xref: /openbmc/linux/drivers/media/rc/mceusb.c (revision 73eb94a0)
1 /*
2  * Driver for USB Windows Media Center Ed. eHome Infrared Transceivers
3  *
4  * Copyright (c) 2010-2011, 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  *
18  * Updated in July of 2011 with the aid of Microsoft's official
19  * remote/transceiver requirements and specification document, found at
20  * download.microsoft.com, title
21  * Windows-Media-Center-RC-IR-Collection-Green-Button-Specification-03-08-2011-V2.pdf
22  *
23  *
24  * This program is free software; you can redistribute it and/or modify
25  * it under the terms of the GNU General Public License as published by
26  * the Free Software Foundation; either version 2 of the License, or
27  * (at your option) any later version.
28  *
29  * This program is distributed in the hope that it will be useful,
30  * but WITHOUT ANY WARRANTY; without even the implied warranty of
31  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
32  * GNU General Public License for more details.
33  *
34  * You should have received a copy of the GNU General Public License
35  * along with this program; if not, write to the Free Software
36  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
37  *
38  */
39 
40 #include <linux/device.h>
41 #include <linux/module.h>
42 #include <linux/slab.h>
43 #include <linux/usb.h>
44 #include <linux/usb/input.h>
45 #include <linux/pm_wakeup.h>
46 #include <media/rc-core.h>
47 
48 #define DRIVER_VERSION	"1.92"
49 #define DRIVER_AUTHOR	"Jarod Wilson <jarod@redhat.com>"
50 #define DRIVER_DESC	"Windows Media Center Ed. eHome Infrared Transceiver " \
51 			"device driver"
52 #define DRIVER_NAME	"mceusb"
53 
54 #define USB_BUFLEN		32 /* USB reception buffer length */
55 #define USB_CTRL_MSG_SZ		2  /* Size of usb ctrl msg on gen1 hw */
56 #define MCE_G1_INIT_MSGS	40 /* Init messages on gen1 hw to throw out */
57 
58 /* MCE constants */
59 #define MCE_CMDBUF_SIZE		384  /* MCE Command buffer length */
60 #define MCE_TIME_UNIT		50   /* Approx 50us resolution */
61 #define MCE_CODE_LENGTH		5    /* Normal length of packet (with header) */
62 #define MCE_PACKET_SIZE		4    /* Normal length of packet (without header) */
63 #define MCE_IRDATA_HEADER	0x84 /* Actual header format is 0x80 + num_bytes */
64 #define MCE_IRDATA_TRAILER	0x80 /* End of IR data */
65 #define MCE_TX_HEADER_LENGTH	3    /* # of bytes in the initializing tx header */
66 #define MCE_MAX_CHANNELS	2    /* Two transmitters, hardware dependent? */
67 #define MCE_DEFAULT_TX_MASK	0x03 /* Vals: TX1=0x01, TX2=0x02, ALL=0x03 */
68 #define MCE_PULSE_BIT		0x80 /* Pulse bit, MSB set == PULSE else SPACE */
69 #define MCE_PULSE_MASK		0x7f /* Pulse mask */
70 #define MCE_MAX_PULSE_LENGTH	0x7f /* Longest transmittable pulse symbol */
71 
72 /*
73  * The interface between the host and the IR hardware is command-response
74  * based. All commands and responses have a consistent format, where a lead
75  * byte always identifies the type of data following it. The lead byte has
76  * a port value in the 3 highest bits and a length value in the 5 lowest
77  * bits.
78  *
79  * The length field is overloaded, with a value of 11111 indicating that the
80  * following byte is a command or response code, and the length of the entire
81  * message is determined by the code. If the length field is not 11111, then
82  * it specifies the number of bytes of port data that follow.
83  */
84 #define MCE_CMD			0x1f
85 #define MCE_PORT_IR		0x4	/* (0x4 << 5) | MCE_CMD = 0x9f */
86 #define MCE_PORT_SYS		0x7	/* (0x7 << 5) | MCE_CMD = 0xff */
87 #define MCE_PORT_SER		0x6	/* 0xc0 thru 0xdf flush & 0x1f bytes */
88 #define MCE_PORT_MASK	0xe0	/* Mask out command bits */
89 
90 /* Command port headers */
91 #define MCE_CMD_PORT_IR		0x9f	/* IR-related cmd/rsp */
92 #define MCE_CMD_PORT_SYS	0xff	/* System (non-IR) device cmd/rsp */
93 
94 /* Commands that set device state  (2-4 bytes in length) */
95 #define MCE_CMD_RESET		0xfe	/* Reset device, 2 bytes */
96 #define MCE_CMD_RESUME		0xaa	/* Resume device after error, 2 bytes */
97 #define MCE_CMD_SETIRCFS	0x06	/* Set tx carrier, 4 bytes */
98 #define MCE_CMD_SETIRTIMEOUT	0x0c	/* Set timeout, 4 bytes */
99 #define MCE_CMD_SETIRTXPORTS	0x08	/* Set tx ports, 3 bytes */
100 #define MCE_CMD_SETIRRXPORTEN	0x14	/* Set rx ports, 3 bytes */
101 #define MCE_CMD_FLASHLED	0x23	/* Flash receiver LED, 2 bytes */
102 
103 /* Commands that query device state (all 2 bytes, unless noted) */
104 #define MCE_CMD_GETIRCFS	0x07	/* Get carrier */
105 #define MCE_CMD_GETIRTIMEOUT	0x0d	/* Get timeout */
106 #define MCE_CMD_GETIRTXPORTS	0x13	/* Get tx ports */
107 #define MCE_CMD_GETIRRXPORTEN	0x15	/* Get rx ports */
108 #define MCE_CMD_GETPORTSTATUS	0x11	/* Get tx port status, 3 bytes */
109 #define MCE_CMD_GETIRNUMPORTS	0x16	/* Get number of ports */
110 #define MCE_CMD_GETWAKESOURCE	0x17	/* Get wake source */
111 #define MCE_CMD_GETEMVER	0x22	/* Get emulator interface version */
112 #define MCE_CMD_GETDEVDETAILS	0x21	/* Get device details (em ver2 only) */
113 #define MCE_CMD_GETWAKESUPPORT	0x20	/* Get wake details (em ver2 only) */
114 #define MCE_CMD_GETWAKEVERSION	0x18	/* Get wake pattern (em ver2 only) */
115 
116 /* Misc commands */
117 #define MCE_CMD_NOP		0xff	/* No operation */
118 
119 /* Responses to commands (non-error cases) */
120 #define MCE_RSP_EQIRCFS		0x06	/* tx carrier, 4 bytes */
121 #define MCE_RSP_EQIRTIMEOUT	0x0c	/* rx timeout, 4 bytes */
122 #define MCE_RSP_GETWAKESOURCE	0x17	/* wake source, 3 bytes */
123 #define MCE_RSP_EQIRTXPORTS	0x08	/* tx port mask, 3 bytes */
124 #define MCE_RSP_EQIRRXPORTEN	0x14	/* rx port mask, 3 bytes */
125 #define MCE_RSP_GETPORTSTATUS	0x11	/* tx port status, 7 bytes */
126 #define MCE_RSP_EQIRRXCFCNT	0x15	/* rx carrier count, 4 bytes */
127 #define MCE_RSP_EQIRNUMPORTS	0x16	/* number of ports, 4 bytes */
128 #define MCE_RSP_EQWAKESUPPORT	0x20	/* wake capabilities, 3 bytes */
129 #define MCE_RSP_EQWAKEVERSION	0x18	/* wake pattern details, 6 bytes */
130 #define MCE_RSP_EQDEVDETAILS	0x21	/* device capabilities, 3 bytes */
131 #define MCE_RSP_EQEMVER		0x22	/* emulator interface ver, 3 bytes */
132 #define MCE_RSP_FLASHLED	0x23	/* success flashing LED, 2 bytes */
133 
134 /* Responses to error cases, must send MCE_CMD_RESUME to clear them */
135 #define MCE_RSP_CMD_ILLEGAL	0xfe	/* illegal command for port, 2 bytes */
136 #define MCE_RSP_TX_TIMEOUT	0x81	/* tx timed out, 2 bytes */
137 
138 /* Misc commands/responses not defined in the MCE remote/transceiver spec */
139 #define MCE_CMD_SIG_END		0x01	/* End of signal */
140 #define MCE_CMD_PING		0x03	/* Ping device */
141 #define MCE_CMD_UNKNOWN		0x04	/* Unknown */
142 #define MCE_CMD_UNKNOWN2	0x05	/* Unknown */
143 #define MCE_CMD_UNKNOWN3	0x09	/* Unknown */
144 #define MCE_CMD_UNKNOWN4	0x0a	/* Unknown */
145 #define MCE_CMD_G_REVISION	0x0b	/* Get hw/sw revision */
146 #define MCE_CMD_UNKNOWN5	0x0e	/* Unknown */
147 #define MCE_CMD_UNKNOWN6	0x0f	/* Unknown */
148 #define MCE_CMD_UNKNOWN8	0x19	/* Unknown */
149 #define MCE_CMD_UNKNOWN9	0x1b	/* Unknown */
150 #define MCE_CMD_NULL		0x00	/* These show up various places... */
151 
152 /* if buf[i] & MCE_PORT_MASK == 0x80 and buf[i] != MCE_CMD_PORT_IR,
153  * then we're looking at a raw IR data sample */
154 #define MCE_COMMAND_IRDATA	0x80
155 #define MCE_PACKET_LENGTH_MASK	0x1f /* Packet length mask */
156 
157 /* module parameters */
158 #ifdef CONFIG_USB_DEBUG
159 static bool debug = 1;
160 #else
161 static bool debug;
162 #endif
163 
164 #define mce_dbg(dev, fmt, ...)					\
165 	do {							\
166 		if (debug)					\
167 			dev_info(dev, fmt, ## __VA_ARGS__);	\
168 	} while (0)
169 
170 /* general constants */
171 #define SEND_FLAG_IN_PROGRESS	1
172 #define SEND_FLAG_COMPLETE	2
173 #define RECV_FLAG_IN_PROGRESS	3
174 #define RECV_FLAG_COMPLETE	4
175 
176 #define MCEUSB_RX		1
177 #define MCEUSB_TX		2
178 
179 #define VENDOR_PHILIPS		0x0471
180 #define VENDOR_SMK		0x0609
181 #define VENDOR_TATUNG		0x1460
182 #define VENDOR_GATEWAY		0x107b
183 #define VENDOR_SHUTTLE		0x1308
184 #define VENDOR_SHUTTLE2		0x051c
185 #define VENDOR_MITSUMI		0x03ee
186 #define VENDOR_TOPSEED		0x1784
187 #define VENDOR_RICAVISION	0x179d
188 #define VENDOR_ITRON		0x195d
189 #define VENDOR_FIC		0x1509
190 #define VENDOR_LG		0x043e
191 #define VENDOR_MICROSOFT	0x045e
192 #define VENDOR_FORMOSA		0x147a
193 #define VENDOR_FINTEK		0x1934
194 #define VENDOR_PINNACLE		0x2304
195 #define VENDOR_ECS		0x1019
196 #define VENDOR_WISTRON		0x0fb8
197 #define VENDOR_COMPRO		0x185b
198 #define VENDOR_NORTHSTAR	0x04eb
199 #define VENDOR_REALTEK		0x0bda
200 #define VENDOR_TIVO		0x105a
201 #define VENDOR_CONEXANT		0x0572
202 
203 enum mceusb_model_type {
204 	MCE_GEN2 = 0,		/* Most boards */
205 	MCE_GEN1,
206 	MCE_GEN3,
207 	MCE_GEN2_TX_INV,
208 	POLARIS_EVK,
209 	CX_HYBRID_TV,
210 	MULTIFUNCTION,
211 	TIVO_KIT,
212 	MCE_GEN2_NO_TX,
213 };
214 
215 struct mceusb_model {
216 	u32 mce_gen1:1;
217 	u32 mce_gen2:1;
218 	u32 mce_gen3:1;
219 	u32 tx_mask_normal:1;
220 	u32 no_tx:1;
221 
222 	int ir_intfnum;
223 
224 	const char *rc_map;	/* Allow specify a per-board map */
225 	const char *name;	/* per-board name */
226 };
227 
228 static const struct mceusb_model mceusb_model[] = {
229 	[MCE_GEN1] = {
230 		.mce_gen1 = 1,
231 		.tx_mask_normal = 1,
232 	},
233 	[MCE_GEN2] = {
234 		.mce_gen2 = 1,
235 	},
236 	[MCE_GEN2_NO_TX] = {
237 		.mce_gen2 = 1,
238 		.no_tx = 1,
239 	},
240 	[MCE_GEN2_TX_INV] = {
241 		.mce_gen2 = 1,
242 		.tx_mask_normal = 1,
243 	},
244 	[MCE_GEN3] = {
245 		.mce_gen3 = 1,
246 		.tx_mask_normal = 1,
247 	},
248 	[POLARIS_EVK] = {
249 		/*
250 		 * In fact, the EVK is shipped without
251 		 * remotes, but we should have something handy,
252 		 * to allow testing it
253 		 */
254 		.rc_map = RC_MAP_HAUPPAUGE,
255 		.name = "Conexant Hybrid TV (cx231xx) MCE IR",
256 	},
257 	[CX_HYBRID_TV] = {
258 		.no_tx = 1, /* tx isn't wired up at all */
259 		.name = "Conexant Hybrid TV (cx231xx) MCE IR",
260 	},
261 	[MULTIFUNCTION] = {
262 		.mce_gen2 = 1,
263 		.ir_intfnum = 2,
264 	},
265 	[TIVO_KIT] = {
266 		.mce_gen2 = 1,
267 		.rc_map = RC_MAP_TIVO,
268 	},
269 };
270 
271 static struct usb_device_id mceusb_dev_table[] = {
272 	/* Original Microsoft MCE IR Transceiver (often HP-branded) */
273 	{ USB_DEVICE(VENDOR_MICROSOFT, 0x006d),
274 	  .driver_info = MCE_GEN1 },
275 	/* Philips Infrared Transceiver - Sahara branded */
276 	{ USB_DEVICE(VENDOR_PHILIPS, 0x0608) },
277 	/* Philips Infrared Transceiver - HP branded */
278 	{ USB_DEVICE(VENDOR_PHILIPS, 0x060c),
279 	  .driver_info = MCE_GEN2_TX_INV },
280 	/* Philips SRM5100 */
281 	{ USB_DEVICE(VENDOR_PHILIPS, 0x060d) },
282 	/* Philips Infrared Transceiver - Omaura */
283 	{ USB_DEVICE(VENDOR_PHILIPS, 0x060f) },
284 	/* Philips Infrared Transceiver - Spinel plus */
285 	{ USB_DEVICE(VENDOR_PHILIPS, 0x0613) },
286 	/* Philips eHome Infrared Transceiver */
287 	{ USB_DEVICE(VENDOR_PHILIPS, 0x0815) },
288 	/* Philips/Spinel plus IR transceiver for ASUS */
289 	{ USB_DEVICE(VENDOR_PHILIPS, 0x206c) },
290 	/* Philips/Spinel plus IR transceiver for ASUS */
291 	{ USB_DEVICE(VENDOR_PHILIPS, 0x2088) },
292 	/* Philips IR transceiver (Dell branded) */
293 	{ USB_DEVICE(VENDOR_PHILIPS, 0x2093) },
294 	/* Realtek MCE IR Receiver and card reader */
295 	{ USB_DEVICE(VENDOR_REALTEK, 0x0161),
296 	  .driver_info = MULTIFUNCTION },
297 	/* SMK/Toshiba G83C0004D410 */
298 	{ USB_DEVICE(VENDOR_SMK, 0x031d),
299 	  .driver_info = MCE_GEN2_TX_INV },
300 	/* SMK eHome Infrared Transceiver (Sony VAIO) */
301 	{ USB_DEVICE(VENDOR_SMK, 0x0322),
302 	  .driver_info = MCE_GEN2_TX_INV },
303 	/* bundled with Hauppauge PVR-150 */
304 	{ USB_DEVICE(VENDOR_SMK, 0x0334),
305 	  .driver_info = MCE_GEN2_TX_INV },
306 	/* SMK eHome Infrared Transceiver */
307 	{ USB_DEVICE(VENDOR_SMK, 0x0338) },
308 	/* SMK/I-O Data GV-MC7/RCKIT Receiver */
309 	{ USB_DEVICE(VENDOR_SMK, 0x0353),
310 	  .driver_info = MCE_GEN2_NO_TX },
311 	/* Tatung eHome Infrared Transceiver */
312 	{ USB_DEVICE(VENDOR_TATUNG, 0x9150) },
313 	/* Shuttle eHome Infrared Transceiver */
314 	{ USB_DEVICE(VENDOR_SHUTTLE, 0xc001) },
315 	/* Shuttle eHome Infrared Transceiver */
316 	{ USB_DEVICE(VENDOR_SHUTTLE2, 0xc001) },
317 	/* Gateway eHome Infrared Transceiver */
318 	{ USB_DEVICE(VENDOR_GATEWAY, 0x3009) },
319 	/* Mitsumi */
320 	{ USB_DEVICE(VENDOR_MITSUMI, 0x2501) },
321 	/* Topseed eHome Infrared Transceiver */
322 	{ USB_DEVICE(VENDOR_TOPSEED, 0x0001),
323 	  .driver_info = MCE_GEN2_TX_INV },
324 	/* Topseed HP eHome Infrared Transceiver */
325 	{ USB_DEVICE(VENDOR_TOPSEED, 0x0006),
326 	  .driver_info = MCE_GEN2_TX_INV },
327 	/* Topseed eHome Infrared Transceiver */
328 	{ USB_DEVICE(VENDOR_TOPSEED, 0x0007),
329 	  .driver_info = MCE_GEN2_TX_INV },
330 	/* Topseed eHome Infrared Transceiver */
331 	{ USB_DEVICE(VENDOR_TOPSEED, 0x0008),
332 	  .driver_info = MCE_GEN3 },
333 	/* Topseed eHome Infrared Transceiver */
334 	{ USB_DEVICE(VENDOR_TOPSEED, 0x000a),
335 	  .driver_info = MCE_GEN2_TX_INV },
336 	/* Topseed eHome Infrared Transceiver */
337 	{ USB_DEVICE(VENDOR_TOPSEED, 0x0011),
338 	  .driver_info = MCE_GEN3 },
339 	/* Ricavision internal Infrared Transceiver */
340 	{ USB_DEVICE(VENDOR_RICAVISION, 0x0010) },
341 	/* Itron ione Libra Q-11 */
342 	{ USB_DEVICE(VENDOR_ITRON, 0x7002) },
343 	/* FIC eHome Infrared Transceiver */
344 	{ USB_DEVICE(VENDOR_FIC, 0x9242) },
345 	/* LG eHome Infrared Transceiver */
346 	{ USB_DEVICE(VENDOR_LG, 0x9803) },
347 	/* Microsoft MCE Infrared Transceiver */
348 	{ USB_DEVICE(VENDOR_MICROSOFT, 0x00a0) },
349 	/* Formosa eHome Infrared Transceiver */
350 	{ USB_DEVICE(VENDOR_FORMOSA, 0xe015) },
351 	/* Formosa21 / eHome Infrared Receiver */
352 	{ USB_DEVICE(VENDOR_FORMOSA, 0xe016) },
353 	/* Formosa aim / Trust MCE Infrared Receiver */
354 	{ USB_DEVICE(VENDOR_FORMOSA, 0xe017),
355 	  .driver_info = MCE_GEN2_NO_TX },
356 	/* Formosa Industrial Computing / Beanbag Emulation Device */
357 	{ USB_DEVICE(VENDOR_FORMOSA, 0xe018) },
358 	/* Formosa21 / eHome Infrared Receiver */
359 	{ USB_DEVICE(VENDOR_FORMOSA, 0xe03a) },
360 	/* Formosa Industrial Computing AIM IR605/A */
361 	{ USB_DEVICE(VENDOR_FORMOSA, 0xe03c) },
362 	/* Formosa Industrial Computing */
363 	{ USB_DEVICE(VENDOR_FORMOSA, 0xe03e) },
364 	/* Formosa Industrial Computing */
365 	{ USB_DEVICE(VENDOR_FORMOSA, 0xe042) },
366 	/* Fintek eHome Infrared Transceiver (HP branded) */
367 	{ USB_DEVICE(VENDOR_FINTEK, 0x5168) },
368 	/* Fintek eHome Infrared Transceiver */
369 	{ USB_DEVICE(VENDOR_FINTEK, 0x0602) },
370 	/* Fintek eHome Infrared Transceiver (in the AOpen MP45) */
371 	{ USB_DEVICE(VENDOR_FINTEK, 0x0702) },
372 	/* Pinnacle Remote Kit */
373 	{ USB_DEVICE(VENDOR_PINNACLE, 0x0225),
374 	  .driver_info = MCE_GEN3 },
375 	/* Elitegroup Computer Systems IR */
376 	{ USB_DEVICE(VENDOR_ECS, 0x0f38) },
377 	/* Wistron Corp. eHome Infrared Receiver */
378 	{ USB_DEVICE(VENDOR_WISTRON, 0x0002) },
379 	/* Compro K100 */
380 	{ USB_DEVICE(VENDOR_COMPRO, 0x3020) },
381 	/* Compro K100 v2 */
382 	{ USB_DEVICE(VENDOR_COMPRO, 0x3082) },
383 	/* Northstar Systems, Inc. eHome Infrared Transceiver */
384 	{ USB_DEVICE(VENDOR_NORTHSTAR, 0xe004) },
385 	/* TiVo PC IR Receiver */
386 	{ USB_DEVICE(VENDOR_TIVO, 0x2000),
387 	  .driver_info = TIVO_KIT },
388 	/* Conexant Hybrid TV "Shelby" Polaris SDK */
389 	{ USB_DEVICE(VENDOR_CONEXANT, 0x58a1),
390 	  .driver_info = POLARIS_EVK },
391 	/* Conexant Hybrid TV RDU253S Polaris */
392 	{ USB_DEVICE(VENDOR_CONEXANT, 0x58a5),
393 	  .driver_info = CX_HYBRID_TV },
394 	/* Terminating entry */
395 	{ }
396 };
397 
398 /* data structure for each usb transceiver */
399 struct mceusb_dev {
400 	/* ir-core bits */
401 	struct rc_dev *rc;
402 
403 	/* optional features we can enable */
404 	bool carrier_report_enabled;
405 	bool learning_enabled;
406 
407 	/* core device bits */
408 	struct device *dev;
409 
410 	/* usb */
411 	struct usb_device *usbdev;
412 	struct urb *urb_in;
413 	struct usb_endpoint_descriptor *usb_ep_in;
414 	struct usb_endpoint_descriptor *usb_ep_out;
415 
416 	/* buffers and dma */
417 	unsigned char *buf_in;
418 	unsigned int len_in;
419 	dma_addr_t dma_in;
420 	dma_addr_t dma_out;
421 
422 	enum {
423 		CMD_HEADER = 0,
424 		SUBCMD,
425 		CMD_DATA,
426 		PARSE_IRDATA,
427 	} parser_state;
428 
429 	u8 cmd, rem;		/* Remaining IR data bytes in packet */
430 
431 	struct {
432 		u32 connected:1;
433 		u32 tx_mask_normal:1;
434 		u32 microsoft_gen1:1;
435 		u32 no_tx:1;
436 	} flags;
437 
438 	/* transmit support */
439 	int send_flags;
440 	u32 carrier;
441 	unsigned char tx_mask;
442 
443 	char name[128];
444 	char phys[64];
445 	enum mceusb_model_type model;
446 
447 	bool need_reset;	/* flag to issue a device resume cmd */
448 	u8 emver;		/* emulator interface version */
449 	u8 num_txports;		/* number of transmit ports */
450 	u8 num_rxports;		/* number of receive sensors */
451 	u8 txports_cabled;	/* bitmask of transmitters with cable */
452 	u8 rxports_active;	/* bitmask of active receive sensors */
453 };
454 
455 /* MCE Device Command Strings, generally a port and command pair */
456 static char DEVICE_RESUME[]	= {MCE_CMD_NULL, MCE_CMD_PORT_SYS,
457 				   MCE_CMD_RESUME};
458 static char GET_REVISION[]	= {MCE_CMD_PORT_SYS, MCE_CMD_G_REVISION};
459 static char GET_EMVER[]		= {MCE_CMD_PORT_SYS, MCE_CMD_GETEMVER};
460 static char GET_WAKEVERSION[]	= {MCE_CMD_PORT_SYS, MCE_CMD_GETWAKEVERSION};
461 static char FLASH_LED[]		= {MCE_CMD_PORT_SYS, MCE_CMD_FLASHLED};
462 static char GET_UNKNOWN2[]	= {MCE_CMD_PORT_IR, MCE_CMD_UNKNOWN2};
463 static char GET_CARRIER_FREQ[]	= {MCE_CMD_PORT_IR, MCE_CMD_GETIRCFS};
464 static char GET_RX_TIMEOUT[]	= {MCE_CMD_PORT_IR, MCE_CMD_GETIRTIMEOUT};
465 static char GET_NUM_PORTS[]	= {MCE_CMD_PORT_IR, MCE_CMD_GETIRNUMPORTS};
466 static char GET_TX_BITMASK[]	= {MCE_CMD_PORT_IR, MCE_CMD_GETIRTXPORTS};
467 static char GET_RX_SENSOR[]	= {MCE_CMD_PORT_IR, MCE_CMD_GETIRRXPORTEN};
468 /* sub in desired values in lower byte or bytes for full command */
469 /* FIXME: make use of these for transmit.
470 static char SET_CARRIER_FREQ[]	= {MCE_CMD_PORT_IR,
471 				   MCE_CMD_SETIRCFS, 0x00, 0x00};
472 static char SET_TX_BITMASK[]	= {MCE_CMD_PORT_IR, MCE_CMD_SETIRTXPORTS, 0x00};
473 static char SET_RX_TIMEOUT[]	= {MCE_CMD_PORT_IR,
474 				   MCE_CMD_SETIRTIMEOUT, 0x00, 0x00};
475 static char SET_RX_SENSOR[]	= {MCE_CMD_PORT_IR,
476 				   MCE_RSP_EQIRRXPORTEN, 0x00};
477 */
478 
479 static int mceusb_cmdsize(u8 cmd, u8 subcmd)
480 {
481 	int datasize = 0;
482 
483 	switch (cmd) {
484 	case MCE_CMD_NULL:
485 		if (subcmd == MCE_CMD_PORT_SYS)
486 			datasize = 1;
487 		break;
488 	case MCE_CMD_PORT_SYS:
489 		switch (subcmd) {
490 		case MCE_RSP_EQWAKEVERSION:
491 			datasize = 4;
492 			break;
493 		case MCE_CMD_G_REVISION:
494 			datasize = 2;
495 			break;
496 		case MCE_RSP_EQWAKESUPPORT:
497 			datasize = 1;
498 			break;
499 		}
500 	case MCE_CMD_PORT_IR:
501 		switch (subcmd) {
502 		case MCE_CMD_UNKNOWN:
503 		case MCE_RSP_EQIRCFS:
504 		case MCE_RSP_EQIRTIMEOUT:
505 		case MCE_RSP_EQIRRXCFCNT:
506 			datasize = 2;
507 			break;
508 		case MCE_CMD_SIG_END:
509 		case MCE_RSP_EQIRTXPORTS:
510 		case MCE_RSP_EQIRRXPORTEN:
511 			datasize = 1;
512 			break;
513 		}
514 	}
515 	return datasize;
516 }
517 
518 static void mceusb_dev_printdata(struct mceusb_dev *ir, char *buf,
519 				 int offset, int len, bool out)
520 {
521 	char codes[USB_BUFLEN * 3 + 1];
522 	char inout[9];
523 	u8 cmd, subcmd, data1, data2, data3, data4, data5;
524 	struct device *dev = ir->dev;
525 	int i, start, skip = 0;
526 	u32 carrier, period;
527 
528 	if (!debug)
529 		return;
530 
531 	/* skip meaningless 0xb1 0x60 header bytes on orig receiver */
532 	if (ir->flags.microsoft_gen1 && !out && !offset)
533 		skip = 2;
534 
535 	if (len <= skip)
536 		return;
537 
538 	for (i = 0; i < len && i < USB_BUFLEN; i++)
539 		snprintf(codes + i * 3, 4, "%02x ", buf[i + offset] & 0xff);
540 
541 	dev_info(dev, "%sx data: %s(length=%d)\n",
542 		 (out ? "t" : "r"), codes, len);
543 
544 	if (out)
545 		strcpy(inout, "Request\0");
546 	else
547 		strcpy(inout, "Got\0");
548 
549 	start  = offset + skip;
550 	cmd    = buf[start] & 0xff;
551 	subcmd = buf[start + 1] & 0xff;
552 	data1  = buf[start + 2] & 0xff;
553 	data2  = buf[start + 3] & 0xff;
554 	data3  = buf[start + 4] & 0xff;
555 	data4  = buf[start + 5] & 0xff;
556 	data5  = buf[start + 6] & 0xff;
557 
558 	switch (cmd) {
559 	case MCE_CMD_NULL:
560 		if (subcmd == MCE_CMD_NULL)
561 			break;
562 		if ((subcmd == MCE_CMD_PORT_SYS) &&
563 		    (data1 == MCE_CMD_RESUME))
564 			dev_info(dev, "Device resume requested\n");
565 		else
566 			dev_info(dev, "Unknown command 0x%02x 0x%02x\n",
567 				 cmd, subcmd);
568 		break;
569 	case MCE_CMD_PORT_SYS:
570 		switch (subcmd) {
571 		case MCE_RSP_EQEMVER:
572 			if (!out)
573 				dev_info(dev, "Emulator interface version %x\n",
574 					 data1);
575 			break;
576 		case MCE_CMD_G_REVISION:
577 			if (len == 2)
578 				dev_info(dev, "Get hw/sw rev?\n");
579 			else
580 				dev_info(dev, "hw/sw rev 0x%02x 0x%02x "
581 					 "0x%02x 0x%02x\n", data1, data2,
582 					 buf[start + 4], buf[start + 5]);
583 			break;
584 		case MCE_CMD_RESUME:
585 			dev_info(dev, "Device resume requested\n");
586 			break;
587 		case MCE_RSP_CMD_ILLEGAL:
588 			dev_info(dev, "Illegal PORT_SYS command\n");
589 			break;
590 		case MCE_RSP_EQWAKEVERSION:
591 			if (!out)
592 				dev_info(dev, "Wake version, proto: 0x%02x, "
593 					 "payload: 0x%02x, address: 0x%02x, "
594 					 "version: 0x%02x\n",
595 					 data1, data2, data3, data4);
596 			break;
597 		case MCE_RSP_GETPORTSTATUS:
598 			if (!out)
599 				/* We use data1 + 1 here, to match hw labels */
600 				dev_info(dev, "TX port %d: blaster is%s connected\n",
601 					 data1 + 1, data4 ? " not" : "");
602 			break;
603 		case MCE_CMD_FLASHLED:
604 			dev_info(dev, "Attempting to flash LED\n");
605 			break;
606 		default:
607 			dev_info(dev, "Unknown command 0x%02x 0x%02x\n",
608 				 cmd, subcmd);
609 			break;
610 		}
611 		break;
612 	case MCE_CMD_PORT_IR:
613 		switch (subcmd) {
614 		case MCE_CMD_SIG_END:
615 			dev_info(dev, "End of signal\n");
616 			break;
617 		case MCE_CMD_PING:
618 			dev_info(dev, "Ping\n");
619 			break;
620 		case MCE_CMD_UNKNOWN:
621 			dev_info(dev, "Resp to 9f 05 of 0x%02x 0x%02x\n",
622 				 data1, data2);
623 			break;
624 		case MCE_RSP_EQIRCFS:
625 			period = DIV_ROUND_CLOSEST(
626 					(1 << data1 * 2) * (data2 + 1), 10);
627 			if (!period)
628 				break;
629 			carrier = (1000 * 1000) / period;
630 			dev_info(dev, "%s carrier of %u Hz (period %uus)\n",
631 				 inout, carrier, period);
632 			break;
633 		case MCE_CMD_GETIRCFS:
634 			dev_info(dev, "Get carrier mode and freq\n");
635 			break;
636 		case MCE_RSP_EQIRTXPORTS:
637 			dev_info(dev, "%s transmit blaster mask of 0x%02x\n",
638 				 inout, data1);
639 			break;
640 		case MCE_RSP_EQIRTIMEOUT:
641 			/* value is in units of 50us, so x*50/1000 ms */
642 			period = ((data1 << 8) | data2) * MCE_TIME_UNIT / 1000;
643 			dev_info(dev, "%s receive timeout of %d ms\n",
644 				 inout, period);
645 			break;
646 		case MCE_CMD_GETIRTIMEOUT:
647 			dev_info(dev, "Get receive timeout\n");
648 			break;
649 		case MCE_CMD_GETIRTXPORTS:
650 			dev_info(dev, "Get transmit blaster mask\n");
651 			break;
652 		case MCE_RSP_EQIRRXPORTEN:
653 			dev_info(dev, "%s %s-range receive sensor in use\n",
654 				 inout, data1 == 0x02 ? "short" : "long");
655 			break;
656 		case MCE_CMD_GETIRRXPORTEN:
657 		/* aka MCE_RSP_EQIRRXCFCNT */
658 			if (out)
659 				dev_info(dev, "Get receive sensor\n");
660 			else if (ir->learning_enabled)
661 				dev_info(dev, "RX pulse count: %d\n",
662 					 ((data1 << 8) | data2));
663 			break;
664 		case MCE_RSP_EQIRNUMPORTS:
665 			if (out)
666 				break;
667 			dev_info(dev, "Num TX ports: %x, num RX ports: %x\n",
668 				 data1, data2);
669 			break;
670 		case MCE_RSP_CMD_ILLEGAL:
671 			dev_info(dev, "Illegal PORT_IR command\n");
672 			break;
673 		default:
674 			dev_info(dev, "Unknown command 0x%02x 0x%02x\n",
675 				 cmd, subcmd);
676 			break;
677 		}
678 		break;
679 	default:
680 		break;
681 	}
682 
683 	if (cmd == MCE_IRDATA_TRAILER)
684 		dev_info(dev, "End of raw IR data\n");
685 	else if ((cmd != MCE_CMD_PORT_IR) &&
686 		 ((cmd & MCE_PORT_MASK) == MCE_COMMAND_IRDATA))
687 		dev_info(dev, "Raw IR data, %d pulse/space samples\n", ir->rem);
688 }
689 
690 static void mce_async_callback(struct urb *urb, struct pt_regs *regs)
691 {
692 	struct mceusb_dev *ir;
693 	int len;
694 
695 	if (!urb)
696 		return;
697 
698 	ir = urb->context;
699 	if (ir) {
700 		len = urb->actual_length;
701 
702 		mceusb_dev_printdata(ir, urb->transfer_buffer, 0, len, true);
703 	}
704 
705 	/* the transfer buffer and urb were allocated in mce_request_packet */
706 	kfree(urb->transfer_buffer);
707 	usb_free_urb(urb);
708 }
709 
710 /* request incoming or send outgoing usb packet - used to initialize remote */
711 static void mce_request_packet(struct mceusb_dev *ir, unsigned char *data,
712 			       int size, int urb_type)
713 {
714 	int res, pipe;
715 	struct urb *async_urb;
716 	struct device *dev = ir->dev;
717 	unsigned char *async_buf;
718 
719 	if (urb_type == MCEUSB_TX) {
720 		async_urb = usb_alloc_urb(0, GFP_KERNEL);
721 		if (unlikely(!async_urb)) {
722 			dev_err(dev, "Error, couldn't allocate urb!\n");
723 			return;
724 		}
725 
726 		async_buf = kzalloc(size, GFP_KERNEL);
727 		if (!async_buf) {
728 			dev_err(dev, "Error, couldn't allocate buf!\n");
729 			usb_free_urb(async_urb);
730 			return;
731 		}
732 
733 		/* outbound data */
734 		pipe = usb_sndintpipe(ir->usbdev,
735 				      ir->usb_ep_out->bEndpointAddress);
736 		usb_fill_int_urb(async_urb, ir->usbdev, pipe,
737 			async_buf, size, (usb_complete_t)mce_async_callback,
738 			ir, ir->usb_ep_out->bInterval);
739 		memcpy(async_buf, data, size);
740 
741 	} else if (urb_type == MCEUSB_RX) {
742 		/* standard request */
743 		async_urb = ir->urb_in;
744 		ir->send_flags = RECV_FLAG_IN_PROGRESS;
745 
746 	} else {
747 		dev_err(dev, "Error! Unknown urb type %d\n", urb_type);
748 		return;
749 	}
750 
751 	mce_dbg(dev, "receive request called (size=%#x)\n", size);
752 
753 	async_urb->transfer_buffer_length = size;
754 	async_urb->dev = ir->usbdev;
755 
756 	res = usb_submit_urb(async_urb, GFP_ATOMIC);
757 	if (res) {
758 		mce_dbg(dev, "receive request FAILED! (res=%d)\n", res);
759 		return;
760 	}
761 	mce_dbg(dev, "receive request complete (res=%d)\n", res);
762 }
763 
764 static void mce_async_out(struct mceusb_dev *ir, unsigned char *data, int size)
765 {
766 	int rsize = sizeof(DEVICE_RESUME);
767 
768 	if (ir->need_reset) {
769 		ir->need_reset = false;
770 		mce_request_packet(ir, DEVICE_RESUME, rsize, MCEUSB_TX);
771 		msleep(10);
772 	}
773 
774 	mce_request_packet(ir, data, size, MCEUSB_TX);
775 	msleep(10);
776 }
777 
778 static void mce_flush_rx_buffer(struct mceusb_dev *ir, int size)
779 {
780 	mce_request_packet(ir, NULL, size, MCEUSB_RX);
781 }
782 
783 /* Send data out the IR blaster port(s) */
784 static int mceusb_tx_ir(struct rc_dev *dev, unsigned *txbuf, unsigned count)
785 {
786 	struct mceusb_dev *ir = dev->priv;
787 	int i, ret = 0;
788 	int cmdcount = 0;
789 	unsigned char *cmdbuf; /* MCE command buffer */
790 	long signal_duration = 0; /* Singnal length in us */
791 	struct timeval start_time, end_time;
792 
793 	do_gettimeofday(&start_time);
794 
795 	cmdbuf = kzalloc(sizeof(unsigned) * MCE_CMDBUF_SIZE, GFP_KERNEL);
796 	if (!cmdbuf)
797 		return -ENOMEM;
798 
799 	/* MCE tx init header */
800 	cmdbuf[cmdcount++] = MCE_CMD_PORT_IR;
801 	cmdbuf[cmdcount++] = MCE_CMD_SETIRTXPORTS;
802 	cmdbuf[cmdcount++] = ir->tx_mask;
803 
804 	/* Generate mce packet data */
805 	for (i = 0; (i < count) && (cmdcount < MCE_CMDBUF_SIZE); i++) {
806 		signal_duration += txbuf[i];
807 		txbuf[i] = txbuf[i] / MCE_TIME_UNIT;
808 
809 		do { /* loop to support long pulses/spaces > 127*50us=6.35ms */
810 
811 			/* Insert mce packet header every 4th entry */
812 			if ((cmdcount < MCE_CMDBUF_SIZE) &&
813 			    (cmdcount - MCE_TX_HEADER_LENGTH) %
814 			     MCE_CODE_LENGTH == 0)
815 				cmdbuf[cmdcount++] = MCE_IRDATA_HEADER;
816 
817 			/* Insert mce packet data */
818 			if (cmdcount < MCE_CMDBUF_SIZE)
819 				cmdbuf[cmdcount++] =
820 					(txbuf[i] < MCE_PULSE_BIT ?
821 					 txbuf[i] : MCE_MAX_PULSE_LENGTH) |
822 					 (i & 1 ? 0x00 : MCE_PULSE_BIT);
823 			else {
824 				ret = -EINVAL;
825 				goto out;
826 			}
827 
828 		} while ((txbuf[i] > MCE_MAX_PULSE_LENGTH) &&
829 			 (txbuf[i] -= MCE_MAX_PULSE_LENGTH));
830 	}
831 
832 	/* Fix packet length in last header */
833 	cmdbuf[cmdcount - (cmdcount - MCE_TX_HEADER_LENGTH) % MCE_CODE_LENGTH] =
834 		MCE_COMMAND_IRDATA + (cmdcount - MCE_TX_HEADER_LENGTH) %
835 		MCE_CODE_LENGTH - 1;
836 
837 	/* Check if we have room for the empty packet at the end */
838 	if (cmdcount >= MCE_CMDBUF_SIZE) {
839 		ret = -EINVAL;
840 		goto out;
841 	}
842 
843 	/* All mce commands end with an empty packet (0x80) */
844 	cmdbuf[cmdcount++] = MCE_IRDATA_TRAILER;
845 
846 	/* Transmit the command to the mce device */
847 	mce_async_out(ir, cmdbuf, cmdcount);
848 
849 	/*
850 	 * The lircd gap calculation expects the write function to
851 	 * wait the time it takes for the ircommand to be sent before
852 	 * it returns.
853 	 */
854 	do_gettimeofday(&end_time);
855 	signal_duration -= (end_time.tv_usec - start_time.tv_usec) +
856 			   (end_time.tv_sec - start_time.tv_sec) * 1000000;
857 
858 	/* delay with the closest number of ticks */
859 	set_current_state(TASK_INTERRUPTIBLE);
860 	schedule_timeout(usecs_to_jiffies(signal_duration));
861 
862 out:
863 	kfree(cmdbuf);
864 	return ret ? ret : count;
865 }
866 
867 /* Sets active IR outputs -- mce devices typically have two */
868 static int mceusb_set_tx_mask(struct rc_dev *dev, u32 mask)
869 {
870 	struct mceusb_dev *ir = dev->priv;
871 
872 	if (ir->flags.tx_mask_normal)
873 		ir->tx_mask = mask;
874 	else
875 		ir->tx_mask = (mask != MCE_DEFAULT_TX_MASK ?
876 				mask ^ MCE_DEFAULT_TX_MASK : mask) << 1;
877 
878 	return 0;
879 }
880 
881 /* Sets the send carrier frequency and mode */
882 static int mceusb_set_tx_carrier(struct rc_dev *dev, u32 carrier)
883 {
884 	struct mceusb_dev *ir = dev->priv;
885 	int clk = 10000000;
886 	int prescaler = 0, divisor = 0;
887 	unsigned char cmdbuf[4] = { MCE_CMD_PORT_IR,
888 				    MCE_CMD_SETIRCFS, 0x00, 0x00 };
889 
890 	/* Carrier has changed */
891 	if (ir->carrier != carrier) {
892 
893 		if (carrier == 0) {
894 			ir->carrier = carrier;
895 			cmdbuf[2] = MCE_CMD_SIG_END;
896 			cmdbuf[3] = MCE_IRDATA_TRAILER;
897 			mce_dbg(ir->dev, "%s: disabling carrier "
898 				"modulation\n", __func__);
899 			mce_async_out(ir, cmdbuf, sizeof(cmdbuf));
900 			return carrier;
901 		}
902 
903 		for (prescaler = 0; prescaler < 4; ++prescaler) {
904 			divisor = (clk >> (2 * prescaler)) / carrier;
905 			if (divisor <= 0xff) {
906 				ir->carrier = carrier;
907 				cmdbuf[2] = prescaler;
908 				cmdbuf[3] = divisor;
909 				mce_dbg(ir->dev, "%s: requesting %u HZ "
910 					"carrier\n", __func__, carrier);
911 
912 				/* Transmit new carrier to mce device */
913 				mce_async_out(ir, cmdbuf, sizeof(cmdbuf));
914 				return carrier;
915 			}
916 		}
917 
918 		return -EINVAL;
919 
920 	}
921 
922 	return carrier;
923 }
924 
925 /*
926  * We don't do anything but print debug spew for many of the command bits
927  * we receive from the hardware, but some of them are useful information
928  * we want to store so that we can use them.
929  */
930 static void mceusb_handle_command(struct mceusb_dev *ir, int index)
931 {
932 	u8 hi = ir->buf_in[index + 1] & 0xff;
933 	u8 lo = ir->buf_in[index + 2] & 0xff;
934 
935 	switch (ir->buf_in[index]) {
936 	/* the one and only 5-byte return value command */
937 	case MCE_RSP_GETPORTSTATUS:
938 		if ((ir->buf_in[index + 4] & 0xff) == 0x00)
939 			ir->txports_cabled |= 1 << hi;
940 		break;
941 
942 	/* 2-byte return value commands */
943 	case MCE_RSP_EQIRTIMEOUT:
944 		ir->rc->timeout = US_TO_NS((hi << 8 | lo) * MCE_TIME_UNIT);
945 		break;
946 	case MCE_RSP_EQIRNUMPORTS:
947 		ir->num_txports = hi;
948 		ir->num_rxports = lo;
949 		break;
950 
951 	/* 1-byte return value commands */
952 	case MCE_RSP_EQEMVER:
953 		ir->emver = hi;
954 		break;
955 	case MCE_RSP_EQIRTXPORTS:
956 		ir->tx_mask = hi;
957 		break;
958 	case MCE_RSP_EQIRRXPORTEN:
959 		ir->learning_enabled = ((hi & 0x02) == 0x02);
960 		ir->rxports_active = hi;
961 		break;
962 	case MCE_RSP_CMD_ILLEGAL:
963 		ir->need_reset = true;
964 		break;
965 	default:
966 		break;
967 	}
968 }
969 
970 static void mceusb_process_ir_data(struct mceusb_dev *ir, int buf_len)
971 {
972 	DEFINE_IR_RAW_EVENT(rawir);
973 	int i = 0;
974 
975 	/* skip meaningless 0xb1 0x60 header bytes on orig receiver */
976 	if (ir->flags.microsoft_gen1)
977 		i = 2;
978 
979 	/* if there's no data, just return now */
980 	if (buf_len <= i)
981 		return;
982 
983 	for (; i < buf_len; i++) {
984 		switch (ir->parser_state) {
985 		case SUBCMD:
986 			ir->rem = mceusb_cmdsize(ir->cmd, ir->buf_in[i]);
987 			mceusb_dev_printdata(ir, ir->buf_in, i - 1,
988 					     ir->rem + 2, false);
989 			mceusb_handle_command(ir, i);
990 			ir->parser_state = CMD_DATA;
991 			break;
992 		case PARSE_IRDATA:
993 			ir->rem--;
994 			init_ir_raw_event(&rawir);
995 			rawir.pulse = ((ir->buf_in[i] & MCE_PULSE_BIT) != 0);
996 			rawir.duration = (ir->buf_in[i] & MCE_PULSE_MASK)
997 					 * US_TO_NS(MCE_TIME_UNIT);
998 
999 			mce_dbg(ir->dev, "Storing %s with duration %d\n",
1000 				rawir.pulse ? "pulse" : "space",
1001 				rawir.duration);
1002 
1003 			ir_raw_event_store_with_filter(ir->rc, &rawir);
1004 			break;
1005 		case CMD_DATA:
1006 			ir->rem--;
1007 			break;
1008 		case CMD_HEADER:
1009 			/* decode mce packets of the form (84),AA,BB,CC,DD */
1010 			/* IR data packets can span USB messages - rem */
1011 			ir->cmd = ir->buf_in[i];
1012 			if ((ir->cmd == MCE_CMD_PORT_IR) ||
1013 			    ((ir->cmd & MCE_PORT_MASK) !=
1014 			     MCE_COMMAND_IRDATA)) {
1015 				ir->parser_state = SUBCMD;
1016 				continue;
1017 			}
1018 			ir->rem = (ir->cmd & MCE_PACKET_LENGTH_MASK);
1019 			mceusb_dev_printdata(ir, ir->buf_in,
1020 					     i, ir->rem + 1, false);
1021 			if (ir->rem)
1022 				ir->parser_state = PARSE_IRDATA;
1023 			else
1024 				ir_raw_event_reset(ir->rc);
1025 			break;
1026 		}
1027 
1028 		if (ir->parser_state != CMD_HEADER && !ir->rem)
1029 			ir->parser_state = CMD_HEADER;
1030 	}
1031 	mce_dbg(ir->dev, "processed IR data, calling ir_raw_event_handle\n");
1032 	ir_raw_event_handle(ir->rc);
1033 }
1034 
1035 static void mceusb_dev_recv(struct urb *urb, struct pt_regs *regs)
1036 {
1037 	struct mceusb_dev *ir;
1038 	int buf_len;
1039 
1040 	if (!urb)
1041 		return;
1042 
1043 	ir = urb->context;
1044 	if (!ir) {
1045 		usb_unlink_urb(urb);
1046 		return;
1047 	}
1048 
1049 	buf_len = urb->actual_length;
1050 
1051 	if (ir->send_flags == RECV_FLAG_IN_PROGRESS) {
1052 		ir->send_flags = SEND_FLAG_COMPLETE;
1053 		mce_dbg(ir->dev, "setup answer received %d bytes\n",
1054 			buf_len);
1055 	}
1056 
1057 	switch (urb->status) {
1058 	/* success */
1059 	case 0:
1060 		mceusb_process_ir_data(ir, buf_len);
1061 		break;
1062 
1063 	case -ECONNRESET:
1064 	case -ENOENT:
1065 	case -ESHUTDOWN:
1066 		usb_unlink_urb(urb);
1067 		return;
1068 
1069 	case -EPIPE:
1070 	default:
1071 		mce_dbg(ir->dev, "Error: urb status = %d\n", urb->status);
1072 		break;
1073 	}
1074 
1075 	usb_submit_urb(urb, GFP_ATOMIC);
1076 }
1077 
1078 static void mceusb_get_emulator_version(struct mceusb_dev *ir)
1079 {
1080 	/* If we get no reply or an illegal command reply, its ver 1, says MS */
1081 	ir->emver = 1;
1082 	mce_async_out(ir, GET_EMVER, sizeof(GET_EMVER));
1083 }
1084 
1085 static void mceusb_gen1_init(struct mceusb_dev *ir)
1086 {
1087 	int ret;
1088 	struct device *dev = ir->dev;
1089 	char *data;
1090 
1091 	data = kzalloc(USB_CTRL_MSG_SZ, GFP_KERNEL);
1092 	if (!data) {
1093 		dev_err(dev, "%s: memory allocation failed!\n", __func__);
1094 		return;
1095 	}
1096 
1097 	/*
1098 	 * This is a strange one. Windows issues a set address to the device
1099 	 * on the receive control pipe and expect a certain value pair back
1100 	 */
1101 	ret = usb_control_msg(ir->usbdev, usb_rcvctrlpipe(ir->usbdev, 0),
1102 			      USB_REQ_SET_ADDRESS, USB_TYPE_VENDOR, 0, 0,
1103 			      data, USB_CTRL_MSG_SZ, HZ * 3);
1104 	mce_dbg(dev, "%s - ret = %d\n", __func__, ret);
1105 	mce_dbg(dev, "%s - data[0] = %d, data[1] = %d\n",
1106 		__func__, data[0], data[1]);
1107 
1108 	/* set feature: bit rate 38400 bps */
1109 	ret = usb_control_msg(ir->usbdev, usb_sndctrlpipe(ir->usbdev, 0),
1110 			      USB_REQ_SET_FEATURE, USB_TYPE_VENDOR,
1111 			      0xc04e, 0x0000, NULL, 0, HZ * 3);
1112 
1113 	mce_dbg(dev, "%s - ret = %d\n", __func__, ret);
1114 
1115 	/* bRequest 4: set char length to 8 bits */
1116 	ret = usb_control_msg(ir->usbdev, usb_sndctrlpipe(ir->usbdev, 0),
1117 			      4, USB_TYPE_VENDOR,
1118 			      0x0808, 0x0000, NULL, 0, HZ * 3);
1119 	mce_dbg(dev, "%s - retB = %d\n", __func__, ret);
1120 
1121 	/* bRequest 2: set handshaking to use DTR/DSR */
1122 	ret = usb_control_msg(ir->usbdev, usb_sndctrlpipe(ir->usbdev, 0),
1123 			      2, USB_TYPE_VENDOR,
1124 			      0x0000, 0x0100, NULL, 0, HZ * 3);
1125 	mce_dbg(dev, "%s - retC = %d\n", __func__, ret);
1126 
1127 	/* device resume */
1128 	mce_async_out(ir, DEVICE_RESUME, sizeof(DEVICE_RESUME));
1129 
1130 	/* get hw/sw revision? */
1131 	mce_async_out(ir, GET_REVISION, sizeof(GET_REVISION));
1132 
1133 	kfree(data);
1134 };
1135 
1136 static void mceusb_gen2_init(struct mceusb_dev *ir)
1137 {
1138 	/* device resume */
1139 	mce_async_out(ir, DEVICE_RESUME, sizeof(DEVICE_RESUME));
1140 
1141 	/* get hw/sw revision? */
1142 	mce_async_out(ir, GET_REVISION, sizeof(GET_REVISION));
1143 
1144 	/* get wake version (protocol, key, address) */
1145 	mce_async_out(ir, GET_WAKEVERSION, sizeof(GET_WAKEVERSION));
1146 
1147 	/* unknown what this one actually returns... */
1148 	mce_async_out(ir, GET_UNKNOWN2, sizeof(GET_UNKNOWN2));
1149 }
1150 
1151 static void mceusb_get_parameters(struct mceusb_dev *ir)
1152 {
1153 	int i;
1154 	unsigned char cmdbuf[3] = { MCE_CMD_PORT_SYS,
1155 				    MCE_CMD_GETPORTSTATUS, 0x00 };
1156 
1157 	/* defaults, if the hardware doesn't support querying */
1158 	ir->num_txports = 2;
1159 	ir->num_rxports = 2;
1160 
1161 	/* get number of tx and rx ports */
1162 	mce_async_out(ir, GET_NUM_PORTS, sizeof(GET_NUM_PORTS));
1163 
1164 	/* get the carrier and frequency */
1165 	mce_async_out(ir, GET_CARRIER_FREQ, sizeof(GET_CARRIER_FREQ));
1166 
1167 	if (ir->num_txports && !ir->flags.no_tx)
1168 		/* get the transmitter bitmask */
1169 		mce_async_out(ir, GET_TX_BITMASK, sizeof(GET_TX_BITMASK));
1170 
1171 	/* get receiver timeout value */
1172 	mce_async_out(ir, GET_RX_TIMEOUT, sizeof(GET_RX_TIMEOUT));
1173 
1174 	/* get receiver sensor setting */
1175 	mce_async_out(ir, GET_RX_SENSOR, sizeof(GET_RX_SENSOR));
1176 
1177 	for (i = 0; i < ir->num_txports; i++) {
1178 		cmdbuf[2] = i;
1179 		mce_async_out(ir, cmdbuf, sizeof(cmdbuf));
1180 	}
1181 }
1182 
1183 static void mceusb_flash_led(struct mceusb_dev *ir)
1184 {
1185 	if (ir->emver < 2)
1186 		return;
1187 
1188 	mce_async_out(ir, FLASH_LED, sizeof(FLASH_LED));
1189 }
1190 
1191 static struct rc_dev *mceusb_init_rc_dev(struct mceusb_dev *ir)
1192 {
1193 	struct device *dev = ir->dev;
1194 	struct rc_dev *rc;
1195 	int ret;
1196 
1197 	rc = rc_allocate_device();
1198 	if (!rc) {
1199 		dev_err(dev, "remote dev allocation failed\n");
1200 		goto out;
1201 	}
1202 
1203 	snprintf(ir->name, sizeof(ir->name), "%s (%04x:%04x)",
1204 		 mceusb_model[ir->model].name ?
1205 			mceusb_model[ir->model].name :
1206 			"Media Center Ed. eHome Infrared Remote Transceiver",
1207 		 le16_to_cpu(ir->usbdev->descriptor.idVendor),
1208 		 le16_to_cpu(ir->usbdev->descriptor.idProduct));
1209 
1210 	usb_make_path(ir->usbdev, ir->phys, sizeof(ir->phys));
1211 
1212 	rc->input_name = ir->name;
1213 	rc->input_phys = ir->phys;
1214 	usb_to_input_id(ir->usbdev, &rc->input_id);
1215 	rc->dev.parent = dev;
1216 	rc->priv = ir;
1217 	rc->driver_type = RC_DRIVER_IR_RAW;
1218 	rc->allowed_protos = RC_TYPE_ALL;
1219 	rc->timeout = MS_TO_NS(100);
1220 	if (!ir->flags.no_tx) {
1221 		rc->s_tx_mask = mceusb_set_tx_mask;
1222 		rc->s_tx_carrier = mceusb_set_tx_carrier;
1223 		rc->tx_ir = mceusb_tx_ir;
1224 	}
1225 	rc->driver_name = DRIVER_NAME;
1226 	rc->map_name = mceusb_model[ir->model].rc_map ?
1227 			mceusb_model[ir->model].rc_map : RC_MAP_RC6_MCE;
1228 
1229 	ret = rc_register_device(rc);
1230 	if (ret < 0) {
1231 		dev_err(dev, "remote dev registration failed\n");
1232 		goto out;
1233 	}
1234 
1235 	return rc;
1236 
1237 out:
1238 	rc_free_device(rc);
1239 	return NULL;
1240 }
1241 
1242 static int __devinit mceusb_dev_probe(struct usb_interface *intf,
1243 				      const struct usb_device_id *id)
1244 {
1245 	struct usb_device *dev = interface_to_usbdev(intf);
1246 	struct usb_host_interface *idesc;
1247 	struct usb_endpoint_descriptor *ep = NULL;
1248 	struct usb_endpoint_descriptor *ep_in = NULL;
1249 	struct usb_endpoint_descriptor *ep_out = NULL;
1250 	struct mceusb_dev *ir = NULL;
1251 	int pipe, maxp, i;
1252 	char buf[63], name[128] = "";
1253 	enum mceusb_model_type model = id->driver_info;
1254 	bool is_gen3;
1255 	bool is_microsoft_gen1;
1256 	bool tx_mask_normal;
1257 	int ir_intfnum;
1258 
1259 	mce_dbg(&intf->dev, "%s called\n", __func__);
1260 
1261 	idesc  = intf->cur_altsetting;
1262 
1263 	is_gen3 = mceusb_model[model].mce_gen3;
1264 	is_microsoft_gen1 = mceusb_model[model].mce_gen1;
1265 	tx_mask_normal = mceusb_model[model].tx_mask_normal;
1266 	ir_intfnum = mceusb_model[model].ir_intfnum;
1267 
1268 	/* There are multi-function devices with non-IR interfaces */
1269 	if (idesc->desc.bInterfaceNumber != ir_intfnum)
1270 		return -ENODEV;
1271 
1272 	/* step through the endpoints to find first bulk in and out endpoint */
1273 	for (i = 0; i < idesc->desc.bNumEndpoints; ++i) {
1274 		ep = &idesc->endpoint[i].desc;
1275 
1276 		if ((ep_in == NULL)
1277 			&& ((ep->bEndpointAddress & USB_ENDPOINT_DIR_MASK)
1278 			    == USB_DIR_IN)
1279 			&& (((ep->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK)
1280 			    == USB_ENDPOINT_XFER_BULK)
1281 			|| ((ep->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK)
1282 			    == USB_ENDPOINT_XFER_INT))) {
1283 
1284 			ep_in = ep;
1285 			ep_in->bmAttributes = USB_ENDPOINT_XFER_INT;
1286 			ep_in->bInterval = 1;
1287 			mce_dbg(&intf->dev, "acceptable inbound endpoint "
1288 				"found\n");
1289 		}
1290 
1291 		if ((ep_out == NULL)
1292 			&& ((ep->bEndpointAddress & USB_ENDPOINT_DIR_MASK)
1293 			    == USB_DIR_OUT)
1294 			&& (((ep->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK)
1295 			    == USB_ENDPOINT_XFER_BULK)
1296 			|| ((ep->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK)
1297 			    == USB_ENDPOINT_XFER_INT))) {
1298 
1299 			ep_out = ep;
1300 			ep_out->bmAttributes = USB_ENDPOINT_XFER_INT;
1301 			ep_out->bInterval = 1;
1302 			mce_dbg(&intf->dev, "acceptable outbound endpoint "
1303 				"found\n");
1304 		}
1305 	}
1306 	if (ep_in == NULL) {
1307 		mce_dbg(&intf->dev, "inbound and/or endpoint not found\n");
1308 		return -ENODEV;
1309 	}
1310 
1311 	pipe = usb_rcvintpipe(dev, ep_in->bEndpointAddress);
1312 	maxp = usb_maxpacket(dev, pipe, usb_pipeout(pipe));
1313 
1314 	ir = kzalloc(sizeof(struct mceusb_dev), GFP_KERNEL);
1315 	if (!ir)
1316 		goto mem_alloc_fail;
1317 
1318 	ir->buf_in = usb_alloc_coherent(dev, maxp, GFP_ATOMIC, &ir->dma_in);
1319 	if (!ir->buf_in)
1320 		goto buf_in_alloc_fail;
1321 
1322 	ir->urb_in = usb_alloc_urb(0, GFP_KERNEL);
1323 	if (!ir->urb_in)
1324 		goto urb_in_alloc_fail;
1325 
1326 	ir->usbdev = dev;
1327 	ir->dev = &intf->dev;
1328 	ir->len_in = maxp;
1329 	ir->flags.microsoft_gen1 = is_microsoft_gen1;
1330 	ir->flags.tx_mask_normal = tx_mask_normal;
1331 	ir->flags.no_tx = mceusb_model[model].no_tx;
1332 	ir->model = model;
1333 
1334 	/* Saving usb interface data for use by the transmitter routine */
1335 	ir->usb_ep_in = ep_in;
1336 	ir->usb_ep_out = ep_out;
1337 
1338 	if (dev->descriptor.iManufacturer
1339 	    && usb_string(dev, dev->descriptor.iManufacturer,
1340 			  buf, sizeof(buf)) > 0)
1341 		strlcpy(name, buf, sizeof(name));
1342 	if (dev->descriptor.iProduct
1343 	    && usb_string(dev, dev->descriptor.iProduct,
1344 			  buf, sizeof(buf)) > 0)
1345 		snprintf(name + strlen(name), sizeof(name) - strlen(name),
1346 			 " %s", buf);
1347 
1348 	ir->rc = mceusb_init_rc_dev(ir);
1349 	if (!ir->rc)
1350 		goto rc_dev_fail;
1351 
1352 	/* wire up inbound data handler */
1353 	usb_fill_int_urb(ir->urb_in, dev, pipe, ir->buf_in,
1354 		maxp, (usb_complete_t) mceusb_dev_recv, ir, ep_in->bInterval);
1355 	ir->urb_in->transfer_dma = ir->dma_in;
1356 	ir->urb_in->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
1357 
1358 	/* flush buffers on the device */
1359 	mce_dbg(&intf->dev, "Flushing receive buffers\n");
1360 	mce_flush_rx_buffer(ir, maxp);
1361 
1362 	/* figure out which firmware/emulator version this hardware has */
1363 	mceusb_get_emulator_version(ir);
1364 
1365 	/* initialize device */
1366 	if (ir->flags.microsoft_gen1)
1367 		mceusb_gen1_init(ir);
1368 	else if (!is_gen3)
1369 		mceusb_gen2_init(ir);
1370 
1371 	mceusb_get_parameters(ir);
1372 
1373 	mceusb_flash_led(ir);
1374 
1375 	if (!ir->flags.no_tx)
1376 		mceusb_set_tx_mask(ir->rc, MCE_DEFAULT_TX_MASK);
1377 
1378 	usb_set_intfdata(intf, ir);
1379 
1380 	/* enable wake via this device */
1381 	device_set_wakeup_capable(ir->dev, true);
1382 	device_set_wakeup_enable(ir->dev, true);
1383 
1384 	dev_info(&intf->dev, "Registered %s with mce emulator interface "
1385 		 "version %x\n", name, ir->emver);
1386 	dev_info(&intf->dev, "%x tx ports (0x%x cabled) and "
1387 		 "%x rx sensors (0x%x active)\n",
1388 		 ir->num_txports, ir->txports_cabled,
1389 		 ir->num_rxports, ir->rxports_active);
1390 
1391 	return 0;
1392 
1393 	/* Error-handling path */
1394 rc_dev_fail:
1395 	usb_free_urb(ir->urb_in);
1396 urb_in_alloc_fail:
1397 	usb_free_coherent(dev, maxp, ir->buf_in, ir->dma_in);
1398 buf_in_alloc_fail:
1399 	kfree(ir);
1400 mem_alloc_fail:
1401 	dev_err(&intf->dev, "%s: device setup failed!\n", __func__);
1402 
1403 	return -ENOMEM;
1404 }
1405 
1406 
1407 static void __devexit mceusb_dev_disconnect(struct usb_interface *intf)
1408 {
1409 	struct usb_device *dev = interface_to_usbdev(intf);
1410 	struct mceusb_dev *ir = usb_get_intfdata(intf);
1411 
1412 	usb_set_intfdata(intf, NULL);
1413 
1414 	if (!ir)
1415 		return;
1416 
1417 	ir->usbdev = NULL;
1418 	rc_unregister_device(ir->rc);
1419 	usb_kill_urb(ir->urb_in);
1420 	usb_free_urb(ir->urb_in);
1421 	usb_free_coherent(dev, ir->len_in, ir->buf_in, ir->dma_in);
1422 
1423 	kfree(ir);
1424 }
1425 
1426 static int mceusb_dev_suspend(struct usb_interface *intf, pm_message_t message)
1427 {
1428 	struct mceusb_dev *ir = usb_get_intfdata(intf);
1429 	dev_info(ir->dev, "suspend\n");
1430 	usb_kill_urb(ir->urb_in);
1431 	return 0;
1432 }
1433 
1434 static int mceusb_dev_resume(struct usb_interface *intf)
1435 {
1436 	struct mceusb_dev *ir = usb_get_intfdata(intf);
1437 	dev_info(ir->dev, "resume\n");
1438 	if (usb_submit_urb(ir->urb_in, GFP_ATOMIC))
1439 		return -EIO;
1440 	return 0;
1441 }
1442 
1443 static struct usb_driver mceusb_dev_driver = {
1444 	.name =		DRIVER_NAME,
1445 	.probe =	mceusb_dev_probe,
1446 	.disconnect =	mceusb_dev_disconnect,
1447 	.suspend =	mceusb_dev_suspend,
1448 	.resume =	mceusb_dev_resume,
1449 	.reset_resume =	mceusb_dev_resume,
1450 	.id_table =	mceusb_dev_table
1451 };
1452 
1453 module_usb_driver(mceusb_dev_driver);
1454 
1455 MODULE_DESCRIPTION(DRIVER_DESC);
1456 MODULE_AUTHOR(DRIVER_AUTHOR);
1457 MODULE_LICENSE("GPL");
1458 MODULE_DEVICE_TABLE(usb, mceusb_dev_table);
1459 
1460 module_param(debug, bool, S_IRUGO | S_IWUSR);
1461 MODULE_PARM_DESC(debug, "Debug enabled or not");
1462