2 * drivers/usb/input/yealink.c
4 * Copyright (c) 2005 Henk Vergonet <Henk.Vergonet@gmail.com>
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License as
8 * published by the Free Software Foundation; either version 2 of
9 * the License, or (at your option) any later version.
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
22 * Driver for the USB-P1K voip usb phone.
23 * This device is produced by Yealink Network Technology Co Ltd
24 * but may be branded under several names:
29 * This driver is based on:
30 * - the usbb2k-api http://savannah.nongnu.org/projects/usbb2k-api/
31 * - information from http://memeteau.free.fr/usbb2k
32 * - the xpad-driver drivers/usb/input/xpad.c
35 * - Olivier Vandorpe, for providing the usbb2k-api.
36 * - Martin Diehl, for spotting my memory allocation bug.
39 * 20050527 henk First version, functional keyboard. Keyboard events
40 * will pop-up on the ../input/eventX bus.
41 * 20050531 henk Added led, LCD, dialtone and sysfs interface.
42 * 20050610 henk Cleanups, make it ready for public consumption.
43 * 20050630 henk Cleanups, fixes in response to comments.
44 * 20050701 henk sysfs write serialisation, fix potential unload races
45 * 20050801 henk Added ringtone, restructure USB
46 * 20050816 henk Merge 2.6.13-rc6
49 #include <linux/kernel.h>
50 #include <linux/init.h>
51 #include <linux/slab.h>
52 #include <linux/module.h>
53 #include <linux/rwsem.h>
54 #include <linux/usb/input.h>
56 #include "map_to_7segment.h"
59 #define DRIVER_VERSION "yld-20051230"
60 #define DRIVER_AUTHOR "Henk Vergonet"
61 #define DRIVER_DESC "Yealink phone driver"
63 #define YEALINK_POLLING_FREQUENCY 10 /* in [Hz] */
71 } __attribute__ ((packed
));
74 * Register the LCD segment and icon map
76 #define _LOC(k,l) { .a = (k), .m = (l) }
77 #define _SEG(t, a, am, b, bm, c, cm, d, dm, e, em, f, fm, g, gm) \
79 .u = { .s = { _LOC(a, am), _LOC(b, bm), _LOC(c, cm), \
80 _LOC(d, dm), _LOC(e, em), _LOC(g, gm), \
82 #define _PIC(t, h, hm, n) \
84 .u = { .p = { .name = (n), .a = (h), .m = (hm) } } }
86 static const struct lcd_segment_map
{
89 struct pictogram_map
{
102 struct input_dev
*idev
; /* input device */
103 struct usb_device
*udev
; /* usb device */
105 /* irq input channel */
106 struct yld_ctl_packet
*irq_data
;
110 /* control output channel */
111 struct yld_ctl_packet
*ctl_data
;
113 struct usb_ctrlrequest
*ctl_req
;
114 dma_addr_t ctl_req_dma
;
117 char phys
[64]; /* physical device path */
119 u8 lcdMap
[ARRAY_SIZE(lcdMap
)]; /* state of LCD, LED ... */
120 int key_code
; /* last reported key */
125 u8 b
[sizeof(struct yld_status
)];
130 /*******************************************************************************
131 * Yealink lcd interface
132 ******************************************************************************/
135 * Register a default 7 segment character set
137 static SEG7_DEFAULT_MAP(map_seg7
);
140 * char '\9' and '\n' are placeholders and do not overwrite the original text.
141 * A space will always hide an icon.
143 static int setChar(struct yealink_dev
*yld
, int el
, int chr
)
147 if (el
>= ARRAY_SIZE(lcdMap
))
150 if (chr
== '\t' || chr
== '\n')
153 yld
->lcdMap
[el
] = chr
;
155 if (lcdMap
[el
].type
== '.') {
156 a
= lcdMap
[el
].u
.p
.a
;
157 m
= lcdMap
[el
].u
.p
.m
;
159 yld
->master
.b
[a
] |= m
;
161 yld
->master
.b
[a
] &= ~m
;
165 val
= map_to_seg7(&map_seg7
, chr
);
166 for (i
= 0; i
< ARRAY_SIZE(lcdMap
[0].u
.s
); i
++) {
167 m
= lcdMap
[el
].u
.s
[i
].m
;
172 a
= lcdMap
[el
].u
.s
[i
].a
;
174 yld
->master
.b
[a
] |= m
;
176 yld
->master
.b
[a
] &= ~m
;
182 /*******************************************************************************
183 * Yealink key interface
184 ******************************************************************************/
186 /* Map device buttons to internal key events.
188 * USB-P1K button layout:
200 * The "up" and "down" keys, are symbolised by arrows on the button.
201 * The "pickup" and "hangup" keys are symbolised by a green and red phone
204 static int map_p1k_to_key(int scancode
)
206 switch(scancode
) { /* phone key: */
207 case 0x23: return KEY_LEFT
; /* IN */
208 case 0x33: return KEY_UP
; /* up */
209 case 0x04: return KEY_RIGHT
; /* OUT */
210 case 0x24: return KEY_DOWN
; /* down */
211 case 0x03: return KEY_ENTER
; /* pickup */
212 case 0x14: return KEY_BACKSPACE
; /* C */
213 case 0x13: return KEY_ESC
; /* hangup */
214 case 0x00: return KEY_1
; /* 1 */
215 case 0x01: return KEY_2
; /* 2 */
216 case 0x02: return KEY_3
; /* 3 */
217 case 0x10: return KEY_4
; /* 4 */
218 case 0x11: return KEY_5
; /* 5 */
219 case 0x12: return KEY_6
; /* 6 */
220 case 0x20: return KEY_7
; /* 7 */
221 case 0x21: return KEY_8
; /* 8 */
222 case 0x22: return KEY_9
; /* 9 */
223 case 0x30: return KEY_KPASTERISK
; /* * */
224 case 0x31: return KEY_0
; /* 0 */
225 case 0x32: return KEY_LEFTSHIFT
|
231 /* Completes a request by converting the data into events for the
234 * The key parameter can be cascaded: key2 << 8 | key1
236 static void report_key(struct yealink_dev
*yld
, int key
)
238 struct input_dev
*idev
= yld
->idev
;
240 if (yld
->key_code
>= 0) {
242 input_report_key(idev
, yld
->key_code
& 0xff, 0);
243 if (yld
->key_code
>> 8)
244 input_report_key(idev
, yld
->key_code
>> 8, 0);
250 input_report_key(idev
, key
& 0xff, 1);
252 input_report_key(idev
, key
>> 8, 1);
257 /*******************************************************************************
258 * Yealink usb communication interface
259 ******************************************************************************/
261 static int yealink_cmd(struct yealink_dev
*yld
, struct yld_ctl_packet
*p
)
267 for(i
=0; i
<USB_PKT_LEN
-1; i
++)
270 return usb_control_msg(yld
->udev
,
271 usb_sndctrlpipe(yld
->udev
, 0),
272 USB_REQ_SET_CONFIGURATION
,
273 USB_TYPE_CLASS
| USB_RECIP_INTERFACE
| USB_DIR_OUT
,
276 USB_CTRL_SET_TIMEOUT
);
279 static u8 default_ringtone
[] = {
280 0xEF, /* volume [0-255] */
281 0xFB, 0x1E, 0x00, 0x0C, /* 1250 [hz], 12/100 [s] */
282 0xFC, 0x18, 0x00, 0x0C, /* 1000 [hz], 12/100 [s] */
283 0xFB, 0x1E, 0x00, 0x0C,
284 0xFC, 0x18, 0x00, 0x0C,
285 0xFB, 0x1E, 0x00, 0x0C,
286 0xFC, 0x18, 0x00, 0x0C,
287 0xFB, 0x1E, 0x00, 0x0C,
288 0xFC, 0x18, 0x00, 0x0C,
289 0xFF, 0xFF, 0x01, 0x90, /* silent, 400/100 [s] */
290 0x00, 0x00 /* end of sequence */
293 static int yealink_set_ringtone(struct yealink_dev
*yld
, u8
*buf
, size_t size
)
295 struct yld_ctl_packet
*p
= yld
->ctl_data
;
301 /* Set the ringtone volume */
302 memset(yld
->ctl_data
, 0, sizeof(*(yld
->ctl_data
)));
303 yld
->ctl_data
->cmd
= CMD_RING_VOLUME
;
304 yld
->ctl_data
->size
= 1;
305 yld
->ctl_data
->data
[0] = buf
[0];
311 p
->cmd
= CMD_RING_NOTE
;
315 if (len
> sizeof(p
->data
))
316 len
= sizeof(p
->data
);
318 p
->offset
= cpu_to_be16(ix
);
319 memcpy(p
->data
, &buf
[ix
], len
);
326 /* keep stat_master & stat_copy in sync.
328 static int yealink_do_idle_tasks(struct yealink_dev
*yld
)
335 memset(yld
->ctl_data
, 0, sizeof(*(yld
->ctl_data
)));
336 yld
->ctl_data
->cmd
= CMD_KEYPRESS
;
337 yld
->ctl_data
->size
= 1;
338 yld
->ctl_data
->sum
= 0xff - CMD_KEYPRESS
;
340 /* If state update pointer wraps do a KEYPRESS first. */
341 if (ix
>= sizeof(yld
->master
)) {
346 /* find update candidates: copy != master */
348 val
= yld
->master
.b
[ix
];
349 if (val
!= yld
->copy
.b
[ix
])
351 } while (++ix
< sizeof(yld
->master
));
353 /* nothing todo, wait a bit and poll for a KEYPRESS */
355 /* TODO how can we wait abit. ??
356 * msleep_interruptible(1000 / YEALINK_POLLING_FREQUENCY);
362 /* Setup an appropriate update request */
363 yld
->copy
.b
[ix
] = val
;
364 yld
->ctl_data
->data
[0] = val
;
367 case offsetof(struct yld_status
, led
):
368 yld
->ctl_data
->cmd
= CMD_LED
;
369 yld
->ctl_data
->sum
= -1 - CMD_LED
- val
;
371 case offsetof(struct yld_status
, dialtone
):
372 yld
->ctl_data
->cmd
= CMD_DIALTONE
;
373 yld
->ctl_data
->sum
= -1 - CMD_DIALTONE
- val
;
375 case offsetof(struct yld_status
, ringtone
):
376 yld
->ctl_data
->cmd
= CMD_RINGTONE
;
377 yld
->ctl_data
->sum
= -1 - CMD_RINGTONE
- val
;
379 case offsetof(struct yld_status
, keynum
):
382 yld
->ctl_data
->cmd
= CMD_SCANCODE
;
383 yld
->ctl_data
->offset
= cpu_to_be16(val
);
384 yld
->ctl_data
->data
[0] = 0;
385 yld
->ctl_data
->sum
= -1 - CMD_SCANCODE
- val
;
388 len
= sizeof(yld
->master
.s
.lcd
) - ix
;
389 if (len
> sizeof(yld
->ctl_data
->data
))
390 len
= sizeof(yld
->ctl_data
->data
);
392 /* Combine up to <len> consecutive LCD bytes in a singe request
394 yld
->ctl_data
->cmd
= CMD_LCD
;
395 yld
->ctl_data
->offset
= cpu_to_be16(ix
);
396 yld
->ctl_data
->size
= len
;
397 yld
->ctl_data
->sum
= -CMD_LCD
- ix
- val
- len
;
398 for(i
=1; i
<len
; i
++) {
400 val
= yld
->master
.b
[ix
];
401 yld
->copy
.b
[ix
] = val
;
402 yld
->ctl_data
->data
[i
] = val
;
403 yld
->ctl_data
->sum
-= val
;
406 yld
->stat_ix
= ix
+ 1;
410 /* Decide on how to handle responses
412 * The state transition diagram is somethhing like:
418 * init --ok--> waitForKey --ok--> getKey
420 * | +-------ok-------+
424 static void urb_irq_callback(struct urb
*urb
)
426 struct yealink_dev
*yld
= urb
->context
;
430 err("%s - urb status %d", __FUNCTION__
, urb
->status
);
432 switch (yld
->irq_data
->cmd
) {
435 yld
->master
.s
.keynum
= yld
->irq_data
->data
[0];
439 dbg("get scancode %x", yld
->irq_data
->data
[0]);
441 report_key(yld
, map_p1k_to_key(yld
->irq_data
->data
[0]));
445 err("unexpected response %x", yld
->irq_data
->cmd
);
448 yealink_do_idle_tasks(yld
);
450 ret
= usb_submit_urb(yld
->urb_ctl
, GFP_ATOMIC
);
452 err("%s - usb_submit_urb failed %d", __FUNCTION__
, ret
);
455 static void urb_ctl_callback(struct urb
*urb
)
457 struct yealink_dev
*yld
= urb
->context
;
461 err("%s - urb status %d", __FUNCTION__
, urb
->status
);
463 switch (yld
->ctl_data
->cmd
) {
466 /* ask for a response */
467 ret
= usb_submit_urb(yld
->urb_irq
, GFP_ATOMIC
);
470 /* send new command */
471 yealink_do_idle_tasks(yld
);
472 ret
= usb_submit_urb(yld
->urb_ctl
, GFP_ATOMIC
);
476 err("%s - usb_submit_urb failed %d", __FUNCTION__
, ret
);
479 /*******************************************************************************
480 * input event interface
481 ******************************************************************************/
483 /* TODO should we issue a ringtone on a SND_BELL event?
484 static int input_ev(struct input_dev *dev, unsigned int type,
485 unsigned int code, int value)
503 static int input_open(struct input_dev
*dev
)
505 struct yealink_dev
*yld
= dev
->private;
508 dbg("%s", __FUNCTION__
);
510 /* force updates to device */
511 for (i
= 0; i
<sizeof(yld
->master
); i
++)
512 yld
->copy
.b
[i
] = ~yld
->master
.b
[i
];
513 yld
->key_code
= -1; /* no keys pressed */
515 yealink_set_ringtone(yld
, default_ringtone
, sizeof(default_ringtone
));
518 memset(yld
->ctl_data
, 0, sizeof(*(yld
->ctl_data
)));
519 yld
->ctl_data
->cmd
= CMD_INIT
;
520 yld
->ctl_data
->size
= 10;
521 yld
->ctl_data
->sum
= 0x100-CMD_INIT
-10;
522 if ((ret
= usb_submit_urb(yld
->urb_ctl
, GFP_KERNEL
)) != 0) {
523 dbg("%s - usb_submit_urb failed with result %d",
530 static void input_close(struct input_dev
*dev
)
532 struct yealink_dev
*yld
= dev
->private;
534 usb_kill_urb(yld
->urb_ctl
);
535 usb_kill_urb(yld
->urb_irq
);
538 /*******************************************************************************
540 ******************************************************************************/
542 static DECLARE_RWSEM(sysfs_rwsema
);
544 /* Interface to the 7-segments translation table aka. char set.
546 static ssize_t
show_map(struct device
*dev
, struct device_attribute
*attr
,
549 memcpy(buf
, &map_seg7
, sizeof(map_seg7
));
550 return sizeof(map_seg7
);
553 static ssize_t
store_map(struct device
*dev
, struct device_attribute
*attr
,
554 const char *buf
, size_t cnt
)
556 if (cnt
!= sizeof(map_seg7
))
558 memcpy(&map_seg7
, buf
, sizeof(map_seg7
));
559 return sizeof(map_seg7
);
562 /* Interface to the LCD.
565 /* Reading /sys/../lineX will return the format string with its settings:
572 static ssize_t
show_line(struct device
*dev
, char *buf
, int a
, int b
)
574 struct yealink_dev
*yld
;
577 down_read(&sysfs_rwsema
);
578 yld
= dev_get_drvdata(dev
);
580 up_read(&sysfs_rwsema
);
584 for (i
= a
; i
< b
; i
++)
585 *buf
++ = lcdMap
[i
].type
;
587 for (i
= a
; i
< b
; i
++)
588 *buf
++ = yld
->lcdMap
[i
];
592 up_read(&sysfs_rwsema
);
593 return 3 + ((b
- a
) << 1);
596 static ssize_t
show_line1(struct device
*dev
, struct device_attribute
*attr
,
599 return show_line(dev
, buf
, LCD_LINE1_OFFSET
, LCD_LINE2_OFFSET
);
602 static ssize_t
show_line2(struct device
*dev
, struct device_attribute
*attr
,
605 return show_line(dev
, buf
, LCD_LINE2_OFFSET
, LCD_LINE3_OFFSET
);
608 static ssize_t
show_line3(struct device
*dev
, struct device_attribute
*attr
,
611 return show_line(dev
, buf
, LCD_LINE3_OFFSET
, LCD_LINE4_OFFSET
);
614 /* Writing to /sys/../lineX will set the coresponding LCD line.
615 * - Excess characters are ignored.
616 * - If less characters are written than allowed, the remaining digits are
618 * - The '\n' or '\t' char is a placeholder, it does not overwrite the
621 static ssize_t
store_line(struct device
*dev
, const char *buf
, size_t count
,
624 struct yealink_dev
*yld
;
627 down_write(&sysfs_rwsema
);
628 yld
= dev_get_drvdata(dev
);
630 up_write(&sysfs_rwsema
);
636 for (i
= 0; i
< len
; i
++)
637 setChar(yld
, el
++, buf
[i
]);
639 up_write(&sysfs_rwsema
);
643 static ssize_t
store_line1(struct device
*dev
, struct device_attribute
*attr
,
644 const char *buf
, size_t count
)
646 return store_line(dev
, buf
, count
, LCD_LINE1_OFFSET
, LCD_LINE1_SIZE
);
649 static ssize_t
store_line2(struct device
*dev
, struct device_attribute
*attr
,
650 const char *buf
, size_t count
)
652 return store_line(dev
, buf
, count
, LCD_LINE2_OFFSET
, LCD_LINE2_SIZE
);
655 static ssize_t
store_line3(struct device
*dev
, struct device_attribute
*attr
,
656 const char *buf
, size_t count
)
658 return store_line(dev
, buf
, count
, LCD_LINE3_OFFSET
, LCD_LINE3_SIZE
);
661 /* Interface to visible and audible "icons", these include:
662 * pictures on the LCD, the LED, and the dialtone signal.
665 /* Get a list of "switchable elements" with their current state. */
666 static ssize_t
get_icons(struct device
*dev
, struct device_attribute
*attr
,
669 struct yealink_dev
*yld
;
672 down_read(&sysfs_rwsema
);
673 yld
= dev_get_drvdata(dev
);
675 up_read(&sysfs_rwsema
);
679 for (i
= 0; i
< ARRAY_SIZE(lcdMap
); i
++) {
680 if (lcdMap
[i
].type
!= '.')
682 ret
+= sprintf(&buf
[ret
], "%s %s\n",
683 yld
->lcdMap
[i
] == ' ' ? " " : "on",
686 up_read(&sysfs_rwsema
);
690 /* Change the visibility of a particular element. */
691 static ssize_t
set_icon(struct device
*dev
, const char *buf
, size_t count
,
694 struct yealink_dev
*yld
;
697 down_write(&sysfs_rwsema
);
698 yld
= dev_get_drvdata(dev
);
700 up_write(&sysfs_rwsema
);
704 for (i
= 0; i
< ARRAY_SIZE(lcdMap
); i
++) {
705 if (lcdMap
[i
].type
!= '.')
707 if (strncmp(buf
, lcdMap
[i
].u
.p
.name
, count
) == 0) {
708 setChar(yld
, i
, chr
);
713 up_write(&sysfs_rwsema
);
717 static ssize_t
show_icon(struct device
*dev
, struct device_attribute
*attr
,
718 const char *buf
, size_t count
)
720 return set_icon(dev
, buf
, count
, buf
[0]);
723 static ssize_t
hide_icon(struct device
*dev
, struct device_attribute
*attr
,
724 const char *buf
, size_t count
)
726 return set_icon(dev
, buf
, count
, ' ');
729 /* Upload a ringtone to the device.
732 /* Stores raw ringtone data in the phone */
733 static ssize_t
store_ringtone(struct device
*dev
,
734 struct device_attribute
*attr
,
735 const char *buf
, size_t count
)
737 struct yealink_dev
*yld
;
739 down_write(&sysfs_rwsema
);
740 yld
= dev_get_drvdata(dev
);
742 up_write(&sysfs_rwsema
);
746 /* TODO locking with async usb control interface??? */
747 yealink_set_ringtone(yld
, (char *)buf
, count
);
748 up_write(&sysfs_rwsema
);
752 #define _M444 S_IRUGO
753 #define _M664 S_IRUGO|S_IWUSR|S_IWGRP
754 #define _M220 S_IWUSR|S_IWGRP
756 static DEVICE_ATTR(map_seg7
, _M664
, show_map
, store_map
);
757 static DEVICE_ATTR(line1
, _M664
, show_line1
, store_line1
);
758 static DEVICE_ATTR(line2
, _M664
, show_line2
, store_line2
);
759 static DEVICE_ATTR(line3
, _M664
, show_line3
, store_line3
);
760 static DEVICE_ATTR(get_icons
, _M444
, get_icons
, NULL
);
761 static DEVICE_ATTR(show_icon
, _M220
, NULL
, show_icon
);
762 static DEVICE_ATTR(hide_icon
, _M220
, NULL
, hide_icon
);
763 static DEVICE_ATTR(ringtone
, _M220
, NULL
, store_ringtone
);
765 static struct attribute
*yld_attributes
[] = {
766 &dev_attr_line1
.attr
,
767 &dev_attr_line2
.attr
,
768 &dev_attr_line3
.attr
,
769 &dev_attr_get_icons
.attr
,
770 &dev_attr_show_icon
.attr
,
771 &dev_attr_hide_icon
.attr
,
772 &dev_attr_map_seg7
.attr
,
773 &dev_attr_ringtone
.attr
,
777 static struct attribute_group yld_attr_group
= {
778 .attrs
= yld_attributes
781 /*******************************************************************************
782 * Linux interface and usb initialisation
783 ******************************************************************************/
789 static const struct driver_info info_P1K
= {
790 .name
= "Yealink usb-p1k",
793 static const struct usb_device_id usb_table
[] = {
795 .match_flags
= USB_DEVICE_ID_MATCH_DEVICE
|
796 USB_DEVICE_ID_MATCH_INT_INFO
,
799 .bInterfaceClass
= USB_CLASS_HID
,
800 .bInterfaceSubClass
= 0,
801 .bInterfaceProtocol
= 0,
802 .driver_info
= (kernel_ulong_t
)&info_P1K
807 static int usb_cleanup(struct yealink_dev
*yld
, int err
)
812 usb_kill_urb(yld
->urb_irq
); /* parameter validation in core/urb */
813 usb_kill_urb(yld
->urb_ctl
); /* parameter validation in core/urb */
817 input_free_device(yld
->idev
);
819 input_unregister_device(yld
->idev
);
822 usb_buffer_free(yld
->udev
, sizeof(*(yld
->ctl_req
)),
823 yld
->ctl_req
, yld
->ctl_req_dma
);
825 usb_buffer_free(yld
->udev
, USB_PKT_LEN
,
826 yld
->ctl_data
, yld
->ctl_dma
);
828 usb_buffer_free(yld
->udev
, USB_PKT_LEN
,
829 yld
->irq_data
, yld
->irq_dma
);
831 usb_free_urb(yld
->urb_irq
); /* parameter validation in core/urb */
832 usb_free_urb(yld
->urb_ctl
); /* parameter validation in core/urb */
837 static void usb_disconnect(struct usb_interface
*intf
)
839 struct yealink_dev
*yld
;
841 down_write(&sysfs_rwsema
);
842 yld
= usb_get_intfdata(intf
);
843 sysfs_remove_group(&intf
->dev
.kobj
, &yld_attr_group
);
844 usb_set_intfdata(intf
, NULL
);
845 up_write(&sysfs_rwsema
);
850 static int usb_probe(struct usb_interface
*intf
, const struct usb_device_id
*id
)
852 struct usb_device
*udev
= interface_to_usbdev (intf
);
853 struct driver_info
*nfo
= (struct driver_info
*)id
->driver_info
;
854 struct usb_host_interface
*interface
;
855 struct usb_endpoint_descriptor
*endpoint
;
856 struct yealink_dev
*yld
;
857 struct input_dev
*input_dev
;
860 interface
= intf
->cur_altsetting
;
861 endpoint
= &interface
->endpoint
[0].desc
;
862 if (!usb_endpoint_is_int_in(endpoint
))
865 yld
= kzalloc(sizeof(struct yealink_dev
), GFP_KERNEL
);
871 yld
->idev
= input_dev
= input_allocate_device();
873 return usb_cleanup(yld
, -ENOMEM
);
875 /* allocate usb buffers */
876 yld
->irq_data
= usb_buffer_alloc(udev
, USB_PKT_LEN
,
877 SLAB_ATOMIC
, &yld
->irq_dma
);
878 if (yld
->irq_data
== NULL
)
879 return usb_cleanup(yld
, -ENOMEM
);
881 yld
->ctl_data
= usb_buffer_alloc(udev
, USB_PKT_LEN
,
882 SLAB_ATOMIC
, &yld
->ctl_dma
);
884 return usb_cleanup(yld
, -ENOMEM
);
886 yld
->ctl_req
= usb_buffer_alloc(udev
, sizeof(*(yld
->ctl_req
)),
887 SLAB_ATOMIC
, &yld
->ctl_req_dma
);
888 if (yld
->ctl_req
== NULL
)
889 return usb_cleanup(yld
, -ENOMEM
);
891 /* allocate urb structures */
892 yld
->urb_irq
= usb_alloc_urb(0, GFP_KERNEL
);
893 if (yld
->urb_irq
== NULL
)
894 return usb_cleanup(yld
, -ENOMEM
);
896 yld
->urb_ctl
= usb_alloc_urb(0, GFP_KERNEL
);
897 if (yld
->urb_ctl
== NULL
)
898 return usb_cleanup(yld
, -ENOMEM
);
900 /* get a handle to the interrupt data pipe */
901 pipe
= usb_rcvintpipe(udev
, endpoint
->bEndpointAddress
);
902 ret
= usb_maxpacket(udev
, pipe
, usb_pipeout(pipe
));
903 if (ret
!= USB_PKT_LEN
)
904 err("invalid payload size %d, expected %zd", ret
, USB_PKT_LEN
);
906 /* initialise irq urb */
907 usb_fill_int_urb(yld
->urb_irq
, udev
, pipe
, yld
->irq_data
,
910 yld
, endpoint
->bInterval
);
911 yld
->urb_irq
->transfer_dma
= yld
->irq_dma
;
912 yld
->urb_irq
->transfer_flags
|= URB_NO_TRANSFER_DMA_MAP
;
913 yld
->urb_irq
->dev
= udev
;
915 /* initialise ctl urb */
916 yld
->ctl_req
->bRequestType
= USB_TYPE_CLASS
| USB_RECIP_INTERFACE
|
918 yld
->ctl_req
->bRequest
= USB_REQ_SET_CONFIGURATION
;
919 yld
->ctl_req
->wValue
= cpu_to_le16(0x200);
920 yld
->ctl_req
->wIndex
= cpu_to_le16(interface
->desc
.bInterfaceNumber
);
921 yld
->ctl_req
->wLength
= cpu_to_le16(USB_PKT_LEN
);
923 usb_fill_control_urb(yld
->urb_ctl
, udev
, usb_sndctrlpipe(udev
, 0),
924 (void *)yld
->ctl_req
, yld
->ctl_data
, USB_PKT_LEN
,
925 urb_ctl_callback
, yld
);
926 yld
->urb_ctl
->setup_dma
= yld
->ctl_req_dma
;
927 yld
->urb_ctl
->transfer_dma
= yld
->ctl_dma
;
928 yld
->urb_ctl
->transfer_flags
|= URB_NO_SETUP_DMA_MAP
|
929 URB_NO_TRANSFER_DMA_MAP
;
930 yld
->urb_ctl
->dev
= udev
;
932 /* find out the physical bus location */
933 usb_make_path(udev
, yld
->phys
, sizeof(yld
->phys
));
934 strlcat(yld
->phys
, "/input0", sizeof(yld
->phys
));
936 /* register settings for the input device */
937 input_dev
->name
= nfo
->name
;
938 input_dev
->phys
= yld
->phys
;
939 usb_to_input_id(udev
, &input_dev
->id
);
940 input_dev
->cdev
.dev
= &intf
->dev
;
942 input_dev
->private = yld
;
943 input_dev
->open
= input_open
;
944 input_dev
->close
= input_close
;
945 /* input_dev->event = input_ev; TODO */
947 /* register available key events */
948 input_dev
->evbit
[0] = BIT(EV_KEY
);
949 for (i
= 0; i
< 256; i
++) {
950 int k
= map_p1k_to_key(i
);
952 set_bit(k
& 0xff, input_dev
->keybit
);
954 set_bit(k
>> 8, input_dev
->keybit
);
958 input_register_device(yld
->idev
);
960 usb_set_intfdata(intf
, yld
);
962 /* clear visible elements */
963 for (i
= 0; i
< ARRAY_SIZE(lcdMap
); i
++)
964 setChar(yld
, i
, ' ');
966 /* display driver version on LCD line 3 */
967 store_line3(&intf
->dev
, NULL
,
968 DRIVER_VERSION
, sizeof(DRIVER_VERSION
));
970 /* Register sysfs hooks (don't care about failure) */
971 ret
= sysfs_create_group(&intf
->dev
.kobj
, &yld_attr_group
);
975 static struct usb_driver yealink_driver
= {
978 .disconnect
= usb_disconnect
,
979 .id_table
= usb_table
,
982 static int __init
yealink_dev_init(void)
984 int ret
= usb_register(&yealink_driver
);
986 info(DRIVER_DESC
":" DRIVER_VERSION
);
990 static void __exit
yealink_dev_exit(void)
992 usb_deregister(&yealink_driver
);
995 module_init(yealink_dev_init
);
996 module_exit(yealink_dev_exit
);
998 MODULE_DEVICE_TABLE (usb
, usb_table
);
1000 MODULE_AUTHOR(DRIVER_AUTHOR
);
1001 MODULE_DESCRIPTION(DRIVER_DESC
);
1002 MODULE_LICENSE("GPL");