digits (0-9, plus A-F, capitalized). These 12 hex digits consist of
the first/left 6 digits (which should match the vendor of the
Ethernet interface within the station) and the last/right 6 digits
which specify the interface serial number for that interface vendor.
Ethernet addresses might be written unhyphenated (e.g.,
123456789ABC), or with one hyphen (e.g., 123456-789ABC), but should
be written hyphenated by octets (e.g., 12-34-56-78-9A-BC).
These addresses are physical station addresses, not multicast nor
broadcast, so the second hex digit (reading from the left) will be
even, not odd.
At present, it is not clear how the IEEE assigns Ethernet block
addresses. Whether in blocks of 2**24 or 2**25, and whether
multicasts are assigned with that block or separately. A portion of
the vendor block address is reportedly assigned serially, with the
other portion intentionally assigned randomly. If there is a global
algorithm for which addresses are designated to be physical (in a
chipset) versus logical (assigned in software), or globally-assigned
versus locally-assigned addresses, some of the known addresses do not
follow the scheme (e.g., AA0003; 02xxxx).
00000C Cisco
00000F NeXT
000010 Sytek
00001D Cabletron
000020 DIAB (Data Intdustrier AB)
000022 Visual Technology
00002A TRW
00005A S & Koch
00005E IANA
000065 Network General
00006B MIPS
000077 MIPS
00007A Ardent
000089 Cayman Systems Gatorbox
000093 Proteon
00009F Ameristar Technology
0000A2 Wellfleet
0000A3 Network Application Technology
0000A6 Network General (internal assignment, not for products)
0000A7 NCD X-terminals
0000A9 Network Systems
0000AA Xerox Xerox machines
0000B3 CIMLinc
0000B7 Dove Fastnet
0000BC Allen-Bradley
0000C0 Western Digital
0000C6 HP Intelligent Networks Operation (formerly Eon Systems)
0000C8 Altos
0000C9 Emulex Terminal Servers
0000D7 Dartmouth College (NED Router)
0000D8 3Com? Novell? PS/2
0000DD Gould
0000DE Unigraph
0000E2 Acer Counterpoint
0000EF Alantec
0000FD High Level Hardvare (Orion, UK)
000102 BBN BBN internal usage (not registered)
001700 Kabel
00802D Xylogics, Inc. Annex terminal servers
00808C Frontier Software Development
00AA00 Intel
00DD00 Ungermann-Bass
00DD01 Ungermann-Bass
020701 MICOM/Interlan UNIBUS or QBUS machines, Apollo
020406 BBN BBN internal usage (not registered)
026086 Satelcom MegaPac (UK)
02608C 3Com IBM PC; Imagen; Valid; Cisco
02CF1F CMC Masscomp; Silicon Graphics; Prime EXL
080002 3Com (Formerly Bridge)
080003 ACC (Advanced Computer Communications)
080005 Symbolics Symbolics LISP machines
080008 BBN
080009 Hewlett-Packard
08000A Nestar Systems
08000B Unisys
080010 AT&T
080011 Tektronix, Inc.
080014 Excelan BBN Butterfly, Masscomp, Silicon Graphics
080017 NSC
08001A Data General
08001B Data General
08001E Apollo
080020 Sun Sun machines
080022 NBI
080025 CDC
080026 Norsk Data (Nord)
080027 PCS Computer Systems GmbH
080028 TI Explorer
08002B DEC
08002E Metaphor
08002F Prime Computer Prime 50-Series LHC300
080036 Intergraph CAE stations
080037 Fujitsu-Xerox
080038 Bull
080039 Spider Systems
080041 DCA Digital Comm. Assoc.
080045 ???? (maybe Xylogics, but they claim not to know this number)
080046 Sony
080047 Sequent
080049 Univation
08004C Encore
08004E BICC
080056 Stanford University
080058 ??? DECsystem-20
08005A IBM
080067 Comdesign
080068 Ridge
080069 Silicon Graphics
08006E Excelan
080075 DDE (Danish Data Elektronik A/S)
08007C Vitalink TransLAN III
080080 XIOS
080086 Imagen/QMS
080087 Xyplex terminal servers
080089 Kinetics AppleTalk-Ethernet interface
08008B Pyramid
08008D XyVision XyVision machines
080090 Retix Inc Bridges
484453 HDS ???
800010 AT&T [misrepresentation of 080010?]
AA0000 DEC obsolete
AA0001 DEC obsolete
AA0002 DEC obsolete
AA0003 DEC Global physical address for some DEC machines
AA0004 DEC Local logical address for systems running DECNET
ETHERNET MULTICAST ADDRESSES
Ethernet Type
Address Field Usage
Multicast Addresses:
01-00-5E-00-00-00- 0800 Internet Multicast (RFC-1112) [43]
01-00-5E-7F-FF-FF
01-00-5E-80-00-00- ???? Internet reserved by IANA
01-00-5E-FF-FF-FF
01-80-C2-00-00-00 -802- Spanning tree (for bridges)
09-00-02-04-00-01? 8080? Vitalink printer
09-00-02-04-00-02? 8080? Vitalink management
09-00-09-00-00-01 8005 HP Probe
09-00-09-00-00-01 -802- HP Probe
09-00-09-00-00-04 8005? HP DTC
09-00-1E-00-00-00 8019? Apollo DOMAIN
09-00-2B-00-00-00 6009? DEC MUMPS?
09-00-2B-00-00-01 8039? DEC DSM/DTP?
09-00-2B-00-00-02 803B? DEC VAXELN?
09-00-2B-00-00-03 8038 DEC Lanbridge Traffic Monitor (LTM)
09-00-2B-00-00-04 ???? DEC MAP End System Hello?
09-00-2B-00-00-05 ???? DEC MAP Intermediate System Hello?
09-00-2B-00-00-06 803D? DEC CSMA/CD Encryption?
09-00-2B-00-00-07 8040? DEC NetBios Emulator?
09-00-2B-00-00-0F 6004 DEC Local Area Transport (LAT)
09-00-2B-00-00-1x ???? DEC Experimental
09-00-2B-01-00-00 8038 DEC LanBridge Copy packets (All bridges)
09-00-2B-01-00-01 8038 DEC LanBridge Hello packets (All local bridges)
1 packet per second, sent by the
designated LanBridge
09-00-2B-02-00-00 ???? DEC DNA Level 2 Routing Layer routers?
09-00-2B-02-01-00 803C? DEC DNA Naming Service Advertisement?
09-00-2B-02-01-01 803C? DEC DNA Naming Service Solicitation?
09-00-2B-02-01-02 803E? DEC DNA Time Service?
09-00-2B-03-xx-xx ???? DEC default filtering by bridges?
09-00-2B-04-00-00 8041? DEC Local Area System Transport (LAST)?
09-00-2B-23-00-00 803A? DEC Argonaut Console?
09-00-4E-00-00-02? 8137? Novell IPX
09-00-56-00-00-00- ???? Stanford reserved
09-00-56-FE-FF-FF
09-00-56-FF-00-00- 805C Stanford V Kernel, version 6.0
09-00-56-FF-FF-FF
09-00-77-00-00-01 ???? Retix spanning tree bridges
09-00-7C-02-00-05 8080? Vitalink diagnostics
09-00-7C-05-00-01 8080? Vitalink gateway?
0D-1E-15-BA-DD-06 ???? HP
AB-00-00-01-00-00 6001 DEC Maintenance Operation Protocol (MOP)
Dump/Load Assistance
AB-00-00-02-00-00 6002 DEC Maintenance Operation Protocol (MOP)
Remote Console
1 System ID packet every 8-10 minutes,
by every:
DEC LanBridge
DEC DEUNA interface
DEC DELUA interface
DEC DEQNA interface (in a certain mode)
AB-00-00-03-00-00 6003 DECNET Phase IV end node Hello packets
1 packet every 15 seconds, sent by
each DECNET host
AB-00-00-04-00-00 6003 DECNET Phase IV Router Hello packets
1 packet every 15 seconds, sent by the
DECNET router
AB-00-00-05-00-00 ???? Reserved DEC
through
AB-00-03-FF-FF-FF
AB-00-03-00-00-00 6004 DEC Local Area Transport (LAT) - old
AB-00-04-00-xx-xx ???? Reserved DEC customer private use
AB-00-04-01-xx-yy 6007 DEC Local Area VAX Cluster groups
System Communication Architecture (SCA)
CF-00-00-00-00-00 9000 Ethernet Configuration Test protocol (Loopback)
Broadcast Address:
FF-FF-FF-FF-FF-FF 0600 XNS packets, Hello or gateway search?
6 packets every 15 seconds, per XNS station
FF-FF-FF-FF-FF-FF 0800 IP (e.g. RWHOD via UDP) as needed
FF-FF-FF-FF-FF-FF 0804 CHAOS
FF-FF-FF-FF-FF-FF 0806 ARP (for IP and CHAOS) as needed
FF-FF-FF-FF-FF-FF 0BAD Banyan
FF-FF-FF-FF-FF-FF 1600 VALID packets, Hello or gateway search?
1 packets every 30 seconds, per VALID station
FF-FF-FF-FF-FF-FF 8035 Reverse ARP
FF-FF-FF-FF-FF-FF 807C Merit Internodal (INP)
FF-FF-FF-FF-FF-FF 809B EtherTalk
XNS PROTOCOL TYPES
Assigned well-known socket numbers
Routing Information 1
Echo 2
Router Error 3
Experimental 40-77
Assigned internet packet types
Routing Information 1
Echo 2
Error 3
Packet Exchange 4
Sequenced Packet 5
PUP 12
DoD IP 13
Experimental 20-37
PROTOCOL/TYPE FIELD ASSIGNMENTS
Below are two tables describing the arrangement of protocol fields or
type field assignments so that one could send NS Datagrams on the
ARPANET or Internet Datagrams on 10Mb Ethernet, and also protocol and
type fields so one could encapsulate each kind of Datagram in the
other.
\ upper| DoD IP | PUP | NS IP |
lower \ | | | |
--------------|--------|--------|--------|
| Type | Type | Type |
3Mb Ethernet | 1001 | 1000 | 3000 |
| octal | octal | octal |
--------------|--------|--------|--------|
| Type | Type | Type |
10 Mb Ethernet| 0800 | 0200 | 0600 |
| hex | hex | hex |
--------------|--------|--------|--------|
| Link | Link | Link |
ARPANET | 155 | 152 | 150 |
| decimal| decimal| decimal|
--------------|--------|--------|--------|
\ upper| DoD IP | PUP | NS IP |
lower \ | | | |
--------------|--------|--------|--------|
| |Protocol|Protocol|
DoD IP | X | 12 | 22 |
| | decimal| decimal|
--------------|--------|--------|--------|
| | | |
PUP | ? | X | ? |
| | | |
--------------|--------|--------|--------|
| Type | Type | |
NS IP | 13 | 12 | X |
| decimal| decimal| |
--------------|--------|--------|--------|
PRONET 80 TYPE NUMBERS
Below is the current list of PRONET 80 Type Numbers. Note: a
protocol that is on this list does not necessarily mean that there is
any implementation of it on ProNET.
Of these, protocols 1, 14, and 20 are the only ones that have ever
been seen in ARP packets.
For reference, the header is (one byte/line):
destination hardware address
source hardware address
data link header version (2)
data link header protocol number
data link header reserved (0)
data link header reserved (0)
Some protocols have been known to tuck stuff in the reserved fields.
Those who need a protocol number on ProNET-10/80 should contact John
Shriver (jas@proteon.com).
1 IP
2 IP with trailing headers
3 Address Resoloution Protocol
4 Proteon HDLC
5 VAX Debugging Protocol (MIT)
10 Novell NetWare (IPX and pre-IPX) (old format,
3 byte trailer)
11 Vianetix
12 PUP
13 Watstar protocol (University of Waterloo)
14 XNS
15 Diganostics
16 Echo protocol (link level)
17 Banyan Vines
20 DECnet (DEUNA Emulation)
21 Chaosnet
23 IEEE 802.2 or ISO 8802/2 Data Link
24 Reverse Address Resolution Protocol
29 TokenVIEW-10
31 AppleTalk LAP Data Packet
33 Cornell Boot Server Location Protocol
34 Novell NetWare IPX (new format, no trailer,
new XOR checksum)
ADDRESS RESOLUTION PROTOCOL PARAMETERS
The Address Resolution Protocol (ARP) specified in RFC-826 [88] has
several parameters. The assigned values for these parameters are
listed here.
Assignments:
Operation Code (op)
1 REQUEST
2 REPLY
Hardware Type (hrd)
Type Description References
---- ----------- ----------
1 Ethernet (10Mb) [JBP]
2 Experimental Ethernet (3Mb) [JBP]
3 Amateur Radio AX.25 [PXK]
4 Proteon ProNET Token Ring [JBP]
5 Chaos [GXP]
6 IEEE 802 Networks [JBP]
7 ARCNET [JBP]
8 Hyperchannel [JBP]
9 Lanstar [TU]
10 Autonet Short Address [MXB1]
11 LocalTalk [LXE]
12 LocalNet (IBM PCNet or SYTEK LocalNET) [JXM]
Protocol Type (pro)
Use the same codes as listed in the section called "Ethernet
Numbers of Interest" (all hardware types use this code set for the
protocol type).
REVERSE ADDRESS RESOLUTION PROTOCOL OPERATION CODES
The Reverse Address Resolution Protocol (RARP) specified in RFC-903
[48] has the following operation codes:
Assignments:
Operation Code (op)
3 request Reverse
4 reply Reverse
DYNAMIC REVERSE ARP
Assignments:
Operation Code (op)
5 DRARP-Request
6 DRARP-Reply
7 DRARP-Error
For further information, contact: David Brownell
(suneast!helium!db@Sun.COM).
X.25 TYPE NUMBERS
CCITT defines the high order two bits of the first octet of call user
data as follows:
00 - Used for other CCITT recomendations (such as X.29)
01 - Reserved for use by "national" administrative
authorities
10 - Reserved for use by international administrative authoorities
11 - Reserved for arbitrary use between consenting DTEs
Call User Data (hex) Protocol Reference
------------------- -------- ---------
01 PAD [GS2]
C5 Blacker front-end descr dev [AGM]
CC IP [69,AGM]*
CD ISO-IP [AGM]
* NOTE: ISO SC6/WG2 approved assignment in ISO 9577 (January 1990).
PUBLIC DATA NETWORK NUMBERS
One of the Internet Class A Networks is the international system of
Public Data Networks. This section lists the mapping between the
Internet Addresses and the Public Data Network Addresses (X.121).
The numbers below are assigned for networks that are connected to the
Internet, and for independent networks. These independent networks
are marked with an asterisk preceding the number.
Assignments:
* Internet Public Data Net Description References
- -------------- ----------------- ----------- ----------
014.000.000.000 Reserved [JBP]
014.000.000.001 3110-317-00035 00 PURDUE-TN [TN]
014.000.000.002 3110-608-00027 00 UWISC-TN [TN]
014.000.000.003 3110-302-00024 00 UDEL-TN [TN]
014.000.000.004 2342-192-00149 23 UCL-VTEST [PK]
014.000.000.005 2342-192-00300 23 UCL-TG [PK]
014.000.000.006 2342-192-00300 25 UK-SATNET [PK]
014.000.000.007 3110-608-00024 00 UWISC-IBM [MS56]
014.000.000.008 3110-213-00045 00 RAND-TN [MO2]
014.000.000.009 2342-192-00300 23 UCL-CS [PK]
014.000.000.010 3110-617-00025 00 BBN-VAN-GW [JD21]
*014.000.000.011 2405-015-50300 00 CHALMERS [UXB]
014.000.000.012 3110-713-00165 00 RICE [PAM6]
014.000.000.013 3110-415-00261 00 DECWRL [PAM6]
014.000.000.014 3110-408-00051 00 IBM-SJ [SA1]
014.000.000.015 2041-117-01000 00 SHAPE [JFW]
014.000.000.016 2628-153-90075 00 DFVLR4-X25 [GB7]
014.000.000.017 3110-213-00032 00 ISI-VAN-GW [JD21]
014.000.000.018 2624-522-80900 52 FGAN-SIEMENS-X25 [GB7]
014.000.000.019 2041-170-10000 00 SHAPE-X25 [JFW]
014.000.000.020 5052-737-20000 50 UQNET [AXH]
014.000.000.021 3020-801-00057 50 DMC-CRC1 [VXT]
014.000.000.022 2624-522-80329 02 FGAN-FGANFFMVAX-X25 [GB7]
*014.000.000.023 2624-589-00908 01 ECRC-X25 [PXD]
014.000.000.024 2342-905-24242 83 UK-MOD-RSRE [JXE2]
014.000.000.025 2342-905-24242 82 UK-VAN-RSRE [AXM]
014.000.000.026 2624-522-80329 05 DFVLRSUN-X25 [GB7]
014.000.000.027 2624-457-11015 90 SELETFMSUN-X25 [BXD]
014.000.000.028 3110-408-00146 00 CDC-SVL [RAM57]
014.000.000.029 2222-551-04400 00 SUN-CNUCE [ABB2]
014.000.000.030 2222-551-04500 00 ICNUCEVM-CNUCE [ABB2]
014.000.000.031 2222-551-04600 00 SPARE-CNUCE [ABB2]
014.000.000.032 2222-551-04700 00 ICNUCEVX-CNUCE [ABB2]
014.000.000.033 2222-551-04524 00 CISCO-CNUCE [ABB2]
014.000.000.034 2342-313-00260 90 SPIDER-GW [AD67]
014.000.000.035 2342-313-00260 91 SPIDER-EXP [AD67]
014.000.000.036 2342-225-00101 22 PRAXIS-X25A [TXR]
014.000.000.037 2342-225-00101 23 PRAXIS-X25B [TXR]
014.000.000.038 2403-712-30250 00 DIAB-TABY-GW [FXB]
014.000.000.039 2403-715-30100 00 DIAB-LKP-GW [FXB]
014.000.000.040 2401-881-24038 00 DIAB-TABY1-GW [FXB]
014.000.000.041 2041-170-10060 00 STC [TC27]
014.000.000.042-014.255.255.254 Unassigned [JBP]
014.255.255.255 Reserved [JBP]
The standard for transmission of IP datagrams over the Public Data
Network is specified in RFC-877 [69].
TELNET OPTIONS
The Telnet Protocol has a number of options that may be negotiated.
These options are listed here. "Official Internet Protocols" [118]
provides more detailed information.
Options Name References
------- ----------------------- ----------
0 Binary Transmission [110,JBP]
1 Echo [111,JBP]
2 Reconnection [42,JBP]
3 Suppress Go Ahead [114,JBP]
4 Approx Message Size Negotiation [133,JBP]
5 Status [113,JBP]
6 Timing Mark [115,JBP]
7 Remote Controlled Trans and Echo [107,JBP]
8 Output Line Width [40,JBP]
9 Output Page Size [41,JBP]
10 Output Carriage-Return Disposition [28,JBP]
11 Output Horizontal Tab Stops [32,JBP]
12 Output Horizontal Tab Disposition [31,JBP]
13 Output Formfeed Disposition [29,JBP]
14 Output Vertical Tabstops [34,JBP]
15 Output Vertical Tab Disposition [33,JBP]
16 Output Linefeed Disposition [30,JBP]
17 Extended ASCII [136,JBP]
18 Logout [25,MRC]
19 Byte Macro [35,JBP]
20 Data Entry Terminal [145,38,JBP]
22 SUPDUP [26,27,MRC]
22 SUPDUP Output [51,MRC]
23 Send Location [68,EAK1]
24 Terminal Type [128,MS56]
25 End of Record [103,JBP]
26 TACACS User Identification [1,BA4]
27 Output Marking [125,SXS]
28 Terminal Location Number [84,RN6]
29 Telnet 3270 Regime [116,JXR]
30 X.3 PAD [70,SL70]
31 Negotiate About Window Size [139,DW183]
32 Terminal Speed [57,CLH3]
33 Remote Flow Control [58,CLH3]
34 Linemode [9,DB14]
35 X Display Location [75,GM23]
255 Extended-Options-List [109,JBP]
MAIL ENCRYPTION TYPES
RFC-822 specifies that Encryption Types for mail may be assigned.
There are currently no RFC-822 encryption types assigned. Please use
instead the Mail Privacy procedures defined in [71,72,66].
MACHINE NAMES
These are the Official Machine Names as they appear in the Domain
Name System WKS records and the NIC Host Table. Their use is
described in RFC-952 [53].
A machine name or CPU type may be up to 40 characters taken from the
set of uppercase letters, digits, and the two punctuation characters
hyphen and slash. It must start with a letter, and end with a letter
or digit.
ALTO DEC-1090
ALTOS-6800 DEC-1090B
AMDAHL-V7 DEC-1090T
APOLLO DEC-2020T
ATARI-104ST DEC-2040
ATT-3B1 DEC-2040T
ATT-3B20 DEC-2050T
ATT-7300 DEC-2060
BBN-C/60 DEC-2060T
BURROUGHS-B/29 DEC-2065
BURROUGHS-B/4800 DEC-FALCON
BUTTERFLY DEC-KS10
C/30 DEC-VAX-11730
C/70 DORADO
CADLINC DPS8/70M
CADR ELXSI-6400
CDC-170 EVEREX-386
CDC-170/750 FOONLY-F2
CDC-173 FOONLY-F3
CELERITY-1200 FOONLY-F4
CLUB-386 GOULD
COMPAQ-386/20 GOULD-6050
COMTEN-3690 GOULD-6080
CP8040 GOULD-9050
CRAY-1 GOULD-9080
CRAY-X/MP H-316
CRAY-2 H-60/68
CTIWS-117 H-68
DANDELION H-68/80
DEC-10 H-89
DEC-1050 HONEYWELL-DPS-6
DEC-1077 HONEYWELL-DPS-8/70
DEC-1080 HP3000
HP3000/64 PDP-11
IBM-158 PDP-11/3
IBM-360/67 PDP-11/23
IBM-370/3033 PDP-11/24
IBM-3081 PDP-11/34
IBM-3084QX PDP-11/40
IBM-3101 PDP-11/44
IBM-4331 PDP-11/45
IBM-4341 PDP-11/50
IBM-4361 PDP-11/70
IBM-4381 PDP-11/73
IBM-4956 PE-7/32
IBM-6152 PE-3205
IBM-PC PERQ
IBM-PC/AT PLEXUS-P/60
IBM-PC/RT PLI
IBM-PC/XT PLURIBUS
IBM-SERIES/1 PRIME-2350
IMAGEN PRIME-2450
IMAGEN-8/300 PRIME-2755
IMSAI PRIME-9655
INTEGRATED-SOLUTIONS PRIME-9755
INTEGRATED-SOLUTIONS-68K PRIME-9955II
INTEGRATED-SOLUTIONS-CREATOR PRIME-2250
INTEGRATED-SOLUTIONS-CREATOR-8 PRIME-2655
INTEL-386 PRIME-9955
INTEL-IPSC PRIME-9950
IS-1 PRIME-9650
IS-68010 PRIME-9750
LMI PRIME-2250
LSI-11 PRIME-750
LSI-11/2 PRIME-850
LSI-11/23 PRIME-550II
LSI-11/73 PYRAMID-90
M68000 PYRAMID-90MX
MAC-II PYRAMID-90X
MASSCOMP RIDGE
MC500 RIDGE-32
MC68000 RIDGE-32C
MICROPORT ROLM-1666
MICROVAX S1-MKIIA
MICROVAX-I SMI
MV/8000 SEQUENT-BALANCE-8000
NAS3-5 SIEMENS
NCR-COMTEN-3690 SILICON-GRAPHICS
NEXT/N1000-316 SILICON-GRAPHICS-IRIS
NOW SGI-IRIS-2400
ONYX-Z8000 SGI-IRIS-2500
SGI-IRIS-3010 SUN-3/60
SGI-IRIS-3020 SUN-3/75
SGI-IRIS-3030 SUN-3/80
SGI-IRIS-3110 SUN-3/110
SGI-IRIS-3115 SUN-3/140
SGI-IRIS-3120 SUN-3/150
SGI-IRIS-3130 SUN-3/160
SGI-IRIS-4D/20 SUN-3/180
SGI-IRIS-4D/20G SUN-3/200
SGI-IRIS-4D/25 SUN-3/260
SGI-IRIS-4D/25G SUN-3/280
SGI-IRIS-4D/25S SUN-3/470
SGI-IRIS-4D/50 SUN-3/480
SGI-IRIS-4D/50G SUN-4/60
SGI-IRIS-4D/50GT SUN-4/110
SGI-IRIS-4D/60 SUN-4/150
SGI-IRIS-4D/60G SUN-4/200
SGI-IRIS-4D/60T SUN-4/260
SGI-IRIS-4D/60GT SUN-4/280
SGI-IRIS-4D/70 SUN-4/330
SGI-IRIS-4D/70G SUN-4/370
SGI-IRIS-4D/70GT SUN-4/390
SGI-IRIS-4D/80GT SUN-50
SGI-IRIS-4D/80S SUN-100
SGI-IRIS-4D/120GTX SUN-120
SGI-IRIS-4D/120S SUN-130
SGI-IRIS-4D/210GTX SUN-150
SGI-IRIS-4D/210S SUN-170
SGI-IRIS-4D/220GTX SUN-386i/250
SGI-IRIS-4D/220S SUN-68000
SGI-IRIS-4D/240GTX SYMBOLICS-3600
SGI-IRIS-4D/240S SYMBOLICS-3670
SGI-IRIS-4D/280GTX SYMMETRIC-375
SGI-IRIS-4D/280S SYMULT
SGI-IRIS-CS/12 TANDEM-TXP
SGI-IRIS-4SERVER-8 TANDY-6000
SPERRY-DCP/10 TEK-6130
SUN TI-EXPLORER
SUN-2 TP-4000
SUN-2/50 TRS-80
SUN-2/100 UNIVAC-1100
SUN-2/120 UNIVAC-1100/60
SUN-2/130 UNIVAC-1100/62
SUN-2/140 UNIVAC-1100/63
SUN-2/150 UNIVAC-1100/64
SUN-2/160 UNIVAC-1100/70
SUN-2/170 UNIVAC-1160
SUN-3/50 UNKNOWN
VAX-11/725
VAX-11/730
VAX-11/750
VAX-11/780
VAX-11/785
VAX-11/790
VAX-11/8600
VAX-8600
WANG-PC002
WANG-VS100
WANG-VS400
WYSE-386
XEROX-1108
XEROX-8010
ZENITH-148
SYSTEM NAMES
These are the Official System Names as they appear in the Domain Name
System WKS records and the NIC Host Table. Their use is described in
RFC-952 [53].
A system name may be up to 40 characters taken from the set of upper-
case letters, digits, and the two punctuation characters hyphen and
slash. It must start with a letter, and end with a letter or digit.
AEGIS MACOS TP3010
APOLLO MINOS TRSDOS
BS-2000 MOS ULTRIX
CEDAR MPE5 UNIX
CGW MSDOS UNIX-BSD
CHORUS MULTICS UNIX-V1AT
CHRYSALIS MVS UNIX-V
CMOS MVS/SP UNIX-V.1
CMS NEXUS UNIX-V.2
COS NMS UNIX-V.3
CPIX NONSTOP UNIX-PC
CTOS NOS-2 UNKNOWN
CTSS OS/DDP UT2D
DCN OS4 V
DDNOS OS86 VM
DOMAIN OSX VM/370
DOS PCDOS VM/CMS
EDX PERQ/OS VM/SP
ELF PLI VMS
EMBOS PSDOS/MIT VMS/EUNICE
EMMOS PRIMOS VRTX
EPOS RMX/RDOS WAITS
FOONEX ROS WANG
FUZZ RSX11M X11R3
GCOS SATOPS XDE
GPOS SCO-XENIX/386 XENIX
HDOS SCS
IMAGEN SIMP
INTERCOM SUN
IMPRESS SUN OS 3.5
INTERLISP SUN OS 4.0
IOS SWIFT
IRIX TAC
ISI-68020 TANDEM
ITS TENEX
LISP TOPS10
LISPM TOPS20
LOCUS TOS
PROTOCOL AND SERVICE NAMES
These are the Official Protocol Names as they appear in the Domain
Name System WKS records and the NIC Host Table. Their use is
described in RFC-952 [53].
A protocol or service may be up to 40 characters taken from the set
of uppercase letters, digits, and the punctuation character hyphen.
It must start with a letter, and end with a letter or digit.
ARGUS - ARGUS Protocol
ARP - Address Resolution Protocol
AUTH - Authentication Service
BBN-RCC-MON - BBN RCC Monitoring
BL-IDM - Britton Lee Intelligent Database Machine
BOOTP - Bootstrap Protocol
BOOTPC - Bootstrap Protocol Client
BOOTPS - Bootstrap Protocol Server
BR-SAT-MON - Backroom SATNET Monitoring
CFTP - CFTP
CHAOS - CHAOS Protocol
CHARGEN - Character Generator Protocol
CISCO-FNA - CISCO FNATIVE
CISCO-TNA - CISCO TNATIVE
CISCO-SYS - CISCO SYSMAINT
CLOCK - DCNET Time Server Protocol
CMOT - Common Mgmnt Info Services and Protocol over TCP/IP
COOKIE-JAR - Authentication Scheme
CSNET-NS - CSNET Mailbox Nameserver Protocol
DAYTIME - Daytime Protocol
DCN-MEAS - DCN Measurement Subsystems Protocol
DCP - Device Control Protocol
DGP - Dissimilar Gateway Protocol
DISCARD - Discard Protocol
DOMAIN - Domain Name System
ECHO - Echo Protocol
EGP - Exterior Gateway Protocol
EMCON - Emission Control Protocol
EMFIS-CNTL - EMFIS Control Service
EMFIS-DATA - EMFIS Data Service
FINGER - Finger Protocol
FTP - File Transfer Protocol
FTP-DATA - File Transfer Protocol Data
GGP - Gateway Gateway Protocol
GRAPHICS - Graphics Protocol
HMP - Host Monitoring Protocol
HOST2-NS - Host2 Name Server
HOSTNAME - Hostname Protocol
ICMP - Internet Control Message Protocol
IGMP - Internet Group Management Protocol
IGP - Interior Gateway Protocol
IMAP2 - Interim Mail Access Protocol version 2
INGRES-NET - INGRES-NET Service
IP - Internet Protocol
IPCU - Internet Packet Core Utility
IPPC - Internet Pluribus Packet Core
IP-ARC - Internet Protocol on ARCNET
IP-ARPA - Internet Protocol on ARPANET
IP-DC - Internet Protocol on DC Networks
IP-DVMRP - Distance Vector Multicast Routing Protocol
IP-E - Internet Protocol on Ethernet Networks
IP-EE - Internet Protocol on Exp. Ethernet Nets
IP-FDDI - Transmission of IP over FDDI
IP-HC - Internet Protocol on Hyperchannnel
IP-IEEE - Internet Protocol on IEEE 802
IP-IPX - Transmission of 802.2 over IPX Networks
IP-MTU - IP MTU Discovery Options
IP-NETBIOS - Internet Protocol Datagrams over NetBIOS Networks
IP-SLIP - Transmission of IP over Serial Lines
IP-WB - Internet Protocol on Wideband Network
IP-X25 - Internet Protocol on X.25 Networks
IRTP - Internet Reliable Transaction Protocol
ISI-GL - ISI Graphics Language Protocol
ISO-TP4 - ISO Transport Protocol Class 4
ISO-TSAP - ISO TSAP
LA-MAINT - IMP Logical Address Maintenance
LARP - Locus Address Resoultion Protocol
LDP - Loader Debugger Protocol
LEAF-1 - Leaf-1 Protocol
LEAF-2 - Leaf-2 Protocol
LINK - Link Protocol
LOC-SRV - Location Service
LOGIN - Login Host Protocol
MAIL - Format of Electronic Mail Messages
MERIT-INP - MERIT Internodal Protocol
METAGRAM - Metagram Relay
MIB - Management Information Base
MIT-ML-DEV - MIT ML Device
MFE-NSP - MFE Network Services Protocol
MIT-SUBNET - MIT Subnet Support
MIT-DOV - MIT Dover Spooler
MPM - Internet Message Protocol (Multimedia Mail)
MPM-FLAGS - MPM Flags Protocol
MPM-SND - MPM Send Protocol
MSG-AUTH - MSG Authentication Protocol
MSG-ICP - MSG ICP Protocol
MUX - Multiplexing Protocol
NAMESERVER - Host Name Server
NETBIOS-DGM - NETBIOS Datagram Service
NETBIOS-NS - NETBIOS Name Service
NETBIOS-SSN - NETBIOS Session Service
NETBLT - Bulk Data Transfer Protocol
NETED - Network Standard Text Editor
NETRJS - Remote Job Service
NI-FTP - NI File Transfer Protocol
NI-MAIL - NI Mail Protocol
NICNAME - Who Is Protocol
NFILE - A File Access Protocol
NNTP - Network News Transfer Protocol
NSW-FE - NSW User System Front End
NTP - Network Time Protocol
NVP-II - Network Voice Protocol
OSPF - Open Shortest Path First Interior GW Protocol
PCMAIL - Pcmail Transport Protocol
POP2 - Post Office Protocol - Version 2
POP3 - Post Office Protocol - Version 3
PPP - Point-to-Point Protocol
PRM - Packet Radio Measurement
PUP - PUP Protocol
PWDGEN - Password Generator Protocol
QUOTE - Quote of the Day Protocol
RARP - A Reverse Address Resolution Protocol
RATP - Reliable Asynchronous Transfer Protocol
RDP - Reliable Data Protocol
RIP - Routing Information Protocol
RJE - Remote Job Entry
RLP - Resource Location Protocol
RTELNET - Remote Telnet Service
RVD - Remote Virtual Disk Protocol
SAT-EXPAK - Satnet and Backroom EXPAK
SAT-MON - SATNET Monitoring
SEP - Sequential Exchange Protocol
SFTP - Simple File Transfer Protocol
SGMP - Simple Gateway Monitoring Protocol
SNMP - Simple Network Management Protocol
SMI - Structure of Management Information
SMTP - Simple Mail Transfer Protocol
SQLSRV - SQL Service
ST - Stream Protocol
STATSRV - Statistics Service
SU-MIT-TG - SU/MIT Telnet Gateway Protocol
SUN-RPC - SUN Remote Procedure Call
SUPDUP - SUPDUP Protocol
SUR-MEAS - Survey Measurement
SWIFT-RVF - Remote Virtual File Protocol
TACACS-DS - TACACS-Database Service
TACNEWS - TAC News
TCP - Transmission Control Protocol
TELNET - Telnet Protocol
TFTP - Trivial File Transfer Protocol
THINWIRE - Thinwire Protocol
TIME - Time Server Protocol
TP-TCP - ISO Transport Service on top of the TCP
TRUNK-1 - Trunk-1 Protocol
TRUNK-2 - Trunk-2 Protocol
UCL - University College London Protocol
UDP - User Datagram Protocol
NNTP - Network News Transfer Protocol
USERS - Active Users Protocol
UUCP-PATH - UUCP Path Service
VIA-FTP - VIA Systems-File Transfer Protocol
VISA - VISA Protocol
VMTP - Versatile Message Transaction Protocol
WB-EXPAK - Wideband EXPAK
WB-MON - Wideband Monitoring
XNET - Cross Net Debugger
XNS-IDP - Xerox NS IDP
TERMINAL TYPE NAMES
These are the Official Terminal Type Names. Their use is described in
RFC-930 [128]. The maximum length of a name is 40 characters.
A terminal names may be up to 40 characters taken from the set of upper-
case letters, digits, and the two punctuation characters hyphen and
slash. It must start with a letter, and end with a letter or digit.
ADDS-CONSUL-980 DATAMEDIA-1521
ADDS-REGENT-100 DATAMEDIA-2500
ADDS-REGENT-20 DATAMEDIA-3025
ADDS-REGENT-200 DATAMEDIA-3025A
ADDS-REGENT-25 DATAMEDIA-3045
ADDS-REGENT-40 DATAMEDIA-3045A
ADDS-REGENT-60 DATAMEDIA-DT80/1
ADDS-VIEWPOINT DATAPOINT-2200
ADDS-VIEWPOINT-60 DATAPOINT-3000
AED-512 DATAPOINT-3300
AMPEX-DIALOGUE-210 DATAPOINT-3360
AMPEX-DIALOGUE-80 DEC-DECWRITER-I
AMPEX-210 DEC-DECWRITER-II
AMPEX-230 DEC-GIGI
ANDERSON-JACOBSON-510 DEC-GT40
ANDERSON-JACOBSON-630 DEC-GT40A
ANDERSON-JACOBSON-832 DEC-GT42
ANDERSON-JACOBSON-841 DEC-LA120
ANN-ARBOR-AMBASSADOR DEC-LA30
ANSI DEC-LA36
ARDS DEC-LA38
BITGRAPH DEC-VT05
BUSSIPLEXER DEC-VT100
CALCOMP-565 DEC-VT101
CDC-456 DEC-VT102
CDI-1030 DEC-VT125
CDI-1203 DEC-VT131
C-ITOH-101 DEC-VT132
C-ITOH-50 DEC-VT200
C-ITOH-80 DEC-VT220
CLNZ DEC-VT240
COMPUCOLOR-II DEC-VT241
CONCEPT-100 DEC-VT300
CONCEPT-104 DEC-VT320
CONCEPT-108 DEC-VT340
DATA-100 DEC-VT50
DATA-GENERAL-6053 DEC-VT50H
DATAGRAPHIX-132A DEC-VT52
DATAMEDIA-1520 DEC-VT55
DEC-VT61 HP-2649A
DEC-VT62 IBM-1050
DELTA-DATA-5000 IBM-2741
DELTA-DATA-NIH-7000 IBM-3101
DELTA-TELTERM-2 IBM-3101-10
DIABLO-1620 IBM-3151
DIABLO-1640 IBM-3275-2
DIGILOG-333 IBM-3276-2
DTC-300S IBM-3276-3
DTC-382 IBM-3276-4
EDT-1200 IBM-3277-2
EXECUPORT-4000 IBM-3278-2
EXECUPORT-4080 IBM-3278-3
FACIT-TWIST-4440 IBM-3278-4
FREEDOM-100 IBM-3278-5
FREEDOM-110 IBM-3279-2
FREEDOM-200 IBM-3279-3
GENERAL-TERMINAL-100A IBM-5151
GENERAL-TERMINAL-101 IBM-5154
GIPSI-TX-M IBM-5081
GIPSI-TX-ME IBM-6153
GIPSI-TX-C4 IBM-6154
GIPSI-TX-C8 IBM-6155
GSI IBM-AED
HAZELTINE-1420 IBM-3278-2-E
HAZELTINE-1500 IBM-3278-3-E
HAZELTINE-1510 IBM-3278-4-E
HAZELTINE-1520 IBM-3278-5-E
HAZELTINE-1552 IBM-3279-2-E
HAZELTINE-2000 IBM-3279-3-E
HAZELTINE-ESPRIT IMLAC
HP-2392 INFOTON-100
HP-2621 INFOTON-400
HP-2621A INFOTONKAS
HP-2621P ISC-8001
HP-2623 LSI-ADM-1
HP-2626 LSI-ADM-11
HP-2626A LSI-ADM-12
HP-2626P LSI-ADM-2
HP-2627 LSI-ADM-20
HP-2640 LSI-ADM-22
HP-2640A LSI-ADM-220
HP-2640B LSI-ADM-3
HP-2645 LSI-ADM-31
HP-2645A LSI-ADM-3A
HP-2648 LSI-ADM-42
HP-2648A LSI-ADM-5
HP-2649 MEMOREX-1240
MICROBEE TELETEC-DATASCREEN
MICROTERM-ACT-IV TELETERM-1030
MICROTERM-ACT-V TELETYPE-33
MICROTERM-ERGO-301 TELETYPE-35
MICROTERM-MIME-1 TELETYPE-37
MICROTERM-MIME-2 TELETYPE-38
MICROTERM-ACT-5A TELETYPE-40
MICROTERM-TWIST TELETYPE-43
NEC-5520 TELEVIDEO-910
NETRONICS TELEVIDEO-912
NETWORK-VIRTUAL-TERMINAL TELEVIDEO-920
OMRON-8025AG TELEVIDEO-920B
PERKIN-ELMER-550 TELEVIDEO-920C
PERKIN-ELMER-1100 TELEVIDEO-925
PERKIN-ELMER-1200 TELEVIDEO-955
PERQ TELEVIDEO-950
PLASMA-PANEL TELEVIDEO-970
QUME-SPRINT-5 TELEVIDEO-975
QUME-101 TERMINET-1200
QUME-102 TERMINET-300
SOROC TI-700
SOROC-120 TI-733
SOUTHWEST-TECHNICAL-PRODUCTS-CT82 TI-735
SUN TI-743
SUPERBEE TI-745
SUPERBEE-III-M TI-800
TEC TYCOM
TEKTRONIX-4006 UNIVAC-DCT-500
TEKTRONIX-4010 VIDEO-SYSTEMS-1200
TEKTRONIX-4012 VIDEO-SYSTEMS-5000
TEKTRONIX-4013 VOLKER-CRAIG-303
TEKTRONIX-4014 VOLKER-CRAIG-303A
TEKTRONIX-4023 VOLKER-CRAIG-404
TEKTRONIX-4024 VISUAL-200
TEKTRONIX-4025 VISUAL-55
TEKTRONIX-4027 WYSE-30
TEKTRONIX-4105 WYSE-50
TEKTRONIX-4107 WYSE-60
TEKTRONIX-4110 WYSE-75
TEKTRONIX-4112 WYSE-85
TEKTRONIX-4113 XEROX-1720
TEKTRONIX-4114 XTERM
TEKTRONIX-4115 ZENITH-H19
TEKTRONIX-4125 ZENITH-Z29
TEKTRONIX-4404 ZENTEC-30
TELERAY-1061
TELERAY-3700
TELERAY-3800
DOCUMENTS
[1] Anderson, B., "TACACS User Identification Telnet Option",
RFC-927, BBN, December 1984.
[2] BBN, "Specifications for the Interconnection of a Host and an
IMP", Report 1822, Bolt Beranek and Newman, Cambridge,
Massachusetts, revised, December 1981.
[3] BBN, "User Manual for TAC User Database Tool", Bolt Beranek
and Newman, September 1984.
[4] Ben-Artzi, Amatzia, "Network Management for TCP/IP Network: An
Overview", 3Com, May 1988.
[5] Bennett, C., "A Simple NIFTP-Based Mail System", IEN 169,
University College, London, January 1981.
[6] Bhushan, A., "A Report on the Survey Project", RFC-530,
NIC 17375, June 1973.
[7] Bisbey, R., D. Hollingworth, and B. Britt, "Graphics Language
(version 2.1)", ISI/TM-80-18, Information Sciences Institute,
July 1980.
[8] Boggs, D., J. Shoch, E. Taft, and R. Metcalfe, "PUP: An
Internetwork Architecture", XEROX Palo Alto Research Center,
CSL-79-10, July 1979; also in IEEE Transactions on
Communication, Volume COM-28, Number 4, April 1980.
[9] Borman, D., Editor, "Telnet Linemode Option",
RFC1116, Cray Research, Inc., August 1989.
[10] Braden, R., "NETRJS Protocol", RFC-740, NIC 42423,
Information Sciences Institute, November 1977.
[11] Braden, R., and J. Postel, "Requirements for Internet
Gateways", RFC-1009, Obsoletes RFC-985, Information Sciences
Institute, June 1987.
[12] Bressler, B., "Remote Job Entry Protocol", RFC-407,
NIC 12112, October 1972.
[13] Bressler, R., "Inter-Entity Communication -- An Experiment",
RFC-441, NIC 13773, January 1973.
[14] Butler, M., J. Postel, D. Chase, J. Goldberger, and
J. K. Reynolds, "Post Office Protocol - Version 2", RFC-937,
Information Sciences Institute, February 1985.
[15] Case, J., M. Fedor, M. Schoffstall, and C. Davin,
"A Simple Network Management Protocol", RFC-1098,
(Obsoletes RFC-1067), University of Tennessee at
Knoxville, NYSERNet, Inc., Rensselaer Polytechnic
Institute, and MIT Laboratory for Computer Science,
April 1989.
[16] Cass, D., and M. Rose, "ISO Transport Services on Top of
the TCP", RFC-983, NTRC, April 1986.
[17] Cheriton, D., "VMTP: Versatile Message Transaction
Protocol Specification", RFC-1045, pgs 103 & 104,
Stanford University, February 1988.
[18] Cisco Systems, "Gateway Server Reference Manual", Manual
Revision B, January 10, 1988.
[19] Clark, D., "PCMAIL: A Distributed Mail System for Personal
Computers", RFC-984, MIT, May 1986.
[20] Clark, D., M. Lambert, and L. Zhang, "NETBLT: A Bulk Data
Transfer Protocol", RFC-969, MIT Laboratory for Computer
Science, December 1985.
[21] Cohen, D., "On Holy Wars and a Plea for Peace", IEEE Computer
Magazine, October 1981.
[22] Cohen, D., "Specifications for the Network Voice Protocol",
RFC-741, ISI/RR 7539, Information Sciences Institute,
March 1976.
[23] Cohen, D. and J. Postel, "Multiplexing Protocol", IEN 90,
Information Sciences Institute, May 1979.
[24] COMPASS, "Semi-Annual Technical Report", CADD-7603-0411,
Massachusetts Computer Associates, 4 March 1976. Also as,
"National Software Works, Status Report No. 1,"
RADC-TR-76-276, Volume 1, September 1976. And COMPASS. "Second
Semi-Annual Report," CADD-7608-1611, Massachusetts Computer
Associates, August 1976.
[25] Crispin, M., "Telnet Logout Option", Stanford University-AI,
RFC-727, April 1977.
[26] Crispin, M., "Telnet SUPDUP Option", Stanford University-AI,
RFC-736, October 1977.
[27] Crispin, M., "SUPDUP Protocol", RFC-734, NIC 41953,
October 1977.
[28] Crocker, D., "Telnet Output Carriage-Return Disposition
Option", RFC-652, October 1974.
[29] Crocker, D., "Telnet Output Formfeed Disposition Option",
RFC-655, October 1974.
[30] Crocker, D., "Telnet Output Linefeed Disposition", RFC-658,
October 1974.
[31] Crocker, D., "Telnet Output Horizontal Tab Disposition
Option", RFC-654, October 1974.
[32] Crocker, D., "Telnet Output Horizontal Tabstops Option",
RFC-653, October 1974.
[33] Crocker, D., "Telnet Output Vertical Tab Disposition Option",
RFC-657, October 1974.
[34] Crocker, D., "Telnet Output Vertical Tabstops Option",
RFC-656, October 1974.
[35] Crocker, D. and R. Gumpertz, "Revised Telnet Byte Marco
Option", RFC-735, November 1977.
[36] Croft, B., and J. Gilmore, "BOOTSTRAP Protocol (BOOTP)",
RFC-951, Stanford and SUN Microsytems, September 1985.
[37] Davin, J., J. Case, M. Fedor, and M. Schoffstall, "A Simple
Gateway Monitoring Protocol", RFC-1028, November 1987.
[38] Day, J., "Telnet Data Entry Terminal Option", RFC-732,
September 1977.
[39] DCA, "3270 Display System Protocol", #1981-08.
[40] DDN Protocol Handbook, "Telnet Output Line Width Option",
NIC 50005, December 1985.
[41] DDN Protocol Handbook, "Telnet Output Page Size Option",
NIC 50005, December 1985.
[42] DDN Protocol Handbook, "Telnet Reconnection Option",
NIC 50005, December 1985.
[43] Deering, S., "Host Extensions for IP Multicasting",
RFC-1112, Obsoletes RFC-988, RFC-1054, Stanford University,
August 1989.
[44] Elvy, M., and R. Nedved, "Network Mail Path Service", RFC-915,
Harvard and CMU, July 1986.
[45] Feinler, E., editor, "DDN Protocol Handbook", Network
Information Center, SRI International, December 1985.
[46] Feinler, E., editor, "Internet Protocol Transition Workbook",
Network Information Center, SRI International, March 1982.
[47] Feinler, E. and J. Postel, eds., "ARPANET Protocol Handbook",
NIC 7104, for the Defense Communications Agency by SRI
International, Menlo Park, California, Revised January 1978.
[48] Finlayson, R., T. Mann, J. Mogul, and M. Theimer, "A Reverse
Address Resolution Protocol", RFC-903, Stanford University,
June 1984.
[49] Forgie, J., "ST - A Proposed Internet Stream Protocol",
IEN 119, MIT Lincoln Laboratory, September 1979.
[50] Forsdick, H., "CFTP", Network Message, Bolt Beranek and
Newman, January 1982.
[51] Greenberg, B., "Telnet SUPDUP-OUTPUT Option", RFC-749,
MIT-Multics, September 1978.
[52] Harrenstien, K., "Name/Finger", RFC-742, NIC 42758,
SRI International, December 1977.
[53] Harrenstien, K., M. Stahl, and E. Feinler, "DOD Internet Host
Table Specification", RFC-952, Obsoletes RFC-810,
October 1985.
[54] Harrenstien, K., V. White, and E. Feinler, "Hostnames Server",
RFC-811, SRI International, March 1982.
[55] Harrenstien, K., and V. White, "Nicname/Whois", RFC-812,
SRI International, March 1982.
[56] Haverty, J., "XNET Formats for Internet Protocol Version 4",
IEN 158, October 1980.
[57] Hedrick, C., "Telnet Terminal Speed Option", RFC-1079,
Rutgers University, December 1988.
[58] Hedrick, C., "Telnet Remote Flow Control Option",
RFC-1080, Rutgers University, December 1988.
[59] Hinden, R., "A Host Monitoring Protocol", RFC-869,
Bolt Beranek and Newman, December 1983.
[60] Hinden, R., and A. Sheltzer, "The DARPA Internet Gateway",
RFC-823, September 1982.
[61] Hornig, C., "A Standard for the Transmission of IP Datagrams
over Ethernet Networks, RFC-894, Symbolics, April 1984.
[62] Internet Activities Board, J. Postel, Editor, "IAB Official
Protocol Standards", RFC-1130, Internet Activities
October 1989.
[63] International Standards Organization, "ISO Transport Protocol
Specification - ISO DP 8073", RFC-905, April 1984.
[64] International Standards Organization, "Protocol for Providing
the Connectionless-Mode Network Services", RFC-926, ISO,
December 1984.
[65] Kantor, B., and P. Lapsley, "Network News Transfer Protocol",
RFC-977, UC San Diego & UC Berkeley, February 1986.
[66] Kent, S., and J. Linn, "Privacy Enhancement for Internet
Electronic Mail: Part II -- Certificate-Based Key Management",
BBNCC and DEC, August 1989.
[67] Khanna, A., and A. Malis, "The ARPANET AHIP-E Host Access
Protocol (Enhanced AHIP)", RFC-1005, BBN Communications
Corporation, May 1987.
[68] Killian, E., "Telnet Send-Location Option", RFC-779,
April 1981.
[69] Korb, J., "A Standard for the Transmission of IP Datagrams
Over Public Data Networks", RFC-877, Purdue University,
September 1983.
[70] Levy, S., and T. Jacobson, "Telnet X.3 PAD Option", RFC-1053,
Minnesota Supercomputer Center, April 1988.
[71] Linn, J., "Privacy Enhancement for Internet Electronic
Mail: Part I: Message Encipherment and Authentication
Procedures", RFC-1113, Obsoletes RFC-989 and RFC-1040, DEC,
August 1989.
[72] Linn, J., "Privacy Enhancement for Internet Electronic
Mail: Part III -- Algorithms, Modes, and Identifiers",
RFC-1115, DEC, August 1989.
[73] Lottor, M., "Simple File Transfer Protocol", RFC-913, MIT,
September 1984.
[74] M/A-COM Government Systems, "Dissimilar Gateway Protocol
Specification, Draft Version", Contract no. CS901145,
November 16, 1987.
[75] Marcy, G., "Telnet X Display Location Option", RFC-1096,
Carnegie Mellon University, March 1989.
[76] Malis, A., "Logical Addressing Implementation Specification",
BBN Report 5256, pp 31-36, May 1983.
[77] Malkin, G., "KNET/VM Command Message Protocol Functional
Overview", Spartacus, Inc., January 4, 1988.
[78] Metcalfe, R. M. and D. R. Boggs, "Ethernet: Distributed Packet
Switching for Local Computer Networks", Communications of the
ACM, 19 (7), pp 395-402, July 1976.
[79] Miller, T., "Internet Reliable Transaction Protocol", RFC-938,
ACC, February 1985.
[80] Mills, D., "Network Time Protocol (Version 1), Specification
and Implementation", RFC-1059, University of Delaware,
July 1988.
[81] Mockapetris, P., "Domain Names - Concepts and
Facilities", RFC-1034, Obsoletes RFCs 882, 883, and
973, Information Sciences Institute, November 1987.
[82] Mockapetris, P., "Domain Names - Implementation and
Specification", RFC-1035, Obsoletes RFCs 882, 883, and
973, Information Sciences Institute, November 1987.
[83] Moy, J., "The OSPF Specification", RFC1131, Proteon,
October 1989.
[84] Nedved, R., "Telnet Terminal Location Number Option", RFC-946,
Carnegie-Mellon University, May 1985.
[85] NSW Protocol Committee, "MSG: The Interprocess Communication
Facility for the National Software Works", CADD-7612-2411,
Massachusetts Computer Associates, BBN 3237, Bolt Beranek and
Newman, Revised December 1976.
[86] Onions, J., and M. Rose, "ISO-TP0 bridge between TCP