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1 /*
2  * Linux V4L2 radio driver for the Griffin radioSHARK2 USB radio receiver
3  *
4  * Note the radioSHARK2 offers the audio through a regular USB audio device,
5  * this driver only handles the tuning.
6  *
7  * The info necessary to drive the shark2 was taken from the small userspace
8  * shark2.c program by Hisaaki Shibata, which he kindly placed in the Public
9  * Domain.
10  *
11  * Copyright (c) 2012 Hans de Goede <hdegoede@redhat.com>
12  *
13  * This program is free software; you can redistribute it and/or modify
14  * it under the terms of the GNU General Public License as published by
15  * the Free Software Foundation; either version 2 of the License, or
16  * (at your option) any later version.
17  *
18  * This program is distributed in the hope that it will be useful,
19  * but WITHOUT ANY WARRANTY; without even the implied warranty of
20  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
21  * GNU General Public License for more details.
22  *
23  * You should have received a copy of the GNU General Public License
24  * along with this program; if not, write to the Free Software
25  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
26  */
27
28 #include <linux/init.h>
29 #include <linux/kernel.h>
30 #include <linux/leds.h>
31 #include <linux/module.h>
32 #include <linux/slab.h>
33 #include <linux/usb.h>
34 #include <linux/workqueue.h>
35 #include <media/v4l2-device.h>
36 #include "radio-tea5777.h"
37
38 #if defined(CONFIG_LEDS_CLASS) || \
39     (defined(CONFIG_LEDS_CLASS_MODULE) && defined(CONFIG_RADIO_SHARK2_MODULE))
40 #define SHARK_USE_LEDS 1
41 #endif
42
43 MODULE_AUTHOR("Hans de Goede <hdegoede@redhat.com>");
44 MODULE_DESCRIPTION("Griffin radioSHARK2, USB radio receiver driver");
45 MODULE_LICENSE("GPL");
46
47 static int debug;
48 module_param(debug, int, 0);
49 MODULE_PARM_DESC(debug, "Debug level (0-1)");
50
51 #define SHARK_IN_EP             0x83
52 #define SHARK_OUT_EP            0x05
53
54 #define TB_LEN 7
55 #define DRV_NAME "radioshark2"
56
57 #define v4l2_dev_to_shark(d) container_of(d, struct shark_device, v4l2_dev)
58
59 enum { BLUE_LED, RED_LED, NO_LEDS };
60
61 struct shark_device {
62         struct usb_device *usbdev;
63         struct v4l2_device v4l2_dev;
64         struct radio_tea5777 tea;
65
66 #ifdef SHARK_USE_LEDS
67         struct work_struct led_work;
68         struct led_classdev leds[NO_LEDS];
69         char led_names[NO_LEDS][32];
70         atomic_t brightness[NO_LEDS];
71         unsigned long brightness_new;
72 #endif
73
74         u8 *transfer_buffer;
75 };
76
77 static atomic_t shark_instance = ATOMIC_INIT(0);
78
79 static int shark_write_reg(struct radio_tea5777 *tea, u64 reg)
80 {
81         struct shark_device *shark = tea->private_data;
82         int i, res, actual_len;
83
84         memset(shark->transfer_buffer, 0, TB_LEN);
85         shark->transfer_buffer[0] = 0x81; /* Write register command */
86         for (i = 0; i < 6; i++)
87                 shark->transfer_buffer[i + 1] = (reg >> (40 - i * 8)) & 0xff;
88
89         v4l2_dbg(1, debug, tea->v4l2_dev, "shark2-write: %*ph\n",
90                  7, shark->transfer_buffer);
91
92         res = usb_interrupt_msg(shark->usbdev,
93                                 usb_sndintpipe(shark->usbdev, SHARK_OUT_EP),
94                                 shark->transfer_buffer, TB_LEN,
95                                 &actual_len, 1000);
96         if (res < 0) {
97                 v4l2_err(tea->v4l2_dev, "write error: %d\n", res);
98                 return res;
99         }
100
101         return 0;
102 }
103
104 static int shark_read_reg(struct radio_tea5777 *tea, u32 *reg_ret)
105 {
106         struct shark_device *shark = tea->private_data;
107         int i, res, actual_len;
108         u32 reg = 0;
109
110         memset(shark->transfer_buffer, 0, TB_LEN);
111         shark->transfer_buffer[0] = 0x82;
112         res = usb_interrupt_msg(shark->usbdev,
113                                 usb_sndintpipe(shark->usbdev, SHARK_OUT_EP),
114                                 shark->transfer_buffer, TB_LEN,
115                                 &actual_len, 1000);
116         if (res < 0) {
117                 v4l2_err(tea->v4l2_dev, "request-read error: %d\n", res);
118                 return res;
119         }
120
121         res = usb_interrupt_msg(shark->usbdev,
122                                 usb_rcvintpipe(shark->usbdev, SHARK_IN_EP),
123                                 shark->transfer_buffer, TB_LEN,
124                                 &actual_len, 1000);
125         if (res < 0) {
126                 v4l2_err(tea->v4l2_dev, "read error: %d\n", res);
127                 return res;
128         }
129
130         for (i = 0; i < 3; i++)
131                 reg |= shark->transfer_buffer[i] << (16 - i * 8);
132
133         v4l2_dbg(1, debug, tea->v4l2_dev, "shark2-read: %*ph\n",
134                  3, shark->transfer_buffer);
135
136         *reg_ret = reg;
137         return 0;
138 }
139
140 static struct radio_tea5777_ops shark_tea_ops = {
141         .write_reg = shark_write_reg,
142         .read_reg  = shark_read_reg,
143 };
144
145 #ifdef SHARK_USE_LEDS
146 static void shark_led_work(struct work_struct *work)
147 {
148         struct shark_device *shark =
149                 container_of(work, struct shark_device, led_work);
150         int i, res, brightness, actual_len;
151
152         for (i = 0; i < 2; i++) {
153                 if (!test_and_clear_bit(i, &shark->brightness_new))
154                         continue;
155
156                 brightness = atomic_read(&shark->brightness[i]);
157                 memset(shark->transfer_buffer, 0, TB_LEN);
158                 shark->transfer_buffer[0] = 0x83 + i;
159                 shark->transfer_buffer[1] = brightness;
160                 res = usb_interrupt_msg(shark->usbdev,
161                                         usb_sndintpipe(shark->usbdev,
162                                                        SHARK_OUT_EP),
163                                         shark->transfer_buffer, TB_LEN,
164                                         &actual_len, 1000);
165                 if (res < 0)
166                         v4l2_err(&shark->v4l2_dev, "set LED %s error: %d\n",
167                                  shark->led_names[i], res);
168         }
169 }
170
171 static void shark_led_set_blue(struct led_classdev *led_cdev,
172                                enum led_brightness value)
173 {
174         struct shark_device *shark =
175                 container_of(led_cdev, struct shark_device, leds[BLUE_LED]);
176
177         atomic_set(&shark->brightness[BLUE_LED], value);
178         set_bit(BLUE_LED, &shark->brightness_new);
179         schedule_work(&shark->led_work);
180 }
181
182 static void shark_led_set_red(struct led_classdev *led_cdev,
183                               enum led_brightness value)
184 {
185         struct shark_device *shark =
186                 container_of(led_cdev, struct shark_device, leds[RED_LED]);
187
188         atomic_set(&shark->brightness[RED_LED], value);
189         set_bit(RED_LED, &shark->brightness_new);
190         schedule_work(&shark->led_work);
191 }
192
193 static const struct led_classdev shark_led_templates[NO_LEDS] = {
194         [BLUE_LED] = {
195                 .name           = "%s:blue:",
196                 .brightness     = LED_OFF,
197                 .max_brightness = 127,
198                 .brightness_set = shark_led_set_blue,
199         },
200         [RED_LED] = {
201                 .name           = "%s:red:",
202                 .brightness     = LED_OFF,
203                 .max_brightness = 1,
204                 .brightness_set = shark_led_set_red,
205         },
206 };
207
208 static int shark_register_leds(struct shark_device *shark, struct device *dev)
209 {
210         int i, retval;
211
212         atomic_set(&shark->brightness[BLUE_LED], 127);
213         INIT_WORK(&shark->led_work, shark_led_work);
214         for (i = 0; i < NO_LEDS; i++) {
215                 shark->leds[i] = shark_led_templates[i];
216                 snprintf(shark->led_names[i], sizeof(shark->led_names[0]),
217                          shark->leds[i].name, shark->v4l2_dev.name);
218                 shark->leds[i].name = shark->led_names[i];
219                 retval = led_classdev_register(dev, &shark->leds[i]);
220                 if (retval) {
221                         v4l2_err(&shark->v4l2_dev,
222                                  "couldn't register led: %s\n",
223                                  shark->led_names[i]);
224                         return retval;
225                 }
226         }
227         return 0;
228 }
229
230 static void shark_unregister_leds(struct shark_device *shark)
231 {
232         int i;
233
234         for (i = 0; i < NO_LEDS; i++)
235                 led_classdev_unregister(&shark->leds[i]);
236
237         cancel_work_sync(&shark->led_work);
238 }
239
240 #ifdef CONFIG_PM
241 static void shark_resume_leds(struct shark_device *shark)
242 {
243         int i;
244
245         for (i = 0; i < NO_LEDS; i++)
246                 set_bit(i, &shark->brightness_new);
247
248         schedule_work(&shark->led_work);
249 }
250 #endif
251 #else
252 static int shark_register_leds(struct shark_device *shark, struct device *dev)
253 {
254         v4l2_warn(&shark->v4l2_dev,
255                   "CONFIG_LEDS_CLASS not enabled, LED support disabled\n");
256         return 0;
257 }
258 static inline void shark_unregister_leds(struct shark_device *shark) { }
259 static inline void shark_resume_leds(struct shark_device *shark) { }
260 #endif
261
262 static void usb_shark_disconnect(struct usb_interface *intf)
263 {
264         struct v4l2_device *v4l2_dev = usb_get_intfdata(intf);
265         struct shark_device *shark = v4l2_dev_to_shark(v4l2_dev);
266
267         mutex_lock(&shark->tea.mutex);
268         v4l2_device_disconnect(&shark->v4l2_dev);
269         radio_tea5777_exit(&shark->tea);
270         mutex_unlock(&shark->tea.mutex);
271
272         shark_unregister_leds(shark);
273
274         v4l2_device_put(&shark->v4l2_dev);
275 }
276
277 static void usb_shark_release(struct v4l2_device *v4l2_dev)
278 {
279         struct shark_device *shark = v4l2_dev_to_shark(v4l2_dev);
280
281         v4l2_device_unregister(&shark->v4l2_dev);
282         kfree(shark->transfer_buffer);
283         kfree(shark);
284 }
285
286 static int usb_shark_probe(struct usb_interface *intf,
287                            const struct usb_device_id *id)
288 {
289         struct shark_device *shark;
290         int retval = -ENOMEM;
291
292         shark = kzalloc(sizeof(struct shark_device), GFP_KERNEL);
293         if (!shark)
294                 return retval;
295
296         shark->transfer_buffer = kmalloc(TB_LEN, GFP_KERNEL);
297         if (!shark->transfer_buffer)
298                 goto err_alloc_buffer;
299
300         v4l2_device_set_name(&shark->v4l2_dev, DRV_NAME, &shark_instance);
301
302         retval = shark_register_leds(shark, &intf->dev);
303         if (retval)
304                 goto err_reg_leds;
305
306         shark->v4l2_dev.release = usb_shark_release;
307         retval = v4l2_device_register(&intf->dev, &shark->v4l2_dev);
308         if (retval) {
309                 v4l2_err(&shark->v4l2_dev, "couldn't register v4l2_device\n");
310                 goto err_reg_dev;
311         }
312
313         shark->usbdev = interface_to_usbdev(intf);
314         shark->tea.v4l2_dev = &shark->v4l2_dev;
315         shark->tea.private_data = shark;
316         shark->tea.ops = &shark_tea_ops;
317         shark->tea.has_am = true;
318         shark->tea.write_before_read = true;
319         strlcpy(shark->tea.card, "Griffin radioSHARK2",
320                 sizeof(shark->tea.card));
321         usb_make_path(shark->usbdev, shark->tea.bus_info,
322                 sizeof(shark->tea.bus_info));
323
324         retval = radio_tea5777_init(&shark->tea, THIS_MODULE);
325         if (retval) {
326                 v4l2_err(&shark->v4l2_dev, "couldn't init tea5777\n");
327                 goto err_init_tea;
328         }
329
330         return 0;
331
332 err_init_tea:
333         v4l2_device_unregister(&shark->v4l2_dev);
334 err_reg_dev:
335         shark_unregister_leds(shark);
336 err_reg_leds:
337         kfree(shark->transfer_buffer);
338 err_alloc_buffer:
339         kfree(shark);
340
341         return retval;
342 }
343
344 #ifdef CONFIG_PM
345 static int usb_shark_suspend(struct usb_interface *intf, pm_message_t message)
346 {
347         return 0;
348 }
349
350 static int usb_shark_resume(struct usb_interface *intf)
351 {
352         struct v4l2_device *v4l2_dev = usb_get_intfdata(intf);
353         struct shark_device *shark = v4l2_dev_to_shark(v4l2_dev);
354         int ret;
355
356         mutex_lock(&shark->tea.mutex);
357         ret = radio_tea5777_set_freq(&shark->tea);
358         mutex_unlock(&shark->tea.mutex);
359
360         shark_resume_leds(shark);
361
362         return ret;
363 }
364 #endif
365
366 /* Specify the bcdDevice value, as the radioSHARK and radioSHARK2 share ids */
367 static struct usb_device_id usb_shark_device_table[] = {
368         { .match_flags = USB_DEVICE_ID_MATCH_DEVICE_AND_VERSION |
369                          USB_DEVICE_ID_MATCH_INT_CLASS,
370           .idVendor     = 0x077d,
371           .idProduct    = 0x627a,
372           .bcdDevice_lo = 0x0010,
373           .bcdDevice_hi = 0x0010,
374           .bInterfaceClass = 3,
375         },
376         { }
377 };
378 MODULE_DEVICE_TABLE(usb, usb_shark_device_table);
379
380 static struct usb_driver usb_shark_driver = {
381         .name                   = DRV_NAME,
382         .probe                  = usb_shark_probe,
383         .disconnect             = usb_shark_disconnect,
384         .id_table               = usb_shark_device_table,
385 #ifdef CONFIG_PM
386         .suspend                = usb_shark_suspend,
387         .resume                 = usb_shark_resume,
388         .reset_resume           = usb_shark_resume,
389 #endif
390 };
391 module_usb_driver(usb_shark_driver);