verify.pod 15 KB

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  1. =pod
  2. =head1 NAME
  3. verify - Utility to verify certificates.
  4. =head1 SYNOPSIS
  5. B<openssl> B<verify>
  6. [B<-CApath directory>]
  7. [B<-CAfile file>]
  8. [B<-purpose purpose>]
  9. [B<-policy arg>]
  10. [B<-ignore_critical>]
  11. [B<-attime timestamp>]
  12. [B<-check_ss_sig>]
  13. [B<-crlfile file>]
  14. [B<-crl_download>]
  15. [B<-crl_check>]
  16. [B<-crl_check_all>]
  17. [B<-policy_check>]
  18. [B<-explicit_policy>]
  19. [B<-inhibit_any>]
  20. [B<-inhibit_map>]
  21. [B<-x509_strict>]
  22. [B<-extended_crl>]
  23. [B<-use_deltas>]
  24. [B<-policy_print>]
  25. [B<-no_alt_chains>]
  26. [B<-allow_proxy_certs>]
  27. [B<-untrusted file>]
  28. [B<-help>]
  29. [B<-issuer_checks>]
  30. [B<-trusted file>]
  31. [B<-verbose>]
  32. [B<->]
  33. [certificates]
  34. =head1 DESCRIPTION
  35. The B<verify> command verifies certificate chains.
  36. =head1 COMMAND OPTIONS
  37. =over 4
  38. =item B<-CApath directory>
  39. A directory of trusted certificates. The certificates should have names
  40. of the form: hash.0 or have symbolic links to them of this
  41. form ("hash" is the hashed certificate subject name: see the B<-hash> option
  42. of the B<x509> utility). Under Unix the B<c_rehash> script will automatically
  43. create symbolic links to a directory of certificates.
  44. =item B<-CAfile file>
  45. A file of trusted certificates. The file should contain multiple certificates
  46. in PEM format concatenated together.
  47. =item B<-attime timestamp>
  48. Perform validation checks using time specified by B<timestamp> and not
  49. current system time. B<timestamp> is the number of seconds since
  50. 01.01.1970 (UNIX time).
  51. =item B<-check_ss_sig>
  52. Verify the signature on the self-signed root CA. This is disabled by default
  53. because it doesn't add any security.
  54. =item B<-crlfile file>
  55. File containing one or more CRL's (in PEM format) to load.
  56. =item B<-crl_download>
  57. Attempt to download CRL information for this certificate.
  58. =item B<-crl_check>
  59. Checks end entity certificate validity by attempting to look up a valid CRL.
  60. If a valid CRL cannot be found an error occurs.
  61. =item B<-untrusted file>
  62. A file of untrusted certificates. The file should contain multiple certificates
  63. in PEM format concatenated together.
  64. =item B<-purpose purpose>
  65. The intended use for the certificate. If this option is not specified,
  66. B<verify> will not consider certificate purpose during chain verification.
  67. Currently accepted uses are B<sslclient>, B<sslserver>, B<nssslserver>,
  68. B<smimesign>, B<smimeencrypt>. See the B<VERIFY OPERATION> section for more
  69. information.
  70. =item B<-help>
  71. Print out a usage message.
  72. =item B<-verbose>
  73. Print extra information about the operations being performed.
  74. =item B<-issuer_checks>
  75. Print out diagnostics relating to searches for the issuer certificate of the
  76. current certificate. This shows why each candidate issuer certificate was
  77. rejected. The presence of rejection messages does not itself imply that
  78. anything is wrong; during the normal verification process, several
  79. rejections may take place.
  80. =item B<-policy arg>
  81. Enable policy processing and add B<arg> to the user-initial-policy-set (see
  82. RFC5280). The policy B<arg> can be an object name an OID in numeric form.
  83. This argument can appear more than once.
  84. =item B<-policy_check>
  85. Enables certificate policy processing.
  86. =item B<-explicit_policy>
  87. Set policy variable require-explicit-policy (see RFC5280).
  88. =item B<-inhibit_any>
  89. Set policy variable inhibit-any-policy (see RFC5280).
  90. =item B<-inhibit_map>
  91. Set policy variable inhibit-policy-mapping (see RFC5280).
  92. =item B<-no_alt_chains>
  93. When building a certificate chain, if the first certificate chain found is not
  94. trusted, then OpenSSL will continue to check to see if an alternative chain can
  95. be found that is trusted. With this option that behaviour is suppressed so that
  96. only the first chain found is ever used. Using this option will force the
  97. behaviour to match that of previous OpenSSL versions.
  98. =item B<-allow_proxy_certs>
  99. Allow the verification of proxy certificates.
  100. =item B<-trusted file>
  101. A file of additional trusted certificates. The file should contain multiple
  102. certificates in PEM format concatenated together.
  103. =item B<-policy_print>
  104. Print out diagnostics related to policy processing.
  105. =item B<-crl_check>
  106. Checks end entity certificate validity by attempting to look up a valid CRL.
  107. If a valid CRL cannot be found an error occurs.
  108. =item B<-crl_check_all>
  109. Checks the validity of B<all> certificates in the chain by attempting
  110. to look up valid CRLs.
  111. =item B<-ignore_critical>
  112. Normally if an unhandled critical extension is present which is not
  113. supported by OpenSSL the certificate is rejected (as required by RFC5280).
  114. If this option is set critical extensions are ignored.
  115. =item B<-x509_strict>
  116. For strict X.509 compliance, disable non-compliant workarounds for broken
  117. certificates.
  118. =item B<-extended_crl>
  119. Enable extended CRL features such as indirect CRLs and alternate CRL
  120. signing keys.
  121. =item B<-use_deltas>
  122. Enable support for delta CRLs.
  123. =item B<-check_ss_sig>
  124. Verify the signature on the self-signed root CA. This is disabled by default
  125. because it doesn't add any security.
  126. =item B<->
  127. Indicates the last option. All arguments following this are assumed to be
  128. certificate files. This is useful if the first certificate filename begins
  129. with a B<->.
  130. =item B<certificates>
  131. One or more certificates to verify. If no certificates are given, B<verify>
  132. will attempt to read a certificate from standard input. Certificates must be
  133. in PEM format.
  134. =back
  135. =head1 VERIFY OPERATION
  136. The B<verify> program uses the same functions as the internal SSL and S/MIME
  137. verification, therefore this description applies to these verify operations
  138. too.
  139. There is one crucial difference between the verify operations performed
  140. by the B<verify> program: wherever possible an attempt is made to continue
  141. after an error whereas normally the verify operation would halt on the
  142. first error. This allows all the problems with a certificate chain to be
  143. determined.
  144. The verify operation consists of a number of separate steps.
  145. Firstly a certificate chain is built up starting from the supplied certificate
  146. and ending in the root CA. It is an error if the whole chain cannot be built
  147. up. The chain is built up by looking up the issuers certificate of the current
  148. certificate. If a certificate is found which is its own issuer it is assumed
  149. to be the root CA.
  150. The process of 'looking up the issuers certificate' itself involves a number
  151. of steps. In versions of OpenSSL before 0.9.5a the first certificate whose
  152. subject name matched the issuer of the current certificate was assumed to be
  153. the issuers certificate. In OpenSSL 0.9.6 and later all certificates
  154. whose subject name matches the issuer name of the current certificate are
  155. subject to further tests. The relevant authority key identifier components
  156. of the current certificate (if present) must match the subject key identifier
  157. (if present) and issuer and serial number of the candidate issuer, in addition
  158. the keyUsage extension of the candidate issuer (if present) must permit
  159. certificate signing.
  160. The lookup first looks in the list of untrusted certificates and if no match
  161. is found the remaining lookups are from the trusted certificates. The root CA
  162. is always looked up in the trusted certificate list: if the certificate to
  163. verify is a root certificate then an exact match must be found in the trusted
  164. list.
  165. The second operation is to check every untrusted certificate's extensions for
  166. consistency with the supplied purpose. If the B<-purpose> option is not included
  167. then no checks are done. The supplied or "leaf" certificate must have extensions
  168. compatible with the supplied purpose and all other certificates must also be valid
  169. CA certificates. The precise extensions required are described in more detail in
  170. the B<CERTIFICATE EXTENSIONS> section of the B<x509> utility.
  171. The third operation is to check the trust settings on the root CA. The root
  172. CA should be trusted for the supplied purpose. For compatibility with previous
  173. versions of SSLeay and OpenSSL a certificate with no trust settings is considered
  174. to be valid for all purposes.
  175. The final operation is to check the validity of the certificate chain. The validity
  176. period is checked against the current system time and the notBefore and notAfter
  177. dates in the certificate. The certificate signatures are also checked at this
  178. point.
  179. If all operations complete successfully then certificate is considered valid. If
  180. any operation fails then the certificate is not valid.
  181. =head1 DIAGNOSTICS
  182. When a verify operation fails the output messages can be somewhat cryptic. The
  183. general form of the error message is:
  184. server.pem: /C=AU/ST=Queensland/O=CryptSoft Pty Ltd/CN=Test CA (1024 bit)
  185. error 24 at 1 depth lookup:invalid CA certificate
  186. The first line contains the name of the certificate being verified followed by
  187. the subject name of the certificate. The second line contains the error number
  188. and the depth. The depth is number of the certificate being verified when a
  189. problem was detected starting with zero for the certificate being verified itself
  190. then 1 for the CA that signed the certificate and so on. Finally a text version
  191. of the error number is presented.
  192. An exhaustive list of the error codes and messages is shown below, this also
  193. includes the name of the error code as defined in the header file x509_vfy.h
  194. Some of the error codes are defined but never returned: these are described
  195. as "unused".
  196. =over 4
  197. =item B<0 X509_V_OK: ok>
  198. the operation was successful.
  199. =item B<2 X509_V_ERR_UNABLE_TO_GET_ISSUER_CERT: unable to get issuer certificate>
  200. the issuer certificate of a looked up certificate could not be found. This
  201. normally means the list of trusted certificates is not complete.
  202. =item B<3 X509_V_ERR_UNABLE_TO_GET_CRL: unable to get certificate CRL>
  203. the CRL of a certificate could not be found.
  204. =item B<4 X509_V_ERR_UNABLE_TO_DECRYPT_CERT_SIGNATURE: unable to decrypt certificate's signature>
  205. the certificate signature could not be decrypted. This means that the actual signature value
  206. could not be determined rather than it not matching the expected value, this is only
  207. meaningful for RSA keys.
  208. =item B<5 X509_V_ERR_UNABLE_TO_DECRYPT_CRL_SIGNATURE: unable to decrypt CRL's signature>
  209. the CRL signature could not be decrypted: this means that the actual signature value
  210. could not be determined rather than it not matching the expected value. Unused.
  211. =item B<6 X509_V_ERR_UNABLE_TO_DECODE_ISSUER_PUBLIC_KEY: unable to decode issuer public key>
  212. the public key in the certificate SubjectPublicKeyInfo could not be read.
  213. =item B<7 X509_V_ERR_CERT_SIGNATURE_FAILURE: certificate signature failure>
  214. the signature of the certificate is invalid.
  215. =item B<8 X509_V_ERR_CRL_SIGNATURE_FAILURE: CRL signature failure>
  216. the signature of the certificate is invalid.
  217. =item B<9 X509_V_ERR_CERT_NOT_YET_VALID: certificate is not yet valid>
  218. the certificate is not yet valid: the notBefore date is after the current time.
  219. =item B<10 X509_V_ERR_CERT_HAS_EXPIRED: certificate has expired>
  220. the certificate has expired: that is the notAfter date is before the current time.
  221. =item B<11 X509_V_ERR_CRL_NOT_YET_VALID: CRL is not yet valid>
  222. the CRL is not yet valid.
  223. =item B<12 X509_V_ERR_CRL_HAS_EXPIRED: CRL has expired>
  224. the CRL has expired.
  225. =item B<13 X509_V_ERR_ERROR_IN_CERT_NOT_BEFORE_FIELD: format error in certificate's notBefore field>
  226. the certificate notBefore field contains an invalid time.
  227. =item B<14 X509_V_ERR_ERROR_IN_CERT_NOT_AFTER_FIELD: format error in certificate's notAfter field>
  228. the certificate notAfter field contains an invalid time.
  229. =item B<15 X509_V_ERR_ERROR_IN_CRL_LAST_UPDATE_FIELD: format error in CRL's lastUpdate field>
  230. the CRL lastUpdate field contains an invalid time.
  231. =item B<16 X509_V_ERR_ERROR_IN_CRL_NEXT_UPDATE_FIELD: format error in CRL's nextUpdate field>
  232. the CRL nextUpdate field contains an invalid time.
  233. =item B<17 X509_V_ERR_OUT_OF_MEM: out of memory>
  234. an error occurred trying to allocate memory. This should never happen.
  235. =item B<18 X509_V_ERR_DEPTH_ZERO_SELF_SIGNED_CERT: self signed certificate>
  236. the passed certificate is self signed and the same certificate cannot be found in the list of
  237. trusted certificates.
  238. =item B<19 X509_V_ERR_SELF_SIGNED_CERT_IN_CHAIN: self signed certificate in certificate chain>
  239. the certificate chain could be built up using the untrusted certificates but the root could not
  240. be found locally.
  241. =item B<20 X509_V_ERR_UNABLE_TO_GET_ISSUER_CERT_LOCALLY: unable to get local issuer certificate>
  242. the issuer certificate could not be found: this occurs if the issuer
  243. certificate of an untrusted certificate cannot be found.
  244. =item B<21 X509_V_ERR_UNABLE_TO_VERIFY_LEAF_SIGNATURE: unable to verify the first certificate>
  245. no signatures could be verified because the chain contains only one certificate and it is not
  246. self signed.
  247. =item B<22 X509_V_ERR_CERT_CHAIN_TOO_LONG: certificate chain too long>
  248. the certificate chain length is greater than the supplied maximum depth. Unused.
  249. =item B<23 X509_V_ERR_CERT_REVOKED: certificate revoked>
  250. the certificate has been revoked.
  251. =item B<24 X509_V_ERR_INVALID_CA: invalid CA certificate>
  252. a CA certificate is invalid. Either it is not a CA or its extensions are not consistent
  253. with the supplied purpose.
  254. =item B<25 X509_V_ERR_PATH_LENGTH_EXCEEDED: path length constraint exceeded>
  255. the basicConstraints pathlength parameter has been exceeded.
  256. =item B<26 X509_V_ERR_INVALID_PURPOSE: unsupported certificate purpose>
  257. the supplied certificate cannot be used for the specified purpose.
  258. =item B<27 X509_V_ERR_CERT_UNTRUSTED: certificate not trusted>
  259. the root CA is not marked as trusted for the specified purpose.
  260. =item B<28 X509_V_ERR_CERT_REJECTED: certificate rejected>
  261. the root CA is marked to reject the specified purpose.
  262. =item B<29 X509_V_ERR_SUBJECT_ISSUER_MISMATCH: subject issuer mismatch>
  263. the current candidate issuer certificate was rejected because its subject name
  264. did not match the issuer name of the current certificate. Only displayed when
  265. the B<-issuer_checks> option is set.
  266. =item B<30 X509_V_ERR_AKID_SKID_MISMATCH: authority and subject key identifier mismatch>
  267. the current candidate issuer certificate was rejected because its subject key
  268. identifier was present and did not match the authority key identifier current
  269. certificate. Only displayed when the B<-issuer_checks> option is set.
  270. =item B<31 X509_V_ERR_AKID_ISSUER_SERIAL_MISMATCH: authority and issuer serial number mismatch>
  271. the current candidate issuer certificate was rejected because its issuer name
  272. and serial number was present and did not match the authority key identifier
  273. of the current certificate. Only displayed when the B<-issuer_checks> option is set.
  274. =item B<32 X509_V_ERR_KEYUSAGE_NO_CERTSIGN:key usage does not include certificate signing>
  275. the current candidate issuer certificate was rejected because its keyUsage extension
  276. does not permit certificate signing.
  277. =item B<50 X509_V_ERR_APPLICATION_VERIFICATION: application verification failure>
  278. an application specific error. Unused.
  279. =back
  280. =head1 BUGS
  281. Although the issuer checks are a considerable improvement over the old technique they still
  282. suffer from limitations in the underlying X509_LOOKUP API. One consequence of this is that
  283. trusted certificates with matching subject name must either appear in a file (as specified by the
  284. B<-CAfile> option) or a directory (as specified by B<-CApath>. If they occur in both then only
  285. the certificates in the file will be recognised.
  286. Previous versions of OpenSSL assume certificates with matching subject name are identical and
  287. mishandled them.
  288. Previous versions of this documentation swapped the meaning of the
  289. B<X509_V_ERR_UNABLE_TO_GET_ISSUER_CERT> and
  290. B<20 X509_V_ERR_UNABLE_TO_GET_ISSUER_CERT_LOCALLY> error codes.
  291. =head1 SEE ALSO
  292. L<x509(1)|x509(1)>
  293. =head1 HISTORY
  294. The -no_alt_chains options was first added to OpenSSL 1.0.2b.
  295. =cut