refactor move_instruction a bit
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@ -17,7 +17,6 @@ module Arm
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@attributes[:opcode] = attributes[:opcode]
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@attributes[:opcode] = attributes[:opcode]
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@operand = 0
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@operand = 0
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@immediate = 0
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@rn = :r0 # register zero = zero bit pattern
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@rn = :r0 # register zero = zero bit pattern
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@extra = nil
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@extra = nil
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end
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end
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@ -34,50 +33,16 @@ module Arm
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@extra ? 8 : 4
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@extra ? 8 : 4
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end
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end
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# don't overwrite instance variables, to make assembly repeatable
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def assemble(io)
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def assemble(io)
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# don't overwrite instance variables, to make assembly repeatable
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rn = @rn
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rn = @rn
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operand = @operand
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operand = @operand
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immediate = @immediate
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right = @from
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right = @from
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if (right.is_a?(Numeric))
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immediate = 1
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if (right.fits_u8?)
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case right
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# no shifting needed
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when Numeric
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operand = right
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operand = numeric_operand(right)
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immediate = 1
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when Register::RegisterValue
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elsif (op_with_rot = calculate_u8_with_rr(right))
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operand = op_with_rot
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immediate = 1
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else
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# unfortunately i was wrong in thinking the pi is armv7. The good news is the code
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# below implements the movw instruction (armv7 for moving a word) and works
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#armv7 raise "Too big #{right} " if (right >> 16) > 0
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#armv7 operand = (right & 0xFFF)
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#armv7 immediate = 1
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#armv7 rn = (right >> 12)
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# a little STRANGE, that the armv7 movw (move a 2 byte word) is an old test opcode,
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# but there it is
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#armv7 @attributes[:opcode] = :tst
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raise "No negatives implemented #{right} " if right < 0
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# and so it continues: when we notice that the const doesn't fit, first time we raise an
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# error,but set the extra flag, to say the instruction is now 8 bytes
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# then on subsequent assemblies we can assemble
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unless @extra
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@extra = 1
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#puts "RELINK M at #{self.position.to_s(16)}"
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raise ::Register::LinkException.new("cannot fit numeric literal argument in operand #{right.inspect}")
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end
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# now we can do the actual breaking of instruction, by splitting the operand
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first = right & 0xFFFFFF00
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operand = calculate_u8_with_rr( first )
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raise "no fit for #{right}" unless operand
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immediate = 1
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@extra = ArmMachine.add( to , to , (right & 0xFF) )
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#TODO: this is still a hack, as it does not encode all possible values.
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# The way it _should_ be done
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# is to check that the first part is doabe with u8_with_rr AND leaves a u8 remainder
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end
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elsif( right.is_a? Register::RegisterValue)
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operand = reg_code(right)
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operand = reg_code(right)
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immediate = 0 # ie not immediate is register
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immediate = 0 # ie not immediate is register
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else
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else
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@ -95,12 +60,25 @@ module Arm
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val |= shift(instuction_class , 12 + 4 + 4 + 1 + 4 + 1)
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val |= shift(instuction_class , 12 + 4 + 4 + 1 + 4 + 1)
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val |= shift(cond_bit_code , 12 + 4 + 4 + 1 + 4 + 1 + 2)
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val |= shift(cond_bit_code , 12 + 4 + 4 + 1 + 4 + 1 + 2)
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io.write_uint32 val
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io.write_uint32 val
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# by now we have the extra add so assemble that
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# by now we have the extra add so assemble that
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if(@extra)
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@extra.assemble(io) if(@extra) #puts "Assemble extra at #{val.to_s(16)}"
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@extra.assemble(io)
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#puts "Assemble extra at #{val.to_s(16)}"
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end
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end
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end
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def numeric_operand(right)
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return right if (right.fits_u8?)
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if (op_with_rot = calculate_u8_with_rr(right))
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return op_with_rot
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end
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raise "No negatives implemented #{right} " if right < 0
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unless @extra
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@extra = 1 # puts "RELINK M at #{self.position.to_s(16)}"
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raise ::Register::LinkException.new("cannot fit numeric literal argument in operand #{right.inspect}")
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end
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# now we can do the actual breaking of instruction, by splitting the operand
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operand = calculate_u8_with_rr( right & 0xFFFFFF00 )
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raise "no fit for #{right}" unless operand
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@extra = ArmMachine.add( to , to , (right & 0xFF) )
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operand
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end
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end
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end
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end
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end
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