source: mainline/uspace/drv/usbkbd/kbddev.c@ 7f2e33a

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 7f2e33a was 7f2e33a, checked in by Lubos Slovak <lubos.slovak@…>, 14 years ago

Fixed requested Report ID, some debugging stuff.

  • Property mode set to 100644
File size: 28.8 KB
Line 
1/*
2 * Copyright (c) 2011 Lubos Slovak
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 drvusbhid
30 * @{
31 */
32/**
33 * @file
34 * USB HID keyboard device structure and API.
35 */
36
37#include <errno.h>
38#include <str_error.h>
39#include <stdio.h>
40
41#include <io/keycode.h>
42#include <ipc/kbd.h>
43#include <async.h>
44#include <fibril.h>
45#include <fibril_synch.h>
46
47#include <usb/usb.h>
48#include <usb/dp.h>
49#include <usb/request.h>
50#include <usb/classes/hid.h>
51#include <usb/pipes.h>
52#include <usb/debug.h>
53#include <usb/classes/hidparser.h>
54#include <usb/classes/classes.h>
55#include <usb/classes/hidut.h>
56#include <usb/classes/hidreq.h>
57#include <usb/classes/hidreport.h>
58#include <usb/classes/hid/utled.h>
59
60#include <usb/devdrv.h>
61
62#include "kbddev.h"
63
64#include "layout.h"
65#include "conv.h"
66#include "kbdrepeat.h"
67
68/*----------------------------------------------------------------------------*/
69/** Default modifiers when the keyboard is initialized. */
70static const unsigned DEFAULT_ACTIVE_MODS = KM_NUM_LOCK;
71
72///** Boot protocol report size (key part). */
73//static const size_t BOOTP_REPORT_SIZE = 6;
74
75///** Boot protocol total report size. */
76//static const size_t BOOTP_BUFFER_SIZE = 8;
77
78///** Boot protocol output report size. */
79//static const size_t BOOTP_BUFFER_OUT_SIZE = 1;
80
81///** Boot protocol error key code. */
82//static const uint8_t BOOTP_ERROR_ROLLOVER = 1;
83static const uint8_t ERROR_ROLLOVER = 1;
84
85/** Default idle rate for keyboards. */
86static const uint8_t IDLE_RATE = 0;
87
88/** Delay before a pressed key starts auto-repeating. */
89static const unsigned int DEFAULT_DELAY_BEFORE_FIRST_REPEAT = 500 * 1000;
90
91/** Delay between two repeats of a pressed key when auto-repeating. */
92static const unsigned int DEFAULT_REPEAT_DELAY = 50 * 1000;
93
94/*----------------------------------------------------------------------------*/
95
96/** Keyboard polling endpoint description for boot protocol class. */
97static usb_endpoint_description_t boot_poll_endpoint_description = {
98 .transfer_type = USB_TRANSFER_INTERRUPT,
99 .direction = USB_DIRECTION_IN,
100 .interface_class = USB_CLASS_HID,
101 .interface_subclass = USB_HID_SUBCLASS_BOOT,
102 .interface_protocol = USB_HID_PROTOCOL_KEYBOARD,
103 .flags = 0
104};
105
106/* Array of endpoints expected on the device, NULL terminated. */
107usb_endpoint_description_t
108 *usb_kbd_endpoints[USB_KBD_POLL_EP_COUNT + 1] = {
109 &boot_poll_endpoint_description,
110 NULL
111};
112
113/*----------------------------------------------------------------------------*/
114
115enum {
116 BOOT_REPORT_DESCRIPTOR_SIZE = 63
117};
118
119static const uint8_t BOOT_REPORT_DESCRIPTOR[BOOT_REPORT_DESCRIPTOR_SIZE] = {
120 0x05, 0x01, // Usage Page (Generic Desktop),
121 0x09, 0x06, // Usage (Keyboard),
122 0xA1, 0x01, // Collection (Application),
123 0x75, 0x01, // Report Size (1),
124 0x95, 0x08, // Report Count (8),
125 0x05, 0x07, // Usage Page (Key Codes);
126 0x19, 0xE0, // Usage Minimum (224),
127 0x29, 0xE7, // Usage Maximum (231),
128 0x15, 0x00, // Logical Minimum (0),
129 0x25, 0x01, // Logical Maximum (1),
130 0x81, 0x02, // Input (Data, Variable, Absolute), ; Modifier byte
131 0x95, 0x01, // Report Count (1),
132 0x75, 0x08, // Report Size (8),
133 0x81, 0x01, // Input (Constant), ; Reserved byte
134 0x95, 0x05, // Report Count (5),
135 0x75, 0x01, // Report Size (1),
136 0x05, 0x08, // Usage Page (Page# for LEDs),
137 0x19, 0x01, // Usage Minimum (1),
138 0x29, 0x05, // Usage Maxmimum (5),
139 0x91, 0x02, // Output (Data, Variable, Absolute), ; LED report
140 0x95, 0x01, // Report Count (1),
141 0x75, 0x03, // Report Size (3),
142 0x91, 0x01, // Output (Constant), ; LED report padding
143 0x95, 0x06, // Report Count (6),
144 0x75, 0x08, // Report Size (8),
145 0x15, 0x00, // Logical Minimum (0),
146 0x25, 0xff, // Logical Maximum (255),
147 0x05, 0x07, // Usage Page (Key Codes),
148 0x19, 0x00, // Usage Minimum (0),
149 0x29, 0xff, // Usage Maximum (255),
150 0x81, 0x00, // Input (Data, Array), ; Key arrays (6 bytes)
151 0xC0 // End Collection
152
153};
154
155/*----------------------------------------------------------------------------*/
156
157typedef enum usb_kbd_flags {
158 USB_KBD_STATUS_UNINITIALIZED = 0,
159 USB_KBD_STATUS_INITIALIZED = 1,
160 USB_KBD_STATUS_TO_DESTROY = -1
161} usb_kbd_flags;
162
163/*----------------------------------------------------------------------------*/
164/* Keyboard layouts */
165/*----------------------------------------------------------------------------*/
166
167#define NUM_LAYOUTS 3
168
169/** Keyboard layout map. */
170static layout_op_t *layout[NUM_LAYOUTS] = {
171 &us_qwerty_op,
172 &us_dvorak_op,
173 &cz_op
174};
175
176static int active_layout = 0;
177
178/*----------------------------------------------------------------------------*/
179/* Modifier constants */
180/*----------------------------------------------------------------------------*/
181/** Mapping of USB modifier key codes to generic modifier key codes. */
182static const keycode_t usbhid_modifiers_keycodes[USB_HID_MOD_COUNT] = {
183 KC_LCTRL, /* USB_HID_MOD_LCTRL */
184 KC_LSHIFT, /* USB_HID_MOD_LSHIFT */
185 KC_LALT, /* USB_HID_MOD_LALT */
186 0, /* USB_HID_MOD_LGUI */
187 KC_RCTRL, /* USB_HID_MOD_RCTRL */
188 KC_RSHIFT, /* USB_HID_MOD_RSHIFT */
189 KC_RALT, /* USB_HID_MOD_RALT */
190 0, /* USB_HID_MOD_RGUI */
191};
192
193typedef enum usbhid_lock_code {
194 USB_KBD_LOCK_NUM = 0x53,
195 USB_KBD_LOCK_CAPS = 0x39,
196 USB_KBD_LOCK_SCROLL = 0x47,
197 USB_KBD_LOCK_COUNT = 3
198} usbhid_lock_code;
199
200static const usbhid_lock_code usbhid_lock_codes[USB_KBD_LOCK_COUNT] = {
201 USB_KBD_LOCK_NUM,
202 USB_KBD_LOCK_CAPS,
203 USB_KBD_LOCK_SCROLL
204};
205
206/*----------------------------------------------------------------------------*/
207/* IPC method handler */
208/*----------------------------------------------------------------------------*/
209
210static void default_connection_handler(ddf_fun_t *, ipc_callid_t, ipc_call_t *);
211ddf_dev_ops_t keyboard_ops = {
212 .default_handler = default_connection_handler
213};
214
215/**
216 * Default handler for IPC methods not handled by DDF.
217 *
218 * Currently recognizes only one method (IPC_M_CONNECT_TO_ME), in which case it
219 * assumes the caller is the console and thus it stores IPC phone to it for
220 * later use by the driver to notify about key events.
221 *
222 * @param fun Device function handling the call.
223 * @param icallid Call id.
224 * @param icall Call data.
225 */
226void default_connection_handler(ddf_fun_t *fun,
227 ipc_callid_t icallid, ipc_call_t *icall)
228{
229 sysarg_t method = IPC_GET_IMETHOD(*icall);
230
231 usb_kbd_t *kbd_dev = (usb_kbd_t *)fun->driver_data;
232 assert(kbd_dev != NULL);
233
234 if (method == IPC_M_CONNECT_TO_ME) {
235 int callback = IPC_GET_ARG5(*icall);
236
237 if (kbd_dev->console_phone != -1) {
238 async_answer_0(icallid, ELIMIT);
239 return;
240 }
241
242 kbd_dev->console_phone = callback;
243 async_answer_0(icallid, EOK);
244 return;
245 }
246
247 async_answer_0(icallid, EINVAL);
248}
249
250/*----------------------------------------------------------------------------*/
251/* Key processing functions */
252/*----------------------------------------------------------------------------*/
253/**
254 * Handles turning of LED lights on and off.
255 *
256 * In case of USB keyboards, the LEDs are handled in the driver, not in the
257 * device. When there should be a change (lock key was pressed), the driver
258 * uses a Set_Report request sent to the device to set the state of the LEDs.
259 *
260 * This functions sets the LED lights according to current settings of modifiers
261 * kept in the keyboard device structure.
262 *
263 * @param kbd_dev Keyboard device structure.
264 */
265static void usb_kbd_set_led(usb_kbd_t *kbd_dev)
266{
267 if (kbd_dev->output_size == 0) {
268 return;
269 }
270
271 unsigned i = 0;
272
273 /* Reset the LED data. */
274 memset(kbd_dev->led_data, 0, kbd_dev->led_output_size * sizeof(int32_t));
275
276 if ((kbd_dev->mods & KM_NUM_LOCK) && (i < kbd_dev->led_output_size)) {
277 kbd_dev->led_data[i++] = USB_HID_LED_NUM_LOCK;
278 }
279
280 if ((kbd_dev->mods & KM_CAPS_LOCK) && (i < kbd_dev->led_output_size)) {
281 kbd_dev->led_data[i++] = USB_HID_LED_CAPS_LOCK;
282 }
283
284 if ((kbd_dev->mods & KM_SCROLL_LOCK)
285 && (i < kbd_dev->led_output_size)) {
286 kbd_dev->led_data[i++] = USB_HID_LED_SCROLL_LOCK;
287 }
288
289 // TODO: COMPOSE and KANA
290
291 usb_log_debug("Creating output report.\n");
292
293 int rc = usb_hid_report_output_translate(kbd_dev->parser,
294 kbd_dev->led_path,
295 USB_HID_PATH_COMPARE_END | USB_HID_PATH_COMPARE_USAGE_PAGE_ONLY,
296 kbd_dev->output_buffer,
297 kbd_dev->output_size, kbd_dev->led_data, kbd_dev->led_output_size);
298
299 if (rc != EOK) {
300 usb_log_warning("Error translating LED output to output report"
301 ".\n");
302 return;
303 }
304
305 usb_log_debug("Output report buffer: %s\n",
306 usb_debug_str_buffer(kbd_dev->output_buffer, kbd_dev->output_size,
307 0));
308
309 usbhid_req_set_report(&kbd_dev->usb_dev->ctrl_pipe,
310 kbd_dev->usb_dev->interface_no, USB_HID_REPORT_TYPE_OUTPUT,
311 kbd_dev->output_buffer, kbd_dev->output_size);
312}
313
314/*----------------------------------------------------------------------------*/
315/**
316 * Processes key events.
317 *
318 * @note This function was copied from AT keyboard driver and modified to suit
319 * USB keyboard.
320 *
321 * @note Lock keys are not sent to the console, as they are completely handled
322 * in the driver. It may, however, be required later that the driver
323 * sends also these keys to application (otherwise it cannot use those
324 * keys at all).
325 *
326 * @param kbd_dev Keyboard device structure.
327 * @param type Type of the event (press / release). Recognized values:
328 * KEY_PRESS, KEY_RELEASE
329 * @param key Key code of the key according to HID Usage Tables.
330 */
331void usb_kbd_push_ev(usb_kbd_t *kbd_dev, int type, unsigned int key)
332{
333 console_event_t ev;
334 unsigned mod_mask;
335
336 /*
337 * These parts are copy-pasted from the AT keyboard driver.
338 *
339 * They definitely require some refactoring, but will keep it for later
340 * when the console and keyboard system is changed in HelenOS.
341 */
342 switch (key) {
343 case KC_LCTRL: mod_mask = KM_LCTRL; break;
344 case KC_RCTRL: mod_mask = KM_RCTRL; break;
345 case KC_LSHIFT: mod_mask = KM_LSHIFT; break;
346 case KC_RSHIFT: mod_mask = KM_RSHIFT; break;
347 case KC_LALT: mod_mask = KM_LALT; break;
348 case KC_RALT: mod_mask = KM_RALT; break;
349 default: mod_mask = 0; break;
350 }
351
352 if (mod_mask != 0) {
353 if (type == KEY_PRESS)
354 kbd_dev->mods = kbd_dev->mods | mod_mask;
355 else
356 kbd_dev->mods = kbd_dev->mods & ~mod_mask;
357 }
358
359 switch (key) {
360 case KC_CAPS_LOCK: mod_mask = KM_CAPS_LOCK; break;
361 case KC_NUM_LOCK: mod_mask = KM_NUM_LOCK; break;
362 case KC_SCROLL_LOCK: mod_mask = KM_SCROLL_LOCK; break;
363 default: mod_mask = 0; break;
364 }
365
366 if (mod_mask != 0) {
367 if (type == KEY_PRESS) {
368 /*
369 * Only change lock state on transition from released
370 * to pressed. This prevents autorepeat from messing
371 * up the lock state.
372 */
373 unsigned int locks_old = kbd_dev->lock_keys;
374
375 kbd_dev->mods =
376 kbd_dev->mods ^ (mod_mask & ~kbd_dev->lock_keys);
377 kbd_dev->lock_keys = kbd_dev->lock_keys | mod_mask;
378
379 /* Update keyboard lock indicator lights. */
380 if (kbd_dev->lock_keys != locks_old) {
381 usb_kbd_set_led(kbd_dev);
382 }
383 } else {
384 kbd_dev->lock_keys = kbd_dev->lock_keys & ~mod_mask;
385 }
386 }
387
388 if (key == KC_CAPS_LOCK || key == KC_NUM_LOCK || key == KC_SCROLL_LOCK) {
389 // do not send anything to the console, this is our business
390 return;
391 }
392
393 if (type == KEY_PRESS && (kbd_dev->mods & KM_LCTRL) && key == KC_F1) {
394 active_layout = 0;
395 layout[active_layout]->reset();
396 return;
397 }
398
399 if (type == KEY_PRESS && (kbd_dev->mods & KM_LCTRL) && key == KC_F2) {
400 active_layout = 1;
401 layout[active_layout]->reset();
402 return;
403 }
404
405 if (type == KEY_PRESS && (kbd_dev->mods & KM_LCTRL) && key == KC_F3) {
406 active_layout = 2;
407 layout[active_layout]->reset();
408 return;
409 }
410
411 ev.type = type;
412 ev.key = key;
413 ev.mods = kbd_dev->mods;
414
415 ev.c = layout[active_layout]->parse_ev(&ev);
416
417 usb_log_debug2("Sending key %d to the console\n", ev.key);
418 if (kbd_dev->console_phone < 0) {
419 usb_log_warning(
420 "Connection to console not ready, key discarded.\n");
421 return;
422 }
423
424 async_msg_4(kbd_dev->console_phone, KBD_EVENT, ev.type, ev.key,
425 ev.mods, ev.c);
426}
427
428/*----------------------------------------------------------------------------*/
429
430static inline int usb_kbd_is_lock(unsigned int key_code)
431{
432 return (key_code == KC_NUM_LOCK
433 || key_code == KC_SCROLL_LOCK
434 || key_code == KC_CAPS_LOCK);
435}
436
437/*----------------------------------------------------------------------------*/
438/**
439 * Checks if some keys were pressed or released and generates key events.
440 *
441 * An event is created only when key is pressed or released. Besides handling
442 * the events (usb_kbd_push_ev()), the auto-repeat fibril is notified about
443 * key presses and releases (see usb_kbd_repeat_start() and
444 * usb_kbd_repeat_stop()).
445 *
446 * @param kbd_dev Keyboard device structure.
447 * @param key_codes Parsed keyboard report - codes of currently pressed keys
448 * according to HID Usage Tables.
449 * @param count Number of key codes in report (size of the report).
450 *
451 * @sa usb_kbd_push_ev(), usb_kbd_repeat_start(), usb_kbd_repeat_stop()
452 */
453static void usb_kbd_check_key_changes(usb_kbd_t *kbd_dev,
454 const uint8_t *key_codes, size_t count)
455{
456 unsigned int key;
457 unsigned int i, j;
458
459 /*
460 * First of all, check if the kbd have reported phantom state.
461 *
462 * As there is no way to distinguish keys from modifiers, we do not have
463 * a way to check that 'all keys report Error Rollover'. We thus check
464 * if there is at least one such error and in such case we ignore the
465 * whole input report.
466 */
467 i = 0;
468 while (i < count && key_codes[i] != ERROR_ROLLOVER) {
469 ++i;
470 }
471 if (i != count) {
472 usb_log_debug("Phantom state occured.\n");
473 // phantom state, do nothing
474 return;
475 }
476
477 /* TODO: quite dummy right now, think of better implementation */
478 assert(count == kbd_dev->key_count);
479
480 /*
481 * 1) Key releases
482 */
483 for (j = 0; j < count; ++j) {
484 // try to find the old key in the new key list
485 i = 0;
486 while (i < kbd_dev->key_count
487 && key_codes[i] != kbd_dev->keys[j]) {
488 ++i;
489 }
490
491 if (i == count) {
492 // not found, i.e. the key was released
493 key = usbhid_parse_scancode(kbd_dev->keys[j]);
494 if (!usb_kbd_is_lock(key)) {
495 usb_kbd_repeat_stop(kbd_dev, key);
496 }
497 usb_kbd_push_ev(kbd_dev, KEY_RELEASE, key);
498 usb_log_debug2("Key released: %d\n", key);
499 } else {
500 // found, nothing happens
501 }
502 }
503
504 /*
505 * 1) Key presses
506 */
507 for (i = 0; i < kbd_dev->key_count; ++i) {
508 // try to find the new key in the old key list
509 j = 0;
510 while (j < count && kbd_dev->keys[j] != key_codes[i]) {
511 ++j;
512 }
513
514 if (j == count) {
515 // not found, i.e. new key pressed
516 key = usbhid_parse_scancode(key_codes[i]);
517 usb_log_debug2("Key pressed: %d (keycode: %d)\n", key,
518 key_codes[i]);
519 usb_kbd_push_ev(kbd_dev, KEY_PRESS, key);
520 if (!usb_kbd_is_lock(key)) {
521 usb_kbd_repeat_start(kbd_dev, key);
522 }
523 } else {
524 // found, nothing happens
525 }
526 }
527
528 memcpy(kbd_dev->keys, key_codes, count);
529
530 usb_log_debug("New stored keycodes: %s\n",
531 usb_debug_str_buffer(kbd_dev->keys, kbd_dev->key_count, 0));
532}
533
534/*----------------------------------------------------------------------------*/
535/* Callbacks for parser */
536/*----------------------------------------------------------------------------*/
537/**
538 * Callback function for the HID report parser.
539 *
540 * This function is called by the HID report parser with the parsed report.
541 * The parsed report is used to check if any events occured (key was pressed or
542 * released, modifier was pressed or released).
543 *
544 * @param key_codes Parsed keyboard report - codes of currently pressed keys
545 * according to HID Usage Tables.
546 * @param count Number of key codes in report (size of the report).
547 * @param report_id
548 * @param arg User-specified argument. Expects pointer to the keyboard device
549 * structure representing the keyboard.
550 *
551 * @sa usb_kbd_check_key_changes(), usb_kbd_check_modifier_changes()
552 */
553static void usb_kbd_process_keycodes(const uint8_t *key_codes, size_t count,
554 uint8_t report_id, void *arg)
555{
556 if (arg == NULL) {
557 usb_log_warning("Missing argument in callback "
558 "usbhid_process_keycodes().\n");
559 return;
560 }
561
562 usb_kbd_t *kbd_dev = (usb_kbd_t *)arg;
563 assert(kbd_dev != NULL);
564
565 usb_log_debug("Got keys from parser (report id: %u): %s\n",
566 report_id, usb_debug_str_buffer(key_codes, count, 0));
567
568 if (count != kbd_dev->key_count) {
569 usb_log_warning("Number of received keycodes (%d) differs from"
570 " expected number (%d).\n", count, kbd_dev->key_count);
571 return;
572 }
573
574 ///usb_kbd_check_modifier_changes(kbd_dev, key_codes, count);
575 usb_kbd_check_key_changes(kbd_dev, key_codes, count);
576}
577
578/*----------------------------------------------------------------------------*/
579/* General kbd functions */
580/*----------------------------------------------------------------------------*/
581/**
582 * Processes data received from the device in form of report.
583 *
584 * This function uses the HID report parser to translate the data received from
585 * the device into generic USB HID key codes and into generic modifiers bitmap.
586 * The parser then calls the given callback (usb_kbd_process_keycodes()).
587 *
588 * @note Currently, only the boot protocol is supported.
589 *
590 * @param kbd_dev Keyboard device structure (must be initialized).
591 * @param buffer Data from the keyboard (i.e. the report).
592 * @param actual_size Size of the data from keyboard (report size) in bytes.
593 *
594 * @sa usb_kbd_process_keycodes(), usb_hid_boot_keyboard_input_report(),
595 * usb_hid_parse_report().
596 */
597static void usb_kbd_process_data(usb_kbd_t *kbd_dev,
598 uint8_t *buffer, size_t actual_size)
599{
600 assert(kbd_dev->initialized == USB_KBD_STATUS_INITIALIZED);
601 assert(kbd_dev->parser != NULL);
602
603 usb_hid_report_in_callbacks_t *callbacks =
604 (usb_hid_report_in_callbacks_t *)malloc(
605 sizeof(usb_hid_report_in_callbacks_t));
606
607 callbacks->keyboard = usb_kbd_process_keycodes;
608
609 usb_log_debug("Calling usb_hid_parse_report() with "
610 "buffer %s\n", usb_debug_str_buffer(buffer, actual_size, 0));
611
612// int rc = usb_hid_boot_keyboard_input_report(buffer, actual_size,
613// callbacks, kbd_dev);
614 usb_hid_report_path_t *path = usb_hid_report_path();
615 usb_hid_report_path_append_item(path, USB_HIDUT_PAGE_KEYBOARD, 0);
616 usb_hid_report_path_set_report_id(path, 0);
617
618 int rc = usb_hid_parse_report(kbd_dev->parser, buffer,
619 actual_size, path,
620 USB_HID_PATH_COMPARE_END | USB_HID_PATH_COMPARE_USAGE_PAGE_ONLY,
621 callbacks, kbd_dev);
622
623 usb_hid_report_path_free (path);
624
625 if (rc != EOK) {
626 usb_log_warning("Error in usb_hid_boot_keyboard_input_report():"
627 "%s\n", str_error(rc));
628 }
629}
630
631/*----------------------------------------------------------------------------*/
632/* HID/KBD structure manipulation */
633/*----------------------------------------------------------------------------*/
634
635static void usb_kbd_mark_unusable(usb_kbd_t *kbd_dev)
636{
637 kbd_dev->initialized = USB_KBD_STATUS_TO_DESTROY;
638}
639
640
641/*----------------------------------------------------------------------------*/
642/* API functions */
643/*----------------------------------------------------------------------------*/
644/**
645 * Creates a new USB/HID keyboard structure.
646 *
647 * The structure returned by this function is not initialized. Use
648 * usb_kbd_init() to initialize it prior to polling.
649 *
650 * @return New uninitialized structure for representing a USB/HID keyboard or
651 * NULL if not successful (memory error).
652 */
653usb_kbd_t *usb_kbd_new(void)
654{
655 usb_kbd_t *kbd_dev =
656 (usb_kbd_t *)malloc(sizeof(usb_kbd_t));
657
658 if (kbd_dev == NULL) {
659 usb_log_fatal("No memory!\n");
660 return NULL;
661 }
662
663 memset(kbd_dev, 0, sizeof(usb_kbd_t));
664
665 kbd_dev->parser = (usb_hid_report_parser_t *)(malloc(sizeof(
666 usb_hid_report_parser_t)));
667 if (kbd_dev->parser == NULL) {
668 usb_log_fatal("No memory!\n");
669 free(kbd_dev);
670 return NULL;
671 }
672
673 kbd_dev->console_phone = -1;
674 kbd_dev->initialized = USB_KBD_STATUS_UNINITIALIZED;
675
676 return kbd_dev;
677}
678
679/*----------------------------------------------------------------------------*/
680/**
681 * Initialization of the USB/HID keyboard structure.
682 *
683 * This functions initializes required structures from the device's descriptors.
684 *
685 * During initialization, the keyboard is switched into boot protocol, the idle
686 * rate is set to 0 (infinity), resulting in the keyboard only reporting event
687 * when a key is pressed or released. Finally, the LED lights are turned on
688 * according to the default setup of lock keys.
689 *
690 * @note By default, the keyboards is initialized with Num Lock turned on and
691 * other locks turned off.
692 *
693 * @param kbd_dev Keyboard device structure to be initialized.
694 * @param dev DDF device structure of the keyboard.
695 *
696 * @retval EOK if successful.
697 * @retval EINVAL if some parameter is not given.
698 * @return Other value inherited from function usbhid_dev_init().
699 */
700int usb_kbd_init(usb_kbd_t *kbd_dev, usb_device_t *dev)
701{
702 int rc;
703
704 usb_log_debug("Initializing HID/KBD structure...\n");
705
706 if (kbd_dev == NULL) {
707 usb_log_error("Failed to init keyboard structure: no structure"
708 " given.\n");
709 return EINVAL;
710 }
711
712 if (dev == NULL) {
713 usb_log_error("Failed to init keyboard structure: no USB device"
714 " given.\n");
715 return EINVAL;
716 }
717
718 if (kbd_dev->initialized == USB_KBD_STATUS_INITIALIZED) {
719 usb_log_warning("Keyboard structure already initialized.\n");
720 return EINVAL;
721 }
722
723 /* TODO: does not work! */
724 if (!dev->pipes[USB_KBD_POLL_EP_NO].present) {
725 usb_log_warning("Required endpoint not found - probably not "
726 "a supported device.\n");
727 return ENOTSUP;
728 }
729
730 /* The USB device should already be initialized, save it in structure */
731 kbd_dev->usb_dev = dev;
732
733 /* Initialize the report parser. */
734 rc = usb_hid_parser_init(kbd_dev->parser);
735 if (rc != EOK) {
736 usb_log_error("Failed to initialize report parser.\n");
737 return rc;
738 }
739
740 /* Get the report descriptor and parse it. */
741 rc = usb_hid_process_report_descriptor(kbd_dev->usb_dev,
742 kbd_dev->parser);
743 if (rc != EOK) {
744 usb_log_warning("Could not process report descriptor, "
745 "falling back to boot protocol.\n");
746 rc = usb_hid_parse_report_descriptor(kbd_dev->parser,
747 BOOT_REPORT_DESCRIPTOR, BOOT_REPORT_DESCRIPTOR_SIZE);
748 if (rc != EOK) {
749 usb_log_error("Failed to parse boot report descriptor:"
750 " %s.\n", str_error(rc));
751 return rc;
752 }
753
754 rc = usbhid_req_set_protocol(&kbd_dev->usb_dev->ctrl_pipe,
755 kbd_dev->usb_dev->interface_no, USB_HID_PROTOCOL_BOOT);
756
757 if (rc != EOK) {
758 usb_log_warning("Failed to set boot protocol to the "
759 "device: %s\n", str_error(rc));
760 return rc;
761 }
762 }
763
764 /*
765 * TODO: make more general
766 */
767 usb_hid_report_path_t *path = usb_hid_report_path();
768 usb_hid_report_path_append_item(path, USB_HIDUT_PAGE_KEYBOARD, 0);
769
770 usb_hid_report_path_set_report_id(path, 0);
771
772 kbd_dev->key_count = usb_hid_report_input_length(
773 kbd_dev->parser, path,
774 USB_HID_PATH_COMPARE_END | USB_HID_PATH_COMPARE_USAGE_PAGE_ONLY);
775 usb_hid_report_path_free (path);
776
777 usb_log_debug("Size of the input report: %zu\n", kbd_dev->key_count);
778
779 kbd_dev->keys = (uint8_t *)calloc(kbd_dev->key_count, sizeof(uint8_t));
780
781 if (kbd_dev->keys == NULL) {
782 usb_log_fatal("No memory!\n");
783 return ENOMEM;
784 }
785
786 /*
787 * Output report
788 */
789 kbd_dev->output_size = 0;
790 kbd_dev->output_buffer = usb_hid_report_output(kbd_dev->parser,
791 &kbd_dev->output_size);
792 if (kbd_dev->output_buffer == NULL && kbd_dev->output_size != 0) {
793 usb_log_warning("Error creating output report buffer.\n");
794 free(kbd_dev->keys);
795 return ENOMEM; /* TODO: other error code */
796 }
797
798 usb_log_debug("Output buffer size: %zu\n", kbd_dev->output_size);
799
800 kbd_dev->led_path = usb_hid_report_path();
801 usb_hid_report_path_append_item(
802 kbd_dev->led_path, USB_HIDUT_PAGE_LED, 0);
803
804 kbd_dev->led_output_size = usb_hid_report_output_size(kbd_dev->parser,
805 kbd_dev->led_path,
806 USB_HID_PATH_COMPARE_END | USB_HID_PATH_COMPARE_USAGE_PAGE_ONLY);
807
808 usb_log_debug("Output report size (in items): %zu\n",
809 kbd_dev->led_output_size);
810
811 kbd_dev->led_data = (int32_t *)calloc(
812 kbd_dev->led_output_size, sizeof(int32_t));
813
814 if (kbd_dev->led_data == NULL) {
815 usb_log_warning("Error creating buffer for LED output report."
816 "\n");
817 free(kbd_dev->keys);
818 usb_hid_report_output_free(kbd_dev->output_buffer);
819 return ENOMEM;
820 }
821
822 /*
823 * Modifiers and locks
824 */
825 kbd_dev->modifiers = 0;
826 kbd_dev->mods = DEFAULT_ACTIVE_MODS;
827 kbd_dev->lock_keys = 0;
828
829 /*
830 * Autorepeat
831 */
832 kbd_dev->repeat.key_new = 0;
833 kbd_dev->repeat.key_repeated = 0;
834 kbd_dev->repeat.delay_before = DEFAULT_DELAY_BEFORE_FIRST_REPEAT;
835 kbd_dev->repeat.delay_between = DEFAULT_REPEAT_DELAY;
836
837 kbd_dev->repeat_mtx = (fibril_mutex_t *)(
838 malloc(sizeof(fibril_mutex_t)));
839 if (kbd_dev->repeat_mtx == NULL) {
840 usb_log_fatal("No memory!\n");
841 free(kbd_dev->keys);
842 return ENOMEM;
843 }
844
845 fibril_mutex_initialize(kbd_dev->repeat_mtx);
846
847 /*
848 * Set LEDs according to initial setup.
849 * Set Idle rate
850 */
851 usb_kbd_set_led(kbd_dev);
852
853 usbhid_req_set_idle(&kbd_dev->usb_dev->ctrl_pipe,
854 kbd_dev->usb_dev->interface_no, IDLE_RATE);
855
856 kbd_dev->initialized = USB_KBD_STATUS_INITIALIZED;
857 usb_log_debug("HID/KBD device structure initialized.\n");
858
859 return EOK;
860}
861
862/*----------------------------------------------------------------------------*/
863
864bool usb_kbd_polling_callback(usb_device_t *dev, uint8_t *buffer,
865 size_t buffer_size, void *arg)
866{
867 if (dev == NULL || buffer == NULL || arg == NULL) {
868 // do not continue polling (???)
869 return false;
870 }
871
872 usb_kbd_t *kbd_dev = (usb_kbd_t *)arg;
873
874 // TODO: add return value from this function
875 usb_kbd_process_data(kbd_dev, buffer, buffer_size);
876
877 return true;
878}
879
880/*----------------------------------------------------------------------------*/
881
882void usb_kbd_polling_ended_callback(usb_device_t *dev, bool reason,
883 void *arg)
884{
885 if (dev == NULL || arg == NULL) {
886 return;
887 }
888
889 usb_kbd_t *kbd = (usb_kbd_t *)arg;
890
891 usb_kbd_mark_unusable(kbd);
892}
893
894/*----------------------------------------------------------------------------*/
895
896int usb_kbd_is_initialized(const usb_kbd_t *kbd_dev)
897{
898 return (kbd_dev->initialized == USB_KBD_STATUS_INITIALIZED);
899}
900
901/*----------------------------------------------------------------------------*/
902
903int usb_kbd_is_ready_to_destroy(const usb_kbd_t *kbd_dev)
904{
905 return (kbd_dev->initialized == USB_KBD_STATUS_TO_DESTROY);
906}
907
908/*----------------------------------------------------------------------------*/
909/**
910 * Properly destroys the USB/HID keyboard structure.
911 *
912 * @param kbd_dev Pointer to the structure to be destroyed.
913 */
914void usb_kbd_free(usb_kbd_t **kbd_dev)
915{
916 if (kbd_dev == NULL || *kbd_dev == NULL) {
917 return;
918 }
919
920 // hangup phone to the console
921 async_hangup((*kbd_dev)->console_phone);
922
923// if ((*kbd_dev)->hid_dev != NULL) {
924// usbhid_dev_free(&(*kbd_dev)->hid_dev);
925// assert((*kbd_dev)->hid_dev == NULL);
926// }
927
928 if ((*kbd_dev)->repeat_mtx != NULL) {
929 /* TODO: replace by some check and wait */
930 assert(!fibril_mutex_is_locked((*kbd_dev)->repeat_mtx));
931 free((*kbd_dev)->repeat_mtx);
932 }
933
934 // destroy the parser
935 if ((*kbd_dev)->parser != NULL) {
936 usb_hid_free_report_parser((*kbd_dev)->parser);
937 }
938
939 // free the output buffer
940 usb_hid_report_output_free((*kbd_dev)->output_buffer);
941
942 /* TODO: what about the USB device structure?? */
943
944 free(*kbd_dev);
945 *kbd_dev = NULL;
946}
947
948/**
949 * @}
950 */
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