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1 /*
2  * Definitions for Belkin USB Serial Adapter Driver
3  *
4  *  Copyright (C) 2000
5  *      William Greathouse (wgreathouse@smva.com)
6  *
7  *  This program is largely derived from work by the linux-usb group
8  *  and associated source files.  Please see the usb/serial files for
9  *  individual credits and copyrights.
10  *
11  *	This program is free software; you can redistribute it and/or modify
12  *	it under the terms of the GNU General Public License as published by
13  *	the Free Software Foundation; either version 2 of the License, or
14  *	(at your option) any later version.
15  *
16  * See Documentation/usb/usb-serial.txt for more information on using this
17  * driver
18  *
19  * 12-Mar-2001 gkh
20  *	Added GoHubs GO-COM232 device id.
21  *
22  * 06-Nov-2000 gkh
23  *	Added old Belkin and Peracom device ids, which this driver supports
24  *
25  * 12-Oct-2000 William Greathouse
26  *    First cut at supporting Belkin USB Serial Adapter F5U103
27  *    I did not have a copy of the original work to support this
28  *    adapter, so pardon any stupid mistakes.  All of the information
29  *    I am using to write this driver was acquired by using a modified
30  *    UsbSnoop on Windows2000.
31  *
32  */
33 
34 #ifndef __LINUX_USB_SERIAL_BSA_H
35 #define __LINUX_USB_SERIAL_BSA_H
36 
37 #define BELKIN_DOCKSTATION_VID	0x050d	/* Vendor Id */
38 #define BELKIN_DOCKSTATION_PID	0x1203	/* Product Id */
39 
40 #define BELKIN_SA_VID	0x050d	/* Vendor Id */
41 #define BELKIN_SA_PID	0x0103	/* Product Id */
42 
43 #define BELKIN_OLD_VID	0x056c	/* Belkin's "old" vendor id */
44 #define BELKIN_OLD_PID	0x8007	/* Belkin's "old" single port serial converter's id */
45 
46 #define PERACOM_VID	0x0565	/* Peracom's vendor id */
47 #define PERACOM_PID	0x0001	/* Peracom's single port serial converter's id */
48 
49 #define GOHUBS_VID	0x0921	/* GoHubs vendor id */
50 #define GOHUBS_PID	0x1000	/* GoHubs single port serial converter's id (identical to the Peracom device) */
51 #define HANDYLINK_PID	0x1200	/* HandyLink USB's id (identical to the Peracom device) */
52 
53 /* Vendor Request Interface */
54 #define BELKIN_SA_SET_BAUDRATE_REQUEST	0  /* Set baud rate */
55 #define BELKIN_SA_SET_STOP_BITS_REQUEST	1  /* Set stop bits (1,2) */
56 #define BELKIN_SA_SET_DATA_BITS_REQUEST	2  /* Set data bits (5,6,7,8) */
57 #define BELKIN_SA_SET_PARITY_REQUEST	3  /* Set parity (None, Even, Odd) */
58 
59 #define BELKIN_SA_SET_DTR_REQUEST	10 /* Set DTR state */
60 #define BELKIN_SA_SET_RTS_REQUEST	11 /* Set RTS state */
61 #define BELKIN_SA_SET_BREAK_REQUEST	12 /* Set BREAK state */
62 
63 #define BELKIN_SA_SET_FLOW_CTRL_REQUEST	16 /* Set flow control mode */
64 
65 
66 #ifdef WHEN_I_LEARN_THIS
67 #define BELKIN_SA_SET_MAGIC_REQUEST	17 /* I don't know, possibly flush */
68 					   /* (always in Wininit sequence before flow control) */
69 #define BELKIN_SA_RESET			xx /* Reset the port */
70 #define BELKIN_SA_GET_MODEM_STATUS	xx /* Force return of modem status register */
71 #endif
72 
73 #define BELKIN_SA_SET_REQUEST_TYPE	0x40
74 
75 #define BELKIN_SA_BAUD(b)		(230400/b)
76 
77 #define BELKIN_SA_STOP_BITS(b)		(b-1)
78 
79 #define BELKIN_SA_DATA_BITS(b)		(b-5)
80 
81 #define BELKIN_SA_PARITY_NONE		0
82 #define BELKIN_SA_PARITY_EVEN		1
83 #define BELKIN_SA_PARITY_ODD		2
84 #define BELKIN_SA_PARITY_MARK		3
85 #define BELKIN_SA_PARITY_SPACE		4
86 
87 #define BELKIN_SA_FLOW_NONE		0x0000	/* No flow control */
88 #define BELKIN_SA_FLOW_OCTS		0x0001	/* use CTS input to throttle output */
89 #define BELKIN_SA_FLOW_ODSR		0x0002	/* use DSR input to throttle output */
90 #define BELKIN_SA_FLOW_IDSR		0x0004	/* use DSR input to enable receive */
91 #define BELKIN_SA_FLOW_IDTR		0x0008	/* use DTR output for input flow control */
92 #define BELKIN_SA_FLOW_IRTS		0x0010	/* use RTS output for input flow control */
93 #define BELKIN_SA_FLOW_ORTS		0x0020	/* use RTS to indicate data available to send */
94 #define BELKIN_SA_FLOW_ERRSUB		0x0040	/* ???? guess ???? substitute inline errors */
95 #define BELKIN_SA_FLOW_OXON		0x0080	/* use XON/XOFF for output flow control */
96 #define BELKIN_SA_FLOW_IXON		0x0100	/* use XON/XOFF for input flow control */
97 
98 /*
99  * It seems that the interrupt pipe is closely modelled after the
100  * 16550 register layout.  This is probably because the adapter can
101  * be used in a "DOS" environment to simulate a standard hardware port.
102  */
103 #define BELKIN_SA_LSR_INDEX		2	/*     Line Status Register */
104 #define BELKIN_SA_LSR_RDR		0x01	/* receive data ready */
105 #define BELKIN_SA_LSR_OE		0x02	/* overrun error */
106 #define BELKIN_SA_LSR_PE		0x04	/* parity error */
107 #define BELKIN_SA_LSR_FE		0x08	/* framing error */
108 #define BELKIN_SA_LSR_BI		0x10	/* break indicator */
109 #define BELKIN_SA_LSR_THE		0x20	/* tx holding register empty */
110 #define BELKIN_SA_LSR_TE		0x40	/* transmit register empty */
111 #define BELKIN_SA_LSR_ERR		0x80	/* OE | PE | FE | BI */
112 
113 #define BELKIN_SA_MSR_INDEX		3	/*     Modem Status Register */
114 #define BELKIN_SA_MSR_DCTS		0x01	/* Delta CTS */
115 #define BELKIN_SA_MSR_DDSR		0x02	/* Delta DSR */
116 #define BELKIN_SA_MSR_DRI		0x04	/* Delta RI */
117 #define BELKIN_SA_MSR_DCD		0x08	/* Delta CD */
118 #define BELKIN_SA_MSR_CTS		0x10	/* Current CTS */
119 #define BELKIN_SA_MSR_DSR		0x20	/* Current DSR */
120 #define BELKIN_SA_MSR_RI		0x40	/* Current RI */
121 #define BELKIN_SA_MSR_CD		0x80	/* Current CD */
122 
123 #endif /* __LINUX_USB_SERIAL_BSA_H */
124 
125