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407 lines
11 KiB
407 lines
11 KiB
/* |
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* Copyright 2012-2013 Andrew Smith |
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* Copyright 2013 Con Kolivas <kernel@kolivas.org> |
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* |
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* This program is free software; you can redistribute it and/or modify it |
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* under the terms of the GNU General Public License as published by the Free |
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* Software Foundation; either version 3 of the License, or (at your option) |
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* any later version. See COPYING for more details. |
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*/ |
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#ifndef USBUTILS_H |
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#define USBUTILS_H |
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#include <libusb.h> |
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#define EPI(x) (LIBUSB_ENDPOINT_IN | (unsigned char)(x)) |
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#define EPO(x) (LIBUSB_ENDPOINT_OUT | (unsigned char)(x)) |
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// For 0x0403:0x6014/0x6001 FT232H (and possibly others?) - BFL, BAS, BLT, LLT, AVA |
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#define FTDI_TYPE_OUT (LIBUSB_REQUEST_TYPE_VENDOR | LIBUSB_RECIPIENT_DEVICE | LIBUSB_ENDPOINT_OUT) |
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#define FTDI_TYPE_IN (LIBUSB_REQUEST_TYPE_VENDOR | LIBUSB_RECIPIENT_DEVICE | LIBUSB_ENDPOINT_IN) |
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#define FTDI_REQUEST_RESET ((uint8_t)0) |
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#define FTDI_REQUEST_MODEM ((uint8_t)1) |
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#define FTDI_REQUEST_FLOW ((uint8_t)2) |
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#define FTDI_REQUEST_BAUD ((uint8_t)3) |
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#define FTDI_REQUEST_DATA ((uint8_t)4) |
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#define FTDI_REQUEST_LATENCY ((uint8_t)9) |
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#define FTDI_VALUE_RESET 0 |
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#define FTDI_VALUE_PURGE_RX 1 |
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#define FTDI_VALUE_PURGE_TX 2 |
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#define FTDI_VALUE_LATENCY 1 |
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// Baud |
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#define FTDI_VALUE_BAUD_BFL 0xc068 |
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#define FTDI_INDEX_BAUD_BFL 0x0200 |
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#define FTDI_VALUE_BAUD_BAS FTDI_VALUE_BAUD_BFL |
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#define FTDI_INDEX_BAUD_BAS FTDI_INDEX_BAUD_BFL |
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// LLT = BLT (same code) |
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#define FTDI_VALUE_BAUD_BLT 0x001a |
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#define FTDI_INDEX_BAUD_BLT 0x0000 |
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// Avalon |
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#define FTDI_VALUE_BAUD_AVA 0x001A |
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#define FTDI_INDEX_BAUD_AVA 0x0000 |
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#define FTDI_VALUE_DATA_AVA 8 |
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// BitBurner |
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#define BITBURNER_REQUEST ((uint8_t)0x42) |
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#define BITBURNER_VALUE 0x4242 |
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#define BITBURNER_INDEX_SET_VOLTAGE 1 |
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#define BITBURNER_INDEX_GET_VOLTAGE 2 |
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#define BITBURNER_INDEX_GET_VERSION 4 |
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// CMR = 115200 & 57600 |
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#define FTDI_VALUE_BAUD_CMR_115 0xc068 |
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#define FTDI_INDEX_BAUD_CMR_115 0x0200 |
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#define FTDI_VALUE_BAUD_CMR_57 0x80d0 |
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#define FTDI_INDEX_BAUD_CMR_57 0x0200 |
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// Data control |
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#define FTDI_VALUE_DATA_BFL 0 |
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#define FTDI_VALUE_DATA_BAS FTDI_VALUE_DATA_BFL |
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// LLT = BLT (same code) |
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#define FTDI_VALUE_DATA_BLT 8 |
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#define FTDI_VALUE_FLOW 0 |
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#define FTDI_VALUE_MODEM 0x0303 |
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// For 0x10c4:0xea60 USB cp210x chip - AMU |
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#define CP210X_TYPE_OUT 0x41 |
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#define CP210X_REQUEST_IFC_ENABLE 0x00 |
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#define CP210X_REQUEST_DATA 0x07 |
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#define CP210X_REQUEST_BAUD 0x1e |
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#define CP210X_VALUE_UART_ENABLE 0x0001 |
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#define CP210X_VALUE_DATA 0x0303 |
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#define CP210X_DATA_BAUD 0x0001c200 |
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// For 0x067b:0x2303 Prolific PL2303 - ICA |
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#define PL2303_CTRL_DTR 0x01 |
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#define PL2303_CTRL_RTS 0x02 |
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#define PL2303_CTRL_OUT 0x21 |
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#define PL2303_VENDOR_OUT 0x40 |
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#define PL2303_REQUEST_CTRL 0x22 |
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#define PL2303_REQUEST_LINE 0x20 |
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#define PL2303_REQUEST_VENDOR 0x01 |
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#define PL2303_REPLY_CTRL 0x21 |
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#define PL2303_VALUE_CTRL (PL2303_CTRL_DTR | PL2303_CTRL_RTS) |
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#define PL2303_VALUE_LINE 0 |
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#define PL2303_VALUE_LINE0 0x0001c200 |
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#define PL2303_VALUE_LINE1 0x080000 |
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#define PL2303_VALUE_LINE_SIZE 7 |
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#define PL2303_VALUE_VENDOR 0 |
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// Use the device defined timeout |
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#define DEVTIMEOUT 0 |
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// For endpoints defined in usb_find_devices.eps, |
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// the first two must be the default IN and OUT |
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#define DEFAULT_EP_IN 0 |
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#define DEFAULT_EP_OUT 1 |
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struct usb_endpoints { |
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uint8_t att; |
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uint16_t size; |
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unsigned char ep; |
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bool found; |
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}; |
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enum sub_ident { |
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IDENT_UNK = 0, |
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IDENT_BAJ, |
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IDENT_BAL, |
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IDENT_BAS, |
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IDENT_BAM, |
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IDENT_BFL, |
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IDENT_MMQ, |
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IDENT_AVA, |
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IDENT_BTB, |
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IDENT_ICA, |
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IDENT_AMU, |
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IDENT_BLT, |
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IDENT_LLT, |
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IDENT_CMR1, |
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IDENT_CMR2, |
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IDENT_ZTX |
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}; |
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struct usb_find_devices { |
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int drv; |
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const char *name; |
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enum sub_ident ident; |
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uint16_t idVendor; |
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uint16_t idProduct; |
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char *iManufacturer; |
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char *iProduct; |
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int kernel; |
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int config; |
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int interface; |
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unsigned int timeout; |
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uint16_t wMaxPacketSize; |
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uint16_t latency; |
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int epcount; |
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struct usb_endpoints *eps; |
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}; |
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/* Latency is set to 32ms to prevent a transfer ever being more than 512 bytes |
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* +2 bytes of status such as the ftdi chip, when the chips emulate a 115200 |
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* baud rate, to avoid status bytes being interleaved in larger transfers. */ |
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#define LATENCY_UNUSED 0 |
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#define LATENCY_STD 32 |
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enum usb_types { |
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USB_TYPE_STD = 0, |
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USB_TYPE_FTDI |
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}; |
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struct cg_usb_device { |
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struct usb_find_devices *found; |
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libusb_device_handle *handle; |
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pthread_mutex_t *mutex; |
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struct libusb_device_descriptor *descriptor; |
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enum usb_types usb_type; |
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enum sub_ident ident; |
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uint16_t usbver; |
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int cps; |
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bool usecps; |
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char *prod_string; |
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char *manuf_string; |
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char *serial_string; |
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unsigned char fwVersion; // ?? |
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unsigned char interfaceVersion; // ?? |
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char *buffer; |
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uint32_t bufsiz; |
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uint32_t bufamt; |
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uint16_t PrefPacketSize; |
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struct timeval last_write_tv; |
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size_t last_write_siz; |
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}; |
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#define USB_NOSTAT 0 |
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#define USB_MAX_READ 8192 |
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#define USB_TMO_0 50 |
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#define USB_TMO_1 100 |
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#define USB_TMO_2 500 |
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#define USB_TMOS 3 |
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struct cg_usb_tmo { |
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uint32_t count; |
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uint32_t min_tmo; |
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uint32_t max_tmo; |
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uint64_t total_over; |
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uint64_t total_tmo; |
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}; |
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struct cg_usb_info { |
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uint8_t bus_number; |
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uint8_t device_address; |
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int usbstat; |
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bool nodev; |
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int nodev_count; |
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struct timeval last_nodev; |
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uint32_t ioerr_count; |
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uint32_t continuous_ioerr_count; |
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/* |
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* for nodev and cgusb access (read and write) |
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* it's a pointer so MMQ can have it in multiple devices |
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* |
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* N.B. general mining code doesn't need to use the read |
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* lock for 'nodev' if it calls a usb_read/write/etc function |
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* that uses the lock - however, all usbutils code MUST use it |
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* to avoid devices disappearing while in use by multiple threads |
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*/ |
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pthread_rwlock_t *devlock; |
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time_t last_pipe; |
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uint64_t pipe_count; |
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uint64_t clear_err_count; |
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uint64_t retry_err_count; |
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uint64_t clear_fail_count; |
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uint64_t read_delay_count; |
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double total_read_delay; |
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uint64_t write_delay_count; |
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double total_write_delay; |
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/* |
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* We add 4: 1 for null, 2 for FTDI status and 1 to round to 4 bytes |
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* If a single device ever has multiple end points then it will need |
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* multiple of these |
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*/ |
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unsigned char bulkbuf[USB_MAX_READ+4]; |
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uint64_t tmo_count; |
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struct cg_usb_tmo usb_tmo[USB_TMOS]; |
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}; |
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enum usb_cmds { |
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C_REJECTED = 0, |
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C_PING, |
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C_CLEAR, |
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C_REQUESTVERSION, |
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C_GETVERSION, |
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C_REQUESTFPGACOUNT, |
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C_GETFPGACOUNT, |
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C_STARTPROGRAM, |
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C_STARTPROGRAMSTATUS, |
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C_PROGRAM, |
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C_PROGRAMSTATUS, |
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C_PROGRAMSTATUS2, |
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C_FINALPROGRAMSTATUS, |
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C_SETCLOCK, |
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C_REPLYSETCLOCK, |
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C_REQUESTUSERCODE, |
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C_GETUSERCODE, |
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C_REQUESTTEMPERATURE, |
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C_GETTEMPERATURE, |
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C_SENDWORK, |
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C_SENDWORKSTATUS, |
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C_REQUESTWORKSTATUS, |
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C_GETWORKSTATUS, |
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C_REQUESTIDENTIFY, |
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C_GETIDENTIFY, |
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C_REQUESTFLASH, |
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C_REQUESTSENDWORK, |
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C_REQUESTSENDWORKSTATUS, |
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C_RESET, |
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C_SETBAUD, |
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C_SETDATA, |
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C_SETFLOW, |
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C_SETMODEM, |
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C_PURGERX, |
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C_PURGETX, |
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C_FLASHREPLY, |
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C_REQUESTDETAILS, |
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C_GETDETAILS, |
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C_REQUESTRESULTS, |
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C_GETRESULTS, |
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C_REQUESTQUEJOB, |
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C_REQUESTQUEJOBSTATUS, |
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C_QUEJOB, |
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C_QUEJOBSTATUS, |
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C_QUEFLUSH, |
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C_QUEFLUSHREPLY, |
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C_REQUESTVOLTS, |
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C_GETVOLTS, |
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C_SENDTESTWORK, |
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C_LATENCY, |
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C_SETLINE, |
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C_VENDOR, |
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C_SETFAN, |
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C_FANREPLY, |
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C_AVALON_TASK, |
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C_AVALON_READ, |
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C_GET_AVALON_READY, |
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C_AVALON_RESET, |
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C_GET_AVALON_RESET, |
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C_FTDI_STATUS, |
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C_ENABLE_UART, |
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C_BB_SET_VOLTAGE, |
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C_BB_GET_VOLTAGE, |
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C_MAX |
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}; |
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struct device_drv; |
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struct cgpu_info; |
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void usb_all(int level); |
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const char *usb_cmdname(enum usb_cmds cmd); |
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void usb_applog(struct cgpu_info *bflsc, enum usb_cmds cmd, char *msg, int amount, int err); |
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struct cgpu_info *usb_copy_cgpu(struct cgpu_info *orig); |
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struct cgpu_info *usb_alloc_cgpu(struct device_drv *drv, int threads); |
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struct cgpu_info *usb_free_cgpu_devlock(struct cgpu_info *cgpu, bool free_devlock); |
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#define usb_free_cgpu(cgpu) usb_free_cgpu_devlock(cgpu, true) |
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void usb_uninit(struct cgpu_info *cgpu); |
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bool usb_init(struct cgpu_info *cgpu, struct libusb_device *dev, struct usb_find_devices *found); |
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void usb_detect(struct device_drv *drv, bool (*device_detect)(struct libusb_device *, struct usb_find_devices *)); |
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struct api_data *api_usb_stats(int *count); |
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void update_usb_stats(struct cgpu_info *cgpu); |
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int _usb_read(struct cgpu_info *cgpu, int ep, char *buf, size_t bufsiz, int *processed, unsigned int timeout, const char *end, enum usb_cmds cmd, bool readonce); |
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int _usb_write(struct cgpu_info *cgpu, int ep, char *buf, size_t bufsiz, int *processed, unsigned int timeout, enum usb_cmds); |
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int _usb_transfer(struct cgpu_info *cgpu, uint8_t request_type, uint8_t bRequest, uint16_t wValue, uint16_t wIndex, uint32_t *data, int siz, unsigned int timeout, enum usb_cmds cmd); |
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int _usb_transfer_read(struct cgpu_info *cgpu, uint8_t request_type, uint8_t bRequest, uint16_t wValue, uint16_t wIndex, char *buf, int bufsiz, int *amount, unsigned int timeout, enum usb_cmds cmd); |
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int usb_ftdi_cts(struct cgpu_info *cgpu); |
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int usb_ftdi_set_latency(struct cgpu_info *cgpu); |
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void usb_buffer_enable(struct cgpu_info *cgpu); |
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void usb_buffer_disable(struct cgpu_info *cgpu); |
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void usb_buffer_clear(struct cgpu_info *cgpu); |
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uint32_t usb_buffer_size(struct cgpu_info *cgpu); |
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void usb_set_cps(struct cgpu_info *cgpu, int cps); |
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void usb_enable_cps(struct cgpu_info *cgpu); |
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void usb_disable_cps(struct cgpu_info *cgpu); |
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int usb_interface(struct cgpu_info *cgpu); |
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enum sub_ident usb_ident(struct cgpu_info *cgpu); |
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void usb_set_pps(struct cgpu_info *cgpu, uint16_t PrefPacketSize); |
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void usb_set_dev_start(struct cgpu_info *cgpu); |
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void usb_cleanup(); |
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void usb_initialise(); |
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void *usb_resource_thread(void *userdata); |
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#define usb_read(cgpu, buf, bufsiz, read, cmd) \ |
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_usb_read(cgpu, DEFAULT_EP_IN, buf, bufsiz, read, DEVTIMEOUT, NULL, cmd, false) |
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#define usb_read_once(cgpu, buf, bufsiz, read, cmd) \ |
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_usb_read(cgpu, DEFAULT_EP_IN, buf, bufsiz, read, DEVTIMEOUT, NULL, cmd, true) |
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#define usb_read_once_timeout(cgpu, buf, bufsiz, read, timeout, cmd) \ |
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_usb_read(cgpu, DEFAULT_EP_IN, buf, bufsiz, read, timeout, NULL, cmd, true) |
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#define usb_read_nl(cgpu, buf, bufsiz, read, cmd) \ |
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_usb_read(cgpu, DEFAULT_EP_IN, buf, bufsiz, read, DEVTIMEOUT, "\n", cmd, false) |
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#define usb_read_nl_timeout(cgpu, buf, bufsiz, read, timeout, cmd) \ |
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_usb_read(cgpu, DEFAULT_EP_IN, buf, bufsiz, read, timeout, "\n", cmd, false) |
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#define usb_read_ok(cgpu, buf, bufsiz, read, cmd) \ |
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_usb_read(cgpu, DEFAULT_EP_IN, buf, bufsiz, read, DEVTIMEOUT, "OK\n", cmd, false) |
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#define usb_read_ok_timeout(cgpu, buf, bufsiz, read, timeout, cmd) \ |
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_usb_read(cgpu, DEFAULT_EP_IN, buf, bufsiz, read, timeout, "OK\n", cmd, false) |
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#define usb_read_ep(cgpu, ep, buf, bufsiz, read, cmd) \ |
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_usb_read(cgpu, ep, buf, bufsiz, read, DEVTIMEOUT, NULL, cmd, false) |
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#define usb_read_timeout(cgpu, buf, bufsiz, read, timeout, cmd) \ |
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_usb_read(cgpu, DEFAULT_EP_IN, buf, bufsiz, read, timeout, NULL, cmd, false) |
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#define usb_read_ep_timeout(cgpu, ep, buf, bufsiz, read, timeout, cmd) \ |
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_usb_read(cgpu, ep, buf, bufsiz, read, timeout, NULL, cmd, false) |
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#define usb_write(cgpu, buf, bufsiz, wrote, cmd) \ |
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_usb_write(cgpu, DEFAULT_EP_OUT, buf, bufsiz, wrote, DEVTIMEOUT, cmd) |
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#define usb_write_ep(cgpu, ep, buf, bufsiz, wrote, cmd) \ |
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_usb_write(cgpu, ep, buf, bufsiz, wrote, DEVTIMEOUT, cmd) |
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#define usb_write_timeout(cgpu, buf, bufsiz, wrote, timeout, cmd) \ |
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_usb_write(cgpu, DEFAULT_EP_OUT, buf, bufsiz, wrote, timeout, cmd) |
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#define usb_write_ep_timeout(cgpu, ep, buf, bufsiz, wrote, timeout, cmd) \ |
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_usb_write(cgpu, ep, buf, bufsiz, wrote, timeout, cmd) |
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#define usb_transfer(cgpu, typ, req, val, idx, cmd) \ |
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_usb_transfer(cgpu, typ, req, val, idx, NULL, 0, DEVTIMEOUT, cmd) |
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#define usb_transfer_data(cgpu, typ, req, val, idx, data, len, cmd) \ |
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_usb_transfer(cgpu, typ, req, val, idx, data, len, DEVTIMEOUT, cmd) |
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#define usb_transfer_read(cgpu, typ, req, val, idx, buf, bufsiz, read, cmd) \ |
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_usb_transfer_read(cgpu, typ, req, val, idx, buf, bufsiz, read, DEVTIMEOUT, cmd) |
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#endif
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