Filled in a few blanks, and reworked the mechanism
for handling application-specific ASN.1 syntaxes. We now allow applications to define application tag numbers that are the same, as long as one is constructed and the other primitive.
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@ -44,17 +44,25 @@ module Net
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BuiltinSyntax = {
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:universal => {
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:primitive => {
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1 => :boolean,
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2 => :integer,
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4 => :string,
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10 => :integer,
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},
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:constructed => {
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16 => :array,
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17 => :array,
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17 => :array
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}
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}
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}
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#
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# read_ber
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# TODO: clean this up so it works properly with partial
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# packets coming from streams that don't block when
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# we ask for more data (like StringIOs). At it is,
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# this can throw TypeErrors and other nasties.
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#
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def read_ber syntax=nil
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eof? and return nil
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@ -63,7 +71,7 @@ module Net
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tag = id & 31
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tag < 31 or raise BerError.new( "unsupported tag encoding: #{id}" )
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tagclass = TagClasses[ id >> 6 ]
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constructed = (id & 0x20 != 0)
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encoding = (id & 0x20 != 0) ? :constructed : :primitive
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n = getc
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lengthlength,contentlength = if n <= 127
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@ -75,24 +83,30 @@ module Net
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newobj = read contentlength
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objtype = (ot = BuiltinSyntax[tagclass]) && ot[tag]
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objtype = objtype || (syntax && (ot = syntax[tagclass]) && ot[tag])
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objtype = nil
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[syntax, BuiltinSyntax].each {|syn|
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if syn && (ot = syn[tagclass]) && (ot = ot[encoding]) && ot[tag]
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objtype = ot[tag]
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break
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end
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}
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obj = case objtype
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when :boolean
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raise BerError.new( "boolean unimplemented- fix this now, dummy" )
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newobj != "\000"
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when :string
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newobj.dup
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(newobj || "").dup
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when :integer
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j = 0
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newobj.each_byte {|b| j = (j << 8) + b}
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j
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when :array
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seq = []
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sio = StringIO.new newobj
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sio = StringIO.new( newobj || "" )
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while e = sio.read_ber(syntax); seq << e; end
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seq
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else
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raise BerError.new( "unsupported object type: class=#{tagclass}, tag=#{tag}" )
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raise BerError.new( "unsupported object type: class=#{tagclass}, encoding=#{encoding}, tag=#{tag}" )
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end
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# Add the identifier bits into the object if it's a String or an Array.
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