1c942fddfSThomas Gleixner // SPDX-License-Identifier: GPL-2.0-or-later 22154be65SJarod Wilson /* 32154be65SJarod Wilson * USB RedRat3 IR Transceiver rc-core driver 42154be65SJarod Wilson * 52154be65SJarod Wilson * Copyright (c) 2011 by Jarod Wilson <jarod@redhat.com> 62154be65SJarod Wilson * based heavily on the work of Stephen Cox, with additional 72154be65SJarod Wilson * help from RedRat Ltd. 82154be65SJarod Wilson * 9*adb08a09Slijian * This driver began life based on an old version of the first-generation 102154be65SJarod Wilson * lirc_mceusb driver from the lirc 0.7.2 distribution. It was then 112154be65SJarod Wilson * significantly rewritten by Stephen Cox with the aid of RedRat Ltd's 122154be65SJarod Wilson * Chris Dodge. 132154be65SJarod Wilson * 142154be65SJarod Wilson * The driver was then ported to rc-core and significantly rewritten again, 152154be65SJarod Wilson * by Jarod, using the in-kernel mceusb driver as a guide, after an initial 162154be65SJarod Wilson * port effort was started by Stephen. 172154be65SJarod Wilson * 182154be65SJarod Wilson * TODO LIST: 192154be65SJarod Wilson * - fix lirc not showing repeats properly 202154be65SJarod Wilson * -- 212154be65SJarod Wilson * 222154be65SJarod Wilson * The RedRat3 is a USB transceiver with both send & receive, 232154be65SJarod Wilson * with 2 separate sensors available for receive to enable 242154be65SJarod Wilson * both good long range reception for general use, and good 252154be65SJarod Wilson * short range reception when required for learning a signal. 262154be65SJarod Wilson * 272154be65SJarod Wilson * http://www.redrat.co.uk/ 282154be65SJarod Wilson * 292154be65SJarod Wilson * It uses its own little protocol to communicate, the required 302154be65SJarod Wilson * parts of which are embedded within this driver. 312154be65SJarod Wilson * -- 322154be65SJarod Wilson */ 332154be65SJarod Wilson 344c055a5aSSean Young #include <asm/unaligned.h> 352154be65SJarod Wilson #include <linux/device.h> 36bf139726SSean Young #include <linux/leds.h> 372154be65SJarod Wilson #include <linux/module.h> 382154be65SJarod Wilson #include <linux/slab.h> 392154be65SJarod Wilson #include <linux/usb.h> 402154be65SJarod Wilson #include <linux/usb/input.h> 412154be65SJarod Wilson #include <media/rc-core.h> 422154be65SJarod Wilson 432154be65SJarod Wilson /* Driver Information */ 442154be65SJarod Wilson #define DRIVER_AUTHOR "Jarod Wilson <jarod@redhat.com>" 452154be65SJarod Wilson #define DRIVER_AUTHOR2 "The Dweller, Stephen Cox" 462154be65SJarod Wilson #define DRIVER_DESC "RedRat3 USB IR Transceiver Driver" 472154be65SJarod Wilson #define DRIVER_NAME "redrat3" 482154be65SJarod Wilson 492154be65SJarod Wilson /* bulk data transfer types */ 502154be65SJarod Wilson #define RR3_ERROR 0x01 512154be65SJarod Wilson #define RR3_MOD_SIGNAL_IN 0x20 522154be65SJarod Wilson #define RR3_MOD_SIGNAL_OUT 0x21 532154be65SJarod Wilson 542154be65SJarod Wilson /* Get the RR firmware version */ 552154be65SJarod Wilson #define RR3_FW_VERSION 0xb1 562154be65SJarod Wilson #define RR3_FW_VERSION_LEN 64 572154be65SJarod Wilson /* Send encoded signal bulk-sent earlier*/ 582154be65SJarod Wilson #define RR3_TX_SEND_SIGNAL 0xb3 592154be65SJarod Wilson #define RR3_SET_IR_PARAM 0xb7 602154be65SJarod Wilson #define RR3_GET_IR_PARAM 0xb8 612154be65SJarod Wilson /* Blink the red LED on the device */ 622154be65SJarod Wilson #define RR3_BLINK_LED 0xb9 632154be65SJarod Wilson /* Read serial number of device */ 642154be65SJarod Wilson #define RR3_READ_SER_NO 0xba 652154be65SJarod Wilson #define RR3_SER_NO_LEN 4 662154be65SJarod Wilson /* Start capture with the RC receiver */ 672154be65SJarod Wilson #define RR3_RC_DET_ENABLE 0xbb 682154be65SJarod Wilson /* Stop capture with the RC receiver */ 692154be65SJarod Wilson #define RR3_RC_DET_DISABLE 0xbc 70c49fcddeSSean Young /* Start capture with the wideband receiver */ 71c49fcddeSSean Young #define RR3_MODSIG_CAPTURE 0xb2 722154be65SJarod Wilson /* Return the status of RC detector capture */ 732154be65SJarod Wilson #define RR3_RC_DET_STATUS 0xbd 742154be65SJarod Wilson /* Reset redrat */ 752154be65SJarod Wilson #define RR3_RESET 0xa0 762154be65SJarod Wilson 772154be65SJarod Wilson /* Max number of lengths in the signal. */ 782154be65SJarod Wilson #define RR3_IR_IO_MAX_LENGTHS 0x01 792154be65SJarod Wilson /* Periods to measure mod. freq. */ 802154be65SJarod Wilson #define RR3_IR_IO_PERIODS_MF 0x02 812154be65SJarod Wilson /* Size of memory for main signal data */ 822154be65SJarod Wilson #define RR3_IR_IO_SIG_MEM_SIZE 0x03 832154be65SJarod Wilson /* Delta value when measuring lengths */ 842154be65SJarod Wilson #define RR3_IR_IO_LENGTH_FUZZ 0x04 852154be65SJarod Wilson /* Timeout for end of signal detection */ 862154be65SJarod Wilson #define RR3_IR_IO_SIG_TIMEOUT 0x05 8739c1cb2bSJonathan McCrohan /* Minimum value for pause recognition. */ 882154be65SJarod Wilson #define RR3_IR_IO_MIN_PAUSE 0x06 892154be65SJarod Wilson 902154be65SJarod Wilson /* Clock freq. of EZ-USB chip */ 912154be65SJarod Wilson #define RR3_CLK 24000000 922154be65SJarod Wilson /* Clock periods per timer count */ 932154be65SJarod Wilson #define RR3_CLK_PER_COUNT 12 942154be65SJarod Wilson /* (RR3_CLK / RR3_CLK_PER_COUNT) */ 952154be65SJarod Wilson #define RR3_CLK_CONV_FACTOR 2000000 96c49fcddeSSean Young /* USB bulk-in wideband IR data endpoint address */ 97c49fcddeSSean Young #define RR3_WIDE_IN_EP_ADDR 0x81 98c49fcddeSSean Young /* USB bulk-in narrowband IR data endpoint address */ 99c49fcddeSSean Young #define RR3_NARROW_IN_EP_ADDR 0x82 1002154be65SJarod Wilson 1012154be65SJarod Wilson /* Size of the fixed-length portion of the signal */ 102a48c4bbdSSean Young #define RR3_DRIVER_MAXLENS 255 1032154be65SJarod Wilson #define RR3_MAX_SIG_SIZE 512 1042154be65SJarod Wilson #define RR3_TIME_UNIT 50 1052154be65SJarod Wilson #define RR3_END_OF_SIGNAL 0x7f 1062154be65SJarod Wilson #define RR3_TX_TRAILER_LEN 2 1072154be65SJarod Wilson #define RR3_RX_MIN_TIMEOUT 5 1082154be65SJarod Wilson #define RR3_RX_MAX_TIMEOUT 2000 1092154be65SJarod Wilson 1102154be65SJarod Wilson /* The 8051's CPUCS Register address */ 1112154be65SJarod Wilson #define RR3_CPUCS_REG_ADDR 0x7f92 1122154be65SJarod Wilson 1132154be65SJarod Wilson #define USB_RR3USB_VENDOR_ID 0x112a 1142154be65SJarod Wilson #define USB_RR3USB_PRODUCT_ID 0x0001 1152154be65SJarod Wilson #define USB_RR3IIUSB_PRODUCT_ID 0x0005 1162154be65SJarod Wilson 117d6ae162bSSean Young 118d6ae162bSSean Young /* 119d6ae162bSSean Young * The redrat3 encodes an IR signal as set of different lengths and a set 120d6ae162bSSean Young * of indices into those lengths. This sets how much two lengths must 121d6ae162bSSean Young * differ before they are considered distinct, the value is specified 122d6ae162bSSean Young * in microseconds. 123d6ae162bSSean Young * Default 5, value 0 to 127. 124d6ae162bSSean Young */ 125d6ae162bSSean Young static int length_fuzz = 5; 126d6ae162bSSean Young module_param(length_fuzz, uint, 0644); 127d6ae162bSSean Young MODULE_PARM_DESC(length_fuzz, "Length Fuzz (0-127)"); 128d6ae162bSSean Young 129d6ae162bSSean Young /* 130d6ae162bSSean Young * When receiving a continuous ir stream (for example when a user is 131d6ae162bSSean Young * holding a button down on a remote), this specifies the minimum size 132d6ae162bSSean Young * of a space when the redrat3 sends a irdata packet to the host. Specified 13304ad3011SMauro Carvalho Chehab * in milliseconds. Default value 18ms. 134d6ae162bSSean Young * The value can be between 2 and 30 inclusive. 135d6ae162bSSean Young */ 136d6ae162bSSean Young static int minimum_pause = 18; 137d6ae162bSSean Young module_param(minimum_pause, uint, 0644); 138d6ae162bSSean Young MODULE_PARM_DESC(minimum_pause, "Minimum Pause in ms (2-30)"); 139d6ae162bSSean Young 140d6ae162bSSean Young /* 141d6ae162bSSean Young * The carrier frequency is measured during the first pulse of the IR 142d6ae162bSSean Young * signal. The larger the number of periods used To measure, the more 143d6ae162bSSean Young * accurate the result is likely to be, however some signals have short 144d6ae162bSSean Young * initial pulses, so in some case it may be necessary to reduce this value. 145d6ae162bSSean Young * Default 8, value 1 to 255. 146d6ae162bSSean Young */ 147d6ae162bSSean Young static int periods_measure_carrier = 8; 148d6ae162bSSean Young module_param(periods_measure_carrier, uint, 0644); 149d6ae162bSSean Young MODULE_PARM_DESC(periods_measure_carrier, "Number of Periods to Measure Carrier (1-255)"); 150d6ae162bSSean Young 151d6ae162bSSean Young 1524c055a5aSSean Young struct redrat3_header { 1534c055a5aSSean Young __be16 length; 1544c055a5aSSean Young __be16 transfer_type; 1554c055a5aSSean Young } __packed; 1564c055a5aSSean Young 1574c055a5aSSean Young /* sending and receiving irdata */ 1584c055a5aSSean Young struct redrat3_irdata { 1594c055a5aSSean Young struct redrat3_header header; 1604c055a5aSSean Young __be32 pause; 1614c055a5aSSean Young __be16 mod_freq_count; 1624c055a5aSSean Young __be16 num_periods; 1634c055a5aSSean Young __u8 max_lengths; 1644c055a5aSSean Young __u8 no_lengths; 1654c055a5aSSean Young __be16 max_sig_size; 1664c055a5aSSean Young __be16 sig_size; 1674c055a5aSSean Young __u8 no_repeats; 1684c055a5aSSean Young __be16 lens[RR3_DRIVER_MAXLENS]; /* not aligned */ 1694c055a5aSSean Young __u8 sigdata[RR3_MAX_SIG_SIZE]; 1704c055a5aSSean Young } __packed; 1714c055a5aSSean Young 1724c055a5aSSean Young /* firmware errors */ 1734c055a5aSSean Young struct redrat3_error { 1744c055a5aSSean Young struct redrat3_header header; 1754c055a5aSSean Young __be16 fw_error; 1764c055a5aSSean Young } __packed; 1774c055a5aSSean Young 1782154be65SJarod Wilson /* table of devices that work with this driver */ 1795fad16b5SArvind Yadav static const struct usb_device_id redrat3_dev_table[] = { 1802154be65SJarod Wilson /* Original version of the RedRat3 */ 1812154be65SJarod Wilson {USB_DEVICE(USB_RR3USB_VENDOR_ID, USB_RR3USB_PRODUCT_ID)}, 1822154be65SJarod Wilson /* Second Version/release of the RedRat3 - RetRat3-II */ 1832154be65SJarod Wilson {USB_DEVICE(USB_RR3USB_VENDOR_ID, USB_RR3IIUSB_PRODUCT_ID)}, 1842154be65SJarod Wilson {} /* Terminating entry */ 1852154be65SJarod Wilson }; 1862154be65SJarod Wilson 1872154be65SJarod Wilson /* Structure to hold all of our device specific stuff */ 1882154be65SJarod Wilson struct redrat3_dev { 1892154be65SJarod Wilson /* core device bits */ 1902154be65SJarod Wilson struct rc_dev *rc; 1912154be65SJarod Wilson struct device *dev; 1922154be65SJarod Wilson 193bf139726SSean Young /* led control */ 194bf139726SSean Young struct led_classdev led; 195bf139726SSean Young atomic_t flash; 196bf139726SSean Young struct usb_ctrlrequest flash_control; 197bf139726SSean Young struct urb *flash_urb; 198bf139726SSean Young u8 flash_in_buf; 199bf139726SSean Young 200c49fcddeSSean Young /* learning */ 201c49fcddeSSean Young bool wideband; 202c49fcddeSSean Young struct usb_ctrlrequest learn_control; 203c49fcddeSSean Young struct urb *learn_urb; 204c49fcddeSSean Young u8 learn_buf; 205c49fcddeSSean Young 2062154be65SJarod Wilson /* save off the usb device pointer */ 2072154be65SJarod Wilson struct usb_device *udev; 2082154be65SJarod Wilson 2092154be65SJarod Wilson /* the receive endpoint */ 210c49fcddeSSean Young struct usb_endpoint_descriptor *ep_narrow; 2112154be65SJarod Wilson /* the buffer to receive data */ 2124c055a5aSSean Young void *bulk_in_buf; 2132154be65SJarod Wilson /* urb used to read ir data */ 214c49fcddeSSean Young struct urb *narrow_urb; 215c49fcddeSSean Young struct urb *wide_urb; 2162154be65SJarod Wilson 2172154be65SJarod Wilson /* the send endpoint */ 2182154be65SJarod Wilson struct usb_endpoint_descriptor *ep_out; 2192154be65SJarod Wilson 2202154be65SJarod Wilson /* usb dma */ 2212154be65SJarod Wilson dma_addr_t dma_in; 2222154be65SJarod Wilson 2232154be65SJarod Wilson /* Is the device currently transmitting?*/ 2242154be65SJarod Wilson bool transmitting; 2252154be65SJarod Wilson 2262154be65SJarod Wilson /* store for current packet */ 2274c055a5aSSean Young struct redrat3_irdata irdata; 2282154be65SJarod Wilson u16 bytes_read; 2292154be65SJarod Wilson 2302154be65SJarod Wilson u32 carrier; 2312154be65SJarod Wilson 2324c055a5aSSean Young char name[64]; 2332154be65SJarod Wilson char phys[64]; 2342154be65SJarod Wilson }; 2352154be65SJarod Wilson 2362154be65SJarod Wilson static void redrat3_dump_fw_error(struct redrat3_dev *rr3, int code) 2372154be65SJarod Wilson { 2382154be65SJarod Wilson if (!rr3->transmitting && (code != 0x40)) 2392154be65SJarod Wilson dev_info(rr3->dev, "fw error code 0x%02x: ", code); 2402154be65SJarod Wilson 2412154be65SJarod Wilson switch (code) { 2422154be65SJarod Wilson case 0x00: 2432154be65SJarod Wilson pr_cont("No Error\n"); 2442154be65SJarod Wilson break; 2452154be65SJarod Wilson 2462154be65SJarod Wilson /* Codes 0x20 through 0x2f are IR Firmware Errors */ 2472154be65SJarod Wilson case 0x20: 24825ec587cSMauro Carvalho Chehab pr_cont("Initial signal pulse not long enough to measure carrier frequency\n"); 2492154be65SJarod Wilson break; 2502154be65SJarod Wilson case 0x21: 2512154be65SJarod Wilson pr_cont("Not enough length values allocated for signal\n"); 2522154be65SJarod Wilson break; 2532154be65SJarod Wilson case 0x22: 2542154be65SJarod Wilson pr_cont("Not enough memory allocated for signal data\n"); 2552154be65SJarod Wilson break; 2562154be65SJarod Wilson case 0x23: 2572154be65SJarod Wilson pr_cont("Too many signal repeats\n"); 2582154be65SJarod Wilson break; 2592154be65SJarod Wilson case 0x28: 26025ec587cSMauro Carvalho Chehab pr_cont("Insufficient memory available for IR signal data memory allocation\n"); 2612154be65SJarod Wilson break; 2622154be65SJarod Wilson case 0x29: 26325ec587cSMauro Carvalho Chehab pr_cont("Insufficient memory available for IrDa signal data memory allocation\n"); 2642154be65SJarod Wilson break; 2652154be65SJarod Wilson 2662154be65SJarod Wilson /* Codes 0x30 through 0x3f are USB Firmware Errors */ 2672154be65SJarod Wilson case 0x30: 26825ec587cSMauro Carvalho Chehab pr_cont("Insufficient memory available for bulk transfer structure\n"); 2692154be65SJarod Wilson break; 2702154be65SJarod Wilson 2712154be65SJarod Wilson /* 2722154be65SJarod Wilson * Other error codes... These are primarily errors that can occur in 2732154be65SJarod Wilson * the control messages sent to the redrat 2742154be65SJarod Wilson */ 2752154be65SJarod Wilson case 0x40: 2762154be65SJarod Wilson if (!rr3->transmitting) 2772154be65SJarod Wilson pr_cont("Signal capture has been terminated\n"); 2782154be65SJarod Wilson break; 2792154be65SJarod Wilson case 0x41: 28025ec587cSMauro Carvalho Chehab pr_cont("Attempt to set/get and unknown signal I/O algorithm parameter\n"); 2812154be65SJarod Wilson break; 2822154be65SJarod Wilson case 0x42: 2832154be65SJarod Wilson pr_cont("Signal capture already started\n"); 2842154be65SJarod Wilson break; 2852154be65SJarod Wilson 2862154be65SJarod Wilson default: 2872154be65SJarod Wilson pr_cont("Unknown Error\n"); 2882154be65SJarod Wilson break; 2892154be65SJarod Wilson } 2902154be65SJarod Wilson } 2912154be65SJarod Wilson 2924c055a5aSSean Young static u32 redrat3_val_to_mod_freq(struct redrat3_irdata *irdata) 2932154be65SJarod Wilson { 2942154be65SJarod Wilson u32 mod_freq = 0; 2954c055a5aSSean Young u16 mod_freq_count = be16_to_cpu(irdata->mod_freq_count); 2962154be65SJarod Wilson 2974c055a5aSSean Young if (mod_freq_count != 0) 2984c055a5aSSean Young mod_freq = (RR3_CLK * be16_to_cpu(irdata->num_periods)) / 2994c055a5aSSean Young (mod_freq_count * RR3_CLK_PER_COUNT); 3002154be65SJarod Wilson 3012154be65SJarod Wilson return mod_freq; 3022154be65SJarod Wilson } 3032154be65SJarod Wilson 3042154be65SJarod Wilson /* this function scales down the figures for the same result... */ 3052154be65SJarod Wilson static u32 redrat3_len_to_us(u32 length) 3062154be65SJarod Wilson { 3072154be65SJarod Wilson u32 biglen = length * 1000; 3082154be65SJarod Wilson u32 divisor = (RR3_CLK_CONV_FACTOR) / 1000; 3092154be65SJarod Wilson u32 result = (u32) (biglen / divisor); 3102154be65SJarod Wilson 3112154be65SJarod Wilson /* don't allow zero lengths to go back, breaks lirc */ 3122154be65SJarod Wilson return result ? result : 1; 3132154be65SJarod Wilson } 3142154be65SJarod Wilson 3152154be65SJarod Wilson /* 3162154be65SJarod Wilson * convert us back into redrat3 lengths 3172154be65SJarod Wilson * 3182154be65SJarod Wilson * length * 1000 length * 1000000 3192154be65SJarod Wilson * ------------- = ---------------- = micro 3202154be65SJarod Wilson * rr3clk / 1000 rr3clk 3212154be65SJarod Wilson 3222154be65SJarod Wilson * 6 * 2 4 * 3 micro * rr3clk micro * rr3clk / 1000 3232154be65SJarod Wilson * ----- = 4 ----- = 6 -------------- = len --------------------- 3242154be65SJarod Wilson * 3 2 1000000 1000 3252154be65SJarod Wilson */ 3262154be65SJarod Wilson static u32 redrat3_us_to_len(u32 microsec) 3272154be65SJarod Wilson { 3282154be65SJarod Wilson u32 result; 3292154be65SJarod Wilson u32 divisor; 3302154be65SJarod Wilson 33195cf60aaSMauro Carvalho Chehab microsec = (microsec > IR_MAX_DURATION) ? IR_MAX_DURATION : microsec; 3322154be65SJarod Wilson divisor = (RR3_CLK_CONV_FACTOR / 1000); 3332154be65SJarod Wilson result = (u32)(microsec * divisor) / 1000; 3342154be65SJarod Wilson 3352154be65SJarod Wilson /* don't allow zero lengths to go back, breaks lirc */ 3362154be65SJarod Wilson return result ? result : 1; 3372154be65SJarod Wilson } 3382154be65SJarod Wilson 3392154be65SJarod Wilson static void redrat3_process_ir_data(struct redrat3_dev *rr3) 3402154be65SJarod Wilson { 341183e19f5SSean Young struct ir_raw_event rawir = {}; 3422154be65SJarod Wilson struct device *dev; 343528222d8SSean Young unsigned int i, sig_size, offset, val; 3444c055a5aSSean Young u32 mod_freq; 3452154be65SJarod Wilson 3462154be65SJarod Wilson dev = rr3->dev; 3472154be65SJarod Wilson 3484c055a5aSSean Young mod_freq = redrat3_val_to_mod_freq(&rr3->irdata); 3493228bf81SGreg Kroah-Hartman dev_dbg(dev, "Got mod_freq of %u\n", mod_freq); 350c49fcddeSSean Young if (mod_freq && rr3->wideband) { 351183e19f5SSean Young struct ir_raw_event ev = { 352183e19f5SSean Young .carrier_report = 1, 353183e19f5SSean Young .carrier = mod_freq 354183e19f5SSean Young }; 355c49fcddeSSean Young 356c49fcddeSSean Young ir_raw_event_store(rr3->rc, &ev); 357c49fcddeSSean Young } 3582154be65SJarod Wilson 3592154be65SJarod Wilson /* process each rr3 encoded byte into an int */ 3604c055a5aSSean Young sig_size = be16_to_cpu(rr3->irdata.sig_size); 3614c055a5aSSean Young for (i = 0; i < sig_size; i++) { 3624c055a5aSSean Young offset = rr3->irdata.sigdata[i]; 3634c055a5aSSean Young val = get_unaligned_be16(&rr3->irdata.lens[offset]); 3642154be65SJarod Wilson 3652154be65SJarod Wilson /* we should always get pulse/space/pulse/space samples */ 3662154be65SJarod Wilson if (i % 2) 3672154be65SJarod Wilson rawir.pulse = false; 3682154be65SJarod Wilson else 3692154be65SJarod Wilson rawir.pulse = true; 3702154be65SJarod Wilson 371528222d8SSean Young rawir.duration = redrat3_len_to_us(val); 3722c594ffaSJarod Wilson /* cap the value to IR_MAX_DURATION */ 37395cf60aaSMauro Carvalho Chehab rawir.duration = (rawir.duration > IR_MAX_DURATION) ? 37495cf60aaSMauro Carvalho Chehab IR_MAX_DURATION : rawir.duration; 3752c594ffaSJarod Wilson 3763228bf81SGreg Kroah-Hartman dev_dbg(dev, "storing %s with duration %d (i: %d)\n", 3772154be65SJarod Wilson rawir.pulse ? "pulse" : "space", rawir.duration, i); 3782154be65SJarod Wilson ir_raw_event_store_with_filter(rr3->rc, &rawir); 3792154be65SJarod Wilson } 3802154be65SJarod Wilson 38125da661aSSean Young /* add a trailing space */ 3822154be65SJarod Wilson rawir.pulse = false; 38325da661aSSean Young rawir.timeout = true; 384c7470ff2SSean Young rawir.duration = rr3->rc->timeout; 38525da661aSSean Young dev_dbg(dev, "storing trailing timeout with duration %d\n", 3862154be65SJarod Wilson rawir.duration); 3872154be65SJarod Wilson ir_raw_event_store_with_filter(rr3->rc, &rawir); 3882154be65SJarod Wilson 3893228bf81SGreg Kroah-Hartman dev_dbg(dev, "calling ir_raw_event_handle\n"); 3902154be65SJarod Wilson ir_raw_event_handle(rr3->rc); 3912154be65SJarod Wilson } 3922154be65SJarod Wilson 3932154be65SJarod Wilson /* Util fn to send rr3 cmds */ 3946948524dSMauro Carvalho Chehab static int redrat3_send_cmd(int cmd, struct redrat3_dev *rr3) 3952154be65SJarod Wilson { 3962154be65SJarod Wilson struct usb_device *udev; 3972154be65SJarod Wilson u8 *data; 3982154be65SJarod Wilson int res; 3992154be65SJarod Wilson 4002154be65SJarod Wilson data = kzalloc(sizeof(u8), GFP_KERNEL); 4012154be65SJarod Wilson if (!data) 4022154be65SJarod Wilson return -ENOMEM; 4032154be65SJarod Wilson 4042154be65SJarod Wilson udev = rr3->udev; 4052154be65SJarod Wilson res = usb_control_msg(udev, usb_rcvctrlpipe(udev, 0), cmd, 4062154be65SJarod Wilson USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_IN, 4072154be65SJarod Wilson 0x0000, 0x0000, data, sizeof(u8), HZ * 10); 4082154be65SJarod Wilson 4092154be65SJarod Wilson if (res < 0) { 4102154be65SJarod Wilson dev_err(rr3->dev, "%s: Error sending rr3 cmd res %d, data %d", 4112154be65SJarod Wilson __func__, res, *data); 4122154be65SJarod Wilson res = -EIO; 4132154be65SJarod Wilson } else 4144c055a5aSSean Young res = data[0]; 4152154be65SJarod Wilson 4162154be65SJarod Wilson kfree(data); 4172154be65SJarod Wilson 4182154be65SJarod Wilson return res; 4192154be65SJarod Wilson } 4202154be65SJarod Wilson 4212154be65SJarod Wilson /* Enables the long range detector and starts async receive */ 4222154be65SJarod Wilson static int redrat3_enable_detector(struct redrat3_dev *rr3) 4232154be65SJarod Wilson { 4242154be65SJarod Wilson struct device *dev = rr3->dev; 4252154be65SJarod Wilson u8 ret; 4262154be65SJarod Wilson 4272154be65SJarod Wilson ret = redrat3_send_cmd(RR3_RC_DET_ENABLE, rr3); 4282154be65SJarod Wilson if (ret != 0) 4292154be65SJarod Wilson dev_dbg(dev, "%s: unexpected ret of %d\n", 4302154be65SJarod Wilson __func__, ret); 4312154be65SJarod Wilson 4322154be65SJarod Wilson ret = redrat3_send_cmd(RR3_RC_DET_STATUS, rr3); 4332154be65SJarod Wilson if (ret != 1) { 4342154be65SJarod Wilson dev_err(dev, "%s: detector status: %d, should be 1\n", 4352154be65SJarod Wilson __func__, ret); 4362154be65SJarod Wilson return -EIO; 4372154be65SJarod Wilson } 4382154be65SJarod Wilson 439c49fcddeSSean Young ret = usb_submit_urb(rr3->narrow_urb, GFP_KERNEL); 440c49fcddeSSean Young if (ret) { 441c49fcddeSSean Young dev_err(rr3->dev, "narrow band urb failed: %d", ret); 442c49fcddeSSean Young return ret; 443c49fcddeSSean Young } 4442154be65SJarod Wilson 445c49fcddeSSean Young ret = usb_submit_urb(rr3->wide_urb, GFP_KERNEL); 446c49fcddeSSean Young if (ret) 447c49fcddeSSean Young dev_err(rr3->dev, "wide band urb failed: %d", ret); 448c49fcddeSSean Young 449c49fcddeSSean Young return ret; 4502154be65SJarod Wilson } 4512154be65SJarod Wilson 4522154be65SJarod Wilson static inline void redrat3_delete(struct redrat3_dev *rr3, 4532154be65SJarod Wilson struct usb_device *udev) 4542154be65SJarod Wilson { 455c49fcddeSSean Young usb_kill_urb(rr3->narrow_urb); 456c49fcddeSSean Young usb_kill_urb(rr3->wide_urb); 457bf139726SSean Young usb_kill_urb(rr3->flash_urb); 458c49fcddeSSean Young usb_kill_urb(rr3->learn_urb); 459c49fcddeSSean Young usb_free_urb(rr3->narrow_urb); 460c49fcddeSSean Young usb_free_urb(rr3->wide_urb); 461bf139726SSean Young usb_free_urb(rr3->flash_urb); 462c49fcddeSSean Young usb_free_urb(rr3->learn_urb); 463c49fcddeSSean Young usb_free_coherent(udev, le16_to_cpu(rr3->ep_narrow->wMaxPacketSize), 4642154be65SJarod Wilson rr3->bulk_in_buf, rr3->dma_in); 4652154be65SJarod Wilson 4662154be65SJarod Wilson kfree(rr3); 4672154be65SJarod Wilson } 4682154be65SJarod Wilson 469c53f9f00SJarod Wilson static u32 redrat3_get_timeout(struct redrat3_dev *rr3) 4702154be65SJarod Wilson { 471801b69f2SSean Young __be32 *tmp; 472c53f9f00SJarod Wilson u32 timeout = MS_TO_US(150); /* a sane default, if things go haywire */ 4732154be65SJarod Wilson int len, ret, pipe; 4742154be65SJarod Wilson 4752154be65SJarod Wilson len = sizeof(*tmp); 4762154be65SJarod Wilson tmp = kzalloc(len, GFP_KERNEL); 477559f64d4SMarkus Elfring if (!tmp) 4782154be65SJarod Wilson return timeout; 4792154be65SJarod Wilson 480c53f9f00SJarod Wilson pipe = usb_rcvctrlpipe(rr3->udev, 0); 481c53f9f00SJarod Wilson ret = usb_control_msg(rr3->udev, pipe, RR3_GET_IR_PARAM, 4822154be65SJarod Wilson USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_IN, 4832154be65SJarod Wilson RR3_IR_IO_SIG_TIMEOUT, 0, tmp, len, HZ * 5); 484801b69f2SSean Young if (ret != len) 485c53f9f00SJarod Wilson dev_warn(rr3->dev, "Failed to read timeout from hardware\n"); 486801b69f2SSean Young else { 487801b69f2SSean Young timeout = redrat3_len_to_us(be32_to_cpup(tmp)); 4882154be65SJarod Wilson 4893228bf81SGreg Kroah-Hartman dev_dbg(rr3->dev, "Got timeout of %d ms\n", timeout / 1000); 490801b69f2SSean Young } 491801b69f2SSean Young 492801b69f2SSean Young kfree(tmp); 493801b69f2SSean Young 4942154be65SJarod Wilson return timeout; 4952154be65SJarod Wilson } 4962154be65SJarod Wilson 497528222d8SSean Young static int redrat3_set_timeout(struct rc_dev *rc_dev, unsigned int timeoutus) 4984f253cecSSean Young { 4994f253cecSSean Young struct redrat3_dev *rr3 = rc_dev->priv; 5004f253cecSSean Young struct usb_device *udev = rr3->udev; 5014f253cecSSean Young struct device *dev = rr3->dev; 502b1cb50beSHans Verkuil __be32 *timeout; 5034f253cecSSean Young int ret; 5044f253cecSSean Young 5054f253cecSSean Young timeout = kmalloc(sizeof(*timeout), GFP_KERNEL); 5064f253cecSSean Young if (!timeout) 5074f253cecSSean Young return -ENOMEM; 5084f253cecSSean Young 509528222d8SSean Young *timeout = cpu_to_be32(redrat3_us_to_len(timeoutus)); 5104f253cecSSean Young ret = usb_control_msg(udev, usb_sndctrlpipe(udev, 0), RR3_SET_IR_PARAM, 5114f253cecSSean Young USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_OUT, 5124f253cecSSean Young RR3_IR_IO_SIG_TIMEOUT, 0, timeout, sizeof(*timeout), 5134f253cecSSean Young HZ * 25); 5144f253cecSSean Young dev_dbg(dev, "set ir parm timeout %d ret 0x%02x\n", 5154f253cecSSean Young be32_to_cpu(*timeout), ret); 5164f253cecSSean Young 517c7470ff2SSean Young if (ret == sizeof(*timeout)) 5184f253cecSSean Young ret = 0; 519c7470ff2SSean Young else if (ret >= 0) 5204f253cecSSean Young ret = -EIO; 5214f253cecSSean Young 5224f253cecSSean Young kfree(timeout); 5234f253cecSSean Young 5244f253cecSSean Young return ret; 5254f253cecSSean Young } 5264f253cecSSean Young 5272154be65SJarod Wilson static void redrat3_reset(struct redrat3_dev *rr3) 5282154be65SJarod Wilson { 5292154be65SJarod Wilson struct usb_device *udev = rr3->udev; 5302154be65SJarod Wilson struct device *dev = rr3->dev; 5312154be65SJarod Wilson int rc, rxpipe, txpipe; 5322154be65SJarod Wilson u8 *val; 533576df632SMarkus Elfring size_t const len = sizeof(*val); 5342154be65SJarod Wilson 5352154be65SJarod Wilson rxpipe = usb_rcvctrlpipe(udev, 0); 5362154be65SJarod Wilson txpipe = usb_sndctrlpipe(udev, 0); 5372154be65SJarod Wilson 538fa7b9ac2SSean Young val = kmalloc(len, GFP_KERNEL); 539559f64d4SMarkus Elfring if (!val) 5402154be65SJarod Wilson return; 5412154be65SJarod Wilson 5422154be65SJarod Wilson *val = 0x01; 5432154be65SJarod Wilson rc = usb_control_msg(udev, rxpipe, RR3_RESET, 5442154be65SJarod Wilson USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_IN, 5452154be65SJarod Wilson RR3_CPUCS_REG_ADDR, 0, val, len, HZ * 25); 5463228bf81SGreg Kroah-Hartman dev_dbg(dev, "reset returned 0x%02x\n", rc); 5472154be65SJarod Wilson 548d6ae162bSSean Young *val = length_fuzz; 5492154be65SJarod Wilson rc = usb_control_msg(udev, txpipe, RR3_SET_IR_PARAM, 5502154be65SJarod Wilson USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_OUT, 5512154be65SJarod Wilson RR3_IR_IO_LENGTH_FUZZ, 0, val, len, HZ * 25); 5523228bf81SGreg Kroah-Hartman dev_dbg(dev, "set ir parm len fuzz %d rc 0x%02x\n", *val, rc); 5532154be65SJarod Wilson 554d6ae162bSSean Young *val = (65536 - (minimum_pause * 2000)) / 256; 555d6ae162bSSean Young rc = usb_control_msg(udev, txpipe, RR3_SET_IR_PARAM, 556d6ae162bSSean Young USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_OUT, 557d6ae162bSSean Young RR3_IR_IO_MIN_PAUSE, 0, val, len, HZ * 25); 558d6ae162bSSean Young dev_dbg(dev, "set ir parm min pause %d rc 0x%02x\n", *val, rc); 559d6ae162bSSean Young 560d6ae162bSSean Young *val = periods_measure_carrier; 561d6ae162bSSean Young rc = usb_control_msg(udev, txpipe, RR3_SET_IR_PARAM, 562d6ae162bSSean Young USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_OUT, 563d6ae162bSSean Young RR3_IR_IO_PERIODS_MF, 0, val, len, HZ * 25); 564d6ae162bSSean Young dev_dbg(dev, "set ir parm periods measure carrier %d rc 0x%02x", *val, 565d6ae162bSSean Young rc); 566d6ae162bSSean Young 5672154be65SJarod Wilson *val = RR3_DRIVER_MAXLENS; 5682154be65SJarod Wilson rc = usb_control_msg(udev, txpipe, RR3_SET_IR_PARAM, 5692154be65SJarod Wilson USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_OUT, 5702154be65SJarod Wilson RR3_IR_IO_MAX_LENGTHS, 0, val, len, HZ * 25); 5713228bf81SGreg Kroah-Hartman dev_dbg(dev, "set ir parm max lens %d rc 0x%02x\n", *val, rc); 5722154be65SJarod Wilson 5732154be65SJarod Wilson kfree(val); 5742154be65SJarod Wilson } 5752154be65SJarod Wilson 5762154be65SJarod Wilson static void redrat3_get_firmware_rev(struct redrat3_dev *rr3) 5772154be65SJarod Wilson { 5787aa20afeSMarkus Elfring int rc; 5792154be65SJarod Wilson char *buffer; 5802154be65SJarod Wilson 5810bebaa5fSMarkus Elfring buffer = kcalloc(RR3_FW_VERSION_LEN + 1, sizeof(*buffer), GFP_KERNEL); 582559f64d4SMarkus Elfring if (!buffer) 5832154be65SJarod Wilson return; 5842154be65SJarod Wilson 5852154be65SJarod Wilson rc = usb_control_msg(rr3->udev, usb_rcvctrlpipe(rr3->udev, 0), 5862154be65SJarod Wilson RR3_FW_VERSION, 5872154be65SJarod Wilson USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_IN, 5882154be65SJarod Wilson 0, 0, buffer, RR3_FW_VERSION_LEN, HZ * 5); 5892154be65SJarod Wilson 5902154be65SJarod Wilson if (rc >= 0) 5912154be65SJarod Wilson dev_info(rr3->dev, "Firmware rev: %s", buffer); 5922154be65SJarod Wilson else 5932154be65SJarod Wilson dev_err(rr3->dev, "Problem fetching firmware ID\n"); 5942154be65SJarod Wilson 5952154be65SJarod Wilson kfree(buffer); 5962154be65SJarod Wilson } 5972154be65SJarod Wilson 598fa7b9ac2SSean Young static void redrat3_read_packet_start(struct redrat3_dev *rr3, unsigned len) 5992154be65SJarod Wilson { 6004c055a5aSSean Young struct redrat3_header *header = rr3->bulk_in_buf; 6014c055a5aSSean Young unsigned pktlen, pkttype; 6022154be65SJarod Wilson 6032154be65SJarod Wilson /* grab the Length and type of transfer */ 6044c055a5aSSean Young pktlen = be16_to_cpu(header->length); 6054c055a5aSSean Young pkttype = be16_to_cpu(header->transfer_type); 6062154be65SJarod Wilson 6074c055a5aSSean Young if (pktlen > sizeof(rr3->irdata)) { 6084c055a5aSSean Young dev_warn(rr3->dev, "packet length %u too large\n", pktlen); 6094c055a5aSSean Young return; 6104c055a5aSSean Young } 6112154be65SJarod Wilson 6124c055a5aSSean Young switch (pkttype) { 6132154be65SJarod Wilson case RR3_ERROR: 6144c055a5aSSean Young if (len >= sizeof(struct redrat3_error)) { 6154c055a5aSSean Young struct redrat3_error *error = rr3->bulk_in_buf; 6164c055a5aSSean Young unsigned fw_error = be16_to_cpu(error->fw_error); 6174c055a5aSSean Young redrat3_dump_fw_error(rr3, fw_error); 6184c055a5aSSean Young } 6192154be65SJarod Wilson break; 6202154be65SJarod Wilson 6212154be65SJarod Wilson case RR3_MOD_SIGNAL_IN: 6224c055a5aSSean Young memcpy(&rr3->irdata, rr3->bulk_in_buf, len); 6232154be65SJarod Wilson rr3->bytes_read = len; 6243228bf81SGreg Kroah-Hartman dev_dbg(rr3->dev, "bytes_read %d, pktlen %d\n", 6254c055a5aSSean Young rr3->bytes_read, pktlen); 6262154be65SJarod Wilson break; 6272154be65SJarod Wilson 6282154be65SJarod Wilson default: 6293228bf81SGreg Kroah-Hartman dev_dbg(rr3->dev, "ignoring packet with type 0x%02x, len of %d, 0x%02x\n", 6304c055a5aSSean Young pkttype, len, pktlen); 6312154be65SJarod Wilson break; 6322154be65SJarod Wilson } 6332154be65SJarod Wilson } 6342154be65SJarod Wilson 635fa7b9ac2SSean Young static void redrat3_read_packet_continue(struct redrat3_dev *rr3, unsigned len) 6362154be65SJarod Wilson { 6374c055a5aSSean Young void *irdata = &rr3->irdata; 6384c055a5aSSean Young 6394c055a5aSSean Young if (len + rr3->bytes_read > sizeof(rr3->irdata)) { 6404c055a5aSSean Young dev_warn(rr3->dev, "too much data for packet\n"); 6414c055a5aSSean Young rr3->bytes_read = 0; 6424c055a5aSSean Young return; 6434c055a5aSSean Young } 6444c055a5aSSean Young 6454c055a5aSSean Young memcpy(irdata + rr3->bytes_read, rr3->bulk_in_buf, len); 6462154be65SJarod Wilson 6472154be65SJarod Wilson rr3->bytes_read += len; 6483228bf81SGreg Kroah-Hartman dev_dbg(rr3->dev, "bytes_read %d, pktlen %d\n", rr3->bytes_read, 6494c055a5aSSean Young be16_to_cpu(rr3->irdata.header.length)); 6502154be65SJarod Wilson } 6512154be65SJarod Wilson 6522154be65SJarod Wilson /* gather IR data from incoming urb, process it when we have enough */ 653fa7b9ac2SSean Young static int redrat3_get_ir_data(struct redrat3_dev *rr3, unsigned len) 6542154be65SJarod Wilson { 6552154be65SJarod Wilson struct device *dev = rr3->dev; 6564c055a5aSSean Young unsigned pkttype; 6572154be65SJarod Wilson int ret = 0; 6582154be65SJarod Wilson 6594c055a5aSSean Young if (rr3->bytes_read == 0 && len >= sizeof(struct redrat3_header)) { 6602154be65SJarod Wilson redrat3_read_packet_start(rr3, len); 6612154be65SJarod Wilson } else if (rr3->bytes_read != 0) { 6622154be65SJarod Wilson redrat3_read_packet_continue(rr3, len); 6632154be65SJarod Wilson } else if (rr3->bytes_read == 0) { 6642154be65SJarod Wilson dev_err(dev, "error: no packet data read\n"); 6652154be65SJarod Wilson ret = -ENODATA; 6662154be65SJarod Wilson goto out; 6672154be65SJarod Wilson } 6682154be65SJarod Wilson 66938e35a85SSean Young if (rr3->bytes_read < be16_to_cpu(rr3->irdata.header.length) + 67038e35a85SSean Young sizeof(struct redrat3_header)) 6712154be65SJarod Wilson /* we're still accumulating data */ 6722154be65SJarod Wilson return 0; 6732154be65SJarod Wilson 6742154be65SJarod Wilson /* if we get here, we've got IR data to decode */ 6754c055a5aSSean Young pkttype = be16_to_cpu(rr3->irdata.header.transfer_type); 6764c055a5aSSean Young if (pkttype == RR3_MOD_SIGNAL_IN) 6772154be65SJarod Wilson redrat3_process_ir_data(rr3); 6782154be65SJarod Wilson else 6793228bf81SGreg Kroah-Hartman dev_dbg(dev, "discarding non-signal data packet (type 0x%02x)\n", 6804c055a5aSSean Young pkttype); 6812154be65SJarod Wilson 6822154be65SJarod Wilson out: 6832154be65SJarod Wilson rr3->bytes_read = 0; 6842154be65SJarod Wilson return ret; 6852154be65SJarod Wilson } 6862154be65SJarod Wilson 6872154be65SJarod Wilson /* callback function from USB when async USB request has completed */ 688801b69f2SSean Young static void redrat3_handle_async(struct urb *urb) 6892154be65SJarod Wilson { 690d6aca6eaSSean Young struct redrat3_dev *rr3 = urb->context; 691dbea1880SAndrew Vincer int ret; 6922154be65SJarod Wilson 6932154be65SJarod Wilson switch (urb->status) { 6942154be65SJarod Wilson case 0: 695dbea1880SAndrew Vincer ret = redrat3_get_ir_data(rr3, urb->actual_length); 696c49fcddeSSean Young if (!ret && rr3->wideband && !rr3->learn_urb->hcpriv) { 697c49fcddeSSean Young ret = usb_submit_urb(rr3->learn_urb, GFP_ATOMIC); 698c49fcddeSSean Young if (ret) 699c49fcddeSSean Young dev_err(rr3->dev, "Failed to submit learning urb: %d", 700c49fcddeSSean Young ret); 701c49fcddeSSean Young } 702c49fcddeSSean Young 703dbea1880SAndrew Vincer if (!ret) { 704dbea1880SAndrew Vincer /* no error, prepare to read more */ 705c49fcddeSSean Young ret = usb_submit_urb(urb, GFP_ATOMIC); 706c49fcddeSSean Young if (ret) 707c49fcddeSSean Young dev_err(rr3->dev, "Failed to resubmit urb: %d", 708c49fcddeSSean Young ret); 709dbea1880SAndrew Vincer } 7102154be65SJarod Wilson break; 7112154be65SJarod Wilson 7122154be65SJarod Wilson case -ECONNRESET: 7132154be65SJarod Wilson case -ENOENT: 7142154be65SJarod Wilson case -ESHUTDOWN: 7152154be65SJarod Wilson usb_unlink_urb(urb); 7162154be65SJarod Wilson return; 7172154be65SJarod Wilson 7182154be65SJarod Wilson case -EPIPE: 7192154be65SJarod Wilson default: 7202154be65SJarod Wilson dev_warn(rr3->dev, "Error: urb status = %d\n", urb->status); 7212154be65SJarod Wilson rr3->bytes_read = 0; 7222154be65SJarod Wilson break; 7232154be65SJarod Wilson } 7242154be65SJarod Wilson } 7252154be65SJarod Wilson 7262154be65SJarod Wilson static u16 mod_freq_to_val(unsigned int mod_freq) 7272154be65SJarod Wilson { 7282154be65SJarod Wilson int mult = 6000000; 7292154be65SJarod Wilson 7302154be65SJarod Wilson /* Clk used in mod. freq. generation is CLK24/4. */ 7314c055a5aSSean Young return 65536 - (mult / mod_freq); 7322154be65SJarod Wilson } 7332154be65SJarod Wilson 734dbea1880SAndrew Vincer static int redrat3_set_tx_carrier(struct rc_dev *rcdev, u32 carrier) 7352154be65SJarod Wilson { 736dbea1880SAndrew Vincer struct redrat3_dev *rr3 = rcdev->priv; 737dbea1880SAndrew Vincer struct device *dev = rr3->dev; 7382154be65SJarod Wilson 7393228bf81SGreg Kroah-Hartman dev_dbg(dev, "Setting modulation frequency to %u", carrier); 74048cafec9SDan Carpenter if (carrier == 0) 74148cafec9SDan Carpenter return -EINVAL; 74248cafec9SDan Carpenter 7432154be65SJarod Wilson rr3->carrier = carrier; 7442154be65SJarod Wilson 74514d8188aSSean Young return 0; 7462154be65SJarod Wilson } 7472154be65SJarod Wilson 748dbea1880SAndrew Vincer static int redrat3_transmit_ir(struct rc_dev *rcdev, unsigned *txbuf, 749dbea1880SAndrew Vincer unsigned count) 7502154be65SJarod Wilson { 7512154be65SJarod Wilson struct redrat3_dev *rr3 = rcdev->priv; 7522154be65SJarod Wilson struct device *dev = rr3->dev; 7534c055a5aSSean Young struct redrat3_irdata *irdata = NULL; 754fa7b9ac2SSean Young int ret, ret_len; 7552154be65SJarod Wilson int lencheck, cur_sample_len, pipe; 7562154be65SJarod Wilson int *sample_lens = NULL; 7572154be65SJarod Wilson u8 curlencheck = 0; 758fa7b9ac2SSean Young unsigned i, sendbuf_len; 7592154be65SJarod Wilson 7602154be65SJarod Wilson if (rr3->transmitting) { 7612154be65SJarod Wilson dev_warn(dev, "%s: transmitter already in use\n", __func__); 7622154be65SJarod Wilson return -EAGAIN; 7632154be65SJarod Wilson } 7642154be65SJarod Wilson 765671ea670SSean Young if (count > RR3_MAX_SIG_SIZE - RR3_TX_TRAILER_LEN) 766671ea670SSean Young return -EINVAL; 7672154be65SJarod Wilson 768dbea1880SAndrew Vincer /* rr3 will disable rc detector on transmit */ 7692154be65SJarod Wilson rr3->transmitting = true; 7702154be65SJarod Wilson 7710bebaa5fSMarkus Elfring sample_lens = kcalloc(RR3_DRIVER_MAXLENS, 7720bebaa5fSMarkus Elfring sizeof(*sample_lens), 7730bebaa5fSMarkus Elfring GFP_KERNEL); 774fac59136SMarkus Elfring if (!sample_lens) 775fac59136SMarkus Elfring return -ENOMEM; 7762154be65SJarod Wilson 7774c055a5aSSean Young irdata = kzalloc(sizeof(*irdata), GFP_KERNEL); 7784c055a5aSSean Young if (!irdata) { 779801b69f2SSean Young ret = -ENOMEM; 780801b69f2SSean Young goto out; 781801b69f2SSean Young } 782801b69f2SSean Young 7832154be65SJarod Wilson for (i = 0; i < count; i++) { 7842154be65SJarod Wilson cur_sample_len = redrat3_us_to_len(txbuf[i]); 785801b69f2SSean Young if (cur_sample_len > 0xffff) { 786801b69f2SSean Young dev_warn(dev, "transmit period of %uus truncated to %uus\n", 787801b69f2SSean Young txbuf[i], redrat3_len_to_us(0xffff)); 788801b69f2SSean Young cur_sample_len = 0xffff; 789801b69f2SSean Young } 79006eae25fSSean Young for (lencheck = 0; lencheck < curlencheck; lencheck++) { 7912154be65SJarod Wilson if (sample_lens[lencheck] == cur_sample_len) 7922154be65SJarod Wilson break; 7932154be65SJarod Wilson } 7942154be65SJarod Wilson if (lencheck == curlencheck) { 7953228bf81SGreg Kroah-Hartman dev_dbg(dev, "txbuf[%d]=%u, pos %d, enc %u\n", 7962154be65SJarod Wilson i, txbuf[i], curlencheck, cur_sample_len); 79706eae25fSSean Young if (curlencheck < RR3_DRIVER_MAXLENS) { 7982154be65SJarod Wilson /* now convert the value to a proper 7992154be65SJarod Wilson * rr3 value.. */ 8002154be65SJarod Wilson sample_lens[curlencheck] = cur_sample_len; 8014c055a5aSSean Young put_unaligned_be16(cur_sample_len, 8024c055a5aSSean Young &irdata->lens[curlencheck]); 8032154be65SJarod Wilson curlencheck++; 8042154be65SJarod Wilson } else { 805671ea670SSean Young ret = -EINVAL; 806671ea670SSean Young goto out; 8072154be65SJarod Wilson } 8082154be65SJarod Wilson } 8094c055a5aSSean Young irdata->sigdata[i] = lencheck; 8102154be65SJarod Wilson } 8112154be65SJarod Wilson 8124c055a5aSSean Young irdata->sigdata[count] = RR3_END_OF_SIGNAL; 8134c055a5aSSean Young irdata->sigdata[count + 1] = RR3_END_OF_SIGNAL; 8142154be65SJarod Wilson 8154c055a5aSSean Young sendbuf_len = offsetof(struct redrat3_irdata, 8164c055a5aSSean Young sigdata[count + RR3_TX_TRAILER_LEN]); 8172154be65SJarod Wilson /* fill in our packet header */ 8184c055a5aSSean Young irdata->header.length = cpu_to_be16(sendbuf_len - 8194c055a5aSSean Young sizeof(struct redrat3_header)); 8204c055a5aSSean Young irdata->header.transfer_type = cpu_to_be16(RR3_MOD_SIGNAL_OUT); 8214c055a5aSSean Young irdata->pause = cpu_to_be32(redrat3_len_to_us(100)); 8224c055a5aSSean Young irdata->mod_freq_count = cpu_to_be16(mod_freq_to_val(rr3->carrier)); 8234c055a5aSSean Young irdata->no_lengths = curlencheck; 8244c055a5aSSean Young irdata->sig_size = cpu_to_be16(count + RR3_TX_TRAILER_LEN); 8252154be65SJarod Wilson 8262154be65SJarod Wilson pipe = usb_sndbulkpipe(rr3->udev, rr3->ep_out->bEndpointAddress); 8274c055a5aSSean Young ret = usb_bulk_msg(rr3->udev, pipe, irdata, 8282154be65SJarod Wilson sendbuf_len, &ret_len, 10 * HZ); 8293228bf81SGreg Kroah-Hartman dev_dbg(dev, "sent %d bytes, (ret %d)\n", ret_len, ret); 8302154be65SJarod Wilson 8312154be65SJarod Wilson /* now tell the hardware to transmit what we sent it */ 8322154be65SJarod Wilson pipe = usb_rcvctrlpipe(rr3->udev, 0); 8332154be65SJarod Wilson ret = usb_control_msg(rr3->udev, pipe, RR3_TX_SEND_SIGNAL, 8342154be65SJarod Wilson USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_IN, 8354c055a5aSSean Young 0, 0, irdata, 2, HZ * 10); 8362154be65SJarod Wilson 8372154be65SJarod Wilson if (ret < 0) 8382154be65SJarod Wilson dev_err(dev, "Error: control msg send failed, rc %d\n", ret); 8392154be65SJarod Wilson else 840dbea1880SAndrew Vincer ret = count; 8412154be65SJarod Wilson 8422154be65SJarod Wilson out: 8434c055a5aSSean Young kfree(irdata); 844fac59136SMarkus Elfring kfree(sample_lens); 8452154be65SJarod Wilson 8462154be65SJarod Wilson rr3->transmitting = false; 847dbea1880SAndrew Vincer /* rr3 re-enables rc detector because it was enabled before */ 8482154be65SJarod Wilson 8492154be65SJarod Wilson return ret; 8502154be65SJarod Wilson } 8512154be65SJarod Wilson 852bf139726SSean Young static void redrat3_brightness_set(struct led_classdev *led_dev, enum 853bf139726SSean Young led_brightness brightness) 854bf139726SSean Young { 855bf139726SSean Young struct redrat3_dev *rr3 = container_of(led_dev, struct redrat3_dev, 856bf139726SSean Young led); 857bf139726SSean Young 858bf139726SSean Young if (brightness != LED_OFF && atomic_cmpxchg(&rr3->flash, 0, 1) == 0) { 859bf139726SSean Young int ret = usb_submit_urb(rr3->flash_urb, GFP_ATOMIC); 860bf139726SSean Young if (ret != 0) { 861bf139726SSean Young dev_dbg(rr3->dev, "%s: unexpected ret of %d\n", 862bf139726SSean Young __func__, ret); 863bf139726SSean Young atomic_set(&rr3->flash, 0); 864bf139726SSean Young } 865bf139726SSean Young } 866bf139726SSean Young } 867bf139726SSean Young 868c49fcddeSSean Young static int redrat3_wideband_receiver(struct rc_dev *rcdev, int enable) 869c49fcddeSSean Young { 870c49fcddeSSean Young struct redrat3_dev *rr3 = rcdev->priv; 871c49fcddeSSean Young int ret = 0; 872c49fcddeSSean Young 873c49fcddeSSean Young rr3->wideband = enable != 0; 874c49fcddeSSean Young 875c49fcddeSSean Young if (enable) { 876c49fcddeSSean Young ret = usb_submit_urb(rr3->learn_urb, GFP_KERNEL); 877c49fcddeSSean Young if (ret) 878c49fcddeSSean Young dev_err(rr3->dev, "Failed to submit learning urb: %d", 879c49fcddeSSean Young ret); 880c49fcddeSSean Young } 881c49fcddeSSean Young 882c49fcddeSSean Young return ret; 883c49fcddeSSean Young } 884c49fcddeSSean Young 885c49fcddeSSean Young static void redrat3_learn_complete(struct urb *urb) 886c49fcddeSSean Young { 887c49fcddeSSean Young struct redrat3_dev *rr3 = urb->context; 888c49fcddeSSean Young 889c49fcddeSSean Young switch (urb->status) { 890c49fcddeSSean Young case 0: 891c49fcddeSSean Young break; 892c49fcddeSSean Young case -ECONNRESET: 893c49fcddeSSean Young case -ENOENT: 894c49fcddeSSean Young case -ESHUTDOWN: 895c49fcddeSSean Young usb_unlink_urb(urb); 896c49fcddeSSean Young return; 897c49fcddeSSean Young case -EPIPE: 898c49fcddeSSean Young default: 899c49fcddeSSean Young dev_err(rr3->dev, "Error: learn urb status = %d", urb->status); 900c49fcddeSSean Young break; 901c49fcddeSSean Young } 902c49fcddeSSean Young } 903c49fcddeSSean Young 904bf139726SSean Young static void redrat3_led_complete(struct urb *urb) 905bf139726SSean Young { 906bf139726SSean Young struct redrat3_dev *rr3 = urb->context; 907bf139726SSean Young 908bf139726SSean Young switch (urb->status) { 909bf139726SSean Young case 0: 910bf139726SSean Young break; 911bf139726SSean Young case -ECONNRESET: 912bf139726SSean Young case -ENOENT: 913bf139726SSean Young case -ESHUTDOWN: 914bf139726SSean Young usb_unlink_urb(urb); 915bf139726SSean Young return; 916bf139726SSean Young case -EPIPE: 917bf139726SSean Young default: 918bf139726SSean Young dev_dbg(rr3->dev, "Error: urb status = %d\n", urb->status); 919bf139726SSean Young break; 920bf139726SSean Young } 921bf139726SSean Young 922bf139726SSean Young rr3->led.brightness = LED_OFF; 923bf139726SSean Young atomic_dec(&rr3->flash); 924bf139726SSean Young } 925bf139726SSean Young 9262154be65SJarod Wilson static struct rc_dev *redrat3_init_rc_dev(struct redrat3_dev *rr3) 9272154be65SJarod Wilson { 9282154be65SJarod Wilson struct device *dev = rr3->dev; 9292154be65SJarod Wilson struct rc_dev *rc; 9309d45d5fbSMarkus Elfring int ret; 9312154be65SJarod Wilson u16 prod = le16_to_cpu(rr3->udev->descriptor.idProduct); 9322154be65SJarod Wilson 9330f7499fdSAndi Shyti rc = rc_allocate_device(RC_DRIVER_IR_RAW); 934559f64d4SMarkus Elfring if (!rc) 9353f81678dSMarkus Elfring return NULL; 9362154be65SJarod Wilson 937da500033SSean Young snprintf(rr3->name, sizeof(rr3->name), 938da500033SSean Young "RedRat3%s Infrared Remote Transceiver", 939da500033SSean Young prod == USB_RR3IIUSB_PRODUCT_ID ? "-II" : ""); 9402154be65SJarod Wilson 9412154be65SJarod Wilson usb_make_path(rr3->udev, rr3->phys, sizeof(rr3->phys)); 9422154be65SJarod Wilson 943518f4b26SSean Young rc->device_name = rr3->name; 9442154be65SJarod Wilson rc->input_phys = rr3->phys; 9452154be65SJarod Wilson usb_to_input_id(rr3->udev, &rc->input_id); 9462154be65SJarod Wilson rc->dev.parent = dev; 9472154be65SJarod Wilson rc->priv = rr3; 9486d741bfeSSean Young rc->allowed_protocols = RC_PROTO_BIT_ALL_IR_DECODER; 949528222d8SSean Young rc->min_timeout = MS_TO_US(RR3_RX_MIN_TIMEOUT); 950528222d8SSean Young rc->max_timeout = MS_TO_US(RR3_RX_MAX_TIMEOUT); 951528222d8SSean Young rc->timeout = redrat3_get_timeout(rr3); 9524f253cecSSean Young rc->s_timeout = redrat3_set_timeout; 9532154be65SJarod Wilson rc->tx_ir = redrat3_transmit_ir; 9542154be65SJarod Wilson rc->s_tx_carrier = redrat3_set_tx_carrier; 955c49fcddeSSean Young rc->s_carrier_report = redrat3_wideband_receiver; 9562154be65SJarod Wilson rc->driver_name = DRIVER_NAME; 957528222d8SSean Young rc->rx_resolution = 2; 9582154be65SJarod Wilson rc->map_name = RC_MAP_HAUPPAUGE; 9592154be65SJarod Wilson 9602154be65SJarod Wilson ret = rc_register_device(rc); 9612154be65SJarod Wilson if (ret < 0) { 9622154be65SJarod Wilson dev_err(dev, "remote dev registration failed\n"); 9632154be65SJarod Wilson goto out; 9642154be65SJarod Wilson } 9652154be65SJarod Wilson 9662154be65SJarod Wilson return rc; 9672154be65SJarod Wilson 9682154be65SJarod Wilson out: 9692154be65SJarod Wilson rc_free_device(rc); 9702154be65SJarod Wilson return NULL; 9712154be65SJarod Wilson } 9722154be65SJarod Wilson 9734c62e976SGreg Kroah-Hartman static int redrat3_dev_probe(struct usb_interface *intf, 9742154be65SJarod Wilson const struct usb_device_id *id) 9752154be65SJarod Wilson { 9762154be65SJarod Wilson struct usb_device *udev = interface_to_usbdev(intf); 9772154be65SJarod Wilson struct device *dev = &intf->dev; 9782154be65SJarod Wilson struct usb_host_interface *uhi; 9792154be65SJarod Wilson struct redrat3_dev *rr3; 9802154be65SJarod Wilson struct usb_endpoint_descriptor *ep; 981c49fcddeSSean Young struct usb_endpoint_descriptor *ep_narrow = NULL; 982c49fcddeSSean Young struct usb_endpoint_descriptor *ep_wide = NULL; 9832154be65SJarod Wilson struct usb_endpoint_descriptor *ep_out = NULL; 9842154be65SJarod Wilson u8 addr, attrs; 9852154be65SJarod Wilson int pipe, i; 9862154be65SJarod Wilson int retval = -ENOMEM; 9872154be65SJarod Wilson 9882154be65SJarod Wilson uhi = intf->cur_altsetting; 9892154be65SJarod Wilson 9902154be65SJarod Wilson /* find our bulk-in and bulk-out endpoints */ 9912154be65SJarod Wilson for (i = 0; i < uhi->desc.bNumEndpoints; ++i) { 9922154be65SJarod Wilson ep = &uhi->endpoint[i].desc; 9932154be65SJarod Wilson addr = ep->bEndpointAddress; 9942154be65SJarod Wilson attrs = ep->bmAttributes; 9952154be65SJarod Wilson 996c49fcddeSSean Young if (((addr & USB_ENDPOINT_DIR_MASK) == USB_DIR_IN) && 9972154be65SJarod Wilson ((attrs & USB_ENDPOINT_XFERTYPE_MASK) == 9982154be65SJarod Wilson USB_ENDPOINT_XFER_BULK)) { 9993228bf81SGreg Kroah-Hartman dev_dbg(dev, "found bulk-in endpoint at 0x%02x\n", 10002154be65SJarod Wilson ep->bEndpointAddress); 1001c49fcddeSSean Young /* data comes in on 0x82, 0x81 is for learning */ 1002c49fcddeSSean Young if (ep->bEndpointAddress == RR3_NARROW_IN_EP_ADDR) 1003c49fcddeSSean Young ep_narrow = ep; 1004c49fcddeSSean Young if (ep->bEndpointAddress == RR3_WIDE_IN_EP_ADDR) 1005c49fcddeSSean Young ep_wide = ep; 10062154be65SJarod Wilson } 10072154be65SJarod Wilson 10082154be65SJarod Wilson if ((ep_out == NULL) && 10092154be65SJarod Wilson ((addr & USB_ENDPOINT_DIR_MASK) == USB_DIR_OUT) && 10102154be65SJarod Wilson ((attrs & USB_ENDPOINT_XFERTYPE_MASK) == 10112154be65SJarod Wilson USB_ENDPOINT_XFER_BULK)) { 10123228bf81SGreg Kroah-Hartman dev_dbg(dev, "found bulk-out endpoint at 0x%02x\n", 10132154be65SJarod Wilson ep->bEndpointAddress); 10142154be65SJarod Wilson ep_out = ep; 10152154be65SJarod Wilson } 10162154be65SJarod Wilson } 10172154be65SJarod Wilson 1018c49fcddeSSean Young if (!ep_narrow || !ep_out || !ep_wide) { 1019c49fcddeSSean Young dev_err(dev, "Couldn't find all endpoints\n"); 10202154be65SJarod Wilson retval = -ENODEV; 10212154be65SJarod Wilson goto no_endpoints; 10222154be65SJarod Wilson } 10232154be65SJarod Wilson 10242154be65SJarod Wilson /* allocate memory for our device state and initialize it */ 10252154be65SJarod Wilson rr3 = kzalloc(sizeof(*rr3), GFP_KERNEL); 1026559f64d4SMarkus Elfring if (!rr3) 10277eb75715SDan Carpenter goto no_endpoints; 10282154be65SJarod Wilson 10292154be65SJarod Wilson rr3->dev = &intf->dev; 1030c49fcddeSSean Young rr3->ep_narrow = ep_narrow; 10318a21ec9bSSean Young rr3->ep_out = ep_out; 10328a21ec9bSSean Young rr3->udev = udev; 10332154be65SJarod Wilson 10342154be65SJarod Wilson /* set up bulk-in endpoint */ 1035c49fcddeSSean Young rr3->narrow_urb = usb_alloc_urb(0, GFP_KERNEL); 1036c49fcddeSSean Young if (!rr3->narrow_urb) 1037c49fcddeSSean Young goto redrat_free; 1038c49fcddeSSean Young 1039c49fcddeSSean Young rr3->wide_urb = usb_alloc_urb(0, GFP_KERNEL); 1040c49fcddeSSean Young if (!rr3->wide_urb) 10418a21ec9bSSean Young goto redrat_free; 10422154be65SJarod Wilson 1043fa7b9ac2SSean Young rr3->bulk_in_buf = usb_alloc_coherent(udev, 1044c49fcddeSSean Young le16_to_cpu(ep_narrow->wMaxPacketSize), 1045c49fcddeSSean Young GFP_KERNEL, &rr3->dma_in); 1046559f64d4SMarkus Elfring if (!rr3->bulk_in_buf) 10478a21ec9bSSean Young goto redrat_free; 10482154be65SJarod Wilson 1049c49fcddeSSean Young pipe = usb_rcvbulkpipe(udev, ep_narrow->bEndpointAddress); 1050c49fcddeSSean Young usb_fill_bulk_urb(rr3->narrow_urb, udev, pipe, rr3->bulk_in_buf, 1051c49fcddeSSean Young le16_to_cpu(ep_narrow->wMaxPacketSize), 1052c49fcddeSSean Young redrat3_handle_async, rr3); 1053c49fcddeSSean Young rr3->narrow_urb->transfer_dma = rr3->dma_in; 1054c49fcddeSSean Young rr3->narrow_urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP; 1055c49fcddeSSean Young 1056c49fcddeSSean Young pipe = usb_rcvbulkpipe(udev, ep_wide->bEndpointAddress); 1057c49fcddeSSean Young usb_fill_bulk_urb(rr3->wide_urb, udev, pipe, rr3->bulk_in_buf, 1058c49fcddeSSean Young le16_to_cpu(ep_narrow->wMaxPacketSize), 1059c49fcddeSSean Young redrat3_handle_async, rr3); 1060c49fcddeSSean Young rr3->wide_urb->transfer_dma = rr3->dma_in; 1061c49fcddeSSean Young rr3->wide_urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP; 10622154be65SJarod Wilson 10632154be65SJarod Wilson redrat3_reset(rr3); 10642154be65SJarod Wilson redrat3_get_firmware_rev(rr3); 10652154be65SJarod Wilson 10662154be65SJarod Wilson /* default.. will get overridden by any sends with a freq defined */ 10672154be65SJarod Wilson rr3->carrier = 38000; 10682154be65SJarod Wilson 1069bf139726SSean Young atomic_set(&rr3->flash, 0); 1070bf139726SSean Young rr3->flash_urb = usb_alloc_urb(0, GFP_KERNEL); 10718a21ec9bSSean Young if (!rr3->flash_urb) 10728a21ec9bSSean Young goto redrat_free; 1073bf139726SSean Young 1074c49fcddeSSean Young /* learn urb */ 1075c49fcddeSSean Young rr3->learn_urb = usb_alloc_urb(0, GFP_KERNEL); 1076c49fcddeSSean Young if (!rr3->learn_urb) 1077c49fcddeSSean Young goto redrat_free; 1078c49fcddeSSean Young 1079c49fcddeSSean Young /* setup packet is 'c0 b2 0000 0000 0001' */ 1080c49fcddeSSean Young rr3->learn_control.bRequestType = 0xc0; 1081c49fcddeSSean Young rr3->learn_control.bRequest = RR3_MODSIG_CAPTURE; 1082c49fcddeSSean Young rr3->learn_control.wLength = cpu_to_le16(1); 1083c49fcddeSSean Young 1084c49fcddeSSean Young usb_fill_control_urb(rr3->learn_urb, udev, usb_rcvctrlpipe(udev, 0), 1085c49fcddeSSean Young (unsigned char *)&rr3->learn_control, 1086c49fcddeSSean Young &rr3->learn_buf, sizeof(rr3->learn_buf), 1087c49fcddeSSean Young redrat3_learn_complete, rr3); 1088c49fcddeSSean Young 1089bf139726SSean Young /* setup packet is 'c0 b9 0000 0000 0001' */ 1090bf139726SSean Young rr3->flash_control.bRequestType = 0xc0; 1091bf139726SSean Young rr3->flash_control.bRequest = RR3_BLINK_LED; 1092bf139726SSean Young rr3->flash_control.wLength = cpu_to_le16(1); 1093bf139726SSean Young 1094bf139726SSean Young usb_fill_control_urb(rr3->flash_urb, udev, usb_rcvctrlpipe(udev, 0), 1095bf139726SSean Young (unsigned char *)&rr3->flash_control, 1096bf139726SSean Young &rr3->flash_in_buf, sizeof(rr3->flash_in_buf), 1097bf139726SSean Young redrat3_led_complete, rr3); 1098bf139726SSean Young 10998a21ec9bSSean Young /* led control */ 11008a21ec9bSSean Young rr3->led.name = "redrat3:red:feedback"; 11018a21ec9bSSean Young rr3->led.default_trigger = "rc-feedback"; 11028a21ec9bSSean Young rr3->led.brightness_set = redrat3_brightness_set; 11038a21ec9bSSean Young retval = led_classdev_register(&intf->dev, &rr3->led); 11048a21ec9bSSean Young if (retval) 11058a21ec9bSSean Young goto redrat_free; 11068a21ec9bSSean Young 11072154be65SJarod Wilson rr3->rc = redrat3_init_rc_dev(rr3); 11086ea7cf76SPeter Senna Tschudin if (!rr3->rc) { 11096ea7cf76SPeter Senna Tschudin retval = -ENOMEM; 11108a21ec9bSSean Young goto led_free; 11116ea7cf76SPeter Senna Tschudin } 11122154be65SJarod Wilson 11138a21ec9bSSean Young /* might be all we need to do? */ 11148a21ec9bSSean Young retval = redrat3_enable_detector(rr3); 11158a21ec9bSSean Young if (retval < 0) 11168a21ec9bSSean Young goto led_free; 11178a21ec9bSSean Young 11182154be65SJarod Wilson /* we can register the device now, as it is ready */ 11192154be65SJarod Wilson usb_set_intfdata(intf, rr3); 11202154be65SJarod Wilson 11212154be65SJarod Wilson return 0; 11222154be65SJarod Wilson 11238a21ec9bSSean Young led_free: 1124bf139726SSean Young led_classdev_unregister(&rr3->led); 11258a21ec9bSSean Young redrat_free: 11262154be65SJarod Wilson redrat3_delete(rr3, rr3->udev); 11272154be65SJarod Wilson 11282154be65SJarod Wilson no_endpoints: 11292154be65SJarod Wilson return retval; 11302154be65SJarod Wilson } 11312154be65SJarod Wilson 11324c62e976SGreg Kroah-Hartman static void redrat3_dev_disconnect(struct usb_interface *intf) 11332154be65SJarod Wilson { 11342154be65SJarod Wilson struct usb_device *udev = interface_to_usbdev(intf); 11352154be65SJarod Wilson struct redrat3_dev *rr3 = usb_get_intfdata(intf); 11362154be65SJarod Wilson 11372154be65SJarod Wilson usb_set_intfdata(intf, NULL); 11382154be65SJarod Wilson rc_unregister_device(rr3->rc); 1139bf139726SSean Young led_classdev_unregister(&rr3->led); 11402154be65SJarod Wilson redrat3_delete(rr3, udev); 11412154be65SJarod Wilson } 11422154be65SJarod Wilson 11432154be65SJarod Wilson static int redrat3_dev_suspend(struct usb_interface *intf, pm_message_t message) 11442154be65SJarod Wilson { 11452154be65SJarod Wilson struct redrat3_dev *rr3 = usb_get_intfdata(intf); 1146a36d5b61SGreg Kroah-Hartman 1147bf139726SSean Young led_classdev_suspend(&rr3->led); 1148c49fcddeSSean Young usb_kill_urb(rr3->narrow_urb); 1149c49fcddeSSean Young usb_kill_urb(rr3->wide_urb); 1150bf139726SSean Young usb_kill_urb(rr3->flash_urb); 11512154be65SJarod Wilson return 0; 11522154be65SJarod Wilson } 11532154be65SJarod Wilson 11542154be65SJarod Wilson static int redrat3_dev_resume(struct usb_interface *intf) 11552154be65SJarod Wilson { 11562154be65SJarod Wilson struct redrat3_dev *rr3 = usb_get_intfdata(intf); 1157a36d5b61SGreg Kroah-Hartman 1158c49fcddeSSean Young if (usb_submit_urb(rr3->narrow_urb, GFP_ATOMIC)) 1159c49fcddeSSean Young return -EIO; 1160c49fcddeSSean Young if (usb_submit_urb(rr3->wide_urb, GFP_ATOMIC)) 11612154be65SJarod Wilson return -EIO; 1162bf139726SSean Young led_classdev_resume(&rr3->led); 11632154be65SJarod Wilson return 0; 11642154be65SJarod Wilson } 11652154be65SJarod Wilson 11662154be65SJarod Wilson static struct usb_driver redrat3_dev_driver = { 11672154be65SJarod Wilson .name = DRIVER_NAME, 11682154be65SJarod Wilson .probe = redrat3_dev_probe, 11694c62e976SGreg Kroah-Hartman .disconnect = redrat3_dev_disconnect, 11702154be65SJarod Wilson .suspend = redrat3_dev_suspend, 11712154be65SJarod Wilson .resume = redrat3_dev_resume, 11722154be65SJarod Wilson .reset_resume = redrat3_dev_resume, 11732154be65SJarod Wilson .id_table = redrat3_dev_table 11742154be65SJarod Wilson }; 11752154be65SJarod Wilson 1176ecb3b2b3SGreg Kroah-Hartman module_usb_driver(redrat3_dev_driver); 11772154be65SJarod Wilson 11782154be65SJarod Wilson MODULE_DESCRIPTION(DRIVER_DESC); 11792154be65SJarod Wilson MODULE_AUTHOR(DRIVER_AUTHOR); 11802154be65SJarod Wilson MODULE_AUTHOR(DRIVER_AUTHOR2); 11812154be65SJarod Wilson MODULE_LICENSE("GPL"); 11822154be65SJarod Wilson MODULE_DEVICE_TABLE(usb, redrat3_dev_table); 1183