144 lines
4.0 KiB
C
144 lines
4.0 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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/*
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*
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* Includes for cdc-acm.c
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*
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* Mainly take from usbnet's cdc-ether part
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*
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*/
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/*
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* CMSPAR, some architectures can't have space and mark parity.
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*/
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#ifndef CMSPAR
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#define CMSPAR 0
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#endif
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/*
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* Major and minor numbers.
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*/
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#define ACM_TTY_MAJOR 166
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#define ACM_TTY_MINORS 256
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#define ACM_MINOR_INVALID ACM_TTY_MINORS
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/*
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* Requests.
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*/
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#define USB_RT_ACM (USB_TYPE_CLASS | USB_RECIP_INTERFACE)
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/*
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* Output control lines.
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*/
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#define ACM_CTRL_DTR 0x01
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#define ACM_CTRL_RTS 0x02
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/*
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* Input control lines and line errors.
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*/
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#define ACM_CTRL_DCD 0x01
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#define ACM_CTRL_DSR 0x02
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#define ACM_CTRL_BRK 0x04
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#define ACM_CTRL_RI 0x08
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#define ACM_CTRL_FRAMING 0x10
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#define ACM_CTRL_PARITY 0x20
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#define ACM_CTRL_OVERRUN 0x40
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/*
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* Internal driver structures.
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*/
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/*
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* The only reason to have several buffers is to accommodate assumptions
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* in line disciplines. They ask for empty space amount, receive our URB size,
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* and proceed to issue several 1-character writes, assuming they will fit.
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* The very first write takes a complete URB. Fortunately, this only happens
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* when processing onlcr, so we only need 2 buffers. These values must be
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* powers of 2.
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*/
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#define ACM_NW 16
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#define ACM_NR 16
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struct acm_wb {
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u8 *buf;
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dma_addr_t dmah;
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unsigned int len;
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struct urb *urb;
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struct acm *instance;
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bool use;
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};
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struct acm_rb {
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int size;
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unsigned char *base;
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dma_addr_t dma;
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int index;
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struct acm *instance;
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};
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struct acm {
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struct usb_device *dev; /* the corresponding usb device */
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struct usb_interface *control; /* control interface */
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struct usb_interface *data; /* data interface */
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unsigned in, out; /* i/o pipes */
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struct tty_port port; /* our tty port data */
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struct urb *ctrlurb; /* urbs */
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u8 *ctrl_buffer; /* buffers of urbs */
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dma_addr_t ctrl_dma; /* dma handles of buffers */
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u8 *country_codes; /* country codes from device */
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unsigned int country_code_size; /* size of this buffer */
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unsigned int country_rel_date; /* release date of version */
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struct acm_wb wb[ACM_NW];
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unsigned long read_urbs_free;
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struct urb *read_urbs[ACM_NR];
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struct acm_rb read_buffers[ACM_NR];
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int rx_buflimit;
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spinlock_t read_lock;
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u8 *notification_buffer; /* to reassemble fragmented notifications */
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unsigned int nb_index;
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unsigned int nb_size;
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int transmitting;
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spinlock_t write_lock;
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struct mutex mutex;
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bool disconnected;
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unsigned long flags;
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# define EVENT_TTY_WAKEUP 0
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# define EVENT_RX_STALL 1
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# define ACM_THROTTLED 2
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# define ACM_ERROR_DELAY 3
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unsigned long urbs_in_error_delay; /* these need to be restarted after a delay */
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struct usb_cdc_line_coding line; /* bits, stop, parity */
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struct delayed_work dwork; /* work queue entry for various purposes */
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unsigned int ctrlin; /* input control lines (DCD, DSR, RI, break, overruns) */
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unsigned int ctrlout; /* output control lines (DTR, RTS) */
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struct async_icount iocount; /* counters for control line changes */
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struct async_icount oldcount; /* for comparison of counter */
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wait_queue_head_t wioctl; /* for ioctl */
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unsigned int writesize; /* max packet size for the output bulk endpoint */
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unsigned int readsize,ctrlsize; /* buffer sizes for freeing */
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unsigned int minor; /* acm minor number */
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unsigned char clocal; /* termios CLOCAL */
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unsigned int ctrl_caps; /* control capabilities from the class specific header */
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unsigned int susp_count; /* number of suspended interfaces */
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unsigned int combined_interfaces:1; /* control and data collapsed */
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u8 bInterval;
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struct usb_anchor delayed; /* writes queued for a device about to be woken */
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unsigned long quirks;
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};
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/* constants describing various quirks and errors */
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#define NO_UNION_NORMAL BIT(0)
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#define SINGLE_RX_URB BIT(1)
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#define NO_CAP_LINE BIT(2)
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#define IGNORE_DEVICE BIT(3)
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#define QUIRK_CONTROL_LINE_STATE BIT(4)
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#define CLEAR_HALT_CONDITIONS BIT(5)
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#define SEND_ZERO_PACKET BIT(6)
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#define DISABLE_ECHO BIT(7)
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