GNU Linux-libre 4.19.245-gnu1
[releases.git] / drivers / input / misc / keyspan_remote.c
1 /*
2  * keyspan_remote: USB driver for the Keyspan DMR
3  *
4  * Copyright (C) 2005 Zymeta Corporation - Michael Downey (downey@zymeta.com)
5  *
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, version 2.
9  *
10  * This driver has been put together with the support of Innosys, Inc.
11  * and Keyspan, Inc the manufacturers of the Keyspan USB DMR product.
12  */
13
14 #include <linux/kernel.h>
15 #include <linux/errno.h>
16 #include <linux/slab.h>
17 #include <linux/module.h>
18 #include <linux/usb/input.h>
19
20 /* Parameters that can be passed to the driver. */
21 static int debug;
22 module_param(debug, int, 0444);
23 MODULE_PARM_DESC(debug, "Enable extra debug messages and information");
24
25 /* Vendor and product ids */
26 #define USB_KEYSPAN_VENDOR_ID           0x06CD
27 #define USB_KEYSPAN_PRODUCT_UIA11       0x0202
28
29 /* Defines for converting the data from the remote. */
30 #define ZERO            0x18
31 #define ZERO_MASK       0x1F    /* 5 bits for a 0 */
32 #define ONE             0x3C
33 #define ONE_MASK        0x3F    /* 6 bits for a 1 */
34 #define SYNC            0x3F80
35 #define SYNC_MASK       0x3FFF  /* 14 bits for a SYNC sequence */
36 #define STOP            0x00
37 #define STOP_MASK       0x1F    /* 5 bits for the STOP sequence */
38 #define GAP             0xFF
39
40 #define RECV_SIZE       8       /* The UIA-11 type have a 8 byte limit. */
41
42 /*
43  * Table that maps the 31 possible keycodes to input keys.
44  * Currently there are 15 and 17 button models so RESERVED codes
45  * are blank areas in the mapping.
46  */
47 static const unsigned short keyspan_key_table[] = {
48         KEY_RESERVED,           /* 0 is just a place holder. */
49         KEY_RESERVED,
50         KEY_STOP,
51         KEY_PLAYCD,
52         KEY_RESERVED,
53         KEY_PREVIOUSSONG,
54         KEY_REWIND,
55         KEY_FORWARD,
56         KEY_NEXTSONG,
57         KEY_RESERVED,
58         KEY_RESERVED,
59         KEY_RESERVED,
60         KEY_PAUSE,
61         KEY_VOLUMEUP,
62         KEY_RESERVED,
63         KEY_RESERVED,
64         KEY_RESERVED,
65         KEY_VOLUMEDOWN,
66         KEY_RESERVED,
67         KEY_UP,
68         KEY_RESERVED,
69         KEY_MUTE,
70         KEY_LEFT,
71         KEY_ENTER,
72         KEY_RIGHT,
73         KEY_RESERVED,
74         KEY_RESERVED,
75         KEY_DOWN,
76         KEY_RESERVED,
77         KEY_KPASTERISK,
78         KEY_RESERVED,
79         KEY_MENU
80 };
81
82 /* table of devices that work with this driver */
83 static const struct usb_device_id keyspan_table[] = {
84         { USB_DEVICE(USB_KEYSPAN_VENDOR_ID, USB_KEYSPAN_PRODUCT_UIA11) },
85         { }                                     /* Terminating entry */
86 };
87
88 /* Structure to store all the real stuff that a remote sends to us. */
89 struct keyspan_message {
90         u16     system;
91         u8      button;
92         u8      toggle;
93 };
94
95 /* Structure used for all the bit testing magic needed to be done. */
96 struct bit_tester {
97         u32     tester;
98         int     len;
99         int     pos;
100         int     bits_left;
101         u8      buffer[32];
102 };
103
104 /* Structure to hold all of our driver specific stuff */
105 struct usb_keyspan {
106         char                            name[128];
107         char                            phys[64];
108         unsigned short                  keymap[ARRAY_SIZE(keyspan_key_table)];
109         struct usb_device               *udev;
110         struct input_dev                *input;
111         struct usb_interface            *interface;
112         struct usb_endpoint_descriptor  *in_endpoint;
113         struct urb*                     irq_urb;
114         int                             open;
115         dma_addr_t                      in_dma;
116         unsigned char                   *in_buffer;
117
118         /* variables used to parse messages from remote. */
119         struct bit_tester               data;
120         int                             stage;
121         int                             toggle;
122 };
123
124 static struct usb_driver keyspan_driver;
125
126 /*
127  * Debug routine that prints out what we've received from the remote.
128  */
129 static void keyspan_print(struct usb_keyspan* dev) /*unsigned char* data)*/
130 {
131         char codes[4 * RECV_SIZE];
132         int i;
133
134         for (i = 0; i < RECV_SIZE; i++)
135                 snprintf(codes + i * 3, 4, "%02x ", dev->in_buffer[i]);
136
137         dev_info(&dev->udev->dev, "%s\n", codes);
138 }
139
140 /*
141  * Routine that manages the bit_tester structure.  It makes sure that there are
142  * at least bits_needed bits loaded into the tester.
143  */
144 static int keyspan_load_tester(struct usb_keyspan* dev, int bits_needed)
145 {
146         if (dev->data.bits_left >= bits_needed)
147                 return 0;
148
149         /*
150          * Somehow we've missed the last message. The message will be repeated
151          * though so it's not too big a deal
152          */
153         if (dev->data.pos >= dev->data.len) {
154                 dev_dbg(&dev->interface->dev,
155                         "%s - Error ran out of data. pos: %d, len: %d\n",
156                         __func__, dev->data.pos, dev->data.len);
157                 return -1;
158         }
159
160         /* Load as much as we can into the tester. */
161         while ((dev->data.bits_left + 7 < (sizeof(dev->data.tester) * 8)) &&
162                (dev->data.pos < dev->data.len)) {
163                 dev->data.tester += (dev->data.buffer[dev->data.pos++] << dev->data.bits_left);
164                 dev->data.bits_left += 8;
165         }
166
167         return 0;
168 }
169
170 static void keyspan_report_button(struct usb_keyspan *remote, int button, int press)
171 {
172         struct input_dev *input = remote->input;
173
174         input_event(input, EV_MSC, MSC_SCAN, button);
175         input_report_key(input, remote->keymap[button], press);
176         input_sync(input);
177 }
178
179 /*
180  * Routine that handles all the logic needed to parse out the message from the remote.
181  */
182 static void keyspan_check_data(struct usb_keyspan *remote)
183 {
184         int i;
185         int found = 0;
186         struct keyspan_message message;
187
188         switch(remote->stage) {
189         case 0:
190                 /*
191                  * In stage 0 we want to find the start of a message.  The remote sends a 0xFF as filler.
192                  * So the first byte that isn't a FF should be the start of a new message.
193                  */
194                 for (i = 0; i < RECV_SIZE && remote->in_buffer[i] == GAP; ++i);
195
196                 if (i < RECV_SIZE) {
197                         memcpy(remote->data.buffer, remote->in_buffer, RECV_SIZE);
198                         remote->data.len = RECV_SIZE;
199                         remote->data.pos = 0;
200                         remote->data.tester = 0;
201                         remote->data.bits_left = 0;
202                         remote->stage = 1;
203                 }
204                 break;
205
206         case 1:
207                 /*
208                  * Stage 1 we should have 16 bytes and should be able to detect a
209                  * SYNC.  The SYNC is 14 bits, 7 0's and then 7 1's.
210                  */
211                 memcpy(remote->data.buffer + remote->data.len, remote->in_buffer, RECV_SIZE);
212                 remote->data.len += RECV_SIZE;
213
214                 found = 0;
215                 while ((remote->data.bits_left >= 14 || remote->data.pos < remote->data.len) && !found) {
216                         for (i = 0; i < 8; ++i) {
217                                 if (keyspan_load_tester(remote, 14) != 0) {
218                                         remote->stage = 0;
219                                         return;
220                                 }
221
222                                 if ((remote->data.tester & SYNC_MASK) == SYNC) {
223                                         remote->data.tester = remote->data.tester >> 14;
224                                         remote->data.bits_left -= 14;
225                                         found = 1;
226                                         break;
227                                 } else {
228                                         remote->data.tester = remote->data.tester >> 1;
229                                         --remote->data.bits_left;
230                                 }
231                         }
232                 }
233
234                 if (!found) {
235                         remote->stage = 0;
236                         remote->data.len = 0;
237                 } else {
238                         remote->stage = 2;
239                 }
240                 break;
241
242         case 2:
243                 /*
244                  * Stage 2 we should have 24 bytes which will be enough for a full
245                  * message.  We need to parse out the system code, button code,
246                  * toggle code, and stop.
247                  */
248                 memcpy(remote->data.buffer + remote->data.len, remote->in_buffer, RECV_SIZE);
249                 remote->data.len += RECV_SIZE;
250
251                 message.system = 0;
252                 for (i = 0; i < 9; i++) {
253                         keyspan_load_tester(remote, 6);
254
255                         if ((remote->data.tester & ZERO_MASK) == ZERO) {
256                                 message.system = message.system << 1;
257                                 remote->data.tester = remote->data.tester >> 5;
258                                 remote->data.bits_left -= 5;
259                         } else if ((remote->data.tester & ONE_MASK) == ONE) {
260                                 message.system = (message.system << 1) + 1;
261                                 remote->data.tester = remote->data.tester >> 6;
262                                 remote->data.bits_left -= 6;
263                         } else {
264                                 dev_err(&remote->interface->dev,
265                                         "%s - Unknown sequence found in system data.\n",
266                                         __func__);
267                                 remote->stage = 0;
268                                 return;
269                         }
270                 }
271
272                 message.button = 0;
273                 for (i = 0; i < 5; i++) {
274                         keyspan_load_tester(remote, 6);
275
276                         if ((remote->data.tester & ZERO_MASK) == ZERO) {
277                                 message.button = message.button << 1;
278                                 remote->data.tester = remote->data.tester >> 5;
279                                 remote->data.bits_left -= 5;
280                         } else if ((remote->data.tester & ONE_MASK) == ONE) {
281                                 message.button = (message.button << 1) + 1;
282                                 remote->data.tester = remote->data.tester >> 6;
283                                 remote->data.bits_left -= 6;
284                         } else {
285                                 dev_err(&remote->interface->dev,
286                                         "%s - Unknown sequence found in button data.\n",
287                                         __func__);
288                                 remote->stage = 0;
289                                 return;
290                         }
291                 }
292
293                 keyspan_load_tester(remote, 6);
294                 if ((remote->data.tester & ZERO_MASK) == ZERO) {
295                         message.toggle = 0;
296                         remote->data.tester = remote->data.tester >> 5;
297                         remote->data.bits_left -= 5;
298                 } else if ((remote->data.tester & ONE_MASK) == ONE) {
299                         message.toggle = 1;
300                         remote->data.tester = remote->data.tester >> 6;
301                         remote->data.bits_left -= 6;
302                 } else {
303                         dev_err(&remote->interface->dev,
304                                 "%s - Error in message, invalid toggle.\n",
305                                 __func__);
306                         remote->stage = 0;
307                         return;
308                 }
309
310                 keyspan_load_tester(remote, 5);
311                 if ((remote->data.tester & STOP_MASK) == STOP) {
312                         remote->data.tester = remote->data.tester >> 5;
313                         remote->data.bits_left -= 5;
314                 } else {
315                         dev_err(&remote->interface->dev,
316                                 "Bad message received, no stop bit found.\n");
317                 }
318
319                 dev_dbg(&remote->interface->dev,
320                         "%s found valid message: system: %d, button: %d, toggle: %d\n",
321                         __func__, message.system, message.button, message.toggle);
322
323                 if (message.toggle != remote->toggle) {
324                         keyspan_report_button(remote, message.button, 1);
325                         keyspan_report_button(remote, message.button, 0);
326                         remote->toggle = message.toggle;
327                 }
328
329                 remote->stage = 0;
330                 break;
331         }
332 }
333
334 /*
335  * Routine for sending all the initialization messages to the remote.
336  */
337 static int keyspan_setup(struct usb_device* dev)
338 {
339         int retval = 0;
340
341         retval = usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
342                                  0x11, 0x40, 0x5601, 0x0, NULL, 0,
343                                  USB_CTRL_SET_TIMEOUT);
344         if (retval) {
345                 dev_dbg(&dev->dev, "%s - failed to set bit rate due to error: %d\n",
346                         __func__, retval);
347                 return(retval);
348         }
349
350         retval = usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
351                                  0x44, 0x40, 0x0, 0x0, NULL, 0,
352                                  USB_CTRL_SET_TIMEOUT);
353         if (retval) {
354                 dev_dbg(&dev->dev, "%s - failed to set resume sensitivity due to error: %d\n",
355                         __func__, retval);
356                 return(retval);
357         }
358
359         retval = usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
360                                  0x22, 0x40, 0x0, 0x0, NULL, 0,
361                                  USB_CTRL_SET_TIMEOUT);
362         if (retval) {
363                 dev_dbg(&dev->dev, "%s - failed to turn receive on due to error: %d\n",
364                         __func__, retval);
365                 return(retval);
366         }
367
368         dev_dbg(&dev->dev, "%s - Setup complete.\n", __func__);
369         return(retval);
370 }
371
372 /*
373  * Routine used to handle a new message that has come in.
374  */
375 static void keyspan_irq_recv(struct urb *urb)
376 {
377         struct usb_keyspan *dev = urb->context;
378         int retval;
379
380         /* Check our status in case we need to bail out early. */
381         switch (urb->status) {
382         case 0:
383                 break;
384
385         /* Device went away so don't keep trying to read from it. */
386         case -ECONNRESET:
387         case -ENOENT:
388         case -ESHUTDOWN:
389                 return;
390
391         default:
392                 goto resubmit;
393         }
394
395         if (debug)
396                 keyspan_print(dev);
397
398         keyspan_check_data(dev);
399
400 resubmit:
401         retval = usb_submit_urb(urb, GFP_ATOMIC);
402         if (retval)
403                 dev_err(&dev->interface->dev,
404                         "%s - usb_submit_urb failed with result: %d\n",
405                         __func__, retval);
406 }
407
408 static int keyspan_open(struct input_dev *dev)
409 {
410         struct usb_keyspan *remote = input_get_drvdata(dev);
411
412         remote->irq_urb->dev = remote->udev;
413         if (usb_submit_urb(remote->irq_urb, GFP_KERNEL))
414                 return -EIO;
415
416         return 0;
417 }
418
419 static void keyspan_close(struct input_dev *dev)
420 {
421         struct usb_keyspan *remote = input_get_drvdata(dev);
422
423         usb_kill_urb(remote->irq_urb);
424 }
425
426 static struct usb_endpoint_descriptor *keyspan_get_in_endpoint(struct usb_host_interface *iface)
427 {
428
429         struct usb_endpoint_descriptor *endpoint;
430         int i;
431
432         for (i = 0; i < iface->desc.bNumEndpoints; ++i) {
433                 endpoint = &iface->endpoint[i].desc;
434
435                 if (usb_endpoint_is_int_in(endpoint)) {
436                         /* we found our interrupt in endpoint */
437                         return endpoint;
438                 }
439         }
440
441         return NULL;
442 }
443
444 /*
445  * Routine that sets up the driver to handle a specific USB device detected on the bus.
446  */
447 static int keyspan_probe(struct usb_interface *interface, const struct usb_device_id *id)
448 {
449         struct usb_device *udev = interface_to_usbdev(interface);
450         struct usb_endpoint_descriptor *endpoint;
451         struct usb_keyspan *remote;
452         struct input_dev *input_dev;
453         int i, error;
454
455         endpoint = keyspan_get_in_endpoint(interface->cur_altsetting);
456         if (!endpoint)
457                 return -ENODEV;
458
459         remote = kzalloc(sizeof(*remote), GFP_KERNEL);
460         input_dev = input_allocate_device();
461         if (!remote || !input_dev) {
462                 error = -ENOMEM;
463                 goto fail1;
464         }
465
466         remote->udev = udev;
467         remote->input = input_dev;
468         remote->interface = interface;
469         remote->in_endpoint = endpoint;
470         remote->toggle = -1;    /* Set to -1 so we will always not match the toggle from the first remote message. */
471
472         remote->in_buffer = usb_alloc_coherent(udev, RECV_SIZE, GFP_KERNEL, &remote->in_dma);
473         if (!remote->in_buffer) {
474                 error = -ENOMEM;
475                 goto fail1;
476         }
477
478         remote->irq_urb = usb_alloc_urb(0, GFP_KERNEL);
479         if (!remote->irq_urb) {
480                 error = -ENOMEM;
481                 goto fail2;
482         }
483
484         error = keyspan_setup(udev);
485         if (error) {
486                 error = -ENODEV;
487                 goto fail3;
488         }
489
490         if (udev->manufacturer)
491                 strlcpy(remote->name, udev->manufacturer, sizeof(remote->name));
492
493         if (udev->product) {
494                 if (udev->manufacturer)
495                         strlcat(remote->name, " ", sizeof(remote->name));
496                 strlcat(remote->name, udev->product, sizeof(remote->name));
497         }
498
499         if (!strlen(remote->name))
500                 snprintf(remote->name, sizeof(remote->name),
501                          "USB Keyspan Remote %04x:%04x",
502                          le16_to_cpu(udev->descriptor.idVendor),
503                          le16_to_cpu(udev->descriptor.idProduct));
504
505         usb_make_path(udev, remote->phys, sizeof(remote->phys));
506         strlcat(remote->phys, "/input0", sizeof(remote->phys));
507         memcpy(remote->keymap, keyspan_key_table, sizeof(remote->keymap));
508
509         input_dev->name = remote->name;
510         input_dev->phys = remote->phys;
511         usb_to_input_id(udev, &input_dev->id);
512         input_dev->dev.parent = &interface->dev;
513         input_dev->keycode = remote->keymap;
514         input_dev->keycodesize = sizeof(unsigned short);
515         input_dev->keycodemax = ARRAY_SIZE(remote->keymap);
516
517         input_set_capability(input_dev, EV_MSC, MSC_SCAN);
518         __set_bit(EV_KEY, input_dev->evbit);
519         for (i = 0; i < ARRAY_SIZE(keyspan_key_table); i++)
520                 __set_bit(keyspan_key_table[i], input_dev->keybit);
521         __clear_bit(KEY_RESERVED, input_dev->keybit);
522
523         input_set_drvdata(input_dev, remote);
524
525         input_dev->open = keyspan_open;
526         input_dev->close = keyspan_close;
527
528         /*
529          * Initialize the URB to access the device.
530          * The urb gets sent to the device in keyspan_open()
531          */
532         usb_fill_int_urb(remote->irq_urb,
533                          remote->udev,
534                          usb_rcvintpipe(remote->udev, endpoint->bEndpointAddress),
535                          remote->in_buffer, RECV_SIZE, keyspan_irq_recv, remote,
536                          endpoint->bInterval);
537         remote->irq_urb->transfer_dma = remote->in_dma;
538         remote->irq_urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
539
540         /* we can register the device now, as it is ready */
541         error = input_register_device(remote->input);
542         if (error)
543                 goto fail3;
544
545         /* save our data pointer in this interface device */
546         usb_set_intfdata(interface, remote);
547
548         return 0;
549
550  fail3: usb_free_urb(remote->irq_urb);
551  fail2: usb_free_coherent(udev, RECV_SIZE, remote->in_buffer, remote->in_dma);
552  fail1: kfree(remote);
553         input_free_device(input_dev);
554
555         return error;
556 }
557
558 /*
559  * Routine called when a device is disconnected from the USB.
560  */
561 static void keyspan_disconnect(struct usb_interface *interface)
562 {
563         struct usb_keyspan *remote;
564
565         remote = usb_get_intfdata(interface);
566         usb_set_intfdata(interface, NULL);
567
568         if (remote) {   /* We have a valid driver structure so clean up everything we allocated. */
569                 input_unregister_device(remote->input);
570                 usb_kill_urb(remote->irq_urb);
571                 usb_free_urb(remote->irq_urb);
572                 usb_free_coherent(remote->udev, RECV_SIZE, remote->in_buffer, remote->in_dma);
573                 kfree(remote);
574         }
575 }
576
577 /*
578  * Standard driver set up sections
579  */
580 static struct usb_driver keyspan_driver =
581 {
582         .name =         "keyspan_remote",
583         .probe =        keyspan_probe,
584         .disconnect =   keyspan_disconnect,
585         .id_table =     keyspan_table
586 };
587
588 module_usb_driver(keyspan_driver);
589
590 MODULE_DEVICE_TABLE(usb, keyspan_table);
591 MODULE_AUTHOR("Michael Downey <downey@zymeta.com>");
592 MODULE_DESCRIPTION("Driver for the USB Keyspan remote control.");
593 MODULE_LICENSE("GPL");