61 lines
1.8 KiB
Ruby
61 lines
1.8 KiB
Ruby
module Mom
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# A BlockCompiler is much like a MehtodCompiler, exept for blocks
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#
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class BlockCompiler < CallableCompiler
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attr_reader :block , :mom_instructions
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alias :block :callable
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def initialize( block , method)
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@method = method
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super(block)
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end
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def source_name
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"#{@method.self_type.name}.init"
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end
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def to_risc(in_method)
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risc_compiler = Risc::BlockCompiler.new(@callable , in_method , mom_instructions)
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instructions_to_risc(risc_compiler)
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#recursive blocks not done
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risc_compiler
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end
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# resolve the type of the slot, by inferring from it's name, using the type
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# scope related slots are resolved by the compiler by method/block
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#
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# This mainly calls super, and only for :caller adds extra info
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# Using the info, means assuming that the block is not passed around (FIXME in 2020)
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def slot_type( slot , type)
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new_type = super
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if slot == :caller
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extra_info = { type_frame: @method.frame_type ,
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type_arguments: @method.arguments_type ,
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type_self: @method.self_type}
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end
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return new_type , extra_info
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end
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# determine how given name need to be accsessed.
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# For blocks the options are args or frame
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# or then the methods arg or frame
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def slot_type_for(name)
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if @callable.arguments_type.variable_index(name)
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slot_def = [:arguments]
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elsif @callable.frame_type.variable_index(name)
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slot_def = [:frame]
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elsif @method.arguments_type.variable_index(name)
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slot_def = [:caller , :caller ,:arguments ]
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elsif @method.frame_type.variable_index(name)
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slot_def = [:caller ,:caller , :frame ]
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elsif
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raise "no variable #{name} , need to resolve at runtime"
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end
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slot_def << name
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end
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end
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end
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