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# typed: strict
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require "stringio"
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require "sorbet-runtime"
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AnyIO = T.type_alias { T.any(IO, StringIO) }
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Memory = T.type_alias { T::Array[T.nilable(Integer)] }
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class Mode < T::Enum
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enums do
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Position = new
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Immediate = new
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Relative = new
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end
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extend T::Sig
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sig {params(value: String).returns(Mode)}
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def self.from(value)
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case value
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when ?0 then Mode::Position
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when ?1 then Mode::Immediate
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when ?2 then Mode::Relative
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else fail "unexpected mode: #{value}"
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end
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end
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end
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OPCODES = T.let({
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1 => ->(x, _, _, a, b, c) { x[c] = x[a] + x[b] }, # add
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2 => ->(x, _, _, a, b, c) { x[c] = x[a] * x[b] }, # multiply
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3 => ->(x, i, _, a) { x[a] = i.gets.to_i }, # input
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4 => ->(x, _, o, a) { o.puts(x[a]) }, # output
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5 => ->(x, _, _, a, b) { x.pc = x[b] if x[a].nonzero? }, # jump-if-true
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6 => ->(x, _, _, a, b) { x.pc = x[b] if x[a].zero? }, # jump-if-false
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7 => ->(x, _, _, a, b, c) { x[c] = (x[a] < x[b]) ? 1 : 0 }, # less than
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8 => ->(x, _, _, a, b, c) { x[c] = (x[a] == x[b]) ? 1 : 0 }, # equals
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9 => ->(x, _, _, a) { x.rb += x[a] }, # adjust relative base
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99 => ->(*) { throw :halt }, # halt
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}, T::Hash[Integer, T.untyped])
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class Parameter
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extend T::Sig
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sig {params(value: T.any(Parameter, Integer)).returns(Parameter)}
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def self.from(value)
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case value
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when Parameter then value
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when Integer then new(Mode::Position, value)
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else T.absurd(value)
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end
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end
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sig {returns(Mode)}
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attr_reader :mode
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sig {returns(Integer)}
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attr_reader :value
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sig {params(mode: Mode, value: Integer).void}
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def initialize(mode, value)
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@mode = T.let(mode, Mode)
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@value = T.let(value, Integer)
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end
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end
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class Computer
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extend T::Sig
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sig {params(input: String).returns(Computer)}
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def self.from(input)
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new(input.split(?,).map(&:to_i))
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end
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sig {returns(Integer)}
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attr_accessor :pc, :rb
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sig {params(program: Memory).void}
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def initialize(program)
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@memory = T.let(program.dup, Memory)
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@pc = T.let(0, Integer)
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@rb = T.let(0, Integer)
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end
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sig {params(input: T.untyped, output: AnyIO).returns(Memory)}
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def run(input=STDIN, output=STDOUT)
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each(input, output).inject(nil) {|_,i| i }
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end
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sig {
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params(
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input: T.untyped,
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output: AnyIO,
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blk: T.nilable(T.proc.params(m: Memory).returns(T.nilable(Integer)))
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).returns(T::Enumerator[Memory])
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}
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def each(input, output, &blk)
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return enum_for(T.must(__method__), input, output) unless block_given?
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catch(:halt) do
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loop do
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instruction = @memory[pc].to_s.rjust(5, ?0)
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opcode = OPCODES.fetch(instruction[-2..-1].to_i)
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self.pc += 1
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n = opcode.arity - 3 # subtract the computer, input, and output params
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args = (0...n).map {|i|
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mode = Mode.from(T.must(instruction[2-i]))
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value = @memory[pc + i] || 0
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Parameter.new(mode, value)
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}
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self.pc += n
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opcode.call(self, input, output, *args)
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yield @memory
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end
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end
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# Satisfy sorbet:
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# https://sorbet-ruby.slack.com/archives/CHN2L03NH/p1575648549254600
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Enumerator.new {}
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end
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sig {params(parameter: Parameter).returns(Integer)}
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def [](parameter)
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parameter = Parameter.from(parameter)
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mode = parameter.mode
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case mode
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when Mode::Position then @memory[parameter.value] || 0
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when Mode::Immediate then parameter.value
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when Mode::Relative then @memory[rb + parameter.value] || 0
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else T.absurd(mode)
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end
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end
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alias_method :fetch, :[]
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sig {params(parameter: Parameter, value: Integer).void}
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def []=(parameter, value)
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mode = parameter.mode
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case mode
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when Mode::Position then @memory[parameter.value] = value
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when Mode::Immediate then raise "writes should never be in immediate mode"
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when Mode::Relative then @memory[rb + parameter.value] = value
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else T.absurd(mode)
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end
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end
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end
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if __FILE__ == $0
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Computer.from(T.cast(ARGF, IO).read || "").run
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end
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