Mercurial > dropbear
view libtommath/tombc/grammar.txt @ 1638:315fcba6960e
dropbearconvert: keyimport.c: fix BER encoding of secp521r1 keys (#69)
keysizes >= 128 octets will be encoded with a 3 byte header
which must be accounted by the optional-header
Reproduce:
master:~/build/dropbear$ ./dropbearkey -t ecdsa -s 521 -f K
Generating 521 bit ecdsa key, this may take a while...
master:~/build/dropbear$ ./dropbearconvert d o K L
Key is a ecdsa-sha2-nistp521 key
Wrote key to 'L'
master:~/build/dropbear$ openssl ec < L
read EC key
unable to load Key
139769806448384:error:0D07209B:asn1 encoding routines:ASN1_get_object:too long:crypto/asn1/asn1_lib.c:91:
author | Christian Hohnstädt <christian@hohnstaedt.de> |
---|---|
date | Wed, 20 Mar 2019 16:42:47 +0100 |
parents | eed26cff980b |
children |
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program := program statement | statement | empty statement := { statement } | identifier = numexpression; | identifier[numexpression] = numexpression; | function(expressionlist); | for (identifer = numexpression; numexpression; identifier = numexpression) { statement } | while (numexpression) { statement } | if (numexpresion) { statement } elif | break; | continue; elif := else statement | empty function := abs | countbits | exptmod | jacobi | print | isprime | nextprime | issquare | readinteger | exit expressionlist := expressionlist, expression | expression // LR(1) !!!? expression := string | numexpression numexpression := cmpexpr && cmpexpr | cmpexpr \|\| cmpexpr | cmpexpr cmpexpr := boolexpr < boolexpr | boolexpr > boolexpr | boolexpr == boolexpr | boolexpr <= boolexpr | boolexpr >= boolexpr | boolexpr boolexpr := shiftexpr & shiftexpr | shiftexpr ^ shiftexpr | shiftexpr \| shiftexpr | shiftexpr shiftexpr := addsubexpr << addsubexpr | addsubexpr >> addsubexpr | addsubexpr addsubexpr := mulexpr + mulexpr | mulexpr - mulexpr | mulexpr mulexpr := expr * expr | expr / expr | expr % expr | expr expr := -nexpr | nexpr nexpr := integer | identifier | ( numexpression ) | identifier[numexpression] identifier := identifer digits | identifier alpha | alpha alpha := a ... z | A ... Z integer := hexnumber | digits hexnumber := 0xhexdigits hexdigits := hexdigits hexdigit | hexdigit hexdigit := 0 ... 9 | a ... f | A ... F digits := digits digit | digit digit := 0 ... 9