mirror of
https://github.com/evilhero/mylar
synced 2024-12-23 16:22:45 +00:00
533 lines
18 KiB
Python
Executable file
533 lines
18 KiB
Python
Executable file
# mako/pyparser.py
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# Copyright (C) 2006-2011 the Mako authors and contributors <see AUTHORS file>
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#
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# This module is part of Mako and is released under
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# the MIT License: http://www.opensource.org/licenses/mit-license.php
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"""Handles parsing of Python code.
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Parsing to AST is done via _ast on Python > 2.5, otherwise the compiler
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module is used.
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"""
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from StringIO import StringIO
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from mako import exceptions, util
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import operator
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if util.py3k:
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# words that cannot be assigned to (notably
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# smaller than the total keys in __builtins__)
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reserved = set(['True', 'False', 'None', 'print'])
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# the "id" attribute on a function node
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arg_id = operator.attrgetter('arg')
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else:
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# words that cannot be assigned to (notably
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# smaller than the total keys in __builtins__)
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reserved = set(['True', 'False', 'None'])
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# the "id" attribute on a function node
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arg_id = operator.attrgetter('id')
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try:
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import _ast
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util.restore__ast(_ast)
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import _ast_util
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except ImportError:
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_ast = None
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from compiler import parse as compiler_parse
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from compiler import visitor
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def parse(code, mode='exec', **exception_kwargs):
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"""Parse an expression into AST"""
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try:
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if _ast:
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return _ast_util.parse(code, '<unknown>', mode)
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else:
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if isinstance(code, unicode):
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code = code.encode('ascii', 'backslashreplace')
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return compiler_parse(code, mode)
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except Exception, e:
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raise exceptions.SyntaxException(
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"(%s) %s (%r)" % (
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e.__class__.__name__,
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e,
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code[0:50]
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), **exception_kwargs)
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if _ast:
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class FindIdentifiers(_ast_util.NodeVisitor):
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def __init__(self, listener, **exception_kwargs):
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self.in_function = False
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self.in_assign_targets = False
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self.local_ident_stack = {}
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self.listener = listener
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self.exception_kwargs = exception_kwargs
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def _add_declared(self, name):
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if not self.in_function:
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self.listener.declared_identifiers.add(name)
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def visit_ClassDef(self, node):
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self._add_declared(node.name)
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def visit_Assign(self, node):
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# flip around the visiting of Assign so the expression gets
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# evaluated first, in the case of a clause like "x=x+5" (x
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# is undeclared)
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self.visit(node.value)
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in_a = self.in_assign_targets
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self.in_assign_targets = True
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for n in node.targets:
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self.visit(n)
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self.in_assign_targets = in_a
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if util.py3k:
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# ExceptHandler is in Python 2, but this block only works in
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# Python 3 (and is required there)
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def visit_ExceptHandler(self, node):
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if node.name is not None:
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self._add_declared(node.name)
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if node.type is not None:
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self.listener.undeclared_identifiers.add(node.type.id)
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for statement in node.body:
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self.visit(statement)
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def visit_Lambda(self, node, *args):
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self._visit_function(node, True)
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def visit_FunctionDef(self, node):
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self._add_declared(node.name)
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self._visit_function(node, False)
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def _visit_function(self, node, islambda):
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# push function state onto stack. dont log any more
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# identifiers as "declared" until outside of the function,
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# but keep logging identifiers as "undeclared". track
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# argument names in each function header so they arent
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# counted as "undeclared"
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saved = {}
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inf = self.in_function
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self.in_function = True
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for arg in node.args.args:
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if arg_id(arg) in self.local_ident_stack:
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saved[arg_id(arg)] = True
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else:
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self.local_ident_stack[arg_id(arg)] = True
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if islambda:
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self.visit(node.body)
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else:
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for n in node.body:
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self.visit(n)
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self.in_function = inf
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for arg in node.args.args:
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if arg_id(arg) not in saved:
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del self.local_ident_stack[arg_id(arg)]
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def visit_For(self, node):
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# flip around visit
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self.visit(node.iter)
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self.visit(node.target)
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for statement in node.body:
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self.visit(statement)
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for statement in node.orelse:
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self.visit(statement)
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def visit_Name(self, node):
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if isinstance(node.ctx, _ast.Store):
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self._add_declared(node.id)
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if node.id not in reserved and node.id \
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not in self.listener.declared_identifiers and node.id \
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not in self.local_ident_stack:
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self.listener.undeclared_identifiers.add(node.id)
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def visit_Import(self, node):
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for name in node.names:
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if name.asname is not None:
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self._add_declared(name.asname)
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else:
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self._add_declared(name.name.split('.')[0])
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def visit_ImportFrom(self, node):
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for name in node.names:
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if name.asname is not None:
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self._add_declared(name.asname)
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else:
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if name.name == '*':
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raise exceptions.CompileException(
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"'import *' is not supported, since all identifier "
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"names must be explicitly declared. Please use the "
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"form 'from <modulename> import <name1>, <name2>, "
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"...' instead.", **self.exception_kwargs)
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self._add_declared(name.name)
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class FindTuple(_ast_util.NodeVisitor):
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def __init__(self, listener, code_factory, **exception_kwargs):
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self.listener = listener
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self.exception_kwargs = exception_kwargs
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self.code_factory = code_factory
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def visit_Tuple(self, node):
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for n in node.elts:
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p = self.code_factory(n, **self.exception_kwargs)
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self.listener.codeargs.append(p)
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self.listener.args.append(ExpressionGenerator(n).value())
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self.listener.declared_identifiers = \
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self.listener.declared_identifiers.union(
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p.declared_identifiers)
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self.listener.undeclared_identifiers = \
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self.listener.undeclared_identifiers.union(
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p.undeclared_identifiers)
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class ParseFunc(_ast_util.NodeVisitor):
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def __init__(self, listener, **exception_kwargs):
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self.listener = listener
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self.exception_kwargs = exception_kwargs
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def visit_FunctionDef(self, node):
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self.listener.funcname = node.name
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argnames = [arg_id(arg) for arg in node.args.args]
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if node.args.vararg:
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argnames.append(node.args.vararg)
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if node.args.kwarg:
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argnames.append(node.args.kwarg)
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self.listener.argnames = argnames
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self.listener.defaults = node.args.defaults # ast
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self.listener.varargs = node.args.vararg
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self.listener.kwargs = node.args.kwarg
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class ExpressionGenerator(object):
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def __init__(self, astnode):
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self.generator = _ast_util.SourceGenerator(' ' * 4)
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self.generator.visit(astnode)
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def value(self):
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return ''.join(self.generator.result)
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else:
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class FindIdentifiers(object):
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def __init__(self, listener, **exception_kwargs):
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self.in_function = False
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self.local_ident_stack = {}
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self.listener = listener
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self.exception_kwargs = exception_kwargs
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def _add_declared(self, name):
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if not self.in_function:
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self.listener.declared_identifiers.add(name)
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def visitClass(self, node, *args):
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self._add_declared(node.name)
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def visitAssName(self, node, *args):
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self._add_declared(node.name)
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def visitAssign(self, node, *args):
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# flip around the visiting of Assign so the expression gets
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# evaluated first, in the case of a clause like "x=x+5" (x
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# is undeclared)
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self.visit(node.expr, *args)
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for n in node.nodes:
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self.visit(n, *args)
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def visitLambda(self, node, *args):
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self._visit_function(node, args)
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def visitFunction(self, node, *args):
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self._add_declared(node.name)
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self._visit_function(node, args)
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def _visit_function(self, node, args):
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# push function state onto stack. dont log any more
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# identifiers as "declared" until outside of the function,
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# but keep logging identifiers as "undeclared". track
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# argument names in each function header so they arent
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# counted as "undeclared"
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saved = {}
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inf = self.in_function
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self.in_function = True
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for arg in node.argnames:
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if arg in self.local_ident_stack:
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saved[arg] = True
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else:
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self.local_ident_stack[arg] = True
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for n in node.getChildNodes():
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self.visit(n, *args)
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self.in_function = inf
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for arg in node.argnames:
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if arg not in saved:
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del self.local_ident_stack[arg]
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def visitFor(self, node, *args):
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# flip around visit
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self.visit(node.list, *args)
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self.visit(node.assign, *args)
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self.visit(node.body, *args)
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def visitName(self, node, *args):
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if node.name not in reserved and node.name \
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not in self.listener.declared_identifiers and node.name \
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not in self.local_ident_stack:
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self.listener.undeclared_identifiers.add(node.name)
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def visitImport(self, node, *args):
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for mod, alias in node.names:
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if alias is not None:
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self._add_declared(alias)
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else:
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self._add_declared(mod.split('.')[0])
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def visitFrom(self, node, *args):
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for mod, alias in node.names:
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if alias is not None:
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self._add_declared(alias)
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else:
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if mod == '*':
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raise exceptions.CompileException(
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"'import *' is not supported, since all identifier "
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"names must be explicitly declared. Please use the "
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"form 'from <modulename> import <name1>, <name2>, "
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"...' instead.", **self.exception_kwargs)
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self._add_declared(mod)
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def visit(self, expr):
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visitor.walk(expr, self) # , walker=walker())
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class FindTuple(object):
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def __init__(self, listener, code_factory, **exception_kwargs):
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self.listener = listener
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self.exception_kwargs = exception_kwargs
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self.code_factory = code_factory
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def visitTuple(self, node, *args):
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for n in node.nodes:
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p = self.code_factory(n, **self.exception_kwargs)
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self.listener.codeargs.append(p)
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self.listener.args.append(ExpressionGenerator(n).value())
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self.listener.declared_identifiers = \
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self.listener.declared_identifiers.union(p.declared_identifiers)
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self.listener.undeclared_identifiers = \
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self.listener.undeclared_identifiers.union(p.undeclared_identifiers)
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def visit(self, expr):
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visitor.walk(expr, self) # , walker=walker())
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class ParseFunc(object):
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def __init__(self, listener, **exception_kwargs):
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self.listener = listener
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self.exception_kwargs = exception_kwargs
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def visitFunction(self, node, *args):
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self.listener.funcname = node.name
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self.listener.argnames = node.argnames
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self.listener.defaults = node.defaults
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self.listener.varargs = node.varargs
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self.listener.kwargs = node.kwargs
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def visit(self, expr):
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visitor.walk(expr, self)
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class ExpressionGenerator(object):
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"""given an AST node, generates an equivalent literal Python
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expression."""
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def __init__(self, astnode):
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self.buf = StringIO()
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visitor.walk(astnode, self) # , walker=walker())
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def value(self):
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return self.buf.getvalue()
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def operator(self, op, node, *args):
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self.buf.write('(')
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self.visit(node.left, *args)
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self.buf.write(' %s ' % op)
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self.visit(node.right, *args)
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self.buf.write(')')
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def booleanop(self, op, node, *args):
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self.visit(node.nodes[0])
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for n in node.nodes[1:]:
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self.buf.write(' ' + op + ' ')
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self.visit(n, *args)
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def visitConst(self, node, *args):
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self.buf.write(repr(node.value))
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def visitAssName(self, node, *args):
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# TODO: figure out OP_ASSIGN, other OP_s
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self.buf.write(node.name)
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def visitName(self, node, *args):
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self.buf.write(node.name)
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def visitMul(self, node, *args):
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self.operator('*', node, *args)
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def visitAnd(self, node, *args):
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self.booleanop('and', node, *args)
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def visitOr(self, node, *args):
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self.booleanop('or', node, *args)
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def visitBitand(self, node, *args):
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self.booleanop('&', node, *args)
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def visitBitor(self, node, *args):
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self.booleanop('|', node, *args)
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def visitBitxor(self, node, *args):
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self.booleanop('^', node, *args)
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def visitAdd(self, node, *args):
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self.operator('+', node, *args)
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def visitGetattr(self, node, *args):
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self.visit(node.expr, *args)
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self.buf.write('.%s' % node.attrname)
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def visitSub(self, node, *args):
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self.operator('-', node, *args)
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def visitNot(self, node, *args):
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self.buf.write('not ')
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self.visit(node.expr)
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def visitDiv(self, node, *args):
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self.operator('/', node, *args)
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def visitFloorDiv(self, node, *args):
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self.operator('//', node, *args)
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def visitSubscript(self, node, *args):
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self.visit(node.expr)
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self.buf.write('[')
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[self.visit(x) for x in node.subs]
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self.buf.write(']')
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def visitUnarySub(self, node, *args):
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self.buf.write('-')
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self.visit(node.expr)
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def visitUnaryAdd(self, node, *args):
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self.buf.write('-')
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self.visit(node.expr)
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def visitSlice(self, node, *args):
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self.visit(node.expr)
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self.buf.write('[')
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if node.lower is not None:
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self.visit(node.lower)
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self.buf.write(':')
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if node.upper is not None:
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self.visit(node.upper)
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self.buf.write(']')
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def visitDict(self, node):
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self.buf.write('{')
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c = node.getChildren()
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for i in range(0, len(c), 2):
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self.visit(c[i])
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self.buf.write(': ')
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self.visit(c[i + 1])
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if i < len(c) - 2:
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self.buf.write(', ')
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self.buf.write('}')
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def visitTuple(self, node):
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self.buf.write('(')
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c = node.getChildren()
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for i in range(0, len(c)):
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self.visit(c[i])
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if i < len(c) - 1:
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self.buf.write(', ')
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self.buf.write(')')
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def visitList(self, node):
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self.buf.write('[')
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c = node.getChildren()
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for i in range(0, len(c)):
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self.visit(c[i])
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if i < len(c) - 1:
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self.buf.write(', ')
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self.buf.write(']')
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def visitListComp(self, node):
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self.buf.write('[')
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self.visit(node.expr)
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self.buf.write(' ')
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for n in node.quals:
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self.visit(n)
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self.buf.write(']')
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def visitListCompFor(self, node):
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self.buf.write(' for ')
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self.visit(node.assign)
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self.buf.write(' in ')
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self.visit(node.list)
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for n in node.ifs:
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self.visit(n)
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def visitListCompIf(self, node):
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self.buf.write(' if ')
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self.visit(node.test)
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def visitCompare(self, node):
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self.visit(node.expr)
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for tup in node.ops:
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self.buf.write(tup[0])
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self.visit(tup[1])
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def visitCallFunc(self, node, *args):
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self.visit(node.node)
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self.buf.write('(')
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if len(node.args):
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self.visit(node.args[0])
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for a in node.args[1:]:
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self.buf.write(', ')
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self.visit(a)
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self.buf.write(')')
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class walker(visitor.ASTVisitor):
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def dispatch(self, node, *args):
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print 'Node:', str(node)
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# print "dir:", dir(node)
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return visitor.ASTVisitor.dispatch(self, node, *args)
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