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/*
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* Copyright 1996 The Board of Trustees of The Leland Stanford
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* Junior University. All Rights Reserved.
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*
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* Permission to use, copy, modify, and distribute this
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* software and its documentation for any purpose and without
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* fee is hereby granted, provided that the above copyright
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* notice appear in all copies. Stanford University
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* makes no representations about the suitability of this
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* software for any purpose. It is provided "as is" without
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* express or implied warranty.
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*
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* strip.c This module implements Starmode Radio IP (STRIP)
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* for kernel-based devices like TTY. It interfaces between a
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* raw TTY, and the kernel's INET protocol layers (via DDI).
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*
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* Version: @(#)strip.c 1.3 July 1997
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*
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* Author: Stuart Cheshire <cheshire@cs.stanford.edu>
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*
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* Fixes: v0.9 12th Feb 1996 (SC)
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* New byte stuffing (2+6 run-length encoding)
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* New watchdog timer task
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* New Protocol key (SIP0)
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*
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* v0.9.1 3rd March 1996 (SC)
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* Changed to dynamic device allocation -- no more compile
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* time (or boot time) limit on the number of STRIP devices.
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*
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* v0.9.2 13th March 1996 (SC)
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* Uses arp cache lookups (but doesn't send arp packets yet)
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*
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* v0.9.3 17th April 1996 (SC)
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* Fixed bug where STR_ERROR flag was getting set unneccessarily
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* (causing otherwise good packets to be unneccessarily dropped)
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*
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* v0.9.4 27th April 1996 (SC)
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* First attempt at using "&COMMAND" Starmode AT commands
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*
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* v0.9.5 29th May 1996 (SC)
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* First attempt at sending (unicast) ARP packets
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*
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* v0.9.6 5th June 1996 (Elliot)
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* Put "message level" tags in every "printk" statement
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*
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* v0.9.7 13th June 1996 (laik)
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* Added support for the /proc fs
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*
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* v0.9.8 July 1996 (Mema)
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* Added packet logging
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*
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* v1.0 November 1996 (SC)
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* Fixed (severe) memory leaks in the /proc fs code
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* Fixed race conditions in the logging code
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*
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* v1.1 January 1997 (SC)
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* Deleted packet logging (use tcpdump instead)
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* Added support for Metricom Firmware v204 features
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* (like message checksums)
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*
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* v1.2 January 1997 (SC)
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* Put portables list back in
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*
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* v1.3 July 1997 (SC)
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* Made STRIP driver set the radio's baud rate automatically.
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* It is no longer necessarily to manually set the radio's
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* rate permanently to 115200 -- the driver handles setting
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* the rate automatically.
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*/
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#ifdef MODULE
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static const char StripVersion[] = "1.3-STUART.CHESHIRE-MODULAR";
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#else
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static const char StripVersion[] = "1.3-STUART.CHESHIRE";
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#endif
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#define TICKLE_TIMERS 0
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#define EXT_COUNTERS 1
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/************************************************************************/
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/* Header files */
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#ifdef MODULE
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#include <linux/module.h>
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#include <linux/version.h>
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#endif
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#include <asm/system.h>
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#include <asm/segment.h>
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#include <asm/bitops.h>
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/*
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* isdigit() and isspace() use the ctype[] array, which is not available
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* to kernel modules. If compiling as a module, use a local definition
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* of isdigit() and isspace() until _ctype is added to ksyms.
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*/
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#ifdef MODULE
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# define isdigit(c) ('0' <= (c) && (c) <= '9')
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# define isspace(c) ((c) == ' ' || (c) == '\t')
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#else
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# include <linux/ctype.h>
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#endif
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#include <linux/string.h>
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#include <linux/mm.h>
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#include <linux/interrupt.h>
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#include <linux/in.h>
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#include <linux/tty.h>
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#include <linux/errno.h>
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#include <linux/netdevice.h>
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#include <linux/etherdevice.h>
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#include <linux/skbuff.h>
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#include <linux/if_arp.h>
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#include <linux/if_strip.h>
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#include <linux/proc_fs.h>
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#include <linux/serial.h>
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#include <net/arp.h>
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#include <linux/ip.h>
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#include <linux/tcp.h>
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#include <linux/time.h>
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/************************************************************************/
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/* Useful structures and definitions */
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/*
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* A MetricomKey identifies the protocol being carried inside a Metricom
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* Starmode packet.
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*/
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typedef union
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{
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__u8 c[4];
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__u32 l;
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} MetricomKey;
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/*
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* An IP address can be viewed as four bytes in memory (which is what it is) or as
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* a single 32-bit long (which is convenient for assignment, equality testing etc.)
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*/
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typedef union
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{
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__u8 b[4];
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__u32 l;
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} IPaddr;
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/*
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* A MetricomAddressString is used to hold a printable representation of
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* a Metricom address.
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*/
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typedef struct
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{
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__u8 c[24];
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} MetricomAddressString;
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/* Encapsulation can expand packet of size x to 65/64x + 1
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* Sent packet looks like "<CR>*<address>*<key><encaps payload><CR>"
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* 1 1 1-18 1 4 ? 1
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* eg. <CR>*0000-1234*SIP0<encaps payload><CR>
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* We allow 31 bytes for the stars, the key, the address and the <CR>s
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*/
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#define STRIP_ENCAP_SIZE(X) (32 + (X)*65L/64L)
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/*
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* A STRIP_Header is never really sent over the radio, but making a dummy
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* header for internal use within the kernel that looks like an Ethernet
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* header makes certain other software happier. For example, tcpdump
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* already understands Ethernet headers.
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*/
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typedef struct
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{
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MetricomAddress dst_addr; /* Destination address, e.g. "0000-1234" */
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MetricomAddress src_addr; /* Source address, e.g. "0000-5678" */
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unsigned short protocol; /* The protocol type, using Ethernet codes */
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} STRIP_Header;
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typedef struct
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{
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char c[60];
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} MetricomNode;
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#define NODE_TABLE_SIZE 32
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typedef struct
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{
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struct timeval timestamp;
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int num_nodes;
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MetricomNode node[NODE_TABLE_SIZE];
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} MetricomNodeTable;
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enum { FALSE = 0, TRUE = 1 };
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/*
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* Holds the radio's firmware version.
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*/
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typedef struct
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{
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char c[50];
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} FirmwareVersion;
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/*
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* Holds the radio's serial number.
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*/
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typedef struct
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{
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char c[18];
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} SerialNumber;
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/*
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* Holds the radio's battery voltage.
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*/
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typedef struct
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{
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char c[11];
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} BatteryVoltage;
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typedef struct
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{
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char c[8];
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} char8;
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enum
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{
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NoStructure = 0, /* Really old firmware */
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StructuredMessages = 1, /* Parsable AT response msgs */
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ChecksummedMessages = 2 /* Parsable AT response msgs with checksums */
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} FirmwareLevel;
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struct strip
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{
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int magic;
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/*
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* These are pointers to the malloc()ed frame buffers.
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*/
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unsigned char *rx_buff; /* buffer for received IP packet*/
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unsigned char *sx_buff; /* buffer for received serial data*/
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int sx_count; /* received serial data counter */
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int sx_size; /* Serial buffer size */
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unsigned char *tx_buff; /* transmitter buffer */
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unsigned char *tx_head; /* pointer to next byte to XMIT */
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int tx_left; /* bytes left in XMIT queue */
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int tx_size; /* Serial buffer size */
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/*
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* STRIP interface statistics.
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*/
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unsigned long rx_packets; /* inbound frames counter */
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unsigned long tx_packets; /* outbound frames counter */
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unsigned long rx_errors; /* Parity, etc. errors */
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unsigned long tx_errors; /* Planned stuff */
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unsigned long rx_dropped; /* No memory for skb */
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unsigned long tx_dropped; /* When MTU change */
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unsigned long rx_over_errors; /* Frame bigger then STRIP buf. */
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unsigned long pps_timer; /* Timer to determine pps */
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unsigned long rx_pps_count; /* Counter to determine pps */
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unsigned long tx_pps_count; /* Counter to determine pps */
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unsigned long sx_pps_count; /* Counter to determine pps */
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unsigned long rx_average_pps; /* rx packets per second * 8 */
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unsigned long tx_average_pps; /* tx packets per second * 8 */
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unsigned long sx_average_pps; /* sent packets per second * 8 */
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#ifdef EXT_COUNTERS
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unsigned long rx_bytes; /* total received bytes */
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unsigned long tx_bytes; /* total received bytes */
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unsigned long rx_rbytes; /* bytes thru radio i/f */
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unsigned long tx_rbytes; /* bytes thru radio i/f */
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unsigned long rx_sbytes; /* tot bytes thru serial i/f */
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unsigned long tx_sbytes; /* tot bytes thru serial i/f */
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unsigned long rx_ebytes; /* tot stat/err bytes */
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unsigned long tx_ebytes; /* tot stat/err bytes */
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#endif
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/*
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* Internal variables.
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*/
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struct strip *next; /* The next struct in the list */
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struct strip **referrer; /* The pointer that points to us*/
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int discard; /* Set if serial error */
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int working; /* Is radio working correctly? */
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int firmware_level; /* Message structuring level */
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int next_command; /* Next periodic command */
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unsigned int user_baud; /* The user-selected baud rate */
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int mtu; /* Our mtu (to spot changes!) */
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long watchdog_doprobe; /* Next time to test the radio */
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long watchdog_doreset; /* Time to do next reset */
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long gratuitous_arp; /* Time to send next ARP refresh*/
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long arp_interval; /* Next ARP interval */
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struct timer_list idle_timer; /* For periodic wakeup calls */
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MetricomAddress true_dev_addr; /* True address of radio */
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int manual_dev_addr; /* Hack: See note below */
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FirmwareVersion firmware_version; /* The radio's firmware version */
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SerialNumber serial_number; /* The radio's serial number */
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BatteryVoltage battery_voltage; /* The radio's battery voltage */
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/*
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* Other useful structures.
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*/
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struct tty_struct *tty; /* ptr to TTY structure */
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char8 if_name; /* Dynamically generated name */
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struct device dev; /* Our device structure */
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/*
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* Neighbour radio records
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*/
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MetricomNodeTable portables;
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MetricomNodeTable poletops;
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};
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/*
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* Note: manual_dev_addr hack
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*
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* It is not possible to change the hardware address of a Metricom radio,
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* or to send packets with a user-specified hardware source address, thus
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* trying to manually set a hardware source address is a questionable
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* thing to do. However, if the user *does* manually set the hardware
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* source address of a STRIP interface, then the kernel will believe it,
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* and use it in certain places. For example, the hardware address listed
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* by ifconfig will be the manual address, not the true one.
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* (Both addresses are listed in /proc/net/strip.)
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* Also, ARP packets will be sent out giving the user-specified address as
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* the source address, not the real address. This is dangerous, because
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* it means you won't receive any replies -- the ARP replies will go to
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* the specified address, which will be some other radio. The case where
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* this is useful is when that other radio is also connected to the same
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* machine. This allows you to connect a pair of radios to one machine,
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* and to use one exclusively for inbound traffic, and the other
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* exclusively for outbound traffic. Pretty neat, huh?
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*
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* Here's the full procedure to set this up:
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*
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| 342 |
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* 1. "slattach" two interfaces, e.g. st0 for outgoing packets,
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* and st1 for incoming packets
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*
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* 2. "ifconfig" st0 (outbound radio) to have the hardware address
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* which is the real hardware address of st1 (inbound radio).
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|
|
* Now when it sends out packets, it will masquerade as st1, and
|
| 348 |
|
|
* replies will be sent to that radio, which is exactly what we want.
|
| 349 |
|
|
*
|
| 350 |
|
|
* 3. Set the route table entry ("route add default ..." or
|
| 351 |
|
|
* "route add -net ...", as appropriate) to send packets via the st0
|
| 352 |
|
|
* interface (outbound radio). Do not add any route which sends packets
|
| 353 |
|
|
* out via the st1 interface -- that radio is for inbound traffic only.
|
| 354 |
|
|
*
|
| 355 |
|
|
* 4. "ifconfig" st1 (inbound radio) to have hardware address zero.
|
| 356 |
|
|
* This tells the STRIP driver to "shut down" that interface and not
|
| 357 |
|
|
* send any packets through it. In particular, it stops sending the
|
| 358 |
|
|
* periodic gratuitous ARP packets that a STRIP interface normally sends.
|
| 359 |
|
|
* Also, when packets arrive on that interface, it will search the
|
| 360 |
|
|
* interface list to see if there is another interface who's manual
|
| 361 |
|
|
* hardware address matches its own real address (i.e. st0 in this
|
| 362 |
|
|
* example) and if so it will transfer ownership of the skbuff to
|
| 363 |
|
|
* that interface, so that it looks to the kernel as if the packet
|
| 364 |
|
|
* arrived on that interface. This is necessary because when the
|
| 365 |
|
|
* kernel sends an ARP packet on st0, it expects to get a reply on
|
| 366 |
|
|
* st0, and if it sees the reply come from st1 then it will ignore
|
| 367 |
|
|
* it (to be accurate, it puts the entry in the ARP table, but
|
| 368 |
|
|
* labelled in such a way that st0 can't use it).
|
| 369 |
|
|
*
|
| 370 |
|
|
* Thanks to Petros Maniatis for coming up with the idea of splitting
|
| 371 |
|
|
* inbound and outbound traffic between two interfaces, which turned
|
| 372 |
|
|
* out to be really easy to implement, even if it is a bit of a hack.
|
| 373 |
|
|
*
|
| 374 |
|
|
* Having set a manual address on an interface, you can restore it
|
| 375 |
|
|
* to automatic operation (where the address is automatically kept
|
| 376 |
|
|
* consistent with the real address of the radio) by setting a manual
|
| 377 |
|
|
* address of all ones, e.g. "ifconfig st0 hw strip FFFFFFFFFFFF"
|
| 378 |
|
|
* This 'turns off' manual override mode for the device address.
|
| 379 |
|
|
*
|
| 380 |
|
|
* Note: The IEEE 802 headers reported in tcpdump will show the *real*
|
| 381 |
|
|
* radio addresses the packets were sent and received from, so that you
|
| 382 |
|
|
* can see what is really going on with packets, and which interfaces
|
| 383 |
|
|
* they are really going through.
|
| 384 |
|
|
*/
|
| 385 |
|
|
|
| 386 |
|
|
|
| 387 |
|
|
/************************************************************************/
|
| 388 |
|
|
/* Constants */
|
| 389 |
|
|
|
| 390 |
|
|
/*
|
| 391 |
|
|
* CommandString1 works on all radios
|
| 392 |
|
|
* Other CommandStrings are only used with firmware that provides structured responses.
|
| 393 |
|
|
*
|
| 394 |
|
|
* ats319=1 Enables Info message for node additions and deletions
|
| 395 |
|
|
* ats319=2 Enables Info message for a new best node
|
| 396 |
|
|
* ats319=4 Enables checksums
|
| 397 |
|
|
* ats319=8 Enables ACK messages
|
| 398 |
|
|
*/
|
| 399 |
|
|
|
| 400 |
|
|
static const int MaxCommandStringLength = 32;
|
| 401 |
|
|
static const int CompatibilityCommand = 1;
|
| 402 |
|
|
|
| 403 |
|
|
static const char CommandString0[] = "*&COMMAND*ATS319=7"; /* Turn on checksums & info messages */
|
| 404 |
|
|
static const char CommandString1[] = "*&COMMAND*ATS305?"; /* Query radio name */
|
| 405 |
|
|
static const char CommandString2[] = "*&COMMAND*ATS325?"; /* Query battery voltage */
|
| 406 |
|
|
static const char CommandString3[] = "*&COMMAND*ATS300?"; /* Query version information */
|
| 407 |
|
|
static const char CommandString4[] = "*&COMMAND*ATS311?"; /* Query poletop list */
|
| 408 |
|
|
static const char CommandString5[] = "*&COMMAND*AT~LA"; /* Query portables list */
|
| 409 |
|
|
typedef struct { const char *string; long length; } StringDescriptor;
|
| 410 |
|
|
|
| 411 |
|
|
static const StringDescriptor CommandString[] =
|
| 412 |
|
|
{
|
| 413 |
|
|
{ CommandString0, sizeof(CommandString0)-1 },
|
| 414 |
|
|
{ CommandString1, sizeof(CommandString1)-1 },
|
| 415 |
|
|
{ CommandString2, sizeof(CommandString2)-1 },
|
| 416 |
|
|
{ CommandString3, sizeof(CommandString3)-1 },
|
| 417 |
|
|
{ CommandString4, sizeof(CommandString4)-1 },
|
| 418 |
|
|
{ CommandString5, sizeof(CommandString5)-1 }
|
| 419 |
|
|
};
|
| 420 |
|
|
|
| 421 |
|
|
#define GOT_ALL_RADIO_INFO(S) \
|
| 422 |
|
|
((S)->firmware_version.c[0] && \
|
| 423 |
|
|
(S)->battery_voltage.c[0] && \
|
| 424 |
|
|
memcmp(&(S)->true_dev_addr, zero_address.c, sizeof(zero_address)))
|
| 425 |
|
|
|
| 426 |
|
|
static const char hextable[16] = "0123456789ABCDEF";
|
| 427 |
|
|
|
| 428 |
|
|
static const MetricomAddress zero_address;
|
| 429 |
|
|
static const MetricomAddress broadcast_address = { { 0xFF,0xFF,0xFF,0xFF,0xFF,0xFF } };
|
| 430 |
|
|
|
| 431 |
|
|
static const MetricomKey SIP0Key = { { "SIP0" } };
|
| 432 |
|
|
static const MetricomKey ARP0Key = { { "ARP0" } };
|
| 433 |
|
|
static const MetricomKey ATR_Key = { { "ATR " } };
|
| 434 |
|
|
static const MetricomKey ACK_Key = { { "ACK_" } };
|
| 435 |
|
|
static const MetricomKey INF_Key = { { "INF_" } };
|
| 436 |
|
|
static const MetricomKey ERR_Key = { { "ERR_" } };
|
| 437 |
|
|
|
| 438 |
|
|
static const long MaxARPInterval = 60 * HZ; /* One minute */
|
| 439 |
|
|
|
| 440 |
|
|
/*
|
| 441 |
|
|
* Maximum Starmode packet length is 1183 bytes. Allowing 4 bytes for
|
| 442 |
|
|
* protocol key, 4 bytes for checksum, one byte for CR, and 65/64 expansion
|
| 443 |
|
|
* for STRIP encoding, that translates to a maximum payload MTU of 1155.
|
| 444 |
|
|
* Note: A standard NFS 1K data packet is a total of 0x480 (1152) bytes
|
| 445 |
|
|
* long, including IP header, UDP header, and NFS header. Setting the STRIP
|
| 446 |
|
|
* MTU to 1152 allows us to send default sized NFS packets without fragmentation.
|
| 447 |
|
|
*/
|
| 448 |
|
|
static const unsigned short MAX_SEND_MTU = 1152;
|
| 449 |
|
|
static const unsigned short MAX_RECV_MTU = 1500; /* Hoping for Ethernet sized packets in the future! */
|
| 450 |
|
|
static const unsigned short DEFAULT_STRIP_MTU = 1152;
|
| 451 |
|
|
static const int STRIP_MAGIC = 0x5303;
|
| 452 |
|
|
static const long LongTime = 0x7FFFFFFF;
|
| 453 |
|
|
|
| 454 |
|
|
|
| 455 |
|
|
/************************************************************************/
|
| 456 |
|
|
/* Global variables */
|
| 457 |
|
|
|
| 458 |
|
|
static struct strip *struct_strip_list = NULL;
|
| 459 |
|
|
|
| 460 |
|
|
|
| 461 |
|
|
/************************************************************************/
|
| 462 |
|
|
/* Macros */
|
| 463 |
|
|
|
| 464 |
|
|
/* Returns TRUE if text T begins with prefix P */
|
| 465 |
|
|
#define has_prefix(T,L,P) (((L) >= sizeof(P)-1) && !strncmp((T), (P), sizeof(P)-1))
|
| 466 |
|
|
|
| 467 |
|
|
/* Returns TRUE if text T of length L is equal to string S */
|
| 468 |
|
|
#define text_equal(T,L,S) (((L) == sizeof(S)-1) && !strncmp((T), (S), sizeof(S)-1))
|
| 469 |
|
|
|
| 470 |
|
|
#define READHEX(X) ((X)>='0' && (X)<='9' ? (X)-'0' : \
|
| 471 |
|
|
(X)>='a' && (X)<='f' ? (X)-'a'+10 : \
|
| 472 |
|
|
(X)>='A' && (X)<='F' ? (X)-'A'+10 : 0 )
|
| 473 |
|
|
|
| 474 |
|
|
#define READHEX16(X) ((__u16)(READHEX(X)))
|
| 475 |
|
|
|
| 476 |
|
|
#define READDEC(X) ((X)>='0' && (X)<='9' ? (X)-'0' : 0)
|
| 477 |
|
|
|
| 478 |
|
|
#define MIN(X, Y) ((X) < (Y) ? (X) : (Y))
|
| 479 |
|
|
#define MAX(X, Y) ((X) > (Y) ? (X) : (Y))
|
| 480 |
|
|
#define ELEMENTS_OF(X) (sizeof(X) / sizeof((X)[0]))
|
| 481 |
|
|
#define ARRAY_END(X) (&((X)[ELEMENTS_OF(X)]))
|
| 482 |
|
|
|
| 483 |
|
|
#define JIFFIE_TO_SEC(X) ((X) / HZ)
|
| 484 |
|
|
|
| 485 |
|
|
|
| 486 |
|
|
/************************************************************************/
|
| 487 |
|
|
/* Utility routines */
|
| 488 |
|
|
|
| 489 |
|
|
typedef unsigned long InterruptStatus;
|
| 490 |
|
|
|
| 491 |
|
|
extern __inline__ InterruptStatus DisableInterrupts(void)
|
| 492 |
|
|
{
|
| 493 |
|
|
InterruptStatus x;
|
| 494 |
|
|
save_flags(x);
|
| 495 |
|
|
cli();
|
| 496 |
|
|
return(x);
|
| 497 |
|
|
}
|
| 498 |
|
|
|
| 499 |
|
|
extern __inline__ void RestoreInterrupts(InterruptStatus x)
|
| 500 |
|
|
{
|
| 501 |
|
|
restore_flags(x);
|
| 502 |
|
|
}
|
| 503 |
|
|
|
| 504 |
|
|
static void DumpData(char *msg, struct strip *strip_info, __u8 *ptr, __u8 *end)
|
| 505 |
|
|
{
|
| 506 |
|
|
static const int MAX_DumpData = 80;
|
| 507 |
|
|
__u8 pkt_text[MAX_DumpData], *p = pkt_text;
|
| 508 |
|
|
|
| 509 |
|
|
*p++ = '\"';
|
| 510 |
|
|
|
| 511 |
|
|
while (ptr<end && p < &pkt_text[MAX_DumpData-4])
|
| 512 |
|
|
{
|
| 513 |
|
|
if (*ptr == '\\')
|
| 514 |
|
|
{
|
| 515 |
|
|
*p++ = '\\';
|
| 516 |
|
|
*p++ = '\\';
|
| 517 |
|
|
}
|
| 518 |
|
|
else
|
| 519 |
|
|
{
|
| 520 |
|
|
if (*ptr >= 32 && *ptr <= 126)
|
| 521 |
|
|
{
|
| 522 |
|
|
*p++ = *ptr;
|
| 523 |
|
|
}
|
| 524 |
|
|
else
|
| 525 |
|
|
{
|
| 526 |
|
|
sprintf(p, "\\%02X", *ptr);
|
| 527 |
|
|
p+= 3;
|
| 528 |
|
|
}
|
| 529 |
|
|
}
|
| 530 |
|
|
ptr++;
|
| 531 |
|
|
}
|
| 532 |
|
|
|
| 533 |
|
|
if (ptr == end)
|
| 534 |
|
|
{
|
| 535 |
|
|
*p++ = '\"';
|
| 536 |
|
|
}
|
| 537 |
|
|
|
| 538 |
|
|
*p++ = 0;
|
| 539 |
|
|
|
| 540 |
|
|
printk(KERN_INFO "%s: %-13s%s\n", strip_info->dev.name, msg, pkt_text);
|
| 541 |
|
|
}
|
| 542 |
|
|
|
| 543 |
|
|
#if 0
|
| 544 |
|
|
static void HexDump(char *msg, struct strip *strip_info, __u8 *start, __u8 *end)
|
| 545 |
|
|
{
|
| 546 |
|
|
__u8 *ptr = start;
|
| 547 |
|
|
printk(KERN_INFO "%s: %s: %d bytes\n", strip_info->dev.name, msg, end-ptr);
|
| 548 |
|
|
|
| 549 |
|
|
while (ptr < end)
|
| 550 |
|
|
{
|
| 551 |
|
|
long offset = ptr - start;
|
| 552 |
|
|
__u8 text[80], *p = text;
|
| 553 |
|
|
while (ptr < end && p < &text[16*3])
|
| 554 |
|
|
{
|
| 555 |
|
|
*p++ = hextable[*ptr >> 4];
|
| 556 |
|
|
*p++ = hextable[*ptr++ & 0xF];
|
| 557 |
|
|
*p++ = ' ';
|
| 558 |
|
|
}
|
| 559 |
|
|
p[-1] = 0;
|
| 560 |
|
|
printk(KERN_INFO "%s: %4lX %s\n", strip_info->dev.name, offset, text);
|
| 561 |
|
|
}
|
| 562 |
|
|
}
|
| 563 |
|
|
#endif
|
| 564 |
|
|
|
| 565 |
|
|
|
| 566 |
|
|
/************************************************************************/
|
| 567 |
|
|
/* Byte stuffing/unstuffing routines */
|
| 568 |
|
|
|
| 569 |
|
|
/* Stuffing scheme:
|
| 570 |
|
|
* 00 Unused (reserved character)
|
| 571 |
|
|
* 01-3F Run of 2-64 different characters
|
| 572 |
|
|
* 40-7F Run of 1-64 different characters plus a single zero at the end
|
| 573 |
|
|
* 80-BF Run of 1-64 of the same character
|
| 574 |
|
|
* C0-FF Run of 1-64 zeroes (ASCII 0)
|
| 575 |
|
|
*/
|
| 576 |
|
|
|
| 577 |
|
|
typedef enum
|
| 578 |
|
|
{
|
| 579 |
|
|
Stuff_Diff = 0x00,
|
| 580 |
|
|
Stuff_DiffZero = 0x40,
|
| 581 |
|
|
Stuff_Same = 0x80,
|
| 582 |
|
|
Stuff_Zero = 0xC0,
|
| 583 |
|
|
Stuff_NoCode = 0xFF, /* Special code, meaning no code selected */
|
| 584 |
|
|
|
| 585 |
|
|
Stuff_CodeMask = 0xC0,
|
| 586 |
|
|
Stuff_CountMask = 0x3F,
|
| 587 |
|
|
Stuff_MaxCount = 0x3F,
|
| 588 |
|
|
Stuff_Magic = 0x0D /* The value we are eliminating */
|
| 589 |
|
|
} StuffingCode;
|
| 590 |
|
|
|
| 591 |
|
|
/* StuffData encodes the data starting at "src" for "length" bytes.
|
| 592 |
|
|
* It writes it to the buffer pointed to by "dst" (which must be at least
|
| 593 |
|
|
* as long as 1 + 65/64 of the input length). The output may be up to 1.6%
|
| 594 |
|
|
* larger than the input for pathological input, but will usually be smaller.
|
| 595 |
|
|
* StuffData returns the new value of the dst pointer as its result.
|
| 596 |
|
|
* "code_ptr_ptr" points to a "__u8 *" which is used to hold encoding state
|
| 597 |
|
|
* between calls, allowing an encoded packet to be incrementally built up
|
| 598 |
|
|
* from small parts. On the first call, the "__u8 *" pointed to should be
|
| 599 |
|
|
* initialized to NULL; between subsequent calls the calling routine should
|
| 600 |
|
|
* leave the value alone and simply pass it back unchanged so that the
|
| 601 |
|
|
* encoder can recover its current state.
|
| 602 |
|
|
*/
|
| 603 |
|
|
|
| 604 |
|
|
#define StuffData_FinishBlock(X) \
|
| 605 |
|
|
(*code_ptr = (X) ^ Stuff_Magic, code = Stuff_NoCode)
|
| 606 |
|
|
|
| 607 |
|
|
static __u8 *StuffData(__u8 *src, __u32 length, __u8 *dst, __u8 **code_ptr_ptr)
|
| 608 |
|
|
{
|
| 609 |
|
|
__u8 *end = src + length;
|
| 610 |
|
|
__u8 *code_ptr = *code_ptr_ptr;
|
| 611 |
|
|
__u8 code = Stuff_NoCode, count = 0;
|
| 612 |
|
|
|
| 613 |
|
|
if (!length)
|
| 614 |
|
|
return(dst);
|
| 615 |
|
|
|
| 616 |
|
|
if (code_ptr)
|
| 617 |
|
|
{
|
| 618 |
|
|
/*
|
| 619 |
|
|
* Recover state from last call, if applicable
|
| 620 |
|
|
*/
|
| 621 |
|
|
code = (*code_ptr ^ Stuff_Magic) & Stuff_CodeMask;
|
| 622 |
|
|
count = (*code_ptr ^ Stuff_Magic) & Stuff_CountMask;
|
| 623 |
|
|
}
|
| 624 |
|
|
|
| 625 |
|
|
while (src < end)
|
| 626 |
|
|
{
|
| 627 |
|
|
switch (code)
|
| 628 |
|
|
{
|
| 629 |
|
|
/* Stuff_NoCode: If no current code, select one */
|
| 630 |
|
|
case Stuff_NoCode:
|
| 631 |
|
|
/* Record where we're going to put this code */
|
| 632 |
|
|
code_ptr = dst++;
|
| 633 |
|
|
count = 0; /* Reset the count (zero means one instance) */
|
| 634 |
|
|
/* Tentatively start a new block */
|
| 635 |
|
|
if (*src == 0)
|
| 636 |
|
|
{
|
| 637 |
|
|
code = Stuff_Zero;
|
| 638 |
|
|
src++;
|
| 639 |
|
|
}
|
| 640 |
|
|
else
|
| 641 |
|
|
{
|
| 642 |
|
|
code = Stuff_Same;
|
| 643 |
|
|
*dst++ = *src++ ^ Stuff_Magic;
|
| 644 |
|
|
}
|
| 645 |
|
|
/* Note: We optimistically assume run of same -- */
|
| 646 |
|
|
/* which will be fixed later in Stuff_Same */
|
| 647 |
|
|
/* if it turns out not to be true. */
|
| 648 |
|
|
break;
|
| 649 |
|
|
|
| 650 |
|
|
/* Stuff_Zero: We already have at least one zero encoded */
|
| 651 |
|
|
case Stuff_Zero:
|
| 652 |
|
|
/* If another zero, count it, else finish this code block */
|
| 653 |
|
|
if (*src == 0)
|
| 654 |
|
|
{
|
| 655 |
|
|
count++;
|
| 656 |
|
|
src++;
|
| 657 |
|
|
}
|
| 658 |
|
|
else
|
| 659 |
|
|
{
|
| 660 |
|
|
StuffData_FinishBlock(Stuff_Zero + count);
|
| 661 |
|
|
}
|
| 662 |
|
|
break;
|
| 663 |
|
|
|
| 664 |
|
|
/* Stuff_Same: We already have at least one byte encoded */
|
| 665 |
|
|
case Stuff_Same:
|
| 666 |
|
|
/* If another one the same, count it */
|
| 667 |
|
|
if ((*src ^ Stuff_Magic) == code_ptr[1])
|
| 668 |
|
|
{
|
| 669 |
|
|
count++;
|
| 670 |
|
|
src++;
|
| 671 |
|
|
break;
|
| 672 |
|
|
}
|
| 673 |
|
|
/* else, this byte does not match this block. */
|
| 674 |
|
|
/* If we already have two or more bytes encoded, finish this code block */
|
| 675 |
|
|
if (count)
|
| 676 |
|
|
{
|
| 677 |
|
|
StuffData_FinishBlock(Stuff_Same + count);
|
| 678 |
|
|
break;
|
| 679 |
|
|
}
|
| 680 |
|
|
/* else, we only have one so far, so switch to Stuff_Diff code */
|
| 681 |
|
|
code = Stuff_Diff;
|
| 682 |
|
|
/* and fall through to Stuff_Diff case below
|
| 683 |
|
|
* Note cunning cleverness here: case Stuff_Diff compares
|
| 684 |
|
|
* the current character with the previous two to see if it
|
| 685 |
|
|
* has a run of three the same. Won't this be an error if
|
| 686 |
|
|
* there aren't two previous characters stored to compare with?
|
| 687 |
|
|
* No. Because we know the current character is *not* the same
|
| 688 |
|
|
* as the previous one, the first test below will necessarily
|
| 689 |
|
|
* fail and the send half of the "if" won't be executed.
|
| 690 |
|
|
*/
|
| 691 |
|
|
|
| 692 |
|
|
/* Stuff_Diff: We have at least two *different* bytes encoded */
|
| 693 |
|
|
case Stuff_Diff:
|
| 694 |
|
|
/* If this is a zero, must encode a Stuff_DiffZero, and begin a new block */
|
| 695 |
|
|
if (*src == 0)
|
| 696 |
|
|
{
|
| 697 |
|
|
StuffData_FinishBlock(Stuff_DiffZero + count);
|
| 698 |
|
|
}
|
| 699 |
|
|
/* else, if we have three in a row, it is worth starting a Stuff_Same block */
|
| 700 |
|
|
else if ((*src ^ Stuff_Magic)==dst[-1] && dst[-1]==dst[-2])
|
| 701 |
|
|
{
|
| 702 |
|
|
/* Back off the last two characters we encoded */
|
| 703 |
|
|
code += count-2;
|
| 704 |
|
|
/* Note: "Stuff_Diff + 0" is an illegal code */
|
| 705 |
|
|
if (code == Stuff_Diff + 0)
|
| 706 |
|
|
{
|
| 707 |
|
|
code = Stuff_Same + 0;
|
| 708 |
|
|
}
|
| 709 |
|
|
StuffData_FinishBlock(code);
|
| 710 |
|
|
code_ptr = dst-2;
|
| 711 |
|
|
/* dst[-1] already holds the correct value */
|
| 712 |
|
|
count = 2; /* 2 means three bytes encoded */
|
| 713 |
|
|
code = Stuff_Same;
|
| 714 |
|
|
}
|
| 715 |
|
|
/* else, another different byte, so add it to the block */
|
| 716 |
|
|
else
|
| 717 |
|
|
{
|
| 718 |
|
|
*dst++ = *src ^ Stuff_Magic;
|
| 719 |
|
|
count++;
|
| 720 |
|
|
}
|
| 721 |
|
|
src++; /* Consume the byte */
|
| 722 |
|
|
break;
|
| 723 |
|
|
}
|
| 724 |
|
|
if (count == Stuff_MaxCount)
|
| 725 |
|
|
{
|
| 726 |
|
|
StuffData_FinishBlock(code + count);
|
| 727 |
|
|
}
|
| 728 |
|
|
}
|
| 729 |
|
|
if (code == Stuff_NoCode)
|
| 730 |
|
|
{
|
| 731 |
|
|
*code_ptr_ptr = NULL;
|
| 732 |
|
|
}
|
| 733 |
|
|
else
|
| 734 |
|
|
{
|
| 735 |
|
|
*code_ptr_ptr = code_ptr;
|
| 736 |
|
|
StuffData_FinishBlock(code + count);
|
| 737 |
|
|
}
|
| 738 |
|
|
return(dst);
|
| 739 |
|
|
}
|
| 740 |
|
|
|
| 741 |
|
|
/*
|
| 742 |
|
|
* UnStuffData decodes the data at "src", up to (but not including) "end".
|
| 743 |
|
|
* It writes the decoded data into the buffer pointed to by "dst", up to a
|
| 744 |
|
|
* maximum of "dst_length", and returns the new value of "src" so that a
|
| 745 |
|
|
* follow-on call can read more data, continuing from where the first left off.
|
| 746 |
|
|
*
|
| 747 |
|
|
* There are three types of results:
|
| 748 |
|
|
* 1. The source data runs out before extracting "dst_length" bytes:
|
| 749 |
|
|
* UnStuffData returns NULL to indicate failure.
|
| 750 |
|
|
* 2. The source data produces exactly "dst_length" bytes:
|
| 751 |
|
|
* UnStuffData returns new_src = end to indicate that all bytes were consumed.
|
| 752 |
|
|
* 3. "dst_length" bytes are extracted, with more remaining.
|
| 753 |
|
|
* UnStuffData returns new_src < end to indicate that there are more bytes
|
| 754 |
|
|
* to be read.
|
| 755 |
|
|
*
|
| 756 |
|
|
* Note: The decoding may be destructive, in that it may alter the source
|
| 757 |
|
|
* data in the process of decoding it (this is necessary to allow a follow-on
|
| 758 |
|
|
* call to resume correctly).
|
| 759 |
|
|
*/
|
| 760 |
|
|
|
| 761 |
|
|
static __u8 *UnStuffData(__u8 *src, __u8 *end, __u8 *dst, __u32 dst_length)
|
| 762 |
|
|
{
|
| 763 |
|
|
__u8 *dst_end = dst + dst_length;
|
| 764 |
|
|
/* Sanity check */
|
| 765 |
|
|
if (!src || !end || !dst || !dst_length)
|
| 766 |
|
|
return(NULL);
|
| 767 |
|
|
while (src < end && dst < dst_end)
|
| 768 |
|
|
{
|
| 769 |
|
|
int count = (*src ^ Stuff_Magic) & Stuff_CountMask;
|
| 770 |
|
|
switch ((*src ^ Stuff_Magic) & Stuff_CodeMask)
|
| 771 |
|
|
{
|
| 772 |
|
|
case Stuff_Diff:
|
| 773 |
|
|
if (src+1+count >= end)
|
| 774 |
|
|
return(NULL);
|
| 775 |
|
|
do
|
| 776 |
|
|
{
|
| 777 |
|
|
*dst++ = *++src ^ Stuff_Magic;
|
| 778 |
|
|
}
|
| 779 |
|
|
while(--count >= 0 && dst < dst_end);
|
| 780 |
|
|
if (count < 0)
|
| 781 |
|
|
src += 1;
|
| 782 |
|
|
else
|
| 783 |
|
|
{
|
| 784 |
|
|
if (count == 0)
|
| 785 |
|
|
*src = Stuff_Same ^ Stuff_Magic;
|
| 786 |
|
|
else
|
| 787 |
|
|
*src = (Stuff_Diff + count) ^ Stuff_Magic;
|
| 788 |
|
|
}
|
| 789 |
|
|
break;
|
| 790 |
|
|
case Stuff_DiffZero:
|
| 791 |
|
|
if (src+1+count >= end)
|
| 792 |
|
|
return(NULL);
|
| 793 |
|
|
do
|
| 794 |
|
|
{
|
| 795 |
|
|
*dst++ = *++src ^ Stuff_Magic;
|
| 796 |
|
|
}
|
| 797 |
|
|
while(--count >= 0 && dst < dst_end);
|
| 798 |
|
|
if (count < 0)
|
| 799 |
|
|
*src = Stuff_Zero ^ Stuff_Magic;
|
| 800 |
|
|
else
|
| 801 |
|
|
*src = (Stuff_DiffZero + count) ^ Stuff_Magic;
|
| 802 |
|
|
break;
|
| 803 |
|
|
case Stuff_Same:
|
| 804 |
|
|
if (src+1 >= end)
|
| 805 |
|
|
return(NULL);
|
| 806 |
|
|
do
|
| 807 |
|
|
{
|
| 808 |
|
|
*dst++ = src[1] ^ Stuff_Magic;
|
| 809 |
|
|
}
|
| 810 |
|
|
while(--count >= 0 && dst < dst_end);
|
| 811 |
|
|
if (count < 0)
|
| 812 |
|
|
src += 2;
|
| 813 |
|
|
else
|
| 814 |
|
|
*src = (Stuff_Same + count) ^ Stuff_Magic;
|
| 815 |
|
|
break;
|
| 816 |
|
|
case Stuff_Zero:
|
| 817 |
|
|
do
|
| 818 |
|
|
{
|
| 819 |
|
|
*dst++ = 0;
|
| 820 |
|
|
}
|
| 821 |
|
|
while(--count >= 0 && dst < dst_end);
|
| 822 |
|
|
if (count < 0)
|
| 823 |
|
|
src += 1;
|
| 824 |
|
|
else
|
| 825 |
|
|
*src = (Stuff_Zero + count) ^ Stuff_Magic;
|
| 826 |
|
|
break;
|
| 827 |
|
|
}
|
| 828 |
|
|
}
|
| 829 |
|
|
if (dst < dst_end)
|
| 830 |
|
|
return(NULL);
|
| 831 |
|
|
else
|
| 832 |
|
|
return(src);
|
| 833 |
|
|
}
|
| 834 |
|
|
|
| 835 |
|
|
|
| 836 |
|
|
/************************************************************************/
|
| 837 |
|
|
/* General routines for STRIP */
|
| 838 |
|
|
|
| 839 |
|
|
/*
|
| 840 |
|
|
* get_baud returns the current baud rate, as one of the constants defined in
|
| 841 |
|
|
* termbits.h
|
| 842 |
|
|
* If the user has issued a baud rate override using the 'setserial' command
|
| 843 |
|
|
* and the logical current rate is set to 38.4, then the true baud rate
|
| 844 |
|
|
* currently in effect (57.6 or 115.2) is returned.
|
| 845 |
|
|
*/
|
| 846 |
|
|
static unsigned int get_baud(struct tty_struct *tty)
|
| 847 |
|
|
{
|
| 848 |
|
|
if (!tty || !tty->termios) return(0);
|
| 849 |
|
|
if ((tty->termios->c_cflag & CBAUD) == B38400 && tty->driver_data)
|
| 850 |
|
|
{
|
| 851 |
|
|
struct async_struct *info = (struct async_struct *)tty->driver_data;
|
| 852 |
|
|
if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_HI ) return(B57600);
|
| 853 |
|
|
if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_VHI) return(B115200);
|
| 854 |
|
|
}
|
| 855 |
|
|
return(tty->termios->c_cflag & CBAUD);
|
| 856 |
|
|
}
|
| 857 |
|
|
|
| 858 |
|
|
/*
|
| 859 |
|
|
* set_baud sets the baud rate to the rate defined by baudcode
|
| 860 |
|
|
* Note: The rate B38400 should be avoided, because the user may have
|
| 861 |
|
|
* issued a 'setserial' speed override to map that to a different speed.
|
| 862 |
|
|
* We could achieve a true rate of 38400 if we needed to by cancelling
|
| 863 |
|
|
* any user speed override that is in place, but that might annoy the
|
| 864 |
|
|
* user, so it is simplest to just avoid using 38400.
|
| 865 |
|
|
*/
|
| 866 |
|
|
static void set_baud(struct tty_struct *tty, unsigned int baudcode)
|
| 867 |
|
|
{
|
| 868 |
|
|
struct termios old_termios = *(tty->termios);
|
| 869 |
|
|
tty->termios->c_cflag &= ~CBAUD; /* Clear the old baud setting */
|
| 870 |
|
|
tty->termios->c_cflag |= baudcode; /* Set the new baud setting */
|
| 871 |
|
|
tty->driver.set_termios(tty, &old_termios);
|
| 872 |
|
|
}
|
| 873 |
|
|
|
| 874 |
|
|
/*
|
| 875 |
|
|
* Convert a string to a Metricom Address.
|
| 876 |
|
|
*/
|
| 877 |
|
|
|
| 878 |
|
|
#define IS_RADIO_ADDRESS(p) ( \
|
| 879 |
|
|
isdigit((p)[0]) && isdigit((p)[1]) && isdigit((p)[2]) && isdigit((p)[3]) && \
|
| 880 |
|
|
(p)[4] == '-' && \
|
| 881 |
|
|
isdigit((p)[5]) && isdigit((p)[6]) && isdigit((p)[7]) && isdigit((p)[8]) )
|
| 882 |
|
|
|
| 883 |
|
|
static int string_to_radio_address(MetricomAddress *addr, __u8 *p)
|
| 884 |
|
|
{
|
| 885 |
|
|
if (!IS_RADIO_ADDRESS(p)) return(1);
|
| 886 |
|
|
addr->c[0] = 0;
|
| 887 |
|
|
addr->c[1] = 0;
|
| 888 |
|
|
addr->c[2] = READHEX(p[0]) << 4 | READHEX(p[1]);
|
| 889 |
|
|
addr->c[3] = READHEX(p[2]) << 4 | READHEX(p[3]);
|
| 890 |
|
|
addr->c[4] = READHEX(p[5]) << 4 | READHEX(p[6]);
|
| 891 |
|
|
addr->c[5] = READHEX(p[7]) << 4 | READHEX(p[8]);
|
| 892 |
|
|
return(0);
|
| 893 |
|
|
}
|
| 894 |
|
|
|
| 895 |
|
|
/*
|
| 896 |
|
|
* Convert a Metricom Address to a string.
|
| 897 |
|
|
*/
|
| 898 |
|
|
|
| 899 |
|
|
static __u8 *radio_address_to_string(const MetricomAddress *addr, MetricomAddressString *p)
|
| 900 |
|
|
{
|
| 901 |
|
|
sprintf(p->c, "%02X%02X-%02X%02X", addr->c[2], addr->c[3], addr->c[4], addr->c[5]);
|
| 902 |
|
|
return(p->c);
|
| 903 |
|
|
}
|
| 904 |
|
|
|
| 905 |
|
|
/*
|
| 906 |
|
|
* Note: Must make sure sx_size is big enough to receive a stuffed
|
| 907 |
|
|
* MAX_RECV_MTU packet. Additionally, we also want to ensure that it's
|
| 908 |
|
|
* big enough to receive a large radio neighbour list (currently 4K).
|
| 909 |
|
|
*/
|
| 910 |
|
|
|
| 911 |
|
|
static int allocate_buffers(struct strip *strip_info)
|
| 912 |
|
|
{
|
| 913 |
|
|
struct device *dev = &strip_info->dev;
|
| 914 |
|
|
int sx_size = MAX(STRIP_ENCAP_SIZE(MAX_RECV_MTU), 4096);
|
| 915 |
|
|
int tx_size = STRIP_ENCAP_SIZE(dev->mtu) + MaxCommandStringLength;
|
| 916 |
|
|
__u8 *r = kmalloc(MAX_RECV_MTU, GFP_ATOMIC);
|
| 917 |
|
|
__u8 *s = kmalloc(sx_size, GFP_ATOMIC);
|
| 918 |
|
|
__u8 *t = kmalloc(tx_size, GFP_ATOMIC);
|
| 919 |
|
|
if (r && s && t)
|
| 920 |
|
|
{
|
| 921 |
|
|
strip_info->rx_buff = r;
|
| 922 |
|
|
strip_info->sx_buff = s;
|
| 923 |
|
|
strip_info->tx_buff = t;
|
| 924 |
|
|
strip_info->sx_size = sx_size;
|
| 925 |
|
|
strip_info->tx_size = tx_size;
|
| 926 |
|
|
strip_info->mtu = dev->mtu;
|
| 927 |
|
|
return(1);
|
| 928 |
|
|
}
|
| 929 |
|
|
if (r) kfree(r);
|
| 930 |
|
|
if (s) kfree(s);
|
| 931 |
|
|
if (t) kfree(t);
|
| 932 |
|
|
return(0);
|
| 933 |
|
|
}
|
| 934 |
|
|
|
| 935 |
|
|
/*
|
| 936 |
|
|
* MTU has been changed by the IP layer. Unfortunately we are not told
|
| 937 |
|
|
* about this, but we spot it ourselves and fix things up. We could be in
|
| 938 |
|
|
* an upcall from the tty driver, or in an ip packet queue.
|
| 939 |
|
|
*/
|
| 940 |
|
|
|
| 941 |
|
|
static void strip_changedmtu(struct strip *strip_info)
|
| 942 |
|
|
{
|
| 943 |
|
|
int old_mtu = strip_info->mtu;
|
| 944 |
|
|
struct device *dev = &strip_info->dev;
|
| 945 |
|
|
unsigned char *orbuff = strip_info->rx_buff;
|
| 946 |
|
|
unsigned char *osbuff = strip_info->sx_buff;
|
| 947 |
|
|
unsigned char *otbuff = strip_info->tx_buff;
|
| 948 |
|
|
InterruptStatus intstat;
|
| 949 |
|
|
|
| 950 |
|
|
if (dev->mtu > MAX_SEND_MTU)
|
| 951 |
|
|
{
|
| 952 |
|
|
printk(KERN_ERR "%s: MTU exceeds maximum allowable (%d), MTU change cancelled.\n",
|
| 953 |
|
|
strip_info->dev.name, MAX_SEND_MTU);
|
| 954 |
|
|
dev->mtu = old_mtu;
|
| 955 |
|
|
return;
|
| 956 |
|
|
}
|
| 957 |
|
|
|
| 958 |
|
|
/*
|
| 959 |
|
|
* Have to disable interrupts here because we're reallocating and resizing
|
| 960 |
|
|
* the serial buffers, and we can't have data arriving in them while we're
|
| 961 |
|
|
* moving them around in memory. This may cause data to be lost on the serial
|
| 962 |
|
|
* port, but hopefully people won't change MTU that often.
|
| 963 |
|
|
* Also note, this may not work on a symmetric multi-processor system.
|
| 964 |
|
|
*/
|
| 965 |
|
|
intstat = DisableInterrupts();
|
| 966 |
|
|
|
| 967 |
|
|
if (!allocate_buffers(strip_info))
|
| 968 |
|
|
{
|
| 969 |
|
|
RestoreInterrupts(intstat);
|
| 970 |
|
|
printk(KERN_ERR "%s: unable to grow strip buffers, MTU change cancelled.\n",
|
| 971 |
|
|
strip_info->dev.name);
|
| 972 |
|
|
dev->mtu = old_mtu;
|
| 973 |
|
|
return;
|
| 974 |
|
|
}
|
| 975 |
|
|
|
| 976 |
|
|
if (strip_info->sx_count)
|
| 977 |
|
|
{
|
| 978 |
|
|
if (strip_info->sx_count <= strip_info->sx_size)
|
| 979 |
|
|
memcpy(strip_info->sx_buff, osbuff, strip_info->sx_count);
|
| 980 |
|
|
else
|
| 981 |
|
|
{
|
| 982 |
|
|
strip_info->discard = strip_info->sx_count;
|
| 983 |
|
|
strip_info->rx_over_errors++;
|
| 984 |
|
|
}
|
| 985 |
|
|
}
|
| 986 |
|
|
|
| 987 |
|
|
if (strip_info->tx_left)
|
| 988 |
|
|
{
|
| 989 |
|
|
if (strip_info->tx_left <= strip_info->tx_size)
|
| 990 |
|
|
memcpy(strip_info->tx_buff, strip_info->tx_head, strip_info->tx_left);
|
| 991 |
|
|
else
|
| 992 |
|
|
{
|
| 993 |
|
|
strip_info->tx_left = 0;
|
| 994 |
|
|
strip_info->tx_dropped++;
|
| 995 |
|
|
}
|
| 996 |
|
|
}
|
| 997 |
|
|
strip_info->tx_head = strip_info->tx_buff;
|
| 998 |
|
|
|
| 999 |
|
|
RestoreInterrupts(intstat);
|
| 1000 |
|
|
|
| 1001 |
|
|
printk(KERN_NOTICE "%s: strip MTU changed fom %d to %d.\n",
|
| 1002 |
|
|
strip_info->dev.name, old_mtu, strip_info->mtu);
|
| 1003 |
|
|
|
| 1004 |
|
|
if (orbuff) kfree(orbuff);
|
| 1005 |
|
|
if (osbuff) kfree(osbuff);
|
| 1006 |
|
|
if (otbuff) kfree(otbuff);
|
| 1007 |
|
|
}
|
| 1008 |
|
|
|
| 1009 |
|
|
static void strip_unlock(struct strip *strip_info)
|
| 1010 |
|
|
{
|
| 1011 |
|
|
/*
|
| 1012 |
|
|
* Set the timer to go off in one second.
|
| 1013 |
|
|
*/
|
| 1014 |
|
|
strip_info->idle_timer.expires = jiffies + 1*HZ;
|
| 1015 |
|
|
add_timer(&strip_info->idle_timer);
|
| 1016 |
|
|
if (!clear_bit(0, (void *)&strip_info->dev.tbusy))
|
| 1017 |
|
|
printk(KERN_ERR "%s: trying to unlock already unlocked device!\n",
|
| 1018 |
|
|
strip_info->dev.name);
|
| 1019 |
|
|
}
|
| 1020 |
|
|
|
| 1021 |
|
|
|
| 1022 |
|
|
/************************************************************************/
|
| 1023 |
|
|
/* Callback routines for exporting information through /proc */
|
| 1024 |
|
|
|
| 1025 |
|
|
/*
|
| 1026 |
|
|
* This function updates the total amount of data printed so far. It then
|
| 1027 |
|
|
* determines if the amount of data printed into a buffer has reached the
|
| 1028 |
|
|
* offset requested. If it hasn't, then the buffer is shifted over so that
|
| 1029 |
|
|
* the next bit of data can be printed over the old bit. If the total
|
| 1030 |
|
|
* amount printed so far exceeds the total amount requested, then this
|
| 1031 |
|
|
* function returns 1, otherwise 0.
|
| 1032 |
|
|
*/
|
| 1033 |
|
|
static int
|
| 1034 |
|
|
shift_buffer(char *buffer, int requested_offset, int requested_len,
|
| 1035 |
|
|
int *total, int *slop, char **buf)
|
| 1036 |
|
|
{
|
| 1037 |
|
|
int printed;
|
| 1038 |
|
|
|
| 1039 |
|
|
/* printk(KERN_DEBUG "shift: buffer: %d o: %d l: %d t: %d buf: %d\n",
|
| 1040 |
|
|
(int) buffer, requested_offset, requested_len, *total,
|
| 1041 |
|
|
(int) *buf); */
|
| 1042 |
|
|
printed = *buf - buffer;
|
| 1043 |
|
|
if (*total + printed <= requested_offset) {
|
| 1044 |
|
|
*total += printed;
|
| 1045 |
|
|
*buf = buffer;
|
| 1046 |
|
|
}
|
| 1047 |
|
|
else {
|
| 1048 |
|
|
if (*total < requested_offset) {
|
| 1049 |
|
|
*slop = requested_offset - *total;
|
| 1050 |
|
|
}
|
| 1051 |
|
|
*total = requested_offset + printed - *slop;
|
| 1052 |
|
|
}
|
| 1053 |
|
|
if (*total > requested_offset + requested_len) {
|
| 1054 |
|
|
return 1;
|
| 1055 |
|
|
}
|
| 1056 |
|
|
else {
|
| 1057 |
|
|
return 0;
|
| 1058 |
|
|
}
|
| 1059 |
|
|
}
|
| 1060 |
|
|
|
| 1061 |
|
|
/*
|
| 1062 |
|
|
* This function calculates the actual start of the requested data
|
| 1063 |
|
|
* in the buffer. It also calculates actual length of data returned,
|
| 1064 |
|
|
* which could be less that the amount of data requested.
|
| 1065 |
|
|
*/
|
| 1066 |
|
|
static int
|
| 1067 |
|
|
calc_start_len(char *buffer, char **start, int requested_offset,
|
| 1068 |
|
|
int requested_len, int total, char *buf)
|
| 1069 |
|
|
{
|
| 1070 |
|
|
int return_len, buffer_len;
|
| 1071 |
|
|
|
| 1072 |
|
|
buffer_len = buf - buffer;
|
| 1073 |
|
|
if (buffer_len >= 4095) {
|
| 1074 |
|
|
printk(KERN_ERR "STRIP: exceeded /proc buffer size\n");
|
| 1075 |
|
|
}
|
| 1076 |
|
|
|
| 1077 |
|
|
/*
|
| 1078 |
|
|
* There may be bytes before and after the
|
| 1079 |
|
|
* chunk that was actually requested.
|
| 1080 |
|
|
*/
|
| 1081 |
|
|
return_len = total - requested_offset;
|
| 1082 |
|
|
if (return_len < 0) {
|
| 1083 |
|
|
return_len = 0;
|
| 1084 |
|
|
}
|
| 1085 |
|
|
*start = buf - return_len;
|
| 1086 |
|
|
if (return_len > requested_len) {
|
| 1087 |
|
|
return_len = requested_len;
|
| 1088 |
|
|
}
|
| 1089 |
|
|
/* printk(KERN_DEBUG "return_len: %d\n", return_len); */
|
| 1090 |
|
|
return return_len;
|
| 1091 |
|
|
}
|
| 1092 |
|
|
|
| 1093 |
|
|
/*
|
| 1094 |
|
|
* If the time is in the near future, time_delta prints the number of
|
| 1095 |
|
|
* seconds to go into the buffer and returns the address of the buffer.
|
| 1096 |
|
|
* If the time is not in the near future, it returns the address of the
|
| 1097 |
|
|
* string "Not scheduled" The buffer must be long enough to contain the
|
| 1098 |
|
|
* ascii representation of the number plus 9 charactes for the " seconds"
|
| 1099 |
|
|
* and the null character.
|
| 1100 |
|
|
*/
|
| 1101 |
|
|
static char *time_delta(char buffer[], long time)
|
| 1102 |
|
|
{
|
| 1103 |
|
|
time -= jiffies;
|
| 1104 |
|
|
if (time > LongTime / 2) return("Not scheduled");
|
| 1105 |
|
|
if(time < 0) time = 0; /* Don't print negative times */
|
| 1106 |
|
|
sprintf(buffer, "%ld seconds", time / HZ);
|
| 1107 |
|
|
return(buffer);
|
| 1108 |
|
|
}
|
| 1109 |
|
|
|
| 1110 |
|
|
static int sprintf_neighbours(char *buffer, MetricomNodeTable *table, char *title)
|
| 1111 |
|
|
{
|
| 1112 |
|
|
/* We wrap this in a do/while loop, so if the table changes */
|
| 1113 |
|
|
/* while we're reading it, we just go around and try again. */
|
| 1114 |
|
|
struct timeval t;
|
| 1115 |
|
|
char *ptr;
|
| 1116 |
|
|
do
|
| 1117 |
|
|
{
|
| 1118 |
|
|
int i;
|
| 1119 |
|
|
t = table->timestamp;
|
| 1120 |
|
|
ptr = buffer;
|
| 1121 |
|
|
if (table->num_nodes) ptr += sprintf(ptr, "\n %s\n", title);
|
| 1122 |
|
|
for (i=0; i<table->num_nodes; i++)
|
| 1123 |
|
|
{
|
| 1124 |
|
|
InterruptStatus intstat = DisableInterrupts();
|
| 1125 |
|
|
MetricomNode node = table->node[i];
|
| 1126 |
|
|
RestoreInterrupts(intstat);
|
| 1127 |
|
|
ptr += sprintf(ptr, " %s\n", node.c);
|
| 1128 |
|
|
}
|
| 1129 |
|
|
} while (table->timestamp.tv_sec != t.tv_sec || table->timestamp.tv_usec != t.tv_usec);
|
| 1130 |
|
|
return ptr - buffer;
|
| 1131 |
|
|
}
|
| 1132 |
|
|
|
| 1133 |
|
|
/*
|
| 1134 |
|
|
* This function prints radio status information into the specified buffer.
|
| 1135 |
|
|
* I think the buffer size is 4K, so this routine should never print more
|
| 1136 |
|
|
* than 4K of data into it. With the maximum of 32 portables and 32 poletops
|
| 1137 |
|
|
* reported, the routine outputs 3107 bytes into the buffer.
|
| 1138 |
|
|
*/
|
| 1139 |
|
|
static int
|
| 1140 |
|
|
sprintf_status_info(char *buffer, struct strip *strip_info)
|
| 1141 |
|
|
{
|
| 1142 |
|
|
char temp[32];
|
| 1143 |
|
|
char *p = buffer;
|
| 1144 |
|
|
MetricomAddressString addr_string;
|
| 1145 |
|
|
|
| 1146 |
|
|
/* First, we must copy all of our data to a safe place, */
|
| 1147 |
|
|
/* in case a serial interrupt comes in and changes it. */
|
| 1148 |
|
|
InterruptStatus intstat = DisableInterrupts();
|
| 1149 |
|
|
int tx_left = strip_info->tx_left;
|
| 1150 |
|
|
unsigned long rx_average_pps = strip_info->rx_average_pps;
|
| 1151 |
|
|
unsigned long tx_average_pps = strip_info->tx_average_pps;
|
| 1152 |
|
|
unsigned long sx_average_pps = strip_info->sx_average_pps;
|
| 1153 |
|
|
int working = strip_info->working;
|
| 1154 |
|
|
int firmware_level = strip_info->firmware_level;
|
| 1155 |
|
|
long watchdog_doprobe = strip_info->watchdog_doprobe;
|
| 1156 |
|
|
long watchdog_doreset = strip_info->watchdog_doreset;
|
| 1157 |
|
|
long gratuitous_arp = strip_info->gratuitous_arp;
|
| 1158 |
|
|
long arp_interval = strip_info->arp_interval;
|
| 1159 |
|
|
FirmwareVersion firmware_version = strip_info->firmware_version;
|
| 1160 |
|
|
SerialNumber serial_number = strip_info->serial_number;
|
| 1161 |
|
|
BatteryVoltage battery_voltage = strip_info->battery_voltage;
|
| 1162 |
|
|
char8 if_name = strip_info->if_name;
|
| 1163 |
|
|
MetricomAddress true_dev_addr = strip_info->true_dev_addr;
|
| 1164 |
|
|
MetricomAddress dev_dev_addr = *(MetricomAddress*)strip_info->dev.dev_addr;
|
| 1165 |
|
|
int manual_dev_addr = strip_info->manual_dev_addr;
|
| 1166 |
|
|
#ifdef EXT_COUNTERS
|
| 1167 |
|
|
unsigned long rx_bytes = strip_info->rx_bytes;
|
| 1168 |
|
|
unsigned long tx_bytes = strip_info->tx_bytes;
|
| 1169 |
|
|
unsigned long rx_rbytes = strip_info->rx_rbytes;
|
| 1170 |
|
|
unsigned long tx_rbytes = strip_info->tx_rbytes;
|
| 1171 |
|
|
unsigned long rx_sbytes = strip_info->rx_sbytes;
|
| 1172 |
|
|
unsigned long tx_sbytes = strip_info->tx_sbytes;
|
| 1173 |
|
|
unsigned long rx_ebytes = strip_info->rx_ebytes;
|
| 1174 |
|
|
unsigned long tx_ebytes = strip_info->tx_ebytes;
|
| 1175 |
|
|
#endif
|
| 1176 |
|
|
RestoreInterrupts(intstat);
|
| 1177 |
|
|
|
| 1178 |
|
|
p += sprintf(p, "\nInterface name\t\t%s\n", if_name.c);
|
| 1179 |
|
|
p += sprintf(p, " Radio working:\t\t%s\n", working ? "Yes" : "No");
|
| 1180 |
|
|
radio_address_to_string(&true_dev_addr, &addr_string);
|
| 1181 |
|
|
p += sprintf(p, " Radio address:\t\t%s\n", addr_string.c);
|
| 1182 |
|
|
if (manual_dev_addr)
|
| 1183 |
|
|
{
|
| 1184 |
|
|
radio_address_to_string(&dev_dev_addr, &addr_string);
|
| 1185 |
|
|
p += sprintf(p, " Device address:\t%s\n", addr_string.c);
|
| 1186 |
|
|
}
|
| 1187 |
|
|
p += sprintf(p, " Firmware version:\t%s", !working ? "Unknown" :
|
| 1188 |
|
|
!firmware_level ? "Should be upgraded" :
|
| 1189 |
|
|
firmware_version.c);
|
| 1190 |
|
|
if (firmware_level >= ChecksummedMessages) p += sprintf(p, " (Checksums Enabled)");
|
| 1191 |
|
|
p += sprintf(p, "\n");
|
| 1192 |
|
|
p += sprintf(p, " Serial number:\t\t%s\n", serial_number.c);
|
| 1193 |
|
|
p += sprintf(p, " Battery voltage:\t%s\n", battery_voltage.c);
|
| 1194 |
|
|
p += sprintf(p, " Transmit queue (bytes):%d\n", tx_left);
|
| 1195 |
|
|
p += sprintf(p, " Receive packet rate: %ld packets per second\n", rx_average_pps / 8);
|
| 1196 |
|
|
p += sprintf(p, " Transmit packet rate: %ld packets per second\n", tx_average_pps / 8);
|
| 1197 |
|
|
p += sprintf(p, " Sent packet rate: %ld packets per second\n", sx_average_pps / 8);
|
| 1198 |
|
|
p += sprintf(p, " Next watchdog probe:\t%s\n", time_delta(temp, watchdog_doprobe));
|
| 1199 |
|
|
p += sprintf(p, " Next watchdog reset:\t%s\n", time_delta(temp, watchdog_doreset));
|
| 1200 |
|
|
p += sprintf(p, " Next gratuitous ARP:\t");
|
| 1201 |
|
|
|
| 1202 |
|
|
if (!memcmp(strip_info->dev.dev_addr, zero_address.c, sizeof(zero_address)))
|
| 1203 |
|
|
p += sprintf(p, "Disabled\n");
|
| 1204 |
|
|
else
|
| 1205 |
|
|
{
|
| 1206 |
|
|
p += sprintf(p, "%s\n", time_delta(temp, gratuitous_arp));
|
| 1207 |
|
|
p += sprintf(p, " Next ARP interval:\t%ld seconds\n", JIFFIE_TO_SEC(arp_interval));
|
| 1208 |
|
|
}
|
| 1209 |
|
|
|
| 1210 |
|
|
if (working)
|
| 1211 |
|
|
{
|
| 1212 |
|
|
#ifdef EXT_COUNTERS
|
| 1213 |
|
|
p += sprintf(p, "\n");
|
| 1214 |
|
|
p += sprintf(p, " Total bytes: \trx:\t%lu\ttx:\t%lu\n", rx_bytes, tx_bytes);
|
| 1215 |
|
|
p += sprintf(p, " thru radio: \trx:\t%lu\ttx:\t%lu\n", rx_rbytes, tx_rbytes);
|
| 1216 |
|
|
p += sprintf(p, " thru serial port: \trx:\t%lu\ttx:\t%lu\n", rx_sbytes, tx_sbytes);
|
| 1217 |
|
|
p += sprintf(p, " Total stat/err bytes:\trx:\t%lu\ttx:\t%lu\n", rx_ebytes, tx_ebytes);
|
| 1218 |
|
|
#endif
|
| 1219 |
|
|
p += sprintf_neighbours(p, &strip_info->poletops, "Poletops:");
|
| 1220 |
|
|
p += sprintf_neighbours(p, &strip_info->portables, "Portables:");
|
| 1221 |
|
|
}
|
| 1222 |
|
|
|
| 1223 |
|
|
return p - buffer;
|
| 1224 |
|
|
}
|
| 1225 |
|
|
|
| 1226 |
|
|
/*
|
| 1227 |
|
|
* This function is exports status information from the STRIP driver through
|
| 1228 |
|
|
* the /proc file system.
|
| 1229 |
|
|
*/
|
| 1230 |
|
|
|
| 1231 |
|
|
static int get_status_info(char *buffer, char **start, off_t req_offset, int req_len, int dummy)
|
| 1232 |
|
|
{
|
| 1233 |
|
|
int total = 0, slop = 0;
|
| 1234 |
|
|
struct strip *strip_info = struct_strip_list;
|
| 1235 |
|
|
char *buf = buffer;
|
| 1236 |
|
|
|
| 1237 |
|
|
buf += sprintf(buf, "strip_version: %s\n", StripVersion);
|
| 1238 |
|
|
if (shift_buffer(buffer, req_offset, req_len, &total, &slop, &buf)) goto exit;
|
| 1239 |
|
|
|
| 1240 |
|
|
while (strip_info != NULL)
|
| 1241 |
|
|
{
|
| 1242 |
|
|
buf += sprintf_status_info(buf, strip_info);
|
| 1243 |
|
|
if (shift_buffer(buffer, req_offset, req_len, &total, &slop, &buf)) break;
|
| 1244 |
|
|
strip_info = strip_info->next;
|
| 1245 |
|
|
}
|
| 1246 |
|
|
exit:
|
| 1247 |
|
|
return(calc_start_len(buffer, start, req_offset, req_len, total, buf));
|
| 1248 |
|
|
}
|
| 1249 |
|
|
|
| 1250 |
|
|
static const char proc_strip_status_name[] = "strip";
|
| 1251 |
|
|
static struct proc_dir_entry proc_strip_get_status_info =
|
| 1252 |
|
|
{
|
| 1253 |
|
|
PROC_NET_STRIP_STATUS, /* unsigned short low_ino */
|
| 1254 |
|
|
sizeof(proc_strip_status_name)-1, /* unsigned short namelen */
|
| 1255 |
|
|
proc_strip_status_name, /* const char *name */
|
| 1256 |
|
|
S_IFREG | S_IRUGO, /* mode_t mode */
|
| 1257 |
|
|
1, /* nlink_t nlink */
|
| 1258 |
|
|
0, 0, 0, /* uid_t uid, gid_t gid, unsigned long size */
|
| 1259 |
|
|
&proc_net_inode_operations, /* struct inode_operations * ops */
|
| 1260 |
|
|
&get_status_info, /* int (*get_info)(...) */
|
| 1261 |
|
|
NULL, /* void (*fill_inode)(struct inode *); */
|
| 1262 |
|
|
NULL, NULL, NULL, /* struct proc_dir_entry *next, *parent, *subdir; */
|
| 1263 |
|
|
NULL /* void *data; */
|
| 1264 |
|
|
};
|
| 1265 |
|
|
|
| 1266 |
|
|
|
| 1267 |
|
|
/************************************************************************/
|
| 1268 |
|
|
/* Sending routines */
|
| 1269 |
|
|
|
| 1270 |
|
|
static void ResetRadio(struct strip *strip_info)
|
| 1271 |
|
|
{
|
| 1272 |
|
|
struct tty_struct *tty = strip_info->tty;
|
| 1273 |
|
|
static const char init[] = "ate0q1dt**starmode\r**";
|
| 1274 |
|
|
StringDescriptor s = { init, sizeof(init)-1 };
|
| 1275 |
|
|
|
| 1276 |
|
|
/*
|
| 1277 |
|
|
* If the radio isn't working anymore,
|
| 1278 |
|
|
* we should clear the old status information.
|
| 1279 |
|
|
*/
|
| 1280 |
|
|
if (strip_info->working)
|
| 1281 |
|
|
{
|
| 1282 |
|
|
printk(KERN_INFO "%s: No response: Resetting radio.\n", strip_info->dev.name);
|
| 1283 |
|
|
strip_info->firmware_version.c[0] = '\0';
|
| 1284 |
|
|
strip_info->serial_number.c[0] = '\0';
|
| 1285 |
|
|
strip_info->battery_voltage.c[0] = '\0';
|
| 1286 |
|
|
strip_info->portables.num_nodes = 0;
|
| 1287 |
|
|
do_gettimeofday(&strip_info->portables.timestamp);
|
| 1288 |
|
|
strip_info->poletops.num_nodes = 0;
|
| 1289 |
|
|
do_gettimeofday(&strip_info->poletops.timestamp);
|
| 1290 |
|
|
}
|
| 1291 |
|
|
|
| 1292 |
|
|
strip_info->pps_timer = jiffies;
|
| 1293 |
|
|
strip_info->rx_pps_count = 0;
|
| 1294 |
|
|
strip_info->tx_pps_count = 0;
|
| 1295 |
|
|
strip_info->sx_pps_count = 0;
|
| 1296 |
|
|
strip_info->rx_average_pps = 0;
|
| 1297 |
|
|
strip_info->tx_average_pps = 0;
|
| 1298 |
|
|
strip_info->sx_average_pps = 0;
|
| 1299 |
|
|
|
| 1300 |
|
|
/* Mark radio address as unknown */
|
| 1301 |
|
|
*(MetricomAddress*)&strip_info->true_dev_addr = zero_address;
|
| 1302 |
|
|
if (!strip_info->manual_dev_addr)
|
| 1303 |
|
|
*(MetricomAddress*)strip_info->dev.dev_addr = zero_address;
|
| 1304 |
|
|
strip_info->working = FALSE;
|
| 1305 |
|
|
strip_info->firmware_level = NoStructure;
|
| 1306 |
|
|
strip_info->next_command = CompatibilityCommand;
|
| 1307 |
|
|
strip_info->watchdog_doprobe = jiffies + 10 * HZ;
|
| 1308 |
|
|
strip_info->watchdog_doreset = jiffies + 1 * HZ;
|
| 1309 |
|
|
|
| 1310 |
|
|
/* If the user has selected a baud rate above 38.4 see what magic we have to do */
|
| 1311 |
|
|
if (strip_info->user_baud > B38400)
|
| 1312 |
|
|
{
|
| 1313 |
|
|
/*
|
| 1314 |
|
|
* Subtle stuff: Pay attention :-)
|
| 1315 |
|
|
* If the serial port is currently at the user's selected (>38.4) rate,
|
| 1316 |
|
|
* then we temporarily switch to 19.2 and issue the ATS304 command
|
| 1317 |
|
|
* to tell the radio to switch to the user's selected rate.
|
| 1318 |
|
|
* If the serial port is not currently at that rate, that means we just
|
| 1319 |
|
|
* issued the ATS304 command last time through, so this time we restore
|
| 1320 |
|
|
* the user's selected rate and issue the normal starmode reset string.
|
| 1321 |
|
|
*/
|
| 1322 |
|
|
if (strip_info->user_baud == get_baud(tty))
|
| 1323 |
|
|
{
|
| 1324 |
|
|
static const char b0[] = "ate0q1s304=57600\r";
|
| 1325 |
|
|
static const char b1[] = "ate0q1s304=115200\r";
|
| 1326 |
|
|
static const StringDescriptor baudstring[2] =
|
| 1327 |
|
|
{ { b0, sizeof(b0)-1 }, { b1, sizeof(b1)-1 } };
|
| 1328 |
|
|
set_baud(tty, B19200);
|
| 1329 |
|
|
if (strip_info->user_baud == B57600 ) s = baudstring[0];
|
| 1330 |
|
|
else if (strip_info->user_baud == B115200) s = baudstring[1];
|
| 1331 |
|
|
else s = baudstring[1]; /* For now */
|
| 1332 |
|
|
}
|
| 1333 |
|
|
else set_baud(tty, strip_info->user_baud);
|
| 1334 |
|
|
}
|
| 1335 |
|
|
|
| 1336 |
|
|
tty->driver.write(tty, 0, s.string, s.length);
|
| 1337 |
|
|
#ifdef EXT_COUNTERS
|
| 1338 |
|
|
strip_info->tx_ebytes += s.length;
|
| 1339 |
|
|
#endif
|
| 1340 |
|
|
}
|
| 1341 |
|
|
|
| 1342 |
|
|
/*
|
| 1343 |
|
|
* Called by the driver when there's room for more data. If we have
|
| 1344 |
|
|
* more packets to send, we send them here.
|
| 1345 |
|
|
*/
|
| 1346 |
|
|
|
| 1347 |
|
|
static void strip_write_some_more(struct tty_struct *tty)
|
| 1348 |
|
|
{
|
| 1349 |
|
|
struct strip *strip_info = (struct strip *) tty->disc_data;
|
| 1350 |
|
|
|
| 1351 |
|
|
/* First make sure we're connected. */
|
| 1352 |
|
|
if (!strip_info || strip_info->magic != STRIP_MAGIC || !strip_info->dev.start)
|
| 1353 |
|
|
return;
|
| 1354 |
|
|
|
| 1355 |
|
|
if (strip_info->tx_left > 0)
|
| 1356 |
|
|
{
|
| 1357 |
|
|
/*
|
| 1358 |
|
|
* If some data left, send it
|
| 1359 |
|
|
* Note: There's a kernel design bug here. The write_wakeup routine has to
|
| 1360 |
|
|
* know how many bytes were written in the previous call, but the number of
|
| 1361 |
|
|
* bytes written is returned as the result of the tty->driver.write call,
|
| 1362 |
|
|
* and there's no guarantee that the tty->driver.write routine will have
|
| 1363 |
|
|
* returned before the write_wakeup routine is invoked. If the PC has fast
|
| 1364 |
|
|
* Serial DMA hardware, then it's quite possible that the write could complete
|
| 1365 |
|
|
* almost instantaneously, meaning that my write_wakeup routine could be
|
| 1366 |
|
|
* called immediately, before tty->driver.write has had a chance to return
|
| 1367 |
|
|
* the number of bytes that it wrote. In an attempt to guard against this,
|
| 1368 |
|
|
* I disable interrupts around the call to tty->driver.write, although even
|
| 1369 |
|
|
* this might not work on a symmetric multi-processor system.
|
| 1370 |
|
|
*/
|
| 1371 |
|
|
InterruptStatus intstat = DisableInterrupts();
|
| 1372 |
|
|
int num_written = tty->driver.write(tty, 0, strip_info->tx_head, strip_info->tx_left);
|
| 1373 |
|
|
strip_info->tx_left -= num_written;
|
| 1374 |
|
|
strip_info->tx_head += num_written;
|
| 1375 |
|
|
#ifdef EXT_COUNTERS
|
| 1376 |
|
|
strip_info->tx_sbytes += num_written;
|
| 1377 |
|
|
#endif
|
| 1378 |
|
|
RestoreInterrupts(intstat);
|
| 1379 |
|
|
}
|
| 1380 |
|
|
else /* Else start transmission of another packet */
|
| 1381 |
|
|
{
|
| 1382 |
|
|
tty->flags &= ~(1 << TTY_DO_WRITE_WAKEUP);
|
| 1383 |
|
|
strip_unlock(strip_info);
|
| 1384 |
|
|
mark_bh(NET_BH);
|
| 1385 |
|
|
}
|
| 1386 |
|
|
}
|
| 1387 |
|
|
|
| 1388 |
|
|
static __u8 *add_checksum(__u8 *buffer, __u8 *end)
|
| 1389 |
|
|
{
|
| 1390 |
|
|
__u16 sum = 0;
|
| 1391 |
|
|
__u8 *p = buffer;
|
| 1392 |
|
|
while (p < end) sum += *p++;
|
| 1393 |
|
|
end[3] = hextable[sum & 0xF]; sum >>= 4;
|
| 1394 |
|
|
end[2] = hextable[sum & 0xF]; sum >>= 4;
|
| 1395 |
|
|
end[1] = hextable[sum & 0xF]; sum >>= 4;
|
| 1396 |
|
|
end[0] = hextable[sum & 0xF];
|
| 1397 |
|
|
return(end+4);
|
| 1398 |
|
|
}
|
| 1399 |
|
|
|
| 1400 |
|
|
static unsigned char *strip_make_packet(unsigned char *buffer, struct strip *strip_info, struct sk_buff *skb)
|
| 1401 |
|
|
{
|
| 1402 |
|
|
__u8 *ptr = buffer;
|
| 1403 |
|
|
__u8 *stuffstate = NULL;
|
| 1404 |
|
|
STRIP_Header *header = (STRIP_Header *)skb->data;
|
| 1405 |
|
|
MetricomAddress haddr = header->dst_addr;
|
| 1406 |
|
|
int len = skb->len - sizeof(STRIP_Header);
|
| 1407 |
|
|
MetricomKey key;
|
| 1408 |
|
|
|
| 1409 |
|
|
/*HexDump("strip_make_packet", strip_info, skb->data, skb->data + skb->len);*/
|
| 1410 |
|
|
|
| 1411 |
|
|
if (header->protocol == htons(ETH_P_IP)) key = SIP0Key;
|
| 1412 |
|
|
else if (header->protocol == htons(ETH_P_ARP)) key = ARP0Key;
|
| 1413 |
|
|
else
|
| 1414 |
|
|
{
|
| 1415 |
|
|
printk(KERN_ERR "%s: strip_make_packet: Unknown packet type 0x%04X\n",
|
| 1416 |
|
|
strip_info->dev.name, ntohs(header->protocol));
|
| 1417 |
|
|
return(NULL);
|
| 1418 |
|
|
}
|
| 1419 |
|
|
|
| 1420 |
|
|
if (len > strip_info->mtu)
|
| 1421 |
|
|
{
|
| 1422 |
|
|
printk(KERN_ERR "%s: Dropping oversized transmit packet: %d bytes\n",
|
| 1423 |
|
|
strip_info->dev.name, len);
|
| 1424 |
|
|
return(NULL);
|
| 1425 |
|
|
}
|
| 1426 |
|
|
|
| 1427 |
|
|
/*
|
| 1428 |
|
|
* If we're sending to ourselves, discard the packet.
|
| 1429 |
|
|
* (Metricom radios choke if they try to send a packet to their own address.)
|
| 1430 |
|
|
*/
|
| 1431 |
|
|
if (!memcmp(haddr.c, strip_info->true_dev_addr.c, sizeof(haddr)))
|
| 1432 |
|
|
{
|
| 1433 |
|
|
printk(KERN_ERR "%s: Dropping packet addressed to self\n", strip_info->dev.name);
|
| 1434 |
|
|
return(NULL);
|
| 1435 |
|
|
}
|
| 1436 |
|
|
|
| 1437 |
|
|
/*
|
| 1438 |
|
|
* If this is a broadcast packet, send it to our designated Metricom
|
| 1439 |
|
|
* 'broadcast hub' radio (First byte of address being 0xFF means broadcast)
|
| 1440 |
|
|
*/
|
| 1441 |
|
|
if (haddr.c[0] == 0xFF)
|
| 1442 |
|
|
{
|
| 1443 |
|
|
/* arp_query returns 1 if it succeeds in looking up the address, 0 if it fails */
|
| 1444 |
|
|
if (!arp_query(haddr.c, strip_info->dev.pa_brdaddr, &strip_info->dev))
|
| 1445 |
|
|
{
|
| 1446 |
|
|
printk(KERN_ERR "%s: Unable to send packet (no broadcast hub configured)\n",
|
| 1447 |
|
|
strip_info->dev.name);
|
| 1448 |
|
|
return(NULL);
|
| 1449 |
|
|
}
|
| 1450 |
|
|
/*
|
| 1451 |
|
|
* If we are the broadcast hub, don't bother sending to ourselves.
|
| 1452 |
|
|
* (Metricom radios choke if they try to send a packet to their own address.)
|
| 1453 |
|
|
*/
|
| 1454 |
|
|
if (!memcmp(haddr.c, strip_info->true_dev_addr.c, sizeof(haddr))) return(NULL);
|
| 1455 |
|
|
}
|
| 1456 |
|
|
|
| 1457 |
|
|
*ptr++ = 0x0D;
|
| 1458 |
|
|
*ptr++ = '*';
|
| 1459 |
|
|
*ptr++ = hextable[haddr.c[2] >> 4];
|
| 1460 |
|
|
*ptr++ = hextable[haddr.c[2] & 0xF];
|
| 1461 |
|
|
*ptr++ = hextable[haddr.c[3] >> 4];
|
| 1462 |
|
|
*ptr++ = hextable[haddr.c[3] & 0xF];
|
| 1463 |
|
|
*ptr++ = '-';
|
| 1464 |
|
|
*ptr++ = hextable[haddr.c[4] >> 4];
|
| 1465 |
|
|
*ptr++ = hextable[haddr.c[4] & 0xF];
|
| 1466 |
|
|
*ptr++ = hextable[haddr.c[5] >> 4];
|
| 1467 |
|
|
*ptr++ = hextable[haddr.c[5] & 0xF];
|
| 1468 |
|
|
*ptr++ = '*';
|
| 1469 |
|
|
*ptr++ = key.c[0];
|
| 1470 |
|
|
*ptr++ = key.c[1];
|
| 1471 |
|
|
*ptr++ = key.c[2];
|
| 1472 |
|
|
*ptr++ = key.c[3];
|
| 1473 |
|
|
|
| 1474 |
|
|
ptr = StuffData(skb->data + sizeof(STRIP_Header), len, ptr, &stuffstate);
|
| 1475 |
|
|
|
| 1476 |
|
|
if (strip_info->firmware_level >= ChecksummedMessages) ptr = add_checksum(buffer+1, ptr);
|
| 1477 |
|
|
|
| 1478 |
|
|
*ptr++ = 0x0D;
|
| 1479 |
|
|
return(ptr);
|
| 1480 |
|
|
}
|
| 1481 |
|
|
|
| 1482 |
|
|
static void strip_send(struct strip *strip_info, struct sk_buff *skb)
|
| 1483 |
|
|
{
|
| 1484 |
|
|
MetricomAddress haddr;
|
| 1485 |
|
|
unsigned char *ptr = strip_info->tx_buff;
|
| 1486 |
|
|
int doreset = (long)jiffies - strip_info->watchdog_doreset >= 0;
|
| 1487 |
|
|
int doprobe = (long)jiffies - strip_info->watchdog_doprobe >= 0 && !doreset;
|
| 1488 |
|
|
|
| 1489 |
|
|
/*
|
| 1490 |
|
|
* 1. If we have a packet, encapsulate it and put it in the buffer
|
| 1491 |
|
|
*/
|
| 1492 |
|
|
if (skb)
|
| 1493 |
|
|
{
|
| 1494 |
|
|
char *newptr = strip_make_packet(ptr, strip_info, skb);
|
| 1495 |
|
|
strip_info->tx_pps_count++;
|
| 1496 |
|
|
if (!newptr) strip_info->tx_dropped++;
|
| 1497 |
|
|
else
|
| 1498 |
|
|
{
|
| 1499 |
|
|
ptr = newptr;
|
| 1500 |
|
|
strip_info->sx_pps_count++;
|
| 1501 |
|
|
strip_info->tx_packets++; /* Count another successful packet */
|
| 1502 |
|
|
#ifdef EXT_COUNTERS
|
| 1503 |
|
|
strip_info->tx_bytes += skb->len;
|
| 1504 |
|
|
strip_info->tx_rbytes += ptr - strip_info->tx_buff;
|
| 1505 |
|
|
#endif
|
| 1506 |
|
|
/*DumpData("Sending:", strip_info, strip_info->tx_buff, ptr);*/
|
| 1507 |
|
|
/*HexDump("Sending", strip_info, strip_info->tx_buff, ptr);*/
|
| 1508 |
|
|
}
|
| 1509 |
|
|
}
|
| 1510 |
|
|
|
| 1511 |
|
|
/*
|
| 1512 |
|
|
* 2. If it is time for another tickle, tack it on, after the packet
|
| 1513 |
|
|
*/
|
| 1514 |
|
|
if (doprobe)
|
| 1515 |
|
|
{
|
| 1516 |
|
|
StringDescriptor ts = CommandString[strip_info->next_command];
|
| 1517 |
|
|
#if TICKLE_TIMERS
|
| 1518 |
|
|
{
|
| 1519 |
|
|
struct timeval tv;
|
| 1520 |
|
|
do_gettimeofday(&tv);
|
| 1521 |
|
|
printk(KERN_INFO "**** Sending tickle string %d at %02d.%06d\n",
|
| 1522 |
|
|
strip_info->next_command, tv.tv_sec % 100, tv.tv_usec);
|
| 1523 |
|
|
}
|
| 1524 |
|
|
#endif
|
| 1525 |
|
|
if (ptr == strip_info->tx_buff) *ptr++ = 0x0D;
|
| 1526 |
|
|
|
| 1527 |
|
|
*ptr++ = '*'; /* First send "**" to provoke an error message */
|
| 1528 |
|
|
*ptr++ = '*';
|
| 1529 |
|
|
|
| 1530 |
|
|
/* Then add the command */
|
| 1531 |
|
|
memcpy(ptr, ts.string, ts.length);
|
| 1532 |
|
|
|
| 1533 |
|
|
/* Add a checksum ? */
|
| 1534 |
|
|
if (strip_info->firmware_level < ChecksummedMessages) ptr += ts.length;
|
| 1535 |
|
|
else ptr = add_checksum(ptr, ptr + ts.length);
|
| 1536 |
|
|
|
| 1537 |
|
|
*ptr++ = 0x0D; /* Terminate the command with a <CR> */
|
| 1538 |
|
|
|
| 1539 |
|
|
/* Cycle to next periodic command? */
|
| 1540 |
|
|
if (strip_info->firmware_level >= StructuredMessages)
|
| 1541 |
|
|
if (++strip_info->next_command >= ELEMENTS_OF(CommandString))
|
| 1542 |
|
|
strip_info->next_command = 0;
|
| 1543 |
|
|
#ifdef EXT_COUNTERS
|
| 1544 |
|
|
strip_info->tx_ebytes += ts.length;
|
| 1545 |
|
|
#endif
|
| 1546 |
|
|
strip_info->watchdog_doprobe = jiffies + 10 * HZ;
|
| 1547 |
|
|
strip_info->watchdog_doreset = jiffies + 1 * HZ;
|
| 1548 |
|
|
/*printk(KERN_INFO "%s: Routine radio test.\n", strip_info->dev.name);*/
|
| 1549 |
|
|
}
|
| 1550 |
|
|
|
| 1551 |
|
|
/*
|
| 1552 |
|
|
* 3. Set up the strip_info ready to send the data (if any).
|
| 1553 |
|
|
*/
|
| 1554 |
|
|
strip_info->tx_head = strip_info->tx_buff;
|
| 1555 |
|
|
strip_info->tx_left = ptr - strip_info->tx_buff;
|
| 1556 |
|
|
strip_info->tty->flags |= (1 << TTY_DO_WRITE_WAKEUP);
|
| 1557 |
|
|
|
| 1558 |
|
|
/*
|
| 1559 |
|
|
* 4. Debugging check to make sure we're not overflowing the buffer.
|
| 1560 |
|
|
*/
|
| 1561 |
|
|
if (strip_info->tx_size - strip_info->tx_left < 20)
|
| 1562 |
|
|
printk(KERN_ERR "%s: Sending%5d bytes;%5d bytes free.\n", strip_info->dev.name,
|
| 1563 |
|
|
strip_info->tx_left, strip_info->tx_size - strip_info->tx_left);
|
| 1564 |
|
|
|
| 1565 |
|
|
/*
|
| 1566 |
|
|
* 5. If watchdog has expired, reset the radio. Note: if there's data waiting in
|
| 1567 |
|
|
* the buffer, strip_write_some_more will send it after the reset has finished
|
| 1568 |
|
|
*/
|
| 1569 |
|
|
if (doreset) { ResetRadio(strip_info); return; }
|
| 1570 |
|
|
|
| 1571 |
|
|
/*
|
| 1572 |
|
|
* 6. If it is time for a periodic ARP, queue one up to be sent.
|
| 1573 |
|
|
* We only do this if:
|
| 1574 |
|
|
* 1. The radio is working
|
| 1575 |
|
|
* 2. It's time to send another periodic ARP
|
| 1576 |
|
|
* 3. We really know what our address is (and it is not manually set to zero)
|
| 1577 |
|
|
* 4. We have a designated broadcast address configured
|
| 1578 |
|
|
* If we queue up an ARP packet when we don't have a designated broadcast
|
| 1579 |
|
|
* address configured, then the packet will just have to be discarded in
|
| 1580 |
|
|
* strip_make_packet. This is not fatal, but it causes misleading information
|
| 1581 |
|
|
* to be displayed in tcpdump. tcpdump will report that periodic APRs are
|
| 1582 |
|
|
* being sent, when in fact they are not, because they are all being dropped
|
| 1583 |
|
|
* in the strip_make_packet routine.
|
| 1584 |
|
|
*/
|
| 1585 |
|
|
if (strip_info->working && (long)jiffies - strip_info->gratuitous_arp >= 0 &&
|
| 1586 |
|
|
memcmp(strip_info->dev.dev_addr, zero_address.c, sizeof(zero_address)) &&
|
| 1587 |
|
|
arp_query(haddr.c, strip_info->dev.pa_brdaddr, &strip_info->dev))
|
| 1588 |
|
|
{
|
| 1589 |
|
|
/*printk(KERN_INFO "%s: Sending gratuitous ARP with interval %ld\n",
|
| 1590 |
|
|
strip_info->dev.name, strip_info->arp_interval / HZ);*/
|
| 1591 |
|
|
strip_info->gratuitous_arp = jiffies + strip_info->arp_interval;
|
| 1592 |
|
|
strip_info->arp_interval *= 2;
|
| 1593 |
|
|
if (strip_info->arp_interval > MaxARPInterval)
|
| 1594 |
|
|
strip_info->arp_interval = MaxARPInterval;
|
| 1595 |
|
|
arp_send(ARPOP_REPLY, ETH_P_ARP,
|
| 1596 |
|
|
strip_info->dev.pa_addr, /* Target address of ARP packet is our address */
|
| 1597 |
|
|
&strip_info->dev, /* Device to send packet on */
|
| 1598 |
|
|
strip_info->dev.pa_addr, /* Source IP address this ARP packet comes from */
|
| 1599 |
|
|
NULL, /* Destination HW address is NULL (broadcast it) */
|
| 1600 |
|
|
strip_info->dev.dev_addr, /* Source HW address is our HW address */
|
| 1601 |
|
|
strip_info->dev.dev_addr); /* Target HW address is our HW address (redundant) */
|
| 1602 |
|
|
}
|
| 1603 |
|
|
|
| 1604 |
|
|
/*
|
| 1605 |
|
|
* 7. All ready. Start the transmission
|
| 1606 |
|
|
*/
|
| 1607 |
|
|
strip_write_some_more(strip_info->tty);
|
| 1608 |
|
|
}
|
| 1609 |
|
|
|
| 1610 |
|
|
/* Encapsulate a datagram and kick it into a TTY queue. */
|
| 1611 |
|
|
static int strip_xmit(struct sk_buff *skb, struct device *dev)
|
| 1612 |
|
|
{
|
| 1613 |
|
|
struct strip *strip_info = (struct strip *)(dev->priv);
|
| 1614 |
|
|
|
| 1615 |
|
|
if (!dev->start)
|
| 1616 |
|
|
{
|
| 1617 |
|
|
printk(KERN_ERR "%s: xmit call when iface is down\n", dev->name);
|
| 1618 |
|
|
return(1);
|
| 1619 |
|
|
}
|
| 1620 |
|
|
if (set_bit(0, (void *) &strip_info->dev.tbusy)) return(1);
|
| 1621 |
|
|
del_timer(&strip_info->idle_timer);
|
| 1622 |
|
|
|
| 1623 |
|
|
/* See if someone has been ifconfigging */
|
| 1624 |
|
|
if (strip_info->mtu != strip_info->dev.mtu)
|
| 1625 |
|
|
strip_changedmtu(strip_info);
|
| 1626 |
|
|
|
| 1627 |
|
|
if (jiffies - strip_info->pps_timer > HZ)
|
| 1628 |
|
|
{
|
| 1629 |
|
|
unsigned long t = jiffies - strip_info->pps_timer;
|
| 1630 |
|
|
unsigned long rx_pps_count = (strip_info->rx_pps_count * HZ * 8 + t/2) / t;
|
| 1631 |
|
|
unsigned long tx_pps_count = (strip_info->tx_pps_count * HZ * 8 + t/2) / t;
|
| 1632 |
|
|
unsigned long sx_pps_count = (strip_info->sx_pps_count * HZ * 8 + t/2) / t;
|
| 1633 |
|
|
|
| 1634 |
|
|
strip_info->pps_timer = jiffies;
|
| 1635 |
|
|
strip_info->rx_pps_count = 0;
|
| 1636 |
|
|
strip_info->tx_pps_count = 0;
|
| 1637 |
|
|
strip_info->sx_pps_count = 0;
|
| 1638 |
|
|
|
| 1639 |
|
|
strip_info->rx_average_pps = (strip_info->rx_average_pps + rx_pps_count + 1) / 2;
|
| 1640 |
|
|
strip_info->tx_average_pps = (strip_info->tx_average_pps + tx_pps_count + 1) / 2;
|
| 1641 |
|
|
strip_info->sx_average_pps = (strip_info->sx_average_pps + sx_pps_count + 1) / 2;
|
| 1642 |
|
|
|
| 1643 |
|
|
if (rx_pps_count / 8 >= 10)
|
| 1644 |
|
|
printk(KERN_INFO "%s: WARNING: Receiving %ld packets per second.\n",
|
| 1645 |
|
|
strip_info->dev.name, rx_pps_count / 8);
|
| 1646 |
|
|
if (tx_pps_count / 8 >= 10)
|
| 1647 |
|
|
printk(KERN_INFO "%s: WARNING: Tx %ld packets per second.\n",
|
| 1648 |
|
|
strip_info->dev.name, tx_pps_count / 8);
|
| 1649 |
|
|
if (sx_pps_count / 8 >= 10)
|
| 1650 |
|
|
printk(KERN_INFO "%s: WARNING: Sending %ld packets per second.\n",
|
| 1651 |
|
|
strip_info->dev.name, sx_pps_count / 8);
|
| 1652 |
|
|
}
|
| 1653 |
|
|
|
| 1654 |
|
|
strip_send(strip_info, skb);
|
| 1655 |
|
|
|
| 1656 |
|
|
if (skb) dev_kfree_skb(skb, FREE_WRITE);
|
| 1657 |
|
|
return(0);
|
| 1658 |
|
|
}
|
| 1659 |
|
|
|
| 1660 |
|
|
/*
|
| 1661 |
|
|
* IdleTask periodically calls strip_xmit, so even when we have no IP packets
|
| 1662 |
|
|
* to send for an extended period of time, the watchdog processing still gets
|
| 1663 |
|
|
* done to ensure that the radio stays in Starmode
|
| 1664 |
|
|
*/
|
| 1665 |
|
|
|
| 1666 |
|
|
static void strip_IdleTask(unsigned long parameter)
|
| 1667 |
|
|
{
|
| 1668 |
|
|
strip_xmit(NULL, (struct device *)parameter);
|
| 1669 |
|
|
}
|
| 1670 |
|
|
|
| 1671 |
|
|
/*
|
| 1672 |
|
|
* Create the MAC header for an arbitrary protocol layer
|
| 1673 |
|
|
*
|
| 1674 |
|
|
* saddr!=NULL means use this specific address (n/a for Metricom)
|
| 1675 |
|
|
* saddr==NULL means use default device source address
|
| 1676 |
|
|
* daddr!=NULL means use this destination address
|
| 1677 |
|
|
* daddr==NULL means leave destination address alone
|
| 1678 |
|
|
* (e.g. unresolved arp -- kernel will call
|
| 1679 |
|
|
* rebuild_header later to fill in the address)
|
| 1680 |
|
|
*/
|
| 1681 |
|
|
|
| 1682 |
|
|
static int strip_header(struct sk_buff *skb, struct device *dev,
|
| 1683 |
|
|
unsigned short type, void *daddr, void *saddr, unsigned len)
|
| 1684 |
|
|
{
|
| 1685 |
|
|
struct strip *strip_info = (struct strip *)(dev->priv);
|
| 1686 |
|
|
STRIP_Header *header = (STRIP_Header *)skb_push(skb, sizeof(STRIP_Header));
|
| 1687 |
|
|
|
| 1688 |
|
|
/*printk(KERN_INFO "%s: strip_header 0x%04X %s\n", dev->name, type,
|
| 1689 |
|
|
type == ETH_P_IP ? "IP" : type == ETH_P_ARP ? "ARP" : "");*/
|
| 1690 |
|
|
|
| 1691 |
|
|
header->src_addr = strip_info->true_dev_addr;
|
| 1692 |
|
|
header->protocol = htons(type);
|
| 1693 |
|
|
|
| 1694 |
|
|
/*HexDump("strip_header", (struct strip *)(dev->priv), skb->data, skb->data + skb->len);*/
|
| 1695 |
|
|
|
| 1696 |
|
|
if (!daddr) return(-dev->hard_header_len);
|
| 1697 |
|
|
|
| 1698 |
|
|
header->dst_addr = *(MetricomAddress*)daddr;
|
| 1699 |
|
|
return(dev->hard_header_len);
|
| 1700 |
|
|
}
|
| 1701 |
|
|
|
| 1702 |
|
|
/*
|
| 1703 |
|
|
* Rebuild the MAC header. This is called after an ARP
|
| 1704 |
|
|
* (or in future other address resolution) has completed on this
|
| 1705 |
|
|
* sk_buff. We now let ARP fill in the other fields.
|
| 1706 |
|
|
* I think this should return zero if packet is ready to send,
|
| 1707 |
|
|
* or non-zero if it needs more time to do an address lookup
|
| 1708 |
|
|
*/
|
| 1709 |
|
|
|
| 1710 |
|
|
static int strip_rebuild_header(void *buff, struct device *dev,
|
| 1711 |
|
|
unsigned long dst, struct sk_buff *skb)
|
| 1712 |
|
|
{
|
| 1713 |
|
|
struct strip *strip_info = (struct strip *)(dev->priv);
|
| 1714 |
|
|
STRIP_Header *header = (STRIP_Header *)buff;
|
| 1715 |
|
|
/* Arp find returns zero if it knows the address, */
|
| 1716 |
|
|
/* or if it doesn't know the address it sends an ARP packet and returns non-zero */
|
| 1717 |
|
|
int arp_result = arp_find(header->dst_addr.c, dst, dev, dev->pa_addr, skb);
|
| 1718 |
|
|
|
| 1719 |
|
|
if (arp_result == 0 && !memcmp(header->dst_addr.c, strip_info->true_dev_addr.c, sizeof(header->dst_addr.c)))
|
| 1720 |
|
|
{
|
| 1721 |
|
|
IPaddr x;
|
| 1722 |
|
|
x.l = dst;
|
| 1723 |
|
|
printk(KERN_ERR "%s: ARP lookup %d.%d.%d.%d returned own address\n",
|
| 1724 |
|
|
strip_info->dev.name, x.b[0], x.b[1], x.b[2], x.b[3]);
|
| 1725 |
|
|
}
|
| 1726 |
|
|
|
| 1727 |
|
|
return(arp_result);
|
| 1728 |
|
|
}
|
| 1729 |
|
|
|
| 1730 |
|
|
|
| 1731 |
|
|
/************************************************************************/
|
| 1732 |
|
|
/* Receiving routines */
|
| 1733 |
|
|
|
| 1734 |
|
|
static int strip_receive_room(struct tty_struct *tty)
|
| 1735 |
|
|
{
|
| 1736 |
|
|
return 0x10000; /* We can handle an infinite amount of data. :-) */
|
| 1737 |
|
|
}
|
| 1738 |
|
|
|
| 1739 |
|
|
/*
|
| 1740 |
|
|
* This function parses the response to the ATS300? command,
|
| 1741 |
|
|
* extracting the radio version and serial number.
|
| 1742 |
|
|
*/
|
| 1743 |
|
|
static void get_radio_version(struct strip *strip_info, __u8 *ptr, __u8 *end)
|
| 1744 |
|
|
{
|
| 1745 |
|
|
__u8 *p, *value_begin, *value_end;
|
| 1746 |
|
|
int len;
|
| 1747 |
|
|
|
| 1748 |
|
|
/* Determine the beginning of the second line of the payload */
|
| 1749 |
|
|
p = ptr;
|
| 1750 |
|
|
while (p < end && *p != 10) p++;
|
| 1751 |
|
|
if (p >= end) return;
|
| 1752 |
|
|
p++;
|
| 1753 |
|
|
value_begin = p;
|
| 1754 |
|
|
|
| 1755 |
|
|
/* Determine the end of line */
|
| 1756 |
|
|
while (p < end && *p != 10) p++;
|
| 1757 |
|
|
if (p >= end) return;
|
| 1758 |
|
|
value_end = p;
|
| 1759 |
|
|
p++;
|
| 1760 |
|
|
|
| 1761 |
|
|
len = value_end - value_begin;
|
| 1762 |
|
|
len = MIN(len, sizeof(FirmwareVersion) - 1);
|
| 1763 |
|
|
if (strip_info->firmware_version.c[0] == 0)
|
| 1764 |
|
|
printk(KERN_INFO "%s: Radio Firmware: %.*s\n",
|
| 1765 |
|
|
strip_info->dev.name, len, value_begin);
|
| 1766 |
|
|
sprintf(strip_info->firmware_version.c, "%.*s", len, value_begin);
|
| 1767 |
|
|
|
| 1768 |
|
|
/* Look for the first colon */
|
| 1769 |
|
|
while (p < end && *p != ':') p++;
|
| 1770 |
|
|
if (p >= end) return;
|
| 1771 |
|
|
/* Skip over the space */
|
| 1772 |
|
|
p += 2;
|
| 1773 |
|
|
len = sizeof(SerialNumber) - 1;
|
| 1774 |
|
|
if (p + len <= end) {
|
| 1775 |
|
|
sprintf(strip_info->serial_number.c, "%.*s", len, p);
|
| 1776 |
|
|
}
|
| 1777 |
|
|
else {
|
| 1778 |
|
|
printk(KERN_DEBUG "STRIP: radio serial number shorter (%d) than expected (%d)\n",
|
| 1779 |
|
|
end - p, len);
|
| 1780 |
|
|
}
|
| 1781 |
|
|
}
|
| 1782 |
|
|
|
| 1783 |
|
|
/*
|
| 1784 |
|
|
* This function parses the response to the ATS325? command,
|
| 1785 |
|
|
* extracting the radio battery voltage.
|
| 1786 |
|
|
*/
|
| 1787 |
|
|
static void get_radio_voltage(struct strip *strip_info, __u8 *ptr, __u8 *end)
|
| 1788 |
|
|
{
|
| 1789 |
|
|
int len;
|
| 1790 |
|
|
|
| 1791 |
|
|
len = sizeof(BatteryVoltage) - 1;
|
| 1792 |
|
|
if (ptr + len <= end) {
|
| 1793 |
|
|
sprintf(strip_info->battery_voltage.c, "%.*s", len, ptr);
|
| 1794 |
|
|
}
|
| 1795 |
|
|
else {
|
| 1796 |
|
|
printk(KERN_DEBUG "STRIP: radio voltage string shorter (%d) than expected (%d)\n",
|
| 1797 |
|
|
end - ptr, len);
|
| 1798 |
|
|
}
|
| 1799 |
|
|
}
|
| 1800 |
|
|
|
| 1801 |
|
|
/*
|
| 1802 |
|
|
* This function parses the responses to the AT~LA and ATS311 commands,
|
| 1803 |
|
|
* which list the radio's neighbours.
|
| 1804 |
|
|
*/
|
| 1805 |
|
|
static void get_radio_neighbours(MetricomNodeTable *table, __u8 *ptr, __u8 *end)
|
| 1806 |
|
|
{
|
| 1807 |
|
|
table->num_nodes = 0;
|
| 1808 |
|
|
while (ptr < end && table->num_nodes < NODE_TABLE_SIZE)
|
| 1809 |
|
|
{
|
| 1810 |
|
|
MetricomNode *node = &table->node[table->num_nodes++];
|
| 1811 |
|
|
char *dst = node->c, *limit = dst + sizeof(*node) - 1;
|
| 1812 |
|
|
while (ptr < end && *ptr <= 32) ptr++;
|
| 1813 |
|
|
while (ptr < end && dst < limit && *ptr != 10) *dst++ = *ptr++;
|
| 1814 |
|
|
*dst++ = 0;
|
| 1815 |
|
|
while (ptr < end && ptr[-1] != 10) ptr++;
|
| 1816 |
|
|
}
|
| 1817 |
|
|
do_gettimeofday(&table->timestamp);
|
| 1818 |
|
|
}
|
| 1819 |
|
|
|
| 1820 |
|
|
static int get_radio_address(struct strip *strip_info, __u8 *p)
|
| 1821 |
|
|
{
|
| 1822 |
|
|
MetricomAddress addr;
|
| 1823 |
|
|
|
| 1824 |
|
|
if (string_to_radio_address(&addr, p)) return(1);
|
| 1825 |
|
|
|
| 1826 |
|
|
/* See if our radio address has changed */
|
| 1827 |
|
|
if (memcmp(strip_info->true_dev_addr.c, addr.c, sizeof(addr)))
|
| 1828 |
|
|
{
|
| 1829 |
|
|
MetricomAddressString addr_string;
|
| 1830 |
|
|
radio_address_to_string(&addr, &addr_string);
|
| 1831 |
|
|
printk(KERN_INFO "%s: Radio address = %s\n", strip_info->dev.name, addr_string.c);
|
| 1832 |
|
|
strip_info->true_dev_addr = addr;
|
| 1833 |
|
|
if (!strip_info->manual_dev_addr) *(MetricomAddress*)strip_info->dev.dev_addr = addr;
|
| 1834 |
|
|
/* Give the radio a few seconds to get its head straight, then send an arp */
|
| 1835 |
|
|
strip_info->gratuitous_arp = jiffies + 15 * HZ;
|
| 1836 |
|
|
strip_info->arp_interval = 1 * HZ;
|
| 1837 |
|
|
}
|
| 1838 |
|
|
return(0);
|
| 1839 |
|
|
}
|
| 1840 |
|
|
|
| 1841 |
|
|
static int verify_checksum(struct strip *strip_info)
|
| 1842 |
|
|
{
|
| 1843 |
|
|
__u8 *p = strip_info->sx_buff;
|
| 1844 |
|
|
__u8 *end = strip_info->sx_buff + strip_info->sx_count - 4;
|
| 1845 |
|
|
u_short sum = (READHEX16(end[0]) << 12) | (READHEX16(end[1]) << 8) |
|
| 1846 |
|
|
(READHEX16(end[2]) << 4) | (READHEX16(end[3]));
|
| 1847 |
|
|
while (p < end) sum -= *p++;
|
| 1848 |
|
|
if (sum == 0 && strip_info->firmware_level == StructuredMessages)
|
| 1849 |
|
|
{
|
| 1850 |
|
|
strip_info->firmware_level = ChecksummedMessages;
|
| 1851 |
|
|
printk(KERN_INFO "%s: Radio provides message checksums\n", strip_info->dev.name);
|
| 1852 |
|
|
}
|
| 1853 |
|
|
return(sum == 0);
|
| 1854 |
|
|
}
|
| 1855 |
|
|
|
| 1856 |
|
|
static void RecvErr(char *msg, struct strip *strip_info)
|
| 1857 |
|
|
{
|
| 1858 |
|
|
__u8 *ptr = strip_info->sx_buff;
|
| 1859 |
|
|
__u8 *end = strip_info->sx_buff + strip_info->sx_count;
|
| 1860 |
|
|
DumpData(msg, strip_info, ptr, end);
|
| 1861 |
|
|
strip_info->rx_errors++;
|
| 1862 |
|
|
}
|
| 1863 |
|
|
|
| 1864 |
|
|
static void RecvErr_Message(struct strip *strip_info, __u8 *sendername, const __u8 *msg, u_long len)
|
| 1865 |
|
|
{
|
| 1866 |
|
|
if (has_prefix(msg, len, "001")) /* Not in StarMode! */
|
| 1867 |
|
|
{
|
| 1868 |
|
|
RecvErr("Error Msg:", strip_info);
|
| 1869 |
|
|
printk(KERN_INFO "%s: Radio %s is not in StarMode\n",
|
| 1870 |
|
|
strip_info->dev.name, sendername);
|
| 1871 |
|
|
}
|
| 1872 |
|
|
|
| 1873 |
|
|
else if (has_prefix(msg, len, "002")) /* Remap handle */
|
| 1874 |
|
|
{
|
| 1875 |
|
|
/* We ignore "Remap handle" messages for now */
|
| 1876 |
|
|
}
|
| 1877 |
|
|
|
| 1878 |
|
|
else if (has_prefix(msg, len, "003")) /* Can't resolve name */
|
| 1879 |
|
|
{
|
| 1880 |
|
|
RecvErr("Error Msg:", strip_info);
|
| 1881 |
|
|
printk(KERN_INFO "%s: Destination radio name is unknown\n",
|
| 1882 |
|
|
strip_info->dev.name);
|
| 1883 |
|
|
}
|
| 1884 |
|
|
|
| 1885 |
|
|
else if (has_prefix(msg, len, "004")) /* Name too small or missing */
|
| 1886 |
|
|
{
|
| 1887 |
|
|
strip_info->watchdog_doreset = jiffies + LongTime;
|
| 1888 |
|
|
#if TICKLE_TIMERS
|
| 1889 |
|
|
{
|
| 1890 |
|
|
struct timeval tv;
|
| 1891 |
|
|
do_gettimeofday(&tv);
|
| 1892 |
|
|
printk(KERN_INFO "**** Got ERR_004 response at %02d.%06d\n",
|
| 1893 |
|
|
tv.tv_sec % 100, tv.tv_usec);
|
| 1894 |
|
|
}
|
| 1895 |
|
|
#endif
|
| 1896 |
|
|
if (!strip_info->working)
|
| 1897 |
|
|
{
|
| 1898 |
|
|
strip_info->working = TRUE;
|
| 1899 |
|
|
printk(KERN_INFO "%s: Radio now in starmode\n", strip_info->dev.name);
|
| 1900 |
|
|
/*
|
| 1901 |
|
|
* If the radio has just entered a working state, we should do our first
|
| 1902 |
|
|
* probe ASAP, so that we find out our radio address etc. without delay.
|
| 1903 |
|
|
*/
|
| 1904 |
|
|
strip_info->watchdog_doprobe = jiffies;
|
| 1905 |
|
|
}
|
| 1906 |
|
|
if (strip_info->firmware_level == NoStructure && sendername)
|
| 1907 |
|
|
{
|
| 1908 |
|
|
strip_info->firmware_level = StructuredMessages;
|
| 1909 |
|
|
strip_info->next_command = 0; /* Try to enable checksums ASAP */
|
| 1910 |
|
|
printk(KERN_INFO "%s: Radio provides structured messages\n", strip_info->dev.name);
|
| 1911 |
|
|
}
|
| 1912 |
|
|
if (strip_info->firmware_level >= StructuredMessages)
|
| 1913 |
|
|
{
|
| 1914 |
|
|
/*
|
| 1915 |
|
|
* If this message has a valid checksum on the end, then the call to verify_checksum
|
| 1916 |
|
|
* will elevate the firmware_level to ChecksummedMessages for us. (The actual return
|
| 1917 |
|
|
* code from verify_checksum is ignored here.)
|
| 1918 |
|
|
*/
|
| 1919 |
|
|
verify_checksum(strip_info);
|
| 1920 |
|
|
/*
|
| 1921 |
|
|
* If the radio has structured messages but we don't yet have all our information about it,
|
| 1922 |
|
|
* we should do probes without delay, until we have gathered all the information
|
| 1923 |
|
|
*/
|
| 1924 |
|
|
if (!GOT_ALL_RADIO_INFO(strip_info)) strip_info->watchdog_doprobe = jiffies;
|
| 1925 |
|
|
}
|
| 1926 |
|
|
}
|
| 1927 |
|
|
|
| 1928 |
|
|
else if (has_prefix(msg, len, "005")) /* Bad count specification */
|
| 1929 |
|
|
RecvErr("Error Msg:", strip_info);
|
| 1930 |
|
|
|
| 1931 |
|
|
else if (has_prefix(msg, len, "006")) /* Header too big */
|
| 1932 |
|
|
RecvErr("Error Msg:", strip_info);
|
| 1933 |
|
|
|
| 1934 |
|
|
else if (has_prefix(msg, len, "007")) /* Body too big */
|
| 1935 |
|
|
{
|
| 1936 |
|
|
RecvErr("Error Msg:", strip_info);
|
| 1937 |
|
|
printk(KERN_ERR "%s: Error! Packet size too big for radio.\n",
|
| 1938 |
|
|
strip_info->dev.name);
|
| 1939 |
|
|
}
|
| 1940 |
|
|
|
| 1941 |
|
|
else if (has_prefix(msg, len, "008")) /* Bad character in name */
|
| 1942 |
|
|
{
|
| 1943 |
|
|
RecvErr("Error Msg:", strip_info);
|
| 1944 |
|
|
printk(KERN_ERR "%s: Radio name contains illegal character\n",
|
| 1945 |
|
|
strip_info->dev.name);
|
| 1946 |
|
|
}
|
| 1947 |
|
|
|
| 1948 |
|
|
else if (has_prefix(msg, len, "009")) /* No count or line terminator */
|
| 1949 |
|
|
RecvErr("Error Msg:", strip_info);
|
| 1950 |
|
|
|
| 1951 |
|
|
else if (has_prefix(msg, len, "010")) /* Invalid checksum */
|
| 1952 |
|
|
RecvErr("Error Msg:", strip_info);
|
| 1953 |
|
|
|
| 1954 |
|
|
else if (has_prefix(msg, len, "011")) /* Checksum didn't match */
|
| 1955 |
|
|
RecvErr("Error Msg:", strip_info);
|
| 1956 |
|
|
|
| 1957 |
|
|
else if (has_prefix(msg, len, "012")) /* Failed to transmit packet */
|
| 1958 |
|
|
RecvErr("Error Msg:", strip_info);
|
| 1959 |
|
|
|
| 1960 |
|
|
else
|
| 1961 |
|
|
RecvErr("Error Msg:", strip_info);
|
| 1962 |
|
|
}
|
| 1963 |
|
|
|
| 1964 |
|
|
static void process_AT_response(struct strip *strip_info, __u8 *ptr, __u8 *end)
|
| 1965 |
|
|
{
|
| 1966 |
|
|
u_long len;
|
| 1967 |
|
|
__u8 *p = ptr;
|
| 1968 |
|
|
while (p < end && p[-1] != 10) p++; /* Skip past first newline character */
|
| 1969 |
|
|
/* Now ptr points to the AT command, and p points to the text of the response. */
|
| 1970 |
|
|
len = p-ptr;
|
| 1971 |
|
|
|
| 1972 |
|
|
#if TICKLE_TIMERS
|
| 1973 |
|
|
{
|
| 1974 |
|
|
struct timeval tv;
|
| 1975 |
|
|
do_gettimeofday(&tv);
|
| 1976 |
|
|
printk(KERN_INFO "**** Got AT response %.7s at %02d.%06d\n",
|
| 1977 |
|
|
ptr, tv.tv_sec % 100, tv.tv_usec);
|
| 1978 |
|
|
}
|
| 1979 |
|
|
#endif
|
| 1980 |
|
|
|
| 1981 |
|
|
if (has_prefix(ptr, len, "ATS300?" )) get_radio_version(strip_info, p, end);
|
| 1982 |
|
|
else if (has_prefix(ptr, len, "ATS305?" )) get_radio_address(strip_info, p);
|
| 1983 |
|
|
else if (has_prefix(ptr, len, "ATS311?" )) get_radio_neighbours(&strip_info->poletops, p, end);
|
| 1984 |
|
|
else if (has_prefix(ptr, len, "ATS319=7")) verify_checksum(strip_info);
|
| 1985 |
|
|
else if (has_prefix(ptr, len, "ATS325?" )) get_radio_voltage(strip_info, p, end);
|
| 1986 |
|
|
else if (has_prefix(ptr, len, "AT~LA" )) get_radio_neighbours(&strip_info->portables, p, end);
|
| 1987 |
|
|
else RecvErr("Unknown AT Response:", strip_info);
|
| 1988 |
|
|
}
|
| 1989 |
|
|
|
| 1990 |
|
|
static void process_ACK(struct strip *strip_info, __u8 *ptr, __u8 *end)
|
| 1991 |
|
|
{
|
| 1992 |
|
|
/* Currently we don't do anything with ACKs from the radio */
|
| 1993 |
|
|
}
|
| 1994 |
|
|
|
| 1995 |
|
|
static void process_Info(struct strip *strip_info, __u8 *ptr, __u8 *end)
|
| 1996 |
|
|
{
|
| 1997 |
|
|
if (ptr+16 > end) RecvErr("Bad Info Msg:", strip_info);
|
| 1998 |
|
|
}
|
| 1999 |
|
|
|
| 2000 |
|
|
static struct device *get_strip_dev(struct strip *strip_info)
|
| 2001 |
|
|
{
|
| 2002 |
|
|
/* If our hardware address is *manually set* to zero, and we know our */
|
| 2003 |
|
|
/* real radio hardware address, try to find another strip device that has been */
|
| 2004 |
|
|
/* manually set to that address that we can 'transfer ownership' of this packet to */
|
| 2005 |
|
|
if (strip_info->manual_dev_addr &&
|
| 2006 |
|
|
!memcmp(strip_info->dev.dev_addr, zero_address.c, sizeof(zero_address)) &&
|
| 2007 |
|
|
memcmp(&strip_info->true_dev_addr, zero_address.c, sizeof(zero_address)))
|
| 2008 |
|
|
{
|
| 2009 |
|
|
struct device *dev = dev_base;
|
| 2010 |
|
|
while (dev)
|
| 2011 |
|
|
{
|
| 2012 |
|
|
if (dev->type == strip_info->dev.type &&
|
| 2013 |
|
|
!memcmp(dev->dev_addr, &strip_info->true_dev_addr, sizeof(MetricomAddress)))
|
| 2014 |
|
|
{
|
| 2015 |
|
|
printk(KERN_INFO "%s: Transferred packet ownership to %s.\n",
|
| 2016 |
|
|
strip_info->dev.name, dev->name);
|
| 2017 |
|
|
return(dev);
|
| 2018 |
|
|
}
|
| 2019 |
|
|
dev = dev->next;
|
| 2020 |
|
|
}
|
| 2021 |
|
|
}
|
| 2022 |
|
|
return(&strip_info->dev);
|
| 2023 |
|
|
}
|
| 2024 |
|
|
|
| 2025 |
|
|
/*
|
| 2026 |
|
|
* Send one completely decapsulated datagram to the next layer.
|
| 2027 |
|
|
*/
|
| 2028 |
|
|
|
| 2029 |
|
|
static void deliver_packet(struct strip *strip_info, STRIP_Header *header, __u16 packetlen)
|
| 2030 |
|
|
{
|
| 2031 |
|
|
struct sk_buff *skb = dev_alloc_skb(sizeof(STRIP_Header) + packetlen);
|
| 2032 |
|
|
if (!skb)
|
| 2033 |
|
|
{
|
| 2034 |
|
|
printk(KERN_ERR "%s: memory squeeze, dropping packet.\n", strip_info->dev.name);
|
| 2035 |
|
|
strip_info->rx_dropped++;
|
| 2036 |
|
|
}
|
| 2037 |
|
|
else
|
| 2038 |
|
|
{
|
| 2039 |
|
|
memcpy(skb_put(skb, sizeof(STRIP_Header)), header, sizeof(STRIP_Header));
|
| 2040 |
|
|
memcpy(skb_put(skb, packetlen), strip_info->rx_buff, packetlen);
|
| 2041 |
|
|
skb->dev = get_strip_dev(strip_info);
|
| 2042 |
|
|
skb->protocol = header->protocol;
|
| 2043 |
|
|
skb->mac.raw = skb->data;
|
| 2044 |
|
|
|
| 2045 |
|
|
/* Having put a fake header on the front of the sk_buff for the */
|
| 2046 |
|
|
/* benefit of tools like tcpdump, skb_pull now 'consumes' that */
|
| 2047 |
|
|
/* fake header before we hand the packet up to the next layer. */
|
| 2048 |
|
|
skb_pull(skb, sizeof(STRIP_Header));
|
| 2049 |
|
|
|
| 2050 |
|
|
/* Finally, hand the packet up to the next layer (e.g. IP or ARP, etc.) */
|
| 2051 |
|
|
strip_info->rx_packets++;
|
| 2052 |
|
|
strip_info->rx_pps_count++;
|
| 2053 |
|
|
#ifdef EXT_COUNTERS
|
| 2054 |
|
|
strip_info->rx_bytes += packetlen;
|
| 2055 |
|
|
#endif
|
| 2056 |
|
|
netif_rx(skb);
|
| 2057 |
|
|
}
|
| 2058 |
|
|
}
|
| 2059 |
|
|
|
| 2060 |
|
|
static void process_IP_packet(struct strip *strip_info, STRIP_Header *header, __u8 *ptr, __u8 *end)
|
| 2061 |
|
|
{
|
| 2062 |
|
|
__u16 packetlen;
|
| 2063 |
|
|
|
| 2064 |
|
|
/* Decode start of the IP packet header */
|
| 2065 |
|
|
ptr = UnStuffData(ptr, end, strip_info->rx_buff, 4);
|
| 2066 |
|
|
if (!ptr)
|
| 2067 |
|
|
{
|
| 2068 |
|
|
RecvErr("IP Packet too short", strip_info);
|
| 2069 |
|
|
return;
|
| 2070 |
|
|
}
|
| 2071 |
|
|
|
| 2072 |
|
|
packetlen = ((__u16)strip_info->rx_buff[2] << 8) | strip_info->rx_buff[3];
|
| 2073 |
|
|
|
| 2074 |
|
|
if (packetlen > MAX_RECV_MTU)
|
| 2075 |
|
|
{
|
| 2076 |
|
|
printk(KERN_INFO "%s: Dropping oversized received IP packet: %d bytes\n",
|
| 2077 |
|
|
strip_info->dev.name, packetlen);
|
| 2078 |
|
|
strip_info->rx_dropped++;
|
| 2079 |
|
|
return;
|
| 2080 |
|
|
}
|
| 2081 |
|
|
|
| 2082 |
|
|
/*printk(KERN_INFO "%s: Got %d byte IP packet\n", strip_info->dev.name, packetlen);*/
|
| 2083 |
|
|
|
| 2084 |
|
|
/* Decode remainder of the IP packet */
|
| 2085 |
|
|
ptr = UnStuffData(ptr, end, strip_info->rx_buff+4, packetlen-4);
|
| 2086 |
|
|
if (!ptr)
|
| 2087 |
|
|
{
|
| 2088 |
|
|
RecvErr("IP Packet too short", strip_info);
|
| 2089 |
|
|
return;
|
| 2090 |
|
|
}
|
| 2091 |
|
|
|
| 2092 |
|
|
if (ptr < end)
|
| 2093 |
|
|
{
|
| 2094 |
|
|
RecvErr("IP Packet too long", strip_info);
|
| 2095 |
|
|
return;
|
| 2096 |
|
|
}
|
| 2097 |
|
|
|
| 2098 |
|
|
header->protocol = htons(ETH_P_IP);
|
| 2099 |
|
|
|
| 2100 |
|
|
deliver_packet(strip_info, header, packetlen);
|
| 2101 |
|
|
}
|
| 2102 |
|
|
|
| 2103 |
|
|
static void process_ARP_packet(struct strip *strip_info, STRIP_Header *header, __u8 *ptr, __u8 *end)
|
| 2104 |
|
|
{
|
| 2105 |
|
|
__u16 packetlen;
|
| 2106 |
|
|
struct arphdr *arphdr = (struct arphdr *)strip_info->rx_buff;
|
| 2107 |
|
|
|
| 2108 |
|
|
/* Decode start of the ARP packet */
|
| 2109 |
|
|
ptr = UnStuffData(ptr, end, strip_info->rx_buff, 8);
|
| 2110 |
|
|
if (!ptr)
|
| 2111 |
|
|
{
|
| 2112 |
|
|
RecvErr("ARP Packet too short", strip_info);
|
| 2113 |
|
|
return;
|
| 2114 |
|
|
}
|
| 2115 |
|
|
|
| 2116 |
|
|
packetlen = 8 + (arphdr->ar_hln + arphdr->ar_pln) * 2;
|
| 2117 |
|
|
|
| 2118 |
|
|
if (packetlen > MAX_RECV_MTU)
|
| 2119 |
|
|
{
|
| 2120 |
|
|
printk(KERN_INFO "%s: Dropping oversized received ARP packet: %d bytes\n",
|
| 2121 |
|
|
strip_info->dev.name, packetlen);
|
| 2122 |
|
|
strip_info->rx_dropped++;
|
| 2123 |
|
|
return;
|
| 2124 |
|
|
}
|
| 2125 |
|
|
|
| 2126 |
|
|
/*printk(KERN_INFO "%s: Got %d byte ARP %s\n",
|
| 2127 |
|
|
strip_info->dev.name, packetlen,
|
| 2128 |
|
|
ntohs(arphdr->ar_op) == ARPOP_REQUEST ? "request" : "reply");*/
|
| 2129 |
|
|
|
| 2130 |
|
|
/* Decode remainder of the ARP packet */
|
| 2131 |
|
|
ptr = UnStuffData(ptr, end, strip_info->rx_buff+8, packetlen-8);
|
| 2132 |
|
|
if (!ptr)
|
| 2133 |
|
|
{
|
| 2134 |
|
|
RecvErr("ARP Packet too short", strip_info);
|
| 2135 |
|
|
return;
|
| 2136 |
|
|
}
|
| 2137 |
|
|
|
| 2138 |
|
|
if (ptr < end)
|
| 2139 |
|
|
{
|
| 2140 |
|
|
RecvErr("ARP Packet too long", strip_info);
|
| 2141 |
|
|
return;
|
| 2142 |
|
|
}
|
| 2143 |
|
|
|
| 2144 |
|
|
header->protocol = htons(ETH_P_ARP);
|
| 2145 |
|
|
|
| 2146 |
|
|
deliver_packet(strip_info, header, packetlen);
|
| 2147 |
|
|
}
|
| 2148 |
|
|
|
| 2149 |
|
|
/*
|
| 2150 |
|
|
* process_text_message processes a <CR>-terminated block of data received
|
| 2151 |
|
|
* from the radio that doesn't begin with a '*' character. All normal
|
| 2152 |
|
|
* Starmode communication messages with the radio begin with a '*',
|
| 2153 |
|
|
* so any text that does not indicates a serial port error, a radio that
|
| 2154 |
|
|
* is in Hayes command mode instead of Starmode, or a radio with really
|
| 2155 |
|
|
* old firmware that doesn't frame its Starmode responses properly.
|
| 2156 |
|
|
*/
|
| 2157 |
|
|
static void process_text_message(struct strip *strip_info)
|
| 2158 |
|
|
{
|
| 2159 |
|
|
__u8 *msg = strip_info->sx_buff;
|
| 2160 |
|
|
int len = strip_info->sx_count;
|
| 2161 |
|
|
|
| 2162 |
|
|
/* Check for anything that looks like it might be our radio name */
|
| 2163 |
|
|
/* (This is here for backwards compatibility with old firmware) */
|
| 2164 |
|
|
if (len == 9 && get_radio_address(strip_info, msg) == 0) return;
|
| 2165 |
|
|
|
| 2166 |
|
|
if (text_equal(msg, len, "OK" )) return; /* Ignore 'OK' responses from prior commands */
|
| 2167 |
|
|
if (text_equal(msg, len, "ERROR" )) return; /* Ignore 'ERROR' messages */
|
| 2168 |
|
|
if (has_prefix(msg, len, "ate0q1" )) return; /* Ignore character echo back from the radio */
|
| 2169 |
|
|
|
| 2170 |
|
|
/* Catch other error messages */
|
| 2171 |
|
|
/* (This is here for backwards compatibility with old firmware) */
|
| 2172 |
|
|
if (has_prefix(msg, len, "ERR_")) { RecvErr_Message(strip_info, NULL, &msg[4], len-4); return; }
|
| 2173 |
|
|
|
| 2174 |
|
|
RecvErr("No initial *", strip_info);
|
| 2175 |
|
|
}
|
| 2176 |
|
|
|
| 2177 |
|
|
/*
|
| 2178 |
|
|
* process_message processes a <CR>-terminated block of data received
|
| 2179 |
|
|
* from the radio. If the radio is not in Starmode or has old firmware,
|
| 2180 |
|
|
* it may be a line of text in response to an AT command. Ideally, with
|
| 2181 |
|
|
* a current radio that's properly in Starmode, all data received should
|
| 2182 |
|
|
* be properly framed and checksummed radio message blocks, containing
|
| 2183 |
|
|
* either a starmode packet, or a other communication from the radio
|
| 2184 |
|
|
* firmware, like "INF_" Info messages and &COMMAND responses.
|
| 2185 |
|
|
*/
|
| 2186 |
|
|
static void process_message(struct strip *strip_info)
|
| 2187 |
|
|
{
|
| 2188 |
|
|
STRIP_Header header = { zero_address, zero_address, 0 };
|
| 2189 |
|
|
__u8 *ptr = strip_info->sx_buff;
|
| 2190 |
|
|
__u8 *end = strip_info->sx_buff + strip_info->sx_count;
|
| 2191 |
|
|
__u8 sendername[32], *sptr = sendername;
|
| 2192 |
|
|
MetricomKey key;
|
| 2193 |
|
|
|
| 2194 |
|
|
/*HexDump("Receiving", strip_info, ptr, end);*/
|
| 2195 |
|
|
|
| 2196 |
|
|
/* Check for start of address marker, and then skip over it */
|
| 2197 |
|
|
if (*ptr == '*') ptr++;
|
| 2198 |
|
|
else { process_text_message(strip_info); return; }
|
| 2199 |
|
|
|
| 2200 |
|
|
/* Copy out the return address */
|
| 2201 |
|
|
while (ptr < end && *ptr != '*' && sptr < ARRAY_END(sendername)-1) *sptr++ = *ptr++;
|
| 2202 |
|
|
*sptr = 0; /* Null terminate the sender name */
|
| 2203 |
|
|
|
| 2204 |
|
|
/* Check for end of address marker, and skip over it */
|
| 2205 |
|
|
if (ptr >= end || *ptr != '*')
|
| 2206 |
|
|
{
|
| 2207 |
|
|
RecvErr("No second *", strip_info);
|
| 2208 |
|
|
return;
|
| 2209 |
|
|
}
|
| 2210 |
|
|
ptr++; /* Skip the second '*' */
|
| 2211 |
|
|
|
| 2212 |
|
|
/* If the sender name is "&COMMAND", ignore this 'packet' */
|
| 2213 |
|
|
/* (This is here for backwards compatibility with old firmware) */
|
| 2214 |
|
|
if (!strcmp(sendername, "&COMMAND"))
|
| 2215 |
|
|
{
|
| 2216 |
|
|
strip_info->firmware_level = NoStructure;
|
| 2217 |
|
|
strip_info->next_command = CompatibilityCommand;
|
| 2218 |
|
|
return;
|
| 2219 |
|
|
}
|
| 2220 |
|
|
|
| 2221 |
|
|
if (ptr+4 > end)
|
| 2222 |
|
|
{
|
| 2223 |
|
|
RecvErr("No proto key", strip_info);
|
| 2224 |
|
|
return;
|
| 2225 |
|
|
}
|
| 2226 |
|
|
|
| 2227 |
|
|
/* Get the protocol key out of the buffer */
|
| 2228 |
|
|
key.c[0] = *ptr++;
|
| 2229 |
|
|
key.c[1] = *ptr++;
|
| 2230 |
|
|
key.c[2] = *ptr++;
|
| 2231 |
|
|
key.c[3] = *ptr++;
|
| 2232 |
|
|
|
| 2233 |
|
|
/* If we're using checksums, verify the checksum at the end of the packet */
|
| 2234 |
|
|
if (strip_info->firmware_level >= ChecksummedMessages)
|
| 2235 |
|
|
{
|
| 2236 |
|
|
end -= 4; /* Chop the last four bytes off the packet (they're the checksum) */
|
| 2237 |
|
|
if (ptr > end)
|
| 2238 |
|
|
{
|
| 2239 |
|
|
RecvErr("Missing Checksum", strip_info);
|
| 2240 |
|
|
return;
|
| 2241 |
|
|
}
|
| 2242 |
|
|
if (!verify_checksum(strip_info))
|
| 2243 |
|
|
{
|
| 2244 |
|
|
RecvErr("Bad Checksum", strip_info);
|
| 2245 |
|
|
return;
|
| 2246 |
|
|
}
|
| 2247 |
|
|
}
|
| 2248 |
|
|
|
| 2249 |
|
|
/*printk(KERN_INFO "%s: Got packet from \"%s\".\n", strip_info->dev.name, sendername);*/
|
| 2250 |
|
|
|
| 2251 |
|
|
/*
|
| 2252 |
|
|
* Fill in (pseudo) source and destination addresses in the packet.
|
| 2253 |
|
|
* We assume that the destination address was our address (the radio does not
|
| 2254 |
|
|
* tell us this). If the radio supplies a source address, then we use it.
|
| 2255 |
|
|
*/
|
| 2256 |
|
|
header.dst_addr = strip_info->true_dev_addr;
|
| 2257 |
|
|
string_to_radio_address(&header.src_addr, sendername);
|
| 2258 |
|
|
|
| 2259 |
|
|
#ifdef EXT_COUNTERS
|
| 2260 |
|
|
if (key.l == SIP0Key.l) {
|
| 2261 |
|
|
strip_info->rx_rbytes += (end - ptr);
|
| 2262 |
|
|
process_IP_packet(strip_info, &header, ptr, end);
|
| 2263 |
|
|
} else if (key.l == ARP0Key.l) {
|
| 2264 |
|
|
strip_info->rx_rbytes += (end - ptr);
|
| 2265 |
|
|
process_ARP_packet(strip_info, &header, ptr, end);
|
| 2266 |
|
|
} else if (key.l == ATR_Key.l) {
|
| 2267 |
|
|
strip_info->rx_ebytes += (end - ptr);
|
| 2268 |
|
|
process_AT_response(strip_info, ptr, end);
|
| 2269 |
|
|
} else if (key.l == ACK_Key.l) {
|
| 2270 |
|
|
strip_info->rx_ebytes += (end - ptr);
|
| 2271 |
|
|
process_ACK(strip_info, ptr, end);
|
| 2272 |
|
|
} else if (key.l == INF_Key.l) {
|
| 2273 |
|
|
strip_info->rx_ebytes += (end - ptr);
|
| 2274 |
|
|
process_Info(strip_info, ptr, end);
|
| 2275 |
|
|
} else if (key.l == ERR_Key.l) {
|
| 2276 |
|
|
strip_info->rx_ebytes += (end - ptr);
|
| 2277 |
|
|
RecvErr_Message(strip_info, sendername, ptr, end-ptr);
|
| 2278 |
|
|
} else RecvErr("Unrecognized protocol key", strip_info);
|
| 2279 |
|
|
#else
|
| 2280 |
|
|
if (key.l == SIP0Key.l) process_IP_packet (strip_info, &header, ptr, end);
|
| 2281 |
|
|
else if (key.l == ARP0Key.l) process_ARP_packet (strip_info, &header, ptr, end);
|
| 2282 |
|
|
else if (key.l == ATR_Key.l) process_AT_response(strip_info, ptr, end);
|
| 2283 |
|
|
else if (key.l == ACK_Key.l) process_ACK (strip_info, ptr, end);
|
| 2284 |
|
|
else if (key.l == INF_Key.l) process_Info (strip_info, ptr, end);
|
| 2285 |
|
|
else if (key.l == ERR_Key.l) RecvErr_Message (strip_info, sendername, ptr, end-ptr);
|
| 2286 |
|
|
else RecvErr("Unrecognized protocol key", strip_info);
|
| 2287 |
|
|
#endif
|
| 2288 |
|
|
}
|
| 2289 |
|
|
|
| 2290 |
|
|
#define TTYERROR(X) ((X) == TTY_BREAK ? "Break" : \
|
| 2291 |
|
|
(X) == TTY_FRAME ? "Framing Error" : \
|
| 2292 |
|
|
(X) == TTY_PARITY ? "Parity Error" : \
|
| 2293 |
|
|
(X) == TTY_OVERRUN ? "Hardware Overrun" : "Unknown Error")
|
| 2294 |
|
|
|
| 2295 |
|
|
/*
|
| 2296 |
|
|
* Handle the 'receiver data ready' interrupt.
|
| 2297 |
|
|
* This function is called by the 'tty_io' module in the kernel when
|
| 2298 |
|
|
* a block of STRIP data has been received, which can now be decapsulated
|
| 2299 |
|
|
* and sent on to some IP layer for further processing.
|
| 2300 |
|
|
*/
|
| 2301 |
|
|
|
| 2302 |
|
|
static void
|
| 2303 |
|
|
strip_receive_buf(struct tty_struct *tty, const unsigned char *cp, char *fp, int count)
|
| 2304 |
|
|
{
|
| 2305 |
|
|
struct strip *strip_info = (struct strip *) tty->disc_data;
|
| 2306 |
|
|
const unsigned char *end = cp + count;
|
| 2307 |
|
|
|
| 2308 |
|
|
if (!strip_info || strip_info->magic != STRIP_MAGIC || !strip_info->dev.start)
|
| 2309 |
|
|
return;
|
| 2310 |
|
|
|
| 2311 |
|
|
/* Argh! mtu change time! - costs us the packet part received at the change */
|
| 2312 |
|
|
if (strip_info->mtu != strip_info->dev.mtu)
|
| 2313 |
|
|
strip_changedmtu(strip_info);
|
| 2314 |
|
|
|
| 2315 |
|
|
#if 0
|
| 2316 |
|
|
{
|
| 2317 |
|
|
struct timeval tv;
|
| 2318 |
|
|
do_gettimeofday(&tv);
|
| 2319 |
|
|
printk(KERN_INFO "**** strip_receive_buf: %3d bytes at %02d.%06d\n",
|
| 2320 |
|
|
count, tv.tv_sec % 100, tv.tv_usec);
|
| 2321 |
|
|
}
|
| 2322 |
|
|
#endif
|
| 2323 |
|
|
|
| 2324 |
|
|
#ifdef EXT_COUNTERS
|
| 2325 |
|
|
strip_info->rx_sbytes += count;
|
| 2326 |
|
|
#endif
|
| 2327 |
|
|
|
| 2328 |
|
|
/* Read the characters out of the buffer */
|
| 2329 |
|
|
while (cp < end)
|
| 2330 |
|
|
{
|
| 2331 |
|
|
if (fp && *fp) printk(KERN_INFO "%s: %s on serial port\n", strip_info->dev.name, TTYERROR(*fp));
|
| 2332 |
|
|
if (fp && *fp++ && !strip_info->discard) /* If there's a serial error, record it */
|
| 2333 |
|
|
{
|
| 2334 |
|
|
/* If we have some characters in the buffer, discard them */
|
| 2335 |
|
|
strip_info->discard = strip_info->sx_count;
|
| 2336 |
|
|
strip_info->rx_errors++;
|
| 2337 |
|
|
}
|
| 2338 |
|
|
|
| 2339 |
|
|
/* Leading control characters (CR, NL, Tab, etc.) are ignored */
|
| 2340 |
|
|
if (strip_info->sx_count > 0 || *cp >= ' ')
|
| 2341 |
|
|
{
|
| 2342 |
|
|
if (*cp == 0x0D) /* If end of packet, decide what to do with it */
|
| 2343 |
|
|
{
|
| 2344 |
|
|
if (strip_info->sx_count > 3000)
|
| 2345 |
|
|
printk(KERN_INFO "%s: Cut a %d byte packet (%d bytes remaining)%s\n",
|
| 2346 |
|
|
strip_info->dev.name, strip_info->sx_count, end-cp-1,
|
| 2347 |
|
|
strip_info->discard ? " (discarded)" : "");
|
| 2348 |
|
|
if (strip_info->sx_count > strip_info->sx_size)
|
| 2349 |
|
|
{
|
| 2350 |
|
|
strip_info->rx_over_errors++;
|
| 2351 |
|
|
printk(KERN_INFO "%s: sx_buff overflow (%d bytes total)\n",
|
| 2352 |
|
|
strip_info->dev.name, strip_info->sx_count);
|
| 2353 |
|
|
}
|
| 2354 |
|
|
else if (strip_info->discard)
|
| 2355 |
|
|
printk(KERN_INFO "%s: Discarding bad packet (%d/%d)\n",
|
| 2356 |
|
|
strip_info->dev.name, strip_info->discard, strip_info->sx_count);
|
| 2357 |
|
|
else process_message(strip_info);
|
| 2358 |
|
|
strip_info->discard = 0;
|
| 2359 |
|
|
strip_info->sx_count = 0;
|
| 2360 |
|
|
}
|
| 2361 |
|
|
else
|
| 2362 |
|
|
{
|
| 2363 |
|
|
/* Make sure we have space in the buffer */
|
| 2364 |
|
|
if (strip_info->sx_count < strip_info->sx_size)
|
| 2365 |
|
|
strip_info->sx_buff[strip_info->sx_count] = *cp;
|
| 2366 |
|
|
strip_info->sx_count++;
|
| 2367 |
|
|
}
|
| 2368 |
|
|
}
|
| 2369 |
|
|
cp++;
|
| 2370 |
|
|
}
|
| 2371 |
|
|
}
|
| 2372 |
|
|
|
| 2373 |
|
|
|
| 2374 |
|
|
/************************************************************************/
|
| 2375 |
|
|
/* General control routines */
|
| 2376 |
|
|
|
| 2377 |
|
|
static int set_mac_address(struct strip *strip_info, MetricomAddress *addr)
|
| 2378 |
|
|
{
|
| 2379 |
|
|
/*
|
| 2380 |
|
|
* We're using a manually specified address if the address is set
|
| 2381 |
|
|
* to anything other than all ones. Setting the address to all ones
|
| 2382 |
|
|
* disables manual mode and goes back to automatic address determination
|
| 2383 |
|
|
* (tracking the true address that the radio has).
|
| 2384 |
|
|
*/
|
| 2385 |
|
|
strip_info->manual_dev_addr = memcmp(addr->c, broadcast_address.c, sizeof(broadcast_address));
|
| 2386 |
|
|
if (strip_info->manual_dev_addr)
|
| 2387 |
|
|
*(MetricomAddress*)strip_info->dev.dev_addr = *addr;
|
| 2388 |
|
|
else *(MetricomAddress*)strip_info->dev.dev_addr = strip_info->true_dev_addr;
|
| 2389 |
|
|
return 0;
|
| 2390 |
|
|
}
|
| 2391 |
|
|
|
| 2392 |
|
|
static int dev_set_mac_address(struct device *dev, void *addr)
|
| 2393 |
|
|
{
|
| 2394 |
|
|
struct strip *strip_info = (struct strip *)(dev->priv);
|
| 2395 |
|
|
struct sockaddr *sa = addr;
|
| 2396 |
|
|
printk(KERN_INFO "%s: strip_set_dev_mac_address called\n", dev->name);
|
| 2397 |
|
|
set_mac_address(strip_info, (MetricomAddress *)sa->sa_data);
|
| 2398 |
|
|
return 0;
|
| 2399 |
|
|
}
|
| 2400 |
|
|
|
| 2401 |
|
|
static struct enet_statistics *strip_get_stats(struct device *dev)
|
| 2402 |
|
|
{
|
| 2403 |
|
|
static struct enet_statistics stats;
|
| 2404 |
|
|
struct strip *strip_info = (struct strip *)(dev->priv);
|
| 2405 |
|
|
|
| 2406 |
|
|
memset(&stats, 0, sizeof(struct enet_statistics));
|
| 2407 |
|
|
|
| 2408 |
|
|
stats.rx_packets = strip_info->rx_packets;
|
| 2409 |
|
|
stats.tx_packets = strip_info->tx_packets;
|
| 2410 |
|
|
stats.rx_dropped = strip_info->rx_dropped;
|
| 2411 |
|
|
stats.tx_dropped = strip_info->tx_dropped;
|
| 2412 |
|
|
stats.tx_errors = strip_info->tx_errors;
|
| 2413 |
|
|
stats.rx_errors = strip_info->rx_errors;
|
| 2414 |
|
|
stats.rx_over_errors = strip_info->rx_over_errors;
|
| 2415 |
|
|
return(&stats);
|
| 2416 |
|
|
}
|
| 2417 |
|
|
|
| 2418 |
|
|
|
| 2419 |
|
|
/************************************************************************/
|
| 2420 |
|
|
/* Opening and closing */
|
| 2421 |
|
|
|
| 2422 |
|
|
/*
|
| 2423 |
|
|
* Here's the order things happen:
|
| 2424 |
|
|
* When the user runs "slattach -p strip ..."
|
| 2425 |
|
|
* 1. The TTY module calls strip_open
|
| 2426 |
|
|
* 2. strip_open calls strip_alloc
|
| 2427 |
|
|
* 3. strip_alloc calls register_netdev
|
| 2428 |
|
|
* 4. register_netdev calls strip_dev_init
|
| 2429 |
|
|
* 5. then strip_open finishes setting up the strip_info
|
| 2430 |
|
|
*
|
| 2431 |
|
|
* When the user runs "ifconfig st<x> up address netmask ..."
|
| 2432 |
|
|
* 6. strip_open_low gets called
|
| 2433 |
|
|
*
|
| 2434 |
|
|
* When the user runs "ifconfig st<x> down"
|
| 2435 |
|
|
* 7. strip_close_low gets called
|
| 2436 |
|
|
*
|
| 2437 |
|
|
* When the user kills the slattach process
|
| 2438 |
|
|
* 8. strip_close gets called
|
| 2439 |
|
|
* 9. strip_close calls dev_close
|
| 2440 |
|
|
* 10. if the device is still up, then dev_close calls strip_close_low
|
| 2441 |
|
|
* 11. strip_close calls strip_free
|
| 2442 |
|
|
*/
|
| 2443 |
|
|
|
| 2444 |
|
|
/* Open the low-level part of the STRIP channel. Easy! */
|
| 2445 |
|
|
|
| 2446 |
|
|
static int strip_open_low(struct device *dev)
|
| 2447 |
|
|
{
|
| 2448 |
|
|
struct strip *strip_info = (struct strip *)(dev->priv);
|
| 2449 |
|
|
|
| 2450 |
|
|
if (strip_info->tty == NULL)
|
| 2451 |
|
|
return(-ENODEV);
|
| 2452 |
|
|
|
| 2453 |
|
|
if (!allocate_buffers(strip_info))
|
| 2454 |
|
|
return(-ENOMEM);
|
| 2455 |
|
|
|
| 2456 |
|
|
strip_info->sx_count = 0;
|
| 2457 |
|
|
strip_info->tx_left = 0;
|
| 2458 |
|
|
|
| 2459 |
|
|
strip_info->discard = 0;
|
| 2460 |
|
|
strip_info->working = FALSE;
|
| 2461 |
|
|
strip_info->firmware_level = NoStructure;
|
| 2462 |
|
|
strip_info->next_command = CompatibilityCommand;
|
| 2463 |
|
|
strip_info->user_baud = get_baud(strip_info->tty);
|
| 2464 |
|
|
|
| 2465 |
|
|
/*
|
| 2466 |
|
|
* Needed because address '0' is special
|
| 2467 |
|
|
*/
|
| 2468 |
|
|
|
| 2469 |
|
|
if (dev->pa_addr == 0)
|
| 2470 |
|
|
dev->pa_addr=ntohl(0xC0A80001);
|
| 2471 |
|
|
dev->tbusy = 0;
|
| 2472 |
|
|
dev->start = 1;
|
| 2473 |
|
|
|
| 2474 |
|
|
printk(KERN_INFO "%s: Initializing Radio.\n", strip_info->dev.name);
|
| 2475 |
|
|
ResetRadio(strip_info);
|
| 2476 |
|
|
strip_info->idle_timer.expires = jiffies + 1*HZ;
|
| 2477 |
|
|
add_timer(&strip_info->idle_timer);
|
| 2478 |
|
|
return(0);
|
| 2479 |
|
|
}
|
| 2480 |
|
|
|
| 2481 |
|
|
|
| 2482 |
|
|
/*
|
| 2483 |
|
|
* Close the low-level part of the STRIP channel. Easy!
|
| 2484 |
|
|
*/
|
| 2485 |
|
|
|
| 2486 |
|
|
static int strip_close_low(struct device *dev)
|
| 2487 |
|
|
{
|
| 2488 |
|
|
struct strip *strip_info = (struct strip *)(dev->priv);
|
| 2489 |
|
|
|
| 2490 |
|
|
if (strip_info->tty == NULL)
|
| 2491 |
|
|
return -EBUSY;
|
| 2492 |
|
|
strip_info->tty->flags &= ~(1 << TTY_DO_WRITE_WAKEUP);
|
| 2493 |
|
|
dev->tbusy = 1;
|
| 2494 |
|
|
dev->start = 0;
|
| 2495 |
|
|
|
| 2496 |
|
|
/*
|
| 2497 |
|
|
* Free all STRIP frame buffers.
|
| 2498 |
|
|
*/
|
| 2499 |
|
|
if (strip_info->rx_buff)
|
| 2500 |
|
|
{
|
| 2501 |
|
|
kfree(strip_info->rx_buff);
|
| 2502 |
|
|
strip_info->rx_buff = NULL;
|
| 2503 |
|
|
}
|
| 2504 |
|
|
if (strip_info->sx_buff)
|
| 2505 |
|
|
{
|
| 2506 |
|
|
kfree(strip_info->sx_buff);
|
| 2507 |
|
|
strip_info->sx_buff = NULL;
|
| 2508 |
|
|
}
|
| 2509 |
|
|
if (strip_info->tx_buff)
|
| 2510 |
|
|
{
|
| 2511 |
|
|
kfree(strip_info->tx_buff);
|
| 2512 |
|
|
strip_info->tx_buff = NULL;
|
| 2513 |
|
|
}
|
| 2514 |
|
|
del_timer(&strip_info->idle_timer);
|
| 2515 |
|
|
return 0;
|
| 2516 |
|
|
}
|
| 2517 |
|
|
|
| 2518 |
|
|
/*
|
| 2519 |
|
|
* This routine is called by DDI when the
|
| 2520 |
|
|
* (dynamically assigned) device is registered
|
| 2521 |
|
|
*/
|
| 2522 |
|
|
|
| 2523 |
|
|
static int strip_dev_init(struct device *dev)
|
| 2524 |
|
|
{
|
| 2525 |
|
|
int i;
|
| 2526 |
|
|
|
| 2527 |
|
|
/*
|
| 2528 |
|
|
* Finish setting up the DEVICE info.
|
| 2529 |
|
|
*/
|
| 2530 |
|
|
|
| 2531 |
|
|
dev->trans_start = 0;
|
| 2532 |
|
|
dev->last_rx = 0;
|
| 2533 |
|
|
dev->tx_queue_len = 30; /* Drop after 30 frames queued */
|
| 2534 |
|
|
|
| 2535 |
|
|
dev->flags = 0;
|
| 2536 |
|
|
dev->family = AF_INET;
|
| 2537 |
|
|
dev->metric = 0;
|
| 2538 |
|
|
dev->mtu = DEFAULT_STRIP_MTU;
|
| 2539 |
|
|
dev->type = ARPHRD_METRICOM; /* dtang */
|
| 2540 |
|
|
dev->hard_header_len = sizeof(STRIP_Header);
|
| 2541 |
|
|
/*
|
| 2542 |
|
|
* dev->priv Already holds a pointer to our struct strip
|
| 2543 |
|
|
*/
|
| 2544 |
|
|
|
| 2545 |
|
|
*(MetricomAddress*)&dev->broadcast = broadcast_address;
|
| 2546 |
|
|
dev->dev_addr[0] = 0;
|
| 2547 |
|
|
dev->addr_len = sizeof(MetricomAddress);
|
| 2548 |
|
|
dev->pa_addr = 0;
|
| 2549 |
|
|
dev->pa_brdaddr = 0;
|
| 2550 |
|
|
dev->pa_mask = 0;
|
| 2551 |
|
|
dev->pa_alen = sizeof(unsigned long);
|
| 2552 |
|
|
|
| 2553 |
|
|
/*
|
| 2554 |
|
|
* Pointer to the interface buffers.
|
| 2555 |
|
|
*/
|
| 2556 |
|
|
|
| 2557 |
|
|
for (i = 0; i < DEV_NUMBUFFS; i++)
|
| 2558 |
|
|
skb_queue_head_init(&dev->buffs[i]);
|
| 2559 |
|
|
|
| 2560 |
|
|
/*
|
| 2561 |
|
|
* Pointers to interface service routines.
|
| 2562 |
|
|
*/
|
| 2563 |
|
|
|
| 2564 |
|
|
dev->open = strip_open_low;
|
| 2565 |
|
|
dev->stop = strip_close_low;
|
| 2566 |
|
|
dev->hard_start_xmit = strip_xmit;
|
| 2567 |
|
|
dev->hard_header = strip_header;
|
| 2568 |
|
|
dev->rebuild_header = strip_rebuild_header;
|
| 2569 |
|
|
/* dev->type_trans unused */
|
| 2570 |
|
|
/* dev->set_multicast_list unused */
|
| 2571 |
|
|
dev->set_mac_address = dev_set_mac_address;
|
| 2572 |
|
|
/* dev->do_ioctl unused */
|
| 2573 |
|
|
/* dev->set_config unused */
|
| 2574 |
|
|
dev->get_stats = strip_get_stats;
|
| 2575 |
|
|
return 0;
|
| 2576 |
|
|
}
|
| 2577 |
|
|
|
| 2578 |
|
|
/*
|
| 2579 |
|
|
* Free a STRIP channel.
|
| 2580 |
|
|
*/
|
| 2581 |
|
|
|
| 2582 |
|
|
static void strip_free(struct strip *strip_info)
|
| 2583 |
|
|
{
|
| 2584 |
|
|
*(strip_info->referrer) = strip_info->next;
|
| 2585 |
|
|
if (strip_info->next)
|
| 2586 |
|
|
strip_info->next->referrer = strip_info->referrer;
|
| 2587 |
|
|
strip_info->magic = 0;
|
| 2588 |
|
|
kfree(strip_info);
|
| 2589 |
|
|
}
|
| 2590 |
|
|
|
| 2591 |
|
|
/*
|
| 2592 |
|
|
* Allocate a new free STRIP channel
|
| 2593 |
|
|
*/
|
| 2594 |
|
|
|
| 2595 |
|
|
static struct strip *strip_alloc(void)
|
| 2596 |
|
|
{
|
| 2597 |
|
|
int channel_id = 0;
|
| 2598 |
|
|
struct strip **s = &struct_strip_list;
|
| 2599 |
|
|
struct strip *strip_info = (struct strip *)
|
| 2600 |
|
|
kmalloc(sizeof(struct strip), GFP_KERNEL);
|
| 2601 |
|
|
|
| 2602 |
|
|
if (!strip_info)
|
| 2603 |
|
|
return(NULL); /* If no more memory, return */
|
| 2604 |
|
|
|
| 2605 |
|
|
/*
|
| 2606 |
|
|
* Clear the allocated memory
|
| 2607 |
|
|
*/
|
| 2608 |
|
|
|
| 2609 |
|
|
memset(strip_info, 0, sizeof(struct strip));
|
| 2610 |
|
|
|
| 2611 |
|
|
/*
|
| 2612 |
|
|
* Search the list to find where to put our new entry
|
| 2613 |
|
|
* (and in the process decide what channel number it is
|
| 2614 |
|
|
* going to be)
|
| 2615 |
|
|
*/
|
| 2616 |
|
|
|
| 2617 |
|
|
while (*s && (*s)->dev.base_addr == channel_id)
|
| 2618 |
|
|
{
|
| 2619 |
|
|
channel_id++;
|
| 2620 |
|
|
s = &(*s)->next;
|
| 2621 |
|
|
}
|
| 2622 |
|
|
|
| 2623 |
|
|
/*
|
| 2624 |
|
|
* Fill in the link pointers
|
| 2625 |
|
|
*/
|
| 2626 |
|
|
|
| 2627 |
|
|
strip_info->next = *s;
|
| 2628 |
|
|
if (*s)
|
| 2629 |
|
|
(*s)->referrer = &strip_info->next;
|
| 2630 |
|
|
strip_info->referrer = s;
|
| 2631 |
|
|
*s = strip_info;
|
| 2632 |
|
|
|
| 2633 |
|
|
strip_info->magic = STRIP_MAGIC;
|
| 2634 |
|
|
strip_info->tty = NULL;
|
| 2635 |
|
|
|
| 2636 |
|
|
strip_info->gratuitous_arp = jiffies + LongTime;
|
| 2637 |
|
|
strip_info->arp_interval = 0;
|
| 2638 |
|
|
init_timer(&strip_info->idle_timer);
|
| 2639 |
|
|
strip_info->idle_timer.data = (long)&strip_info->dev;
|
| 2640 |
|
|
strip_info->idle_timer.function = strip_IdleTask;
|
| 2641 |
|
|
|
| 2642 |
|
|
/* Note: strip_info->if_name is currently 8 characters long */
|
| 2643 |
|
|
sprintf(strip_info->if_name.c, "st%d", channel_id);
|
| 2644 |
|
|
strip_info->dev.name = strip_info->if_name.c;
|
| 2645 |
|
|
strip_info->dev.base_addr = channel_id;
|
| 2646 |
|
|
strip_info->dev.priv = (void*)strip_info;
|
| 2647 |
|
|
strip_info->dev.next = NULL;
|
| 2648 |
|
|
strip_info->dev.init = strip_dev_init;
|
| 2649 |
|
|
|
| 2650 |
|
|
return(strip_info);
|
| 2651 |
|
|
}
|
| 2652 |
|
|
|
| 2653 |
|
|
/*
|
| 2654 |
|
|
* Open the high-level part of the STRIP channel.
|
| 2655 |
|
|
* This function is called by the TTY module when the
|
| 2656 |
|
|
* STRIP line discipline is called for. Because we are
|
| 2657 |
|
|
* sure the tty line exists, we only have to link it to
|
| 2658 |
|
|
* a free STRIP channel...
|
| 2659 |
|
|
*/
|
| 2660 |
|
|
|
| 2661 |
|
|
static int strip_open(struct tty_struct *tty)
|
| 2662 |
|
|
{
|
| 2663 |
|
|
struct strip *strip_info = (struct strip *) tty->disc_data;
|
| 2664 |
|
|
|
| 2665 |
|
|
/*
|
| 2666 |
|
|
* First make sure we're not already connected.
|
| 2667 |
|
|
*/
|
| 2668 |
|
|
|
| 2669 |
|
|
if (strip_info && strip_info->magic == STRIP_MAGIC)
|
| 2670 |
|
|
return -EEXIST;
|
| 2671 |
|
|
|
| 2672 |
|
|
/*
|
| 2673 |
|
|
* OK. Find a free STRIP channel to use.
|
| 2674 |
|
|
*/
|
| 2675 |
|
|
if ((strip_info = strip_alloc()) == NULL)
|
| 2676 |
|
|
return -ENFILE;
|
| 2677 |
|
|
|
| 2678 |
|
|
/*
|
| 2679 |
|
|
* Register our newly created device so it can be ifconfig'd
|
| 2680 |
|
|
* strip_dev_init() will be called as a side-effect
|
| 2681 |
|
|
*/
|
| 2682 |
|
|
|
| 2683 |
|
|
if (register_netdev(&strip_info->dev) != 0)
|
| 2684 |
|
|
{
|
| 2685 |
|
|
printk(KERN_ERR "strip: register_netdev() failed.\n");
|
| 2686 |
|
|
strip_free(strip_info);
|
| 2687 |
|
|
return -ENFILE;
|
| 2688 |
|
|
}
|
| 2689 |
|
|
|
| 2690 |
|
|
strip_info->tty = tty;
|
| 2691 |
|
|
tty->disc_data = strip_info;
|
| 2692 |
|
|
if (tty->driver.flush_buffer)
|
| 2693 |
|
|
tty->driver.flush_buffer(tty);
|
| 2694 |
|
|
if (tty->ldisc.flush_buffer)
|
| 2695 |
|
|
tty->ldisc.flush_buffer(tty);
|
| 2696 |
|
|
|
| 2697 |
|
|
/*
|
| 2698 |
|
|
* Restore default settings
|
| 2699 |
|
|
*/
|
| 2700 |
|
|
|
| 2701 |
|
|
strip_info->dev.type = ARPHRD_METRICOM; /* dtang */
|
| 2702 |
|
|
|
| 2703 |
|
|
/*
|
| 2704 |
|
|
* Set tty options
|
| 2705 |
|
|
*/
|
| 2706 |
|
|
|
| 2707 |
|
|
tty->termios->c_iflag |= IGNBRK |IGNPAR;/* Ignore breaks and parity errors. */
|
| 2708 |
|
|
tty->termios->c_cflag |= CLOCAL; /* Ignore modem control signals. */
|
| 2709 |
|
|
tty->termios->c_cflag &= ~HUPCL; /* Don't close on hup */
|
| 2710 |
|
|
|
| 2711 |
|
|
#ifdef MODULE
|
| 2712 |
|
|
MOD_INC_USE_COUNT;
|
| 2713 |
|
|
#endif
|
| 2714 |
|
|
|
| 2715 |
|
|
printk(KERN_INFO "STRIP: device \"%s\" activated\n", strip_info->if_name.c);
|
| 2716 |
|
|
|
| 2717 |
|
|
/*
|
| 2718 |
|
|
* Done. We have linked the TTY line to a channel.
|
| 2719 |
|
|
*/
|
| 2720 |
|
|
return(strip_info->dev.base_addr);
|
| 2721 |
|
|
}
|
| 2722 |
|
|
|
| 2723 |
|
|
/*
|
| 2724 |
|
|
* Close down a STRIP channel.
|
| 2725 |
|
|
* This means flushing out any pending queues, and then restoring the
|
| 2726 |
|
|
* TTY line discipline to what it was before it got hooked to STRIP
|
| 2727 |
|
|
* (which usually is TTY again).
|
| 2728 |
|
|
*/
|
| 2729 |
|
|
|
| 2730 |
|
|
static void strip_close(struct tty_struct *tty)
|
| 2731 |
|
|
{
|
| 2732 |
|
|
struct strip *strip_info = (struct strip *) tty->disc_data;
|
| 2733 |
|
|
|
| 2734 |
|
|
/*
|
| 2735 |
|
|
* First make sure we're connected.
|
| 2736 |
|
|
*/
|
| 2737 |
|
|
|
| 2738 |
|
|
if (!strip_info || strip_info->magic != STRIP_MAGIC)
|
| 2739 |
|
|
return;
|
| 2740 |
|
|
|
| 2741 |
|
|
dev_close(&strip_info->dev);
|
| 2742 |
|
|
unregister_netdev(&strip_info->dev);
|
| 2743 |
|
|
|
| 2744 |
|
|
tty->disc_data = 0;
|
| 2745 |
|
|
strip_info->tty = NULL;
|
| 2746 |
|
|
printk(KERN_INFO "STRIP: device \"%s\" closed down\n", strip_info->if_name.c);
|
| 2747 |
|
|
strip_free(strip_info);
|
| 2748 |
|
|
tty->disc_data = NULL;
|
| 2749 |
|
|
#ifdef MODULE
|
| 2750 |
|
|
MOD_DEC_USE_COUNT;
|
| 2751 |
|
|
#endif
|
| 2752 |
|
|
}
|
| 2753 |
|
|
|
| 2754 |
|
|
|
| 2755 |
|
|
/************************************************************************/
|
| 2756 |
|
|
/* Perform I/O control calls on an active STRIP channel. */
|
| 2757 |
|
|
|
| 2758 |
|
|
static int strip_ioctl(struct tty_struct *tty, struct file *file,
|
| 2759 |
|
|
unsigned int cmd, unsigned long arg)
|
| 2760 |
|
|
{
|
| 2761 |
|
|
struct strip *strip_info = (struct strip *) tty->disc_data;
|
| 2762 |
|
|
int err;
|
| 2763 |
|
|
|
| 2764 |
|
|
/*
|
| 2765 |
|
|
* First make sure we're connected.
|
| 2766 |
|
|
*/
|
| 2767 |
|
|
|
| 2768 |
|
|
if (!strip_info || strip_info->magic != STRIP_MAGIC)
|
| 2769 |
|
|
return -EINVAL;
|
| 2770 |
|
|
|
| 2771 |
|
|
switch(cmd)
|
| 2772 |
|
|
{
|
| 2773 |
|
|
case SIOCGIFNAME:
|
| 2774 |
|
|
err = verify_area(VERIFY_WRITE, (void*)arg, 16);
|
| 2775 |
|
|
if (err)
|
| 2776 |
|
|
return -err;
|
| 2777 |
|
|
memcpy_tofs((void*)arg, strip_info->dev.name,
|
| 2778 |
|
|
strlen(strip_info->dev.name) + 1);
|
| 2779 |
|
|
return 0;
|
| 2780 |
|
|
|
| 2781 |
|
|
case SIOCSIFHWADDR:
|
| 2782 |
|
|
{
|
| 2783 |
|
|
MetricomAddress addr;
|
| 2784 |
|
|
printk(KERN_INFO "%s: SIOCSIFHWADDR\n", strip_info->dev.name);
|
| 2785 |
|
|
err = verify_area(VERIFY_READ, (void*)arg, sizeof(MetricomAddress));
|
| 2786 |
|
|
if (err) return -err;
|
| 2787 |
|
|
memcpy_fromfs(&addr, (void*)arg, sizeof(MetricomAddress));
|
| 2788 |
|
|
return(set_mac_address(strip_info, &addr));
|
| 2789 |
|
|
}
|
| 2790 |
|
|
|
| 2791 |
|
|
/*
|
| 2792 |
|
|
* Allow stty to read, but not set, the serial port
|
| 2793 |
|
|
*/
|
| 2794 |
|
|
|
| 2795 |
|
|
case TCGETS:
|
| 2796 |
|
|
case TCGETA:
|
| 2797 |
|
|
return n_tty_ioctl(tty, (struct file *) file, cmd,
|
| 2798 |
|
|
(unsigned long) arg);
|
| 2799 |
|
|
|
| 2800 |
|
|
default:
|
| 2801 |
|
|
return -ENOIOCTLCMD;
|
| 2802 |
|
|
}
|
| 2803 |
|
|
}
|
| 2804 |
|
|
|
| 2805 |
|
|
|
| 2806 |
|
|
/************************************************************************/
|
| 2807 |
|
|
/* Initialization */
|
| 2808 |
|
|
|
| 2809 |
|
|
/*
|
| 2810 |
|
|
* Initialize the STRIP driver.
|
| 2811 |
|
|
* This routine is called at boot time, to bootstrap the multi-channel
|
| 2812 |
|
|
* STRIP driver
|
| 2813 |
|
|
*/
|
| 2814 |
|
|
|
| 2815 |
|
|
#ifdef MODULE
|
| 2816 |
|
|
static
|
| 2817 |
|
|
#endif
|
| 2818 |
|
|
int strip_init_ctrl_dev(struct device *dummy)
|
| 2819 |
|
|
{
|
| 2820 |
|
|
static struct tty_ldisc strip_ldisc;
|
| 2821 |
|
|
int status;
|
| 2822 |
|
|
|
| 2823 |
|
|
printk(KERN_INFO "STRIP: Version %s (unlimited channels)\n", StripVersion);
|
| 2824 |
|
|
|
| 2825 |
|
|
/*
|
| 2826 |
|
|
* Fill in our line protocol discipline, and register it
|
| 2827 |
|
|
*/
|
| 2828 |
|
|
|
| 2829 |
|
|
memset(&strip_ldisc, 0, sizeof(strip_ldisc));
|
| 2830 |
|
|
strip_ldisc.magic = TTY_LDISC_MAGIC;
|
| 2831 |
|
|
strip_ldisc.flags = 0;
|
| 2832 |
|
|
strip_ldisc.open = strip_open;
|
| 2833 |
|
|
strip_ldisc.close = strip_close;
|
| 2834 |
|
|
strip_ldisc.read = NULL;
|
| 2835 |
|
|
strip_ldisc.write = NULL;
|
| 2836 |
|
|
strip_ldisc.ioctl = strip_ioctl;
|
| 2837 |
|
|
strip_ldisc.select = NULL;
|
| 2838 |
|
|
strip_ldisc.receive_buf = strip_receive_buf;
|
| 2839 |
|
|
strip_ldisc.receive_room = strip_receive_room;
|
| 2840 |
|
|
strip_ldisc.write_wakeup = strip_write_some_more;
|
| 2841 |
|
|
status = tty_register_ldisc(N_STRIP, &strip_ldisc);
|
| 2842 |
|
|
if (status != 0)
|
| 2843 |
|
|
{
|
| 2844 |
|
|
printk(KERN_ERR "STRIP: can't register line discipline (err = %d)\n", status);
|
| 2845 |
|
|
}
|
| 2846 |
|
|
|
| 2847 |
|
|
/*
|
| 2848 |
|
|
* Register the status file with /proc
|
| 2849 |
|
|
*/
|
| 2850 |
|
|
if (proc_net_register(&proc_strip_get_status_info) != 0)
|
| 2851 |
|
|
{
|
| 2852 |
|
|
printk(KERN_ERR "strip: status proc_net_register() failed.\n");
|
| 2853 |
|
|
}
|
| 2854 |
|
|
|
| 2855 |
|
|
#ifdef MODULE
|
| 2856 |
|
|
return status;
|
| 2857 |
|
|
#else
|
| 2858 |
|
|
|
| 2859 |
|
|
/* Return "not found", so that dev_init() will unlink
|
| 2860 |
|
|
* the placeholder device entry for us.
|
| 2861 |
|
|
*/
|
| 2862 |
|
|
return ENODEV;
|
| 2863 |
|
|
#endif
|
| 2864 |
|
|
}
|
| 2865 |
|
|
|
| 2866 |
|
|
|
| 2867 |
|
|
/************************************************************************/
|
| 2868 |
|
|
/* From here down is only used when compiled as an external module */
|
| 2869 |
|
|
|
| 2870 |
|
|
#ifdef MODULE
|
| 2871 |
|
|
|
| 2872 |
|
|
int init_module(void)
|
| 2873 |
|
|
{
|
| 2874 |
|
|
return strip_init_ctrl_dev(0);
|
| 2875 |
|
|
}
|
| 2876 |
|
|
|
| 2877 |
|
|
void cleanup_module(void)
|
| 2878 |
|
|
{
|
| 2879 |
|
|
int i;
|
| 2880 |
|
|
while (struct_strip_list)
|
| 2881 |
|
|
strip_free(struct_strip_list);
|
| 2882 |
|
|
|
| 2883 |
|
|
/* Unregister with the /proc/net file here. */
|
| 2884 |
|
|
proc_net_unregister(PROC_NET_STRIP_STATUS);
|
| 2885 |
|
|
|
| 2886 |
|
|
if ((i = tty_register_ldisc(N_STRIP, NULL)))
|
| 2887 |
|
|
printk(KERN_ERR "STRIP: can't unregister line discipline (err = %d)\n", i);
|
| 2888 |
|
|
|
| 2889 |
|
|
printk(KERN_INFO "STRIP: Module Unloaded\n");
|
| 2890 |
|
|
}
|
| 2891 |
|
|
#endif /* MODULE */
|