Class: Erlectricity::Encoder
Constant Summary
Erlectricity::External::Types::ATOM, Erlectricity::External::Types::BIN, Erlectricity::External::Types::FLOAT, Erlectricity::External::Types::FUN, Erlectricity::External::Types::INT, Erlectricity::External::Types::LARGE_BIGNUM, Erlectricity::External::Types::LARGE_TUPLE, Erlectricity::External::Types::LIST, Erlectricity::External::Types::NEW_FUN, Erlectricity::External::Types::NEW_REF, Erlectricity::External::Types::NIL, Erlectricity::External::Types::PID, Erlectricity::External::Types::PORT, Erlectricity::External::Types::REF, Erlectricity::External::Types::SMALL_BIGNUM, Erlectricity::External::Types::SMALL_INT, Erlectricity::External::Types::SMALL_TUPLE, Erlectricity::External::Types::STRING
Instance Attribute Summary collapse
Class Method Summary
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Instance Method Summary
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Constructor Details
#initialize(out) ⇒ Encoder
Returns a new instance of Encoder.
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# File 'lib/erlectricity/encoder.rb', line 7
def initialize(out)
self.out = out
end
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Instance Attribute Details
#out ⇒ Object
Returns the value of attribute out.
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# File 'lib/erlectricity/encoder.rb', line 5
def out
@out
end
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Class Method Details
.encode(data) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 11
def self.encode(data)
io = StringIO.new
self.new(io).write_any(data)
io.string
end
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Instance Method Details
#write_1(byte) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 39
def write_1(byte)
out.write([byte].pack("C"))
end
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#write_2(short) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 43
def write_2(short)
out.write([short].pack("n"))
end
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#write_4(long) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 47
def write_4(long)
out.write([long].pack("N"))
end
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#write_any(obj) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 17
def write_any obj
write_1 Erlectricity::External::VERSION
write_any_raw obj
end
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#write_any_raw(obj) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 22
def write_any_raw obj
case obj
when Symbol then write_symbol(obj)
when Fixnum, Bignum then write_fixnum(obj)
when Float then write_float(obj)
when Erlectricity::NewReference then write_new_reference(obj)
when Erlectricity::Pid then write_pid(obj)
when Erlectricity::List then write_list(obj)
when Array then write_tuple(obj)
when String then write_binary(obj)
when Time then write_any_raw(obj.to_i.divmod(1000000) + [obj.usec])
when TrueClass, FalseClass then write_boolean(obj)
else
fail(obj)
end
end
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#write_bignum(num) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 84
def write_bignum(num)
fail(num)
end
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#write_binary(data) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 129
def write_binary(data)
write_1 BIN
write_4 data.length
write_string data
end
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#write_boolean(bool) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 55
def write_boolean(bool)
write_symbol(bool.to_s.to_sym)
end
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#write_fixnum(num) ⇒ Object
#write_float(float) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 79
def write_float(float)
write_1 FLOAT
write_string format("%15.15e", float).ljust(31, "\000")
end
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#write_list(data) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 120
def write_list(data)
fail(data) unless data.is_a? Array
write_1 NIL and return if data.empty?
write_1 LIST
write_4 data.length
data.each{|e| write_any_raw e }
write_1 NIL
end
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#write_new_reference(ref) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 88
def write_new_reference(ref)
fail(ref) unless ref.is_a?(Erlectricity::NewReference)
write_1 NEW_REF
write_2 ref.id.length
write_symbol(ref.node)
write_1 ref.creation
write_string ref.id.pack('N' * ref.id.length)
end
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#write_pid(pid) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 97
def write_pid(pid)
fail(pid) unless pid.is_a? Erlectricity::Pid
write_1 PID
write_symbol(pid.node)
write_4 pid.id
write_4 pid.serial
write_1 pid.creation
end
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#write_string(string) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 51
def write_string(string)
out.write(string)
end
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#write_symbol(sym) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 59
def write_symbol(sym)
fail(sym) unless sym.is_a?(Symbol)
data = sym.to_s
write_1 ATOM
write_2 data.length
write_string data
end
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#write_tuple(data) ⇒ Object
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# File 'lib/erlectricity/encoder.rb', line 106
def write_tuple(data)
fail(data) unless data.is_a? Array
if data.length < 256
write_1 SMALL_TUPLE
write_1 data.length
else
write_1 LARGE_TUPLE
write_4 data.length
end
data.each { |e| write_any_raw e }
end
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