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      1 .Dd December 24 2013
      2 .Dt NTP_KEYGEN 1ntp-keygenmdoc User Commands
      3 .Os SunOS 5.10
      4 .\"  EDIT THIS FILE WITH CAUTION  (ntp-keygen-opts.mdoc)
      5 .\"
      6 .\"  It has been AutoGen-ed  December 24, 2013 at 11:39:38 AM by AutoGen 5.18.3pre5
      7 .\"  From the definitions    ntp-keygen-opts.def
      8 .\"  and the template file   agmdoc-cmd.tpl
      9 .Sh NAME
     10 .Nm ntp-keygen
     11 .Nd Create a NTP host key
     12 .Sh SYNOPSIS
     13 .Nm
     14 .\" Mixture of short (flag) options and long options
     15 .Op Fl flags
     16 .Op Fl flag Op Ar value
     17 .Op Fl \-option\-name Ns Oo Oo Ns "=| " Oc Ns Ar value Oc
     18 .Pp
     19 All arguments must be options.
     20 .Pp
     21 .Sh DESCRIPTION
     22 This program generates cryptographic data files used by the NTPv4
     23 authentication and identification schemes.
     24 It generates MD5 key files used in symmetric key cryptography.
     25 In addition, if the OpenSSL software library has been installed,
     26 it generates keys, certificate and identity files used in public key
     27 cryptography.
     28 These files are used for cookie encryption,
     29 digital signature and challenge/response identification algorithms
     30 compatible with the Internet standard security infrastructure.
     31 .Pp
     32 All files are in PEM\-encoded printable ASCII format,
     33 so they can be embedded as MIME attachments in mail to other sites
     34 and certificate authorities.
     35 By default, files are not encrypted.
     36 .Pp
     37 When used to generate message digest keys, the program produces a file
     38 containing ten pseudo\-random printable ASCII strings suitable for the
     39 MD5 message digest algorithm included in the distribution.
     40 If the OpenSSL library is installed, it produces an additional ten
     41 hex\-encoded random bit strings suitable for the SHA1 and other message
     42 digest algorithms.
     43 The message digest keys file must be distributed and stored
     44 using secure means beyond the scope of NTP itself.
     45 Besides the keys used for ordinary NTP associations, additional keys
     46 can be defined as passwords for the
     47 .Xr ntpq 1ntpqmdoc
     48 and
     49 .Xr ntpdc 1ntpdcmdoc
     50 utility programs.
     51 .Pp
     52 The remaining generated files are compatible with other OpenSSL
     53 applications and other Public Key Infrastructure (PKI) resources.
     54 Certificates generated by this program are compatible with extant
     55 industry practice, although some users might find the interpretation of
     56 X509v3 extension fields somewhat liberal.
     57 However, the identity keys are probably not compatible with anything
     58 other than Autokey.
     59 .Pp
     60 Some files used by this program are encrypted using a private password.
     61 The
     62 .Fl p
     63 option specifies the password for local encrypted files and the
     64 .Fl q
     65 option the password for encrypted files sent to remote sites.
     66 If no password is specified, the host name returned by the Unix
     67 .Fn gethostname
     68 function, normally the DNS name of the host is used.
     69 .Pp
     70 The
     71 .Ar pw
     72 option of the
     73 .Ar crypto
     74 configuration command specifies the read
     75 password for previously encrypted local files.
     76 This must match the local password used by this program.
     77 If not specified, the host name is used.
     78 Thus, if files are generated by this program without password,
     79 they can be read back by
     80 .Ar ntpd
     81 without password but only on the same host.
     82 .Pp
     83 Normally, encrypted files for each host are generated by that host and
     84 used only by that host, although exceptions exist as noted later on
     85 this page.
     86 The symmetric keys file, normally called
     87 .Ar ntp.keys ,
     88 is usually installed in
     89 .Pa /etc .
     90 Other files and links are usually installed in
     91 .Pa /usr/local/etc ,
     92 which is normally in a shared filesystem in
     93 NFS\-mounted networks and cannot be changed by shared clients.
     94 The location of the keys directory can be changed by the
     95 .Ar keysdir
     96 configuration command in such cases.
     97 Normally, this is in
     98 .Pa /etc .
     99 .Pp
    100 This program directs commentary and error messages to the standard
    101 error stream
    102 .Ar stderr
    103 and remote files to the standard output stream
    104 .Ar stdout
    105 where they can be piped to other applications or redirected to files.
    106 The names used for generated files and links all begin with the
    107 string
    108 .Ar ntpkey
    109 and include the file type, generating host and filestamp,
    110 as described in the
    111 .Dq Cryptographic Data Files
    112 section below.
    113 .Ss Running the Program
    114 To test and gain experience with Autokey concepts, log in as root and
    115 change to the keys directory, usually
    116 .Pa /usr/local/etc 
    117 When run for the first time, or if all files with names beginning with
    118 .Ar ntpkey
    119 have been removed, use the
    120 .Nm
    121 command without arguments to generate a
    122 default RSA host key and matching RSA\-MD5 certificate with expiration
    123 date one year hence.
    124 If run again without options, the program uses the
    125 existing keys and parameters and generates only a new certificate with
    126 new expiration date one year hence.
    127 .Pp
    128 Run the command on as many hosts as necessary.
    129 Designate one of them as the trusted host (TH) using
    130 .Nm
    131 with the
    132 .Fl T
    133 option and configure it to synchronize from reliable Internet servers.
    134 Then configure the other hosts to synchronize to the TH directly or
    135 indirectly.
    136 A certificate trail is created when Autokey asks the immediately
    137 ascendant host towards the TH to sign its certificate, which is then
    138 provided to the immediately descendant host on request.
    139 All group hosts should have acyclic certificate trails ending on the TH.
    140 .Pp
    141 The host key is used to encrypt the cookie when required and so must be
    142 RSA type.
    143 By default, the host key is also the sign key used to encrypt
    144 signatures.
    145 A different sign key can be assigned using the
    146 .Fl S
    147 option and this can be either RSA or DSA type.
    148 By default, the signature
    149 message digest type is MD5, but any combination of sign key type and
    150 message digest type supported by the OpenSSL library can be specified
    151 using the
    152 .Fl c
    153 option.
    154 The rules say cryptographic media should be generated with proventic
    155 filestamps, which means the host should already be synchronized before
    156 this program is run.
    157 This of course creates a chicken\-and\-egg problem
    158 when the host is started for the first time.
    159 Accordingly, the host time
    160 should be set by some other means, such as eyeball\-and\-wristwatch, at
    161 least so that the certificate lifetime is within the current year.
    162 After that and when the host is synchronized to a proventic source, the
    163 certificate should be re\-generated.
    164 .Pp
    165 Additional information on trusted groups and identity schemes is on the
    166 .Dq Autokey Public\-Key Authentication
    167 page.
    168 .Pp
    169 The
    170 .Xr ntpd 1ntpdmdoc
    171 configuration command
    172 .Ic crypto pw Ar password
    173 specifies the read password for previously encrypted files.
    174 The daemon expires on the spot if the password is missing
    175 or incorrect.
    176 For convenience, if a file has been previously encrypted,
    177 the default read password is the name of the host running
    178 the program.
    179 If the previous write password is specified as the host name,
    180 these files can be read by that host with no explicit password.
    181 .Pp
    182 File names begin with the prefix
    183 .Cm ntpkey_
    184 and end with the postfix
    185 .Ar _hostname.filestamp ,
    186 where
    187 .Ar hostname
    188 is the owner name, usually the string returned
    189 by the Unix gethostname() routine, and
    190 .Ar filestamp
    191 is the NTP seconds when the file was generated, in decimal digits.
    192 This both guarantees uniqueness and simplifies maintenance
    193 procedures, since all files can be quickly removed
    194 by a
    195 .Ic rm ntpkey\&*
    196 command or all files generated
    197 at a specific time can be removed by a
    198 .Ic rm
    199 .Ar \&*filestamp
    200 command.
    201 To further reduce the risk of misconfiguration,
    202 the first two lines of a file contain the file name
    203 and generation date and time as comments.
    204 .Pp
    205 All files are installed by default in the keys directory
    206 .Pa /usr/local/etc ,
    207 which is normally in a shared filesystem
    208 in NFS\-mounted networks.
    209 The actual location of the keys directory
    210 and each file can be overridden by configuration commands,
    211 but this is not recommended.
    212 Normally, the files for each host are generated by that host
    213 and used only by that host, although exceptions exist
    214 as noted later on this page.
    215 .Pp
    216 Normally, files containing private values,
    217 including the host key, sign key and identification parameters,
    218 are permitted root read/write\-only;
    219 while others containing public values are permitted world readable.
    220 Alternatively, files containing private values can be encrypted
    221 and these files permitted world readable,
    222 which simplifies maintenance in shared file systems.
    223 Since uniqueness is insured by the hostname and
    224 file name extensions, the files for a NFS server and
    225 dependent clients can all be installed in the same shared directory.
    226 .Pp
    227 The recommended practice is to keep the file name extensions
    228 when installing a file and to install a soft link
    229 from the generic names specified elsewhere on this page
    230 to the generated files.
    231 This allows new file generations to be activated simply
    232 by changing the link.
    233 If a link is present, ntpd follows it to the file name
    234 to extract the filestamp.
    235 If a link is not present,
    236 .Xr ntpd 1ntpdmdoc
    237 extracts the filestamp from the file itself.
    238 This allows clients to verify that the file and generation times
    239 are always current.
    240 The
    241 .Nm
    242 program uses the same timestamp extension for all files generated
    243 at one time, so each generation is distinct and can be readily
    244 recognized in monitoring data.
    245 .Ss Running the program
    246 The safest way to run the
    247 .Nm
    248 program is logged in directly as root.
    249 The recommended procedure is change to the keys directory,
    250 usually
    251 .Pa /usr/local/etc ,
    252 then run the program.
    253 When run for the first time,
    254 or if all
    255 .Cm ntpkey
    256 files have been removed,
    257 the program generates a RSA host key file and matching RSA\-MD5 certificate file,
    258 which is all that is necessary in many cases.
    259 The program also generates soft links from the generic names
    260 to the respective files.
    261 If run again, the program uses the same host key file,
    262 but generates a new certificate file and link.
    263 .Pp
    264 The host key is used to encrypt the cookie when required and so must be RSA type.
    265 By default, the host key is also the sign key used to encrypt signatures.
    266 When necessary, a different sign key can be specified and this can be
    267 either RSA or DSA type.
    268 By default, the message digest type is MD5, but any combination
    269 of sign key type and message digest type supported by the OpenSSL library
    270 can be specified, including those using the MD2, MD5, SHA, SHA1, MDC2
    271 and RIPE160 message digest algorithms.
    272 However, the scheme specified in the certificate must be compatible
    273 with the sign key.
    274 Certificates using any digest algorithm are compatible with RSA sign keys;
    275 however, only SHA and SHA1 certificates are compatible with DSA sign keys.
    276 .Pp
    277 Private/public key files and certificates are compatible with
    278 other OpenSSL applications and very likely other libraries as well.
    279 Certificates or certificate requests derived from them should be compatible
    280 with extant industry practice, although some users might find
    281 the interpretation of X509v3 extension fields somewhat liberal.
    282 However, the identification parameter files, although encoded
    283 as the other files, are probably not compatible with anything other than Autokey.
    284 .Pp
    285 Running the program as other than root and using the Unix
    286 .Ic su
    287 command
    288 to assume root may not work properly, since by default the OpenSSL library
    289 looks for the random seed file
    290 .Cm .rnd
    291 in the user home directory.
    292 However, there should be only one
    293 .Cm .rnd ,
    294 most conveniently
    295 in the root directory, so it is convenient to define the
    296 .Cm $RANDFILE
    297 environment variable used by the OpenSSL library as the path to
    298 .Cm /.rnd .
    299 .Pp
    300 Installing the keys as root might not work in NFS\-mounted
    301 shared file systems, as NFS clients may not be able to write
    302 to the shared keys directory, even as root.
    303 In this case, NFS clients can specify the files in another
    304 directory such as
    305 .Pa /etc
    306 using the
    307 .Ic keysdir
    308 command.
    309 There is no need for one client to read the keys and certificates
    310 of other clients or servers, as these data are obtained automatically
    311 by the Autokey protocol.
    312 .Pp
    313 Ordinarily, cryptographic files are generated by the host that uses them,
    314 but it is possible for a trusted agent (TA) to generate these files
    315 for other hosts; however, in such cases files should always be encrypted.
    316 The subject name and trusted name default to the hostname
    317 of the host generating the files, but can be changed by command line options.
    318 It is convenient to designate the owner name and trusted name
    319 as the subject and issuer fields, respectively, of the certificate.
    320 The owner name is also used for the host and sign key files,
    321 while the trusted name is used for the identity files.
    322 .Pp
    323 All files are installed by default in the keys directory
    324 .Pa /usr/local/etc ,
    325 which is normally in a shared filesystem
    326 in NFS\-mounted networks.
    327 The actual location of the keys directory
    328 and each file can be overridden by configuration commands,
    329 but this is not recommended.
    330 Normally, the files for each host are generated by that host
    331 and used only by that host, although exceptions exist
    332 as noted later on this page.
    333 .Pp
    334 Normally, files containing private values,
    335 including the host key, sign key and identification parameters,
    336 are permitted root read/write\-only;
    337 while others containing public values are permitted world readable.
    338 Alternatively, files containing private values can be encrypted
    339 and these files permitted world readable,
    340 which simplifies maintenance in shared file systems.
    341 Since uniqueness is insured by the hostname and
    342 file name extensions, the files for a NFS server and
    343 dependent clients can all be installed in the same shared directory.
    344 .Pp
    345 The recommended practice is to keep the file name extensions
    346 when installing a file and to install a soft link
    347 from the generic names specified elsewhere on this page
    348 to the generated files.
    349 This allows new file generations to be activated simply
    350 by changing the link.
    351 If a link is present, ntpd follows it to the file name
    352 to extract the filestamp.
    353 If a link is not present,
    354 .Xr ntpd 1ntpdmdoc
    355 extracts the filestamp from the file itself.
    356 This allows clients to verify that the file and generation times
    357 are always current.
    358 The
    359 .Nm
    360 program uses the same timestamp extension for all files generated
    361 at one time, so each generation is distinct and can be readily
    362 recognized in monitoring data.
    363 .Ss Running the program
    364 The safest way to run the
    365 .Nm
    366 program is logged in directly as root.
    367 The recommended procedure is change to the keys directory,
    368 usually
    369 .Pa /usr/local/etc ,
    370 then run the program.
    371 When run for the first time,
    372 or if all
    373 .Cm ntpkey
    374 files have been removed,
    375 the program generates a RSA host key file and matching RSA\-MD5 certificate file,
    376 which is all that is necessary in many cases.
    377 The program also generates soft links from the generic names
    378 to the respective files.
    379 If run again, the program uses the same host key file,
    380 but generates a new certificate file and link.
    381 .Pp
    382 The host key is used to encrypt the cookie when required and so must be RSA type.
    383 By default, the host key is also the sign key used to encrypt signatures.
    384 When necessary, a different sign key can be specified and this can be
    385 either RSA or DSA type.
    386 By default, the message digest type is MD5, but any combination
    387 of sign key type and message digest type supported by the OpenSSL library
    388 can be specified, including those using the MD2, MD5, SHA, SHA1, MDC2
    389 and RIPE160 message digest algorithms.
    390 However, the scheme specified in the certificate must be compatible
    391 with the sign key.
    392 Certificates using any digest algorithm are compatible with RSA sign keys;
    393 however, only SHA and SHA1 certificates are compatible with DSA sign keys.
    394 .Pp
    395 Private/public key files and certificates are compatible with
    396 other OpenSSL applications and very likely other libraries as well.
    397 Certificates or certificate requests derived from them should be compatible
    398 with extant industry practice, although some users might find
    399 the interpretation of X509v3 extension fields somewhat liberal.
    400 However, the identification parameter files, although encoded
    401 as the other files, are probably not compatible with anything other than Autokey.
    402 .Pp
    403 Running the program as other than root and using the Unix
    404 .Ic su
    405 command
    406 to assume root may not work properly, since by default the OpenSSL library
    407 looks for the random seed file
    408 .Cm .rnd
    409 in the user home directory.
    410 However, there should be only one
    411 .Cm .rnd ,
    412 most conveniently
    413 in the root directory, so it is convenient to define the
    414 .Cm $RANDFILE
    415 environment variable used by the OpenSSL library as the path to
    416 .Cm /.rnd .
    417 .Pp
    418 Installing the keys as root might not work in NFS\-mounted
    419 shared file systems, as NFS clients may not be able to write
    420 to the shared keys directory, even as root.
    421 In this case, NFS clients can specify the files in another
    422 directory such as
    423 .Pa /etc
    424 using the
    425 .Ic keysdir
    426 command.
    427 There is no need for one client to read the keys and certificates
    428 of other clients or servers, as these data are obtained automatically
    429 by the Autokey protocol.
    430 .Pp
    431 Ordinarily, cryptographic files are generated by the host that uses them,
    432 but it is possible for a trusted agent (TA) to generate these files
    433 for other hosts; however, in such cases files should always be encrypted.
    434 The subject name and trusted name default to the hostname
    435 of the host generating the files, but can be changed by command line options.
    436 It is convenient to designate the owner name and trusted name
    437 as the subject and issuer fields, respectively, of the certificate.
    438 The owner name is also used for the host and sign key files,
    439 while the trusted name is used for the identity files.
    440 seconds.
    441 seconds.
    442 s Trusted Hosts and Groups
    443 Each cryptographic configuration involves selection of a signature scheme
    444 and identification scheme, called a cryptotype,
    445 as explained in the
    446 .Sx Authentication Options
    447 section of
    448 .Xr ntp.conf 5 .
    449 The default cryptotype uses RSA encryption, MD5 message digest
    450 and TC identification.
    451 First, configure a NTP subnet including one or more low\-stratum
    452 trusted hosts from which all other hosts derive synchronization
    453 directly or indirectly.
    454 Trusted hosts have trusted certificates;
    455 all other hosts have nontrusted certificates.
    456 These hosts will automatically and dynamically build authoritative
    457 certificate trails to one or more trusted hosts.
    458 A trusted group is the set of all hosts that have, directly or indirectly,
    459 a certificate trail ending at a trusted host.
    460 The trail is defined by static configuration file entries
    461 or dynamic means described on the
    462 .Sx Automatic NTP Configuration Options
    463 section of
    464 .Xr ntp.conf 5 .
    465 .Pp
    466 On each trusted host as root, change to the keys directory.
    467 To insure a fresh fileset, remove all
    468 .Cm ntpkey
    469 files.
    470 Then run
    471 .Nm
    472 .Fl T
    473 to generate keys and a trusted certificate.
    474 On all other hosts do the same, but leave off the
    475 .Fl T
    476 flag to generate keys and nontrusted certificates.
    477 When complete, start the NTP daemons beginning at the lowest stratum
    478 and working up the tree.
    479 It may take some time for Autokey to instantiate the certificate trails
    480 throughout the subnet, but setting up the environment is completely automatic.
    481 .Pp
    482 If it is necessary to use a different sign key or different digest/signature
    483 scheme than the default, run
    484 .Nm
    485 with the
    486 .Fl S Ar type
    487 option, where
    488 .Ar type
    489 is either
    490 .Cm RSA
    491 or
    492 .Cm DSA .
    493 The most often need to do this is when a DSA\-signed certificate is used.
    494 If it is necessary to use a different certificate scheme than the default,
    495 run
    496 .Nm
    497 with the
    498 .Fl c Ar scheme
    499 option and selected
    500 .Ar scheme
    501 as needed.
    502 f
    503 .Nm
    504 is run again without these options, it generates a new certificate
    505 using the same scheme and sign key.
    506 .Pp
    507 After setting up the environment it is advisable to update certificates
    508 from time to time, if only to extend the validity interval.
    509 Simply run
    510 .Nm
    511 with the same flags as before to generate new certificates
    512 using existing keys.
    513 However, if the host or sign key is changed,
    514 .Xr ntpd 1ntpdmdoc
    515 should be restarted.
    516 When
    517 .Xr ntpd 1ntpdmdoc
    518 is restarted, it loads any new files and restarts the protocol.
    519 Other dependent hosts will continue as usual until signatures are refreshed,
    520 at which time the protocol is restarted.
    521 .Ss Identity Schemes
    522 As mentioned on the Autonomous Authentication page,
    523 the default TC identity scheme is vulnerable to a middleman attack.
    524 However, there are more secure identity schemes available,
    525 including PC, IFF, GQ and MV described on the
    526 .Qq Identification Schemes
    527 page
    528 (maybe available at
    529 .Li http://www.eecis.udel.edu/%7emills/keygen.html ) .
    530 These schemes are based on a TA, one or more trusted hosts
    531 and some number of nontrusted hosts.
    532 Trusted hosts prove identity using values provided by the TA,
    533 while the remaining hosts prove identity using values provided
    534 by a trusted host and certificate trails that end on that host.
    535 The name of a trusted host is also the name of its sugroup
    536 and also the subject and issuer name on its trusted certificate.
    537 The TA is not necessarily a trusted host in this sense, but often is.
    538 .Pp
    539 In some schemes there are separate keys for servers and clients.
    540 A server can also be a client of another server,
    541 but a client can never be a server for another client.
    542 In general, trusted hosts and nontrusted hosts that operate
    543 as both server and client have parameter files that contain
    544 both server and client keys.
    545 Hosts that operate
    546 only as clients have key files that contain only client keys.
    547 .Pp
    548 The PC scheme supports only one trusted host in the group.
    549 On trusted host alice run
    550 .Nm
    551 .Fl P
    552 .Fl p Ar password
    553 to generate the host key file
    554 .Pa ntpkey_RSAkey_ Ns Ar alice.filestamp
    555 and trusted private certificate file
    556 .Pa ntpkey_RSA\-MD5_cert_ Ns Ar alice.filestamp .
    557 Copy both files to all group hosts;
    558 they replace the files which would be generated in other schemes.
    559 On each host bob install a soft link from the generic name
    560 .Pa ntpkey_host_ Ns Ar bob
    561 to the host key file and soft link
    562 .Pa ntpkey_cert_ Ns Ar bob
    563 to the private certificate file.
    564 Note the generic links are on bob, but point to files generated
    565 by trusted host alice.
    566 In this scheme it is not possible to refresh
    567 either the keys or certificates without copying them
    568 to all other hosts in the group.
    569 .Pp
    570 For the IFF scheme proceed as in the TC scheme to generate keys
    571 and certificates for all group hosts, then for every trusted host in the group,
    572 generate the IFF parameter file.
    573 On trusted host alice run
    574 .Nm
    575 .Fl T
    576 .Fl I
    577 .Fl p Ar password
    578 to produce her parameter file
    579 .Pa ntpkey_IFFpar_ Ns Ar alice.filestamp ,
    580 which includes both server and client keys.
    581 Copy this file to all group hosts that operate as both servers
    582 and clients and install a soft link from the generic
    583 .Pa ntpkey_iff_ Ns Ar alice
    584 to this file.
    585 If there are no hosts restricted to operate only as clients,
    586 there is nothing further to do.
    587 As the IFF scheme is independent
    588 of keys and certificates, these files can be refreshed as needed.
    589 .Pp
    590 If a rogue client has the parameter file, it could masquerade
    591 as a legitimate server and present a middleman threat.
    592 To eliminate this threat, the client keys can be extracted
    593 from the parameter file and distributed to all restricted clients.
    594 After generating the parameter file, on alice run
    595 .Nm
    596 .Fl e
    597 and pipe the output to a file or mail program.
    598 Copy or mail this file to all restricted clients.
    599 On these clients install a soft link from the generic
    600 .Pa ntpkey_iff_ Ns Ar alice
    601 to this file.
    602 To further protect the integrity of the keys,
    603 each file can be encrypted with a secret password.
    604 .Pp
    605 For the GQ scheme proceed as in the TC scheme to generate keys
    606 and certificates for all group hosts, then for every trusted host
    607 in the group, generate the IFF parameter file.
    608 On trusted host alice run
    609 .Nm
    610 .Fl T
    611 .Fl G
    612 .Fl p Ar password
    613 to produce her parameter file
    614 .Pa ntpkey_GQpar_ Ns Ar alice.filestamp ,
    615 which includes both server and client keys.
    616 Copy this file to all group hosts and install a soft link
    617 from the generic
    618 .Pa ntpkey_gq_ Ns Ar alice
    619 to this file.
    620 In addition, on each host bob install a soft link
    621 from generic
    622 .Pa ntpkey_gq_ Ns Ar bob
    623 to this file.
    624 As the GQ scheme updates the GQ parameters file and certificate
    625 at the same time, keys and certificates can be regenerated as needed.
    626 .Pp
    627 For the MV scheme, proceed as in the TC scheme to generate keys
    628 and certificates for all group hosts.
    629 For illustration assume trish is the TA, alice one of several trusted hosts
    630 and bob one of her clients.
    631 On TA trish run
    632 .Nm
    633 .Fl V Ar n
    634 .Fl p Ar password ,
    635 where
    636 .Ar n
    637 is the number of revokable keys (typically 5) to produce
    638 the parameter file
    639 .Pa ntpkeys_MVpar_ Ns Ar trish.filestamp
    640 and client key files
    641 .Pa ntpkeys_MVkeyd_ Ns Ar trish.filestamp
    642 where
    643 .Ar d
    644 is the key number (0 \&<
    645 .Ar d
    646 \&<
    647 .Ar n ) .
    648 Copy the parameter file to alice and install a soft link
    649 from the generic
    650 .Pa ntpkey_mv_ Ns Ar alice
    651 to this file.
    652 Copy one of the client key files to alice for later distribution
    653 to her clients.
    654 It doesn't matter which client key file goes to alice,
    655 since they all work the same way.
    656 Alice copies the client key file to all of her cliens.
    657 On client bob install a soft link from generic
    658 .Pa ntpkey_mvkey_ Ns Ar bob
    659 to the client key file.
    660 As the MV scheme is independent of keys and certificates,
    661 these files can be refreshed as needed.
    662 .Ss Command Line Options
    663 .Bl -tag -width indent
    664 .It Fl c Ar scheme
    665 Select certificate message digest/signature encryption scheme.
    666 The
    667 .Ar scheme
    668 can be one of the following:
    669 . Cm RSA\-MD2 , RSA\-MD5 , RSA\-SHA , RSA\-SHA1 , RSA\-MDC2 , RSA\-RIPEMD160 , DSA\-SHA ,
    670 or
    671 .Cm DSA\-SHA1 .
    672 Note that RSA schemes must be used with a RSA sign key and DSA
    673 schemes must be used with a DSA sign key.
    674 The default without this option is
    675 .Cm RSA\-MD5 .
    676 .It Fl d
    677 Enable debugging.
    678 This option displays the cryptographic data produced in eye\-friendly billboards.
    679 .It Fl e
    680 Write the IFF client keys to the standard output.
    681 This is intended for automatic key distribution by mail.
    682 .It Fl G
    683 Generate parameters and keys for the GQ identification scheme,
    684 obsoleting any that may exist.
    685 .It Fl g
    686 Generate keys for the GQ identification scheme
    687 using the existing GQ parameters.
    688 If the GQ parameters do not yet exist, create them first.
    689 .It Fl H
    690 Generate new host keys, obsoleting any that may exist.
    691 .It Fl I
    692 Generate parameters for the IFF identification scheme,
    693 obsoleting any that may exist.
    694 .It Fl i Ar name
    695 Set the suject name to
    696 .Ar name .
    697 This is used as the subject field in certificates
    698 and in the file name for host and sign keys.
    699 .It Fl M
    700 Generate MD5 keys, obsoleting any that may exist.
    701 .It Fl P
    702 Generate a private certificate.
    703 By default, the program generates public certificates.
    704 .It Fl p Ar password
    705 Encrypt generated files containing private data with
    706 .Ar password
    707 and the DES\-CBC algorithm.
    708 .It Fl q
    709 Set the password for reading files to password.
    710 .It Fl S Oo Cm RSA | DSA Oc
    711 Generate a new sign key of the designated type,
    712 obsoleting any that may exist.
    713 By default, the program uses the host key as the sign key.
    714 .It Fl s Ar name
    715 Set the issuer name to
    716 .Ar name .
    717 This is used for the issuer field in certificates
    718 and in the file name for identity files.
    719 .It Fl T
    720 Generate a trusted certificate.
    721 By default, the program generates a non\-trusted certificate.
    722 .It Fl V Ar nkeys
    723 Generate parameters and keys for the Mu\-Varadharajan (MV) identification scheme.
    724 .El
    725 .Ss Random Seed File
    726 All cryptographically sound key generation schemes must have means
    727 to randomize the entropy seed used to initialize
    728 the internal pseudo\-random number generator used
    729 by the library routines.
    730 The OpenSSL library uses a designated random seed file for this purpose.
    731 The file must be available when starting the NTP daemon and
    732 .Nm
    733 program.
    734 If a site supports OpenSSL or its companion OpenSSH,
    735 it is very likely that means to do this are already available.
    736 .Pp
    737 It is important to understand that entropy must be evolved
    738 for each generation, for otherwise the random number sequence
    739 would be predictable.
    740 Various means dependent on external events, such as keystroke intervals,
    741 can be used to do this and some systems have built\-in entropy sources.
    742 Suitable means are described in the OpenSSL software documentation,
    743 but are outside the scope of this page.
    744 .Pp
    745 The entropy seed used by the OpenSSL library is contained in a file,
    746 usually called
    747 .Cm .rnd ,
    748 which must be available when starting the NTP daemon
    749 or the
    750 .Nm
    751 program.
    752 The NTP daemon will first look for the file
    753 using the path specified by the
    754 .Ic randfile
    755 subcommand of the
    756 .Ic crypto
    757 configuration command.
    758 If not specified in this way, or when starting the
    759 .Nm
    760 program,
    761 the OpenSSL library will look for the file using the path specified
    762 by the
    763 .Ev RANDFILE
    764 environment variable in the user home directory,
    765 whether root or some other user.
    766 If the
    767 .Ev RANDFILE
    768 environment variable is not present,
    769 the library will look for the
    770 .Cm .rnd
    771 file in the user home directory.
    772 If the file is not available or cannot be written,
    773 the daemon exits with a message to the system log and the program
    774 exits with a suitable error message.
    775 .Ss Cryptographic Data Files
    776 All other file formats begin with two lines.
    777 The first contains the file name, including the generated host name
    778 and filestamp.
    779 The second contains the datestamp in conventional Unix date format.
    780 Lines beginning with # are considered comments and ignored by the
    781 .Nm
    782 program and
    783 .Xr ntpd 1ntpdmdoc
    784 daemon.
    785 Cryptographic values are encoded first using ASN.1 rules,
    786 then encrypted if necessary, and finally written PEM\-encoded
    787 printable ASCII format preceded and followed by MIME content identifier lines.
    788 .Pp
    789 The format of the symmetric keys file is somewhat different
    790 than the other files in the interest of backward compatibility.
    791 Since DES\-CBC is deprecated in NTPv4, the only key format of interest
    792 is MD5 alphanumeric strings.
    793 Following hte heard the keys are
    794 entered one per line in the format
    795 .D1 Ar keyno type key
    796 where
    797 .Ar keyno
    798 is a positive integer in the range 1\-65,535,
    799 .Ar type
    800 is the string MD5 defining the key format and
    801 .Ar key
    802 is the key itself,
    803 which is a printable ASCII string 16 characters or less in length.
    804 Each character is chosen from the 93 printable characters
    805 in the range 0x21 through 0x7f excluding space and the
    806 .Ql #
    807 character.
    808 .Pp
    809 Note that the keys used by the
    810 .Xr ntpq 1ntpqmdoc
    811 and
    812 .Xr ntpdc 1ntpdcmdoc
    813 programs
    814 are checked against passwords requested by the programs
    815 and entered by hand, so it is generally appropriate to specify these keys
    816 in human readable ASCII format.
    817 .Pp
    818 The
    819 .Nm
    820 program generates a MD5 symmetric keys file
    821 .Pa ntpkey_MD5key_ Ns Ar hostname.filestamp .
    822 Since the file contains private shared keys,
    823 it should be visible only to root and distributed by secure means
    824 to other subnet hosts.
    825 The NTP daemon loads the file
    826 .Pa ntp.keys ,
    827 so
    828 .Nm
    829 installs a soft link from this name to the generated file.
    830 Subsequently, similar soft links must be installed by manual
    831 or automated means on the other subnet hosts.
    832 While this file is not used with the Autokey Version 2 protocol,
    833 it is needed to authenticate some remote configuration commands
    834 used by the
    835 .Xr ntpq 1ntpqmdoc
    836 and
    837 .Xr ntpdc 1ntpdcmdoc
    838 utilities.
    839 .Sh "OPTIONS"
    840 .Bl -tag
    841 .It  Fl b Ar imbits , Fl \-imbits Ns = Ns Ar imbits 
    842 identity modulus bits.
    843 This option takes an integer number as its argument.
    844 The value of
    845 .Ar imbits
    846 is constrained to being:
    847 .in +4
    848 .nf
    849 .na
    850 in the range  256 through 2048
    851 .fi
    852 .in -4
    853 .sp
    854 The number of bits in the identity modulus.  The default is 256.
    855 .It  Fl c Ar scheme , Fl \-certificate Ns = Ns Ar scheme 
    856 certificate scheme.
    857 .sp
    858 scheme is one of
    859 RSA\-MD2, RSA\-MD5, RSA\-SHA, RSA\-SHA1, RSA\-MDC2, RSA\-RIPEMD160,
    860 DSA\-SHA, or DSA\-SHA1.
    861 .sp
    862 Select the certificate message digest/signature encryption scheme.
    863 Note that RSA schemes must be used with a RSA sign key and DSA
    864 schemes must be used with a DSA sign key.  The default without
    865 this option is RSA\-MD5.
    866 .It  Fl C Ar cipher , Fl \-cipher Ns = Ns Ar cipher 
    867 privatekey cipher.
    868 .sp
    869 Select the cipher which is used to encrypt the files containing
    870 private keys.  The default is three\-key triple DES in CBC mode,
    871 equivalent to "@code{\-C des\-ede3\-cbc".  The openssl tool lists ciphers
    872 available in "\fBopenssl \-h\fP" output.
    873 .It  Fl d , Fl \-debug\-level 
    874 Increase debug verbosity level.
    875 This option may appear an unlimited number of times.
    876 .sp
    877 .It  Fl D Ar number , Fl \-set\-debug\-level Ns = Ns Ar number 
    878 Set the debug verbosity level.
    879 This option may appear an unlimited number of times.
    880 This option takes an integer number as its argument.
    881 .sp
    882 .It  Fl e , Fl \-id\-key 
    883 Write IFF or GQ identity keys.
    884 .sp
    885 Write the IFF or GQ client keys to the standard output.  This is
    886 intended for automatic key distribution by mail.
    887 .It  Fl G , Fl \-gq\-params 
    888 Generate GQ parameters and keys.
    889 .sp
    890 Generate parameters and keys for the GQ identification scheme,
    891 obsoleting any that may exist.
    892 .It  Fl H , Fl \-host\-key 
    893 generate RSA host key.
    894 .sp
    895 Generate new host keys, obsoleting any that may exist.
    896 .It  Fl I , Fl \-iffkey 
    897 generate IFF parameters.
    898 .sp
    899 Generate parameters for the IFF identification scheme, obsoleting
    900 any that may exist.
    901 .It  Fl i Ar group , Fl \-ident Ns = Ns Ar group 
    902 set Autokey group name.
    903 .sp
    904 Set the optional Autokey group name to name.  This is used in
    905 the file name of IFF, GQ, and MV client parameters files.  In
    906 that role, the default is the host name if this option is not
    907 provided.  The group name, if specified using \fB\-i/\-\-ident\fP or
    908 using \fB\-s/\-\-subject\-name\fP following an '\fB@\fP' character,
    909 is also a part of the self\-signed host certificate's subject and
    910 issuer names in the form \fBhost@group\fP and should match the
    911 \'\fBcrypto ident\fP' or '\fBserver ident\fP' configuration in
    912 \fBntpd\fP's configuration file. 
    913 .It  Fl l Ar lifetime , Fl \-lifetime Ns = Ns Ar lifetime 
    914 set certificate lifetime.
    915 This option takes an integer number as its argument.
    916 .sp
    917 Set the certificate expiration to lifetime days from now.
    918 .It  Fl M , Fl \-md5key 
    919 generate MD5 keys.
    920 .sp
    921 Generate MD5 keys, obsoleting any that may exist.
    922 .It  Fl m Ar modulus , Fl \-modulus Ns = Ns Ar modulus 
    923 modulus.
    924 This option takes an integer number as its argument.
    925 The value of
    926 .Ar modulus
    927 is constrained to being:
    928 .in +4
    929 .nf
    930 .na
    931 in the range  256 through 2048
    932 .fi
    933 .in -4
    934 .sp
    935 The number of bits in the prime modulus.  The default is 512.
    936 .It  Fl P , Fl \-pvt\-cert 
    937 generate PC private certificate.
    938 .sp
    939 Generate a private certificate.  By default, the program generates
    940 public certificates.
    941 .It  Fl p Ar passwd , Fl \-pvt\-passwd Ns = Ns Ar passwd 
    942 output private password.
    943 .sp
    944 Encrypt generated files containing private data with the specified
    945 password and the cipher selected with \fB\-C/\-\-cipher\fP.
    946 .It  Fl q Ar passwd , Fl \-get\-pvt\-passwd Ns = Ns Ar passwd 
    947 input private password.
    948 .sp
    949 Set the password for reading files to the specified password.
    950 .It  Fl S Ar sign , Fl \-sign\-key Ns = Ns Ar sign 
    951 generate sign key (RSA or DSA).
    952 .sp
    953 Generate a new sign key of the designated type, obsoleting any
    954 that may exist.  By default, the program uses the host key as the
    955 sign key.
    956 .It  Fl s Ar host@group , Fl \-subject\-name Ns = Ns Ar host@group 
    957 set host and optionally group name.
    958 .sp
    959 Set the Autokey host name, and optionally, group name specified
    960 following an '\fB@\fP' character.  The host name is used in the file
    961 name of generated host and signing certificates, without the
    962 group name.  The host name, and if provided, group name are used
    963 in \fBhost@group\fP form for the host certificate's subject and issuer
    964 fields.  Specifying '\fB\-s @group\fP' is allowed, and results in
    965 leaving the host name unchanged while appending \fB@group\fP to the
    966 subject and issuer fields, as with \fB\-i group\fP.  The group name, or
    967 if not provided, the host name are also used in the file names
    968 of IFF, GQ, and MV client parameter files.
    969 .It  Fl T , Fl \-trusted\-cert 
    970 trusted certificate (TC scheme).
    971 .sp
    972 Generate a trusted certificate.  By default, the program generates
    973 a non\-trusted certificate.
    974 .It  Fl V Ar num , Fl \-mv\-params Ns = Ns Ar num 
    975 generate <num> MV parameters.
    976 This option takes an integer number as its argument.
    977 .sp
    978 Generate parameters and keys for the Mu\-Varadharajan (MV)
    979 identification scheme.
    980 .It  Fl v Ar num , Fl \-mv\-keys Ns = Ns Ar num 
    981 update <num> MV keys.
    982 This option takes an integer number as its argument.
    983 .sp
    984 This option has not been fully documented.
    985 .It Fl \&? , Fl \-help
    986 Display usage information and exit.
    987 .It Fl \&! , Fl \-more\-help
    988 Pass the extended usage information through a pager.
    989 .It Fl > Oo Ar cfgfile Oc , Fl \-save\-opts Oo Ns = Ns Ar cfgfile Oc
    990 Save the option state to \fIcfgfile\fP.  The default is the \fIlast\fP
    991 configuration file listed in the \fBOPTION PRESETS\fP section, below.
    992 The command will exit after updating the config file.
    993 .It Fl < Ar cfgfile , Fl \-load\-opts Ns = Ns Ar cfgfile , Fl \-no\-load\-opts
    994 Load options from \fIcfgfile\fP.
    995 The \fIno\-load\-opts\fP form will disable the loading
    996 of earlier config/rc/ini files.  \fI\-\-no\-load\-opts\fP is handled early,
    997 out of order.
    998 .It Fl \-version Op Brq Ar v|c|n
    999 Output version of program and exit.  The default mode is `v', a simple
   1000 version.  The `c' mode will print copyright information and `n' will
   1001 print the full copyright notice.
   1002 .El
   1003 .Sh "OPTION PRESETS"
   1004 Any option that is not marked as \fInot presettable\fP may be preset
   1005 by loading values from configuration ("RC" or ".INI") file(s) and values from
   1006 environment variables named:
   1007 .nf
   1008   \fBNTP_KEYGEN_<option\-name>\fP or \fBNTP_KEYGEN\fP
   1009 .fi
   1010 .ad
   1011 The environmental presets take precedence (are processed later than)
   1012 the configuration files.
   1013 The \fIhomerc\fP files are "\fI$HOME\fP", and "\fI.\fP".
   1014 If any of these are directories, then the file \fI.ntprc\fP
   1015 is searched for within those directories.
   1016 cvt_prog='/usr/local/gnu/share/autogen/texi2mdoc'
   1017 cvt_prog=`cd \`dirname "$cvt_prog"\` >/dev/null && pwd
   1018          `/`basename "$cvt_prog"`
   1019 cd $tmp_dir
   1020 test \-x "$cvt_prog" || die "'$cvt_prog' is not executable"
   1021 {
   1022     list='synopsis description options option\-presets'
   1023     for f in $list ; do cat $f ; echo ; done
   1024     rm \-f $list name
   1025     list='implementation\-notes environment files examples exit\-status errors
   1026         compatibility see\-also conforming\-to history authors copyright bugs
   1027         notes'
   1028     for f in $list ; do cat $f ; echo ; done > .end\-doc
   1029     rm \-f $list
   1030     list=`ls \-1 *`' .end\-doc'
   1031     for f in $list ; do cat $f ; echo ; done
   1032     rm \-f $list
   1033 } 1>.doc 2>/dev/null
   1034 sed \-f .cmds .doc | /usr/local/gnu/bin/grep \-E \-v '^[ 	]*$' | $cvt_prog
   1035 .Sh USAGE
   1036 The
   1037 .Fl p Ar password
   1038 option specifies the write password and
   1039 .Fl q Ar password
   1040 option the read password for previously encrypted files.
   1041 The
   1042 .Nm
   1043 program prompts for the password if it reads an encrypted file
   1044 and the password is missing or incorrect.
   1045 If an encrypted file is read successfully and
   1046 no write password is specified, the read password is used
   1047 as the write password by default.
   1048 .Sh "ENVIRONMENT"
   1049 See \fBOPTION PRESETS\fP for configuration environment variables.
   1050 .Sh "FILES"
   1051 See \fBOPTION PRESETS\fP for configuration files.
   1052 .Sh "EXIT STATUS"
   1053 One of the following exit values will be returned:
   1054 .Bl -tag
   1055 .It 0 " (EXIT_SUCCESS)"
   1056 Successful program execution.
   1057 .It 1 " (EXIT_FAILURE)"
   1058 The operation failed or the command syntax was not valid.
   1059 .It 66 " (EX_NOINPUT)"
   1060 A specified configuration file could not be loaded.
   1061 .It 70 " (EX_SOFTWARE)"
   1062 libopts had an internal operational error.  Please report
   1063 it to autogen\-users (a] lists.sourceforge.net.  Thank you.
   1064 .El
   1065 .Sh "AUTHORS"
   1066 The University of Delaware
   1067 .Sh "COPYRIGHT"
   1068 Copyright (C) 1970\-2013 The University of Delaware all rights reserved.
   1069 This program is released under the terms of the NTP license, <http://ntp.org/license>.
   1070 .Sh BUGS
   1071 It can take quite a while to generate some cryptographic values,
   1072 from one to several minutes with modern architectures
   1073 such as UltraSPARC and up to tens of minutes to an hour
   1074 with older architectures such as SPARC IPC.
   1075 .Pp
   1076 Please report bugs to http://bugs.ntp.org .
   1077 .Pp
   1078 Please send bug reports to: http://bugs.ntp.org, bugs (a] ntp.org
   1079 .Sh NOTES
   1080 This document corresponds to version 4.2.7p404 of NTP.
   1081 Portions of this document came from FreeBSD.
   1082 .Pp
   1083 This manual page was \fIAutoGen\fP\-erated from the \fBntp\-keygen\fP
   1084 option definitions.
   1085