Merge 2.6.38-rc5 into staging-next
[deliverable/linux.git] / drivers / media / rc / mceusb.c
CommitLineData
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1/*
2 * Driver for USB Windows Media Center Ed. eHome Infrared Transceivers
3 *
4 * Copyright (c) 2010 by Jarod Wilson <jarod@redhat.com>
5 *
6 * Based on the original lirc_mceusb and lirc_mceusb2 drivers, by Dan
7 * Conti, Martin Blatter and Daniel Melander, the latter of which was
8 * in turn also based on the lirc_atiusb driver by Paul Miller. The
9 * two mce drivers were merged into one by Jarod Wilson, with transmit
10 * support for the 1st-gen device added primarily by Patrick Calhoun,
11 * with a bit of tweaks by Jarod. Debugging improvements and proper
12 * support for what appears to be 3rd-gen hardware added by Jarod.
13 * Initial port from lirc driver to ir-core drivery by Jarod, based
14 * partially on a port to an earlier proposed IR infrastructure by
15 * Jon Smirl, which included enhancements and simplifications to the
16 * incoming IR buffer parsing routines.
17 *
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18 *
19 * This program is free software; you can redistribute it and/or modify
20 * it under the terms of the GNU General Public License as published by
21 * the Free Software Foundation; either version 2 of the License, or
22 * (at your option) any later version.
23 *
24 * This program is distributed in the hope that it will be useful,
25 * but WITHOUT ANY WARRANTY; without even the implied warranty of
26 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
27 * GNU General Public License for more details.
28 *
29 * You should have received a copy of the GNU General Public License
30 * along with this program; if not, write to the Free Software
31 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
32 *
33 */
34
35#include <linux/device.h>
36#include <linux/module.h>
37#include <linux/slab.h>
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38#include <linux/usb.h>
39#include <linux/usb/input.h>
6bda9644 40#include <media/rc-core.h>
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41
42#define DRIVER_VERSION "1.91"
43#define DRIVER_AUTHOR "Jarod Wilson <jarod@wilsonet.com>"
44#define DRIVER_DESC "Windows Media Center Ed. eHome Infrared Transceiver " \
45 "device driver"
46#define DRIVER_NAME "mceusb"
47
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48#define USB_BUFLEN 32 /* USB reception buffer length */
49#define USB_CTRL_MSG_SZ 2 /* Size of usb ctrl msg on gen1 hw */
50#define MCE_G1_INIT_MSGS 40 /* Init messages on gen1 hw to throw out */
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51
52/* MCE constants */
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53#define MCE_CMDBUF_SIZE 384 /* MCE Command buffer length */
54#define MCE_TIME_UNIT 50 /* Approx 50us resolution */
55#define MCE_CODE_LENGTH 5 /* Normal length of packet (with header) */
56#define MCE_PACKET_SIZE 4 /* Normal length of packet (without header) */
57#define MCE_IRDATA_HEADER 0x84 /* Actual header format is 0x80 + num_bytes */
58#define MCE_IRDATA_TRAILER 0x80 /* End of IR data */
59#define MCE_TX_HEADER_LENGTH 3 /* # of bytes in the initializing tx header */
60#define MCE_MAX_CHANNELS 2 /* Two transmitters, hardware dependent? */
61#define MCE_DEFAULT_TX_MASK 0x03 /* Vals: TX1=0x01, TX2=0x02, ALL=0x03 */
62#define MCE_PULSE_BIT 0x80 /* Pulse bit, MSB set == PULSE else SPACE */
63#define MCE_PULSE_MASK 0x7f /* Pulse mask */
64#define MCE_MAX_PULSE_LENGTH 0x7f /* Longest transmittable pulse symbol */
65
66#define MCE_HW_CMD_HEADER 0xff /* MCE hardware command header */
67#define MCE_COMMAND_HEADER 0x9f /* MCE command header */
68#define MCE_COMMAND_MASK 0xe0 /* Mask out command bits */
69#define MCE_COMMAND_NULL 0x00 /* These show up various places... */
70/* if buf[i] & MCE_COMMAND_MASK == 0x80 and buf[i] != MCE_COMMAND_HEADER,
71 * then we're looking at a raw IR data sample */
72#define MCE_COMMAND_IRDATA 0x80
73#define MCE_PACKET_LENGTH_MASK 0x1f /* Packet length mask */
74
75/* Sub-commands, which follow MCE_COMMAND_HEADER or MCE_HW_CMD_HEADER */
1cd50f25 76#define MCE_CMD_SIG_END 0x01 /* End of signal */
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77#define MCE_CMD_PING 0x03 /* Ping device */
78#define MCE_CMD_UNKNOWN 0x04 /* Unknown */
79#define MCE_CMD_UNKNOWN2 0x05 /* Unknown */
80#define MCE_CMD_S_CARRIER 0x06 /* Set TX carrier frequency */
81#define MCE_CMD_G_CARRIER 0x07 /* Get TX carrier frequency */
82#define MCE_CMD_S_TXMASK 0x08 /* Set TX port bitmask */
83#define MCE_CMD_UNKNOWN3 0x09 /* Unknown */
84#define MCE_CMD_UNKNOWN4 0x0a /* Unknown */
85#define MCE_CMD_G_REVISION 0x0b /* Get hw/sw revision */
86#define MCE_CMD_S_TIMEOUT 0x0c /* Set RX timeout value */
87#define MCE_CMD_G_TIMEOUT 0x0d /* Get RX timeout value */
88#define MCE_CMD_UNKNOWN5 0x0e /* Unknown */
89#define MCE_CMD_UNKNOWN6 0x0f /* Unknown */
90#define MCE_CMD_G_RXPORTSTS 0x11 /* Get RX port status */
91#define MCE_CMD_G_TXMASK 0x13 /* Set TX port bitmask */
92#define MCE_CMD_S_RXSENSOR 0x14 /* Set RX sensor (std/learning) */
93#define MCE_CMD_G_RXSENSOR 0x15 /* Get RX sensor (std/learning) */
2ee95db2 94#define MCE_RSP_PULSE_COUNT 0x15 /* RX pulse count (only if learning) */
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95#define MCE_CMD_TX_PORTS 0x16 /* Get number of TX ports */
96#define MCE_CMD_G_WAKESRC 0x17 /* Get wake source */
97#define MCE_CMD_UNKNOWN7 0x18 /* Unknown */
98#define MCE_CMD_UNKNOWN8 0x19 /* Unknown */
99#define MCE_CMD_UNKNOWN9 0x1b /* Unknown */
100#define MCE_CMD_DEVICE_RESET 0xaa /* Reset the hardware */
101#define MCE_RSP_CMD_INVALID 0xfe /* Invalid command issued */
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102
103
104/* module parameters */
105#ifdef CONFIG_USB_DEBUG
106static int debug = 1;
107#else
108static int debug;
109#endif
110
111/* general constants */
112#define SEND_FLAG_IN_PROGRESS 1
113#define SEND_FLAG_COMPLETE 2
114#define RECV_FLAG_IN_PROGRESS 3
115#define RECV_FLAG_COMPLETE 4
116
117#define MCEUSB_RX 1
118#define MCEUSB_TX 2
119
120#define VENDOR_PHILIPS 0x0471
121#define VENDOR_SMK 0x0609
122#define VENDOR_TATUNG 0x1460
123#define VENDOR_GATEWAY 0x107b
124#define VENDOR_SHUTTLE 0x1308
125#define VENDOR_SHUTTLE2 0x051c
126#define VENDOR_MITSUMI 0x03ee
127#define VENDOR_TOPSEED 0x1784
128#define VENDOR_RICAVISION 0x179d
129#define VENDOR_ITRON 0x195d
130#define VENDOR_FIC 0x1509
131#define VENDOR_LG 0x043e
132#define VENDOR_MICROSOFT 0x045e
133#define VENDOR_FORMOSA 0x147a
134#define VENDOR_FINTEK 0x1934
135#define VENDOR_PINNACLE 0x2304
136#define VENDOR_ECS 0x1019
137#define VENDOR_WISTRON 0x0fb8
138#define VENDOR_COMPRO 0x185b
139#define VENDOR_NORTHSTAR 0x04eb
140#define VENDOR_REALTEK 0x0bda
141#define VENDOR_TIVO 0x105a
56e92f60 142#define VENDOR_CONEXANT 0x0572
66e89522 143
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144enum mceusb_model_type {
145 MCE_GEN2 = 0, /* Most boards */
146 MCE_GEN1,
147 MCE_GEN3,
148 MCE_GEN2_TX_INV,
149 POLARIS_EVK,
6f6c625d 150 CX_HYBRID_TV,
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151};
152
153struct mceusb_model {
154 u32 mce_gen1:1;
155 u32 mce_gen2:1;
156 u32 mce_gen3:1;
d8cc7fd7 157 u32 tx_mask_normal:1;
37dbd3a6 158 u32 is_polaris:1;
6f6c625d 159 u32 no_tx:1;
37dbd3a6 160
17c2b1fd 161 const char *rc_map; /* Allow specify a per-board map */
3459d455 162 const char *name; /* per-board name */
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163};
164
165static const struct mceusb_model mceusb_model[] = {
166 [MCE_GEN1] = {
167 .mce_gen1 = 1,
d8cc7fd7 168 .tx_mask_normal = 1,
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169 },
170 [MCE_GEN2] = {
171 .mce_gen2 = 1,
172 },
173 [MCE_GEN2_TX_INV] = {
174 .mce_gen2 = 1,
d8cc7fd7 175 .tx_mask_normal = 1,
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176 },
177 [MCE_GEN3] = {
178 .mce_gen3 = 1,
d8cc7fd7 179 .tx_mask_normal = 1,
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180 },
181 [POLARIS_EVK] = {
182 .is_polaris = 1,
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183 /*
184 * In fact, the EVK is shipped without
185 * remotes, but we should have something handy,
186 * to allow testing it
187 */
188 .rc_map = RC_MAP_RC5_HAUPPAUGE_NEW,
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189 .name = "Conexant Hybrid TV (cx231xx) MCE IR",
190 },
191 [CX_HYBRID_TV] = {
192 .is_polaris = 1,
193 .no_tx = 1, /* tx isn't wired up at all */
194 .name = "Conexant Hybrid TV (cx231xx) MCE IR",
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195 },
196};
197
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198static struct usb_device_id mceusb_dev_table[] = {
199 /* Original Microsoft MCE IR Transceiver (often HP-branded) */
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200 { USB_DEVICE(VENDOR_MICROSOFT, 0x006d),
201 .driver_info = MCE_GEN1 },
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202 /* Philips Infrared Transceiver - Sahara branded */
203 { USB_DEVICE(VENDOR_PHILIPS, 0x0608) },
204 /* Philips Infrared Transceiver - HP branded */
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205 { USB_DEVICE(VENDOR_PHILIPS, 0x060c),
206 .driver_info = MCE_GEN2_TX_INV },
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207 /* Philips SRM5100 */
208 { USB_DEVICE(VENDOR_PHILIPS, 0x060d) },
209 /* Philips Infrared Transceiver - Omaura */
210 { USB_DEVICE(VENDOR_PHILIPS, 0x060f) },
211 /* Philips Infrared Transceiver - Spinel plus */
212 { USB_DEVICE(VENDOR_PHILIPS, 0x0613) },
213 /* Philips eHome Infrared Transceiver */
214 { USB_DEVICE(VENDOR_PHILIPS, 0x0815) },
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215 /* Philips/Spinel plus IR transceiver for ASUS */
216 { USB_DEVICE(VENDOR_PHILIPS, 0x206c) },
217 /* Philips/Spinel plus IR transceiver for ASUS */
218 { USB_DEVICE(VENDOR_PHILIPS, 0x2088) },
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219 /* Realtek MCE IR Receiver */
220 { USB_DEVICE(VENDOR_REALTEK, 0x0161) },
221 /* SMK/Toshiba G83C0004D410 */
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222 { USB_DEVICE(VENDOR_SMK, 0x031d),
223 .driver_info = MCE_GEN2_TX_INV },
66e89522 224 /* SMK eHome Infrared Transceiver (Sony VAIO) */
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225 { USB_DEVICE(VENDOR_SMK, 0x0322),
226 .driver_info = MCE_GEN2_TX_INV },
66e89522 227 /* bundled with Hauppauge PVR-150 */
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228 { USB_DEVICE(VENDOR_SMK, 0x0334),
229 .driver_info = MCE_GEN2_TX_INV },
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230 /* SMK eHome Infrared Transceiver */
231 { USB_DEVICE(VENDOR_SMK, 0x0338) },
232 /* Tatung eHome Infrared Transceiver */
233 { USB_DEVICE(VENDOR_TATUNG, 0x9150) },
234 /* Shuttle eHome Infrared Transceiver */
235 { USB_DEVICE(VENDOR_SHUTTLE, 0xc001) },
236 /* Shuttle eHome Infrared Transceiver */
237 { USB_DEVICE(VENDOR_SHUTTLE2, 0xc001) },
238 /* Gateway eHome Infrared Transceiver */
239 { USB_DEVICE(VENDOR_GATEWAY, 0x3009) },
240 /* Mitsumi */
241 { USB_DEVICE(VENDOR_MITSUMI, 0x2501) },
242 /* Topseed eHome Infrared Transceiver */
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243 { USB_DEVICE(VENDOR_TOPSEED, 0x0001),
244 .driver_info = MCE_GEN2_TX_INV },
66e89522 245 /* Topseed HP eHome Infrared Transceiver */
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246 { USB_DEVICE(VENDOR_TOPSEED, 0x0006),
247 .driver_info = MCE_GEN2_TX_INV },
66e89522 248 /* Topseed eHome Infrared Transceiver */
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249 { USB_DEVICE(VENDOR_TOPSEED, 0x0007),
250 .driver_info = MCE_GEN2_TX_INV },
66e89522 251 /* Topseed eHome Infrared Transceiver */
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252 { USB_DEVICE(VENDOR_TOPSEED, 0x0008),
253 .driver_info = MCE_GEN3 },
66e89522 254 /* Topseed eHome Infrared Transceiver */
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255 { USB_DEVICE(VENDOR_TOPSEED, 0x000a),
256 .driver_info = MCE_GEN2_TX_INV },
66e89522 257 /* Topseed eHome Infrared Transceiver */
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258 { USB_DEVICE(VENDOR_TOPSEED, 0x0011),
259 .driver_info = MCE_GEN2_TX_INV },
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260 /* Ricavision internal Infrared Transceiver */
261 { USB_DEVICE(VENDOR_RICAVISION, 0x0010) },
262 /* Itron ione Libra Q-11 */
263 { USB_DEVICE(VENDOR_ITRON, 0x7002) },
264 /* FIC eHome Infrared Transceiver */
265 { USB_DEVICE(VENDOR_FIC, 0x9242) },
266 /* LG eHome Infrared Transceiver */
267 { USB_DEVICE(VENDOR_LG, 0x9803) },
268 /* Microsoft MCE Infrared Transceiver */
269 { USB_DEVICE(VENDOR_MICROSOFT, 0x00a0) },
270 /* Formosa eHome Infrared Transceiver */
271 { USB_DEVICE(VENDOR_FORMOSA, 0xe015) },
272 /* Formosa21 / eHome Infrared Receiver */
273 { USB_DEVICE(VENDOR_FORMOSA, 0xe016) },
274 /* Formosa aim / Trust MCE Infrared Receiver */
275 { USB_DEVICE(VENDOR_FORMOSA, 0xe017) },
276 /* Formosa Industrial Computing / Beanbag Emulation Device */
277 { USB_DEVICE(VENDOR_FORMOSA, 0xe018) },
278 /* Formosa21 / eHome Infrared Receiver */
279 { USB_DEVICE(VENDOR_FORMOSA, 0xe03a) },
280 /* Formosa Industrial Computing AIM IR605/A */
281 { USB_DEVICE(VENDOR_FORMOSA, 0xe03c) },
282 /* Formosa Industrial Computing */
283 { USB_DEVICE(VENDOR_FORMOSA, 0xe03e) },
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284 /* Fintek eHome Infrared Transceiver (HP branded) */
285 { USB_DEVICE(VENDOR_FINTEK, 0x5168) },
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286 /* Fintek eHome Infrared Transceiver */
287 { USB_DEVICE(VENDOR_FINTEK, 0x0602) },
288 /* Fintek eHome Infrared Transceiver (in the AOpen MP45) */
289 { USB_DEVICE(VENDOR_FINTEK, 0x0702) },
290 /* Pinnacle Remote Kit */
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291 { USB_DEVICE(VENDOR_PINNACLE, 0x0225),
292 .driver_info = MCE_GEN3 },
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293 /* Elitegroup Computer Systems IR */
294 { USB_DEVICE(VENDOR_ECS, 0x0f38) },
295 /* Wistron Corp. eHome Infrared Receiver */
296 { USB_DEVICE(VENDOR_WISTRON, 0x0002) },
297 /* Compro K100 */
298 { USB_DEVICE(VENDOR_COMPRO, 0x3020) },
299 /* Compro K100 v2 */
300 { USB_DEVICE(VENDOR_COMPRO, 0x3082) },
301 /* Northstar Systems, Inc. eHome Infrared Transceiver */
302 { USB_DEVICE(VENDOR_NORTHSTAR, 0xe004) },
303 /* TiVo PC IR Receiver */
304 { USB_DEVICE(VENDOR_TIVO, 0x2000) },
6f6c625d 305 /* Conexant Hybrid TV "Shelby" Polaris SDK */
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306 { USB_DEVICE(VENDOR_CONEXANT, 0x58a1),
307 .driver_info = POLARIS_EVK },
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308 /* Conexant Hybrid TV RDU253S Polaris */
309 { USB_DEVICE(VENDOR_CONEXANT, 0x58a5),
310 .driver_info = CX_HYBRID_TV },
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311 /* Terminating entry */
312 { }
313};
314
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315/* data structure for each usb transceiver */
316struct mceusb_dev {
317 /* ir-core bits */
d8b4b582 318 struct rc_dev *rc;
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319
320 /* optional features we can enable */
321 bool carrier_report_enabled;
322 bool learning_enabled;
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323
324 /* core device bits */
325 struct device *dev;
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326
327 /* usb */
328 struct usb_device *usbdev;
329 struct urb *urb_in;
330 struct usb_endpoint_descriptor *usb_ep_in;
331 struct usb_endpoint_descriptor *usb_ep_out;
332
333 /* buffers and dma */
334 unsigned char *buf_in;
335 unsigned int len_in;
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336 dma_addr_t dma_in;
337 dma_addr_t dma_out;
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338
339 enum {
340 CMD_HEADER = 0,
341 SUBCMD,
342 CMD_DATA,
343 PARSE_IRDATA,
344 } parser_state;
39dc5c3a 345
2ee95db2 346 u8 cmd, rem; /* Remaining IR data bytes in packet */
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347
348 struct {
349 u32 connected:1;
d8cc7fd7 350 u32 tx_mask_normal:1;
66e89522 351 u32 microsoft_gen1:1;
6f6c625d 352 u32 no_tx:1;
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353 } flags;
354
e23fb964 355 /* transmit support */
66e89522 356 int send_flags;
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357 u32 carrier;
358 unsigned char tx_mask;
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359
360 char name[128];
361 char phys[64];
37dbd3a6 362 enum mceusb_model_type model;
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363};
364
365/*
366 * MCE Device Command Strings
367 * Device command responses vary from device to device...
368 * - DEVICE_RESET resets the hardware to its default state
369 * - GET_REVISION fetches the hardware/software revision, common
370 * replies are ff 0b 45 ff 1b 08 and ff 0b 50 ff 1b 42
371 * - GET_CARRIER_FREQ gets the carrier mode and frequency of the
372 * device, with replies in the form of 9f 06 MM FF, where MM is 0-3,
373 * meaning clk of 10000000, 2500000, 625000 or 156250, and FF is
374 * ((clk / frequency) - 1)
375 * - GET_RX_TIMEOUT fetches the receiver timeout in units of 50us,
376 * response in the form of 9f 0c msb lsb
377 * - GET_TX_BITMASK fetches the transmitter bitmask, replies in
378 * the form of 9f 08 bm, where bm is the bitmask
379 * - GET_RX_SENSOR fetches the RX sensor setting -- long-range
380 * general use one or short-range learning one, in the form of
381 * 9f 14 ss, where ss is either 01 for long-range or 02 for short
382 * - SET_CARRIER_FREQ sets a new carrier mode and frequency
383 * - SET_TX_BITMASK sets the transmitter bitmask
384 * - SET_RX_TIMEOUT sets the receiver timeout
385 * - SET_RX_SENSOR sets which receiver sensor to use
386 */
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387static char DEVICE_RESET[] = {MCE_COMMAND_NULL, MCE_HW_CMD_HEADER,
388 MCE_CMD_DEVICE_RESET};
389static char GET_REVISION[] = {MCE_HW_CMD_HEADER, MCE_CMD_G_REVISION};
390static char GET_UNKNOWN[] = {MCE_HW_CMD_HEADER, MCE_CMD_UNKNOWN7};
391static char GET_UNKNOWN2[] = {MCE_COMMAND_HEADER, MCE_CMD_UNKNOWN2};
392static char GET_CARRIER_FREQ[] = {MCE_COMMAND_HEADER, MCE_CMD_G_CARRIER};
393static char GET_RX_TIMEOUT[] = {MCE_COMMAND_HEADER, MCE_CMD_G_TIMEOUT};
394static char GET_TX_BITMASK[] = {MCE_COMMAND_HEADER, MCE_CMD_G_TXMASK};
395static char GET_RX_SENSOR[] = {MCE_COMMAND_HEADER, MCE_CMD_G_RXSENSOR};
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396/* sub in desired values in lower byte or bytes for full command */
397/* FIXME: make use of these for transmit.
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398static char SET_CARRIER_FREQ[] = {MCE_COMMAND_HEADER,
399 MCE_CMD_S_CARRIER, 0x00, 0x00};
400static char SET_TX_BITMASK[] = {MCE_COMMAND_HEADER, MCE_CMD_S_TXMASK, 0x00};
401static char SET_RX_TIMEOUT[] = {MCE_COMMAND_HEADER,
402 MCE_CMD_S_TIMEOUT, 0x00, 0x00};
403static char SET_RX_SENSOR[] = {MCE_COMMAND_HEADER,
404 MCE_CMD_S_RXSENSOR, 0x00};
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405*/
406
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407static int mceusb_cmdsize(u8 cmd, u8 subcmd)
408{
409 int datasize = 0;
410
411 switch (cmd) {
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412 case MCE_COMMAND_NULL:
413 if (subcmd == MCE_HW_CMD_HEADER)
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414 datasize = 1;
415 break;
4a883918 416 case MCE_HW_CMD_HEADER:
39dc5c3a 417 switch (subcmd) {
4a883918 418 case MCE_CMD_G_REVISION:
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419 datasize = 2;
420 break;
421 }
4a883918 422 case MCE_COMMAND_HEADER:
39dc5c3a 423 switch (subcmd) {
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424 case MCE_CMD_UNKNOWN:
425 case MCE_CMD_S_CARRIER:
426 case MCE_CMD_S_TIMEOUT:
2ee95db2 427 case MCE_RSP_PULSE_COUNT:
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428 datasize = 2;
429 break;
1cd50f25 430 case MCE_CMD_SIG_END:
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431 case MCE_CMD_S_TXMASK:
432 case MCE_CMD_S_RXSENSOR:
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433 datasize = 1;
434 break;
435 }
436 }
437 return datasize;
438}
439
66e89522 440static void mceusb_dev_printdata(struct mceusb_dev *ir, char *buf,
36e9d260 441 int offset, int len, bool out)
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442{
443 char codes[USB_BUFLEN * 3 + 1];
444 char inout[9];
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445 u8 cmd, subcmd, data1, data2;
446 struct device *dev = ir->dev;
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447 int i, start, skip = 0;
448
449 if (!debug)
450 return;
66e89522 451
657290b6 452 /* skip meaningless 0xb1 0x60 header bytes on orig receiver */
29b4494b 453 if (ir->flags.microsoft_gen1 && !out && !offset)
36e9d260 454 skip = 2;
66e89522 455
36e9d260 456 if (len <= skip)
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457 return;
458
459 for (i = 0; i < len && i < USB_BUFLEN; i++)
36e9d260 460 snprintf(codes + i * 3, 4, "%02x ", buf[i + offset] & 0xff);
66e89522 461
36e9d260 462 dev_info(dev, "%sx data: %s(length=%d)\n",
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463 (out ? "t" : "r"), codes, len);
464
465 if (out)
466 strcpy(inout, "Request\0");
467 else
468 strcpy(inout, "Got\0");
469
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470 start = offset + skip;
471 cmd = buf[start] & 0xff;
472 subcmd = buf[start + 1] & 0xff;
473 data1 = buf[start + 2] & 0xff;
474 data2 = buf[start + 3] & 0xff;
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475
476 switch (cmd) {
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477 case MCE_COMMAND_NULL:
478 if ((subcmd == MCE_HW_CMD_HEADER) &&
479 (data1 == MCE_CMD_DEVICE_RESET))
66e89522
JW
480 dev_info(dev, "Device reset requested\n");
481 else
482 dev_info(dev, "Unknown command 0x%02x 0x%02x\n",
483 cmd, subcmd);
484 break;
4a883918 485 case MCE_HW_CMD_HEADER:
66e89522 486 switch (subcmd) {
4a883918 487 case MCE_CMD_G_REVISION:
66e89522
JW
488 if (len == 2)
489 dev_info(dev, "Get hw/sw rev?\n");
490 else
491 dev_info(dev, "hw/sw rev 0x%02x 0x%02x "
492 "0x%02x 0x%02x\n", data1, data2,
36e9d260 493 buf[start + 4], buf[start + 5]);
66e89522 494 break;
4a883918 495 case MCE_CMD_DEVICE_RESET:
66e89522
JW
496 dev_info(dev, "Device reset requested\n");
497 break;
4a883918 498 case MCE_RSP_CMD_INVALID:
66e89522
JW
499 dev_info(dev, "Previous command not supported\n");
500 break;
4a883918
JW
501 case MCE_CMD_UNKNOWN7:
502 case MCE_CMD_UNKNOWN9:
66e89522
JW
503 default:
504 dev_info(dev, "Unknown command 0x%02x 0x%02x\n",
505 cmd, subcmd);
506 break;
507 }
508 break;
4a883918 509 case MCE_COMMAND_HEADER:
66e89522 510 switch (subcmd) {
1cd50f25
JW
511 case MCE_CMD_SIG_END:
512 dev_info(dev, "End of signal\n");
513 break;
4a883918 514 case MCE_CMD_PING:
66e89522
JW
515 dev_info(dev, "Ping\n");
516 break;
4a883918 517 case MCE_CMD_UNKNOWN:
66e89522
JW
518 dev_info(dev, "Resp to 9f 05 of 0x%02x 0x%02x\n",
519 data1, data2);
520 break;
4a883918 521 case MCE_CMD_S_CARRIER:
66e89522
JW
522 dev_info(dev, "%s carrier mode and freq of "
523 "0x%02x 0x%02x\n", inout, data1, data2);
524 break;
4a883918 525 case MCE_CMD_G_CARRIER:
66e89522
JW
526 dev_info(dev, "Get carrier mode and freq\n");
527 break;
4a883918 528 case MCE_CMD_S_TXMASK:
66e89522
JW
529 dev_info(dev, "%s transmit blaster mask of 0x%02x\n",
530 inout, data1);
531 break;
4a883918 532 case MCE_CMD_S_TIMEOUT:
66e89522
JW
533 /* value is in units of 50us, so x*50/100 or x/2 ms */
534 dev_info(dev, "%s receive timeout of %d ms\n",
535 inout, ((data1 << 8) | data2) / 2);
536 break;
4a883918 537 case MCE_CMD_G_TIMEOUT:
66e89522
JW
538 dev_info(dev, "Get receive timeout\n");
539 break;
4a883918 540 case MCE_CMD_G_TXMASK:
66e89522
JW
541 dev_info(dev, "Get transmit blaster mask\n");
542 break;
4a883918 543 case MCE_CMD_S_RXSENSOR:
66e89522
JW
544 dev_info(dev, "%s %s-range receive sensor in use\n",
545 inout, data1 == 0x02 ? "short" : "long");
546 break;
4a883918 547 case MCE_CMD_G_RXSENSOR:
2ee95db2
JW
548 /* aka MCE_RSP_PULSE_COUNT */
549 if (out)
66e89522 550 dev_info(dev, "Get receive sensor\n");
2ee95db2
JW
551 else if (ir->learning_enabled)
552 dev_info(dev, "RX pulse count: %d\n",
66e89522
JW
553 ((data1 << 8) | data2));
554 break;
4a883918 555 case MCE_RSP_CMD_INVALID:
66e89522
JW
556 dev_info(dev, "Error! Hardware is likely wedged...\n");
557 break;
4a883918
JW
558 case MCE_CMD_UNKNOWN2:
559 case MCE_CMD_UNKNOWN3:
560 case MCE_CMD_UNKNOWN5:
66e89522
JW
561 default:
562 dev_info(dev, "Unknown command 0x%02x 0x%02x\n",
563 cmd, subcmd);
564 break;
565 }
566 break;
567 default:
568 break;
569 }
36e9d260
JW
570
571 if (cmd == MCE_IRDATA_TRAILER)
572 dev_info(dev, "End of raw IR data\n");
573 else if ((cmd != MCE_COMMAND_HEADER) &&
574 ((cmd & MCE_COMMAND_MASK) == MCE_COMMAND_IRDATA))
575 dev_info(dev, "Raw IR data, %d pulse/space samples\n", ir->rem);
66e89522
JW
576}
577
7c294402 578static void mce_async_callback(struct urb *urb, struct pt_regs *regs)
66e89522
JW
579{
580 struct mceusb_dev *ir;
581 int len;
582
583 if (!urb)
584 return;
585
586 ir = urb->context;
587 if (ir) {
588 len = urb->actual_length;
589
590 dev_dbg(ir->dev, "callback called (status=%d len=%d)\n",
591 urb->status, len);
592
36e9d260 593 mceusb_dev_printdata(ir, urb->transfer_buffer, 0, len, true);
66e89522
JW
594 }
595
596}
597
598/* request incoming or send outgoing usb packet - used to initialize remote */
599static void mce_request_packet(struct mceusb_dev *ir,
600 struct usb_endpoint_descriptor *ep,
601 unsigned char *data, int size, int urb_type)
602{
603 int res;
604 struct urb *async_urb;
605 struct device *dev = ir->dev;
606 unsigned char *async_buf;
607
608 if (urb_type == MCEUSB_TX) {
609 async_urb = usb_alloc_urb(0, GFP_KERNEL);
610 if (unlikely(!async_urb)) {
611 dev_err(dev, "Error, couldn't allocate urb!\n");
612 return;
613 }
614
615 async_buf = kzalloc(size, GFP_KERNEL);
616 if (!async_buf) {
617 dev_err(dev, "Error, couldn't allocate buf!\n");
618 usb_free_urb(async_urb);
619 return;
620 }
621
622 /* outbound data */
623 usb_fill_int_urb(async_urb, ir->usbdev,
624 usb_sndintpipe(ir->usbdev, ep->bEndpointAddress),
7c294402 625 async_buf, size, (usb_complete_t)mce_async_callback,
66e89522
JW
626 ir, ep->bInterval);
627 memcpy(async_buf, data, size);
628
629 } else if (urb_type == MCEUSB_RX) {
630 /* standard request */
631 async_urb = ir->urb_in;
632 ir->send_flags = RECV_FLAG_IN_PROGRESS;
633
634 } else {
635 dev_err(dev, "Error! Unknown urb type %d\n", urb_type);
636 return;
637 }
638
639 dev_dbg(dev, "receive request called (size=%#x)\n", size);
640
641 async_urb->transfer_buffer_length = size;
642 async_urb->dev = ir->usbdev;
643
644 res = usb_submit_urb(async_urb, GFP_ATOMIC);
645 if (res) {
646 dev_dbg(dev, "receive request FAILED! (res=%d)\n", res);
647 return;
648 }
649 dev_dbg(dev, "receive request complete (res=%d)\n", res);
650}
651
652static void mce_async_out(struct mceusb_dev *ir, unsigned char *data, int size)
653{
654 mce_request_packet(ir, ir->usb_ep_out, data, size, MCEUSB_TX);
655}
656
657static void mce_sync_in(struct mceusb_dev *ir, unsigned char *data, int size)
658{
659 mce_request_packet(ir, ir->usb_ep_in, data, size, MCEUSB_RX);
660}
661
e23fb964 662/* Send data out the IR blaster port(s) */
d8b4b582 663static int mceusb_tx_ir(struct rc_dev *dev, int *txbuf, u32 n)
e23fb964 664{
d8b4b582 665 struct mceusb_dev *ir = dev->priv;
e23fb964
JW
666 int i, ret = 0;
667 int count, cmdcount = 0;
668 unsigned char *cmdbuf; /* MCE command buffer */
669 long signal_duration = 0; /* Singnal length in us */
670 struct timeval start_time, end_time;
671
672 do_gettimeofday(&start_time);
673
674 count = n / sizeof(int);
675
676 cmdbuf = kzalloc(sizeof(int) * MCE_CMDBUF_SIZE, GFP_KERNEL);
677 if (!cmdbuf)
678 return -ENOMEM;
679
680 /* MCE tx init header */
4a883918
JW
681 cmdbuf[cmdcount++] = MCE_COMMAND_HEADER;
682 cmdbuf[cmdcount++] = MCE_CMD_S_TXMASK;
e23fb964
JW
683 cmdbuf[cmdcount++] = ir->tx_mask;
684
685 /* Generate mce packet data */
686 for (i = 0; (i < count) && (cmdcount < MCE_CMDBUF_SIZE); i++) {
687 signal_duration += txbuf[i];
688 txbuf[i] = txbuf[i] / MCE_TIME_UNIT;
689
690 do { /* loop to support long pulses/spaces > 127*50us=6.35ms */
691
692 /* Insert mce packet header every 4th entry */
693 if ((cmdcount < MCE_CMDBUF_SIZE) &&
694 (cmdcount - MCE_TX_HEADER_LENGTH) %
695 MCE_CODE_LENGTH == 0)
4a883918 696 cmdbuf[cmdcount++] = MCE_IRDATA_HEADER;
e23fb964
JW
697
698 /* Insert mce packet data */
699 if (cmdcount < MCE_CMDBUF_SIZE)
700 cmdbuf[cmdcount++] =
701 (txbuf[i] < MCE_PULSE_BIT ?
702 txbuf[i] : MCE_MAX_PULSE_LENGTH) |
703 (i & 1 ? 0x00 : MCE_PULSE_BIT);
704 else {
705 ret = -EINVAL;
706 goto out;
707 }
708
709 } while ((txbuf[i] > MCE_MAX_PULSE_LENGTH) &&
710 (txbuf[i] -= MCE_MAX_PULSE_LENGTH));
711 }
712
713 /* Fix packet length in last header */
714 cmdbuf[cmdcount - (cmdcount - MCE_TX_HEADER_LENGTH) % MCE_CODE_LENGTH] =
4a883918
JW
715 MCE_COMMAND_IRDATA + (cmdcount - MCE_TX_HEADER_LENGTH) %
716 MCE_CODE_LENGTH - 1;
e23fb964
JW
717
718 /* Check if we have room for the empty packet at the end */
719 if (cmdcount >= MCE_CMDBUF_SIZE) {
720 ret = -EINVAL;
721 goto out;
722 }
723
724 /* All mce commands end with an empty packet (0x80) */
4a883918 725 cmdbuf[cmdcount++] = MCE_IRDATA_TRAILER;
e23fb964
JW
726
727 /* Transmit the command to the mce device */
728 mce_async_out(ir, cmdbuf, cmdcount);
729
730 /*
731 * The lircd gap calculation expects the write function to
732 * wait the time it takes for the ircommand to be sent before
733 * it returns.
734 */
735 do_gettimeofday(&end_time);
736 signal_duration -= (end_time.tv_usec - start_time.tv_usec) +
737 (end_time.tv_sec - start_time.tv_sec) * 1000000;
738
739 /* delay with the closest number of ticks */
740 set_current_state(TASK_INTERRUPTIBLE);
741 schedule_timeout(usecs_to_jiffies(signal_duration));
742
743out:
744 kfree(cmdbuf);
745 return ret ? ret : n;
746}
747
6f6c625d 748/* Sets active IR outputs -- mce devices typically have two */
d8b4b582 749static int mceusb_set_tx_mask(struct rc_dev *dev, u32 mask)
657290b6 750{
d8b4b582 751 struct mceusb_dev *ir = dev->priv;
657290b6 752
d8cc7fd7
JW
753 if (ir->flags.tx_mask_normal)
754 ir->tx_mask = mask;
755 else
4a883918
JW
756 ir->tx_mask = (mask != MCE_DEFAULT_TX_MASK ?
757 mask ^ MCE_DEFAULT_TX_MASK : mask) << 1;
657290b6
JW
758
759 return 0;
760}
761
e23fb964 762/* Sets the send carrier frequency and mode */
d8b4b582 763static int mceusb_set_tx_carrier(struct rc_dev *dev, u32 carrier)
e23fb964 764{
d8b4b582 765 struct mceusb_dev *ir = dev->priv;
e23fb964
JW
766 int clk = 10000000;
767 int prescaler = 0, divisor = 0;
4a883918
JW
768 unsigned char cmdbuf[4] = { MCE_COMMAND_HEADER,
769 MCE_CMD_S_CARRIER, 0x00, 0x00 };
e23fb964
JW
770
771 /* Carrier has changed */
772 if (ir->carrier != carrier) {
773
774 if (carrier == 0) {
775 ir->carrier = carrier;
1cd50f25 776 cmdbuf[2] = MCE_CMD_SIG_END;
4a883918 777 cmdbuf[3] = MCE_IRDATA_TRAILER;
e23fb964
JW
778 dev_dbg(ir->dev, "%s: disabling carrier "
779 "modulation\n", __func__);
780 mce_async_out(ir, cmdbuf, sizeof(cmdbuf));
781 return carrier;
782 }
783
784 for (prescaler = 0; prescaler < 4; ++prescaler) {
785 divisor = (clk >> (2 * prescaler)) / carrier;
4a883918 786 if (divisor <= 0xff) {
e23fb964
JW
787 ir->carrier = carrier;
788 cmdbuf[2] = prescaler;
789 cmdbuf[3] = divisor;
790 dev_dbg(ir->dev, "%s: requesting %u HZ "
791 "carrier\n", __func__, carrier);
792
793 /* Transmit new carrier to mce device */
794 mce_async_out(ir, cmdbuf, sizeof(cmdbuf));
795 return carrier;
796 }
797 }
798
799 return -EINVAL;
800
801 }
802
803 return carrier;
804}
805
2ee95db2
JW
806/*
807 * We don't do anything but print debug spew for many of the command bits
808 * we receive from the hardware, but some of them are useful information
809 * we want to store so that we can use them.
810 */
811static void mceusb_handle_command(struct mceusb_dev *ir, int index)
812{
813 u8 hi = ir->buf_in[index + 1] & 0xff;
814 u8 lo = ir->buf_in[index + 2] & 0xff;
815
816 switch (ir->buf_in[index]) {
817 /* 2-byte return value commands */
818 case MCE_CMD_S_TIMEOUT:
b4608fae 819 ir->rc->timeout = US_TO_NS((hi << 8 | lo) / 2);
2ee95db2
JW
820 break;
821
822 /* 1-byte return value commands */
823 case MCE_CMD_S_TXMASK:
824 ir->tx_mask = hi;
825 break;
826 case MCE_CMD_S_RXSENSOR:
827 ir->learning_enabled = (hi == 0x02);
828 break;
829 default:
830 break;
831 }
832}
833
66e89522
JW
834static void mceusb_process_ir_data(struct mceusb_dev *ir, int buf_len)
835{
4651918a 836 DEFINE_IR_RAW_EVENT(rawir);
39dc5c3a 837 int i = 0;
66e89522
JW
838
839 /* skip meaningless 0xb1 0x60 header bytes on orig receiver */
840 if (ir->flags.microsoft_gen1)
39dc5c3a 841 i = 2;
66e89522 842
29b4494b
JW
843 /* if there's no data, just return now */
844 if (buf_len <= i)
845 return;
846
39dc5c3a
MCC
847 for (; i < buf_len; i++) {
848 switch (ir->parser_state) {
849 case SUBCMD:
850 ir->rem = mceusb_cmdsize(ir->cmd, ir->buf_in[i]);
36e9d260
JW
851 mceusb_dev_printdata(ir, ir->buf_in, i - 1,
852 ir->rem + 2, false);
2ee95db2 853 mceusb_handle_command(ir, i);
39dc5c3a
MCC
854 ir->parser_state = CMD_DATA;
855 break;
856 case PARSE_IRDATA:
66e89522 857 ir->rem--;
5bd9d73c 858 init_ir_raw_event(&rawir);
66e89522
JW
859 rawir.pulse = ((ir->buf_in[i] & MCE_PULSE_BIT) != 0);
860 rawir.duration = (ir->buf_in[i] & MCE_PULSE_MASK)
b4608fae 861 * US_TO_NS(MCE_TIME_UNIT);
66e89522 862
66e89522
JW
863 dev_dbg(ir->dev, "Storing %s with duration %d\n",
864 rawir.pulse ? "pulse" : "space",
865 rawir.duration);
866
d8b4b582 867 ir_raw_event_store_with_filter(ir->rc, &rawir);
39dc5c3a
MCC
868 break;
869 case CMD_DATA:
870 ir->rem--;
871 break;
872 case CMD_HEADER:
873 /* decode mce packets of the form (84),AA,BB,CC,DD */
874 /* IR data packets can span USB messages - rem */
875 ir->cmd = ir->buf_in[i];
4a883918
JW
876 if ((ir->cmd == MCE_COMMAND_HEADER) ||
877 ((ir->cmd & MCE_COMMAND_MASK) !=
878 MCE_COMMAND_IRDATA)) {
39dc5c3a
MCC
879 ir->parser_state = SUBCMD;
880 continue;
881 }
882 ir->rem = (ir->cmd & MCE_PACKET_LENGTH_MASK);
2ee95db2
JW
883 mceusb_dev_printdata(ir, ir->buf_in,
884 i, ir->rem + 1, false);
1cd50f25 885 if (ir->rem)
39dc5c3a 886 ir->parser_state = PARSE_IRDATA;
5bd9d73c
JW
887 else
888 ir_raw_event_reset(ir->rc);
39dc5c3a 889 break;
66e89522
JW
890 }
891
39dc5c3a
MCC
892 if (ir->parser_state != CMD_HEADER && !ir->rem)
893 ir->parser_state = CMD_HEADER;
66e89522 894 }
39dc5c3a 895 dev_dbg(ir->dev, "processed IR data, calling ir_raw_event_handle\n");
d8b4b582 896 ir_raw_event_handle(ir->rc);
66e89522
JW
897}
898
66e89522
JW
899static void mceusb_dev_recv(struct urb *urb, struct pt_regs *regs)
900{
901 struct mceusb_dev *ir;
902 int buf_len;
903
904 if (!urb)
905 return;
906
907 ir = urb->context;
908 if (!ir) {
909 usb_unlink_urb(urb);
910 return;
911 }
912
913 buf_len = urb->actual_length;
914
66e89522
JW
915 if (ir->send_flags == RECV_FLAG_IN_PROGRESS) {
916 ir->send_flags = SEND_FLAG_COMPLETE;
7a9fcb41 917 dev_dbg(ir->dev, "setup answer received %d bytes\n",
66e89522
JW
918 buf_len);
919 }
920
921 switch (urb->status) {
922 /* success */
923 case 0:
924 mceusb_process_ir_data(ir, buf_len);
925 break;
926
927 case -ECONNRESET:
928 case -ENOENT:
929 case -ESHUTDOWN:
930 usb_unlink_urb(urb);
931 return;
932
933 case -EPIPE:
934 default:
39dc5c3a 935 dev_dbg(ir->dev, "Error: urb status = %d\n", urb->status);
66e89522
JW
936 break;
937 }
938
939 usb_submit_urb(urb, GFP_ATOMIC);
940}
941
942static void mceusb_gen1_init(struct mceusb_dev *ir)
943{
ca17a4f0 944 int ret;
22b0766b 945 int maxp = ir->len_in;
66e89522 946 struct device *dev = ir->dev;
b48592e4 947 char *data;
657290b6
JW
948
949 data = kzalloc(USB_CTRL_MSG_SZ, GFP_KERNEL);
950 if (!data) {
951 dev_err(dev, "%s: memory allocation failed!\n", __func__);
657290b6
JW
952 return;
953 }
66e89522
JW
954
955 /*
b48592e4 956 * This is a strange one. Windows issues a set address to the device
66e89522
JW
957 * on the receive control pipe and expect a certain value pair back
958 */
66e89522
JW
959 ret = usb_control_msg(ir->usbdev, usb_rcvctrlpipe(ir->usbdev, 0),
960 USB_REQ_SET_ADDRESS, USB_TYPE_VENDOR, 0, 0,
657290b6 961 data, USB_CTRL_MSG_SZ, HZ * 3);
66e89522
JW
962 dev_dbg(dev, "%s - ret = %d\n", __func__, ret);
963 dev_dbg(dev, "%s - data[0] = %d, data[1] = %d\n",
964 __func__, data[0], data[1]);
965
966 /* set feature: bit rate 38400 bps */
967 ret = usb_control_msg(ir->usbdev, usb_sndctrlpipe(ir->usbdev, 0),
968 USB_REQ_SET_FEATURE, USB_TYPE_VENDOR,
969 0xc04e, 0x0000, NULL, 0, HZ * 3);
970
971 dev_dbg(dev, "%s - ret = %d\n", __func__, ret);
972
973 /* bRequest 4: set char length to 8 bits */
974 ret = usb_control_msg(ir->usbdev, usb_sndctrlpipe(ir->usbdev, 0),
975 4, USB_TYPE_VENDOR,
976 0x0808, 0x0000, NULL, 0, HZ * 3);
977 dev_dbg(dev, "%s - retB = %d\n", __func__, ret);
978
979 /* bRequest 2: set handshaking to use DTR/DSR */
980 ret = usb_control_msg(ir->usbdev, usb_sndctrlpipe(ir->usbdev, 0),
981 2, USB_TYPE_VENDOR,
982 0x0000, 0x0100, NULL, 0, HZ * 3);
983 dev_dbg(dev, "%s - retC = %d\n", __func__, ret);
657290b6 984
22b0766b
JW
985 /* device reset */
986 mce_async_out(ir, DEVICE_RESET, sizeof(DEVICE_RESET));
987 mce_sync_in(ir, NULL, maxp);
988
989 /* get hw/sw revision? */
990 mce_async_out(ir, GET_REVISION, sizeof(GET_REVISION));
991 mce_sync_in(ir, NULL, maxp);
992
657290b6 993 kfree(data);
66e89522
JW
994};
995
996static void mceusb_gen2_init(struct mceusb_dev *ir)
997{
998 int maxp = ir->len_in;
999
66e89522
JW
1000 /* device reset */
1001 mce_async_out(ir, DEVICE_RESET, sizeof(DEVICE_RESET));
1002 mce_sync_in(ir, NULL, maxp);
1003
1004 /* get hw/sw revision? */
1005 mce_async_out(ir, GET_REVISION, sizeof(GET_REVISION));
1006 mce_sync_in(ir, NULL, maxp);
1007
22b0766b 1008 /* unknown what the next two actually return... */
66e89522
JW
1009 mce_async_out(ir, GET_UNKNOWN, sizeof(GET_UNKNOWN));
1010 mce_sync_in(ir, NULL, maxp);
22b0766b
JW
1011 mce_async_out(ir, GET_UNKNOWN2, sizeof(GET_UNKNOWN2));
1012 mce_sync_in(ir, NULL, maxp);
66e89522
JW
1013}
1014
22b0766b 1015static void mceusb_get_parameters(struct mceusb_dev *ir)
66e89522
JW
1016{
1017 int maxp = ir->len_in;
1018
66e89522
JW
1019 /* get the carrier and frequency */
1020 mce_async_out(ir, GET_CARRIER_FREQ, sizeof(GET_CARRIER_FREQ));
1021 mce_sync_in(ir, NULL, maxp);
1022
6f6c625d
JW
1023 if (!ir->flags.no_tx) {
1024 /* get the transmitter bitmask */
1025 mce_async_out(ir, GET_TX_BITMASK, sizeof(GET_TX_BITMASK));
1026 mce_sync_in(ir, NULL, maxp);
1027 }
66e89522
JW
1028
1029 /* get receiver timeout value */
1030 mce_async_out(ir, GET_RX_TIMEOUT, sizeof(GET_RX_TIMEOUT));
1031 mce_sync_in(ir, NULL, maxp);
1032
1033 /* get receiver sensor setting */
1034 mce_async_out(ir, GET_RX_SENSOR, sizeof(GET_RX_SENSOR));
1035 mce_sync_in(ir, NULL, maxp);
1036}
1037
d8b4b582 1038static struct rc_dev *mceusb_init_rc_dev(struct mceusb_dev *ir)
66e89522 1039{
66e89522 1040 struct device *dev = ir->dev;
d8b4b582
DH
1041 struct rc_dev *rc;
1042 int ret;
66e89522 1043
d8b4b582
DH
1044 rc = rc_allocate_device();
1045 if (!rc) {
1046 dev_err(dev, "remote dev allocation failed\n");
1047 goto out;
66e89522
JW
1048 }
1049
3459d455 1050 snprintf(ir->name, sizeof(ir->name), "%s (%04x:%04x)",
d8b4b582 1051 mceusb_model[ir->model].name ?
5ad1a555 1052 mceusb_model[ir->model].name :
d8b4b582 1053 "Media Center Ed. eHome Infrared Remote Transceiver",
66e89522
JW
1054 le16_to_cpu(ir->usbdev->descriptor.idVendor),
1055 le16_to_cpu(ir->usbdev->descriptor.idProduct));
1056
66e89522 1057 usb_make_path(ir->usbdev, ir->phys, sizeof(ir->phys));
66e89522 1058
d8b4b582
DH
1059 rc->input_name = ir->name;
1060 rc->input_phys = ir->phys;
1061 usb_to_input_id(ir->usbdev, &rc->input_id);
1062 rc->dev.parent = dev;
1063 rc->priv = ir;
1064 rc->driver_type = RC_DRIVER_IR_RAW;
52b66144 1065 rc->allowed_protos = RC_TYPE_ALL;
b4608fae 1066 rc->timeout = US_TO_NS(1000);
6f6c625d 1067 if (!ir->flags.no_tx) {
d8b4b582
DH
1068 rc->s_tx_mask = mceusb_set_tx_mask;
1069 rc->s_tx_carrier = mceusb_set_tx_carrier;
1070 rc->tx_ir = mceusb_tx_ir;
6f6c625d 1071 }
d8b4b582
DH
1072 rc->driver_name = DRIVER_NAME;
1073 rc->map_name = mceusb_model[ir->model].rc_map ?
1074 mceusb_model[ir->model].rc_map : RC_MAP_RC6_MCE;
66e89522 1075
d8b4b582 1076 ret = rc_register_device(rc);
66e89522 1077 if (ret < 0) {
d8b4b582
DH
1078 dev_err(dev, "remote dev registration failed\n");
1079 goto out;
66e89522
JW
1080 }
1081
d8b4b582 1082 return rc;
66e89522 1083
d8b4b582
DH
1084out:
1085 rc_free_device(rc);
66e89522
JW
1086 return NULL;
1087}
1088
1089static int __devinit mceusb_dev_probe(struct usb_interface *intf,
1090 const struct usb_device_id *id)
1091{
1092 struct usb_device *dev = interface_to_usbdev(intf);
1093 struct usb_host_interface *idesc;
1094 struct usb_endpoint_descriptor *ep = NULL;
1095 struct usb_endpoint_descriptor *ep_in = NULL;
1096 struct usb_endpoint_descriptor *ep_out = NULL;
66e89522 1097 struct mceusb_dev *ir = NULL;
d732a72d 1098 int pipe, maxp, i;
66e89522 1099 char buf[63], name[128] = "";
37dbd3a6 1100 enum mceusb_model_type model = id->driver_info;
66e89522
JW
1101 bool is_gen3;
1102 bool is_microsoft_gen1;
d8cc7fd7 1103 bool tx_mask_normal;
56e92f60 1104 bool is_polaris;
66e89522 1105
1cd50f25 1106 dev_dbg(&intf->dev, "%s called\n", __func__);
66e89522 1107
66e89522
JW
1108 idesc = intf->cur_altsetting;
1109
37dbd3a6
MCC
1110 is_gen3 = mceusb_model[model].mce_gen3;
1111 is_microsoft_gen1 = mceusb_model[model].mce_gen1;
d8cc7fd7 1112 tx_mask_normal = mceusb_model[model].tx_mask_normal;
37dbd3a6 1113 is_polaris = mceusb_model[model].is_polaris;
56e92f60
MCC
1114
1115 if (is_polaris) {
1116 /* Interface 0 is IR */
1117 if (idesc->desc.bInterfaceNumber)
1118 return -ENODEV;
1119 }
66e89522
JW
1120
1121 /* step through the endpoints to find first bulk in and out endpoint */
1122 for (i = 0; i < idesc->desc.bNumEndpoints; ++i) {
1123 ep = &idesc->endpoint[i].desc;
1124
1125 if ((ep_in == NULL)
1126 && ((ep->bEndpointAddress & USB_ENDPOINT_DIR_MASK)
1127 == USB_DIR_IN)
1128 && (((ep->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK)
1129 == USB_ENDPOINT_XFER_BULK)
1130 || ((ep->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK)
1131 == USB_ENDPOINT_XFER_INT))) {
1132
66e89522
JW
1133 ep_in = ep;
1134 ep_in->bmAttributes = USB_ENDPOINT_XFER_INT;
d732a72d 1135 ep_in->bInterval = 1;
1cd50f25 1136 dev_dbg(&intf->dev, "acceptable inbound endpoint "
d732a72d 1137 "found\n");
66e89522
JW
1138 }
1139
1140 if ((ep_out == NULL)
1141 && ((ep->bEndpointAddress & USB_ENDPOINT_DIR_MASK)
1142 == USB_DIR_OUT)
1143 && (((ep->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK)
1144 == USB_ENDPOINT_XFER_BULK)
1145 || ((ep->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK)
1146 == USB_ENDPOINT_XFER_INT))) {
1147
66e89522
JW
1148 ep_out = ep;
1149 ep_out->bmAttributes = USB_ENDPOINT_XFER_INT;
d732a72d 1150 ep_out->bInterval = 1;
1cd50f25 1151 dev_dbg(&intf->dev, "acceptable outbound endpoint "
d732a72d 1152 "found\n");
66e89522
JW
1153 }
1154 }
1155 if (ep_in == NULL) {
1cd50f25 1156 dev_dbg(&intf->dev, "inbound and/or endpoint not found\n");
66e89522
JW
1157 return -ENODEV;
1158 }
1159
1160 pipe = usb_rcvintpipe(dev, ep_in->bEndpointAddress);
1161 maxp = usb_maxpacket(dev, pipe, usb_pipeout(pipe));
1162
1163 ir = kzalloc(sizeof(struct mceusb_dev), GFP_KERNEL);
1164 if (!ir)
1165 goto mem_alloc_fail;
1166
1167 ir->buf_in = usb_alloc_coherent(dev, maxp, GFP_ATOMIC, &ir->dma_in);
1168 if (!ir->buf_in)
1169 goto buf_in_alloc_fail;
1170
1171 ir->urb_in = usb_alloc_urb(0, GFP_KERNEL);
1172 if (!ir->urb_in)
1173 goto urb_in_alloc_fail;
1174
1175 ir->usbdev = dev;
1176 ir->dev = &intf->dev;
1177 ir->len_in = maxp;
66e89522 1178 ir->flags.microsoft_gen1 = is_microsoft_gen1;
d8cc7fd7 1179 ir->flags.tx_mask_normal = tx_mask_normal;
6f6c625d 1180 ir->flags.no_tx = mceusb_model[model].no_tx;
37dbd3a6
MCC
1181 ir->model = model;
1182
66e89522
JW
1183 /* Saving usb interface data for use by the transmitter routine */
1184 ir->usb_ep_in = ep_in;
1185 ir->usb_ep_out = ep_out;
1186
1187 if (dev->descriptor.iManufacturer
1188 && usb_string(dev, dev->descriptor.iManufacturer,
1189 buf, sizeof(buf)) > 0)
1190 strlcpy(name, buf, sizeof(name));
1191 if (dev->descriptor.iProduct
1192 && usb_string(dev, dev->descriptor.iProduct,
1193 buf, sizeof(buf)) > 0)
1194 snprintf(name + strlen(name), sizeof(name) - strlen(name),
1195 " %s", buf);
1196
d8b4b582
DH
1197 ir->rc = mceusb_init_rc_dev(ir);
1198 if (!ir->rc)
1199 goto rc_dev_fail;
66e89522 1200
b48592e4
JW
1201 /* flush buffers on the device */
1202 mce_sync_in(ir, NULL, maxp);
1203 mce_sync_in(ir, NULL, maxp);
1204
1205 /* wire up inbound data handler */
66e89522
JW
1206 usb_fill_int_urb(ir->urb_in, dev, pipe, ir->buf_in,
1207 maxp, (usb_complete_t) mceusb_dev_recv, ir, ep_in->bInterval);
1208 ir->urb_in->transfer_dma = ir->dma_in;
1209 ir->urb_in->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
1210
66e89522 1211 /* initialize device */
22b0766b 1212 if (ir->flags.microsoft_gen1)
66e89522 1213 mceusb_gen1_init(ir);
22b0766b 1214 else if (!is_gen3)
66e89522
JW
1215 mceusb_gen2_init(ir);
1216
22b0766b 1217 mceusb_get_parameters(ir);
66e89522 1218
6f6c625d 1219 if (!ir->flags.no_tx)
d8b4b582 1220 mceusb_set_tx_mask(ir->rc, MCE_DEFAULT_TX_MASK);
66e89522
JW
1221
1222 usb_set_intfdata(intf, ir);
1223
1224 dev_info(&intf->dev, "Registered %s on usb%d:%d\n", name,
1225 dev->bus->busnum, dev->devnum);
1226
1227 return 0;
1228
1229 /* Error-handling path */
d8b4b582 1230rc_dev_fail:
66e89522
JW
1231 usb_free_urb(ir->urb_in);
1232urb_in_alloc_fail:
1233 usb_free_coherent(dev, maxp, ir->buf_in, ir->dma_in);
1234buf_in_alloc_fail:
1235 kfree(ir);
1236mem_alloc_fail:
1237 dev_err(&intf->dev, "%s: device setup failed!\n", __func__);
1238
1239 return -ENOMEM;
1240}
1241
1242
1243static void __devexit mceusb_dev_disconnect(struct usb_interface *intf)
1244{
1245 struct usb_device *dev = interface_to_usbdev(intf);
1246 struct mceusb_dev *ir = usb_get_intfdata(intf);
1247
1248 usb_set_intfdata(intf, NULL);
1249
1250 if (!ir)
1251 return;
1252
1253 ir->usbdev = NULL;
d8b4b582 1254 rc_unregister_device(ir->rc);
66e89522
JW
1255 usb_kill_urb(ir->urb_in);
1256 usb_free_urb(ir->urb_in);
1257 usb_free_coherent(dev, ir->len_in, ir->buf_in, ir->dma_in);
1258
1259 kfree(ir);
1260}
1261
1262static int mceusb_dev_suspend(struct usb_interface *intf, pm_message_t message)
1263{
1264 struct mceusb_dev *ir = usb_get_intfdata(intf);
1265 dev_info(ir->dev, "suspend\n");
1266 usb_kill_urb(ir->urb_in);
1267 return 0;
1268}
1269
1270static int mceusb_dev_resume(struct usb_interface *intf)
1271{
1272 struct mceusb_dev *ir = usb_get_intfdata(intf);
1273 dev_info(ir->dev, "resume\n");
1274 if (usb_submit_urb(ir->urb_in, GFP_ATOMIC))
1275 return -EIO;
1276 return 0;
1277}
1278
1279static struct usb_driver mceusb_dev_driver = {
1280 .name = DRIVER_NAME,
1281 .probe = mceusb_dev_probe,
1282 .disconnect = mceusb_dev_disconnect,
1283 .suspend = mceusb_dev_suspend,
1284 .resume = mceusb_dev_resume,
1285 .reset_resume = mceusb_dev_resume,
1286 .id_table = mceusb_dev_table
1287};
1288
1289static int __init mceusb_dev_init(void)
1290{
1291 int ret;
1292
1293 ret = usb_register(&mceusb_dev_driver);
1294 if (ret < 0)
1295 printk(KERN_ERR DRIVER_NAME
1296 ": usb register failed, result = %d\n", ret);
1297
1298 return ret;
1299}
1300
1301static void __exit mceusb_dev_exit(void)
1302{
1303 usb_deregister(&mceusb_dev_driver);
1304}
1305
1306module_init(mceusb_dev_init);
1307module_exit(mceusb_dev_exit);
1308
1309MODULE_DESCRIPTION(DRIVER_DESC);
1310MODULE_AUTHOR(DRIVER_AUTHOR);
1311MODULE_LICENSE("GPL");
1312MODULE_DEVICE_TABLE(usb, mceusb_dev_table);
1313
1314module_param(debug, bool, S_IRUGO | S_IWUSR);
1315MODULE_PARM_DESC(debug, "Debug enabled or not");
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