_get_name(device),
873 str_error(ret));
874 return ret;
875 }
876
877 ret = hcd_ddf_setup_hc(device, speed, bw[speed].bw, bw[speed].bw_count);
878 if (ret != EOK) {
879 usb_log_error("Failed to setup generic HCD.\n");
880 hw_res_list_parsed_clean(&hw_res);
881 return ret;
882 }
883
884 interrupt_handler_t *irq_handler =
885 driver->irq_handler ? driver->irq_handler : ddf_hcd_gen_irq_handler;
886 const int irq = hcd_ddf_setup_interrupts(device, &hw_res, irq_handler,
887 driver->irq_code_gen);
888 if (!(irq < 0)) {
889 usb_log_debug("Hw interrupts enabled.\n");
890 }
891
892 if (driver->claim)
893 ret = driver->claim(device);
894 if (ret != EOK) {
895 usb_log_error("Failed to claim `%s' for driver `%s'",
896 ddf_dev_get_name(device), driver->name);
897 return ret;
898 }
899
900
901 /* Init hw driver */
902 hcd_t *hcd = dev_to_hcd(device);
903 ret = driver->init(hcd, &hw_res, !(irq < 0));
904 hw_res_list_parsed_clean(&hw_res);
905 if (ret != EOK) {
906 usb_log_error("Failed to init HCD: %s.\n", str_error(ret));
907 goto irq_unregister;
908 }
909
910 /* Need working irq replacement to setup root hub */
911 if ((irq < 0) && hcd->ops.status_hook) {
912 hcd->polling_fibril = fibril_create(interrupt_polling, hcd);
913 if (hcd->polling_fibril == 0) {
914 usb_log_error("Failed to create polling fibril\n");
915 ret = ENOMEM;
916 goto irq_unregister;
917 }
918 fibril_add_ready(hcd->polling_fibril);
919 usb_log_warning("Failed to enable interrupts: %s."
920 " Falling back to polling.\n", str_error(irq));
921 }
922
923 /*
924 * Creating root hub registers a new USB device so HC
925 * needs to be ready at this time.
926 */
927 ret = hcd_ddf_setup_root_hub(device);
928 if (ret != EOK) {
929 usb_log_error("Failed to setup HC root hub: %s.\n",
930 str_error(ret));
931 driver->fini(dev_to_hcd(device));
932irq_unregister:
933 /* Unregistering non-existent should be ok */
934 unregister_interrupt_handler(device, irq);
935 hcd_ddf_clean_hc(device);
936 return ret;
937 }
938
939 usb_log_info("Controlling new `%s' device `%s'.\n",
940 driver->name, ddf_dev_get_name(device));
941 return EOK;
942}
943/**
944 * @}
945 */
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