xref: /openbmc/u-boot/common/usb_kbd.c (revision e4430779)
1 /*
2  * (C) Copyright 2001
3  * Denis Peter, MPL AG Switzerland
4  *
5  * Part of this source has been derived from the Linux USB
6  * project.
7  *
8  * See file CREDITS for list of people who contributed to this
9  * project.
10  *
11  * This program is free software; you can redistribute it and/or
12  * modify it under the terms of the GNU General Public License as
13  * published by the Free Software Foundation; either version 2 of
14  * the License, or (at your option) any later version.
15  *
16  * This program is distributed in the hope that it will be useful,
17  * but WITHOUT ANY WARRANTY; without even the implied warranty of
18  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
19  * GNU General Public License for more details.
20  *
21  * You should have received a copy of the GNU General Public License
22  * along with this program; if not, write to the Free Software
23  * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
24  * MA 02111-1307 USA
25  *
26  */
27 #include <common.h>
28 #include <devices.h>
29 #include <asm/byteorder.h>
30 
31 #include <usb.h>
32 
33 #undef USB_KBD_DEBUG
34 /*
35  * if overwrite_console returns 1, the stdin, stderr and stdout
36  * are switched to the serial port, else the settings in the
37  * environment are used
38  */
39 #ifdef CONFIG_SYS_CONSOLE_OVERWRITE_ROUTINE
40 extern int overwrite_console (void);
41 #else
42 int overwrite_console (void)
43 {
44 	return (0);
45 }
46 #endif
47 
48 #ifdef	USB_KBD_DEBUG
49 #define	USB_KBD_PRINTF(fmt,args...)	printf (fmt ,##args)
50 #else
51 #define USB_KBD_PRINTF(fmt,args...)
52 #endif
53 
54 
55 #define REPEAT_RATE  40/4 /* 40msec -> 25cps */
56 #define REPEAT_DELAY 10 /* 10 x REAPEAT_RATE = 400msec */
57 
58 #define NUM_LOCK	0x53
59 #define CAPS_LOCK 0x39
60 #define SCROLL_LOCK 0x47
61 
62 
63 /* Modifier bits */
64 #define LEFT_CNTR		0
65 #define LEFT_SHIFT	1
66 #define LEFT_ALT		2
67 #define LEFT_GUI		3
68 #define RIGHT_CNTR	4
69 #define RIGHT_SHIFT	5
70 #define RIGHT_ALT		6
71 #define RIGHT_GUI		7
72 
73 #define USB_KBD_BUFFER_LEN 0x20  /* size of the keyboardbuffer */
74 
75 static volatile char usb_kbd_buffer[USB_KBD_BUFFER_LEN];
76 static volatile int usb_in_pointer = 0;
77 static volatile int usb_out_pointer = 0;
78 
79 unsigned char new[8];
80 unsigned char old[8];
81 int repeat_delay;
82 #define DEVNAME "usbkbd"
83 static unsigned char num_lock = 0;
84 static unsigned char caps_lock = 0;
85 static unsigned char scroll_lock = 0;
86 static unsigned char ctrl = 0;
87 
88 static unsigned char leds __attribute__ ((aligned (0x4)));
89 
90 static unsigned char usb_kbd_numkey[] = {
91 	 '1', '2', '3', '4', '5', '6', '7', '8', '9', '0','\r',0x1b,'\b','\t',' ', '-',
92 	 '=', '[', ']','\\', '#', ';', '\'', '`', ',', '.', '/'
93 };
94 static unsigned char usb_kbd_numkey_shifted[] = {
95 	 '!', '@', '#', '$', '%', '^', '&', '*', '(', ')','\r',0x1b,'\b','\t',' ', '_',
96 	 '+', '{', '}', '|', '~', ':', '"', '~', '<', '>', '?'
97 };
98 
99 /******************************************************************
100  * Queue handling
101  ******************************************************************/
102 /* puts character in the queue and sets up the in and out pointer */
103 static void usb_kbd_put_queue(char data)
104 {
105 	if((usb_in_pointer+1)==USB_KBD_BUFFER_LEN) {
106 		if(usb_out_pointer==0) {
107 			return; /* buffer full */
108 		} else{
109 			usb_in_pointer=0;
110 		}
111 	} else {
112 		if((usb_in_pointer+1)==usb_out_pointer)
113 			return; /* buffer full */
114 		usb_in_pointer++;
115 	}
116 	usb_kbd_buffer[usb_in_pointer]=data;
117 	return;
118 }
119 
120 /* test if a character is in the queue */
121 static int usb_kbd_testc(void)
122 {
123 #ifdef CONFIG_SYS_USB_EVENT_POLL
124 	usb_event_poll();
125 #endif
126 	if(usb_in_pointer==usb_out_pointer)
127 		return(0); /* no data */
128 	else
129 		return(1);
130 }
131 /* gets the character from the queue */
132 static int usb_kbd_getc(void)
133 {
134 	char c;
135 	while(usb_in_pointer==usb_out_pointer) {
136 #ifdef CONFIG_SYS_USB_EVENT_POLL
137 		usb_event_poll();
138 #endif
139 	}
140 	if((usb_out_pointer+1)==USB_KBD_BUFFER_LEN)
141 		usb_out_pointer=0;
142 	else
143 		usb_out_pointer++;
144 	c=usb_kbd_buffer[usb_out_pointer];
145 	return (int)c;
146 
147 }
148 
149 /* forward decleration */
150 static int usb_kbd_probe(struct usb_device *dev, unsigned int ifnum);
151 
152 /* search for keyboard and register it if found */
153 int drv_usb_kbd_init(void)
154 {
155 	int error,i;
156 	device_t usb_kbd_dev,*old_dev;
157 	struct usb_device *dev;
158 	char *stdinname  = getenv ("stdin");
159 
160 	usb_in_pointer=0;
161 	usb_out_pointer=0;
162 	/* scan all USB Devices */
163 	for(i=0;i<USB_MAX_DEVICE;i++) {
164 		dev=usb_get_dev_index(i); /* get device */
165 		if(dev == NULL)
166 			return -1;
167 		if(dev->devnum!=-1) {
168 			if(usb_kbd_probe(dev,0)==1) { /* Ok, we found a keyboard */
169 				/* check, if it is already registered */
170 				USB_KBD_PRINTF("USB KBD found set up device.\n");
171 				old_dev = device_get_by_name(DEVNAME);
172 				if(old_dev) {
173 					/* ok, already registered, just return ok */
174 					USB_KBD_PRINTF("USB KBD is already registered.\n");
175 					return 1;
176 				}
177 				/* register the keyboard */
178 				USB_KBD_PRINTF("USB KBD register.\n");
179 				memset (&usb_kbd_dev, 0, sizeof(device_t));
180 				strcpy(usb_kbd_dev.name, DEVNAME);
181 				usb_kbd_dev.flags =  DEV_FLAGS_INPUT | DEV_FLAGS_SYSTEM;
182 				usb_kbd_dev.putc = NULL;
183 				usb_kbd_dev.puts = NULL;
184 				usb_kbd_dev.getc = usb_kbd_getc;
185 				usb_kbd_dev.tstc = usb_kbd_testc;
186 				error = device_register (&usb_kbd_dev);
187 				if(error==0) {
188 					/* check if this is the standard input device */
189 					if(strcmp(stdinname,DEVNAME)==0) {
190 						/* reassign the console */
191 						if(overwrite_console()) {
192 							return 1;
193 						}
194 						error=console_assign(stdin,DEVNAME);
195 						if(error==0)
196 							return 1;
197 						else
198 							return error;
199 					}
200 					return 1;
201 				}
202 				return error;
203 			}
204 		}
205 	}
206 	/* no USB Keyboard found */
207 	return -1;
208 }
209 
210 
211 /* deregistering the keyboard */
212 int usb_kbd_deregister(void)
213 {
214 #ifdef CONFIG_SYS_DEVICE_DEREGISTER
215 	return device_deregister(DEVNAME);
216 #else
217 	return 1;
218 #endif
219 }
220 
221 /**************************************************************************
222  * Low Level drivers
223  */
224 
225 /* set the LEDs. Since this is used in the irq routine, the control job
226    is issued with a timeout of 0. This means, that the job is queued without
227    waiting for job completion */
228 
229 static void usb_kbd_setled(struct usb_device *dev)
230 {
231 	struct usb_interface_descriptor *iface;
232 	iface = &dev->config.if_desc[0];
233 	leds=0;
234 	if(scroll_lock!=0)
235 		leds|=1;
236 	leds<<=1;
237 	if(caps_lock!=0)
238 		leds|=1;
239 	leds<<=1;
240 	if(num_lock!=0)
241 		leds|=1;
242 	usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
243 		USB_REQ_SET_REPORT, USB_TYPE_CLASS | USB_RECIP_INTERFACE,
244 		0x200, iface->bInterfaceNumber,(void *)&leds, 1, 0);
245 
246 }
247 
248 
249 #define CAPITAL_MASK 0x20
250 /* Translate the scancode in ASCII */
251 static int usb_kbd_translate(unsigned char scancode,unsigned char modifier,int pressed)
252 {
253 	unsigned char keycode;
254 
255 	if(pressed==0) {
256 		/* key released */
257 		repeat_delay=0;
258 		return 0;
259 	}
260 	if(pressed==2) {
261 		repeat_delay++;
262 		if(repeat_delay<REPEAT_DELAY)
263 			return 0;
264 		repeat_delay=REPEAT_DELAY;
265 	}
266 	keycode=0;
267 	if((scancode>3) && (scancode<=0x1d)) { /* alpha numeric values */
268 		keycode=scancode-4 + 0x61;
269 		if(caps_lock)
270 			keycode&=~CAPITAL_MASK; /* switch to capital Letters */
271 		if(((modifier&(1<<LEFT_SHIFT))!=0)||((modifier&(1<<RIGHT_SHIFT))!=0)) {
272 			if(keycode & CAPITAL_MASK)
273 				keycode&=~CAPITAL_MASK; /* switch to capital Letters */
274 			else
275 				keycode|=CAPITAL_MASK; /* switch to non capital Letters */
276 		}
277 	}
278 	if((scancode>0x1d) && (scancode<0x3A)) {
279 		if(((modifier&(1<<LEFT_SHIFT))!=0)||((modifier&(1<<RIGHT_SHIFT))!=0))  /* shifted */
280 			keycode=usb_kbd_numkey_shifted[scancode-0x1e];
281 		else /* non shifted */
282 			keycode=usb_kbd_numkey[scancode-0x1e];
283 	}
284 
285 	if (ctrl)
286 		keycode = scancode - 0x3;
287 
288 	if(pressed==1) {
289 		if(scancode==NUM_LOCK) {
290 			num_lock=~num_lock;
291 			return 1;
292 		}
293 		if(scancode==CAPS_LOCK) {
294 			caps_lock=~caps_lock;
295 			return 1;
296 		}
297 		if(scancode==SCROLL_LOCK) {
298 			scroll_lock=~scroll_lock;
299 			return 1;
300 		}
301 	}
302 	if(keycode!=0) {
303 		USB_KBD_PRINTF("%c",keycode);
304 		usb_kbd_put_queue(keycode);
305 	}
306 	return 0;
307 }
308 
309 /* Interrupt service routine */
310 static int usb_kbd_irq(struct usb_device *dev)
311 {
312 	int i,res;
313 
314 	if((dev->irq_status!=0)||(dev->irq_act_len!=8))
315 	{
316 		USB_KBD_PRINTF("usb_keyboard Error %lX, len %d\n",dev->irq_status,dev->irq_act_len);
317 		return 1;
318 	}
319 	res=0;
320 
321 	switch (new[0]) {
322 	case 0x0:	/* No combo key pressed */
323 		ctrl = 0;
324 		break;
325 	case 0x01:	/* Left Ctrl pressed */
326 	case 0x10:	/* Right Ctrl pressed */
327 		ctrl = 1;
328 		break;
329 	}
330 
331 	for (i = 2; i < 8; i++) {
332 		if (old[i] > 3 && memscan(&new[2], old[i], 6) == &new[8]) {
333 			res|=usb_kbd_translate(old[i],new[0],0);
334 		}
335 		if (new[i] > 3 && memscan(&old[2], new[i], 6) == &old[8]) {
336 			res|=usb_kbd_translate(new[i],new[0],1);
337 		}
338 	}
339 	if((new[2]>3) && (old[2]==new[2])) /* still pressed */
340 		res|=usb_kbd_translate(new[2],new[0],2);
341 	if(res==1)
342 		usb_kbd_setled(dev);
343 	memcpy(&old[0],&new[0], 8);
344 	return 1; /* install IRQ Handler again */
345 }
346 
347 /* probes the USB device dev for keyboard type */
348 static int usb_kbd_probe(struct usb_device *dev, unsigned int ifnum)
349 {
350 	struct usb_interface_descriptor *iface;
351 	struct usb_endpoint_descriptor *ep;
352 	int pipe,maxp;
353 
354 	if (dev->descriptor.bNumConfigurations != 1) return 0;
355 	iface = &dev->config.if_desc[ifnum];
356 
357 	if (iface->bInterfaceClass != 3) return 0;
358 	if (iface->bInterfaceSubClass != 1) return 0;
359 	if (iface->bInterfaceProtocol != 1) return 0;
360 	if (iface->bNumEndpoints != 1) return 0;
361 
362 	ep = &iface->ep_desc[0];
363 
364 	if (!(ep->bEndpointAddress & 0x80)) return 0;
365 	if ((ep->bmAttributes & 3) != 3) return 0;
366 	USB_KBD_PRINTF("USB KBD found set protocol...\n");
367 	/* ok, we found a USB Keyboard, install it */
368 	/* usb_kbd_get_hid_desc(dev); */
369 	usb_set_protocol(dev, iface->bInterfaceNumber, 0);
370 	USB_KBD_PRINTF("USB KBD found set idle...\n");
371 	usb_set_idle(dev, iface->bInterfaceNumber, REPEAT_RATE, 0);
372 	memset(&new[0], 0, 8);
373 	memset(&old[0], 0, 8);
374 	repeat_delay=0;
375 	pipe = usb_rcvintpipe(dev, ep->bEndpointAddress);
376 	maxp = usb_maxpacket(dev, pipe);
377 	dev->irq_handle=usb_kbd_irq;
378 	USB_KBD_PRINTF("USB KBD enable interrupt pipe...\n");
379 	usb_submit_int_msg(dev,pipe,&new[0], maxp > 8 ? 8 : maxp,ep->bInterval);
380 	return 1;
381 }
382 
383 
384 #if 0
385 struct usb_hid_descriptor {
386 	unsigned char  bLength;
387 	unsigned char  bDescriptorType; /* 0x21 for HID */
388 	unsigned short bcdHID; /* release number */
389 	unsigned char  bCountryCode;
390 	unsigned char  bNumDescriptors;
391 	unsigned char  bReportDescriptorType;
392 	unsigned short wDescriptorLength;
393 } __attribute__ ((packed));
394 
395 /*
396  * We parse each description item into this structure. Short items data
397  * values are expanded to 32-bit signed int, long items contain a pointer
398  * into the data area.
399  */
400 
401 struct hid_item {
402 	unsigned char format;
403 	unsigned char size;
404 	unsigned char type;
405 	unsigned char tag;
406 	union {
407 	    unsigned char   u8;
408 	    char            s8;
409 	    unsigned short  u16;
410 	    short           s16;
411 	    unsigned long   u32;
412 	    long            s32;
413 	    unsigned char  *longdata;
414 	} data;
415 };
416 
417 /*
418  * HID report item format
419  */
420 
421 #define HID_ITEM_FORMAT_SHORT	0
422 #define HID_ITEM_FORMAT_LONG	1
423 
424 /*
425  * Special tag indicating long items
426  */
427 
428 #define HID_ITEM_TAG_LONG	15
429 
430 
431 static struct usb_hid_descriptor usb_kbd_hid_desc;
432 
433 void usb_kbd_display_hid(struct usb_hid_descriptor *hid)
434 {
435 	printf("USB_HID_DESC:\n");
436 	printf("  bLenght               0x%x\n",hid->bLength);
437 	printf("  bcdHID                0x%x\n",hid->bcdHID);
438 	printf("  bCountryCode          %d\n",hid->bCountryCode);
439 	printf("  bNumDescriptors       0x%x\n",hid->bNumDescriptors);
440 	printf("  bReportDescriptorType 0x%x\n",hid->bReportDescriptorType);
441 	printf("  wDescriptorLength     0x%x\n",hid->wDescriptorLength);
442 }
443 
444 
445 /*
446  * Fetch a report description item from the data stream. We support long
447  * items, though they are not used yet.
448  */
449 
450 static int fetch_item(unsigned char *start,unsigned char *end, struct hid_item *item)
451 {
452 	if((end - start) > 0) {
453 		unsigned char b = *start++;
454 		item->type = (b >> 2) & 3;
455 		item->tag  = (b >> 4) & 15;
456 		if (item->tag == HID_ITEM_TAG_LONG) {
457 			item->format = HID_ITEM_FORMAT_LONG;
458 			if ((end - start) >= 2) {
459 				item->size = *start++;
460 				item->tag  = *start++;
461 				if ((end - start) >= item->size) {
462 					item->data.longdata = start;
463 					start += item->size;
464 					return item->size;
465 				}
466 			}
467 		} else {
468 			item->format = HID_ITEM_FORMAT_SHORT;
469 			item->size = b & 3;
470 			switch (item->size) {
471 				case 0:
472 					return item->size;
473 				case 1:
474 					if ((end - start) >= 1) {
475 						item->data.u8 = *start++;
476 						return item->size;
477 					}
478 					break;
479 				case 2:
480 					if ((end - start) >= 2) {
481 						item->data.u16 = le16_to_cpu((unsigned short *)start);
482 						start+=2;
483 						return item->size;
484 					}
485 				case 3:
486 					item->size++;
487 					if ((end - start) >= 4) {
488 						item->data.u32 = le32_to_cpu((unsigned long *)start);
489 						start+=4;
490 						return item->size;
491 					}
492 			}
493 		}
494 	}
495 	return -1;
496 }
497 
498 /*
499  * HID report descriptor item type (prefix bit 2,3)
500  */
501 
502 #define HID_ITEM_TYPE_MAIN		0
503 #define HID_ITEM_TYPE_GLOBAL		1
504 #define HID_ITEM_TYPE_LOCAL		2
505 #define HID_ITEM_TYPE_RESERVED		3
506 /*
507  * HID report descriptor main item tags
508  */
509 
510 #define HID_MAIN_ITEM_TAG_INPUT			8
511 #define HID_MAIN_ITEM_TAG_OUTPUT		9
512 #define HID_MAIN_ITEM_TAG_FEATURE		11
513 #define HID_MAIN_ITEM_TAG_BEGIN_COLLECTION	10
514 #define HID_MAIN_ITEM_TAG_END_COLLECTION	12
515 /*
516  * HID report descriptor main item contents
517  */
518 
519 #define HID_MAIN_ITEM_CONSTANT		0x001
520 #define HID_MAIN_ITEM_VARIABLE		0x002
521 #define HID_MAIN_ITEM_RELATIVE		0x004
522 #define HID_MAIN_ITEM_WRAP		0x008
523 #define HID_MAIN_ITEM_NONLINEAR		0x010
524 #define HID_MAIN_ITEM_NO_PREFERRED	0x020
525 #define HID_MAIN_ITEM_NULL_STATE	0x040
526 #define HID_MAIN_ITEM_VOLATILE		0x080
527 #define HID_MAIN_ITEM_BUFFERED_BYTE	0x100
528 
529 /*
530  * HID report descriptor collection item types
531  */
532 
533 #define HID_COLLECTION_PHYSICAL		0
534 #define HID_COLLECTION_APPLICATION	1
535 #define HID_COLLECTION_LOGICAL		2
536 /*
537  * HID report descriptor global item tags
538  */
539 
540 #define HID_GLOBAL_ITEM_TAG_USAGE_PAGE		0
541 #define HID_GLOBAL_ITEM_TAG_LOGICAL_MINIMUM	1
542 #define HID_GLOBAL_ITEM_TAG_LOGICAL_MAXIMUM	2
543 #define HID_GLOBAL_ITEM_TAG_PHYSICAL_MINIMUM	3
544 #define HID_GLOBAL_ITEM_TAG_PHYSICAL_MAXIMUM	4
545 #define HID_GLOBAL_ITEM_TAG_UNIT_EXPONENT	5
546 #define HID_GLOBAL_ITEM_TAG_UNIT		6
547 #define HID_GLOBAL_ITEM_TAG_REPORT_SIZE		7
548 #define HID_GLOBAL_ITEM_TAG_REPORT_ID		8
549 #define HID_GLOBAL_ITEM_TAG_REPORT_COUNT	9
550 #define HID_GLOBAL_ITEM_TAG_PUSH		10
551 #define HID_GLOBAL_ITEM_TAG_POP			11
552 
553 /*
554  * HID report descriptor local item tags
555  */
556 
557 #define HID_LOCAL_ITEM_TAG_USAGE		0
558 #define HID_LOCAL_ITEM_TAG_USAGE_MINIMUM	1
559 #define HID_LOCAL_ITEM_TAG_USAGE_MAXIMUM	2
560 #define HID_LOCAL_ITEM_TAG_DESIGNATOR_INDEX	3
561 #define HID_LOCAL_ITEM_TAG_DESIGNATOR_MINIMUM	4
562 #define HID_LOCAL_ITEM_TAG_DESIGNATOR_MAXIMUM	5
563 #define HID_LOCAL_ITEM_TAG_STRING_INDEX		7
564 #define HID_LOCAL_ITEM_TAG_STRING_MINIMUM	8
565 #define HID_LOCAL_ITEM_TAG_STRING_MAXIMUM	9
566 #define HID_LOCAL_ITEM_TAG_DELIMITER		10
567 
568 
569 static void usb_kbd_show_item(struct hid_item *item)
570 {
571 	switch(item->type) {
572 		case HID_ITEM_TYPE_MAIN:
573 			switch(item->tag) {
574 				case HID_MAIN_ITEM_TAG_INPUT:
575 					printf("Main Input");
576 					break;
577 				case HID_MAIN_ITEM_TAG_OUTPUT:
578 					printf("Main Output");
579 					break;
580 				case HID_MAIN_ITEM_TAG_FEATURE:
581 					printf("Main Feature");
582 					break;
583 				case HID_MAIN_ITEM_TAG_BEGIN_COLLECTION:
584 					printf("Main Begin Collection");
585 					break;
586 				case HID_MAIN_ITEM_TAG_END_COLLECTION:
587 					printf("Main End Collection");
588 					break;
589 				default:
590 					printf("Main reserved %d",item->tag);
591 					break;
592 			}
593 			break;
594 		case HID_ITEM_TYPE_GLOBAL:
595 			switch(item->tag) {
596 				case HID_GLOBAL_ITEM_TAG_USAGE_PAGE:
597 					printf("- Global Usage Page");
598 					break;
599 				case HID_GLOBAL_ITEM_TAG_LOGICAL_MINIMUM:
600 					printf("- Global Logical Minimum");
601 					break;
602 				case HID_GLOBAL_ITEM_TAG_LOGICAL_MAXIMUM:
603 					printf("- Global Logical Maximum");
604 					break;
605 				case HID_GLOBAL_ITEM_TAG_PHYSICAL_MINIMUM:
606 					printf("- Global physical Minimum");
607 					break;
608 				case HID_GLOBAL_ITEM_TAG_PHYSICAL_MAXIMUM:
609 					printf("- Global physical Maximum");
610 					break;
611 				case HID_GLOBAL_ITEM_TAG_UNIT_EXPONENT:
612 					printf("- Global Unit Exponent");
613 					break;
614 				case HID_GLOBAL_ITEM_TAG_UNIT:
615 					printf("- Global Unit");
616 					break;
617 				case HID_GLOBAL_ITEM_TAG_REPORT_SIZE:
618 					printf("- Global Report Size");
619 					break;
620 				case HID_GLOBAL_ITEM_TAG_REPORT_ID:
621 					printf("- Global Report ID");
622 					break;
623 				case HID_GLOBAL_ITEM_TAG_REPORT_COUNT:
624 					printf("- Global Report Count");
625 					break;
626 				case HID_GLOBAL_ITEM_TAG_PUSH:
627 					printf("- Global Push");
628 					break;
629 				case HID_GLOBAL_ITEM_TAG_POP:
630 					printf("- Global Pop");
631 					break;
632 				default:
633 					printf("- Global reserved %d",item->tag);
634 					break;
635 			}
636 			break;
637 		case HID_ITEM_TYPE_LOCAL:
638 			switch(item->tag) {
639 				case HID_LOCAL_ITEM_TAG_USAGE:
640 					printf("-- Local Usage");
641 					break;
642 				case HID_LOCAL_ITEM_TAG_USAGE_MINIMUM:
643 					printf("-- Local Usage Minimum");
644 					break;
645 				case HID_LOCAL_ITEM_TAG_USAGE_MAXIMUM:
646 					printf("-- Local Usage Maximum");
647 					break;
648 				case HID_LOCAL_ITEM_TAG_DESIGNATOR_INDEX:
649 					printf("-- Local Designator Index");
650 					break;
651 				case HID_LOCAL_ITEM_TAG_DESIGNATOR_MINIMUM:
652 					printf("-- Local Designator Minimum");
653 					break;
654 				case HID_LOCAL_ITEM_TAG_DESIGNATOR_MAXIMUM:
655 					printf("-- Local Designator Maximum");
656 					break;
657 				case HID_LOCAL_ITEM_TAG_STRING_INDEX:
658 					printf("-- Local String Index");
659 					break;
660 				case HID_LOCAL_ITEM_TAG_STRING_MINIMUM:
661 					printf("-- Local String Minimum");
662 					break;
663 				case HID_LOCAL_ITEM_TAG_STRING_MAXIMUM:
664 					printf("-- Local String Maximum");
665 					break;
666 				case HID_LOCAL_ITEM_TAG_DELIMITER:
667 					printf("-- Local Delimiter");
668 					break;
669 				default:
670 					printf("-- Local reserved %d",item->tag);
671 					break;
672 			}
673 			break;
674 		default:
675 			printf("--- reserved %d",item->type);
676 			break;
677 	}
678 	switch(item->size) {
679 		case 1:
680 			printf("  %d",item->data.u8);
681 			break;
682 		case 2:
683 			printf("  %d",item->data.u16);
684 			break;
685 		case 4:
686 			printf("  %ld",item->data.u32);
687 			break;
688 	}
689 	printf("\n");
690 }
691 
692 
693 static int usb_kbd_get_hid_desc(struct usb_device *dev)
694 {
695 	unsigned char buffer[256];
696 	struct usb_descriptor_header *head;
697 	struct usb_config_descriptor *config;
698 	int index,len,i;
699 	unsigned char *start, *end;
700 	struct hid_item item;
701 
702 	if(usb_get_configuration_no(dev,&buffer[0],0)==-1)
703 		return -1;
704 	head =(struct usb_descriptor_header *)&buffer[0];
705 	if(head->bDescriptorType!=USB_DT_CONFIG) {
706 		printf(" ERROR: NOT USB_CONFIG_DESC %x\n",head->bDescriptorType);
707 		return -1;
708 	}
709 	index=head->bLength;
710 	config=(struct usb_config_descriptor *)&buffer[0];
711 	len=le16_to_cpu(config->wTotalLength);
712 	/* Ok the first entry must be a configuration entry, now process the others */
713 	head=(struct usb_descriptor_header *)&buffer[index];
714 	while(index+1 < len) {
715 		if(head->bDescriptorType==USB_DT_HID) {
716 			printf("HID desc found\n");
717 			memcpy(&usb_kbd_hid_desc,&buffer[index],buffer[index]);
718 			le16_to_cpus(&usb_kbd_hid_desc.bcdHID);
719 			le16_to_cpus(&usb_kbd_hid_desc.wDescriptorLength);
720 			usb_kbd_display_hid(&usb_kbd_hid_desc);
721 			len=0;
722 			break;
723 		}
724 		index+=head->bLength;
725 		head=(struct usb_descriptor_header *)&buffer[index];
726 	}
727 	if(len>0)
728 		return -1;
729 	len=usb_kbd_hid_desc.wDescriptorLength;
730 	if((index = usb_get_class_descriptor(dev, 0, USB_DT_REPORT, 0, &buffer[0], len)) < 0) {
731 		printf("reading report descriptor failed\n");
732 		return -1;
733 	}
734 	printf(" report descriptor (size %u, read %d)\n", len, index);
735 	start = &buffer[0];
736 	end = &buffer[len];
737 	i=0;
738 	do {
739 		index=fetch_item(start,end,&item);
740 		i+=index;
741 		i++;
742 		if(index>=0)
743 			usb_kbd_show_item(&item);
744 
745 		start+=index;
746 		start++;
747 	} while(index>=0);
748 
749 }
750 
751 #endif
752