blob: f009ab2df768e59102c83607fc15a59ecace0b47 [file] [log] [blame]
lh9ed821d2023-04-07 01:36:19 -07001/*
2 * HID driver for Logitech Unifying receivers
3 *
4 * Copyright (c) 2011 Logitech
5 */
6
7/*
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 as
10 * published by the Free Software Foundation.
11
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License
19 * along with this program; if not, write to the Free Software
20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
21 *
22 */
23
24
25#include <linux/device.h>
26#include <linux/hid.h>
27#include <linux/module.h>
28#include <linux/usb.h>
29#include <asm/unaligned.h>
30#include "usbhid/usbhid.h"
31#include "hid-ids.h"
32#include "hid-logitech-dj.h"
33
34/* Keyboard descriptor (1) */
35static const char kbd_descriptor[] = {
36 0x05, 0x01, /* USAGE_PAGE (generic Desktop) */
37 0x09, 0x06, /* USAGE (Keyboard) */
38 0xA1, 0x01, /* COLLECTION (Application) */
39 0x85, 0x01, /* REPORT_ID (1) */
40 0x95, 0x08, /* REPORT_COUNT (8) */
41 0x75, 0x01, /* REPORT_SIZE (1) */
42 0x15, 0x00, /* LOGICAL_MINIMUM (0) */
43 0x25, 0x01, /* LOGICAL_MAXIMUM (1) */
44 0x05, 0x07, /* USAGE_PAGE (Keyboard) */
45 0x19, 0xE0, /* USAGE_MINIMUM (Left Control) */
46 0x29, 0xE7, /* USAGE_MAXIMUM (Right GUI) */
47 0x81, 0x02, /* INPUT (Data,Var,Abs) */
48 0x95, 0x05, /* REPORT COUNT (5) */
49 0x05, 0x08, /* USAGE PAGE (LED page) */
50 0x19, 0x01, /* USAGE MINIMUM (1) */
51 0x29, 0x05, /* USAGE MAXIMUM (5) */
52 0x91, 0x02, /* OUTPUT (Data, Variable, Absolute) */
53 0x95, 0x01, /* REPORT COUNT (1) */
54 0x75, 0x03, /* REPORT SIZE (3) */
55 0x91, 0x01, /* OUTPUT (Constant) */
56 0x95, 0x06, /* REPORT_COUNT (6) */
57 0x75, 0x08, /* REPORT_SIZE (8) */
58 0x15, 0x00, /* LOGICAL_MINIMUM (0) */
59 0x26, 0xFF, 0x00, /* LOGICAL_MAXIMUM (255) */
60 0x05, 0x07, /* USAGE_PAGE (Keyboard) */
61 0x19, 0x00, /* USAGE_MINIMUM (no event) */
62 0x2A, 0xFF, 0x00, /* USAGE_MAXIMUM (reserved) */
63 0x81, 0x00, /* INPUT (Data,Ary,Abs) */
64 0xC0
65};
66
67/* Mouse descriptor (2) */
68static const char mse_descriptor[] = {
69 0x05, 0x01, /* USAGE_PAGE (Generic Desktop) */
70 0x09, 0x02, /* USAGE (Mouse) */
71 0xA1, 0x01, /* COLLECTION (Application) */
72 0x85, 0x02, /* REPORT_ID = 2 */
73 0x09, 0x01, /* USAGE (pointer) */
74 0xA1, 0x00, /* COLLECTION (physical) */
75 0x05, 0x09, /* USAGE_PAGE (buttons) */
76 0x19, 0x01, /* USAGE_MIN (1) */
77 0x29, 0x10, /* USAGE_MAX (16) */
78 0x15, 0x00, /* LOGICAL_MIN (0) */
79 0x25, 0x01, /* LOGICAL_MAX (1) */
80 0x95, 0x10, /* REPORT_COUNT (16) */
81 0x75, 0x01, /* REPORT_SIZE (1) */
82 0x81, 0x02, /* INPUT (data var abs) */
83 0x05, 0x01, /* USAGE_PAGE (generic desktop) */
84 0x16, 0x01, 0xF8, /* LOGICAL_MIN (-2047) */
85 0x26, 0xFF, 0x07, /* LOGICAL_MAX (2047) */
86 0x75, 0x0C, /* REPORT_SIZE (12) */
87 0x95, 0x02, /* REPORT_COUNT (2) */
88 0x09, 0x30, /* USAGE (X) */
89 0x09, 0x31, /* USAGE (Y) */
90 0x81, 0x06, /* INPUT */
91 0x15, 0x81, /* LOGICAL_MIN (-127) */
92 0x25, 0x7F, /* LOGICAL_MAX (127) */
93 0x75, 0x08, /* REPORT_SIZE (8) */
94 0x95, 0x01, /* REPORT_COUNT (1) */
95 0x09, 0x38, /* USAGE (wheel) */
96 0x81, 0x06, /* INPUT */
97 0x05, 0x0C, /* USAGE_PAGE(consumer) */
98 0x0A, 0x38, 0x02, /* USAGE(AC Pan) */
99 0x95, 0x01, /* REPORT_COUNT (1) */
100 0x81, 0x06, /* INPUT */
101 0xC0, /* END_COLLECTION */
102 0xC0, /* END_COLLECTION */
103};
104
105/* Consumer Control descriptor (3) */
106static const char consumer_descriptor[] = {
107 0x05, 0x0C, /* USAGE_PAGE (Consumer Devices) */
108 0x09, 0x01, /* USAGE (Consumer Control) */
109 0xA1, 0x01, /* COLLECTION (Application) */
110 0x85, 0x03, /* REPORT_ID = 3 */
111 0x75, 0x10, /* REPORT_SIZE (16) */
112 0x95, 0x02, /* REPORT_COUNT (2) */
113 0x15, 0x01, /* LOGICAL_MIN (1) */
114 0x26, 0x8C, 0x02, /* LOGICAL_MAX (652) */
115 0x19, 0x01, /* USAGE_MIN (1) */
116 0x2A, 0x8C, 0x02, /* USAGE_MAX (652) */
117 0x81, 0x00, /* INPUT (Data Ary Abs) */
118 0xC0, /* END_COLLECTION */
119}; /* */
120
121/* System control descriptor (4) */
122static const char syscontrol_descriptor[] = {
123 0x05, 0x01, /* USAGE_PAGE (Generic Desktop) */
124 0x09, 0x80, /* USAGE (System Control) */
125 0xA1, 0x01, /* COLLECTION (Application) */
126 0x85, 0x04, /* REPORT_ID = 4 */
127 0x75, 0x02, /* REPORT_SIZE (2) */
128 0x95, 0x01, /* REPORT_COUNT (1) */
129 0x15, 0x01, /* LOGICAL_MIN (1) */
130 0x25, 0x03, /* LOGICAL_MAX (3) */
131 0x09, 0x82, /* USAGE (System Sleep) */
132 0x09, 0x81, /* USAGE (System Power Down) */
133 0x09, 0x83, /* USAGE (System Wake Up) */
134 0x81, 0x60, /* INPUT (Data Ary Abs NPrf Null) */
135 0x75, 0x06, /* REPORT_SIZE (6) */
136 0x81, 0x03, /* INPUT (Cnst Var Abs) */
137 0xC0, /* END_COLLECTION */
138};
139
140/* Media descriptor (8) */
141static const char media_descriptor[] = {
142 0x06, 0xbc, 0xff, /* Usage Page 0xffbc */
143 0x09, 0x88, /* Usage 0x0088 */
144 0xa1, 0x01, /* BeginCollection */
145 0x85, 0x08, /* Report ID 8 */
146 0x19, 0x01, /* Usage Min 0x0001 */
147 0x29, 0xff, /* Usage Max 0x00ff */
148 0x15, 0x01, /* Logical Min 1 */
149 0x26, 0xff, 0x00, /* Logical Max 255 */
150 0x75, 0x08, /* Report Size 8 */
151 0x95, 0x01, /* Report Count 1 */
152 0x81, 0x00, /* Input */
153 0xc0, /* EndCollection */
154}; /* */
155
156/* Maximum size of all defined hid reports in bytes (including report id) */
157#define MAX_REPORT_SIZE 8
158
159/* Number of possible hid report types that can be created by this driver.
160 *
161 * Right now, RF report types have the same report types (or report id's)
162 * than the hid report created from those RF reports. In the future
163 * this doesnt have to be true.
164 *
165 * For instance, RF report type 0x01 which has a size of 8 bytes, corresponds
166 * to hid report id 0x01, this is standard keyboard. Same thing applies to mice
167 * reports and consumer control, etc. If a new RF report is created, it doesn't
168 * has to have the same report id as its corresponding hid report, so an
169 * translation may have to take place for future report types.
170 */
171#define NUMBER_OF_HID_REPORTS 32
172static const u8 hid_reportid_size_map[NUMBER_OF_HID_REPORTS] = {
173 [1] = 8, /* Standard keyboard */
174 [2] = 8, /* Standard mouse */
175 [3] = 5, /* Consumer control */
176 [4] = 2, /* System control */
177 [8] = 2, /* Media Center */
178};
179
180
181#define LOGITECH_DJ_INTERFACE_NUMBER 0x02
182
183static struct hid_ll_driver logi_dj_ll_driver;
184
185static int logi_dj_output_hidraw_report(struct hid_device *hid, u8 * buf,
186 size_t count,
187 unsigned char report_type);
188static int logi_dj_recv_query_paired_devices(struct dj_receiver_dev *djrcv_dev);
189
190static void logi_dj_recv_destroy_djhid_device(struct dj_receiver_dev *djrcv_dev,
191 struct dj_report *dj_report)
192{
193 /* Called in delayed work context */
194 struct dj_device *dj_dev;
195 unsigned long flags;
196
197 spin_lock_irqsave(&djrcv_dev->lock, flags);
198 dj_dev = djrcv_dev->paired_dj_devices[dj_report->device_index];
199 djrcv_dev->paired_dj_devices[dj_report->device_index] = NULL;
200 spin_unlock_irqrestore(&djrcv_dev->lock, flags);
201
202 if (dj_dev != NULL) {
203 hid_destroy_device(dj_dev->hdev);
204 kfree(dj_dev);
205 } else {
206 dev_err(&djrcv_dev->hdev->dev, "%s: can't destroy a NULL device\n",
207 __func__);
208 }
209}
210
211static void logi_dj_recv_add_djhid_device(struct dj_receiver_dev *djrcv_dev,
212 struct dj_report *dj_report)
213{
214 /* Called in delayed work context */
215 struct hid_device *djrcv_hdev = djrcv_dev->hdev;
216 struct usb_interface *intf = to_usb_interface(djrcv_hdev->dev.parent);
217 struct usb_device *usbdev = interface_to_usbdev(intf);
218 struct hid_device *dj_hiddev;
219 struct dj_device *dj_dev;
220
221 /* Device index goes from 1 to 6, we need 3 bytes to store the
222 * semicolon, the index, and a null terminator
223 */
224 unsigned char tmpstr[3];
225
226 if (dj_report->report_params[DEVICE_PAIRED_PARAM_SPFUNCTION] &
227 SPFUNCTION_DEVICE_LIST_EMPTY) {
228 dbg_hid("%s: device list is empty\n", __func__);
229 djrcv_dev->querying_devices = false;
230 return;
231 }
232
233 if (djrcv_dev->paired_dj_devices[dj_report->device_index]) {
234 /* The device is already known. No need to reallocate it. */
235 dbg_hid("%s: device is already known\n", __func__);
236 return;
237 }
238
239 dj_hiddev = hid_allocate_device();
240 if (IS_ERR(dj_hiddev)) {
241 dev_err(&djrcv_hdev->dev, "%s: hid_allocate_device failed\n",
242 __func__);
243 return;
244 }
245
246 dj_hiddev->ll_driver = &logi_dj_ll_driver;
247 dj_hiddev->hid_output_raw_report = logi_dj_output_hidraw_report;
248
249 dj_hiddev->dev.parent = &djrcv_hdev->dev;
250 dj_hiddev->bus = BUS_USB;
251 dj_hiddev->vendor = le16_to_cpu(usbdev->descriptor.idVendor);
252 dj_hiddev->product = le16_to_cpu(usbdev->descriptor.idProduct);
253 snprintf(dj_hiddev->name, sizeof(dj_hiddev->name),
254 "Logitech Unifying Device. Wireless PID:%02x%02x",
255 dj_report->report_params[DEVICE_PAIRED_PARAM_EQUAD_ID_MSB],
256 dj_report->report_params[DEVICE_PAIRED_PARAM_EQUAD_ID_LSB]);
257
258 usb_make_path(usbdev, dj_hiddev->phys, sizeof(dj_hiddev->phys));
259 snprintf(tmpstr, sizeof(tmpstr), ":%d", dj_report->device_index);
260 strlcat(dj_hiddev->phys, tmpstr, sizeof(dj_hiddev->phys));
261
262 dj_dev = kzalloc(sizeof(struct dj_device), GFP_KERNEL);
263
264 if (!dj_dev) {
265 dev_err(&djrcv_hdev->dev, "%s: failed allocating dj_device\n",
266 __func__);
267 goto dj_device_allocate_fail;
268 }
269
270 dj_dev->reports_supported = get_unaligned_le32(
271 dj_report->report_params + DEVICE_PAIRED_RF_REPORT_TYPE);
272 dj_dev->hdev = dj_hiddev;
273 dj_dev->dj_receiver_dev = djrcv_dev;
274 dj_dev->device_index = dj_report->device_index;
275 dj_hiddev->driver_data = dj_dev;
276
277 djrcv_dev->paired_dj_devices[dj_report->device_index] = dj_dev;
278
279 if (hid_add_device(dj_hiddev)) {
280 dev_err(&djrcv_hdev->dev, "%s: failed adding dj_device\n",
281 __func__);
282 goto hid_add_device_fail;
283 }
284
285 return;
286
287hid_add_device_fail:
288 djrcv_dev->paired_dj_devices[dj_report->device_index] = NULL;
289 kfree(dj_dev);
290dj_device_allocate_fail:
291 hid_destroy_device(dj_hiddev);
292}
293
294static void delayedwork_callback(struct work_struct *work)
295{
296 struct dj_receiver_dev *djrcv_dev =
297 container_of(work, struct dj_receiver_dev, work);
298
299 struct dj_report dj_report;
300 unsigned long flags;
301 int count;
302 int retval;
303
304 dbg_hid("%s\n", __func__);
305
306 spin_lock_irqsave(&djrcv_dev->lock, flags);
307
308 count = kfifo_out(&djrcv_dev->notif_fifo, &dj_report,
309 sizeof(struct dj_report));
310
311 if (count != sizeof(struct dj_report)) {
312 dev_err(&djrcv_dev->hdev->dev, "%s: workitem triggered without "
313 "notifications available\n", __func__);
314 spin_unlock_irqrestore(&djrcv_dev->lock, flags);
315 return;
316 }
317
318 if (!kfifo_is_empty(&djrcv_dev->notif_fifo)) {
319 if (schedule_work(&djrcv_dev->work) == 0) {
320 dbg_hid("%s: did not schedule the work item, was "
321 "already queued\n", __func__);
322 }
323 }
324
325 spin_unlock_irqrestore(&djrcv_dev->lock, flags);
326
327 switch (dj_report.report_type) {
328 case REPORT_TYPE_NOTIF_DEVICE_PAIRED:
329 logi_dj_recv_add_djhid_device(djrcv_dev, &dj_report);
330 break;
331 case REPORT_TYPE_NOTIF_DEVICE_UNPAIRED:
332 logi_dj_recv_destroy_djhid_device(djrcv_dev, &dj_report);
333 break;
334 default:
335 /* A normal report (i. e. not belonging to a pair/unpair notification)
336 * arriving here, means that the report arrived but we did not have a
337 * paired dj_device associated to the report's device_index, this
338 * means that the original "device paired" notification corresponding
339 * to this dj_device never arrived to this driver. The reason is that
340 * hid-core discards all packets coming from a device while probe() is
341 * executing. */
342 if (!djrcv_dev->paired_dj_devices[dj_report.device_index]) {
343 /* ok, we don't know the device, just re-ask the
344 * receiver for the list of connected devices. */
345 retval = logi_dj_recv_query_paired_devices(djrcv_dev);
346 if (!retval) {
347 /* everything went fine, so just leave */
348 break;
349 }
350 dev_err(&djrcv_dev->hdev->dev,
351 "%s:logi_dj_recv_query_paired_devices "
352 "error:%d\n", __func__, retval);
353 }
354 dbg_hid("%s: unexpected report type\n", __func__);
355 }
356}
357
358static void logi_dj_recv_queue_notification(struct dj_receiver_dev *djrcv_dev,
359 struct dj_report *dj_report)
360{
361 /* We are called from atomic context (tasklet && djrcv->lock held) */
362
363 kfifo_in(&djrcv_dev->notif_fifo, dj_report, sizeof(struct dj_report));
364
365 if (schedule_work(&djrcv_dev->work) == 0) {
366 dbg_hid("%s: did not schedule the work item, was already "
367 "queued\n", __func__);
368 }
369}
370
371static void logi_dj_recv_forward_null_report(struct dj_receiver_dev *djrcv_dev,
372 struct dj_report *dj_report)
373{
374 /* We are called from atomic context (tasklet && djrcv->lock held) */
375 unsigned int i;
376 u8 reportbuffer[MAX_REPORT_SIZE];
377 struct dj_device *djdev;
378
379 djdev = djrcv_dev->paired_dj_devices[dj_report->device_index];
380
381 if (!djdev) {
382 dbg_hid("djrcv_dev->paired_dj_devices[dj_report->device_index]"
383 " is NULL, index %d\n", dj_report->device_index);
384 kfifo_in(&djrcv_dev->notif_fifo, dj_report, sizeof(struct dj_report));
385
386 if (schedule_work(&djrcv_dev->work) == 0) {
387 dbg_hid("%s: did not schedule the work item, was already "
388 "queued\n", __func__);
389 }
390 return;
391 }
392
393 memset(reportbuffer, 0, sizeof(reportbuffer));
394
395 for (i = 0; i < NUMBER_OF_HID_REPORTS; i++) {
396 if (djdev->reports_supported & (1 << i)) {
397 reportbuffer[0] = i;
398 if (hid_input_report(djdev->hdev,
399 HID_INPUT_REPORT,
400 reportbuffer,
401 hid_reportid_size_map[i], 1)) {
402 dbg_hid("hid_input_report error sending null "
403 "report\n");
404 }
405 }
406 }
407}
408
409static void logi_dj_recv_forward_report(struct dj_receiver_dev *djrcv_dev,
410 struct dj_report *dj_report)
411{
412 /* We are called from atomic context (tasklet && djrcv->lock held) */
413 struct dj_device *dj_device;
414
415 dj_device = djrcv_dev->paired_dj_devices[dj_report->device_index];
416
417 if (dj_device == NULL) {
418 dbg_hid("djrcv_dev->paired_dj_devices[dj_report->device_index]"
419 " is NULL, index %d\n", dj_report->device_index);
420 kfifo_in(&djrcv_dev->notif_fifo, dj_report, sizeof(struct dj_report));
421
422 if (schedule_work(&djrcv_dev->work) == 0) {
423 dbg_hid("%s: did not schedule the work item, was already "
424 "queued\n", __func__);
425 }
426 return;
427 }
428
429 if ((dj_report->report_type > ARRAY_SIZE(hid_reportid_size_map) - 1) ||
430 (hid_reportid_size_map[dj_report->report_type] == 0)) {
431 dbg_hid("invalid report type:%x\n", dj_report->report_type);
432 return;
433 }
434
435 if (hid_input_report(dj_device->hdev,
436 HID_INPUT_REPORT, &dj_report->report_type,
437 hid_reportid_size_map[dj_report->report_type], 1)) {
438 dbg_hid("hid_input_report error\n");
439 }
440}
441
442
443static int logi_dj_recv_send_report(struct dj_receiver_dev *djrcv_dev,
444 struct dj_report *dj_report)
445{
446 struct hid_device *hdev = djrcv_dev->hdev;
447 struct hid_report *report;
448 struct hid_report_enum *output_report_enum;
449 u8 *data = (u8 *)(&dj_report->device_index);
450 unsigned int i;
451
452 output_report_enum = &hdev->report_enum[HID_OUTPUT_REPORT];
453 report = output_report_enum->report_id_hash[REPORT_ID_DJ_SHORT];
454
455 if (!report) {
456 dev_err(&hdev->dev, "%s: unable to find dj report\n", __func__);
457 return -ENODEV;
458 }
459
460 for (i = 0; i < DJREPORT_SHORT_LENGTH - 1; i++)
461 report->field[0]->value[i] = data[i];
462
463 usbhid_submit_report(hdev, report, USB_DIR_OUT);
464
465 return 0;
466}
467
468static int logi_dj_recv_query_paired_devices(struct dj_receiver_dev *djrcv_dev)
469{
470 struct dj_report *dj_report;
471 int retval;
472
473 dj_report = kzalloc(sizeof(struct dj_report), GFP_KERNEL);
474 if (!dj_report)
475 return -ENOMEM;
476 dj_report->report_id = REPORT_ID_DJ_SHORT;
477 dj_report->device_index = 0xFF;
478 dj_report->report_type = REPORT_TYPE_CMD_GET_PAIRED_DEVICES;
479 retval = logi_dj_recv_send_report(djrcv_dev, dj_report);
480 kfree(dj_report);
481 return retval;
482}
483
484
485static int logi_dj_recv_switch_to_dj_mode(struct dj_receiver_dev *djrcv_dev,
486 unsigned timeout)
487{
488 struct dj_report *dj_report;
489 int retval;
490
491 dj_report = kzalloc(sizeof(struct dj_report), GFP_KERNEL);
492 if (!dj_report)
493 return -ENOMEM;
494 dj_report->report_id = REPORT_ID_DJ_SHORT;
495 dj_report->device_index = 0xFF;
496 dj_report->report_type = REPORT_TYPE_CMD_SWITCH;
497 dj_report->report_params[CMD_SWITCH_PARAM_DEVBITFIELD] = 0x3F;
498 dj_report->report_params[CMD_SWITCH_PARAM_TIMEOUT_SECONDS] = (u8)timeout;
499 retval = logi_dj_recv_send_report(djrcv_dev, dj_report);
500 kfree(dj_report);
501 return retval;
502}
503
504
505static int logi_dj_ll_open(struct hid_device *hid)
506{
507 dbg_hid("%s:%s\n", __func__, hid->phys);
508 return 0;
509
510}
511
512static void logi_dj_ll_close(struct hid_device *hid)
513{
514 dbg_hid("%s:%s\n", __func__, hid->phys);
515}
516
517static int logi_dj_output_hidraw_report(struct hid_device *hid, u8 * buf,
518 size_t count,
519 unsigned char report_type)
520{
521 /* Called by hid raw to send data */
522 dbg_hid("%s\n", __func__);
523
524 return 0;
525}
526
527static int logi_dj_ll_parse(struct hid_device *hid)
528{
529 struct dj_device *djdev = hid->driver_data;
530 int retval;
531
532 dbg_hid("%s\n", __func__);
533
534 djdev->hdev->version = 0x0111;
535 djdev->hdev->country = 0x00;
536
537 if (djdev->reports_supported & STD_KEYBOARD) {
538 dbg_hid("%s: sending a kbd descriptor, reports_supported: %x\n",
539 __func__, djdev->reports_supported);
540 retval = hid_parse_report(hid,
541 (u8 *) kbd_descriptor,
542 sizeof(kbd_descriptor));
543 if (retval) {
544 dbg_hid("%s: sending a kbd descriptor, hid_parse failed"
545 " error: %d\n", __func__, retval);
546 return retval;
547 }
548 }
549
550 if (djdev->reports_supported & STD_MOUSE) {
551 dbg_hid("%s: sending a mouse descriptor, reports_supported: "
552 "%x\n", __func__, djdev->reports_supported);
553 retval = hid_parse_report(hid,
554 (u8 *) mse_descriptor,
555 sizeof(mse_descriptor));
556 if (retval) {
557 dbg_hid("%s: sending a mouse descriptor, hid_parse "
558 "failed error: %d\n", __func__, retval);
559 return retval;
560 }
561 }
562
563 if (djdev->reports_supported & MULTIMEDIA) {
564 dbg_hid("%s: sending a multimedia report descriptor: %x\n",
565 __func__, djdev->reports_supported);
566 retval = hid_parse_report(hid,
567 (u8 *) consumer_descriptor,
568 sizeof(consumer_descriptor));
569 if (retval) {
570 dbg_hid("%s: sending a consumer_descriptor, hid_parse "
571 "failed error: %d\n", __func__, retval);
572 return retval;
573 }
574 }
575
576 if (djdev->reports_supported & POWER_KEYS) {
577 dbg_hid("%s: sending a power keys report descriptor: %x\n",
578 __func__, djdev->reports_supported);
579 retval = hid_parse_report(hid,
580 (u8 *) syscontrol_descriptor,
581 sizeof(syscontrol_descriptor));
582 if (retval) {
583 dbg_hid("%s: sending a syscontrol_descriptor, "
584 "hid_parse failed error: %d\n",
585 __func__, retval);
586 return retval;
587 }
588 }
589
590 if (djdev->reports_supported & MEDIA_CENTER) {
591 dbg_hid("%s: sending a media center report descriptor: %x\n",
592 __func__, djdev->reports_supported);
593 retval = hid_parse_report(hid,
594 (u8 *) media_descriptor,
595 sizeof(media_descriptor));
596 if (retval) {
597 dbg_hid("%s: sending a media_descriptor, hid_parse "
598 "failed error: %d\n", __func__, retval);
599 return retval;
600 }
601 }
602
603 if (djdev->reports_supported & KBD_LEDS) {
604 dbg_hid("%s: need to send kbd leds report descriptor: %x\n",
605 __func__, djdev->reports_supported);
606 }
607
608 return 0;
609}
610
611static int logi_dj_ll_input_event(struct input_dev *dev, unsigned int type,
612 unsigned int code, int value)
613{
614 /* Sent by the input layer to handle leds and Force Feedback */
615 struct hid_device *dj_hiddev = input_get_drvdata(dev);
616 struct dj_device *dj_dev = dj_hiddev->driver_data;
617
618 struct dj_receiver_dev *djrcv_dev =
619 dev_get_drvdata(dj_hiddev->dev.parent);
620 struct hid_device *dj_rcv_hiddev = djrcv_dev->hdev;
621 struct hid_report_enum *output_report_enum;
622
623 struct hid_field *field;
624 struct hid_report *report;
625 unsigned char data[8];
626 int offset;
627
628 dbg_hid("%s: %s, type:%d | code:%d | value:%d\n",
629 __func__, dev->phys, type, code, value);
630
631 if (type != EV_LED)
632 return -1;
633
634 offset = hidinput_find_field(dj_hiddev, type, code, &field);
635
636 if (offset == -1) {
637 dev_warn(&dev->dev, "event field not found\n");
638 return -1;
639 }
640 hid_set_field(field, offset, value);
641 hid_output_report(field->report, &data[0]);
642
643 output_report_enum = &dj_rcv_hiddev->report_enum[HID_OUTPUT_REPORT];
644 report = output_report_enum->report_id_hash[REPORT_ID_DJ_SHORT];
645 hid_set_field(report->field[0], 0, dj_dev->device_index);
646 hid_set_field(report->field[0], 1, REPORT_TYPE_LEDS);
647 hid_set_field(report->field[0], 2, data[1]);
648
649 usbhid_submit_report(dj_rcv_hiddev, report, USB_DIR_OUT);
650
651 return 0;
652
653}
654
655static int logi_dj_ll_start(struct hid_device *hid)
656{
657 dbg_hid("%s\n", __func__);
658 return 0;
659}
660
661static void logi_dj_ll_stop(struct hid_device *hid)
662{
663 dbg_hid("%s\n", __func__);
664}
665
666
667static struct hid_ll_driver logi_dj_ll_driver = {
668 .parse = logi_dj_ll_parse,
669 .start = logi_dj_ll_start,
670 .stop = logi_dj_ll_stop,
671 .open = logi_dj_ll_open,
672 .close = logi_dj_ll_close,
673 .hidinput_input_event = logi_dj_ll_input_event,
674};
675
676
677static int logi_dj_raw_event(struct hid_device *hdev,
678 struct hid_report *report, u8 *data,
679 int size)
680{
681 struct dj_receiver_dev *djrcv_dev = hid_get_drvdata(hdev);
682 struct dj_report *dj_report = (struct dj_report *) data;
683 unsigned long flags;
684
685 dbg_hid("%s, size:%d\n", __func__, size);
686
687 /* Here we receive all data coming from iface 2, there are 4 cases:
688 *
689 * 1) Data should continue its normal processing i.e. data does not
690 * come from the DJ collection, in which case we do nothing and
691 * return 0, so hid-core can continue normal processing (will forward
692 * to associated hidraw device)
693 *
694 * 2) Data is from DJ collection, and is intended for this driver i. e.
695 * data contains arrival, departure, etc notifications, in which case
696 * we queue them for delayed processing by the work queue. We return 1
697 * to hid-core as no further processing is required from it.
698 *
699 * 3) Data is from DJ collection, and informs a connection change,
700 * if the change means rf link loss, then we must send a null report
701 * to the upper layer to discard potentially pressed keys that may be
702 * repeated forever by the input layer. Return 1 to hid-core as no
703 * further processing is required.
704 *
705 * 4) Data is from DJ collection and is an actual input event from
706 * a paired DJ device in which case we forward it to the correct hid
707 * device (via hid_input_report() ) and return 1 so hid-core does not do
708 * anything else with it.
709 */
710
711 /* case 1) */
712 if (data[0] != REPORT_ID_DJ_SHORT)
713 return false;
714
715 if ((dj_report->device_index < DJ_DEVICE_INDEX_MIN) ||
716 (dj_report->device_index > DJ_DEVICE_INDEX_MAX)) {
717 /*
718 * Device index is wrong, bail out.
719 * This driver can ignore safely the receiver notifications,
720 * so ignore those reports too.
721 */
722 if (dj_report->device_index != DJ_RECEIVER_INDEX)
723 dev_err(&hdev->dev, "%s: invalid device index:%d\n",
724 __func__, dj_report->device_index);
725 return false;
726 }
727
728 spin_lock_irqsave(&djrcv_dev->lock, flags);
729 switch (dj_report->report_type) {
730 case REPORT_TYPE_NOTIF_DEVICE_PAIRED:
731 case REPORT_TYPE_NOTIF_DEVICE_UNPAIRED:
732 logi_dj_recv_queue_notification(djrcv_dev, dj_report);
733 break;
734 case REPORT_TYPE_NOTIF_CONNECTION_STATUS:
735 if (dj_report->report_params[CONNECTION_STATUS_PARAM_STATUS] ==
736 STATUS_LINKLOSS) {
737 logi_dj_recv_forward_null_report(djrcv_dev, dj_report);
738 }
739 break;
740 default:
741 logi_dj_recv_forward_report(djrcv_dev, dj_report);
742 }
743 spin_unlock_irqrestore(&djrcv_dev->lock, flags);
744
745 return true;
746}
747
748static int logi_dj_probe(struct hid_device *hdev,
749 const struct hid_device_id *id)
750{
751 struct usb_interface *intf = to_usb_interface(hdev->dev.parent);
752 struct dj_receiver_dev *djrcv_dev;
753 int retval;
754
755 if (is_dj_device((struct dj_device *)hdev->driver_data))
756 return -ENODEV;
757
758 dbg_hid("%s called for ifnum %d\n", __func__,
759 intf->cur_altsetting->desc.bInterfaceNumber);
760
761 /* Ignore interfaces 0 and 1, they will not carry any data, dont create
762 * any hid_device for them */
763 if (intf->cur_altsetting->desc.bInterfaceNumber !=
764 LOGITECH_DJ_INTERFACE_NUMBER) {
765 dbg_hid("%s: ignoring ifnum %d\n", __func__,
766 intf->cur_altsetting->desc.bInterfaceNumber);
767 return -ENODEV;
768 }
769
770 /* Treat interface 2 */
771
772 djrcv_dev = kzalloc(sizeof(struct dj_receiver_dev), GFP_KERNEL);
773 if (!djrcv_dev) {
774 dev_err(&hdev->dev,
775 "%s:failed allocating dj_receiver_dev\n", __func__);
776 return -ENOMEM;
777 }
778 djrcv_dev->hdev = hdev;
779 INIT_WORK(&djrcv_dev->work, delayedwork_callback);
780 spin_lock_init(&djrcv_dev->lock);
781 if (kfifo_alloc(&djrcv_dev->notif_fifo,
782 DJ_MAX_NUMBER_NOTIFICATIONS * sizeof(struct dj_report),
783 GFP_KERNEL)) {
784 dev_err(&hdev->dev,
785 "%s:failed allocating notif_fifo\n", __func__);
786 kfree(djrcv_dev);
787 return -ENOMEM;
788 }
789 hid_set_drvdata(hdev, djrcv_dev);
790
791 /* Call to usbhid to fetch the HID descriptors of interface 2 and
792 * subsequently call to the hid/hid-core to parse the fetched
793 * descriptors, this will in turn create the hidraw and hiddev nodes
794 * for interface 2 of the receiver */
795 retval = hid_parse(hdev);
796 if (retval) {
797 dev_err(&hdev->dev,
798 "%s:parse of interface 2 failed\n", __func__);
799 goto hid_parse_fail;
800 }
801
802 if (!hid_validate_values(hdev, HID_OUTPUT_REPORT, REPORT_ID_DJ_SHORT,
803 0, DJREPORT_SHORT_LENGTH - 1)) {
804 retval = -ENODEV;
805 goto hid_parse_fail;
806 }
807
808 /* Starts the usb device and connects to upper interfaces hiddev and
809 * hidraw */
810 retval = hid_hw_start(hdev, HID_CONNECT_DEFAULT);
811 if (retval) {
812 dev_err(&hdev->dev,
813 "%s:hid_hw_start returned error\n", __func__);
814 goto hid_hw_start_fail;
815 }
816
817 retval = logi_dj_recv_switch_to_dj_mode(djrcv_dev, 0);
818 if (retval < 0) {
819 dev_err(&hdev->dev,
820 "%s:logi_dj_recv_switch_to_dj_mode returned error:%d\n",
821 __func__, retval);
822 goto switch_to_dj_mode_fail;
823 }
824
825 /* This is enabling the polling urb on the IN endpoint */
826 retval = hdev->ll_driver->open(hdev);
827 if (retval < 0) {
828 dev_err(&hdev->dev, "%s:hdev->ll_driver->open returned "
829 "error:%d\n", __func__, retval);
830 goto llopen_failed;
831 }
832
833 retval = logi_dj_recv_query_paired_devices(djrcv_dev);
834 if (retval < 0) {
835 dev_err(&hdev->dev, "%s:logi_dj_recv_query_paired_devices "
836 "error:%d\n", __func__, retval);
837 goto logi_dj_recv_query_paired_devices_failed;
838 }
839
840 return retval;
841
842logi_dj_recv_query_paired_devices_failed:
843 hdev->ll_driver->close(hdev);
844
845llopen_failed:
846switch_to_dj_mode_fail:
847 hid_hw_stop(hdev);
848
849hid_hw_start_fail:
850hid_parse_fail:
851 kfifo_free(&djrcv_dev->notif_fifo);
852 kfree(djrcv_dev);
853 hid_set_drvdata(hdev, NULL);
854 return retval;
855
856}
857
858#ifdef CONFIG_PM
859static int logi_dj_reset_resume(struct hid_device *hdev)
860{
861 int retval;
862 struct dj_receiver_dev *djrcv_dev = hid_get_drvdata(hdev);
863
864 retval = logi_dj_recv_switch_to_dj_mode(djrcv_dev, 0);
865 if (retval < 0) {
866 dev_err(&hdev->dev,
867 "%s:logi_dj_recv_switch_to_dj_mode returned error:%d\n",
868 __func__, retval);
869 }
870
871 return 0;
872}
873#endif
874
875static void logi_dj_remove(struct hid_device *hdev)
876{
877 struct dj_receiver_dev *djrcv_dev = hid_get_drvdata(hdev);
878 struct dj_device *dj_dev;
879 int i;
880
881 dbg_hid("%s\n", __func__);
882
883 cancel_work_sync(&djrcv_dev->work);
884
885 hdev->ll_driver->close(hdev);
886 hid_hw_stop(hdev);
887
888 /* I suppose that at this point the only context that can access
889 * the djrecv_data is this thread as the work item is guaranteed to
890 * have finished and no more raw_event callbacks should arrive after
891 * the remove callback was triggered so no locks are put around the
892 * code below */
893 for (i = 0; i < (DJ_MAX_PAIRED_DEVICES + DJ_DEVICE_INDEX_MIN); i++) {
894 dj_dev = djrcv_dev->paired_dj_devices[i];
895 if (dj_dev != NULL) {
896 hid_destroy_device(dj_dev->hdev);
897 kfree(dj_dev);
898 djrcv_dev->paired_dj_devices[i] = NULL;
899 }
900 }
901
902 kfifo_free(&djrcv_dev->notif_fifo);
903 kfree(djrcv_dev);
904 hid_set_drvdata(hdev, NULL);
905}
906
907static int logi_djdevice_probe(struct hid_device *hdev,
908 const struct hid_device_id *id)
909{
910 int ret;
911 struct dj_device *dj_dev = hdev->driver_data;
912
913 if (!is_dj_device(dj_dev))
914 return -ENODEV;
915
916 ret = hid_parse(hdev);
917 if (!ret)
918 ret = hid_hw_start(hdev, HID_CONNECT_DEFAULT);
919
920 return ret;
921}
922
923static const struct hid_device_id logi_dj_receivers[] = {
924 {HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH,
925 USB_DEVICE_ID_LOGITECH_UNIFYING_RECEIVER)},
926 {HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH,
927 USB_DEVICE_ID_LOGITECH_UNIFYING_RECEIVER_2)},
928 {}
929};
930
931MODULE_DEVICE_TABLE(hid, logi_dj_receivers);
932
933static struct hid_driver logi_djreceiver_driver = {
934 .name = "logitech-djreceiver",
935 .id_table = logi_dj_receivers,
936 .probe = logi_dj_probe,
937 .remove = logi_dj_remove,
938 .raw_event = logi_dj_raw_event,
939#ifdef CONFIG_PM
940 .reset_resume = logi_dj_reset_resume,
941#endif
942};
943
944
945static const struct hid_device_id logi_dj_devices[] = {
946 {HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH,
947 USB_DEVICE_ID_LOGITECH_UNIFYING_RECEIVER)},
948 {HID_USB_DEVICE(USB_VENDOR_ID_LOGITECH,
949 USB_DEVICE_ID_LOGITECH_UNIFYING_RECEIVER_2)},
950 {}
951};
952
953static struct hid_driver logi_djdevice_driver = {
954 .name = "logitech-djdevice",
955 .id_table = logi_dj_devices,
956 .probe = logi_djdevice_probe,
957};
958
959
960static int __init logi_dj_init(void)
961{
962 int retval;
963
964 dbg_hid("Logitech-DJ:%s\n", __func__);
965
966 retval = hid_register_driver(&logi_djreceiver_driver);
967 if (retval)
968 return retval;
969
970 retval = hid_register_driver(&logi_djdevice_driver);
971 if (retval)
972 hid_unregister_driver(&logi_djreceiver_driver);
973
974 return retval;
975
976}
977
978static void __exit logi_dj_exit(void)
979{
980 dbg_hid("Logitech-DJ:%s\n", __func__);
981
982 hid_unregister_driver(&logi_djdevice_driver);
983 hid_unregister_driver(&logi_djreceiver_driver);
984
985}
986
987module_init(logi_dj_init);
988module_exit(logi_dj_exit);
989MODULE_LICENSE("GPL");
990MODULE_AUTHOR("Logitech");
991MODULE_AUTHOR("Nestor Lopez Casado");
992MODULE_AUTHOR("nlopezcasad@logitech.com");