forked from cory/tildefriends
348 lines
12 KiB
Groff
348 lines
12 KiB
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.\" ========================================================================
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.\"
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.IX Title "DGST 1"
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.TH DGST 1 "2020-04-21" "1.1.1g" "OpenSSL"
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.\" For nroff, turn off justification. Always turn off hyphenation; it makes
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.\" way too many mistakes in technical documents.
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.if n .ad l
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.nh
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.SH "NAME"
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openssl\-dgst, dgst \- perform digest operations
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.SH "SYNOPSIS"
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.IX Header "SYNOPSIS"
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\&\fBopenssl dgst\fR
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[\fB\-\f(BIdigest\fB\fR]
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[\fB\-help\fR]
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[\fB\-c\fR]
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[\fB\-d\fR]
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[\fB\-list\fR]
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[\fB\-hex\fR]
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[\fB\-binary\fR]
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[\fB\-r\fR]
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[\fB\-out filename\fR]
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[\fB\-sign filename\fR]
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[\fB\-keyform arg\fR]
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[\fB\-passin arg\fR]
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[\fB\-verify filename\fR]
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[\fB\-prverify filename\fR]
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[\fB\-signature filename\fR]
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[\fB\-sigopt nm:v\fR]
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[\fB\-hmac key\fR]
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[\fB\-fips\-fingerprint\fR]
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[\fB\-rand file...\fR]
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[\fB\-engine id\fR]
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[\fB\-engine_impl\fR]
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[\fBfile...\fR]
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.PP
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\&\fBopenssl\fR \fIdigest\fR [\fB...\fR]
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.SH "DESCRIPTION"
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.IX Header "DESCRIPTION"
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The digest functions output the message digest of a supplied file or files
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in hexadecimal. The digest functions also generate and verify digital
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signatures using message digests.
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.PP
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The generic name, \fBdgst\fR, may be used with an option specifying the
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algorithm to be used.
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The default digest is \fIsha256\fR.
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A supported \fIdigest\fR name may also be used as the command name.
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To see the list of supported algorithms, use the \fIlist \-\-digest\-commands\fR
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command.
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.SH "OPTIONS"
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.IX Header "OPTIONS"
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.IP "\fB\-help\fR" 4
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.IX Item "-help"
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Print out a usage message.
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.IP "\fB\-\f(BIdigest\fB\fR" 4
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.IX Item "-digest"
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Specifies name of a supported digest to be used. To see the list of
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supported digests, use the command \fIlist \-\-digest\-commands\fR.
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.IP "\fB\-c\fR" 4
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.IX Item "-c"
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Print out the digest in two digit groups separated by colons, only relevant if
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\&\fBhex\fR format output is used.
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.IP "\fB\-d\fR" 4
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.IX Item "-d"
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Print out \s-1BIO\s0 debugging information.
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.IP "\fB\-list\fR" 4
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.IX Item "-list"
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Prints out a list of supported message digests.
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.IP "\fB\-hex\fR" 4
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.IX Item "-hex"
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Digest is to be output as a hex dump. This is the default case for a \*(L"normal\*(R"
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digest as opposed to a digital signature. See \s-1NOTES\s0 below for digital
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signatures using \fB\-hex\fR.
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.IP "\fB\-binary\fR" 4
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.IX Item "-binary"
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Output the digest or signature in binary form.
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.IP "\fB\-r\fR" 4
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.IX Item "-r"
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Output the digest in the \*(L"coreutils\*(R" format, including newlines.
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Used by programs like \fBsha1sum\fR.
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.IP "\fB\-out filename\fR" 4
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.IX Item "-out filename"
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Filename to output to, or standard output by default.
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.IP "\fB\-sign filename\fR" 4
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.IX Item "-sign filename"
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Digitally sign the digest using the private key in \*(L"filename\*(R". Note this option
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does not support Ed25519 or Ed448 private keys. Use the \fBpkeyutl\fR command
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instead for this.
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.IP "\fB\-keyform arg\fR" 4
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.IX Item "-keyform arg"
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Specifies the key format to sign digest with. The \s-1DER, PEM, P12,\s0
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and \s-1ENGINE\s0 formats are supported.
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.IP "\fB\-sigopt nm:v\fR" 4
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.IX Item "-sigopt nm:v"
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Pass options to the signature algorithm during sign or verify operations.
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Names and values of these options are algorithm-specific.
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.IP "\fB\-passin arg\fR" 4
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.IX Item "-passin arg"
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The private key password source. For more information about the format of \fBarg\fR
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see the \fB\s-1PASS PHRASE ARGUMENTS\s0\fR section in \fBopenssl\fR\|(1).
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.IP "\fB\-verify filename\fR" 4
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.IX Item "-verify filename"
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Verify the signature using the public key in \*(L"filename\*(R".
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The output is either \*(L"Verification \s-1OK\*(R"\s0 or \*(L"Verification Failure\*(R".
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.IP "\fB\-prverify filename\fR" 4
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.IX Item "-prverify filename"
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Verify the signature using the private key in \*(L"filename\*(R".
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.IP "\fB\-signature filename\fR" 4
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.IX Item "-signature filename"
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The actual signature to verify.
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.IP "\fB\-hmac key\fR" 4
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.IX Item "-hmac key"
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Create a hashed \s-1MAC\s0 using \*(L"key\*(R".
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.IP "\fB\-mac alg\fR" 4
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.IX Item "-mac alg"
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Create \s-1MAC\s0 (keyed Message Authentication Code). The most popular \s-1MAC\s0
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algorithm is \s-1HMAC\s0 (hash-based \s-1MAC\s0), but there are other \s-1MAC\s0 algorithms
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which are not based on hash, for instance \fBgost-mac\fR algorithm,
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supported by \fBccgost\fR engine. \s-1MAC\s0 keys and other options should be set
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via \fB\-macopt\fR parameter.
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.IP "\fB\-macopt nm:v\fR" 4
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.IX Item "-macopt nm:v"
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Passes options to \s-1MAC\s0 algorithm, specified by \fB\-mac\fR key.
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Following options are supported by both by \fB\s-1HMAC\s0\fR and \fBgost-mac\fR:
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.RS 4
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.IP "\fBkey:string\fR" 4
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.IX Item "key:string"
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Specifies \s-1MAC\s0 key as alphanumeric string (use if key contain printable
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characters only). String length must conform to any restrictions of
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the \s-1MAC\s0 algorithm for example exactly 32 chars for gost-mac.
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.IP "\fBhexkey:string\fR" 4
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.IX Item "hexkey:string"
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Specifies \s-1MAC\s0 key in hexadecimal form (two hex digits per byte).
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Key length must conform to any restrictions of the \s-1MAC\s0 algorithm
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for example exactly 32 chars for gost-mac.
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.RE
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.RS 4
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.RE
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.IP "\fB\-rand file...\fR" 4
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.IX Item "-rand file..."
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A file or files containing random data used to seed the random number
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generator.
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Multiple files can be specified separated by an OS-dependent character.
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The separator is \fB;\fR for MS-Windows, \fB,\fR for OpenVMS, and \fB:\fR for
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all others.
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.IP "[\fB\-writerand file\fR]" 4
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.IX Item "[-writerand file]"
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Writes random data to the specified \fIfile\fR upon exit.
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This can be used with a subsequent \fB\-rand\fR flag.
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.IP "\fB\-fips\-fingerprint\fR" 4
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.IX Item "-fips-fingerprint"
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Compute \s-1HMAC\s0 using a specific key for certain OpenSSL-FIPS operations.
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.IP "\fB\-engine id\fR" 4
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.IX Item "-engine id"
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Use engine \fBid\fR for operations (including private key storage).
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This engine is not used as source for digest algorithms, unless it is
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also specified in the configuration file or \fB\-engine_impl\fR is also
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specified.
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.IP "\fB\-engine_impl\fR" 4
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.IX Item "-engine_impl"
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When used with the \fB\-engine\fR option, it specifies to also use
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engine \fBid\fR for digest operations.
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.IP "\fBfile...\fR" 4
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.IX Item "file..."
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File or files to digest. If no files are specified then standard input is
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used.
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.SH "EXAMPLES"
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.IX Header "EXAMPLES"
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To create a hex-encoded message digest of a file:
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openssl dgst \-md5 \-hex file.txt
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.PP
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To sign a file using \s-1SHA\-256\s0 with binary file output:
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openssl dgst \-sha256 \-sign privatekey.pem \-out signature.sign file.txt
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.PP
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To verify a signature:
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openssl dgst \-sha256 \-verify publickey.pem \e
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\-signature signature.sign \e
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file.txt
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.SH "NOTES"
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.IX Header "NOTES"
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The digest mechanisms that are available will depend on the options
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used when building OpenSSL.
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The \fBlist digest-commands\fR command can be used to list them.
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.PP
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New or agile applications should use probably use \s-1SHA\-256.\s0 Other digests,
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particularly \s-1SHA\-1\s0 and \s-1MD5,\s0 are still widely used for interoperating
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with existing formats and protocols.
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.PP
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When signing a file, \fBdgst\fR will automatically determine the algorithm
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(\s-1RSA, ECC,\s0 etc) to use for signing based on the private key's \s-1ASN.1\s0 info.
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When verifying signatures, it only handles the \s-1RSA, DSA,\s0 or \s-1ECDSA\s0 signature
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itself, not the related data to identify the signer and algorithm used in
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formats such as x.509, \s-1CMS,\s0 and S/MIME.
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.PP
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A source of random numbers is required for certain signing algorithms, in
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particular \s-1ECDSA\s0 and \s-1DSA.\s0
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.PP
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The signing and verify options should only be used if a single file is
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being signed or verified.
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.PP
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Hex signatures cannot be verified using \fBopenssl\fR. Instead, use \*(L"xxd \-r\*(R"
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or similar program to transform the hex signature into a binary signature
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prior to verification.
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.SH "HISTORY"
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.IX Header "HISTORY"
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The default digest was changed from \s-1MD5\s0 to \s-1SHA256\s0 in OpenSSL 1.1.0.
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The FIPS-related options were removed in OpenSSL 1.1.0.
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.SH "COPYRIGHT"
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.IX Header "COPYRIGHT"
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Copyright 2000\-2019 The OpenSSL Project Authors. All Rights Reserved.
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.PP
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Licensed under the OpenSSL license (the \*(L"License\*(R"). You may not use
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this file except in compliance with the License. You can obtain a copy
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in the file \s-1LICENSE\s0 in the source distribution or at
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<https://www.openssl.org/source/license.html>.
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