xref: /openbmc/linux/drivers/media/rc/redrat3.c (revision 8a21ec9bb3ecea54ebbd8576460ec8ba2096a29e)
12154be65SJarod Wilson /*
22154be65SJarod Wilson  * USB RedRat3 IR Transceiver rc-core driver
32154be65SJarod Wilson  *
42154be65SJarod Wilson  * Copyright (c) 2011 by Jarod Wilson <jarod@redhat.com>
52154be65SJarod Wilson  *  based heavily on the work of Stephen Cox, with additional
62154be65SJarod Wilson  *  help from RedRat Ltd.
72154be65SJarod Wilson  *
82154be65SJarod Wilson  * This driver began life based an an old version of the first-generation
92154be65SJarod Wilson  * lirc_mceusb driver from the lirc 0.7.2 distribution. It was then
102154be65SJarod Wilson  * significantly rewritten by Stephen Cox with the aid of RedRat Ltd's
112154be65SJarod Wilson  * Chris Dodge.
122154be65SJarod Wilson  *
132154be65SJarod Wilson  * The driver was then ported to rc-core and significantly rewritten again,
142154be65SJarod Wilson  * by Jarod, using the in-kernel mceusb driver as a guide, after an initial
152154be65SJarod Wilson  * port effort was started by Stephen.
162154be65SJarod Wilson  *
172154be65SJarod Wilson  * TODO LIST:
182154be65SJarod Wilson  * - fix lirc not showing repeats properly
192154be65SJarod Wilson  * --
202154be65SJarod Wilson  *
212154be65SJarod Wilson  * The RedRat3 is a USB transceiver with both send & receive,
222154be65SJarod Wilson  * with 2 separate sensors available for receive to enable
232154be65SJarod Wilson  * both good long range reception for general use, and good
242154be65SJarod Wilson  * short range reception when required for learning a signal.
252154be65SJarod Wilson  *
262154be65SJarod Wilson  * http://www.redrat.co.uk/
272154be65SJarod Wilson  *
282154be65SJarod Wilson  * It uses its own little protocol to communicate, the required
292154be65SJarod Wilson  * parts of which are embedded within this driver.
302154be65SJarod Wilson  * --
312154be65SJarod Wilson  *
322154be65SJarod Wilson  * This program is free software; you can redistribute it and/or modify
332154be65SJarod Wilson  * it under the terms of the GNU General Public License as published by
342154be65SJarod Wilson  * the Free Software Foundation; either version 2 of the License, or
352154be65SJarod Wilson  * (at your option) any later version.
362154be65SJarod Wilson  *
372154be65SJarod Wilson  * This program is distributed in the hope that it will be useful,
382154be65SJarod Wilson  * but WITHOUT ANY WARRANTY; without even the implied warranty of
392154be65SJarod Wilson  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
402154be65SJarod Wilson  * GNU General Public License for more details.
412154be65SJarod Wilson  *
422154be65SJarod Wilson  * You should have received a copy of the GNU General Public License
432154be65SJarod Wilson  * along with this program; if not, write to the Free Software
442154be65SJarod Wilson  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
452154be65SJarod Wilson  *
462154be65SJarod Wilson  */
472154be65SJarod Wilson 
484c055a5aSSean Young #include <asm/unaligned.h>
492154be65SJarod Wilson #include <linux/device.h>
50bf139726SSean Young #include <linux/leds.h>
512154be65SJarod Wilson #include <linux/module.h>
522154be65SJarod Wilson #include <linux/slab.h>
532154be65SJarod Wilson #include <linux/usb.h>
542154be65SJarod Wilson #include <linux/usb/input.h>
552154be65SJarod Wilson #include <media/rc-core.h>
562154be65SJarod Wilson 
572154be65SJarod Wilson /* Driver Information */
582154be65SJarod Wilson #define DRIVER_AUTHOR "Jarod Wilson <jarod@redhat.com>"
592154be65SJarod Wilson #define DRIVER_AUTHOR2 "The Dweller, Stephen Cox"
602154be65SJarod Wilson #define DRIVER_DESC "RedRat3 USB IR Transceiver Driver"
612154be65SJarod Wilson #define DRIVER_NAME "redrat3"
622154be65SJarod Wilson 
632154be65SJarod Wilson /* bulk data transfer types */
642154be65SJarod Wilson #define RR3_ERROR		0x01
652154be65SJarod Wilson #define RR3_MOD_SIGNAL_IN	0x20
662154be65SJarod Wilson #define RR3_MOD_SIGNAL_OUT	0x21
672154be65SJarod Wilson 
682154be65SJarod Wilson /* Get the RR firmware version */
692154be65SJarod Wilson #define RR3_FW_VERSION		0xb1
702154be65SJarod Wilson #define RR3_FW_VERSION_LEN	64
712154be65SJarod Wilson /* Send encoded signal bulk-sent earlier*/
722154be65SJarod Wilson #define RR3_TX_SEND_SIGNAL	0xb3
732154be65SJarod Wilson #define RR3_SET_IR_PARAM	0xb7
742154be65SJarod Wilson #define RR3_GET_IR_PARAM	0xb8
752154be65SJarod Wilson /* Blink the red LED on the device */
762154be65SJarod Wilson #define RR3_BLINK_LED		0xb9
772154be65SJarod Wilson /* Read serial number of device */
782154be65SJarod Wilson #define RR3_READ_SER_NO		0xba
792154be65SJarod Wilson #define RR3_SER_NO_LEN		4
802154be65SJarod Wilson /* Start capture with the RC receiver */
812154be65SJarod Wilson #define RR3_RC_DET_ENABLE	0xbb
822154be65SJarod Wilson /* Stop capture with the RC receiver */
832154be65SJarod Wilson #define RR3_RC_DET_DISABLE	0xbc
842154be65SJarod Wilson /* Return the status of RC detector capture */
852154be65SJarod Wilson #define RR3_RC_DET_STATUS	0xbd
862154be65SJarod Wilson /* Reset redrat */
872154be65SJarod Wilson #define RR3_RESET		0xa0
882154be65SJarod Wilson 
892154be65SJarod Wilson /* Max number of lengths in the signal. */
902154be65SJarod Wilson #define RR3_IR_IO_MAX_LENGTHS	0x01
912154be65SJarod Wilson /* Periods to measure mod. freq. */
922154be65SJarod Wilson #define RR3_IR_IO_PERIODS_MF	0x02
932154be65SJarod Wilson /* Size of memory for main signal data */
942154be65SJarod Wilson #define RR3_IR_IO_SIG_MEM_SIZE	0x03
952154be65SJarod Wilson /* Delta value when measuring lengths */
962154be65SJarod Wilson #define RR3_IR_IO_LENGTH_FUZZ	0x04
972154be65SJarod Wilson /* Timeout for end of signal detection */
982154be65SJarod Wilson #define RR3_IR_IO_SIG_TIMEOUT	0x05
9939c1cb2bSJonathan McCrohan /* Minimum value for pause recognition. */
1002154be65SJarod Wilson #define RR3_IR_IO_MIN_PAUSE	0x06
1012154be65SJarod Wilson 
1022154be65SJarod Wilson /* Clock freq. of EZ-USB chip */
1032154be65SJarod Wilson #define RR3_CLK			24000000
1042154be65SJarod Wilson /* Clock periods per timer count */
1052154be65SJarod Wilson #define RR3_CLK_PER_COUNT	12
1062154be65SJarod Wilson /* (RR3_CLK / RR3_CLK_PER_COUNT) */
1072154be65SJarod Wilson #define RR3_CLK_CONV_FACTOR	2000000
1082154be65SJarod Wilson /* USB bulk-in IR data endpoint address */
1092154be65SJarod Wilson #define RR3_BULK_IN_EP_ADDR	0x82
1102154be65SJarod Wilson 
1112154be65SJarod Wilson /* Size of the fixed-length portion of the signal */
1122154be65SJarod Wilson #define RR3_DRIVER_MAXLENS	128
1132154be65SJarod Wilson #define RR3_MAX_SIG_SIZE	512
1142154be65SJarod Wilson #define RR3_TIME_UNIT		50
1152154be65SJarod Wilson #define RR3_END_OF_SIGNAL	0x7f
1162154be65SJarod Wilson #define RR3_TX_TRAILER_LEN	2
1172154be65SJarod Wilson #define RR3_RX_MIN_TIMEOUT	5
1182154be65SJarod Wilson #define RR3_RX_MAX_TIMEOUT	2000
1192154be65SJarod Wilson 
1202154be65SJarod Wilson /* The 8051's CPUCS Register address */
1212154be65SJarod Wilson #define RR3_CPUCS_REG_ADDR	0x7f92
1222154be65SJarod Wilson 
1232154be65SJarod Wilson #define USB_RR3USB_VENDOR_ID	0x112a
1242154be65SJarod Wilson #define USB_RR3USB_PRODUCT_ID	0x0001
1252154be65SJarod Wilson #define USB_RR3IIUSB_PRODUCT_ID	0x0005
1262154be65SJarod Wilson 
127d6ae162bSSean Young 
128d6ae162bSSean Young /*
129d6ae162bSSean Young  * The redrat3 encodes an IR signal as set of different lengths and a set
130d6ae162bSSean Young  * of indices into those lengths. This sets how much two lengths must
131d6ae162bSSean Young  * differ before they are considered distinct, the value is specified
132d6ae162bSSean Young  * in microseconds.
133d6ae162bSSean Young  * Default 5, value 0 to 127.
134d6ae162bSSean Young  */
135d6ae162bSSean Young static int length_fuzz = 5;
136d6ae162bSSean Young module_param(length_fuzz, uint, 0644);
137d6ae162bSSean Young MODULE_PARM_DESC(length_fuzz, "Length Fuzz (0-127)");
138d6ae162bSSean Young 
139d6ae162bSSean Young /*
140d6ae162bSSean Young  * When receiving a continuous ir stream (for example when a user is
141d6ae162bSSean Young  * holding a button down on a remote), this specifies the minimum size
142d6ae162bSSean Young  * of a space when the redrat3 sends a irdata packet to the host. Specified
143d6ae162bSSean Young  * in miliseconds. Default value 18ms.
144d6ae162bSSean Young  * The value can be between 2 and 30 inclusive.
145d6ae162bSSean Young  */
146d6ae162bSSean Young static int minimum_pause = 18;
147d6ae162bSSean Young module_param(minimum_pause, uint, 0644);
148d6ae162bSSean Young MODULE_PARM_DESC(minimum_pause, "Minimum Pause in ms (2-30)");
149d6ae162bSSean Young 
150d6ae162bSSean Young /*
151d6ae162bSSean Young  * The carrier frequency is measured during the first pulse of the IR
152d6ae162bSSean Young  * signal. The larger the number of periods used To measure, the more
153d6ae162bSSean Young  * accurate the result is likely to be, however some signals have short
154d6ae162bSSean Young  * initial pulses, so in some case it may be necessary to reduce this value.
155d6ae162bSSean Young  * Default 8, value 1 to 255.
156d6ae162bSSean Young  */
157d6ae162bSSean Young static int periods_measure_carrier = 8;
158d6ae162bSSean Young module_param(periods_measure_carrier, uint, 0644);
159d6ae162bSSean Young MODULE_PARM_DESC(periods_measure_carrier, "Number of Periods to Measure Carrier (1-255)");
160d6ae162bSSean Young 
161d6ae162bSSean Young 
1624c055a5aSSean Young struct redrat3_header {
1634c055a5aSSean Young 	__be16 length;
1644c055a5aSSean Young 	__be16 transfer_type;
1654c055a5aSSean Young } __packed;
1664c055a5aSSean Young 
1674c055a5aSSean Young /* sending and receiving irdata */
1684c055a5aSSean Young struct redrat3_irdata {
1694c055a5aSSean Young 	struct redrat3_header header;
1704c055a5aSSean Young 	__be32 pause;
1714c055a5aSSean Young 	__be16 mod_freq_count;
1724c055a5aSSean Young 	__be16 num_periods;
1734c055a5aSSean Young 	__u8 max_lengths;
1744c055a5aSSean Young 	__u8 no_lengths;
1754c055a5aSSean Young 	__be16 max_sig_size;
1764c055a5aSSean Young 	__be16 sig_size;
1774c055a5aSSean Young 	__u8 no_repeats;
1784c055a5aSSean Young 	__be16 lens[RR3_DRIVER_MAXLENS]; /* not aligned */
1794c055a5aSSean Young 	__u8 sigdata[RR3_MAX_SIG_SIZE];
1804c055a5aSSean Young } __packed;
1814c055a5aSSean Young 
1824c055a5aSSean Young /* firmware errors */
1834c055a5aSSean Young struct redrat3_error {
1844c055a5aSSean Young 	struct redrat3_header header;
1854c055a5aSSean Young 	__be16 fw_error;
1864c055a5aSSean Young } __packed;
1874c055a5aSSean Young 
1882154be65SJarod Wilson /* table of devices that work with this driver */
1892154be65SJarod Wilson static struct usb_device_id redrat3_dev_table[] = {
1902154be65SJarod Wilson 	/* Original version of the RedRat3 */
1912154be65SJarod Wilson 	{USB_DEVICE(USB_RR3USB_VENDOR_ID, USB_RR3USB_PRODUCT_ID)},
1922154be65SJarod Wilson 	/* Second Version/release of the RedRat3 - RetRat3-II */
1932154be65SJarod Wilson 	{USB_DEVICE(USB_RR3USB_VENDOR_ID, USB_RR3IIUSB_PRODUCT_ID)},
1942154be65SJarod Wilson 	{}			/* Terminating entry */
1952154be65SJarod Wilson };
1962154be65SJarod Wilson 
1972154be65SJarod Wilson /* Structure to hold all of our device specific stuff */
1982154be65SJarod Wilson struct redrat3_dev {
1992154be65SJarod Wilson 	/* core device bits */
2002154be65SJarod Wilson 	struct rc_dev *rc;
2012154be65SJarod Wilson 	struct device *dev;
2022154be65SJarod Wilson 
203bf139726SSean Young 	/* led control */
204bf139726SSean Young 	struct led_classdev led;
205bf139726SSean Young 	atomic_t flash;
206bf139726SSean Young 	struct usb_ctrlrequest flash_control;
207bf139726SSean Young 	struct urb *flash_urb;
208bf139726SSean Young 	u8 flash_in_buf;
209bf139726SSean Young 
2102154be65SJarod Wilson 	/* save off the usb device pointer */
2112154be65SJarod Wilson 	struct usb_device *udev;
2122154be65SJarod Wilson 
2132154be65SJarod Wilson 	/* the receive endpoint */
2142154be65SJarod Wilson 	struct usb_endpoint_descriptor *ep_in;
2152154be65SJarod Wilson 	/* the buffer to receive data */
2164c055a5aSSean Young 	void *bulk_in_buf;
2172154be65SJarod Wilson 	/* urb used to read ir data */
2182154be65SJarod Wilson 	struct urb *read_urb;
2192154be65SJarod Wilson 
2202154be65SJarod Wilson 	/* the send endpoint */
2212154be65SJarod Wilson 	struct usb_endpoint_descriptor *ep_out;
2222154be65SJarod Wilson 
2232154be65SJarod Wilson 	/* usb dma */
2242154be65SJarod Wilson 	dma_addr_t dma_in;
2252154be65SJarod Wilson 
2262154be65SJarod Wilson 	/* Is the device currently transmitting?*/
2272154be65SJarod Wilson 	bool transmitting;
2282154be65SJarod Wilson 
2292154be65SJarod Wilson 	/* store for current packet */
2304c055a5aSSean Young 	struct redrat3_irdata irdata;
2312154be65SJarod Wilson 	u16 bytes_read;
2322154be65SJarod Wilson 
2332154be65SJarod Wilson 	u32 carrier;
2342154be65SJarod Wilson 
2354c055a5aSSean Young 	char name[64];
2362154be65SJarod Wilson 	char phys[64];
2372154be65SJarod Wilson };
2382154be65SJarod Wilson 
2392154be65SJarod Wilson /*
2402154be65SJarod Wilson  * redrat3_issue_async
2412154be65SJarod Wilson  *
2422154be65SJarod Wilson  *  Issues an async read to the ir data in port..
2432154be65SJarod Wilson  *  sets the callback to be redrat3_handle_async
2442154be65SJarod Wilson  */
2452154be65SJarod Wilson static void redrat3_issue_async(struct redrat3_dev *rr3)
2462154be65SJarod Wilson {
2472154be65SJarod Wilson 	int res;
2482154be65SJarod Wilson 
2492154be65SJarod Wilson 	res = usb_submit_urb(rr3->read_urb, GFP_ATOMIC);
2502154be65SJarod Wilson 	if (res)
2513228bf81SGreg Kroah-Hartman 		dev_dbg(rr3->dev,
2523228bf81SGreg Kroah-Hartman 			"%s: receive request FAILED! (res %d, len %d)\n",
2533228bf81SGreg Kroah-Hartman 			__func__, res, rr3->read_urb->transfer_buffer_length);
2542154be65SJarod Wilson }
2552154be65SJarod Wilson 
2562154be65SJarod Wilson static void redrat3_dump_fw_error(struct redrat3_dev *rr3, int code)
2572154be65SJarod Wilson {
2582154be65SJarod Wilson 	if (!rr3->transmitting && (code != 0x40))
2592154be65SJarod Wilson 		dev_info(rr3->dev, "fw error code 0x%02x: ", code);
2602154be65SJarod Wilson 
2612154be65SJarod Wilson 	switch (code) {
2622154be65SJarod Wilson 	case 0x00:
2632154be65SJarod Wilson 		pr_cont("No Error\n");
2642154be65SJarod Wilson 		break;
2652154be65SJarod Wilson 
2662154be65SJarod Wilson 	/* Codes 0x20 through 0x2f are IR Firmware Errors */
2672154be65SJarod Wilson 	case 0x20:
26825ec587cSMauro Carvalho Chehab 		pr_cont("Initial signal pulse not long enough to measure carrier frequency\n");
2692154be65SJarod Wilson 		break;
2702154be65SJarod Wilson 	case 0x21:
2712154be65SJarod Wilson 		pr_cont("Not enough length values allocated for signal\n");
2722154be65SJarod Wilson 		break;
2732154be65SJarod Wilson 	case 0x22:
2742154be65SJarod Wilson 		pr_cont("Not enough memory allocated for signal data\n");
2752154be65SJarod Wilson 		break;
2762154be65SJarod Wilson 	case 0x23:
2772154be65SJarod Wilson 		pr_cont("Too many signal repeats\n");
2782154be65SJarod Wilson 		break;
2792154be65SJarod Wilson 	case 0x28:
28025ec587cSMauro Carvalho Chehab 		pr_cont("Insufficient memory available for IR signal data memory allocation\n");
2812154be65SJarod Wilson 		break;
2822154be65SJarod Wilson 	case 0x29:
28325ec587cSMauro Carvalho Chehab 		pr_cont("Insufficient memory available for IrDa signal data memory allocation\n");
2842154be65SJarod Wilson 		break;
2852154be65SJarod Wilson 
2862154be65SJarod Wilson 	/* Codes 0x30 through 0x3f are USB Firmware Errors */
2872154be65SJarod Wilson 	case 0x30:
28825ec587cSMauro Carvalho Chehab 		pr_cont("Insufficient memory available for bulk transfer structure\n");
2892154be65SJarod Wilson 		break;
2902154be65SJarod Wilson 
2912154be65SJarod Wilson 	/*
2922154be65SJarod Wilson 	 * Other error codes... These are primarily errors that can occur in
2932154be65SJarod Wilson 	 * the control messages sent to the redrat
2942154be65SJarod Wilson 	 */
2952154be65SJarod Wilson 	case 0x40:
2962154be65SJarod Wilson 		if (!rr3->transmitting)
2972154be65SJarod Wilson 			pr_cont("Signal capture has been terminated\n");
2982154be65SJarod Wilson 		break;
2992154be65SJarod Wilson 	case 0x41:
30025ec587cSMauro Carvalho Chehab 		pr_cont("Attempt to set/get and unknown signal I/O algorithm parameter\n");
3012154be65SJarod Wilson 		break;
3022154be65SJarod Wilson 	case 0x42:
3032154be65SJarod Wilson 		pr_cont("Signal capture already started\n");
3042154be65SJarod Wilson 		break;
3052154be65SJarod Wilson 
3062154be65SJarod Wilson 	default:
3072154be65SJarod Wilson 		pr_cont("Unknown Error\n");
3082154be65SJarod Wilson 		break;
3092154be65SJarod Wilson 	}
3102154be65SJarod Wilson }
3112154be65SJarod Wilson 
3124c055a5aSSean Young static u32 redrat3_val_to_mod_freq(struct redrat3_irdata *irdata)
3132154be65SJarod Wilson {
3142154be65SJarod Wilson 	u32 mod_freq = 0;
3154c055a5aSSean Young 	u16 mod_freq_count = be16_to_cpu(irdata->mod_freq_count);
3162154be65SJarod Wilson 
3174c055a5aSSean Young 	if (mod_freq_count != 0)
3184c055a5aSSean Young 		mod_freq = (RR3_CLK * be16_to_cpu(irdata->num_periods)) /
3194c055a5aSSean Young 			(mod_freq_count * RR3_CLK_PER_COUNT);
3202154be65SJarod Wilson 
3212154be65SJarod Wilson 	return mod_freq;
3222154be65SJarod Wilson }
3232154be65SJarod Wilson 
3242154be65SJarod Wilson /* this function scales down the figures for the same result... */
3252154be65SJarod Wilson static u32 redrat3_len_to_us(u32 length)
3262154be65SJarod Wilson {
3272154be65SJarod Wilson 	u32 biglen = length * 1000;
3282154be65SJarod Wilson 	u32 divisor = (RR3_CLK_CONV_FACTOR) / 1000;
3292154be65SJarod Wilson 	u32 result = (u32) (biglen / divisor);
3302154be65SJarod Wilson 
3312154be65SJarod Wilson 	/* don't allow zero lengths to go back, breaks lirc */
3322154be65SJarod Wilson 	return result ? result : 1;
3332154be65SJarod Wilson }
3342154be65SJarod Wilson 
3352154be65SJarod Wilson /*
3362154be65SJarod Wilson  * convert us back into redrat3 lengths
3372154be65SJarod Wilson  *
3382154be65SJarod Wilson  * length * 1000   length * 1000000
3392154be65SJarod Wilson  * ------------- = ---------------- = micro
3402154be65SJarod Wilson  * rr3clk / 1000       rr3clk
3412154be65SJarod Wilson 
3422154be65SJarod Wilson  * 6 * 2       4 * 3        micro * rr3clk          micro * rr3clk / 1000
3432154be65SJarod Wilson  * ----- = 4   ----- = 6    -------------- = len    ---------------------
3442154be65SJarod Wilson  *   3           2             1000000                    1000
3452154be65SJarod Wilson  */
3462154be65SJarod Wilson static u32 redrat3_us_to_len(u32 microsec)
3472154be65SJarod Wilson {
3482154be65SJarod Wilson 	u32 result;
3492154be65SJarod Wilson 	u32 divisor;
3502154be65SJarod Wilson 
35195cf60aaSMauro Carvalho Chehab 	microsec = (microsec > IR_MAX_DURATION) ? IR_MAX_DURATION : microsec;
3522154be65SJarod Wilson 	divisor = (RR3_CLK_CONV_FACTOR / 1000);
3532154be65SJarod Wilson 	result = (u32)(microsec * divisor) / 1000;
3542154be65SJarod Wilson 
3552154be65SJarod Wilson 	/* don't allow zero lengths to go back, breaks lirc */
3562154be65SJarod Wilson 	return result ? result : 1;
3572154be65SJarod Wilson }
3582154be65SJarod Wilson 
3592154be65SJarod Wilson static void redrat3_process_ir_data(struct redrat3_dev *rr3)
3602154be65SJarod Wilson {
3612154be65SJarod Wilson 	DEFINE_IR_RAW_EVENT(rawir);
3622154be65SJarod Wilson 	struct device *dev;
36325da661aSSean Young 	unsigned int i, sig_size, single_len, offset, val;
3644c055a5aSSean Young 	u32 mod_freq;
3652154be65SJarod Wilson 
3662154be65SJarod Wilson 	dev = rr3->dev;
3672154be65SJarod Wilson 
3684c055a5aSSean Young 	mod_freq = redrat3_val_to_mod_freq(&rr3->irdata);
3693228bf81SGreg Kroah-Hartman 	dev_dbg(dev, "Got mod_freq of %u\n", mod_freq);
3702154be65SJarod Wilson 
3712154be65SJarod Wilson 	/* process each rr3 encoded byte into an int */
3724c055a5aSSean Young 	sig_size = be16_to_cpu(rr3->irdata.sig_size);
3734c055a5aSSean Young 	for (i = 0; i < sig_size; i++) {
3744c055a5aSSean Young 		offset = rr3->irdata.sigdata[i];
3754c055a5aSSean Young 		val = get_unaligned_be16(&rr3->irdata.lens[offset]);
3764c055a5aSSean Young 		single_len = redrat3_len_to_us(val);
3772154be65SJarod Wilson 
3782154be65SJarod Wilson 		/* we should always get pulse/space/pulse/space samples */
3792154be65SJarod Wilson 		if (i % 2)
3802154be65SJarod Wilson 			rawir.pulse = false;
3812154be65SJarod Wilson 		else
3822154be65SJarod Wilson 			rawir.pulse = true;
3832154be65SJarod Wilson 
3842154be65SJarod Wilson 		rawir.duration = US_TO_NS(single_len);
3852c594ffaSJarod Wilson 		/* cap the value to IR_MAX_DURATION */
38695cf60aaSMauro Carvalho Chehab 		rawir.duration = (rawir.duration > IR_MAX_DURATION) ?
38795cf60aaSMauro Carvalho Chehab 				 IR_MAX_DURATION : rawir.duration;
3882c594ffaSJarod Wilson 
3893228bf81SGreg Kroah-Hartman 		dev_dbg(dev, "storing %s with duration %d (i: %d)\n",
3902154be65SJarod Wilson 			rawir.pulse ? "pulse" : "space", rawir.duration, i);
3912154be65SJarod Wilson 		ir_raw_event_store_with_filter(rr3->rc, &rawir);
3922154be65SJarod Wilson 	}
3932154be65SJarod Wilson 
39425da661aSSean Young 	/* add a trailing space */
3952154be65SJarod Wilson 	rawir.pulse = false;
39625da661aSSean Young 	rawir.timeout = true;
397c7470ff2SSean Young 	rawir.duration = rr3->rc->timeout;
39825da661aSSean Young 	dev_dbg(dev, "storing trailing timeout with duration %d\n",
3992154be65SJarod Wilson 							rawir.duration);
4002154be65SJarod Wilson 	ir_raw_event_store_with_filter(rr3->rc, &rawir);
4012154be65SJarod Wilson 
4023228bf81SGreg Kroah-Hartman 	dev_dbg(dev, "calling ir_raw_event_handle\n");
4032154be65SJarod Wilson 	ir_raw_event_handle(rr3->rc);
4042154be65SJarod Wilson }
4052154be65SJarod Wilson 
4062154be65SJarod Wilson /* Util fn to send rr3 cmds */
4076948524dSMauro Carvalho Chehab static int redrat3_send_cmd(int cmd, struct redrat3_dev *rr3)
4082154be65SJarod Wilson {
4092154be65SJarod Wilson 	struct usb_device *udev;
4102154be65SJarod Wilson 	u8 *data;
4112154be65SJarod Wilson 	int res;
4122154be65SJarod Wilson 
4132154be65SJarod Wilson 	data = kzalloc(sizeof(u8), GFP_KERNEL);
4142154be65SJarod Wilson 	if (!data)
4152154be65SJarod Wilson 		return -ENOMEM;
4162154be65SJarod Wilson 
4172154be65SJarod Wilson 	udev = rr3->udev;
4182154be65SJarod Wilson 	res = usb_control_msg(udev, usb_rcvctrlpipe(udev, 0), cmd,
4192154be65SJarod Wilson 			      USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_IN,
4202154be65SJarod Wilson 			      0x0000, 0x0000, data, sizeof(u8), HZ * 10);
4212154be65SJarod Wilson 
4222154be65SJarod Wilson 	if (res < 0) {
4232154be65SJarod Wilson 		dev_err(rr3->dev, "%s: Error sending rr3 cmd res %d, data %d",
4242154be65SJarod Wilson 			__func__, res, *data);
4252154be65SJarod Wilson 		res = -EIO;
4262154be65SJarod Wilson 	} else
4274c055a5aSSean Young 		res = data[0];
4282154be65SJarod Wilson 
4292154be65SJarod Wilson 	kfree(data);
4302154be65SJarod Wilson 
4312154be65SJarod Wilson 	return res;
4322154be65SJarod Wilson }
4332154be65SJarod Wilson 
4342154be65SJarod Wilson /* Enables the long range detector and starts async receive */
4352154be65SJarod Wilson static int redrat3_enable_detector(struct redrat3_dev *rr3)
4362154be65SJarod Wilson {
4372154be65SJarod Wilson 	struct device *dev = rr3->dev;
4382154be65SJarod Wilson 	u8 ret;
4392154be65SJarod Wilson 
4402154be65SJarod Wilson 	ret = redrat3_send_cmd(RR3_RC_DET_ENABLE, rr3);
4412154be65SJarod Wilson 	if (ret != 0)
4422154be65SJarod Wilson 		dev_dbg(dev, "%s: unexpected ret of %d\n",
4432154be65SJarod Wilson 			__func__, ret);
4442154be65SJarod Wilson 
4452154be65SJarod Wilson 	ret = redrat3_send_cmd(RR3_RC_DET_STATUS, rr3);
4462154be65SJarod Wilson 	if (ret != 1) {
4472154be65SJarod Wilson 		dev_err(dev, "%s: detector status: %d, should be 1\n",
4482154be65SJarod Wilson 			__func__, ret);
4492154be65SJarod Wilson 		return -EIO;
4502154be65SJarod Wilson 	}
4512154be65SJarod Wilson 
4522154be65SJarod Wilson 	redrat3_issue_async(rr3);
4532154be65SJarod Wilson 
4542154be65SJarod Wilson 	return 0;
4552154be65SJarod Wilson }
4562154be65SJarod Wilson 
4572154be65SJarod Wilson static inline void redrat3_delete(struct redrat3_dev *rr3,
4582154be65SJarod Wilson 				  struct usb_device *udev)
4592154be65SJarod Wilson {
4602154be65SJarod Wilson 	usb_kill_urb(rr3->read_urb);
461bf139726SSean Young 	usb_kill_urb(rr3->flash_urb);
4622154be65SJarod Wilson 	usb_free_urb(rr3->read_urb);
463bf139726SSean Young 	usb_free_urb(rr3->flash_urb);
464fa7b9ac2SSean Young 	usb_free_coherent(udev, le16_to_cpu(rr3->ep_in->wMaxPacketSize),
4652154be65SJarod Wilson 			  rr3->bulk_in_buf, rr3->dma_in);
4662154be65SJarod Wilson 
4672154be65SJarod Wilson 	kfree(rr3);
4682154be65SJarod Wilson }
4692154be65SJarod Wilson 
470c53f9f00SJarod Wilson static u32 redrat3_get_timeout(struct redrat3_dev *rr3)
4712154be65SJarod Wilson {
472801b69f2SSean Young 	__be32 *tmp;
473c53f9f00SJarod Wilson 	u32 timeout = MS_TO_US(150); /* a sane default, if things go haywire */
4742154be65SJarod Wilson 	int len, ret, pipe;
4752154be65SJarod Wilson 
4762154be65SJarod Wilson 	len = sizeof(*tmp);
4772154be65SJarod Wilson 	tmp = kzalloc(len, GFP_KERNEL);
478559f64d4SMarkus Elfring 	if (!tmp)
4792154be65SJarod Wilson 		return timeout;
4802154be65SJarod Wilson 
481c53f9f00SJarod Wilson 	pipe = usb_rcvctrlpipe(rr3->udev, 0);
482c53f9f00SJarod Wilson 	ret = usb_control_msg(rr3->udev, pipe, RR3_GET_IR_PARAM,
4832154be65SJarod Wilson 			      USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_IN,
4842154be65SJarod Wilson 			      RR3_IR_IO_SIG_TIMEOUT, 0, tmp, len, HZ * 5);
485801b69f2SSean Young 	if (ret != len)
486c53f9f00SJarod Wilson 		dev_warn(rr3->dev, "Failed to read timeout from hardware\n");
487801b69f2SSean Young 	else {
488801b69f2SSean Young 		timeout = redrat3_len_to_us(be32_to_cpup(tmp));
4892154be65SJarod Wilson 
4903228bf81SGreg Kroah-Hartman 		dev_dbg(rr3->dev, "Got timeout of %d ms\n", timeout / 1000);
491801b69f2SSean Young 	}
492801b69f2SSean Young 
493801b69f2SSean Young 	kfree(tmp);
494801b69f2SSean Young 
4952154be65SJarod Wilson 	return timeout;
4962154be65SJarod Wilson }
4972154be65SJarod Wilson 
4984f253cecSSean Young static int redrat3_set_timeout(struct rc_dev *rc_dev, unsigned int timeoutns)
4994f253cecSSean Young {
5004f253cecSSean Young 	struct redrat3_dev *rr3 = rc_dev->priv;
5014f253cecSSean Young 	struct usb_device *udev = rr3->udev;
5024f253cecSSean Young 	struct device *dev = rr3->dev;
503b1cb50beSHans Verkuil 	__be32 *timeout;
5044f253cecSSean Young 	int ret;
5054f253cecSSean Young 
5064f253cecSSean Young 	timeout = kmalloc(sizeof(*timeout), GFP_KERNEL);
5074f253cecSSean Young 	if (!timeout)
5084f253cecSSean Young 		return -ENOMEM;
5094f253cecSSean Young 
5104f253cecSSean Young 	*timeout = cpu_to_be32(redrat3_us_to_len(timeoutns / 1000));
5114f253cecSSean Young 	ret = usb_control_msg(udev, usb_sndctrlpipe(udev, 0), RR3_SET_IR_PARAM,
5124f253cecSSean Young 		     USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_OUT,
5134f253cecSSean Young 		     RR3_IR_IO_SIG_TIMEOUT, 0, timeout, sizeof(*timeout),
5144f253cecSSean Young 		     HZ * 25);
5154f253cecSSean Young 	dev_dbg(dev, "set ir parm timeout %d ret 0x%02x\n",
5164f253cecSSean Young 						be32_to_cpu(*timeout), ret);
5174f253cecSSean Young 
518c7470ff2SSean Young 	if (ret == sizeof(*timeout))
5194f253cecSSean Young 		ret = 0;
520c7470ff2SSean Young 	else if (ret >= 0)
5214f253cecSSean Young 		ret = -EIO;
5224f253cecSSean Young 
5234f253cecSSean Young 	kfree(timeout);
5244f253cecSSean Young 
5254f253cecSSean Young 	return ret;
5264f253cecSSean Young }
5274f253cecSSean Young 
5282154be65SJarod Wilson static void redrat3_reset(struct redrat3_dev *rr3)
5292154be65SJarod Wilson {
5302154be65SJarod Wilson 	struct usb_device *udev = rr3->udev;
5312154be65SJarod Wilson 	struct device *dev = rr3->dev;
5322154be65SJarod Wilson 	int rc, rxpipe, txpipe;
5332154be65SJarod Wilson 	u8 *val;
534576df632SMarkus Elfring 	size_t const len = sizeof(*val);
5352154be65SJarod Wilson 
5362154be65SJarod Wilson 	rxpipe = usb_rcvctrlpipe(udev, 0);
5372154be65SJarod Wilson 	txpipe = usb_sndctrlpipe(udev, 0);
5382154be65SJarod Wilson 
539fa7b9ac2SSean Young 	val = kmalloc(len, GFP_KERNEL);
540559f64d4SMarkus Elfring 	if (!val)
5412154be65SJarod Wilson 		return;
5422154be65SJarod Wilson 
5432154be65SJarod Wilson 	*val = 0x01;
5442154be65SJarod Wilson 	rc = usb_control_msg(udev, rxpipe, RR3_RESET,
5452154be65SJarod Wilson 			     USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_IN,
5462154be65SJarod Wilson 			     RR3_CPUCS_REG_ADDR, 0, val, len, HZ * 25);
5473228bf81SGreg Kroah-Hartman 	dev_dbg(dev, "reset returned 0x%02x\n", rc);
5482154be65SJarod Wilson 
549d6ae162bSSean Young 	*val = length_fuzz;
5502154be65SJarod Wilson 	rc = usb_control_msg(udev, txpipe, RR3_SET_IR_PARAM,
5512154be65SJarod Wilson 			     USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_OUT,
5522154be65SJarod Wilson 			     RR3_IR_IO_LENGTH_FUZZ, 0, val, len, HZ * 25);
5533228bf81SGreg Kroah-Hartman 	dev_dbg(dev, "set ir parm len fuzz %d rc 0x%02x\n", *val, rc);
5542154be65SJarod Wilson 
555d6ae162bSSean Young 	*val = (65536 - (minimum_pause * 2000)) / 256;
556d6ae162bSSean Young 	rc = usb_control_msg(udev, txpipe, RR3_SET_IR_PARAM,
557d6ae162bSSean Young 			     USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_OUT,
558d6ae162bSSean Young 			     RR3_IR_IO_MIN_PAUSE, 0, val, len, HZ * 25);
559d6ae162bSSean Young 	dev_dbg(dev, "set ir parm min pause %d rc 0x%02x\n", *val, rc);
560d6ae162bSSean Young 
561d6ae162bSSean Young 	*val = periods_measure_carrier;
562d6ae162bSSean Young 	rc = usb_control_msg(udev, txpipe, RR3_SET_IR_PARAM,
563d6ae162bSSean Young 			     USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_OUT,
564d6ae162bSSean Young 			     RR3_IR_IO_PERIODS_MF, 0, val, len, HZ * 25);
565d6ae162bSSean Young 	dev_dbg(dev, "set ir parm periods measure carrier %d rc 0x%02x", *val,
566d6ae162bSSean Young 									rc);
567d6ae162bSSean Young 
5682154be65SJarod Wilson 	*val = RR3_DRIVER_MAXLENS;
5692154be65SJarod Wilson 	rc = usb_control_msg(udev, txpipe, RR3_SET_IR_PARAM,
5702154be65SJarod Wilson 			     USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_OUT,
5712154be65SJarod Wilson 			     RR3_IR_IO_MAX_LENGTHS, 0, val, len, HZ * 25);
5723228bf81SGreg Kroah-Hartman 	dev_dbg(dev, "set ir parm max lens %d rc 0x%02x\n", *val, rc);
5732154be65SJarod Wilson 
5742154be65SJarod Wilson 	kfree(val);
5752154be65SJarod Wilson }
5762154be65SJarod Wilson 
5772154be65SJarod Wilson static void redrat3_get_firmware_rev(struct redrat3_dev *rr3)
5782154be65SJarod Wilson {
5797aa20afeSMarkus Elfring 	int rc;
5802154be65SJarod Wilson 	char *buffer;
5812154be65SJarod Wilson 
5820bebaa5fSMarkus Elfring 	buffer = kcalloc(RR3_FW_VERSION_LEN + 1, sizeof(*buffer), GFP_KERNEL);
583559f64d4SMarkus Elfring 	if (!buffer)
5842154be65SJarod Wilson 		return;
5852154be65SJarod Wilson 
5862154be65SJarod Wilson 	rc = usb_control_msg(rr3->udev, usb_rcvctrlpipe(rr3->udev, 0),
5872154be65SJarod Wilson 			     RR3_FW_VERSION,
5882154be65SJarod Wilson 			     USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_IN,
5892154be65SJarod Wilson 			     0, 0, buffer, RR3_FW_VERSION_LEN, HZ * 5);
5902154be65SJarod Wilson 
5912154be65SJarod Wilson 	if (rc >= 0)
5922154be65SJarod Wilson 		dev_info(rr3->dev, "Firmware rev: %s", buffer);
5932154be65SJarod Wilson 	else
5942154be65SJarod Wilson 		dev_err(rr3->dev, "Problem fetching firmware ID\n");
5952154be65SJarod Wilson 
5962154be65SJarod Wilson 	kfree(buffer);
5972154be65SJarod Wilson }
5982154be65SJarod Wilson 
599fa7b9ac2SSean Young static void redrat3_read_packet_start(struct redrat3_dev *rr3, unsigned len)
6002154be65SJarod Wilson {
6014c055a5aSSean Young 	struct redrat3_header *header = rr3->bulk_in_buf;
6024c055a5aSSean Young 	unsigned pktlen, pkttype;
6032154be65SJarod Wilson 
6042154be65SJarod Wilson 	/* grab the Length and type of transfer */
6054c055a5aSSean Young 	pktlen = be16_to_cpu(header->length);
6064c055a5aSSean Young 	pkttype = be16_to_cpu(header->transfer_type);
6072154be65SJarod Wilson 
6084c055a5aSSean Young 	if (pktlen > sizeof(rr3->irdata)) {
6094c055a5aSSean Young 		dev_warn(rr3->dev, "packet length %u too large\n", pktlen);
6104c055a5aSSean Young 		return;
6114c055a5aSSean Young 	}
6122154be65SJarod Wilson 
6134c055a5aSSean Young 	switch (pkttype) {
6142154be65SJarod Wilson 	case RR3_ERROR:
6154c055a5aSSean Young 		if (len >= sizeof(struct redrat3_error)) {
6164c055a5aSSean Young 			struct redrat3_error *error = rr3->bulk_in_buf;
6174c055a5aSSean Young 			unsigned fw_error = be16_to_cpu(error->fw_error);
6184c055a5aSSean Young 			redrat3_dump_fw_error(rr3, fw_error);
6194c055a5aSSean Young 		}
6202154be65SJarod Wilson 		break;
6212154be65SJarod Wilson 
6222154be65SJarod Wilson 	case RR3_MOD_SIGNAL_IN:
6234c055a5aSSean Young 		memcpy(&rr3->irdata, rr3->bulk_in_buf, len);
6242154be65SJarod Wilson 		rr3->bytes_read = len;
6253228bf81SGreg Kroah-Hartman 		dev_dbg(rr3->dev, "bytes_read %d, pktlen %d\n",
6264c055a5aSSean Young 			rr3->bytes_read, pktlen);
6272154be65SJarod Wilson 		break;
6282154be65SJarod Wilson 
6292154be65SJarod Wilson 	default:
6303228bf81SGreg Kroah-Hartman 		dev_dbg(rr3->dev, "ignoring packet with type 0x%02x, len of %d, 0x%02x\n",
6314c055a5aSSean Young 						pkttype, len, pktlen);
6322154be65SJarod Wilson 		break;
6332154be65SJarod Wilson 	}
6342154be65SJarod Wilson }
6352154be65SJarod Wilson 
636fa7b9ac2SSean Young static void redrat3_read_packet_continue(struct redrat3_dev *rr3, unsigned len)
6372154be65SJarod Wilson {
6384c055a5aSSean Young 	void *irdata = &rr3->irdata;
6394c055a5aSSean Young 
6404c055a5aSSean Young 	if (len + rr3->bytes_read > sizeof(rr3->irdata)) {
6414c055a5aSSean Young 		dev_warn(rr3->dev, "too much data for packet\n");
6424c055a5aSSean Young 		rr3->bytes_read = 0;
6434c055a5aSSean Young 		return;
6444c055a5aSSean Young 	}
6454c055a5aSSean Young 
6464c055a5aSSean Young 	memcpy(irdata + rr3->bytes_read, rr3->bulk_in_buf, len);
6472154be65SJarod Wilson 
6482154be65SJarod Wilson 	rr3->bytes_read += len;
6493228bf81SGreg Kroah-Hartman 	dev_dbg(rr3->dev, "bytes_read %d, pktlen %d\n", rr3->bytes_read,
6504c055a5aSSean Young 				 be16_to_cpu(rr3->irdata.header.length));
6512154be65SJarod Wilson }
6522154be65SJarod Wilson 
6532154be65SJarod Wilson /* gather IR data from incoming urb, process it when we have enough */
654fa7b9ac2SSean Young static int redrat3_get_ir_data(struct redrat3_dev *rr3, unsigned len)
6552154be65SJarod Wilson {
6562154be65SJarod Wilson 	struct device *dev = rr3->dev;
6574c055a5aSSean Young 	unsigned pkttype;
6582154be65SJarod Wilson 	int ret = 0;
6592154be65SJarod Wilson 
6604c055a5aSSean Young 	if (rr3->bytes_read == 0 && len >= sizeof(struct redrat3_header)) {
6612154be65SJarod Wilson 		redrat3_read_packet_start(rr3, len);
6622154be65SJarod Wilson 	} else if (rr3->bytes_read != 0) {
6632154be65SJarod Wilson 		redrat3_read_packet_continue(rr3, len);
6642154be65SJarod Wilson 	} else if (rr3->bytes_read == 0) {
6652154be65SJarod Wilson 		dev_err(dev, "error: no packet data read\n");
6662154be65SJarod Wilson 		ret = -ENODATA;
6672154be65SJarod Wilson 		goto out;
6682154be65SJarod Wilson 	}
6692154be65SJarod Wilson 
67038e35a85SSean Young 	if (rr3->bytes_read < be16_to_cpu(rr3->irdata.header.length) +
67138e35a85SSean Young 						sizeof(struct redrat3_header))
6722154be65SJarod Wilson 		/* we're still accumulating data */
6732154be65SJarod Wilson 		return 0;
6742154be65SJarod Wilson 
6752154be65SJarod Wilson 	/* if we get here, we've got IR data to decode */
6764c055a5aSSean Young 	pkttype = be16_to_cpu(rr3->irdata.header.transfer_type);
6774c055a5aSSean Young 	if (pkttype == RR3_MOD_SIGNAL_IN)
6782154be65SJarod Wilson 		redrat3_process_ir_data(rr3);
6792154be65SJarod Wilson 	else
6803228bf81SGreg Kroah-Hartman 		dev_dbg(dev, "discarding non-signal data packet (type 0x%02x)\n",
6814c055a5aSSean Young 								pkttype);
6822154be65SJarod Wilson 
6832154be65SJarod Wilson out:
6842154be65SJarod Wilson 	rr3->bytes_read = 0;
6852154be65SJarod Wilson 	return ret;
6862154be65SJarod Wilson }
6872154be65SJarod Wilson 
6882154be65SJarod Wilson /* callback function from USB when async USB request has completed */
689801b69f2SSean Young static void redrat3_handle_async(struct urb *urb)
6902154be65SJarod Wilson {
691d6aca6eaSSean Young 	struct redrat3_dev *rr3 = urb->context;
692dbea1880SAndrew Vincer 	int ret;
6932154be65SJarod Wilson 
6942154be65SJarod Wilson 	switch (urb->status) {
6952154be65SJarod Wilson 	case 0:
696dbea1880SAndrew Vincer 		ret = redrat3_get_ir_data(rr3, urb->actual_length);
697dbea1880SAndrew Vincer 		if (!ret) {
698dbea1880SAndrew Vincer 			/* no error, prepare to read more */
699dbea1880SAndrew Vincer 			redrat3_issue_async(rr3);
700dbea1880SAndrew Vincer 		}
7012154be65SJarod Wilson 		break;
7022154be65SJarod Wilson 
7032154be65SJarod Wilson 	case -ECONNRESET:
7042154be65SJarod Wilson 	case -ENOENT:
7052154be65SJarod Wilson 	case -ESHUTDOWN:
7062154be65SJarod Wilson 		usb_unlink_urb(urb);
7072154be65SJarod Wilson 		return;
7082154be65SJarod Wilson 
7092154be65SJarod Wilson 	case -EPIPE:
7102154be65SJarod Wilson 	default:
7112154be65SJarod Wilson 		dev_warn(rr3->dev, "Error: urb status = %d\n", urb->status);
7122154be65SJarod Wilson 		rr3->bytes_read = 0;
7132154be65SJarod Wilson 		break;
7142154be65SJarod Wilson 	}
7152154be65SJarod Wilson }
7162154be65SJarod Wilson 
7172154be65SJarod Wilson static u16 mod_freq_to_val(unsigned int mod_freq)
7182154be65SJarod Wilson {
7192154be65SJarod Wilson 	int mult = 6000000;
7202154be65SJarod Wilson 
7212154be65SJarod Wilson 	/* Clk used in mod. freq. generation is CLK24/4. */
7224c055a5aSSean Young 	return 65536 - (mult / mod_freq);
7232154be65SJarod Wilson }
7242154be65SJarod Wilson 
725dbea1880SAndrew Vincer static int redrat3_set_tx_carrier(struct rc_dev *rcdev, u32 carrier)
7262154be65SJarod Wilson {
727dbea1880SAndrew Vincer 	struct redrat3_dev *rr3 = rcdev->priv;
728dbea1880SAndrew Vincer 	struct device *dev = rr3->dev;
7292154be65SJarod Wilson 
7303228bf81SGreg Kroah-Hartman 	dev_dbg(dev, "Setting modulation frequency to %u", carrier);
73148cafec9SDan Carpenter 	if (carrier == 0)
73248cafec9SDan Carpenter 		return -EINVAL;
73348cafec9SDan Carpenter 
7342154be65SJarod Wilson 	rr3->carrier = carrier;
7352154be65SJarod Wilson 
73614d8188aSSean Young 	return 0;
7372154be65SJarod Wilson }
7382154be65SJarod Wilson 
739dbea1880SAndrew Vincer static int redrat3_transmit_ir(struct rc_dev *rcdev, unsigned *txbuf,
740dbea1880SAndrew Vincer 				unsigned count)
7412154be65SJarod Wilson {
7422154be65SJarod Wilson 	struct redrat3_dev *rr3 = rcdev->priv;
7432154be65SJarod Wilson 	struct device *dev = rr3->dev;
7444c055a5aSSean Young 	struct redrat3_irdata *irdata = NULL;
745fa7b9ac2SSean Young 	int ret, ret_len;
7462154be65SJarod Wilson 	int lencheck, cur_sample_len, pipe;
7472154be65SJarod Wilson 	int *sample_lens = NULL;
7482154be65SJarod Wilson 	u8 curlencheck = 0;
749fa7b9ac2SSean Young 	unsigned i, sendbuf_len;
7502154be65SJarod Wilson 
7512154be65SJarod Wilson 	if (rr3->transmitting) {
7522154be65SJarod Wilson 		dev_warn(dev, "%s: transmitter already in use\n", __func__);
7532154be65SJarod Wilson 		return -EAGAIN;
7542154be65SJarod Wilson 	}
7552154be65SJarod Wilson 
756671ea670SSean Young 	if (count > RR3_MAX_SIG_SIZE - RR3_TX_TRAILER_LEN)
757671ea670SSean Young 		return -EINVAL;
7582154be65SJarod Wilson 
759dbea1880SAndrew Vincer 	/* rr3 will disable rc detector on transmit */
7602154be65SJarod Wilson 	rr3->transmitting = true;
7612154be65SJarod Wilson 
7620bebaa5fSMarkus Elfring 	sample_lens = kcalloc(RR3_DRIVER_MAXLENS,
7630bebaa5fSMarkus Elfring 			      sizeof(*sample_lens),
7640bebaa5fSMarkus Elfring 			      GFP_KERNEL);
765fac59136SMarkus Elfring 	if (!sample_lens)
766fac59136SMarkus Elfring 		return -ENOMEM;
7672154be65SJarod Wilson 
7684c055a5aSSean Young 	irdata = kzalloc(sizeof(*irdata), GFP_KERNEL);
7694c055a5aSSean Young 	if (!irdata) {
770801b69f2SSean Young 		ret = -ENOMEM;
771801b69f2SSean Young 		goto out;
772801b69f2SSean Young 	}
773801b69f2SSean Young 
7742154be65SJarod Wilson 	for (i = 0; i < count; i++) {
7752154be65SJarod Wilson 		cur_sample_len = redrat3_us_to_len(txbuf[i]);
776801b69f2SSean Young 		if (cur_sample_len > 0xffff) {
777801b69f2SSean Young 			dev_warn(dev, "transmit period of %uus truncated to %uus\n",
778801b69f2SSean Young 					txbuf[i], redrat3_len_to_us(0xffff));
779801b69f2SSean Young 			cur_sample_len = 0xffff;
780801b69f2SSean Young 		}
78106eae25fSSean Young 		for (lencheck = 0; lencheck < curlencheck; lencheck++) {
7822154be65SJarod Wilson 			if (sample_lens[lencheck] == cur_sample_len)
7832154be65SJarod Wilson 				break;
7842154be65SJarod Wilson 		}
7852154be65SJarod Wilson 		if (lencheck == curlencheck) {
7863228bf81SGreg Kroah-Hartman 			dev_dbg(dev, "txbuf[%d]=%u, pos %d, enc %u\n",
7872154be65SJarod Wilson 				i, txbuf[i], curlencheck, cur_sample_len);
78806eae25fSSean Young 			if (curlencheck < RR3_DRIVER_MAXLENS) {
7892154be65SJarod Wilson 				/* now convert the value to a proper
7902154be65SJarod Wilson 				 * rr3 value.. */
7912154be65SJarod Wilson 				sample_lens[curlencheck] = cur_sample_len;
7924c055a5aSSean Young 				put_unaligned_be16(cur_sample_len,
7934c055a5aSSean Young 						&irdata->lens[curlencheck]);
7942154be65SJarod Wilson 				curlencheck++;
7952154be65SJarod Wilson 			} else {
796671ea670SSean Young 				ret = -EINVAL;
797671ea670SSean Young 				goto out;
7982154be65SJarod Wilson 			}
7992154be65SJarod Wilson 		}
8004c055a5aSSean Young 		irdata->sigdata[i] = lencheck;
8012154be65SJarod Wilson 	}
8022154be65SJarod Wilson 
8034c055a5aSSean Young 	irdata->sigdata[count] = RR3_END_OF_SIGNAL;
8044c055a5aSSean Young 	irdata->sigdata[count + 1] = RR3_END_OF_SIGNAL;
8052154be65SJarod Wilson 
8064c055a5aSSean Young 	sendbuf_len = offsetof(struct redrat3_irdata,
8074c055a5aSSean Young 					sigdata[count + RR3_TX_TRAILER_LEN]);
8082154be65SJarod Wilson 	/* fill in our packet header */
8094c055a5aSSean Young 	irdata->header.length = cpu_to_be16(sendbuf_len -
8104c055a5aSSean Young 						sizeof(struct redrat3_header));
8114c055a5aSSean Young 	irdata->header.transfer_type = cpu_to_be16(RR3_MOD_SIGNAL_OUT);
8124c055a5aSSean Young 	irdata->pause = cpu_to_be32(redrat3_len_to_us(100));
8134c055a5aSSean Young 	irdata->mod_freq_count = cpu_to_be16(mod_freq_to_val(rr3->carrier));
8144c055a5aSSean Young 	irdata->no_lengths = curlencheck;
8154c055a5aSSean Young 	irdata->sig_size = cpu_to_be16(count + RR3_TX_TRAILER_LEN);
8162154be65SJarod Wilson 
8172154be65SJarod Wilson 	pipe = usb_sndbulkpipe(rr3->udev, rr3->ep_out->bEndpointAddress);
8184c055a5aSSean Young 	ret = usb_bulk_msg(rr3->udev, pipe, irdata,
8192154be65SJarod Wilson 			    sendbuf_len, &ret_len, 10 * HZ);
8203228bf81SGreg Kroah-Hartman 	dev_dbg(dev, "sent %d bytes, (ret %d)\n", ret_len, ret);
8212154be65SJarod Wilson 
8222154be65SJarod Wilson 	/* now tell the hardware to transmit what we sent it */
8232154be65SJarod Wilson 	pipe = usb_rcvctrlpipe(rr3->udev, 0);
8242154be65SJarod Wilson 	ret = usb_control_msg(rr3->udev, pipe, RR3_TX_SEND_SIGNAL,
8252154be65SJarod Wilson 			      USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_IN,
8264c055a5aSSean Young 			      0, 0, irdata, 2, HZ * 10);
8272154be65SJarod Wilson 
8282154be65SJarod Wilson 	if (ret < 0)
8292154be65SJarod Wilson 		dev_err(dev, "Error: control msg send failed, rc %d\n", ret);
8302154be65SJarod Wilson 	else
831dbea1880SAndrew Vincer 		ret = count;
8322154be65SJarod Wilson 
8332154be65SJarod Wilson out:
8344c055a5aSSean Young 	kfree(irdata);
835fac59136SMarkus Elfring 	kfree(sample_lens);
8362154be65SJarod Wilson 
8372154be65SJarod Wilson 	rr3->transmitting = false;
838dbea1880SAndrew Vincer 	/* rr3 re-enables rc detector because it was enabled before */
8392154be65SJarod Wilson 
8402154be65SJarod Wilson 	return ret;
8412154be65SJarod Wilson }
8422154be65SJarod Wilson 
843bf139726SSean Young static void redrat3_brightness_set(struct led_classdev *led_dev, enum
844bf139726SSean Young 						led_brightness brightness)
845bf139726SSean Young {
846bf139726SSean Young 	struct redrat3_dev *rr3 = container_of(led_dev, struct redrat3_dev,
847bf139726SSean Young 									led);
848bf139726SSean Young 
849bf139726SSean Young 	if (brightness != LED_OFF && atomic_cmpxchg(&rr3->flash, 0, 1) == 0) {
850bf139726SSean Young 		int ret = usb_submit_urb(rr3->flash_urb, GFP_ATOMIC);
851bf139726SSean Young 		if (ret != 0) {
852bf139726SSean Young 			dev_dbg(rr3->dev, "%s: unexpected ret of %d\n",
853bf139726SSean Young 				__func__, ret);
854bf139726SSean Young 			atomic_set(&rr3->flash, 0);
855bf139726SSean Young 		}
856bf139726SSean Young 	}
857bf139726SSean Young }
858bf139726SSean Young 
859bf139726SSean Young static void redrat3_led_complete(struct urb *urb)
860bf139726SSean Young {
861bf139726SSean Young 	struct redrat3_dev *rr3 = urb->context;
862bf139726SSean Young 
863bf139726SSean Young 	switch (urb->status) {
864bf139726SSean Young 	case 0:
865bf139726SSean Young 		break;
866bf139726SSean Young 	case -ECONNRESET:
867bf139726SSean Young 	case -ENOENT:
868bf139726SSean Young 	case -ESHUTDOWN:
869bf139726SSean Young 		usb_unlink_urb(urb);
870bf139726SSean Young 		return;
871bf139726SSean Young 	case -EPIPE:
872bf139726SSean Young 	default:
873bf139726SSean Young 		dev_dbg(rr3->dev, "Error: urb status = %d\n", urb->status);
874bf139726SSean Young 		break;
875bf139726SSean Young 	}
876bf139726SSean Young 
877bf139726SSean Young 	rr3->led.brightness = LED_OFF;
878bf139726SSean Young 	atomic_dec(&rr3->flash);
879bf139726SSean Young }
880bf139726SSean Young 
8812154be65SJarod Wilson static struct rc_dev *redrat3_init_rc_dev(struct redrat3_dev *rr3)
8822154be65SJarod Wilson {
8832154be65SJarod Wilson 	struct device *dev = rr3->dev;
8842154be65SJarod Wilson 	struct rc_dev *rc;
8859d45d5fbSMarkus Elfring 	int ret;
8862154be65SJarod Wilson 	u16 prod = le16_to_cpu(rr3->udev->descriptor.idProduct);
8872154be65SJarod Wilson 
8882154be65SJarod Wilson 	rc = rc_allocate_device();
889559f64d4SMarkus Elfring 	if (!rc)
8903f81678dSMarkus Elfring 		return NULL;
8912154be65SJarod Wilson 
892da500033SSean Young 	snprintf(rr3->name, sizeof(rr3->name),
893da500033SSean Young 		 "RedRat3%s Infrared Remote Transceiver",
894da500033SSean Young 		 prod == USB_RR3IIUSB_PRODUCT_ID ? "-II" : "");
8952154be65SJarod Wilson 
8962154be65SJarod Wilson 	usb_make_path(rr3->udev, rr3->phys, sizeof(rr3->phys));
8972154be65SJarod Wilson 
8982154be65SJarod Wilson 	rc->input_name = rr3->name;
8992154be65SJarod Wilson 	rc->input_phys = rr3->phys;
9002154be65SJarod Wilson 	usb_to_input_id(rr3->udev, &rc->input_id);
9012154be65SJarod Wilson 	rc->dev.parent = dev;
9022154be65SJarod Wilson 	rc->priv = rr3;
9032154be65SJarod Wilson 	rc->driver_type = RC_DRIVER_IR_RAW;
904c5540fbbSDavid Härdeman 	rc->allowed_protocols = RC_BIT_ALL;
9054f253cecSSean Young 	rc->min_timeout = MS_TO_NS(RR3_RX_MIN_TIMEOUT);
9064f253cecSSean Young 	rc->max_timeout = MS_TO_NS(RR3_RX_MAX_TIMEOUT);
907c7470ff2SSean Young 	rc->timeout = US_TO_NS(redrat3_get_timeout(rr3));
9084f253cecSSean Young 	rc->s_timeout = redrat3_set_timeout;
9092154be65SJarod Wilson 	rc->tx_ir = redrat3_transmit_ir;
9102154be65SJarod Wilson 	rc->s_tx_carrier = redrat3_set_tx_carrier;
9112154be65SJarod Wilson 	rc->driver_name = DRIVER_NAME;
91206eae25fSSean Young 	rc->rx_resolution = US_TO_NS(2);
9132154be65SJarod Wilson 	rc->map_name = RC_MAP_HAUPPAUGE;
9142154be65SJarod Wilson 
9152154be65SJarod Wilson 	ret = rc_register_device(rc);
9162154be65SJarod Wilson 	if (ret < 0) {
9172154be65SJarod Wilson 		dev_err(dev, "remote dev registration failed\n");
9182154be65SJarod Wilson 		goto out;
9192154be65SJarod Wilson 	}
9202154be65SJarod Wilson 
9212154be65SJarod Wilson 	return rc;
9222154be65SJarod Wilson 
9232154be65SJarod Wilson out:
9242154be65SJarod Wilson 	rc_free_device(rc);
9252154be65SJarod Wilson 	return NULL;
9262154be65SJarod Wilson }
9272154be65SJarod Wilson 
9284c62e976SGreg Kroah-Hartman static int redrat3_dev_probe(struct usb_interface *intf,
9292154be65SJarod Wilson 			     const struct usb_device_id *id)
9302154be65SJarod Wilson {
9312154be65SJarod Wilson 	struct usb_device *udev = interface_to_usbdev(intf);
9322154be65SJarod Wilson 	struct device *dev = &intf->dev;
9332154be65SJarod Wilson 	struct usb_host_interface *uhi;
9342154be65SJarod Wilson 	struct redrat3_dev *rr3;
9352154be65SJarod Wilson 	struct usb_endpoint_descriptor *ep;
9362154be65SJarod Wilson 	struct usb_endpoint_descriptor *ep_in = NULL;
9372154be65SJarod Wilson 	struct usb_endpoint_descriptor *ep_out = NULL;
9382154be65SJarod Wilson 	u8 addr, attrs;
9392154be65SJarod Wilson 	int pipe, i;
9402154be65SJarod Wilson 	int retval = -ENOMEM;
9412154be65SJarod Wilson 
9422154be65SJarod Wilson 	uhi = intf->cur_altsetting;
9432154be65SJarod Wilson 
9442154be65SJarod Wilson 	/* find our bulk-in and bulk-out endpoints */
9452154be65SJarod Wilson 	for (i = 0; i < uhi->desc.bNumEndpoints; ++i) {
9462154be65SJarod Wilson 		ep = &uhi->endpoint[i].desc;
9472154be65SJarod Wilson 		addr = ep->bEndpointAddress;
9482154be65SJarod Wilson 		attrs = ep->bmAttributes;
9492154be65SJarod Wilson 
9502154be65SJarod Wilson 		if ((ep_in == NULL) &&
9512154be65SJarod Wilson 		    ((addr & USB_ENDPOINT_DIR_MASK) == USB_DIR_IN) &&
9522154be65SJarod Wilson 		    ((attrs & USB_ENDPOINT_XFERTYPE_MASK) ==
9532154be65SJarod Wilson 		     USB_ENDPOINT_XFER_BULK)) {
9543228bf81SGreg Kroah-Hartman 			dev_dbg(dev, "found bulk-in endpoint at 0x%02x\n",
9552154be65SJarod Wilson 				ep->bEndpointAddress);
9562154be65SJarod Wilson 			/* data comes in on 0x82, 0x81 is for other data... */
9572154be65SJarod Wilson 			if (ep->bEndpointAddress == RR3_BULK_IN_EP_ADDR)
9582154be65SJarod Wilson 				ep_in = ep;
9592154be65SJarod Wilson 		}
9602154be65SJarod Wilson 
9612154be65SJarod Wilson 		if ((ep_out == NULL) &&
9622154be65SJarod Wilson 		    ((addr & USB_ENDPOINT_DIR_MASK) == USB_DIR_OUT) &&
9632154be65SJarod Wilson 		    ((attrs & USB_ENDPOINT_XFERTYPE_MASK) ==
9642154be65SJarod Wilson 		     USB_ENDPOINT_XFER_BULK)) {
9653228bf81SGreg Kroah-Hartman 			dev_dbg(dev, "found bulk-out endpoint at 0x%02x\n",
9662154be65SJarod Wilson 				ep->bEndpointAddress);
9672154be65SJarod Wilson 			ep_out = ep;
9682154be65SJarod Wilson 		}
9692154be65SJarod Wilson 	}
9702154be65SJarod Wilson 
9712154be65SJarod Wilson 	if (!ep_in || !ep_out) {
9722154be65SJarod Wilson 		dev_err(dev, "Couldn't find both in and out endpoints\n");
9732154be65SJarod Wilson 		retval = -ENODEV;
9742154be65SJarod Wilson 		goto no_endpoints;
9752154be65SJarod Wilson 	}
9762154be65SJarod Wilson 
9772154be65SJarod Wilson 	/* allocate memory for our device state and initialize it */
9782154be65SJarod Wilson 	rr3 = kzalloc(sizeof(*rr3), GFP_KERNEL);
979559f64d4SMarkus Elfring 	if (!rr3)
9807eb75715SDan Carpenter 		goto no_endpoints;
9812154be65SJarod Wilson 
9822154be65SJarod Wilson 	rr3->dev = &intf->dev;
983*8a21ec9bSSean Young 	rr3->ep_in = ep_in;
984*8a21ec9bSSean Young 	rr3->ep_out = ep_out;
985*8a21ec9bSSean Young 	rr3->udev = udev;
9862154be65SJarod Wilson 
9872154be65SJarod Wilson 	/* set up bulk-in endpoint */
9882154be65SJarod Wilson 	rr3->read_urb = usb_alloc_urb(0, GFP_KERNEL);
989cd859c19SWolfram Sang 	if (!rr3->read_urb)
990*8a21ec9bSSean Young 		goto redrat_free;
9912154be65SJarod Wilson 
992fa7b9ac2SSean Young 	rr3->bulk_in_buf = usb_alloc_coherent(udev,
993d0a0a65eSSean Young 		le16_to_cpu(ep_in->wMaxPacketSize), GFP_KERNEL, &rr3->dma_in);
994559f64d4SMarkus Elfring 	if (!rr3->bulk_in_buf)
995*8a21ec9bSSean Young 		goto redrat_free;
9962154be65SJarod Wilson 
9972154be65SJarod Wilson 	pipe = usb_rcvbulkpipe(udev, ep_in->bEndpointAddress);
998fa7b9ac2SSean Young 	usb_fill_bulk_urb(rr3->read_urb, udev, pipe, rr3->bulk_in_buf,
999fa7b9ac2SSean Young 		le16_to_cpu(ep_in->wMaxPacketSize), redrat3_handle_async, rr3);
1000d0a0a65eSSean Young 	rr3->read_urb->transfer_dma = rr3->dma_in;
1001d0a0a65eSSean Young 	rr3->read_urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
10022154be65SJarod Wilson 
10032154be65SJarod Wilson 	redrat3_reset(rr3);
10042154be65SJarod Wilson 	redrat3_get_firmware_rev(rr3);
10052154be65SJarod Wilson 
10062154be65SJarod Wilson 	/* default.. will get overridden by any sends with a freq defined */
10072154be65SJarod Wilson 	rr3->carrier = 38000;
10082154be65SJarod Wilson 
1009bf139726SSean Young 	atomic_set(&rr3->flash, 0);
1010bf139726SSean Young 	rr3->flash_urb = usb_alloc_urb(0, GFP_KERNEL);
1011*8a21ec9bSSean Young 	if (!rr3->flash_urb)
1012*8a21ec9bSSean Young 		goto redrat_free;
1013bf139726SSean Young 
1014bf139726SSean Young 	/* setup packet is 'c0 b9 0000 0000 0001' */
1015bf139726SSean Young 	rr3->flash_control.bRequestType = 0xc0;
1016bf139726SSean Young 	rr3->flash_control.bRequest = RR3_BLINK_LED;
1017bf139726SSean Young 	rr3->flash_control.wLength = cpu_to_le16(1);
1018bf139726SSean Young 
1019bf139726SSean Young 	usb_fill_control_urb(rr3->flash_urb, udev, usb_rcvctrlpipe(udev, 0),
1020bf139726SSean Young 			(unsigned char *)&rr3->flash_control,
1021bf139726SSean Young 			&rr3->flash_in_buf, sizeof(rr3->flash_in_buf),
1022bf139726SSean Young 			redrat3_led_complete, rr3);
1023bf139726SSean Young 
1024*8a21ec9bSSean Young 	/* led control */
1025*8a21ec9bSSean Young 	rr3->led.name = "redrat3:red:feedback";
1026*8a21ec9bSSean Young 	rr3->led.default_trigger = "rc-feedback";
1027*8a21ec9bSSean Young 	rr3->led.brightness_set = redrat3_brightness_set;
1028*8a21ec9bSSean Young 	retval = led_classdev_register(&intf->dev, &rr3->led);
1029*8a21ec9bSSean Young 	if (retval)
1030*8a21ec9bSSean Young 		goto redrat_free;
1031*8a21ec9bSSean Young 
10322154be65SJarod Wilson 	rr3->rc = redrat3_init_rc_dev(rr3);
10336ea7cf76SPeter Senna Tschudin 	if (!rr3->rc) {
10346ea7cf76SPeter Senna Tschudin 		retval = -ENOMEM;
1035*8a21ec9bSSean Young 		goto led_free;
10366ea7cf76SPeter Senna Tschudin 	}
10372154be65SJarod Wilson 
1038*8a21ec9bSSean Young 	/* might be all we need to do? */
1039*8a21ec9bSSean Young 	retval = redrat3_enable_detector(rr3);
1040*8a21ec9bSSean Young 	if (retval < 0)
1041*8a21ec9bSSean Young 		goto led_free;
1042*8a21ec9bSSean Young 
10432154be65SJarod Wilson 	/* we can register the device now, as it is ready */
10442154be65SJarod Wilson 	usb_set_intfdata(intf, rr3);
10452154be65SJarod Wilson 
10462154be65SJarod Wilson 	return 0;
10472154be65SJarod Wilson 
1048*8a21ec9bSSean Young led_free:
1049bf139726SSean Young 	led_classdev_unregister(&rr3->led);
1050*8a21ec9bSSean Young redrat_free:
10512154be65SJarod Wilson 	redrat3_delete(rr3, rr3->udev);
10522154be65SJarod Wilson 
10532154be65SJarod Wilson no_endpoints:
10542154be65SJarod Wilson 	return retval;
10552154be65SJarod Wilson }
10562154be65SJarod Wilson 
10574c62e976SGreg Kroah-Hartman static void redrat3_dev_disconnect(struct usb_interface *intf)
10582154be65SJarod Wilson {
10592154be65SJarod Wilson 	struct usb_device *udev = interface_to_usbdev(intf);
10602154be65SJarod Wilson 	struct redrat3_dev *rr3 = usb_get_intfdata(intf);
10612154be65SJarod Wilson 
10622154be65SJarod Wilson 	usb_set_intfdata(intf, NULL);
10632154be65SJarod Wilson 	rc_unregister_device(rr3->rc);
1064bf139726SSean Young 	led_classdev_unregister(&rr3->led);
10652154be65SJarod Wilson 	redrat3_delete(rr3, udev);
10662154be65SJarod Wilson }
10672154be65SJarod Wilson 
10682154be65SJarod Wilson static int redrat3_dev_suspend(struct usb_interface *intf, pm_message_t message)
10692154be65SJarod Wilson {
10702154be65SJarod Wilson 	struct redrat3_dev *rr3 = usb_get_intfdata(intf);
1071a36d5b61SGreg Kroah-Hartman 
1072bf139726SSean Young 	led_classdev_suspend(&rr3->led);
10732154be65SJarod Wilson 	usb_kill_urb(rr3->read_urb);
1074bf139726SSean Young 	usb_kill_urb(rr3->flash_urb);
10752154be65SJarod Wilson 	return 0;
10762154be65SJarod Wilson }
10772154be65SJarod Wilson 
10782154be65SJarod Wilson static int redrat3_dev_resume(struct usb_interface *intf)
10792154be65SJarod Wilson {
10802154be65SJarod Wilson 	struct redrat3_dev *rr3 = usb_get_intfdata(intf);
1081a36d5b61SGreg Kroah-Hartman 
10822154be65SJarod Wilson 	if (usb_submit_urb(rr3->read_urb, GFP_ATOMIC))
10832154be65SJarod Wilson 		return -EIO;
1084bf139726SSean Young 	led_classdev_resume(&rr3->led);
10852154be65SJarod Wilson 	return 0;
10862154be65SJarod Wilson }
10872154be65SJarod Wilson 
10882154be65SJarod Wilson static struct usb_driver redrat3_dev_driver = {
10892154be65SJarod Wilson 	.name		= DRIVER_NAME,
10902154be65SJarod Wilson 	.probe		= redrat3_dev_probe,
10914c62e976SGreg Kroah-Hartman 	.disconnect	= redrat3_dev_disconnect,
10922154be65SJarod Wilson 	.suspend	= redrat3_dev_suspend,
10932154be65SJarod Wilson 	.resume		= redrat3_dev_resume,
10942154be65SJarod Wilson 	.reset_resume	= redrat3_dev_resume,
10952154be65SJarod Wilson 	.id_table	= redrat3_dev_table
10962154be65SJarod Wilson };
10972154be65SJarod Wilson 
1098ecb3b2b3SGreg Kroah-Hartman module_usb_driver(redrat3_dev_driver);
10992154be65SJarod Wilson 
11002154be65SJarod Wilson MODULE_DESCRIPTION(DRIVER_DESC);
11012154be65SJarod Wilson MODULE_AUTHOR(DRIVER_AUTHOR);
11022154be65SJarod Wilson MODULE_AUTHOR(DRIVER_AUTHOR2);
11032154be65SJarod Wilson MODULE_LICENSE("GPL");
11042154be65SJarod Wilson MODULE_DEVICE_TABLE(usb, redrat3_dev_table);
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