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373 lines
8.1 KiB
Python
373 lines
8.1 KiB
Python
"""
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Programming Language for 6502/6510 microprocessors, codename 'Sick'
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This is the lexer of the IL65 code, that generates a stream of tokens for the parser.
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Written by Irmen de Jong (irmen@razorvine.net) - license: GNU GPL 3.0
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"""
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import ast
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import sys
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import ply.lex
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import attr
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@attr.s(slots=True, frozen=True)
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class SourceRef:
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file = attr.ib(type=str)
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line = attr.ib(type=int)
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column = attr.ib(type=int, default=0)
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def __str__(self) -> str:
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if self.column:
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return "{:s}:{:d}:{:d}".format(self.file, self.line, self.column)
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if self.line:
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return "{:s}:{:d}".format(self.file, self.line)
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return self.file
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# token names
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tokens = (
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"INTEGER",
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"FLOATINGPOINT",
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"DOTTEDNAME",
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"NAME",
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"IS",
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"CLOBBEREDREGISTER",
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"REGISTER",
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"COMMENT",
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"DIRECTIVE",
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"AUGASSIGN",
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"EQUALS",
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"NOTEQUALS",
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"RARROW",
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"RETURN",
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"VARTYPE",
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"SUB",
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"DATATYPE",
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"CHARACTER",
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"STRING",
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"BOOLEAN",
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"GOTO",
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"INCR",
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"DECR",
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"LT",
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"GT",
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"LE",
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"GE",
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"BITAND",
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"BITOR",
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"BITXOR",
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"BITINVERT",
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"SHIFTLEFT",
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"SHIFTRIGHT",
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"LOGICAND",
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"LOGICOR",
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"LOGICXOR",
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"LOGICNOT",
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"INTEGERDIVIDE",
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"MODULO",
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"POWER",
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"LABEL",
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"IF",
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"PRESERVEREGS",
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"INLINEASM",
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"ENDL"
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)
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literals = ['+', '-', '*', '/', '(', ')', '[', ']', '{', '}', '.', ',', '!', '?', ':']
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# regex rules for simple tokens
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t_SHIFTLEFT = r"<<"
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t_SHIFTRIGHT = r">>"
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t_INTEGERDIVIDE = r"//"
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t_BITAND = r"&"
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t_BITOR = r"\|"
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t_BITXOR = r"\^"
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t_BITINVERT = r"~"
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t_IS = r"="
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t_AUGASSIGN = r"\+=|-=|/=|//=|\*=|\*\*=|<<=|>>=|&=|\|=|\^="
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t_DECR = r"--"
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t_INCR = r"\+\+"
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t_EQUALS = r"=="
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t_NOTEQUALS = r"!="
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t_LT = r"<"
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t_GT = r">"
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t_LE = r"<="
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t_GE = r">="
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t_IF = "if(_[a-z]+)?"
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t_RARROW = r"->"
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t_POWER = r"\*\*"
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# ignore inline whitespace
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t_ignore = " \t"
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t_inlineasm_ignore = " \t\r\n"
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# states for allowing %asm inclusion of raw assembly
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states = (
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('inlineasm', 'exclusive'),
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)
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# reserved words
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reserved = {
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"sub": "SUB",
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"var": "VARTYPE",
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"memory": "VARTYPE",
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"const": "VARTYPE",
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"goto": "GOTO",
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"return": "RETURN",
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"true": "BOOLEAN",
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"false": "BOOLEAN",
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"not": "LOGICNOT",
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"and": "LOGICAND",
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"or": "LOGICOR",
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"xor": "LOGICXOR",
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"mod": "MODULO",
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"AX": "REGISTER",
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"AY": "REGISTER",
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"XY": "REGISTER",
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"SC": "REGISTER",
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"SI": "REGISTER",
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"SZ": "REGISTER",
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"A": "REGISTER",
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"X": "REGISTER",
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"Y": "REGISTER",
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"if": "IF",
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"if_true": "IF",
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"if_not": "IF",
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"if_zero": "IF",
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"if_ne": "IF",
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"if_eq": "IF",
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"if_cc": "IF",
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"if_cs": "IF",
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"if_vc": "IF",
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"if_vs": "IF",
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"if_ge": "IF",
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"if_le": "IF",
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"if_gt": "IF",
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"if_lt": "IF",
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"if_pos": "IF",
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"if_neg": "IF",
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}
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# rules for tokens with some actions
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def t_inlineasm(t):
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r"""%asm\s*\{[^\S\n]*"""
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t.lexer.code_start = t.lexer.lexpos # Record start position
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t.lexer.level = 1 # initial brace level
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t.lexer.begin("inlineasm") # enter state 'inlineasm'
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def t_inlineasm_lbrace(t):
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r"""\{"""
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t.lexer.level += 1
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def t_inlineasm_rbrace(t):
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r"""\}"""
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t.lexer.level -= 1
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# if closing brace, return code fragment
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if t.lexer.level == 0:
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t.value = t.lexer.lexdata[t.lexer.code_start:t.lexer.lexpos-1]
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t.type = "INLINEASM"
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t.lexer.lineno += t.value.count("\n")
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t.lexer.begin("INITIAL") # back to normal lexing rules
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return t
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def t_inlineasm_comment(t):
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r""";[^\n]*"""
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pass
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def t_inlineasm_string(t):
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r"""(?x) # verbose mode
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(?<!\\) # not preceded by a backslash
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" # a literal double-quote
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.*? # 1-or-more characters
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(?<!\\) # not preceded by a backslash
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" # a literal double-quote
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(?<!\\) # not preceded by a backslash
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' # a literal single quote
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.*? # 1-or-more characters
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(?<!\\) # not preceded by a backslash
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' # a literal double-quote
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"""
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pass
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def t_inlineasm_nonspace(t):
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r"""[^\s\{\}\'\"]+"""
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pass
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def t_inlineasm_error(t):
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# For bad characters, we just skip over it
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t.lexer.skip(1)
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def t_CLOBBEREDREGISTER(t):
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r"""(AX|AY|XY|A|X|Y)\?"""
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t.value = t.value[:-1]
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return t
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def t_DATATYPE(t):
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r"""\.byte|\.wordarray|\.float|\.array|\.word|\.strps|\.strs|\.strp|\.str|\.matrix"""
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t.value = t.value[1:]
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return t
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def t_LABEL(t):
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r"""[a-zA-Z_]\w*\s*:"""
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t.value = t.value[:-1].strip()
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return t
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def t_BOOLEAN(t):
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r"""true|false"""
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t.value = t.value == "true"
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return t
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def t_DOTTEDNAME(t):
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r"""[a-zA-Z_]\w*(\.[a-zA-Z_]\w*)+"""
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first, second = t.value.split(".")
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if first in reserved or second in reserved:
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custom_error(t, "reserved word as part of dotted name")
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return None
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return t
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def t_NAME(t):
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r"""[a-zA-Z_]\w*"""
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t.type = reserved.get(t.value, "NAME") # check for reserved words
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return t
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def t_DIRECTIVE(t):
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r"""%[a-z]+\b"""
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t.value = t.value[1:]
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return t
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def t_STRING(t):
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r"""(?x) # verbose mode
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(?<!\\) # not preceded by a backslash
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" # a literal double-quote
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.*? # 1-or-more characters
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(?<!\\) # not preceded by a backslash
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" # a literal double-quote
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(?<!\\) # not preceded by a backslash
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' # a literal single quote
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.*? # 1-or-more characters
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(?<!\\) # not preceded by a backslash
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' # a literal double-quote
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"""
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t.value = ast.literal_eval(t.value)
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if len(t.value) == 1:
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t.type = "CHARACTER"
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if len(t.value) == 2 and t.value[0] == '\\':
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t.type = "CHARACTER"
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return t
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def t_FLOATINGPOINT(t):
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r"""((?: (?: \d* \. \d+ ) | (?: \d+ \.? ) )(?: [Ee] [+-]? \d+ ) ?)(?![a-z])"""
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try:
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t.value = int(t.value)
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t.type = "INTEGER"
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except ValueError:
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t.value = float(t.value)
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return t
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def t_INTEGER(t):
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r"""\$?[a-fA-F\d]+ | [\$%]?\d+ | %?[01]+"""
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sign = 1
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if t.value[0] in "+-":
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sign = -1 if t.value[0] == "-" else 1
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t.value = t.value[1:]
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if t.value[0] == '$':
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t.value = int(t.value[1:], 16) * sign
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elif t.value[0] == '%':
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t.value = int(t.value[1:], 2) * sign
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else:
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t.value = int(t.value) * sign
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return t
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def t_COMMENT(t):
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r"""[ \t]*;[^\n]*""" # dont eat newline
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return None # don't process comments
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def t_PRESERVEREGS(t):
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r"""!\s*[AXY]{0,3}\s*(?!=)"""
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t.value = t.value[1:-1].strip()
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return t
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def t_ENDL(t):
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r"""\n+"""
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t.lexer.lineno += len(t.value)
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t.value = "\n"
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return t # end of lines are significant to the parser
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def t_error(t):
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line, col = t.lineno, find_tok_column(t)
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filename = getattr(t.lexer, "source_filename", "<unknown-file>")
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sref = SourceRef(filename, line, col)
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if hasattr(t.lexer, "error_function"):
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t.lexer.error_function(sref, "illegal character '{:s}'", t.value[0])
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else:
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print("{}: illegal character '{:s}'".format(sref, t.value[0]))
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t.lexer.skip(1)
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def custom_error(t, message):
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line, col = t.lineno, find_tok_column(t)
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filename = getattr(t.lexer, "source_filename", "<unknown-file>")
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sref = SourceRef(filename, line, col)
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if hasattr(t.lexer, "error_function"):
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t.lexer.error_function(sref, message)
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else:
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print(sref, message)
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t.lexer.skip(1)
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def find_tok_column(token):
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"""Find the column of the token in its line."""
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last_cr = lexer.lexdata.rfind('\n', 0, token.lexpos)
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chunk = lexer.lexdata[last_cr:token.lexpos]
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return len(chunk.expandtabs())
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def print_warning(text: str, sourceref: SourceRef = None) -> None:
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if sourceref:
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print_bold("warning: {}: {:s}".format(sourceref, text))
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else:
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print_bold("warning: " + text)
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def print_bold(text: str) -> None:
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if sys.stdout.isatty():
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print("\x1b[1m" + text + "\x1b[0m", flush=True)
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else:
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print(text)
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lexer = ply.lex.lex()
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if __name__ == "__main__":
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ply.lex.runmain()
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