source: mainline/uspace/drv/ohci/root_hub.c@ b2387c2

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since b2387c2 was b2387c2, checked in by Matus Dekanek <smekideki@…>, 14 years ago

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Line 
1/*
2 * Copyright (c) 2011 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/** @addtogroup drvusbohci
29 * @{
30 */
31/** @file
32 * @brief OHCI driver
33 */
34#include <assert.h>
35#include <errno.h>
36#include <str_error.h>
37
38#include <usb/debug.h>
39
40#include "root_hub.h"
41#include <usb/classes/classes.h>
42#include <usb/dev/driver.h>
43#include "ohci_regs.h"
44
45#include <usb/dev/request.h>
46#include <usb/classes/hub.h>
47
48/**
49 * standart device descriptor for ohci root hub
50 */
51static const usb_standard_device_descriptor_t ohci_rh_device_descriptor = {
52 .configuration_count = 1,
53 .descriptor_type = USB_DESCTYPE_DEVICE,
54 .device_class = USB_CLASS_HUB,
55 .device_protocol = 0,
56 .device_subclass = 0,
57 .device_version = 0,
58 .length = sizeof (usb_standard_device_descriptor_t),
59 .max_packet_size = 8,
60 .vendor_id = 0x16db,
61 .product_id = 0x0001,
62 .str_serial_number = 0,
63 .usb_spec_version = 0x110,
64};
65
66/**
67 * standart configuration descriptor with filled common values
68 * for ohci root hubs
69 */
70static const usb_standard_configuration_descriptor_t ohci_rh_conf_descriptor = {
71 .attributes = 1 << 7,
72 .configuration_number = 1,
73 .descriptor_type = USB_DESCTYPE_CONFIGURATION,
74 .interface_count = 1,
75 .length = sizeof (usb_standard_configuration_descriptor_t),
76 .max_power = 100,
77 .str_configuration = 0,
78};
79
80/**
81 * standart ohci root hub interface descriptor
82 */
83static const usb_standard_interface_descriptor_t ohci_rh_iface_descriptor = {
84 .alternate_setting = 0,
85 .descriptor_type = USB_DESCTYPE_INTERFACE,
86 .endpoint_count = 1,
87 .interface_class = USB_CLASS_HUB,
88 .interface_number = 1,
89 .interface_protocol = 0,
90 .interface_subclass = 0,
91 .length = sizeof (usb_standard_interface_descriptor_t),
92 .str_interface = 0,
93};
94
95/**
96 * standart ohci root hub endpoint descriptor
97 */
98static const usb_standard_endpoint_descriptor_t ohci_rh_ep_descriptor = {
99 .attributes = USB_TRANSFER_INTERRUPT,
100 .descriptor_type = USB_DESCTYPE_ENDPOINT,
101 .endpoint_address = 1 + (1 << 7),
102 .length = sizeof (usb_standard_endpoint_descriptor_t),
103 .max_packet_size = 8,
104 .poll_interval = 255,
105};
106
107/**
108 * bitmask of hub features that are valid to be cleared
109 */
110static const uint32_t hub_clear_feature_valid_mask =
111 RHS_OCIC_FLAG |
112 RHS_CLEAR_PORT_POWER;
113
114/**
115 * bitmask of hub features that are cleared by writing 1 (and not 0)
116 */
117static const uint32_t hub_clear_feature_by_writing_one_mask =
118 RHS_CLEAR_PORT_POWER;
119
120/**
121 * bitmask of hub features that are valid to be set
122 */
123static const uint32_t hub_set_feature_valid_mask =
124 RHS_LPSC_FLAG |
125 RHS_OCIC_FLAG;
126
127/**
128 * bitmask of hub features that are set by writing 1 and cleared by writing 0
129 */
130static const uint32_t hub_set_feature_direct_mask =
131 RHS_SET_PORT_POWER;
132
133/**
134 * bitmask of port features that are valid to be set
135 */
136static const uint32_t port_set_feature_valid_mask =
137 RHPS_SET_PORT_ENABLE |
138 RHPS_SET_PORT_SUSPEND |
139 RHPS_SET_PORT_RESET |
140 RHPS_SET_PORT_POWER;
141
142/**
143 * bitmask of port features that can be cleared
144 */
145static const uint32_t port_clear_feature_valid_mask =
146 RHPS_CCS_FLAG |
147 RHPS_SET_PORT_SUSPEND |
148 RHPS_POCI_FLAG |
149 RHPS_SET_PORT_POWER |
150 RHPS_CSC_FLAG |
151 RHPS_PESC_FLAG |
152 RHPS_PSSC_FLAG |
153 RHPS_OCIC_FLAG |
154 RHPS_PRSC_FLAG;
155
156//note that USB_HUB_FEATURE_PORT_POWER bit is translated into
157//USB_HUB_FEATURE_PORT_LOW_SPEED for port set feature request
158
159/**
160 * bitmask with port status changes
161 */
162static const uint32_t port_status_change_mask = RHPS_CHANGE_WC_MASK;
163
164static int create_serialized_hub_descriptor(rh_t *instance);
165
166static int rh_init_descriptors(rh_t *instance);
167
168static int process_get_port_status_request(rh_t *instance, uint16_t port,
169 usb_transfer_batch_t * request);
170
171static int process_get_hub_status_request(rh_t *instance,
172 usb_transfer_batch_t * request);
173
174static int process_get_status_request(rh_t *instance,
175 usb_transfer_batch_t * request);
176
177static void create_interrupt_mask_in_instance(rh_t *instance);
178
179static int process_get_descriptor_request(rh_t *instance,
180 usb_transfer_batch_t *request);
181
182static int process_get_configuration_request(rh_t *instance,
183 usb_transfer_batch_t *request);
184
185static int process_hub_feature_set_request(rh_t *instance, uint16_t feature);
186
187static int process_hub_feature_clear_request(rh_t *instance,
188 uint16_t feature);
189
190static int process_port_feature_set_request(rh_t *instance,
191 uint16_t feature, uint16_t port);
192
193static int process_port_feature_clear_request(rh_t *instance,
194 uint16_t feature, uint16_t port);
195
196static int process_address_set_request(rh_t *instance,
197 uint16_t address);
198
199static int process_request_with_output(rh_t *instance,
200 usb_transfer_batch_t *request);
201
202static int process_request_with_input(rh_t *instance,
203 usb_transfer_batch_t *request);
204
205static int process_request_without_data(rh_t *instance,
206 usb_transfer_batch_t *request);
207
208static int process_ctrl_request(rh_t *instance, usb_transfer_batch_t *request);
209
210static int process_interrupt_mask_in_instance(rh_t *instance, usb_transfer_batch_t * request);
211
212static bool is_zeros(void * buffer, size_t size);
213
214/** Root hub initialization
215 * @return Error code.
216 */
217int rh_init(rh_t *instance, ohci_regs_t *regs) {
218 assert(instance);
219 instance->registers = regs;
220 instance->port_count =
221 (instance->registers->rh_desc_a >> RHDA_NDS_SHIFT) & RHDA_NDS_MASK;
222 int opResult = rh_init_descriptors(instance);
223 if (opResult != EOK) {
224 return opResult;
225 }
226 // set port power mode to no-power-switching
227 instance->registers->rh_desc_a |= RHDA_NPS_FLAG;
228 instance->unfinished_interrupt_transfer = NULL;
229 instance->interrupt_mask_size = (instance->port_count + 8) / 8;
230 instance->interrupt_buffer = malloc(instance->interrupt_mask_size);
231 if (!instance->interrupt_buffer)
232 return ENOMEM;
233
234 usb_log_info("OHCI root hub with %zu ports initialized.\n",
235 instance->port_count);
236
237 return EOK;
238}
239/*----------------------------------------------------------------------------*/
240
241/**
242 * process root hub request
243 *
244 * @param instance root hub instance
245 * @param request structure containing both request and response information
246 * @return error code
247 */
248int rh_request(rh_t *instance, usb_transfer_batch_t *request) {
249 assert(instance);
250 assert(request);
251 int opResult;
252 if (request->ep->transfer_type == USB_TRANSFER_CONTROL) {
253 usb_log_info("Root hub got CONTROL packet\n");
254 opResult = process_ctrl_request(instance, request);
255 usb_transfer_batch_finish_error(request, opResult);
256 } else if (request->ep->transfer_type == USB_TRANSFER_INTERRUPT) {
257 usb_log_info("Root hub got INTERRUPT packet\n");
258 create_interrupt_mask_in_instance(instance);
259 if (is_zeros(instance->interrupt_buffer,
260 instance->interrupt_mask_size)) {
261 usb_log_debug("no changes..\n");
262 instance->unfinished_interrupt_transfer = request;
263 //will be finished later
264 } else {
265 usb_log_debug("processing changes..\n");
266 process_interrupt_mask_in_instance(instance, request);
267 }
268 opResult = EOK;
269 } else {
270
271 opResult = EINVAL;
272 usb_transfer_batch_finish_error(request, opResult);
273 }
274 return EOK;
275}
276
277/*----------------------------------------------------------------------------*/
278
279/**
280 * process interrupt on a hub
281 *
282 * If there is no pending interrupt transfer, nothing happens.
283 * @param instance
284 */
285void rh_interrupt(rh_t *instance) {
286 if (!instance->unfinished_interrupt_transfer) {
287 return;
288 }
289 usb_log_debug("finalizing interrupt transfer\n");
290 create_interrupt_mask_in_instance(instance);
291 process_interrupt_mask_in_instance(instance,
292 instance->unfinished_interrupt_transfer);
293}
294/*----------------------------------------------------------------------------*/
295
296/**
297 * Create hub descriptor used in hub-driver <-> hub communication
298 *
299 * This means creating byt array from data in root hub registers. For more
300 * info see usb hub specification.
301 *
302 * @param instance root hub instance
303 * @return error code
304 */
305static int create_serialized_hub_descriptor(rh_t *instance) {
306 size_t size = 7 +
307 ((instance->port_count + 7) / 8) * 2;
308 size_t var_size = (instance->port_count + 7) / 8;
309 uint8_t * result = (uint8_t*) malloc(size);
310 if (!result) return ENOMEM;
311
312 bzero(result, size);
313 //size
314 result[0] = size;
315 //descriptor type
316 result[1] = USB_DESCTYPE_HUB;
317 result[2] = instance->port_count;
318 uint32_t hub_desc_reg = instance->registers->rh_desc_a;
319 result[3] =
320 ((hub_desc_reg >> 8) % 2) +
321 (((hub_desc_reg >> 9) % 2) << 1) +
322 (((hub_desc_reg >> 10) % 2) << 2) +
323 (((hub_desc_reg >> 11) % 2) << 3) +
324 (((hub_desc_reg >> 12) % 2) << 4);
325 result[4] = 0;
326 result[5] = /*descriptor->pwr_on_2_good_time*/ 50;
327 result[6] = 50;
328
329 size_t port;
330 for (port = 1; port <= instance->port_count; ++port) {
331 uint8_t is_non_removable =
332 instance->registers->rh_desc_b >> port % 2;
333 result[7 + port / 8] +=
334 is_non_removable << (port % 8);
335 }
336 size_t i;
337 for (i = 0; i < var_size; ++i) {
338 result[7 + var_size + i] = 255;
339 }
340 instance->hub_descriptor = result;
341 instance->descriptor_size = size;
342
343 return EOK;
344}
345/*----------------------------------------------------------------------------*/
346
347/** initialize hub descriptors
348 *
349 * Initialized are device and full configuration descriptor. These need to
350 * be initialized only once per hub.
351 * @instance root hub instance
352 * @return error code
353 */
354static int rh_init_descriptors(rh_t *instance) {
355 memcpy(&instance->descriptors.device, &ohci_rh_device_descriptor,
356 sizeof (ohci_rh_device_descriptor)
357 );
358 usb_standard_configuration_descriptor_t descriptor;
359 memcpy(&descriptor, &ohci_rh_conf_descriptor,
360 sizeof (ohci_rh_conf_descriptor));
361
362 int opResult = create_serialized_hub_descriptor(instance);
363 if (opResult != EOK) {
364 return opResult;
365 }
366 descriptor.total_length =
367 sizeof (usb_standard_configuration_descriptor_t) +
368 sizeof (usb_standard_endpoint_descriptor_t) +
369 sizeof (usb_standard_interface_descriptor_t) +
370 instance->descriptor_size;
371
372 uint8_t * full_config_descriptor =
373 (uint8_t*) malloc(descriptor.total_length);
374 if (!full_config_descriptor) {
375 return ENOMEM;
376 }
377 memcpy(full_config_descriptor, &descriptor, sizeof (descriptor));
378 memcpy(full_config_descriptor + sizeof (descriptor),
379 &ohci_rh_iface_descriptor, sizeof (ohci_rh_iface_descriptor));
380 memcpy(full_config_descriptor + sizeof (descriptor) +
381 sizeof (ohci_rh_iface_descriptor),
382 &ohci_rh_ep_descriptor, sizeof (ohci_rh_ep_descriptor));
383 memcpy(full_config_descriptor + sizeof (descriptor) +
384 sizeof (ohci_rh_iface_descriptor) +
385 sizeof (ohci_rh_ep_descriptor),
386 instance->hub_descriptor, instance->descriptor_size);
387
388 instance->descriptors.configuration = full_config_descriptor;
389 instance->descriptors.configuration_size = descriptor.total_length;
390
391 return EOK;
392}
393/*----------------------------------------------------------------------------*/
394
395/**
396 * create answer to port status_request
397 *
398 * Copy content of corresponding port status register to answer buffer. The
399 * format of the port status register and port status data is the same (
400 * see OHCI root hub and USB hub documentation).
401 *
402 * @param instance root hub instance
403 * @param port port number, counted from 1
404 * @param request structure containing both request and response information
405 * @return error code
406 */
407static int process_get_port_status_request(rh_t *instance, uint16_t port,
408 usb_transfer_batch_t * request) {
409 if (port < 1 || port > instance->port_count)
410 return EINVAL;
411 request->transfered_size = 4;
412 uint32_t data = instance->registers->rh_port_status[port - 1];
413 memcpy(request->data_buffer, &data, 4);
414#if 0
415 int i;
416 for (i = 0; i < instance->port_count; ++i) {
417
418 usb_log_debug("port status %d,x%x\n",
419 instance->registers->rh_port_status[i],
420 instance->registers->rh_port_status[i]);
421 }
422#endif
423 return EOK;
424}
425/*----------------------------------------------------------------------------*/
426
427/**
428 * create answer to port status_request
429 *
430 * This copies flags in hub status register into the buffer. The format of the
431 * status register and status message is the same, according to USB hub
432 * specification and OHCI root hub specification.
433 *
434 * @param instance root hub instance
435 * @param request structure containing both request and response information
436 * @return error code
437 */
438static int process_get_hub_status_request(rh_t *instance,
439 usb_transfer_batch_t * request) {
440 //uint32_t * uint32_buffer = (uint32_t*) request->data_buffer;
441 request->transfered_size = 4;
442 //bits, 0,1,16,17
443 uint32_t mask = 1 | (1 << 1) | (1 << 16) | (1 << 17);
444 uint32_t data = mask & instance->registers->rh_status;
445 //uint32_buffer[0] = mask & instance->registers->rh_status;
446 memcpy(request->data_buffer, &data, 4);
447
448 return EOK;
449}
450/*----------------------------------------------------------------------------*/
451
452/**
453 * create answer to status request
454 *
455 * This might be either hub status or port status request. If neither,
456 * ENOTSUP is returned.
457 * @param instance root hub instance
458 * @param request structure containing both request and response information
459 * @return error code
460 */
461static int process_get_status_request(rh_t *instance,
462 usb_transfer_batch_t * request) {
463 size_t buffer_size = request->buffer_size;
464 usb_device_request_setup_packet_t * request_packet =
465 (usb_device_request_setup_packet_t*)
466 request->setup_buffer;
467
468 usb_hub_bm_request_type_t request_type = request_packet->request_type;
469 if (buffer_size < 4) {
470 usb_log_warning("requested more data than buffer size\n");
471 return EINVAL;
472 }
473
474 if (request_type == USB_HUB_REQ_TYPE_GET_HUB_STATUS)
475 return process_get_hub_status_request(instance, request);
476 if (request_type == USB_HUB_REQ_TYPE_GET_PORT_STATUS)
477 return process_get_port_status_request(instance,
478 request_packet->index,
479 request);
480
481 return ENOTSUP;
482}
483/*----------------------------------------------------------------------------*/
484
485/**
486 * create answer to status interrupt consisting of change bitmap
487 *
488 * Result contains bitmap where bit 0 indicates change on hub and
489 * bit i indicates change on i`th port (i>0). For more info see
490 * Hub and Port status bitmap specification in USB specification
491 * (chapter 11.13.4).
492 * Uses instance`s interrupt buffer to store the interrupt information.
493 * @param instance root hub instance
494 */
495static void create_interrupt_mask_in_instance(rh_t * instance) {
496 uint8_t * bitmap = (uint8_t*) (instance->interrupt_buffer);
497 uint32_t mask = (1 << (USB_HUB_FEATURE_C_HUB_LOCAL_POWER + 16))
498 | (1 << (USB_HUB_FEATURE_C_HUB_OVER_CURRENT + 16));
499 bzero(bitmap, instance->interrupt_mask_size);
500 if ((instance->registers->rh_status & mask) != 0) {
501 bitmap[0] = 1;
502 }
503 size_t port;
504 mask = port_status_change_mask;
505 for (port = 1; port <= instance->port_count; ++port) {
506 if ((mask & instance->registers->rh_port_status[port - 1]) != 0) {
507
508 bitmap[(port) / 8] += 1 << (port % 8);
509 }
510 }
511}
512/*----------------------------------------------------------------------------*/
513
514/**
515 * create answer to a descriptor request
516 *
517 * This might be a request for standard (configuration, device, endpoint or
518 * interface) or device specific (hub) descriptor.
519 * @param instance root hub instance
520 * @param request structure containing both request and response information
521 * @return error code
522 */
523static int process_get_descriptor_request(rh_t *instance,
524 usb_transfer_batch_t *request) {
525 usb_device_request_setup_packet_t * setup_request =
526 (usb_device_request_setup_packet_t*) request->setup_buffer;
527 size_t size;
528 const void * result_descriptor = NULL;
529 const uint16_t setup_request_value = setup_request->value_high;
530 //(setup_request->value_low << 8);
531 switch (setup_request_value) {
532 case USB_DESCTYPE_HUB:
533 {
534 usb_log_debug("USB_DESCTYPE_HUB\n");
535 result_descriptor = instance->hub_descriptor;
536 size = instance->descriptor_size;
537 break;
538 }
539 case USB_DESCTYPE_DEVICE:
540 {
541 usb_log_debug("USB_DESCTYPE_DEVICE\n");
542 result_descriptor = &ohci_rh_device_descriptor;
543 size = sizeof (ohci_rh_device_descriptor);
544 break;
545 }
546 case USB_DESCTYPE_CONFIGURATION:
547 {
548 usb_log_debug("USB_DESCTYPE_CONFIGURATION\n");
549 result_descriptor = instance->descriptors.configuration;
550 size = instance->descriptors.configuration_size;
551 break;
552 }
553 case USB_DESCTYPE_INTERFACE:
554 {
555 usb_log_debug("USB_DESCTYPE_INTERFACE\n");
556 result_descriptor = &ohci_rh_iface_descriptor;
557 size = sizeof (ohci_rh_iface_descriptor);
558 break;
559 }
560 case USB_DESCTYPE_ENDPOINT:
561 {
562 usb_log_debug("USB_DESCTYPE_ENDPOINT\n");
563 result_descriptor = &ohci_rh_ep_descriptor;
564 size = sizeof (ohci_rh_ep_descriptor);
565 break;
566 }
567 default:
568 {
569 usb_log_debug("USB_DESCTYPE_EINVAL %d \n",
570 setup_request->value);
571 usb_log_debug("\ttype %d\n\trequest %d\n\tvalue "
572 "%d\n\tindex %d\n\tlen %d\n ",
573 setup_request->request_type,
574 setup_request->request,
575 setup_request_value,
576 setup_request->index,
577 setup_request->length
578 );
579 return EINVAL;
580 }
581 }
582 if (request->buffer_size < size) {
583 size = request->buffer_size;
584 }
585 request->transfered_size = size;
586 memcpy(request->data_buffer, result_descriptor, size);
587
588 return EOK;
589}
590/*----------------------------------------------------------------------------*/
591
592/**
593 * answer to get configuration request
594 *
595 * Root hub works independently on the configuration.
596 * @param instance root hub instance
597 * @param request structure containing both request and response information
598 * @return error code
599 */
600static int process_get_configuration_request(rh_t *instance,
601 usb_transfer_batch_t *request) {
602 //set and get configuration requests do not have any meaning, only dummy
603 //values are returned
604 if (request->buffer_size != 1)
605 return EINVAL;
606 request->data_buffer[0] = 1;
607 request->transfered_size = 1;
608
609 return EOK;
610}
611/*----------------------------------------------------------------------------*/
612
613/**
614 * process feature-enabling request on hub
615 *
616 * @param instance root hub instance
617 * @param feature feature selector
618 * @return error code
619 */
620static int process_hub_feature_set_request(rh_t *instance,
621 uint16_t feature) {
622 if (!((1 << feature) & hub_set_feature_valid_mask))
623 return EINVAL;
624 if (feature == USB_HUB_FEATURE_C_HUB_LOCAL_POWER)
625 feature = USB_HUB_FEATURE_C_HUB_LOCAL_POWER << 16;
626 instance->registers->rh_status =
627 (instance->registers->rh_status | (1 << feature))
628 & (~hub_clear_feature_by_writing_one_mask);
629
630 return EOK;
631}
632/*----------------------------------------------------------------------------*/
633
634/**
635 * process feature-disabling request on hub
636 *
637 * @param instance root hub instance
638 * @param feature feature selector
639 * @return error code
640 */
641static int process_hub_feature_clear_request(rh_t *instance,
642 uint16_t feature) {
643 if (!((1 << feature) & hub_clear_feature_valid_mask))
644 return EINVAL;
645 //is the feature cleared directly?
646 if ((1 << feature) & hub_set_feature_direct_mask) {
647 instance->registers->rh_status =
648 (instance->registers->rh_status & (~(1 << feature)))
649 & (~hub_clear_feature_by_writing_one_mask);
650 } else {//the feature is cleared by writing '1'
651
652 instance->registers->rh_status =
653 (instance->registers->rh_status
654 & (~hub_clear_feature_by_writing_one_mask))
655 | (1 << feature);
656 }
657 return EOK;
658}
659/*----------------------------------------------------------------------------*/
660
661/**
662 * process feature-enabling request on hub
663 *
664 * @param instance root hub instance
665 * @param feature feature selector
666 * @param port port number, counted from 1
667 * @param enable enable or disable the specified feature
668 * @return error code
669 */
670static int process_port_feature_set_request(rh_t *instance,
671 uint16_t feature, uint16_t port) {
672 if (!((1 << feature) & port_set_feature_valid_mask))
673 return EINVAL;
674 if (port < 1 || port > instance->port_count)
675 return EINVAL;
676 instance->registers->rh_port_status[port - 1] =
677 (instance->registers->rh_port_status[port - 1] | (1 << feature))
678 & (~port_clear_feature_valid_mask);
679 return EOK;
680}
681/*----------------------------------------------------------------------------*/
682
683/**
684 * process feature-disabling request on hub
685 *
686 * @param instance root hub instance
687 * @param feature feature selector
688 * @param port port number, counted from 1
689 * @param enable enable or disable the specified feature
690 * @return error code
691 */
692static int process_port_feature_clear_request(rh_t *instance,
693 uint16_t feature, uint16_t port) {
694 if (!((1 << feature) & port_clear_feature_valid_mask))
695 return EINVAL;
696 if (port < 1 || port > instance->port_count)
697 return EINVAL;
698 if (feature == USB_HUB_FEATURE_PORT_POWER)
699 feature = USB_HUB_FEATURE_PORT_LOW_SPEED;
700 if (feature == USB_HUB_FEATURE_PORT_SUSPEND)
701 feature = USB_HUB_FEATURE_PORT_OVER_CURRENT;
702 instance->registers->rh_port_status[port - 1] =
703 (instance->registers->rh_port_status[port - 1]
704 & (~port_clear_feature_valid_mask))
705 | (1 << feature);
706
707 return EOK;
708}
709/*----------------------------------------------------------------------------*/
710
711/**
712 * register address to this device
713 *
714 * @param instance root hub instance
715 * @param address new address
716 * @return error code
717 */
718static int process_address_set_request(rh_t *instance,
719 uint16_t address) {
720 instance->address = address;
721
722 return EOK;
723}
724/*----------------------------------------------------------------------------*/
725
726/**
727 * process one of requests that requere output data
728 *
729 * Request can be one of USB_DEVREQ_GET_STATUS, USB_DEVREQ_GET_DESCRIPTOR or
730 * USB_DEVREQ_GET_CONFIGURATION.
731 * @param instance root hub instance
732 * @param request structure containing both request and response information
733 * @return error code
734 */
735static int process_request_with_output(rh_t *instance,
736 usb_transfer_batch_t *request) {
737 usb_device_request_setup_packet_t * setup_request =
738 (usb_device_request_setup_packet_t*) request->setup_buffer;
739 if (setup_request->request == USB_DEVREQ_GET_STATUS) {
740 usb_log_debug("USB_DEVREQ_GET_STATUS\n");
741 return process_get_status_request(instance, request);
742 }
743 if (setup_request->request == USB_DEVREQ_GET_DESCRIPTOR) {
744 usb_log_debug("USB_DEVREQ_GET_DESCRIPTOR\n");
745 return process_get_descriptor_request(instance, request);
746 }
747 if (setup_request->request == USB_DEVREQ_GET_CONFIGURATION) {
748 usb_log_debug("USB_DEVREQ_GET_CONFIGURATION\n");
749
750 return process_get_configuration_request(instance, request);
751 }
752 return ENOTSUP;
753}
754/*----------------------------------------------------------------------------*/
755
756/**
757 * process one of requests that carry input data
758 *
759 * Request can be one of USB_DEVREQ_SET_DESCRIPTOR or
760 * USB_DEVREQ_SET_CONFIGURATION.
761 * @param instance root hub instance
762 * @param request structure containing both request and response information
763 * @return error code
764 */
765static int process_request_with_input(rh_t *instance,
766 usb_transfer_batch_t *request) {
767 usb_device_request_setup_packet_t * setup_request =
768 (usb_device_request_setup_packet_t*) request->setup_buffer;
769 request->transfered_size = 0;
770 if (setup_request->request == USB_DEVREQ_SET_DESCRIPTOR) {
771 return ENOTSUP;
772 }
773 if (setup_request->request == USB_DEVREQ_SET_CONFIGURATION) {
774 //set and get configuration requests do not have any meaning,
775 //only dummy values are returned
776
777 return EOK;
778 }
779 return ENOTSUP;
780}
781/*----------------------------------------------------------------------------*/
782
783/**
784 * process one of requests that do not request nor carry additional data
785 *
786 * Request can be one of USB_DEVREQ_CLEAR_FEATURE, USB_DEVREQ_SET_FEATURE or
787 * USB_DEVREQ_SET_ADDRESS.
788 * @param instance root hub instance
789 * @param request structure containing both request and response information
790 * @return error code
791 */
792static int process_request_without_data(rh_t *instance,
793 usb_transfer_batch_t *request) {
794 usb_device_request_setup_packet_t * setup_request =
795 (usb_device_request_setup_packet_t*) request->setup_buffer;
796 request->transfered_size = 0;
797 if (setup_request->request == USB_DEVREQ_CLEAR_FEATURE) {
798 if (setup_request->request_type == USB_HUB_REQ_TYPE_SET_HUB_FEATURE) {
799 usb_log_debug("USB_HUB_REQ_TYPE_SET_HUB_FEATURE\n");
800 return process_hub_feature_clear_request(instance,
801 setup_request->value);
802 }
803 if (setup_request->request_type == USB_HUB_REQ_TYPE_SET_PORT_FEATURE) {
804 usb_log_debug("USB_HUB_REQ_TYPE_SET_PORT_FEATURE\n");
805 return process_port_feature_clear_request(instance,
806 setup_request->value,
807 setup_request->index);
808 }
809 usb_log_debug("USB_HUB_REQ_TYPE_INVALID %d\n",
810 setup_request->request_type);
811 return EINVAL;
812 }
813 if (setup_request->request == USB_DEVREQ_SET_FEATURE) {
814 if (setup_request->request_type == USB_HUB_REQ_TYPE_SET_HUB_FEATURE) {
815 usb_log_debug("USB_HUB_REQ_TYPE_SET_HUB_FEATURE\n");
816 return process_hub_feature_set_request(instance,
817 setup_request->value);
818 }
819 if (setup_request->request_type == USB_HUB_REQ_TYPE_SET_PORT_FEATURE) {
820 usb_log_debug("USB_HUB_REQ_TYPE_SET_PORT_FEATURE\n");
821 return process_port_feature_set_request(instance,
822 setup_request->value,
823 setup_request->index);
824 }
825 usb_log_debug("USB_HUB_REQ_TYPE_INVALID %d\n",
826 setup_request->request_type);
827 return EINVAL;
828 }
829 if (setup_request->request == USB_DEVREQ_SET_ADDRESS) {
830 usb_log_debug("USB_DEVREQ_SET_ADDRESS\n");
831 return process_address_set_request(instance,
832 setup_request->value);
833 }
834 usb_log_debug("USB_DEVREQ_SET_ENOTSUP %d\n",
835 setup_request->request_type);
836
837 return ENOTSUP;
838}
839/*----------------------------------------------------------------------------*/
840
841/**
842 * process hub control request
843 *
844 * If needed, writes answer into the request structure.
845 * Request can be one of
846 * USB_DEVREQ_GET_STATUS,
847 * USB_DEVREQ_GET_DESCRIPTOR,
848 * USB_DEVREQ_GET_CONFIGURATION,
849 * USB_DEVREQ_CLEAR_FEATURE,
850 * USB_DEVREQ_SET_FEATURE,
851 * USB_DEVREQ_SET_ADDRESS,
852 * USB_DEVREQ_SET_DESCRIPTOR or
853 * USB_DEVREQ_SET_CONFIGURATION.
854 *
855 * @param instance root hub instance
856 * @param request structure containing both request and response information
857 * @return error code
858 */
859static int process_ctrl_request(rh_t *instance, usb_transfer_batch_t *request) {
860 if (!request->setup_buffer) {
861 usb_log_error("root hub received empty transaction?");
862 return EINVAL;
863 }
864 int opResult;
865 if (sizeof (usb_device_request_setup_packet_t) > request->setup_size) {
866 usb_log_error("setup packet too small\n");
867 return EINVAL;
868 }
869 usb_log_info("CTRL packet: %s.\n",
870 usb_debug_str_buffer(
871 (const uint8_t *) request->setup_buffer, 8, 8));
872 usb_device_request_setup_packet_t * setup_request =
873 (usb_device_request_setup_packet_t*)
874 request->setup_buffer;
875 switch (setup_request->request) {
876 case USB_DEVREQ_GET_STATUS:
877 case USB_DEVREQ_GET_DESCRIPTOR:
878 case USB_DEVREQ_GET_CONFIGURATION:
879 usb_log_debug("processing request with output\n");
880 opResult = process_request_with_output(
881 instance, request);
882 break;
883 case USB_DEVREQ_CLEAR_FEATURE:
884 case USB_DEVREQ_SET_FEATURE:
885 case USB_DEVREQ_SET_ADDRESS:
886 usb_log_debug("processing request without "
887 "additional data\n");
888 opResult = process_request_without_data(
889 instance, request);
890 break;
891 case USB_DEVREQ_SET_DESCRIPTOR:
892 case USB_DEVREQ_SET_CONFIGURATION:
893 usb_log_debug("processing request with "
894 "input\n");
895 opResult = process_request_with_input(
896 instance, request);
897
898 break;
899 default:
900 usb_log_warning("received unsuported request: "
901 "%d\n",
902 setup_request->request
903 );
904 opResult = ENOTSUP;
905 }
906 return opResult;
907}
908/*----------------------------------------------------------------------------*/
909
910/**
911 * process hanging interrupt request
912 *
913 * If an interrupt transfer has been received and there was no change,
914 * the driver stores the transfer information and waits for change to occcur.
915 * This routine is called when that happens and it finalizes the interrupt
916 * transfer.
917 *
918 * @param instance hub instance
919 * @param request batch request to be processed
920 *
921 * @return
922 */
923static int process_interrupt_mask_in_instance(rh_t *instance,
924 usb_transfer_batch_t * request) {
925 memcpy(request->data_buffer, instance->interrupt_buffer,
926 instance->interrupt_mask_size);
927 request->transfered_size = instance->interrupt_mask_size;
928 instance->unfinished_interrupt_transfer = NULL;
929 usb_transfer_batch_finish_error(request, EOK);
930
931 return EOK;
932}
933
934/*----------------------------------------------------------------------------*/
935
936/**
937 * return whether the buffer is full of zeros
938 *
939 * Convenience function.
940 * @param buffer
941 * @param size
942 * @return
943 */
944static bool is_zeros(void *buffer, size_t size) {
945 if (!buffer) return true;
946 if (!size) return true;
947 size_t i;
948 for (i = 0; i < size; ++i) {
949 if (((char*) buffer)[i])
950 return false;
951 }
952 return true;
953}
954
955/**
956 * @}
957 */
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