risc8asm.py 7.1 KB

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  1. import argparse
  2. import sys
  3. import math
  4. from os import path, mkdir
  5. import nasm_compiler as compiler
  6. asmc = compiler.Compiler(byte_order='big')
  7. asmc.add_reg('r0', 0)
  8. asmc.add_reg('r1', 1)
  9. asmc.add_reg('r2', 2)
  10. asmc.add_reg('r3', 3)
  11. asmc.add_instr(compiler.Instruction('CPY0 ', '0000_0000', 1, alias=['COPY0']))
  12. asmc.add_instr(compiler.Instruction('CPY1 ', '0000_0101', 1, alias=['COPY1']))
  13. asmc.add_instr(compiler.Instruction('CPY2 ', '0000_1010', 1, alias=['COPY2']))
  14. asmc.add_instr(compiler.Instruction('CPY3 ', '0000_1111', 1, alias=['COPY3']))
  15. asmc.add_instr(compiler.Instruction('MOVE ', '0000_????'))
  16. asmc.add_instr(compiler.Instruction('ADD ', '0001_????'))
  17. asmc.add_instr(compiler.Instruction('SUB ', '0010_????'))
  18. asmc.add_instr(compiler.Instruction('AND ', '0011_????'))
  19. asmc.add_instr(compiler.Instruction('OR ', '0100_????'))
  20. asmc.add_instr(compiler.Instruction('XOR ', '0101_????'))
  21. asmc.add_instr(compiler.Instruction('MUL ', '0110_????'))
  22. asmc.add_instr(compiler.Instruction('DIV ', '0111_????'))
  23. asmc.add_instr(compiler.Instruction('CI0 ', '1000_??00'))
  24. asmc.add_instr(compiler.Instruction('CI1 ', '1000_??01'))
  25. asmc.add_instr(compiler.Instruction('CI2 ', '1000_??10'))
  26. asmc.add_instr(compiler.Instruction('ADDC ', '1000_??11'))
  27. asmc.add_instr(compiler.Instruction('ADDI', '1110_??00', 1))
  28. asmc.add_instr(compiler.Instruction('SUBI ', '1110_??01', 1))
  29. asmc.add_instr(compiler.Instruction('ANDI ', '1110_??10', 1))
  30. asmc.add_instr(compiler.Instruction('ORI ', '1110_??11', 1))
  31. asmc.add_instr(compiler.Instruction('XORI ', '1100_??11', 1))
  32. asmc.add_instr(compiler.Instruction('SLL ', '1001_??00'))
  33. asmc.add_instr(compiler.Instruction('SRL ', '1001_??01'))
  34. asmc.add_instr(compiler.Instruction('SRA ', '1001_??10'))
  35. asmc.add_instr(compiler.Instruction('SRAS ', '1001_??11'))
  36. asmc.add_instr(compiler.Instruction('LWHI ', '1010_??00', 3))
  37. asmc.add_instr(compiler.Instruction('SWHI ', '1010_??01'))
  38. asmc.add_instr(compiler.Instruction('LWLO ', '1010_??10', 3))
  39. asmc.add_instr(compiler.Instruction('SWLO ', '1010_??11', 3))
  40. asmc.add_instr(compiler.Instruction('INC ', '1011_??00'))
  41. asmc.add_instr(compiler.Instruction('DEC ', '1011_??01'))
  42. asmc.add_instr(compiler.Instruction('GETAH', '1011_??10'))
  43. asmc.add_instr(compiler.Instruction('GETIF', '1011_??11'))
  44. asmc.add_instr(compiler.Instruction('PUSH ', '1100_??00'))
  45. asmc.add_instr(compiler.Instruction('POP ', '1100_??01'))
  46. asmc.add_instr(compiler.Instruction('COM ', '1100_??10', 1))
  47. asmc.add_instr(compiler.Instruction('SETI ', '1100_??11'))
  48. asmc.add_instr(compiler.Instruction('BEQ ', '1101_??00', 3))
  49. asmc.add_instr(compiler.Instruction('BGT ', '1101_??01', 3))
  50. asmc.add_instr(compiler.Instruction('BGE ', '1101_??10', 3))
  51. asmc.add_instr(compiler.Instruction('BZ ', '1101_??11', 2))
  52. asmc.add_instr(compiler.Instruction('CALL ', '1111_0000', 2))
  53. asmc.add_instr(compiler.Instruction('RET ', '1111_0001'))
  54. asmc.add_instr(compiler.Instruction('JUMP ', '1111_0010', 2))
  55. asmc.add_instr(compiler.Instruction('RETI ', '1111_0011'))
  56. asmc.add_instr(compiler.Instruction('CLC ', '1111_0100'))
  57. asmc.add_instr(compiler.Instruction('SETC ', '1111_0101'))
  58. asmc.add_instr(compiler.Instruction('CLS ', '1111_0110'))
  59. asmc.add_instr(compiler.Instruction('SETS ', '1111_0111'))
  60. asmc.add_instr(compiler.Instruction('SSETS', '1111_1000'))
  61. asmc.add_instr(compiler.Instruction('CLN ', '1111_1001'))
  62. asmc.add_instr(compiler.Instruction('SETN ', '1111_1010'))
  63. asmc.add_instr(compiler.Instruction('SSETN', '1111_1011'))
  64. asmc.add_instr(compiler.Instruction('RJUMP', '1111_1100', 2))
  65. asmc.add_instr(compiler.Instruction('RBWI ', '1111_1101'))
  66. if __name__ == '__main__':
  67. parser = argparse.ArgumentParser(description='Assembly compiler', add_help=True)
  68. parser.add_argument('file', help='Files to compile')
  69. parser.add_argument('-t', '--output_type', choices=['bin', 'mem', 'binary', 'mif', 'uhex'], default='mem',
  70. help='Output type')
  71. parser.add_argument('-S', '--slice', default=-1, type=int, help='Slice output for section')
  72. parser.add_argument('-o', '--output', help='Output directory')
  73. parser.add_argument('-f', '--force', action='store_true', help='Force override output file')
  74. parser.add_argument('-s', '--stdout', action='store_true', help='Print to stdout')
  75. parser.add_argument('-D', '--decompile', action='store_true', help='Print decompiled')
  76. parser.add_argument('section', help='Section')
  77. args = parser.parse_args(sys.argv[1:])
  78. if not path.isfile(args.file):
  79. print(f'No file {args.file}!')
  80. sys.exit(1)
  81. output_dir = args.output or path.dirname(args.file)
  82. if not path.exists(output_dir):
  83. mkdir(output_dir)
  84. if args.output_type == 'mem':
  85. ext = '.mem'
  86. elif args.output_type == 'bin':
  87. ext = '.bin'
  88. elif args.output_type == 'mif':
  89. ext = '.mif'
  90. elif args.output_type == 'uhex':
  91. ext = '.uhex'
  92. else:
  93. ext = '.out'
  94. bname = path.basename(args.file).rsplit('.', 1)[0]
  95. sformat = f'01d'
  96. outputs = []
  97. if args.slice > 0:
  98. sformat = f'0{int(math.log10(args.slice)) + 1}d'
  99. for i in range(0, args.slice):
  100. outputs.append(path.join(output_dir,f'{bname}{args.section}_{format(i, sformat)}{ext}'))
  101. else:
  102. outputs = [path.join(output_dir, bname + args.section + ext)]
  103. if not args.stdout and not args.force:
  104. for output in outputs:
  105. if path.isfile(output):
  106. print(f'Output file already exists {output}!')
  107. sys.exit(1)
  108. with open(args.file, 'r') as f:
  109. data = asmc.compile(args.file, f.readlines())
  110. if data is not None:
  111. section = args.section
  112. if section in data:
  113. width, length, size, bdata = data[section]
  114. asize = len(bdata)
  115. if size > 0:
  116. bdataf = bdata + (size - len(bdata)) * bytearray(b'\x00')
  117. else:
  118. bdataf = bdata
  119. for i, output in enumerate(outputs):
  120. y = bdataf[i::len(outputs)]
  121. if args.output_type == 'binary':
  122. x = compiler.convert_to_binary(y)
  123. elif args.output_type == 'mem':
  124. x = compiler.convert_to_mem(y, width=width)
  125. elif args.output_type == 'mif':
  126. x = compiler.convert_to_mif(y, width=width, depth=len(y)/width)
  127. elif args.output_type == 'uhex':
  128. x = compiler.convert_to_mem(y, width=width, uhex=True)
  129. else:
  130. x = bytes(y)
  131. op = 'Printing' if args.stdout else 'Saving'
  132. print(f"{op} {args.output_type} {section} data '{output}' [Size: {len(y)}B Slice: {format(i + 1, sformat)}/{len(outputs)}]")
  133. if args.stdout:
  134. if args.decompile:
  135. print(asmc.decompile(bdata))
  136. else:
  137. print(x.decode())
  138. else:
  139. with open(output, 'wb') as of:
  140. of.write(x)
  141. print(f"Total {section} size: {len(bdata)}B [{len(bdataf)}B]")
  142. else:
  143. print(f'No such section {section}!')
  144. else:
  145. print(f'Failed to compile {args.file}!')
  146. sys.exit(1)
  147. sys.exit(0)