mceusb.c 41.4 KB
Newer Older
1 2 3
/*
 * Driver for USB Windows Media Center Ed. eHome Infrared Transceivers
 *
4
 * Copyright (c) 2010-2011, Jarod Wilson <jarod@redhat.com>
5 6 7 8 9 10 11 12 13 14 15 16 17
 *
 * Based on the original lirc_mceusb and lirc_mceusb2 drivers, by Dan
 * Conti, Martin Blatter and Daniel Melander, the latter of which was
 * in turn also based on the lirc_atiusb driver by Paul Miller. The
 * two mce drivers were merged into one by Jarod Wilson, with transmit
 * support for the 1st-gen device added primarily by Patrick Calhoun,
 * with a bit of tweaks by Jarod. Debugging improvements and proper
 * support for what appears to be 3rd-gen hardware added by Jarod.
 * Initial port from lirc driver to ir-core drivery by Jarod, based
 * partially on a port to an earlier proposed IR infrastructure by
 * Jon Smirl, which included enhancements and simplifications to the
 * incoming IR buffer parsing routines.
 *
18 19 20 21 22
 * Updated in July of 2011 with the aid of Microsoft's official
 * remote/transceiver requirements and specification document, found at
 * download.microsoft.com, title
 * Windows-Media-Center-RC-IR-Collection-Green-Button-Specification-03-08-2011-V2.pdf
 *
23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2 of the License, or
 * (at your option) any later version.
 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
 *
 */

#include <linux/device.h>
#include <linux/module.h>
#include <linux/slab.h>
39 40
#include <linux/usb.h>
#include <linux/usb/input.h>
41
#include <linux/pm_wakeup.h>
42
#include <media/rc-core.h>
43

44 45
#define DRIVER_VERSION	"1.92"
#define DRIVER_AUTHOR	"Jarod Wilson <jarod@redhat.com>"
46 47 48 49
#define DRIVER_DESC	"Windows Media Center Ed. eHome Infrared Transceiver " \
			"device driver"
#define DRIVER_NAME	"mceusb"

50 51
#define USB_CTRL_MSG_SZ		2  /* Size of usb ctrl msg on gen1 hw */
#define MCE_G1_INIT_MSGS	40 /* Init messages on gen1 hw to throw out */
52 53

/* MCE constants */
54 55 56 57 58 59 60 61 62 63 64 65
#define MCE_CMDBUF_SIZE		384  /* MCE Command buffer length */
#define MCE_TIME_UNIT		50   /* Approx 50us resolution */
#define MCE_CODE_LENGTH		5    /* Normal length of packet (with header) */
#define MCE_PACKET_SIZE		4    /* Normal length of packet (without header) */
#define MCE_IRDATA_HEADER	0x84 /* Actual header format is 0x80 + num_bytes */
#define MCE_IRDATA_TRAILER	0x80 /* End of IR data */
#define MCE_MAX_CHANNELS	2    /* Two transmitters, hardware dependent? */
#define MCE_DEFAULT_TX_MASK	0x03 /* Vals: TX1=0x01, TX2=0x02, ALL=0x03 */
#define MCE_PULSE_BIT		0x80 /* Pulse bit, MSB set == PULSE else SPACE */
#define MCE_PULSE_MASK		0x7f /* Pulse mask */
#define MCE_MAX_PULSE_LENGTH	0x7f /* Longest transmittable pulse symbol */

66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81
/*
 * The interface between the host and the IR hardware is command-response
 * based. All commands and responses have a consistent format, where a lead
 * byte always identifies the type of data following it. The lead byte has
 * a port value in the 3 highest bits and a length value in the 5 lowest
 * bits.
 *
 * The length field is overloaded, with a value of 11111 indicating that the
 * following byte is a command or response code, and the length of the entire
 * message is determined by the code. If the length field is not 11111, then
 * it specifies the number of bytes of port data that follow.
 */
#define MCE_CMD			0x1f
#define MCE_PORT_IR		0x4	/* (0x4 << 5) | MCE_CMD = 0x9f */
#define MCE_PORT_SYS		0x7	/* (0x7 << 5) | MCE_CMD = 0xff */
#define MCE_PORT_SER		0x6	/* 0xc0 thru 0xdf flush & 0x1f bytes */
82
#define MCE_PORT_MASK		0xe0	/* Mask out command bits */
83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132

/* Command port headers */
#define MCE_CMD_PORT_IR		0x9f	/* IR-related cmd/rsp */
#define MCE_CMD_PORT_SYS	0xff	/* System (non-IR) device cmd/rsp */

/* Commands that set device state  (2-4 bytes in length) */
#define MCE_CMD_RESET		0xfe	/* Reset device, 2 bytes */
#define MCE_CMD_RESUME		0xaa	/* Resume device after error, 2 bytes */
#define MCE_CMD_SETIRCFS	0x06	/* Set tx carrier, 4 bytes */
#define MCE_CMD_SETIRTIMEOUT	0x0c	/* Set timeout, 4 bytes */
#define MCE_CMD_SETIRTXPORTS	0x08	/* Set tx ports, 3 bytes */
#define MCE_CMD_SETIRRXPORTEN	0x14	/* Set rx ports, 3 bytes */
#define MCE_CMD_FLASHLED	0x23	/* Flash receiver LED, 2 bytes */

/* Commands that query device state (all 2 bytes, unless noted) */
#define MCE_CMD_GETIRCFS	0x07	/* Get carrier */
#define MCE_CMD_GETIRTIMEOUT	0x0d	/* Get timeout */
#define MCE_CMD_GETIRTXPORTS	0x13	/* Get tx ports */
#define MCE_CMD_GETIRRXPORTEN	0x15	/* Get rx ports */
#define MCE_CMD_GETPORTSTATUS	0x11	/* Get tx port status, 3 bytes */
#define MCE_CMD_GETIRNUMPORTS	0x16	/* Get number of ports */
#define MCE_CMD_GETWAKESOURCE	0x17	/* Get wake source */
#define MCE_CMD_GETEMVER	0x22	/* Get emulator interface version */
#define MCE_CMD_GETDEVDETAILS	0x21	/* Get device details (em ver2 only) */
#define MCE_CMD_GETWAKESUPPORT	0x20	/* Get wake details (em ver2 only) */
#define MCE_CMD_GETWAKEVERSION	0x18	/* Get wake pattern (em ver2 only) */

/* Misc commands */
#define MCE_CMD_NOP		0xff	/* No operation */

/* Responses to commands (non-error cases) */
#define MCE_RSP_EQIRCFS		0x06	/* tx carrier, 4 bytes */
#define MCE_RSP_EQIRTIMEOUT	0x0c	/* rx timeout, 4 bytes */
#define MCE_RSP_GETWAKESOURCE	0x17	/* wake source, 3 bytes */
#define MCE_RSP_EQIRTXPORTS	0x08	/* tx port mask, 3 bytes */
#define MCE_RSP_EQIRRXPORTEN	0x14	/* rx port mask, 3 bytes */
#define MCE_RSP_GETPORTSTATUS	0x11	/* tx port status, 7 bytes */
#define MCE_RSP_EQIRRXCFCNT	0x15	/* rx carrier count, 4 bytes */
#define MCE_RSP_EQIRNUMPORTS	0x16	/* number of ports, 4 bytes */
#define MCE_RSP_EQWAKESUPPORT	0x20	/* wake capabilities, 3 bytes */
#define MCE_RSP_EQWAKEVERSION	0x18	/* wake pattern details, 6 bytes */
#define MCE_RSP_EQDEVDETAILS	0x21	/* device capabilities, 3 bytes */
#define MCE_RSP_EQEMVER		0x22	/* emulator interface ver, 3 bytes */
#define MCE_RSP_FLASHLED	0x23	/* success flashing LED, 2 bytes */

/* Responses to error cases, must send MCE_CMD_RESUME to clear them */
#define MCE_RSP_CMD_ILLEGAL	0xfe	/* illegal command for port, 2 bytes */
#define MCE_RSP_TX_TIMEOUT	0x81	/* tx timed out, 2 bytes */

/* Misc commands/responses not defined in the MCE remote/transceiver spec */
133
#define MCE_CMD_SIG_END		0x01	/* End of signal */
134 135 136 137 138 139 140 141 142 143
#define MCE_CMD_PING		0x03	/* Ping device */
#define MCE_CMD_UNKNOWN		0x04	/* Unknown */
#define MCE_CMD_UNKNOWN2	0x05	/* Unknown */
#define MCE_CMD_UNKNOWN3	0x09	/* Unknown */
#define MCE_CMD_UNKNOWN4	0x0a	/* Unknown */
#define MCE_CMD_G_REVISION	0x0b	/* Get hw/sw revision */
#define MCE_CMD_UNKNOWN5	0x0e	/* Unknown */
#define MCE_CMD_UNKNOWN6	0x0f	/* Unknown */
#define MCE_CMD_UNKNOWN8	0x19	/* Unknown */
#define MCE_CMD_UNKNOWN9	0x1b	/* Unknown */
144
#define MCE_CMD_NULL		0x00	/* These show up various places... */
145

146 147 148 149
/* if buf[i] & MCE_PORT_MASK == 0x80 and buf[i] != MCE_CMD_PORT_IR,
 * then we're looking at a raw IR data sample */
#define MCE_COMMAND_IRDATA	0x80
#define MCE_PACKET_LENGTH_MASK	0x1f /* Packet length mask */
150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172

#define VENDOR_PHILIPS		0x0471
#define VENDOR_SMK		0x0609
#define VENDOR_TATUNG		0x1460
#define VENDOR_GATEWAY		0x107b
#define VENDOR_SHUTTLE		0x1308
#define VENDOR_SHUTTLE2		0x051c
#define VENDOR_MITSUMI		0x03ee
#define VENDOR_TOPSEED		0x1784
#define VENDOR_RICAVISION	0x179d
#define VENDOR_ITRON		0x195d
#define VENDOR_FIC		0x1509
#define VENDOR_LG		0x043e
#define VENDOR_MICROSOFT	0x045e
#define VENDOR_FORMOSA		0x147a
#define VENDOR_FINTEK		0x1934
#define VENDOR_PINNACLE		0x2304
#define VENDOR_ECS		0x1019
#define VENDOR_WISTRON		0x0fb8
#define VENDOR_COMPRO		0x185b
#define VENDOR_NORTHSTAR	0x04eb
#define VENDOR_REALTEK		0x0bda
#define VENDOR_TIVO		0x105a
173
#define VENDOR_CONEXANT		0x0572
174
#define VENDOR_TWISTEDMELON	0x2596
175
#define VENDOR_HAUPPAUGE	0x2040
176
#define VENDOR_PCTV		0x2013
177
#define VENDOR_ADAPTEC		0x03f3
178

179 180 181 182 183 184
enum mceusb_model_type {
	MCE_GEN2 = 0,		/* Most boards */
	MCE_GEN1,
	MCE_GEN3,
	MCE_GEN2_TX_INV,
	POLARIS_EVK,
185
	CX_HYBRID_TV,
186
	MULTIFUNCTION,
187
	TIVO_KIT,
188
	MCE_GEN2_NO_TX,
189
	HAUPPAUGE_CX_HYBRID_TV,
190 191 192 193 194 195
};

struct mceusb_model {
	u32 mce_gen1:1;
	u32 mce_gen2:1;
	u32 mce_gen3:1;
196
	u32 tx_mask_normal:1;
197
	u32 no_tx:1;
198

199 200
	int ir_intfnum;

201
	const char *rc_map;	/* Allow specify a per-board map */
202
	const char *name;	/* per-board name */
203 204 205 206 207
};

static const struct mceusb_model mceusb_model[] = {
	[MCE_GEN1] = {
		.mce_gen1 = 1,
208
		.tx_mask_normal = 1,
209 210 211 212
	},
	[MCE_GEN2] = {
		.mce_gen2 = 1,
	},
213 214 215 216
	[MCE_GEN2_NO_TX] = {
		.mce_gen2 = 1,
		.no_tx = 1,
	},
217 218
	[MCE_GEN2_TX_INV] = {
		.mce_gen2 = 1,
219
		.tx_mask_normal = 1,
220 221 222
	},
	[MCE_GEN3] = {
		.mce_gen3 = 1,
223
		.tx_mask_normal = 1,
224 225
	},
	[POLARIS_EVK] = {
226 227 228 229 230
		/*
		 * In fact, the EVK is shipped without
		 * remotes, but we should have something handy,
		 * to allow testing it
		 */
231 232 233 234 235
		.name = "Conexant Hybrid TV (cx231xx) MCE IR",
	},
	[CX_HYBRID_TV] = {
		.no_tx = 1, /* tx isn't wired up at all */
		.name = "Conexant Hybrid TV (cx231xx) MCE IR",
236
	},
237 238 239 240
	[HAUPPAUGE_CX_HYBRID_TV] = {
		.no_tx = 1, /* eeprom says it has no tx */
		.name = "Conexant Hybrid TV (cx231xx) MCE IR no TX",
	},
241 242 243 244
	[MULTIFUNCTION] = {
		.mce_gen2 = 1,
		.ir_intfnum = 2,
	},
245 246 247 248
	[TIVO_KIT] = {
		.mce_gen2 = 1,
		.rc_map = RC_MAP_TIVO,
	},
249 250
};

251 252
static struct usb_device_id mceusb_dev_table[] = {
	/* Original Microsoft MCE IR Transceiver (often HP-branded) */
253 254
	{ USB_DEVICE(VENDOR_MICROSOFT, 0x006d),
	  .driver_info = MCE_GEN1 },
255 256 257
	/* Philips Infrared Transceiver - Sahara branded */
	{ USB_DEVICE(VENDOR_PHILIPS, 0x0608) },
	/* Philips Infrared Transceiver - HP branded */
258 259
	{ USB_DEVICE(VENDOR_PHILIPS, 0x060c),
	  .driver_info = MCE_GEN2_TX_INV },
260 261 262 263 264 265 266 267
	/* Philips SRM5100 */
	{ USB_DEVICE(VENDOR_PHILIPS, 0x060d) },
	/* Philips Infrared Transceiver - Omaura */
	{ USB_DEVICE(VENDOR_PHILIPS, 0x060f) },
	/* Philips Infrared Transceiver - Spinel plus */
	{ USB_DEVICE(VENDOR_PHILIPS, 0x0613) },
	/* Philips eHome Infrared Transceiver */
	{ USB_DEVICE(VENDOR_PHILIPS, 0x0815) },
268 269 270 271
	/* Philips/Spinel plus IR transceiver for ASUS */
	{ USB_DEVICE(VENDOR_PHILIPS, 0x206c) },
	/* Philips/Spinel plus IR transceiver for ASUS */
	{ USB_DEVICE(VENDOR_PHILIPS, 0x2088) },
272
	/* Philips IR transceiver (Dell branded) */
273 274
	{ USB_DEVICE(VENDOR_PHILIPS, 0x2093),
	  .driver_info = MCE_GEN2_TX_INV },
275 276 277
	/* Realtek MCE IR Receiver and card reader */
	{ USB_DEVICE(VENDOR_REALTEK, 0x0161),
	  .driver_info = MULTIFUNCTION },
278
	/* SMK/Toshiba G83C0004D410 */
279 280
	{ USB_DEVICE(VENDOR_SMK, 0x031d),
	  .driver_info = MCE_GEN2_TX_INV },
281
	/* SMK eHome Infrared Transceiver (Sony VAIO) */
282 283
	{ USB_DEVICE(VENDOR_SMK, 0x0322),
	  .driver_info = MCE_GEN2_TX_INV },
284
	/* bundled with Hauppauge PVR-150 */
285 286
	{ USB_DEVICE(VENDOR_SMK, 0x0334),
	  .driver_info = MCE_GEN2_TX_INV },
287 288
	/* SMK eHome Infrared Transceiver */
	{ USB_DEVICE(VENDOR_SMK, 0x0338) },
289 290 291
	/* SMK/I-O Data GV-MC7/RCKIT Receiver */
	{ USB_DEVICE(VENDOR_SMK, 0x0353),
	  .driver_info = MCE_GEN2_NO_TX },
292 293 294
	/* SMK RXX6000 Infrared Receiver */
	{ USB_DEVICE(VENDOR_SMK, 0x0357),
	  .driver_info = MCE_GEN2_NO_TX },
295 296 297 298 299 300 301 302 303 304 305
	/* Tatung eHome Infrared Transceiver */
	{ USB_DEVICE(VENDOR_TATUNG, 0x9150) },
	/* Shuttle eHome Infrared Transceiver */
	{ USB_DEVICE(VENDOR_SHUTTLE, 0xc001) },
	/* Shuttle eHome Infrared Transceiver */
	{ USB_DEVICE(VENDOR_SHUTTLE2, 0xc001) },
	/* Gateway eHome Infrared Transceiver */
	{ USB_DEVICE(VENDOR_GATEWAY, 0x3009) },
	/* Mitsumi */
	{ USB_DEVICE(VENDOR_MITSUMI, 0x2501) },
	/* Topseed eHome Infrared Transceiver */
306 307
	{ USB_DEVICE(VENDOR_TOPSEED, 0x0001),
	  .driver_info = MCE_GEN2_TX_INV },
308
	/* Topseed HP eHome Infrared Transceiver */
309 310
	{ USB_DEVICE(VENDOR_TOPSEED, 0x0006),
	  .driver_info = MCE_GEN2_TX_INV },
311
	/* Topseed eHome Infrared Transceiver */
312 313
	{ USB_DEVICE(VENDOR_TOPSEED, 0x0007),
	  .driver_info = MCE_GEN2_TX_INV },
314
	/* Topseed eHome Infrared Transceiver */
315 316
	{ USB_DEVICE(VENDOR_TOPSEED, 0x0008),
	  .driver_info = MCE_GEN3 },
317
	/* Topseed eHome Infrared Transceiver */
318 319
	{ USB_DEVICE(VENDOR_TOPSEED, 0x000a),
	  .driver_info = MCE_GEN2_TX_INV },
320
	/* Topseed eHome Infrared Transceiver */
321
	{ USB_DEVICE(VENDOR_TOPSEED, 0x0011),
322
	  .driver_info = MCE_GEN3 },
323 324 325 326 327 328 329 330 331 332 333 334 335 336 337
	/* Ricavision internal Infrared Transceiver */
	{ USB_DEVICE(VENDOR_RICAVISION, 0x0010) },
	/* Itron ione Libra Q-11 */
	{ USB_DEVICE(VENDOR_ITRON, 0x7002) },
	/* FIC eHome Infrared Transceiver */
	{ USB_DEVICE(VENDOR_FIC, 0x9242) },
	/* LG eHome Infrared Transceiver */
	{ USB_DEVICE(VENDOR_LG, 0x9803) },
	/* Microsoft MCE Infrared Transceiver */
	{ USB_DEVICE(VENDOR_MICROSOFT, 0x00a0) },
	/* Formosa eHome Infrared Transceiver */
	{ USB_DEVICE(VENDOR_FORMOSA, 0xe015) },
	/* Formosa21 / eHome Infrared Receiver */
	{ USB_DEVICE(VENDOR_FORMOSA, 0xe016) },
	/* Formosa aim / Trust MCE Infrared Receiver */
338 339
	{ USB_DEVICE(VENDOR_FORMOSA, 0xe017),
	  .driver_info = MCE_GEN2_NO_TX },
340 341 342 343 344 345 346 347
	/* Formosa Industrial Computing / Beanbag Emulation Device */
	{ USB_DEVICE(VENDOR_FORMOSA, 0xe018) },
	/* Formosa21 / eHome Infrared Receiver */
	{ USB_DEVICE(VENDOR_FORMOSA, 0xe03a) },
	/* Formosa Industrial Computing AIM IR605/A */
	{ USB_DEVICE(VENDOR_FORMOSA, 0xe03c) },
	/* Formosa Industrial Computing */
	{ USB_DEVICE(VENDOR_FORMOSA, 0xe03e) },
348 349
	/* Formosa Industrial Computing */
	{ USB_DEVICE(VENDOR_FORMOSA, 0xe042) },
350
	/* Fintek eHome Infrared Transceiver (HP branded) */
351 352
	{ USB_DEVICE(VENDOR_FINTEK, 0x5168),
	  .driver_info = MCE_GEN2_TX_INV },
353 354 355 356 357
	/* Fintek eHome Infrared Transceiver */
	{ USB_DEVICE(VENDOR_FINTEK, 0x0602) },
	/* Fintek eHome Infrared Transceiver (in the AOpen MP45) */
	{ USB_DEVICE(VENDOR_FINTEK, 0x0702) },
	/* Pinnacle Remote Kit */
358 359
	{ USB_DEVICE(VENDOR_PINNACLE, 0x0225),
	  .driver_info = MCE_GEN3 },
360 361 362 363 364 365 366 367 368 369 370
	/* Elitegroup Computer Systems IR */
	{ USB_DEVICE(VENDOR_ECS, 0x0f38) },
	/* Wistron Corp. eHome Infrared Receiver */
	{ USB_DEVICE(VENDOR_WISTRON, 0x0002) },
	/* Compro K100 */
	{ USB_DEVICE(VENDOR_COMPRO, 0x3020) },
	/* Compro K100 v2 */
	{ USB_DEVICE(VENDOR_COMPRO, 0x3082) },
	/* Northstar Systems, Inc. eHome Infrared Transceiver */
	{ USB_DEVICE(VENDOR_NORTHSTAR, 0xe004) },
	/* TiVo PC IR Receiver */
371 372
	{ USB_DEVICE(VENDOR_TIVO, 0x2000),
	  .driver_info = TIVO_KIT },
373
	/* Conexant Hybrid TV "Shelby" Polaris SDK */
374 375
	{ USB_DEVICE(VENDOR_CONEXANT, 0x58a1),
	  .driver_info = POLARIS_EVK },
376 377 378
	/* Conexant Hybrid TV RDU253S Polaris */
	{ USB_DEVICE(VENDOR_CONEXANT, 0x58a5),
	  .driver_info = CX_HYBRID_TV },
379 380 381 382 383 384
	/* Twisted Melon Inc. - Manta Mini Receiver */
	{ USB_DEVICE(VENDOR_TWISTEDMELON, 0x8008) },
	/* Twisted Melon Inc. - Manta Pico Receiver */
	{ USB_DEVICE(VENDOR_TWISTEDMELON, 0x8016) },
	/* Twisted Melon Inc. - Manta Transceiver */
	{ USB_DEVICE(VENDOR_TWISTEDMELON, 0x8042) },
385 386 387
	/* Hauppauge WINTV-HVR-HVR 930C-HD - based on cx231xx */
	{ USB_DEVICE(VENDOR_HAUPPAUGE, 0xb130),
	  .driver_info = HAUPPAUGE_CX_HYBRID_TV },
388 389
	{ USB_DEVICE(VENDOR_HAUPPAUGE, 0xb131),
	  .driver_info = HAUPPAUGE_CX_HYBRID_TV },
390 391 392 393
	{ USB_DEVICE(VENDOR_HAUPPAUGE, 0xb138),
	  .driver_info = HAUPPAUGE_CX_HYBRID_TV },
	{ USB_DEVICE(VENDOR_HAUPPAUGE, 0xb139),
	  .driver_info = HAUPPAUGE_CX_HYBRID_TV },
394 395 396 397
	{ USB_DEVICE(VENDOR_PCTV, 0x0259),
	  .driver_info = HAUPPAUGE_CX_HYBRID_TV },
	{ USB_DEVICE(VENDOR_PCTV, 0x025e),
	  .driver_info = HAUPPAUGE_CX_HYBRID_TV },
398 399
	/* Adaptec / HP eHome Receiver */
	{ USB_DEVICE(VENDOR_ADAPTEC, 0x0094) },
400

401 402 403 404 405 406 407
	/* Terminating entry */
	{ }
};

/* data structure for each usb transceiver */
struct mceusb_dev {
	/* ir-core bits */
408
	struct rc_dev *rc;
409 410 411

	/* optional features we can enable */
	bool learning_enabled;
412 413 414 415 416 417 418 419 420 421 422 423

	/* core device bits */
	struct device *dev;

	/* usb */
	struct usb_device *usbdev;
	struct urb *urb_in;
	struct usb_endpoint_descriptor *usb_ep_out;

	/* buffers and dma */
	unsigned char *buf_in;
	unsigned int len_in;
424
	dma_addr_t dma_in;
425 426 427 428 429 430 431 432

	enum {
		CMD_HEADER = 0,
		SUBCMD,
		CMD_DATA,
		PARSE_IRDATA,
	} parser_state;

433
	u8 cmd, rem;		/* Remaining IR data bytes in packet */
434 435 436

	struct {
		u32 connected:1;
437
		u32 tx_mask_normal:1;
438
		u32 microsoft_gen1:1;
439
		u32 no_tx:1;
440 441
	} flags;

442 443 444
	/* transmit support */
	u32 carrier;
	unsigned char tx_mask;
445 446 447

	char name[128];
	char phys[64];
448
	enum mceusb_model_type model;
449 450

	bool need_reset;	/* flag to issue a device resume cmd */
451
	u8 emver;		/* emulator interface version */
452 453 454 455
	u8 num_txports;		/* number of transmit ports */
	u8 num_rxports;		/* number of receive sensors */
	u8 txports_cabled;	/* bitmask of transmitters with cable */
	u8 rxports_active;	/* bitmask of active receive sensors */
456 457
};

458 459 460 461
/* MCE Device Command Strings, generally a port and command pair */
static char DEVICE_RESUME[]	= {MCE_CMD_NULL, MCE_CMD_PORT_SYS,
				   MCE_CMD_RESUME};
static char GET_REVISION[]	= {MCE_CMD_PORT_SYS, MCE_CMD_G_REVISION};
462
static char GET_EMVER[]		= {MCE_CMD_PORT_SYS, MCE_CMD_GETEMVER};
463
static char GET_WAKEVERSION[]	= {MCE_CMD_PORT_SYS, MCE_CMD_GETWAKEVERSION};
464
static char FLASH_LED[]		= {MCE_CMD_PORT_SYS, MCE_CMD_FLASHLED};
465 466 467
static char GET_UNKNOWN2[]	= {MCE_CMD_PORT_IR, MCE_CMD_UNKNOWN2};
static char GET_CARRIER_FREQ[]	= {MCE_CMD_PORT_IR, MCE_CMD_GETIRCFS};
static char GET_RX_TIMEOUT[]	= {MCE_CMD_PORT_IR, MCE_CMD_GETIRTIMEOUT};
468
static char GET_NUM_PORTS[]	= {MCE_CMD_PORT_IR, MCE_CMD_GETIRNUMPORTS};
469 470
static char GET_TX_BITMASK[]	= {MCE_CMD_PORT_IR, MCE_CMD_GETIRTXPORTS};
static char GET_RX_SENSOR[]	= {MCE_CMD_PORT_IR, MCE_CMD_GETIRRXPORTEN};
471 472
/* sub in desired values in lower byte or bytes for full command */
/* FIXME: make use of these for transmit.
473 474 475 476 477 478 479
static char SET_CARRIER_FREQ[]	= {MCE_CMD_PORT_IR,
				   MCE_CMD_SETIRCFS, 0x00, 0x00};
static char SET_TX_BITMASK[]	= {MCE_CMD_PORT_IR, MCE_CMD_SETIRTXPORTS, 0x00};
static char SET_RX_TIMEOUT[]	= {MCE_CMD_PORT_IR,
				   MCE_CMD_SETIRTIMEOUT, 0x00, 0x00};
static char SET_RX_SENSOR[]	= {MCE_CMD_PORT_IR,
				   MCE_RSP_EQIRRXPORTEN, 0x00};
480 481
*/

482
static int mceusb_cmd_datasize(u8 cmd, u8 subcmd)
483 484 485 486
{
	int datasize = 0;

	switch (cmd) {
487 488
	case MCE_CMD_NULL:
		if (subcmd == MCE_CMD_PORT_SYS)
489 490
			datasize = 1;
		break;
491
	case MCE_CMD_PORT_SYS:
492
		switch (subcmd) {
493 494 495
		case MCE_RSP_GETPORTSTATUS:
			datasize = 5;
			break;
496 497 498
		case MCE_RSP_EQWAKEVERSION:
			datasize = 4;
			break;
499
		case MCE_CMD_G_REVISION:
500 501
			datasize = 2;
			break;
502
		case MCE_RSP_EQWAKESUPPORT:
503 504 505
		case MCE_RSP_GETWAKESOURCE:
		case MCE_RSP_EQDEVDETAILS:
		case MCE_RSP_EQEMVER:
506 507
			datasize = 1;
			break;
508
		}
509
	case MCE_CMD_PORT_IR:
510
		switch (subcmd) {
511
		case MCE_CMD_UNKNOWN:
512 513 514
		case MCE_RSP_EQIRCFS:
		case MCE_RSP_EQIRTIMEOUT:
		case MCE_RSP_EQIRRXCFCNT:
515
		case MCE_RSP_EQIRNUMPORTS:
516 517
			datasize = 2;
			break;
518
		case MCE_CMD_SIG_END:
519 520
		case MCE_RSP_EQIRTXPORTS:
		case MCE_RSP_EQIRRXPORTEN:
521 522 523 524 525 526 527
			datasize = 1;
			break;
		}
	}
	return datasize;
}

528
static void mceusb_dev_printdata(struct mceusb_dev *ir, char *buf,
529
				 int buf_len, int offset, int len, bool out)
530
{
531 532
#if defined(DEBUG) || defined(CONFIG_DYNAMIC_DEBUG)
	char *inout;
533
	u8 cmd, subcmd, data1, data2, data3, data4;
534
	struct device *dev = ir->dev;
535
	int start, skip = 0;
536
	u32 carrier, period;
537

538
	/* skip meaningless 0xb1 0x60 header bytes on orig receiver */
539
	if (ir->flags.microsoft_gen1 && !out && !offset)
540
		skip = 2;
541

542
	if (len <= skip)
543 544
		return;

545
	dev_dbg(dev, "%cx data: %*ph (length=%d)",
546 547
		(out ? 't' : 'r'),
		min(len, buf_len - offset), buf + offset, len);
548

549
	inout = out ? "Request" : "Got";
550

551 552 553 554 555
	start  = offset + skip;
	cmd    = buf[start] & 0xff;
	subcmd = buf[start + 1] & 0xff;
	data1  = buf[start + 2] & 0xff;
	data2  = buf[start + 3] & 0xff;
556 557
	data3  = buf[start + 4] & 0xff;
	data4  = buf[start + 5] & 0xff;
558 559

	switch (cmd) {
560
	case MCE_CMD_NULL:
561 562
		if (subcmd == MCE_CMD_NULL)
			break;
563 564
		if ((subcmd == MCE_CMD_PORT_SYS) &&
		    (data1 == MCE_CMD_RESUME))
565
			dev_dbg(dev, "Device resume requested");
566
		else
567
			dev_dbg(dev, "Unknown command 0x%02x 0x%02x",
568 569
				 cmd, subcmd);
		break;
570
	case MCE_CMD_PORT_SYS:
571
		switch (subcmd) {
572 573
		case MCE_RSP_EQEMVER:
			if (!out)
574
				dev_dbg(dev, "Emulator interface version %x",
575 576
					 data1);
			break;
577
		case MCE_CMD_G_REVISION:
578
			if (len == 2)
579
				dev_dbg(dev, "Get hw/sw rev?");
580
			else
581 582
				dev_dbg(dev, "hw/sw rev %*ph",
					4, &buf[start + 2]);
583
			break;
584
		case MCE_CMD_RESUME:
585
			dev_dbg(dev, "Device resume requested");
586 587
			break;
		case MCE_RSP_CMD_ILLEGAL:
588
			dev_dbg(dev, "Illegal PORT_SYS command");
589 590 591
			break;
		case MCE_RSP_EQWAKEVERSION:
			if (!out)
592
				dev_dbg(dev, "Wake version, proto: 0x%02x, payload: 0x%02x, address: 0x%02x, version: 0x%02x",
593
					 data1, data2, data3, data4);
594
			break;
595 596 597
		case MCE_RSP_GETPORTSTATUS:
			if (!out)
				/* We use data1 + 1 here, to match hw labels */
598
				dev_dbg(dev, "TX port %d: blaster is%s connected",
599
					 data1 + 1, data4 ? " not" : "");
600
			break;
601
		case MCE_CMD_FLASHLED:
602
			dev_dbg(dev, "Attempting to flash LED");
603
			break;
604
		default:
605
			dev_dbg(dev, "Unknown command 0x%02x 0x%02x",
606 607 608 609
				 cmd, subcmd);
			break;
		}
		break;
610
	case MCE_CMD_PORT_IR:
611
		switch (subcmd) {
612
		case MCE_CMD_SIG_END:
613
			dev_dbg(dev, "End of signal");
614
			break;
615
		case MCE_CMD_PING:
616
			dev_dbg(dev, "Ping");
617
			break;
618
		case MCE_CMD_UNKNOWN:
619
			dev_dbg(dev, "Resp to 9f 05 of 0x%02x 0x%02x",
620 621
				 data1, data2);
			break;
622 623
		case MCE_RSP_EQIRCFS:
			period = DIV_ROUND_CLOSEST(
624
					(1U << data1 * 2) * (data2 + 1), 10);
625 626 627
			if (!period)
				break;
			carrier = (1000 * 1000) / period;
628
			dev_dbg(dev, "%s carrier of %u Hz (period %uus)",
629
				 inout, carrier, period);
630
			break;
631
		case MCE_CMD_GETIRCFS:
632
			dev_dbg(dev, "Get carrier mode and freq");
633
			break;
634
		case MCE_RSP_EQIRTXPORTS:
635
			dev_dbg(dev, "%s transmit blaster mask of 0x%02x",
636 637
				 inout, data1);
			break;
638
		case MCE_RSP_EQIRTIMEOUT:
639
			/* value is in units of 50us, so x*50/1000 ms */
640
			period = ((data1 << 8) | data2) * MCE_TIME_UNIT / 1000;
641
			dev_dbg(dev, "%s receive timeout of %d ms",
642
				 inout, period);
643
			break;
644
		case MCE_CMD_GETIRTIMEOUT:
645
			dev_dbg(dev, "Get receive timeout");
646
			break;
647
		case MCE_CMD_GETIRTXPORTS:
648
			dev_dbg(dev, "Get transmit blaster mask");
649
			break;
650
		case MCE_RSP_EQIRRXPORTEN:
651
			dev_dbg(dev, "%s %s-range receive sensor in use",
652 653
				 inout, data1 == 0x02 ? "short" : "long");
			break;
654 655
		case MCE_CMD_GETIRRXPORTEN:
		/* aka MCE_RSP_EQIRRXCFCNT */
656
			if (out)
657
				dev_dbg(dev, "Get receive sensor");
658
			else if (ir->learning_enabled)
659
				dev_dbg(dev, "RX pulse count: %d",
660 661
					 ((data1 << 8) | data2));
			break;
662 663 664
		case MCE_RSP_EQIRNUMPORTS:
			if (out)
				break;
665
			dev_dbg(dev, "Num TX ports: %x, num RX ports: %x",
666 667 668
				 data1, data2);
			break;
		case MCE_RSP_CMD_ILLEGAL:
669
			dev_dbg(dev, "Illegal PORT_IR command");
670 671
			break;
		default:
672
			dev_dbg(dev, "Unknown command 0x%02x 0x%02x",
673 674 675 676 677 678 679
				 cmd, subcmd);
			break;
		}
		break;
	default:
		break;
	}
680 681

	if (cmd == MCE_IRDATA_TRAILER)
682
		dev_dbg(dev, "End of raw IR data");
683 684
	else if ((cmd != MCE_CMD_PORT_IR) &&
		 ((cmd & MCE_PORT_MASK) == MCE_COMMAND_IRDATA))
685 686
		dev_dbg(dev, "Raw IR data, %d pulse/space samples", ir->rem);
#endif
687 688
}

S
Sean Young 已提交
689
static void mce_async_callback(struct urb *urb)
690 691 692 693 694 695 696 697
{
	struct mceusb_dev *ir;
	int len;

	if (!urb)
		return;

	ir = urb->context;
698 699 700 701

	switch (urb->status) {
	/* success */
	case 0:
702 703
		len = urb->actual_length;

704 705
		mceusb_dev_printdata(ir, urb->transfer_buffer, len,
				     0, len, true);
706 707 708 709 710 711 712 713 714 715 716 717
		break;

	case -ECONNRESET:
	case -ENOENT:
	case -EILSEQ:
	case -ESHUTDOWN:
		break;

	case -EPIPE:
	default:
		dev_err(ir->dev, "Error: request urb status = %d", urb->status);
		break;
718 719
	}

720 721 722
	/* the transfer buffer and urb were allocated in mce_request_packet */
	kfree(urb->transfer_buffer);
	usb_free_urb(urb);
723 724
}

725
/* request outgoing (send) usb packet - used to initialize remote */
726
static void mce_request_packet(struct mceusb_dev *ir, unsigned char *data,
727
								int size)
728
{
729
	int res, pipe;
730 731 732 733
	struct urb *async_urb;
	struct device *dev = ir->dev;
	unsigned char *async_buf;

734 735
	async_urb = usb_alloc_urb(0, GFP_KERNEL);
	if (unlikely(!async_urb)) {
736
		dev_err(dev, "Error, couldn't allocate urb!");
737 738
		return;
	}
739

740 741 742 743 744
	async_buf = kmalloc(size, GFP_KERNEL);
	if (!async_buf) {
		usb_free_urb(async_urb);
		return;
	}
745

746 747 748 749 750 751 752
	/* outbound data */
	if (usb_endpoint_xfer_int(ir->usb_ep_out)) {
		pipe = usb_sndintpipe(ir->usbdev,
				 ir->usb_ep_out->bEndpointAddress);
		usb_fill_int_urb(async_urb, ir->usbdev, pipe, async_buf,
				 size, mce_async_callback, ir,
				 ir->usb_ep_out->bInterval);
753
	} else {
754 755 756 757 758
		pipe = usb_sndbulkpipe(ir->usbdev,
				 ir->usb_ep_out->bEndpointAddress);
		usb_fill_bulk_urb(async_urb, ir->usbdev, pipe,
				 async_buf, size, mce_async_callback,
				 ir);
759
	}
760
	memcpy(async_buf, data, size);
761

762
	dev_dbg(dev, "send request called (size=%#x)", size);
763 764 765 766 767 768

	async_urb->transfer_buffer_length = size;
	async_urb->dev = ir->usbdev;

	res = usb_submit_urb(async_urb, GFP_ATOMIC);
	if (res) {
769
		dev_err(dev, "send request FAILED! (res=%d)", res);
770 771
		return;
	}
772
	dev_dbg(dev, "send request complete (res=%d)", res);
773 774 775 776
}

static void mce_async_out(struct mceusb_dev *ir, unsigned char *data, int size)
{
777 778 779 780
	int rsize = sizeof(DEVICE_RESUME);

	if (ir->need_reset) {
		ir->need_reset = false;
781
		mce_request_packet(ir, DEVICE_RESUME, rsize);
782 783 784
		msleep(10);
	}

785
	mce_request_packet(ir, data, size);
786
	msleep(10);
787 788
}

789
/* Send data out the IR blaster port(s) */
790
static int mceusb_tx_ir(struct rc_dev *dev, unsigned *txbuf, unsigned count)
791
{
792
	struct mceusb_dev *ir = dev->priv;
793
	int i, length, ret = 0;
794
	int cmdcount = 0;
795
	unsigned char cmdbuf[MCE_CMDBUF_SIZE];
796 797

	/* MCE tx init header */
798 799
	cmdbuf[cmdcount++] = MCE_CMD_PORT_IR;
	cmdbuf[cmdcount++] = MCE_CMD_SETIRTXPORTS;
800 801
	cmdbuf[cmdcount++] = ir->tx_mask;

802 803 804 805
	/* Send the set TX ports command */
	mce_async_out(ir, cmdbuf, cmdcount);
	cmdcount = 0;

806 807 808 809 810 811 812 813
	/* Generate mce packet data */
	for (i = 0; (i < count) && (cmdcount < MCE_CMDBUF_SIZE); i++) {
		txbuf[i] = txbuf[i] / MCE_TIME_UNIT;

		do { /* loop to support long pulses/spaces > 127*50us=6.35ms */

			/* Insert mce packet header every 4th entry */
			if ((cmdcount < MCE_CMDBUF_SIZE) &&
814
			    (cmdcount % MCE_CODE_LENGTH) == 0)
815
				cmdbuf[cmdcount++] = MCE_IRDATA_HEADER;
816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837

			/* Insert mce packet data */
			if (cmdcount < MCE_CMDBUF_SIZE)
				cmdbuf[cmdcount++] =
					(txbuf[i] < MCE_PULSE_BIT ?
					 txbuf[i] : MCE_MAX_PULSE_LENGTH) |
					 (i & 1 ? 0x00 : MCE_PULSE_BIT);
			else {
				ret = -EINVAL;
				goto out;
			}

		} while ((txbuf[i] > MCE_MAX_PULSE_LENGTH) &&
			 (txbuf[i] -= MCE_MAX_PULSE_LENGTH));
	}

	/* Check if we have room for the empty packet at the end */
	if (cmdcount >= MCE_CMDBUF_SIZE) {
		ret = -EINVAL;
		goto out;
	}

838 839 840 841
	/* Fix packet length in last header */
	length = cmdcount % MCE_CODE_LENGTH;
	cmdbuf[cmdcount - length] -= MCE_CODE_LENGTH - length;

842
	/* All mce commands end with an empty packet (0x80) */
843
	cmdbuf[cmdcount++] = MCE_IRDATA_TRAILER;
844 845 846 847 848

	/* Transmit the command to the mce device */
	mce_async_out(ir, cmdbuf, cmdcount);

out:
849
	return ret ? ret : count;
850 851
}

852
/* Sets active IR outputs -- mce devices typically have two */
853
static int mceusb_set_tx_mask(struct rc_dev *dev, u32 mask)
854
{
855
	struct mceusb_dev *ir = dev->priv;
856

857 858 859 860 861 862
	/* return number of transmitters */
	int emitters = ir->num_txports ? ir->num_txports : 2;

	if (mask >= (1 << emitters))
		return emitters;

863 864 865
	if (ir->flags.tx_mask_normal)
		ir->tx_mask = mask;
	else
866 867
		ir->tx_mask = (mask != MCE_DEFAULT_TX_MASK ?
				mask ^ MCE_DEFAULT_TX_MASK : mask) << 1;
868 869 870 871

	return 0;
}

872
/* Sets the send carrier frequency and mode */
873
static int mceusb_set_tx_carrier(struct rc_dev *dev, u32 carrier)
874
{
875
	struct mceusb_dev *ir = dev->priv;
876 877
	int clk = 10000000;
	int prescaler = 0, divisor = 0;
878 879
	unsigned char cmdbuf[4] = { MCE_CMD_PORT_IR,
				    MCE_CMD_SETIRCFS, 0x00, 0x00 };
880 881 882 883 884 885

	/* Carrier has changed */
	if (ir->carrier != carrier) {

		if (carrier == 0) {
			ir->carrier = carrier;
886
			cmdbuf[2] = MCE_CMD_SIG_END;
887
			cmdbuf[3] = MCE_IRDATA_TRAILER;
888
			dev_dbg(ir->dev, "disabling carrier modulation");
889
			mce_async_out(ir, cmdbuf, sizeof(cmdbuf));
890
			return 0;
891 892 893 894
		}

		for (prescaler = 0; prescaler < 4; ++prescaler) {
			divisor = (clk >> (2 * prescaler)) / carrier;
895
			if (divisor <= 0xff) {
896 897 898
				ir->carrier = carrier;
				cmdbuf[2] = prescaler;
				cmdbuf[3] = divisor;
899 900
				dev_dbg(ir->dev, "requesting %u HZ carrier",
								carrier);
901 902 903

				/* Transmit new carrier to mce device */
				mce_async_out(ir, cmdbuf, sizeof(cmdbuf));
904
				return 0;
905 906 907 908 909 910 911
			}
		}

		return -EINVAL;

	}

912
	return 0;
913 914
}

915 916 917 918 919 920 921 922 923 924 925
/*
 * We don't do anything but print debug spew for many of the command bits
 * we receive from the hardware, but some of them are useful information
 * we want to store so that we can use them.
 */
static void mceusb_handle_command(struct mceusb_dev *ir, int index)
{
	u8 hi = ir->buf_in[index + 1] & 0xff;
	u8 lo = ir->buf_in[index + 2] & 0xff;

	switch (ir->buf_in[index]) {
926 927 928 929 930 931
	/* the one and only 5-byte return value command */
	case MCE_RSP_GETPORTSTATUS:
		if ((ir->buf_in[index + 4] & 0xff) == 0x00)
			ir->txports_cabled |= 1 << hi;
		break;

932
	/* 2-byte return value commands */
933
	case MCE_RSP_EQIRTIMEOUT:
934
		ir->rc->timeout = US_TO_NS((hi << 8 | lo) * MCE_TIME_UNIT);
935
		break;
936 937 938 939
	case MCE_RSP_EQIRNUMPORTS:
		ir->num_txports = hi;
		ir->num_rxports = lo;
		break;
940 941

	/* 1-byte return value commands */
942 943 944
	case MCE_RSP_EQEMVER:
		ir->emver = hi;
		break;
945
	case MCE_RSP_EQIRTXPORTS:
946 947
		ir->tx_mask = hi;
		break;
948 949
	case MCE_RSP_EQIRRXPORTEN:
		ir->learning_enabled = ((hi & 0x02) == 0x02);
950
		ir->rxports_active = hi;
951
		break;
952 953 954
	case MCE_RSP_CMD_ILLEGAL:
		ir->need_reset = true;
		break;
955 956 957 958 959
	default:
		break;
	}
}

960 961
static void mceusb_process_ir_data(struct mceusb_dev *ir, int buf_len)
{
962
	DEFINE_IR_RAW_EVENT(rawir);
963
	bool event = false;
964
	int i = 0;
965 966 967

	/* skip meaningless 0xb1 0x60 header bytes on orig receiver */
	if (ir->flags.microsoft_gen1)
968
		i = 2;
969

970 971 972 973
	/* if there's no data, just return now */
	if (buf_len <= i)
		return;

974 975 976
	for (; i < buf_len; i++) {
		switch (ir->parser_state) {
		case SUBCMD:
977
			ir->rem = mceusb_cmd_datasize(ir->cmd, ir->buf_in[i]);
978
			mceusb_dev_printdata(ir, ir->buf_in, buf_len, i - 1,
979
					     ir->rem + 2, false);
980
			mceusb_handle_command(ir, i);
981 982 983
			ir->parser_state = CMD_DATA;
			break;
		case PARSE_IRDATA:
984
			ir->rem--;
985
			init_ir_raw_event(&rawir);
986 987
			rawir.pulse = ((ir->buf_in[i] & MCE_PULSE_BIT) != 0);
			rawir.duration = (ir->buf_in[i] & MCE_PULSE_MASK)
988
					 * US_TO_NS(MCE_TIME_UNIT);
989

990
			dev_dbg(ir->dev, "Storing %s with duration %u",
991 992 993
				rawir.pulse ? "pulse" : "space",
				rawir.duration);

994 995
			if (ir_raw_event_store_with_filter(ir->rc, &rawir))
				event = true;
996 997 998 999 1000 1001 1002 1003
			break;
		case CMD_DATA:
			ir->rem--;
			break;
		case CMD_HEADER:
			/* decode mce packets of the form (84),AA,BB,CC,DD */
			/* IR data packets can span USB messages - rem */
			ir->cmd = ir->buf_in[i];
1004 1005
			if ((ir->cmd == MCE_CMD_PORT_IR) ||
			    ((ir->cmd & MCE_PORT_MASK) !=
1006
			     MCE_COMMAND_IRDATA)) {
1007 1008 1009 1010
				ir->parser_state = SUBCMD;
				continue;
			}
			ir->rem = (ir->cmd & MCE_PACKET_LENGTH_MASK);
1011
			mceusb_dev_printdata(ir, ir->buf_in, buf_len,
1012
					     i, ir->rem + 1, false);
1013
			if (ir->rem)
1014
				ir->parser_state = PARSE_IRDATA;
1015 1016
			else
				ir_raw_event_reset(ir->rc);
1017
			break;
1018 1019
		}

1020 1021
		if (ir->parser_state != CMD_HEADER && !ir->rem)
			ir->parser_state = CMD_HEADER;
1022
	}
1023
	if (event) {
1024
		dev_dbg(ir->dev, "processed IR data");
1025 1026
		ir_raw_event_handle(ir->rc);
	}
1027 1028
}

S
Sean Young 已提交
1029
static void mceusb_dev_recv(struct urb *urb)
1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044
{
	struct mceusb_dev *ir;

	if (!urb)
		return;

	ir = urb->context;
	if (!ir) {
		usb_unlink_urb(urb);
		return;
	}

	switch (urb->status) {
	/* success */
	case 0:
1045
		mceusb_process_ir_data(ir, urb->actual_length);
1046 1047 1048 1049
		break;

	case -ECONNRESET:
	case -ENOENT:
1050
	case -EILSEQ:
1051 1052 1053 1054 1055 1056
	case -ESHUTDOWN:
		usb_unlink_urb(urb);
		return;

	case -EPIPE:
	default:
1057
		dev_err(ir->dev, "Error: urb status = %d", urb->status);
1058 1059 1060 1061 1062 1063
		break;
	}

	usb_submit_urb(urb, GFP_ATOMIC);
}

1064 1065 1066 1067 1068 1069 1070
static void mceusb_get_emulator_version(struct mceusb_dev *ir)
{
	/* If we get no reply or an illegal command reply, its ver 1, says MS */
	ir->emver = 1;
	mce_async_out(ir, GET_EMVER, sizeof(GET_EMVER));
}

1071 1072
static void mceusb_gen1_init(struct mceusb_dev *ir)
{
1073
	int ret;
1074
	struct device *dev = ir->dev;
1075
	char *data;
1076 1077 1078

	data = kzalloc(USB_CTRL_MSG_SZ, GFP_KERNEL);
	if (!data) {
1079
		dev_err(dev, "%s: memory allocation failed!", __func__);
1080 1081
		return;
	}
1082 1083

	/*
1084
	 * This is a strange one. Windows issues a set address to the device
1085 1086 1087 1088
	 * on the receive control pipe and expect a certain value pair back
	 */
	ret = usb_control_msg(ir->usbdev, usb_rcvctrlpipe(ir->usbdev, 0),
			      USB_REQ_SET_ADDRESS, USB_TYPE_VENDOR, 0, 0,
1089
			      data, USB_CTRL_MSG_SZ, HZ * 3);
1090 1091 1092
	dev_dbg(dev, "set address - ret = %d", ret);
	dev_dbg(dev, "set address - data[0] = %d, data[1] = %d",
						data[0], data[1]);
1093 1094 1095 1096 1097 1098

	/* set feature: bit rate 38400 bps */
	ret = usb_control_msg(ir->usbdev, usb_sndctrlpipe(ir->usbdev, 0),
			      USB_REQ_SET_FEATURE, USB_TYPE_VENDOR,
			      0xc04e, 0x0000, NULL, 0, HZ * 3);

1099
	dev_dbg(dev, "set feature - ret = %d", ret);
1100 1101 1102 1103 1104

	/* bRequest 4: set char length to 8 bits */
	ret = usb_control_msg(ir->usbdev, usb_sndctrlpipe(ir->usbdev, 0),
			      4, USB_TYPE_VENDOR,
			      0x0808, 0x0000, NULL, 0, HZ * 3);
1105
	dev_dbg(dev, "set char length - retB = %d", ret);
1106 1107 1108 1109 1110

	/* bRequest 2: set handshaking to use DTR/DSR */
	ret = usb_control_msg(ir->usbdev, usb_sndctrlpipe(ir->usbdev, 0),
			      2, USB_TYPE_VENDOR,
			      0x0000, 0x0100, NULL, 0, HZ * 3);
1111
	dev_dbg(dev, "set handshake  - retC = %d", ret);
1112

1113 1114
	/* device resume */
	mce_async_out(ir, DEVICE_RESUME, sizeof(DEVICE_RESUME));
1115 1116 1117 1118

	/* get hw/sw revision? */
	mce_async_out(ir, GET_REVISION, sizeof(GET_REVISION));

1119
	kfree(data);
1120
}
1121 1122 1123

static void mceusb_gen2_init(struct mceusb_dev *ir)
{
1124 1125
	/* device resume */
	mce_async_out(ir, DEVICE_RESUME, sizeof(DEVICE_RESUME));
1126

1127 1128 1129 1130
	/* get wake version (protocol, key, address) */
	mce_async_out(ir, GET_WAKEVERSION, sizeof(GET_WAKEVERSION));

	/* unknown what this one actually returns... */
1131
	mce_async_out(ir, GET_UNKNOWN2, sizeof(GET_UNKNOWN2));
1132 1133
}

1134
static void mceusb_get_parameters(struct mceusb_dev *ir)
1135
{
1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146
	int i;
	unsigned char cmdbuf[3] = { MCE_CMD_PORT_SYS,
				    MCE_CMD_GETPORTSTATUS, 0x00 };

	/* defaults, if the hardware doesn't support querying */
	ir->num_txports = 2;
	ir->num_rxports = 2;

	/* get number of tx and rx ports */
	mce_async_out(ir, GET_NUM_PORTS, sizeof(GET_NUM_PORTS));

1147 1148 1149
	/* get the carrier and frequency */
	mce_async_out(ir, GET_CARRIER_FREQ, sizeof(GET_CARRIER_FREQ));

1150
	if (ir->num_txports && !ir->flags.no_tx)
1151 1152
		/* get the transmitter bitmask */
		mce_async_out(ir, GET_TX_BITMASK, sizeof(GET_TX_BITMASK));
1153 1154 1155 1156 1157 1158

	/* get receiver timeout value */
	mce_async_out(ir, GET_RX_TIMEOUT, sizeof(GET_RX_TIMEOUT));

	/* get receiver sensor setting */
	mce_async_out(ir, GET_RX_SENSOR, sizeof(GET_RX_SENSOR));
1159 1160 1161 1162 1163

	for (i = 0; i < ir->num_txports; i++) {
		cmdbuf[2] = i;
		mce_async_out(ir, cmdbuf, sizeof(cmdbuf));
	}
1164 1165
}

1166 1167 1168 1169 1170 1171 1172 1173
static void mceusb_flash_led(struct mceusb_dev *ir)
{
	if (ir->emver < 2)
		return;

	mce_async_out(ir, FLASH_LED, sizeof(FLASH_LED));
}

1174
static struct rc_dev *mceusb_init_rc_dev(struct mceusb_dev *ir)
1175
{
1176
	struct usb_device *udev = ir->usbdev;
1177
	struct device *dev = ir->dev;
1178 1179
	struct rc_dev *rc;
	int ret;
1180

1181
	rc = rc_allocate_device(RC_DRIVER_IR_RAW);
1182
	if (!rc) {
1183
		dev_err(dev, "remote dev allocation failed");
1184
		goto out;
1185 1186
	}

1187
	snprintf(ir->name, sizeof(ir->name), "%s (%04x:%04x)",
1188
		 mceusb_model[ir->model].name ?
1189
			mceusb_model[ir->model].name :
1190
			"Media Center Ed. eHome Infrared Remote Transceiver",
1191 1192 1193 1194 1195
		 le16_to_cpu(ir->usbdev->descriptor.idVendor),
		 le16_to_cpu(ir->usbdev->descriptor.idProduct));

	usb_make_path(ir->usbdev, ir->phys, sizeof(ir->phys));

1196 1197 1198 1199 1200
	rc->input_name = ir->name;
	rc->input_phys = ir->phys;
	usb_to_input_id(ir->usbdev, &rc->input_id);
	rc->dev.parent = dev;
	rc->priv = ir;
1201
	rc->allowed_protocols = RC_BIT_ALL_IR_DECODER;
1202
	rc->timeout = MS_TO_NS(100);
1203
	if (!ir->flags.no_tx) {
1204 1205 1206
		rc->s_tx_mask = mceusb_set_tx_mask;
		rc->s_tx_carrier = mceusb_set_tx_carrier;
		rc->tx_ir = mceusb_tx_ir;
1207
	}
1208
	rc->driver_name = DRIVER_NAME;
1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221

	switch (le16_to_cpu(udev->descriptor.idVendor)) {
	case VENDOR_HAUPPAUGE:
		rc->map_name = RC_MAP_HAUPPAUGE;
		break;
	case VENDOR_PCTV:
		rc->map_name = RC_MAP_PINNACLE_PCTV_HD;
		break;
	default:
		rc->map_name = RC_MAP_RC6_MCE;
	}
	if (mceusb_model[ir->model].rc_map)
		rc->map_name = mceusb_model[ir->model].rc_map;
1222

1223
	ret = rc_register_device(rc);
1224
	if (ret < 0) {
1225
		dev_err(dev, "remote dev registration failed");
1226
		goto out;
1227 1228
	}

1229
	return rc;
1230

1231 1232
out:
	rc_free_device(rc);
1233 1234 1235
	return NULL;
}

1236 1237
static int mceusb_dev_probe(struct usb_interface *intf,
			    const struct usb_device_id *id)
1238 1239 1240 1241 1242 1243 1244
{
	struct usb_device *dev = interface_to_usbdev(intf);
	struct usb_host_interface *idesc;
	struct usb_endpoint_descriptor *ep = NULL;
	struct usb_endpoint_descriptor *ep_in = NULL;
	struct usb_endpoint_descriptor *ep_out = NULL;
	struct mceusb_dev *ir = NULL;
1245
	int pipe, maxp, i, res;
1246
	char buf[63], name[128] = "";
1247
	enum mceusb_model_type model = id->driver_info;
1248 1249
	bool is_gen3;
	bool is_microsoft_gen1;
1250
	bool tx_mask_normal;
1251
	int ir_intfnum;
1252

1253
	dev_dbg(&intf->dev, "%s called", __func__);
1254 1255 1256

	idesc  = intf->cur_altsetting;

1257 1258
	is_gen3 = mceusb_model[model].mce_gen3;
	is_microsoft_gen1 = mceusb_model[model].mce_gen1;
1259
	tx_mask_normal = mceusb_model[model].tx_mask_normal;
1260
	ir_intfnum = mceusb_model[model].ir_intfnum;
1261

1262 1263 1264
	/* There are multi-function devices with non-IR interfaces */
	if (idesc->desc.bInterfaceNumber != ir_intfnum)
		return -ENODEV;
1265 1266 1267 1268 1269

	/* step through the endpoints to find first bulk in and out endpoint */
	for (i = 0; i < idesc->desc.bNumEndpoints; ++i) {
		ep = &idesc->endpoint[i].desc;

1270 1271 1272 1273 1274 1275 1276 1277 1278
		if (ep_in == NULL) {
			if (usb_endpoint_is_bulk_in(ep)) {
				ep_in = ep;
				dev_dbg(&intf->dev, "acceptable bulk inbound endpoint found\n");
			} else if (usb_endpoint_is_int_in(ep)) {
				ep_in = ep;
				ep_in->bInterval = 1;
				dev_dbg(&intf->dev, "acceptable interrupt inbound endpoint found\n");
			}
1279 1280
		}

1281 1282 1283 1284 1285 1286 1287 1288 1289
		if (ep_out == NULL) {
			if (usb_endpoint_is_bulk_out(ep)) {
				ep_out = ep;
				dev_dbg(&intf->dev, "acceptable bulk outbound endpoint found\n");
			} else if (usb_endpoint_is_int_out(ep)) {
				ep_out = ep;
				ep_out->bInterval = 1;
				dev_dbg(&intf->dev, "acceptable interrupt outbound endpoint found\n");
			}
1290 1291
		}
	}
1292 1293
	if (!ep_in || !ep_out) {
		dev_dbg(&intf->dev, "required endpoints not found\n");
1294 1295 1296
		return -ENODEV;
	}

1297 1298 1299 1300
	if (usb_endpoint_xfer_int(ep_in))
		pipe = usb_rcvintpipe(dev, ep_in->bEndpointAddress);
	else
		pipe = usb_rcvbulkpipe(dev, ep_in->bEndpointAddress);
1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314
	maxp = usb_maxpacket(dev, pipe, usb_pipeout(pipe));

	ir = kzalloc(sizeof(struct mceusb_dev), GFP_KERNEL);
	if (!ir)
		goto mem_alloc_fail;

	ir->buf_in = usb_alloc_coherent(dev, maxp, GFP_ATOMIC, &ir->dma_in);
	if (!ir->buf_in)
		goto buf_in_alloc_fail;

	ir->urb_in = usb_alloc_urb(0, GFP_KERNEL);
	if (!ir->urb_in)
		goto urb_in_alloc_fail;

1315
	ir->usbdev = usb_get_dev(dev);
1316 1317 1318
	ir->dev = &intf->dev;
	ir->len_in = maxp;
	ir->flags.microsoft_gen1 = is_microsoft_gen1;
1319
	ir->flags.tx_mask_normal = tx_mask_normal;
1320
	ir->flags.no_tx = mceusb_model[model].no_tx;
1321 1322
	ir->model = model;

1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335
	/* Saving usb interface data for use by the transmitter routine */
	ir->usb_ep_out = ep_out;

	if (dev->descriptor.iManufacturer
	    && usb_string(dev, dev->descriptor.iManufacturer,
			  buf, sizeof(buf)) > 0)
		strlcpy(name, buf, sizeof(name));
	if (dev->descriptor.iProduct
	    && usb_string(dev, dev->descriptor.iProduct,
			  buf, sizeof(buf)) > 0)
		snprintf(name + strlen(name), sizeof(name) - strlen(name),
			 " %s", buf);

1336
	ir->rc = mceusb_init_rc_dev(ir);
1337 1338
	if (!ir->rc)
		goto rc_dev_fail;
1339

1340
	/* wire up inbound data handler */
1341 1342 1343 1344 1345 1346 1347
	if (usb_endpoint_xfer_int(ep_in))
		usb_fill_int_urb(ir->urb_in, dev, pipe, ir->buf_in, maxp,
				 mceusb_dev_recv, ir, ep_in->bInterval);
	else
		usb_fill_bulk_urb(ir->urb_in, dev, pipe, ir->buf_in, maxp,
				  mceusb_dev_recv, ir);

1348 1349 1350
	ir->urb_in->transfer_dma = ir->dma_in;
	ir->urb_in->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;

1351
	/* flush buffers on the device */
1352
	dev_dbg(&intf->dev, "Flushing receive buffers");
1353 1354
	res = usb_submit_urb(ir->urb_in, GFP_KERNEL);
	if (res)
1355
		dev_err(&intf->dev, "failed to flush buffers: %d", res);
1356

1357 1358 1359
	/* figure out which firmware/emulator version this hardware has */
	mceusb_get_emulator_version(ir);

1360
	/* initialize device */
1361
	if (ir->flags.microsoft_gen1)
1362
		mceusb_gen1_init(ir);
1363
	else if (!is_gen3)
1364 1365
		mceusb_gen2_init(ir);

1366
	mceusb_get_parameters(ir);
1367

1368 1369
	mceusb_flash_led(ir);

1370
	if (!ir->flags.no_tx)
1371
		mceusb_set_tx_mask(ir->rc, MCE_DEFAULT_TX_MASK);
1372 1373 1374

	usb_set_intfdata(intf, ir);

1375 1376 1377 1378
	/* enable wake via this device */
	device_set_wakeup_capable(ir->dev, true);
	device_set_wakeup_enable(ir->dev, true);

1379 1380 1381
	dev_info(&intf->dev, "Registered %s with mce emulator interface version %x",
		name, ir->emver);
	dev_info(&intf->dev, "%x tx ports (0x%x cabled) and %x rx sensors (0x%x active)",
1382 1383
		 ir->num_txports, ir->txports_cabled,
		 ir->num_rxports, ir->rxports_active);
1384 1385 1386 1387

	return 0;

	/* Error-handling path */
1388
rc_dev_fail:
1389
	usb_put_dev(ir->usbdev);
1390
	usb_kill_urb(ir->urb_in);
1391 1392 1393 1394 1395 1396
	usb_free_urb(ir->urb_in);
urb_in_alloc_fail:
	usb_free_coherent(dev, maxp, ir->buf_in, ir->dma_in);
buf_in_alloc_fail:
	kfree(ir);
mem_alloc_fail:
1397
	dev_err(&intf->dev, "%s: device setup failed!", __func__);
1398 1399 1400 1401 1402

	return -ENOMEM;
}


1403
static void mceusb_dev_disconnect(struct usb_interface *intf)
1404 1405 1406 1407 1408 1409 1410 1411 1412 1413
{
	struct usb_device *dev = interface_to_usbdev(intf);
	struct mceusb_dev *ir = usb_get_intfdata(intf);

	usb_set_intfdata(intf, NULL);

	if (!ir)
		return;

	ir->usbdev = NULL;
1414
	rc_unregister_device(ir->rc);
1415 1416 1417
	usb_kill_urb(ir->urb_in);
	usb_free_urb(ir->urb_in);
	usb_free_coherent(dev, ir->len_in, ir->buf_in, ir->dma_in);
1418
	usb_put_dev(dev);
1419 1420 1421 1422 1423 1424 1425

	kfree(ir);
}

static int mceusb_dev_suspend(struct usb_interface *intf, pm_message_t message)
{
	struct mceusb_dev *ir = usb_get_intfdata(intf);
1426
	dev_info(ir->dev, "suspend");
1427 1428 1429 1430 1431 1432 1433
	usb_kill_urb(ir->urb_in);
	return 0;
}

static int mceusb_dev_resume(struct usb_interface *intf)
{
	struct mceusb_dev *ir = usb_get_intfdata(intf);
1434
	dev_info(ir->dev, "resume");
1435 1436 1437 1438 1439 1440 1441 1442
	if (usb_submit_urb(ir->urb_in, GFP_ATOMIC))
		return -EIO;
	return 0;
}

static struct usb_driver mceusb_dev_driver = {
	.name =		DRIVER_NAME,
	.probe =	mceusb_dev_probe,
1443
	.disconnect =	mceusb_dev_disconnect,
1444 1445 1446 1447 1448 1449
	.suspend =	mceusb_dev_suspend,
	.resume =	mceusb_dev_resume,
	.reset_resume =	mceusb_dev_resume,
	.id_table =	mceusb_dev_table
};

1450
module_usb_driver(mceusb_dev_driver);
1451 1452 1453 1454 1455

MODULE_DESCRIPTION(DRIVER_DESC);
MODULE_AUTHOR(DRIVER_AUTHOR);
MODULE_LICENSE("GPL");
MODULE_DEVICE_TABLE(usb, mceusb_dev_table);