a basic interpret command for cli
part of the benchmark effort determine amount of objects
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@ -8,7 +8,8 @@ module Risc
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# will be executed by method execute_SlotToReg
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#
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# The Interpreter (a bit like a cpu) has a state flag, a current instruction and registers
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# We collect the stdout (as a hack not to interpret the OS)
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# We collect the stdout (as a hack not to interpret the OS) in a string. It can also be passed
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# in to the init, as an IO
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#
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class Interpreter
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# fire events for changed pc and register contents
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@ -18,11 +19,13 @@ module Risc
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attr_reader :instruction , :clock , :pc # current instruction and pc
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attr_reader :registers # the registers, 16 (a hash, sym -> contents)
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attr_reader :stdout, :state , :flags # somewhat like the lags on a cpu, hash sym => bool (zero .. . )
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attr_reader :stdout, :state , :flags # somewhat like the flags on a cpu, hash sym => bool (zero .. . )
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# start in state :stopped and set registers to unknown
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def initialize( linker )
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@stdout , @clock , @pc , @state = "", 0 , 0 , :stopped
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# Linker gives the state of the program
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# Passing a stdout in (an IO, only << called) can be used to get output immediately.
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def initialize( linker , stdout = "")
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@stdout , @clock , @pc , @state = stdout, 0 , 0 , :stopped
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@registers = {}
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@flags = { :zero => false , :plus => false ,
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:minus => false , :overflow => false }
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@ -32,8 +35,7 @@ module Risc
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@linker = linker
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end
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def start_program(linker = nil)
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initialize(linker || @linker)
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def start_program()
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init = @linker.cpu_init
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set_state(:running)
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set_pc( Position.get(init).at )
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@ -249,10 +251,12 @@ module Risc
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str = get_register( :r1 ) # should test length, ie r2
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case str
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when Symbol
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@stdout += str.to_s
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@stdout << str.to_s
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@stdout.flush if @stdout.respond_to?(:flush)
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return str.to_s.length
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when Parfait::Word
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@stdout += str.to_string
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@stdout << str.to_string
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@stdout.flush if @stdout.respond_to?(:flush)
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return str.char_length
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else
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raise "NO string for putstring #{str.class}:#{str.object_id}" unless str.is_a?(Symbol)
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@ -1,5 +1,6 @@
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require "thor"
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require "rubyx"
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require "risc/interpreter"
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class RubyXC < Thor
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desc "compile FILE" , "Compile given FILE to binary"
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@ -27,7 +28,44 @@ class RubyXC < Thor
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outfile = file.split("/").last.gsub(".rb" , ".o")
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writer.save outfile
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end
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desc "interpret FILE" , "Interpret given FILE "
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long_desc <<-LONGDESC
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Compiles the given file to an intermediate RISC format, and runs the
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Interpreter.
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RISC is the last abstract layer inside the compiler. It is in nature
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very close to arm (without quirks and much smaller).
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An interpreter was originally developed for the RISC layer for debugging purposes.
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Running the interpreter is about 50k slower than binary, but it can be used
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to veryfy simple programs.
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No output file will be generated, the only output is generated by the
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given program.
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The program must define a main method on the Space class, which will be invoked.
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LONGDESC
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def interpret(file)
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begin
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ruby = File.read(file)
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rescue
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fail MalformattedArgumentError , "No such file #{file}"
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end
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options = {
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parfait: { factory: 3*1024, },
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load_parfait: false ,
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}
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compiler = RubyX::RubyXCompiler.new(options)
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linker = compiler.ruby_to_binary(ruby, :interpreter)
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puts "interpreting #{file}"
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interpreter = Risc::Interpreter.new(linker , STDOUT )
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interpreter.start_program
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interpreter.tick while(interpreter.instruction)
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return outfile
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end
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end
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