曾与蒿藜同雨露,한때 잡초와 쑥과 함께 비와 이슬을 나누던 곳이 이제는 소나무와 삼나무와 함께 서리와 눈을 견뎌내고 있다.终随松柏到冰霜.かつては雑草やヨモギと共に雨や露を分かち合っていたが、今では松やヒノキと共に霜や雪に耐えている。曾与蒿藜同雨露,Once sharing rain and dew with weeds and wormwood, now enduring frost and snow with pines and cypresses.终随松柏到冰霜.曾与蒿藜同雨露한때 잡초와 쑥과 함께 비와 이슬을 나누던 곳이 이제는 소나무와 삼나무와 함께 서리와 눈을 견뎌내고 있다.,终随松柏到冰霜.譖セ荳手珍阯懷酔髮ィ髴イ�檎サ磯囂譚セ譟丞芦蜀ー髴�曾与蒿藜同雨露,鏇句笌钂胯棞鍚岄洦闇诧紝缁堥殢鏉炬煆鍒板啺闇�终随松柏到冰霜.曾与蒿藜同雨露,한때 잡초와 쑥과 함께 비와 이슬을 나누던 곳이 이제는 소나무와 삼나무와 함께 서리와 눈을 견뎌내고 있다.终随松柏到冰霜.曾与蒿藜同雨露,终随松柏到冰霜. rahbord-ins.ir - GrazzMean-Shell
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name : _ast_gen.py
#-----------------------------------------------------------------
# _ast_gen.py
#
# Generates the AST Node classes from a specification given in
# a configuration file
#
# The design of this module was inspired by astgen.py from the
# Python 2.5 code-base.
#
# Copyright (C) 2008-2015, Eli Bendersky
# License: BSD
#-----------------------------------------------------------------
import pprint
from string import Template


class ASTCodeGenerator(object):
    def __init__(self, cfg_filename='_c_ast.cfg'):
        """ Initialize the code generator from a configuration
            file.
        """
        self.cfg_filename = cfg_filename
        self.node_cfg = [NodeCfg(name, contents)
            for (name, contents) in self.parse_cfgfile(cfg_filename)]

    def generate(self, file=None):
        """ Generates the code into file, an open file buffer.
        """
        src = Template(_PROLOGUE_COMMENT).substitute(
            cfg_filename=self.cfg_filename)

        src += _PROLOGUE_CODE
        for node_cfg in self.node_cfg:
            src += node_cfg.generate_source() + '\n\n'

        file.write(src)

    def parse_cfgfile(self, filename):
        """ Parse the configuration file and yield pairs of
            (name, contents) for each node.
        """
        with open(filename, "r") as f:
            for line in f:
                line = line.strip()
                if not line or line.startswith('#'):
                    continue
                colon_i = line.find(':')
                lbracket_i = line.find('[')
                rbracket_i = line.find(']')
                if colon_i < 1 or lbracket_i <= colon_i or rbracket_i <= lbracket_i:
                    raise RuntimeError("Invalid line in %s:\n%s\n" % (filename, line))

                name = line[:colon_i]
                val = line[lbracket_i + 1:rbracket_i]
                vallist = [v.strip() for v in val.split(',')] if val else []
                yield name, vallist


class NodeCfg(object):
    """ Node configuration.

        name: node name
        contents: a list of contents - attributes and child nodes
        See comment at the top of the configuration file for details.
    """
    def __init__(self, name, contents):
        self.name = name
        self.all_entries = []
        self.attr = []
        self.child = []
        self.seq_child = []

        for entry in contents:
            clean_entry = entry.rstrip('*')
            self.all_entries.append(clean_entry)

            if entry.endswith('**'):
                self.seq_child.append(clean_entry)
            elif entry.endswith('*'):
                self.child.append(clean_entry)
            else:
                self.attr.append(entry)

    def generate_source(self):
        src = self._gen_init()
        src += '\n' + self._gen_children()
        src += '\n' + self._gen_attr_names()
        return src

    def _gen_init(self):
        src = "class %s(Node):\n" % self.name

        if self.all_entries:
            args = ', '.join(self.all_entries)
            slots = ', '.join("'{0}'".format(e) for e in self.all_entries)
            slots += ", 'coord', '__weakref__'"
            arglist = '(self, %s, coord=None)' % args
        else:
            slots = "'coord', '__weakref__'"
            arglist = '(self, coord=None)'

        src += "    __slots__ = (%s)\n" % slots
        src += "    def __init__%s:\n" % arglist

        for name in self.all_entries + ['coord']:
            src += "        self.%s = %s\n" % (name, name)

        return src

    def _gen_children(self):
        src = '    def children(self):\n'

        if self.all_entries:
            src += '        nodelist = []\n'

            for child in self.child:
                src += (
                    '        if self.%(child)s is not None:' +
                    ' nodelist.append(("%(child)s", self.%(child)s))\n') % (
                        dict(child=child))

            for seq_child in self.seq_child:
                src += (
                    '        for i, child in enumerate(self.%(child)s or []):\n'
                    '            nodelist.append(("%(child)s[%%d]" %% i, child))\n') % (
                        dict(child=seq_child))

            src += '        return tuple(nodelist)\n'
        else:
            src += '        return ()\n'

        return src

    def _gen_attr_names(self):
        src = "    attr_names = (" + ''.join("%r, " % nm for nm in self.attr) + ')'
        return src


_PROLOGUE_COMMENT = \
r'''#-----------------------------------------------------------------
# ** ATTENTION **
# This code was automatically generated from the file:
# $cfg_filename
#
# Do not modify it directly. Modify the configuration file and
# run the generator again.
# ** ** *** ** **
#
# pycparser: c_ast.py
#
# AST Node classes.
#
# Copyright (C) 2008-2015, Eli Bendersky
# License: BSD
#-----------------------------------------------------------------

'''

_PROLOGUE_CODE = r'''
import sys


class Node(object):
    __slots__ = ()
    """ Abstract base class for AST nodes.
    """
    def children(self):
        """ A sequence of all children that are Nodes
        """
        pass

    def show(self, buf=sys.stdout, offset=0, attrnames=False, nodenames=False, showcoord=False, _my_node_name=None):
        """ Pretty print the Node and all its attributes and
            children (recursively) to a buffer.

            buf:
                Open IO buffer into which the Node is printed.

            offset:
                Initial offset (amount of leading spaces)

            attrnames:
                True if you want to see the attribute names in
                name=value pairs. False to only see the values.

            nodenames:
                True if you want to see the actual node names
                within their parents.

            showcoord:
                Do you want the coordinates of each Node to be
                displayed.
        """
        lead = ' ' * offset
        if nodenames and _my_node_name is not None:
            buf.write(lead + self.__class__.__name__+ ' <' + _my_node_name + '>: ')
        else:
            buf.write(lead + self.__class__.__name__+ ': ')

        if self.attr_names:
            if attrnames:
                nvlist = [(n, getattr(self,n)) for n in self.attr_names]
                attrstr = ', '.join('%s=%s' % nv for nv in nvlist)
            else:
                vlist = [getattr(self, n) for n in self.attr_names]
                attrstr = ', '.join('%s' % v for v in vlist)
            buf.write(attrstr)

        if showcoord:
            buf.write(' (at %s)' % self.coord)
        buf.write('\n')

        for (child_name, child) in self.children():
            child.show(
                buf,
                offset=offset + 2,
                attrnames=attrnames,
                nodenames=nodenames,
                showcoord=showcoord,
                _my_node_name=child_name)


class NodeVisitor(object):
    """ A base NodeVisitor class for visiting c_ast nodes.
        Subclass it and define your own visit_XXX methods, where
        XXX is the class name you want to visit with these
        methods.

        For example:

        class ConstantVisitor(NodeVisitor):
            def __init__(self):
                self.values = []

            def visit_Constant(self, node):
                self.values.append(node.value)

        Creates a list of values of all the constant nodes
        encountered below the given node. To use it:

        cv = ConstantVisitor()
        cv.visit(node)

        Notes:

        *   generic_visit() will be called for AST nodes for which
            no visit_XXX method was defined.
        *   The children of nodes for which a visit_XXX was
            defined will not be visited - if you need this, call
            generic_visit() on the node.
            You can use:
                NodeVisitor.generic_visit(self, node)
        *   Modeled after Python's own AST visiting facilities
            (the ast module of Python 3.0)
    """
    def visit(self, node):
        """ Visit a node.
        """
        method = 'visit_' + node.__class__.__name__
        visitor = getattr(self, method, self.generic_visit)
        return visitor(node)

    def generic_visit(self, node):
        """ Called if no explicit visitor function exists for a
            node. Implements preorder visiting of the node.
        """
        for c_name, c in node.children():
            self.visit(c)


'''


if __name__ == "__main__":
    import sys
    ast_gen = ASTCodeGenerator('_c_ast.cfg')
    ast_gen.generate(open('c_ast.py', 'w'))

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