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@@ -135,7 +135,7 @@ Users have to find other means to exchange keys. That's a pity
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since with Curve25519 you can't just publish your public key
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since with Curve25519 you can't just publish your public key
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to some key server because in order to encrypt a message, both
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to some key server because in order to encrypt a message, both
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the recipient AND the sender need to have the public key of
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the recipient AND the sender need to have the public key of
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each other. It would be possible to publich public keys,
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each other. It would be possible to publish public keys,
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and attach the senders public key to the encrypted message, but
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and attach the senders public key to the encrypted message, but
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I'm not sure if such an aproach would be secure enough.
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I'm not sure if such an aproach would be secure enough.
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@@ -175,7 +175,7 @@ of B<file>.
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Encoded or decoded output will be written to B<STDOUT> unless an
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Encoded or decoded output will be written to B<STDOUT> unless an
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output file has been specified using the option B<-O>.
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output file has been specified using the option B<-O>.
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=head2 EXAMPLES
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=head2 Z85 EXAMPLES
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To encode a given file to Z85 and write the output to another:
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To encode a given file to Z85 and write the output to another:
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@@ -193,7 +193,7 @@ To decode the above and print to stdout:
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pcp1 -Z -d pslist.z85
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pcp1 -Z -d pslist.z85
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=head2 BACKGROUND
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=head2 Z85 BACKGROUND
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The Z85 encoding format is described here: B<http://rfc.zeromq.org/spec:32>.
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The Z85 encoding format is described here: B<http://rfc.zeromq.org/spec:32>.
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It's part of ZeroMQ (B<http://zeromq.org>). Z85 is based on ASCII85 with
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It's part of ZeroMQ (B<http://zeromq.org>). Z85 is based on ASCII85 with
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10
man/pcp1.1
10
man/pcp1.1
@@ -415,7 +415,7 @@ Users have to find other means to exchange keys. That's a pity
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since with Curve25519 you can't just publish your public key
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since with Curve25519 you can't just publish your public key
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to some key server because in order to encrypt a message, both
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to some key server because in order to encrypt a message, both
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the recipient \s-1AND\s0 the sender need to have the public key of
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the recipient \s-1AND\s0 the sender need to have the public key of
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each other. It would be possible to publich public keys,
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each other. It would be possible to publish public keys,
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and attach the senders public key to the encrypted message, but
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and attach the senders public key to the encrypted message, but
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I'm not sure if such an aproach would be secure enough.
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I'm not sure if such an aproach would be secure enough.
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.IP "\fBCurve25519 not widely adopted\fR" 4
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.IP "\fBCurve25519 not widely adopted\fR" 4
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@@ -449,8 +449,8 @@ of \fBfile\fR.
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.PP
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.PP
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Encoded or decoded output will be written to \fB\s-1STDOUT\s0\fR unless an
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Encoded or decoded output will be written to \fB\s-1STDOUT\s0\fR unless an
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output file has been specified using the option \fB\-O\fR.
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output file has been specified using the option \fB\-O\fR.
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.SS "\s-1EXAMPLES\s0"
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.SS "Z85 \s-1EXAMPLES\s0"
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.IX Subsection "EXAMPLES"
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.IX Subsection "Z85 EXAMPLES"
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To encode a given file to Z85 and write the output to another:
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To encode a given file to Z85 and write the output to another:
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.PP
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.PP
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.Vb 1
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.Vb 1
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@@ -474,8 +474,8 @@ To decode the above and print to stdout:
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.Vb 1
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.Vb 1
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\& pcp1 \-Z \-d pslist.z85
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\& pcp1 \-Z \-d pslist.z85
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.Ve
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.Ve
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.SS "\s-1BACKGROUND\s0"
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.SS "Z85 \s-1BACKGROUND\s0"
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.IX Subsection "BACKGROUND"
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.IX Subsection "Z85 BACKGROUND"
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The Z85 encoding format is described here: \fBhttp://rfc.zeromq.org/spec:32\fR.
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The Z85 encoding format is described here: \fBhttp://rfc.zeromq.org/spec:32\fR.
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It's part of ZeroMQ (\fBhttp://zeromq.org\fR). Z85 is based on \s-1ASCII85\s0 with
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It's part of ZeroMQ (\fBhttp://zeromq.org\fR). Z85 is based on \s-1ASCII85\s0 with
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a couple of modifications (portability, readability etc).
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a couple of modifications (portability, readability etc).
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@@ -288,7 +288,7 @@ Users have to find other means to exchange keys. That's a pity
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since with Curve25519 you can't just publish your public key
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since with Curve25519 you can't just publish your public key
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to some key server because in order to encrypt a message, both
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to some key server because in order to encrypt a message, both
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the recipient AND the sender need to have the public key of
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the recipient AND the sender need to have the public key of
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each other. It would be possible to publich public keys,
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each other. It would be possible to publish public keys,
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and attach the senders public key to the encrypted message, but
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and attach the senders public key to the encrypted message, but
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I'm not sure if such an aproach would be secure enough.
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I'm not sure if such an aproach would be secure enough.
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@@ -328,7 +328,7 @@ of B<file>.
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Encoded or decoded output will be written to B<STDOUT> unless an
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Encoded or decoded output will be written to B<STDOUT> unless an
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output file has been specified using the option B<-O>.
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output file has been specified using the option B<-O>.
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=head2 EXAMPLES
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=head2 Z85 EXAMPLES
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To encode a given file to Z85 and write the output to another:
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To encode a given file to Z85 and write the output to another:
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@@ -346,7 +346,7 @@ To decode the above and print to stdout:
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pcp1 -Z -d pslist.z85
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pcp1 -Z -d pslist.z85
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=head2 BACKGROUND
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=head2 Z85 BACKGROUND
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The Z85 encoding format is described here: B<http://rfc.zeromq.org/spec:32>.
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The Z85 encoding format is described here: B<http://rfc.zeromq.org/spec:32>.
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It's part of ZeroMQ (B<http://zeromq.org>). Z85 is based on ASCII85 with
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It's part of ZeroMQ (B<http://zeromq.org>). Z85 is based on ASCII85 with
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