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153 lines
4.8 KiB
153 lines
4.8 KiB
"""Adjust some old Python 2 idioms to their modern counterparts.
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* Change some type comparisons to isinstance() calls:
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type(x) == T -> isinstance(x, T)
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type(x) is T -> isinstance(x, T)
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type(x) != T -> not isinstance(x, T)
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type(x) is not T -> not isinstance(x, T)
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* Change "while 1:" into "while True:".
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* Change both
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v = list(EXPR)
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v.sort()
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foo(v)
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and the more general
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v = EXPR
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v.sort()
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foo(v)
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into
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v = sorted(EXPR)
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foo(v)
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"""
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# Author: Jacques Frechet, Collin Winter
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# Local imports
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from .. import fixer_base
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from ..fixer_util import Call, Comma, Name, Node, BlankLine, syms
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CMP = "(n='!=' | '==' | 'is' | n=comp_op< 'is' 'not' >)"
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TYPE = "power< 'type' trailer< '(' x=any ')' > >"
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class FixIdioms(fixer_base.BaseFix):
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explicit = True # The user must ask for this fixer
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PATTERN = r"""
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isinstance=comparison< %s %s T=any >
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isinstance=comparison< T=any %s %s >
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while_stmt< 'while' while='1' ':' any+ >
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sorted=any<
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any*
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simple_stmt<
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expr_stmt< id1=any '='
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power< list='list' trailer< '(' (not arglist<any+>) any ')' > >
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>
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'\n'
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>
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sort=
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simple_stmt<
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power< id2=any
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trailer< '.' 'sort' > trailer< '(' ')' >
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>
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'\n'
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>
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next=any*
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>
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sorted=any<
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any*
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simple_stmt< expr_stmt< id1=any '=' expr=any > '\n' >
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sort=
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simple_stmt<
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power< id2=any
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trailer< '.' 'sort' > trailer< '(' ')' >
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>
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'\n'
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>
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next=any*
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>
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""" % (TYPE, CMP, CMP, TYPE)
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def match(self, node):
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r = super(FixIdioms, self).match(node)
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# If we've matched one of the sort/sorted subpatterns above, we
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# want to reject matches where the initial assignment and the
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# subsequent .sort() call involve different identifiers.
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if r and "sorted" in r:
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if r["id1"] == r["id2"]:
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return r
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return None
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return r
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def transform(self, node, results):
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if "isinstance" in results:
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return self.transform_isinstance(node, results)
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elif "while" in results:
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return self.transform_while(node, results)
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elif "sorted" in results:
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return self.transform_sort(node, results)
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else:
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raise RuntimeError("Invalid match")
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def transform_isinstance(self, node, results):
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x = results["x"].clone() # The thing inside of type()
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T = results["T"].clone() # The type being compared against
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x.prefix = u""
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T.prefix = u" "
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test = Call(Name(u"isinstance"), [x, Comma(), T])
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if "n" in results:
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test.prefix = u" "
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test = Node(syms.not_test, [Name(u"not"), test])
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test.prefix = node.prefix
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return test
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def transform_while(self, node, results):
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one = results["while"]
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one.replace(Name(u"True", prefix=one.prefix))
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def transform_sort(self, node, results):
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sort_stmt = results["sort"]
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next_stmt = results["next"]
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list_call = results.get("list")
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simple_expr = results.get("expr")
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if list_call:
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list_call.replace(Name(u"sorted", prefix=list_call.prefix))
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elif simple_expr:
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new = simple_expr.clone()
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new.prefix = u""
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simple_expr.replace(Call(Name(u"sorted"), [new],
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prefix=simple_expr.prefix))
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else:
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raise RuntimeError("should not have reached here")
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sort_stmt.remove()
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btwn = sort_stmt.prefix
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# Keep any prefix lines between the sort_stmt and the list_call and
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# shove them right after the sorted() call.
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if u"\n" in btwn:
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if next_stmt:
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# The new prefix should be everything from the sort_stmt's
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# prefix up to the last newline, then the old prefix after a new
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# line.
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prefix_lines = (btwn.rpartition(u"\n")[0], next_stmt[0].prefix)
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next_stmt[0].prefix = u"\n".join(prefix_lines)
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else:
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assert list_call.parent
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assert list_call.next_sibling is None
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# Put a blank line after list_call and set its prefix.
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end_line = BlankLine()
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list_call.parent.append_child(end_line)
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assert list_call.next_sibling is end_line
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# The new prefix should be everything up to the first new line
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# of sort_stmt's prefix.
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end_line.prefix = btwn.rpartition(u"\n")[0]
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