U
    ڲg;)                     @   s8   d dl mZ G dd deZG dd deZdZdZdS )	    )Templatec                   @   s(   e Zd Zd	ddZd
ddZdd ZdS )ASTCodeGenerator
_c_ast.cfgc                 C   s    || _ dd | |D | _dS )zN Initialize the code generator from a configuration
            file.
        c                 S   s   g | ]\}}t ||qS  )NodeCfg).0namecontentsr   r   6/tmp/pip-unpacked-wheel-f3oyftnv/pycparser/_ast_gen.py
<listcomp>   s   z-ASTCodeGenerator.__init__.<locals>.<listcomp>N)cfg_filenameparse_cfgfilenode_cfg)selfr   r   r   r
   __init__   s    zASTCodeGenerator.__init__Nc                 C   sD   t tj| jd}|t7 }| jD ]}|| d 7 }q || dS )z< Generates the code into file, an open file buffer.
        )r   z

N)r   _PROLOGUE_COMMENT
substituter   _PROLOGUE_CODEr   generate_sourcewrite)r   filesrcr   r   r   r
   generate   s    
zASTCodeGenerator.generatec           
   	   c   s   t |d}|D ]}| }|r|dr,q|d}|d}|d}|dk sb||ksb||krrtd||f |d| }||d | }|rd	d
 |dD ng }	||	fV  qW 5 Q R X dS )ze Parse the configuration file and yield pairs of
            (name, contents) for each node.
        r#:[]   zInvalid line in %s:
%s
Nc                 S   s   g | ]}|  qS r   )strip)r   vr   r   r
   r   6   s     z2ASTCodeGenerator.parse_cfgfile.<locals>.<listcomp>,)openr   
startswithfindRuntimeErrorsplit)
r   filenameflineZcolon_iZ
lbracket_iZ
rbracket_ir   valZvallistr   r   r
   r   %   s    


zASTCodeGenerator.parse_cfgfile)r   )N)__name__
__module____qualname__r   r   r   r   r   r   r
   r      s   

r   c                   @   s@   e Zd ZdZdd Zdd Zdd Zdd	 Zd
d Zdd Z	dS )r   z 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.
    c                 C   s~   || _ g | _g | _g | _g | _|D ]V}|d}| j| |drT| j| q"|drl| j| q"| j| q"d S )N*z**)r   all_entriesattrchild	seq_childrstripappendendswith)r   r   r	   entryZclean_entryr   r   r
   r   B   s    


zNodeCfg.__init__c                 C   s<   |   }|d|   7 }|d|   7 }|d|   7 }|S )N
)	_gen_init_gen_children	_gen_iter_gen_attr_namesr   r   r   r   r
   r   T   s
    zNodeCfg.generate_sourcec                 C   s   d| j  }| jrDd| j}ddd | jD }|d7 }d| }nd}d}|d	| 7 }|d
| 7 }| jdg D ]}|d||f 7 }qp|S )Nzclass %s(Node):
z, c                 s   s   | ]}d  |V  qdS )z'{0}'N)format)r   er   r   r
   	<genexpr>`   s     z$NodeCfg._gen_init.<locals>.<genexpr>z, 'coord', '__weakref__'z(self, %s, coord=None)z'coord', '__weakref__'z(self, coord=None)z    __slots__ = (%s)
z    def __init__%s:
Zcoordz        self.%s = %s
)r   r/   join)r   r   argsslotsZarglistr   r   r   r
   r8   [   s    

zNodeCfg._gen_initc                 C   sd   d}| j rX|d7 }| jD ]}|dt|d 7 }q| jD ]}|dt|d 7 }q6|d7 }n|d7 }|S )Nz    def children(self):
z        nodelist = []
zV        if self.%(child)s is not None: nodelist.append(("%(child)s", self.%(child)s))
r1   zu        for i, child in enumerate(self.%(child)s or []):
            nodelist.append(("%(child)s[%%d]" %% i, child))
z        return tuple(nodelist)
z        return ()
r/   r1   dictr2   r   r   r1   r2   r   r   r
   r9   o   s     


zNodeCfg._gen_childrenc                 C   sh   d}| j r\| jD ]}|dt|d 7 }q| jD ]}|dt|d 7 }q.| jsd| jsd|d7 }n|d7 }|S )Nz    def __iter__(self):
zH        if self.%(child)s is not None:
            yield self.%(child)s
rC   zE        for child in (self.%(child)s or []):
            yield child
z        return
        yield
rD   rF   r   r   r
   r:      s(    

zNodeCfg._gen_iterc                 C   s"   dd dd | jD  d }|S )Nz    attr_names = ( c                 s   s   | ]}d | V  qdS )z%r, Nr   )r   nmr   r   r
   r?      s     z*NodeCfg._gen_attr_names.<locals>.<genexpr>))r@   r0   r<   r   r   r
   r;      s    zNodeCfg._gen_attr_namesN)
r+   r,   r-   __doc__r   r   r8   r9   r:   r;   r   r   r   r
   r   :   s   r   a  #-----------------------------------------------------------------
# ** 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.
#
# Eli Bendersky [https://eli.thegreenplace.net/]
# License: BSD
#-----------------------------------------------------------------

a3  
import sys

def _repr(obj):
    """
    Get the representation of an object, with dedicated pprint-like format for lists.
    """
    if isinstance(obj, list):
        return '[' + (',\n '.join((_repr(e).replace('\n', '\n ') for e in obj))) + '\n]'
    else:
        return repr(obj)

class Node(object):
    __slots__ = ()
    """ Abstract base class for AST nodes.
    """
    def __repr__(self):
        """ Generates a python representation of the current node
        """
        result = self.__class__.__name__ + '('

        indent = ''
        separator = ''
        for name in self.__slots__[:-2]:
            result += separator
            result += indent
            result += name + '=' + (_repr(getattr(self, name)).replace('\n', '\n  ' + (' ' * (len(name) + len(self.__class__.__name__)))))

            separator = ','
            indent = '\n ' + (' ' * len(self.__class__.__name__))

        result += indent + ')'

        return result

    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)
    """

    _method_cache = None

    def visit(self, node):
        """ Visit a node.
        """

        if self._method_cache is None:
            self._method_cache = {}

        visitor = self._method_cache.get(node.__class__.__name__, None)
        if visitor is None:
            method = 'visit_' + node.__class__.__name__
            visitor = getattr(self, method, self.generic_visit)
            self._method_cache[node.__class__.__name__] = visitor

        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 in node:
            self.visit(c)

N)stringr   objectr   r   r   r   r   r   r   r
   <module>   s
   *n