source: mainline/uspace/lib/usbhost/src/bus.c@ eeca8a6

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since eeca8a6 was eeca8a6, checked in by Ondřej Hlavatý <aearsis@…>, 7 years ago

usb: speed moved from default address reservation to enumeration callback

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File size: 15.9 KB
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[41924f30]1/*
2 * Copyright (c) 2017 Ondrej Hlavaty <aearsis@eideo.cz>
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 *
[1102eca]34 * The Bus is a structure that serves as an interface of the HC driver
35 * implementation for the usbhost library. Every HC driver that uses libusbhost
36 * must use a bus_t (or its child), fill it with bus_ops and present it to the
37 * library. The library then handles the DDF interface and translates it to the
38 * bus callbacks.
[41924f30]39 */
40
[20eaa82]41#include <ddf/driver.h>
[41924f30]42#include <errno.h>
[64fea02]43#include <mem.h>
[20eaa82]44#include <stdio.h>
[0892663a]45#include <str_error.h>
[64fea02]46#include <usb/debug.h>
47
48#include "endpoint.h"
49#include "bus.h"
[41924f30]50
51/**
[1102eca]52 * Initializes the base bus structure.
[41924f30]53 */
[32fb6bce]54void bus_init(bus_t *bus, size_t device_size)
[41924f30]55{
[20eaa82]56 assert(bus);
57 assert(device_size >= sizeof(device_t));
[41924f30]58 memset(bus, 0, sizeof(bus_t));
59
60 fibril_mutex_initialize(&bus->guard);
[20eaa82]61 bus->device_size = device_size;
62}
63
[1102eca]64/**
65 * Initialize the device_t structure belonging to a bus.
66 */
[6832245]67int bus_device_init(device_t *dev, bus_t *bus)
[20eaa82]68{
[6832245]69 assert(bus);
70
[20eaa82]71 memset(dev, 0, sizeof(*dev));
72
[6832245]73 dev->bus = bus;
74
[20eaa82]75 link_initialize(&dev->link);
76 list_initialize(&dev->devices);
77 fibril_mutex_initialize(&dev->guard);
78
79 return EOK;
80}
81
[1102eca]82/**
83 * Create a name of the ddf function node.
84 */
[6832245]85int bus_device_set_default_name(device_t *dev)
[20eaa82]86{
87 assert(dev);
88 assert(dev->fun);
89
90 char buf[10] = { 0 }; /* usbxyz-ss */
91 snprintf(buf, sizeof(buf) - 1, "usb%u-%cs",
92 dev->address, usb_str_speed(dev->speed)[0]);
93
94 return ddf_fun_set_name(dev->fun, buf);
95}
96
[4c25c2fb]97/**
98 * Setup devices Transaction Translation.
99 *
100 * This applies for Low/Full speed devices under High speed hub only. Other
101 * devices just inherit TT from the hub.
102 *
103 * Roothub must be handled specially.
104 */
105static void device_setup_tt(device_t *dev)
106{
107 if (!dev->hub)
108 return;
109
110 if (dev->hub->speed == USB_SPEED_HIGH && usb_speed_is_11(dev->speed)) {
111 /* For LS devices under HS hub */
112 dev->tt.dev = dev->hub;
113 dev->tt.port = dev->port;
114 }
115 else {
116 /* Inherit hub's TT */
117 dev->tt = dev->hub->tt;
118 }
119}
120
[1102eca]121/**
122 * Invoke the device_enumerate bus operation.
[0892663a]123 *
124 * There's no need to synchronize here, because no one knows the device yet.
[1102eca]125 */
[6832245]126int bus_device_enumerate(device_t *dev)
[20eaa82]127{
128 assert(dev);
129
[6832245]130 const bus_ops_t *ops = BUS_OPS_LOOKUP(dev->bus->ops, device_enumerate);
131 if (!ops)
[20eaa82]132 return ENOTSUP;
133
[53a9d02]134 if (dev->online)
[0892663a]135 return EINVAL;
136
[4c25c2fb]137 device_setup_tt(dev);
138
[0892663a]139 const int r = ops->device_enumerate(dev);
[53a9d02]140 if (r)
141 return r;
142
143 dev->online = true;
[0892663a]144
[53a9d02]145 if (dev->hub) {
[0892663a]146 fibril_mutex_lock(&dev->hub->guard);
147 list_append(&dev->link, &dev->hub->devices);
148 fibril_mutex_unlock(&dev->hub->guard);
149 }
150
[53a9d02]151 return EOK;
[0892663a]152}
153
154/**
155 * Clean endpoints and children that could have been left behind after
156 * asking the driver of device to offline/remove a device.
157 *
158 * Note that EP0's lifetime is shared with the device, and as such is not
159 * touched.
160 */
161static void device_clean_ep_children(device_t *dev, const char *op)
162{
163 assert(fibril_mutex_is_locked(&dev->guard));
164
165 /* Unregister endpoints left behind. */
166 for (usb_endpoint_t i = 1; i < USB_ENDPOINT_MAX; ++i) {
167 if (!dev->endpoints[i])
168 continue;
169
170 usb_log_warning("USB device '%s' driver left endpoint %u registered after %s.",
171 ddf_fun_get_name(dev->fun), i, op);
172
173 endpoint_t * const ep = dev->endpoints[i];
174 endpoint_add_ref(ep);
175
176 fibril_mutex_unlock(&dev->guard);
177 bus_endpoint_remove(ep);
178 fibril_mutex_lock(&dev->guard);
179
180 assert(dev->endpoints[i] == NULL);
181 }
182
183 /* Remove also orphaned children. */
184 while (!list_empty(&dev->devices)) {
185 device_t * const child = list_get_instance(list_first(&dev->devices), device_t, link);
186
187 usb_log_warning("USB device '%s' driver left device '%s' behind after %s.",
188 ddf_fun_get_name(dev->fun), ddf_fun_get_name(child->fun), op);
189 /*
190 * The child node won't disappear, because its parent's driver
191 * is already dead. And the child will need the guard to remove
192 * itself from the list.
193 */
194 fibril_mutex_unlock(&dev->guard);
[9848c77]195 bus_device_gone(child);
[0892663a]196 fibril_mutex_lock(&dev->guard);
197 }
198 assert(list_empty(&dev->devices));
[20eaa82]199}
200
[1102eca]201/**
[0892663a]202 * Resolve a USB device that is gone.
[1102eca]203 */
[9848c77]204void bus_device_gone(device_t *dev)
[20eaa82]205{
206 assert(dev);
[99a00a6]207 assert(dev->fun != NULL);
[20eaa82]208
[9848c77]209 const bus_ops_t *ops = BUS_OPS_LOOKUP(dev->bus->ops, device_gone);
[bad4a05]210 assert(ops);
[20eaa82]211
[0892663a]212 /* First, block new transfers and operations. */
213 fibril_mutex_lock(&dev->guard);
214 dev->online = false;
215
216 /* Unbinding will need guard unlocked. */
217 fibril_mutex_unlock(&dev->guard);
218
219 /* Remove our device from our hub's children. */
[53a9d02]220 if (dev->hub) {
221 fibril_mutex_lock(&dev->hub->guard);
222 list_remove(&dev->link);
223 fibril_mutex_unlock(&dev->hub->guard);
224 }
[0892663a]225
226 /*
227 * Unbind the DDF function. That will result in dev_gone called in
228 * driver, which shall destroy its pipes and remove its children.
229 */
230 const int err = ddf_fun_unbind(dev->fun);
231 if (err) {
232 usb_log_error("Failed to unbind USB device '%s': %s",
233 ddf_fun_get_name(dev->fun), str_error(err));
234 return;
235 }
236
237 /* Remove what driver left behind */
238 fibril_mutex_lock(&dev->guard);
239 device_clean_ep_children(dev, "removing");
240
241 /* Tell the HC to release its resources. */
[9848c77]242 ops->device_gone(dev);
[0892663a]243
244 /* Release the EP0 bus reference */
245 endpoint_del_ref(dev->endpoints[0]);
246
247 /* Destroy the function, freeing also the device, unlocking mutex. */
248 ddf_fun_destroy(dev->fun);
[41924f30]249}
250
[1102eca]251/**
[0892663a]252 * The user wants this device back online.
[1102eca]253 */
[6832245]254int bus_device_online(device_t *dev)
[d37514e]255{
[351113f]256 int rc;
[d37514e]257 assert(dev);
258
[0892663a]259 fibril_mutex_lock(&dev->guard);
260 if (dev->online) {
[351113f]261 rc = EINVAL;
262 goto err_lock;
[0892663a]263 }
264
265 /* First, tell the HC driver. */
[6832245]266 const bus_ops_t *ops = BUS_OPS_LOOKUP(dev->bus->ops, device_online);
[351113f]267 if (ops && (rc = ops->device_online(dev))) {
268 usb_log_warning("Host controller failed to make device '%s' online: %s",
269 ddf_fun_get_name(dev->fun), str_error(rc));
270 goto err_lock;
[0892663a]271 }
272
273 /* Allow creation of new endpoints and communication with the device. */
274 dev->online = true;
[d37514e]275
[0892663a]276 /* Onlining will need the guard */
277 fibril_mutex_unlock(&dev->guard);
278
[351113f]279 if ((rc = ddf_fun_online(dev->fun))) {
[0892663a]280 usb_log_warning("Failed to take device '%s' online: %s",
[351113f]281 ddf_fun_get_name(dev->fun), str_error(rc));
282 goto err;
[0892663a]283 }
284
[351113f]285 usb_log_info("USB Device '%s' is now online.", ddf_fun_get_name(dev->fun));
[0892663a]286 return EOK;
[351113f]287
288err_lock:
289 fibril_mutex_unlock(&dev->guard);
290err:
291 return rc;
[d37514e]292}
293
[1102eca]294/**
[0892663a]295 * The user requested to take this device offline.
[1102eca]296 */
[6832245]297int bus_device_offline(device_t *dev)
[d37514e]298{
[351113f]299 int rc;
[d37514e]300 assert(dev);
301
[0892663a]302 /* Make sure we're the one who offlines this device */
[351113f]303 if (!dev->online) {
304 rc = ENOENT;
305 goto err;
306 }
[0892663a]307
308 /*
309 * XXX: If the device is removed/offlined just now, this can fail on
310 * assertion. We most probably need some kind of enum status field to
311 * make the synchronization work.
312 */
313
314 /* Tear down all drivers working with the device. */
[351113f]315 if ((rc = ddf_fun_offline(dev->fun))) {
316 goto err;
[0892663a]317 }
318
319 fibril_mutex_lock(&dev->guard);
320 dev->online = false;
321 device_clean_ep_children(dev, "offlining");
322
323 /* Tell also the HC driver. */
[6832245]324 const bus_ops_t *ops = BUS_OPS_LOOKUP(dev->bus->ops, device_offline);
[0892663a]325 if (ops)
326 ops->device_offline(dev);
[d37514e]327
[0892663a]328 fibril_mutex_unlock(&dev->guard);
[351113f]329 usb_log_info("USB Device '%s' is now offline.", ddf_fun_get_name(dev->fun));
[0892663a]330 return EOK;
[351113f]331
332err:
333 return rc;
[d37514e]334}
335
[1ed3eb4]336/**
337 * Calculate an index to the endpoint array.
338 * For the default control endpoint 0, it must return 0.
339 * For different arguments, the result is stable but not defined.
340 */
341static int bus_endpoint_index(usb_endpoint_t ep, usb_direction_t dir)
342{
343 return 2 * ep + (dir == USB_DIRECTION_OUT);
344}
345
[1102eca]346/**
347 * Create and register new endpoint to the bus.
348 *
349 * @param[in] device The device of which the endpoint shall be created
350 * @param[in] desc Endpoint descriptors as reported by the device
351 * @param[out] out_ep The resulting new endpoint reference, if any. Can be NULL.
352 */
[9efad54]353int bus_endpoint_add(device_t *device, const usb_endpoint_descriptors_t *desc, endpoint_t **out_ep)
[41924f30]354{
[6832245]355 int err;
[0206d35]356 assert(device);
[41924f30]357
[6832245]358 bus_t *bus = device->bus;
359
360 const bus_ops_t *register_ops = BUS_OPS_LOOKUP(bus->ops, endpoint_register);
[1102eca]361 if (!register_ops)
[6832245]362 return ENOTSUP;
[53db806]363
[1102eca]364 const bus_ops_t *create_ops = BUS_OPS_LOOKUP(bus->ops, endpoint_create);
365 endpoint_t *ep;
366 if (create_ops) {
367 ep = create_ops->endpoint_create(device, desc);
368 if (!ep)
369 return ENOMEM;
370 } else {
371 ep = calloc(1, sizeof(endpoint_t));
372 if (!ep)
373 return ENOMEM;
374 endpoint_init(ep, device, desc);
375 }
[0206d35]376
[9efad54]377 /* Bus reference */
[0206d35]378 endpoint_add_ref(ep);
379
[9efad54]380 if (ep->max_transfer_size == 0) {
381 usb_log_warning("Invalid endpoint description (mps %zu, "
382 "%u packets)", ep->max_packet_size, ep->packets_per_uframe);
383 /* Bus reference */
384 endpoint_del_ref(ep);
385 return EINVAL;
386 }
387
[a1732929]388 usb_log_debug("Register endpoint %d:%d %s-%s %zuB.",
[9efad54]389 device->address, ep->endpoint,
390 usb_str_transfer_type(ep->transfer_type),
391 usb_str_direction(ep->direction),
392 ep->max_transfer_size);
393
[1ed3eb4]394 const int idx = bus_endpoint_index(ep->endpoint, ep->direction);
395
[a6c4597]396 fibril_mutex_lock(&device->guard);
[56257ba]397 if (!device->online && ep->endpoint != 0) {
398 err = EAGAIN;
[1ed3eb4]399 } else if (device->endpoints[idx] != NULL) {
[56257ba]400 err = EEXIST;
401 } else {
402 err = register_ops->endpoint_register(ep);
403 if (!err)
[1ed3eb4]404 device->endpoints[idx] = ep;
[56257ba]405 }
[a6c4597]406 fibril_mutex_unlock(&device->guard);
[56257ba]407 if (err) {
408 endpoint_del_ref(ep);
409 return err;
410 }
[0206d35]411
412 if (out_ep) {
[6832245]413 /* Exporting reference */
[41924f30]414 endpoint_add_ref(ep);
[0206d35]415 *out_ep = ep;
[41924f30]416 }
[0206d35]417
[56257ba]418 return EOK;
[41924f30]419}
420
[1102eca]421/**
422 * Search for an endpoint. Returns a reference.
[0206d35]423 */
[1ed3eb4]424endpoint_t *bus_find_endpoint(device_t *device, usb_endpoint_t endpoint, usb_direction_t dir)
[41924f30]425{
[6832245]426 assert(device);
427
[1ed3eb4]428 const int idx = bus_endpoint_index(endpoint, dir);
429 const int ctrl_idx = bus_endpoint_index(endpoint, USB_DIRECTION_BOTH);
430
[a6c4597]431 fibril_mutex_lock(&device->guard);
[1ed3eb4]432 endpoint_t *ep = device->endpoints[idx];
433 /*
434 * If the endpoint was not found, it's still possible it is a control
435 * endpoint having direction BOTH.
436 */
437 if (!ep) {
438 ep = device->endpoints[ctrl_idx];
439 if (ep && ep->transfer_type != USB_TRANSFER_CONTROL)
440 ep = NULL;
441 }
[0206d35]442 if (ep) {
443 /* Exporting reference */
444 endpoint_add_ref(ep);
445 }
[a6c4597]446 fibril_mutex_unlock(&device->guard);
[0206d35]447 return ep;
[41924f30]448}
449
[1102eca]450/**
451 * Remove an endpoint from the device. Consumes a reference.
452 */
[6832245]453int bus_endpoint_remove(endpoint_t *ep)
[41924f30]454{
455 assert(ep);
[9efad54]456 assert(ep->device);
[41924f30]457
[a6c4597]458 device_t *device = ep->device;
459 if (!device)
460 return ENOENT;
461
462 bus_t *bus = device->bus;
[6832245]463
[9efad54]464 const bus_ops_t *ops = BUS_OPS_LOOKUP(bus->ops, endpoint_unregister);
[6832245]465 if (!ops)
466 return ENOTSUP;
467
[a1732929]468 usb_log_debug("Unregister endpoint %d:%d %s-%s %zuB.",
[a6c4597]469 device->address, ep->endpoint,
[9efad54]470 usb_str_transfer_type(ep->transfer_type),
471 usb_str_direction(ep->direction),
472 ep->max_transfer_size);
473
[1ed3eb4]474 const int idx = bus_endpoint_index(ep->endpoint, ep->direction);
475
[a6c4597]476 fibril_mutex_lock(&device->guard);
[bad4a05]477 ops->endpoint_unregister(ep);
[1ed3eb4]478 device->endpoints[idx] = NULL;
[a6c4597]479 fibril_mutex_unlock(&device->guard);
[41924f30]480
481 /* Bus reference */
482 endpoint_del_ref(ep);
483
[1102eca]484 /* Given reference */
485 endpoint_del_ref(ep);
486
[41924f30]487 return EOK;
488}
489
[1102eca]490/**
491 * Reserve the default address on the bus. Also, report the speed of the device
492 * that is listening on the default address.
493 *
494 * The speed is then used for devices enumerated while the address is reserved.
495 */
[eeca8a6]496int bus_reserve_default_address(bus_t *bus, device_t *dev)
[41924f30]497{
498 assert(bus);
499
[eeca8a6]500 int err;
[41924f30]501 fibril_mutex_lock(&bus->guard);
[eeca8a6]502 if (bus->default_address_owner != NULL) {
503 err = (bus->default_address_owner == dev) ? EINVAL : EAGAIN;
[5e2b1ae6]504 } else {
[eeca8a6]505 bus->default_address_owner = dev;
506 err = EOK;
[5e2b1ae6]507 }
[eeca8a6]508 fibril_mutex_unlock(&bus->guard);
509 return err;
[41924f30]510}
511
[1102eca]512/**
513 * Release the default address.
514 */
[eeca8a6]515void bus_release_default_address(bus_t *bus, device_t *dev)
[41924f30]516{
517 assert(bus);
[eeca8a6]518
519 fibril_mutex_lock(&bus->guard);
520 if (bus->default_address_owner != dev) {
521 usb_log_error("Device %d tried to release address, which is not reserved for it.", dev->address);
522 } else {
523 bus->default_address_owner = NULL;
524 }
525 fibril_mutex_unlock(&bus->guard);
[41924f30]526}
527
[1102eca]528/**
529 * Initiate a transfer on the bus. Finds the target endpoint, creates
530 * a transfer batch and schedules it.
531 *
[32fb6bce]532 * @param device Device for which to send the batch
[1102eca]533 * @param target The target of the transfer.
534 * @param direction A direction of the transfer.
535 * @param data A pointer to the data buffer.
536 * @param size Size of the data buffer.
537 * @param setup_data Data to use in the setup stage (Control communication type)
538 * @param on_complete Callback which is called after the batch is complete
[32fb6bce]539 * @param arg Callback parameter.
540 * @param name Communication identifier (for nicer output).
541 * @return Error code.
542 */
543int bus_device_send_batch(device_t *device, usb_target_t target,
544 usb_direction_t direction, char *data, size_t size, uint64_t setup_data,
545 usbhc_iface_transfer_callback_t on_complete, void *arg, const char *name)
546{
547 assert(device->address == target.address);
548
549 /* Temporary reference */
[1ed3eb4]550 endpoint_t *ep = bus_find_endpoint(device, target.endpoint, direction);
[32fb6bce]551 if (ep == NULL) {
[a1732929]552 usb_log_error("Endpoint(%d:%d) not registered for %s.",
[32fb6bce]553 device->address, target.endpoint, name);
554 return ENOENT;
555 }
556
557 assert(ep->device == device);
558
559 const int err = endpoint_send_batch(ep, target, direction, data, size, setup_data,
560 on_complete, arg, name);
561
562 /* Temporary reference */
563 endpoint_del_ref(ep);
564
565 return err;
566}
567
568typedef struct {
569 fibril_mutex_t done_mtx;
570 fibril_condvar_t done_cv;
571 unsigned done;
572
573 size_t transfered_size;
574 int error;
575} sync_data_t;
576
[1102eca]577/**
578 * Callback for finishing the transfer. Wake the issuing thread.
579 */
[32fb6bce]580static int sync_transfer_complete(void *arg, int error, size_t transfered_size)
581{
582 sync_data_t *d = arg;
583 assert(d);
584 d->transfered_size = transfered_size;
585 d->error = error;
586 fibril_mutex_lock(&d->done_mtx);
587 d->done = 1;
588 fibril_condvar_broadcast(&d->done_cv);
589 fibril_mutex_unlock(&d->done_mtx);
590 return EOK;
591}
592
[1102eca]593/**
594 * Issue a transfer on the bus, wait for result.
595 *
596 * @param device Device for which to send the batch
597 * @param target The target of the transfer.
598 * @param direction A direction of the transfer.
599 * @param data A pointer to the data buffer.
600 * @param size Size of the data buffer.
601 * @param setup_data Data to use in the setup stage (Control communication type)
602 * @param name Communication identifier (for nicer output).
603 */
[32fb6bce]604ssize_t bus_device_send_batch_sync(device_t *device, usb_target_t target,
605 usb_direction_t direction, char *data, size_t size, uint64_t setup_data,
606 const char *name)
607{
608 sync_data_t sd = { .done = 0 };
609 fibril_mutex_initialize(&sd.done_mtx);
610 fibril_condvar_initialize(&sd.done_cv);
611
612 const int ret = bus_device_send_batch(device, target, direction,
613 data, size, setup_data,
614 sync_transfer_complete, &sd, name);
615 if (ret != EOK)
616 return ret;
617
618 fibril_mutex_lock(&sd.done_mtx);
619 while (!sd.done) {
[1102eca]620 fibril_condvar_wait(&sd.done_cv, &sd.done_mtx);
[32fb6bce]621 }
622 fibril_mutex_unlock(&sd.done_mtx);
623
624 return (sd.error == EOK)
625 ? (ssize_t) sd.transfered_size
626 : (ssize_t) sd.error;
627}
628
[41924f30]629/**
630 * @}
631 */
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