PNG  IHDR  8] PLTE S =tRNS   PNG  IHDR  8] PLTE S =tRNS   REDROOM
PHP 7.4.33
Preview: btm_utils.py Size: 9.73 KB
/opt/alt/python37/lib64/python3.7/lib2to3/btm_utils.py

"Utility functions used by the btm_matcher module"

from . import pytree
from .pgen2 import grammar, token
from .pygram import pattern_symbols, python_symbols

syms = pattern_symbols
pysyms = python_symbols
tokens = grammar.opmap
token_labels = token

TYPE_ANY = -1
TYPE_ALTERNATIVES = -2
TYPE_GROUP = -3

class MinNode(object):
    """This class serves as an intermediate representation of the
    pattern tree during the conversion to sets of leaf-to-root
    subpatterns"""

    def __init__(self, type=None, name=None):
        self.type = type
        self.name = name
        self.children = []
        self.leaf = False
        self.parent = None
        self.alternatives = []
        self.group = []

    def __repr__(self):
        return str(self.type) + ' ' + str(self.name)

    def leaf_to_root(self):
        """Internal method. Returns a characteristic path of the
        pattern tree. This method must be run for all leaves until the
        linear subpatterns are merged into a single"""
        node = self
        subp = []
        while node:
            if node.type == TYPE_ALTERNATIVES:
                node.alternatives.append(subp)
                if len(node.alternatives) == len(node.children):
                    #last alternative
                    subp = [tuple(node.alternatives)]
                    node.alternatives = []
                    node = node.parent
                    continue
                else:
                    node = node.parent
                    subp = None
                    break

            if node.type == TYPE_GROUP:
                node.group.append(subp)
                #probably should check the number of leaves
                if len(node.group) == len(node.children):
                    subp = get_characteristic_subpattern(node.group)
                    node.group = []
                    node = node.parent
                    continue
                else:
                    node = node.parent
                    subp = None
                    break

            if node.type == token_labels.NAME and node.name:
                #in case of type=name, use the name instead
                subp.append(node.name)
            else:
                subp.append(node.type)

            node = node.parent
        return subp

    def get_linear_subpattern(self):
        """Drives the leaf_to_root method. The reason that
        leaf_to_root must be run multiple times is because we need to
        reject 'group' matches; for example the alternative form
        (a | b c) creates a group [b c] that needs to be matched. Since
        matching multiple linear patterns overcomes the automaton's
        capabilities, leaf_to_root merges each group into a single
        choice based on 'characteristic'ity,

        i.e. (a|b c) -> (a|b) if b more characteristic than c

        Returns: The most 'characteristic'(as defined by
          get_characteristic_subpattern) path for the compiled pattern
          tree.
        """

        for l in self.leaves():
            subp = l.leaf_to_root()
            if subp:
                return subp

    def leaves(self):
        "Generator that returns the leaves of the tree"
        for child in self.children:
            yield from child.leaves()
        if not self.children:
            yield self

def reduce_tree(node, parent=None):
    """
    Internal function. Reduces a compiled pattern tree to an
    intermediate representation suitable for feeding the
    automaton. This also trims off any optional pattern elements(like
    [a], a*).
    """

    new_node = None
    #switch on the node type
    if node.type == syms.Matcher:
        #skip
        node = node.children[0]

    if node.type == syms.Alternatives  :
        #2 cases
        if len(node.children) <= 2:
            #just a single 'Alternative', skip this node
            new_node = reduce_tree(node.children[0], parent)
        else:
            #real alternatives
            new_node = MinNode(type=TYPE_ALTERNATIVES)
            #skip odd children('|' tokens)
            for child in node.children:
                if node.children.index(child)%2:
                    continue
                reduced = reduce_tree(child, new_node)
                if reduced is not None:
                    new_node.children.append(reduced)
    elif node.type == syms.Alternative:
        if len(node.children) > 1:

            new_node = MinNode(type=TYPE_GROUP)
            for child in node.children:
                reduced = reduce_tree(child, new_node)
                if reduced:
                    new_node.children.append(reduced)
            if not new_node.children:
                # delete the group if all of the children were reduced to None
                new_node = None

        else:
            new_node = reduce_tree(node.children[0], parent)

    elif node.type == syms.Unit:
        if (isinstance(node.children[0], pytree.Leaf) and
            node.children[0].value == '('):
            #skip parentheses
            return reduce_tree(node.children[1], parent)
        if ((isinstance(node.children[0], pytree.Leaf) and
               node.children[0].value == '[')
               or
               (len(node.children)>1 and
               hasattr(node.children[1], "value") and
               node.children[1].value == '[')):
            #skip whole unit if its optional
            return None

        leaf = True
        details_node = None
        alternatives_node = None
        has_repeater = False
        repeater_node = None
        has_variable_name = False

        for child in node.children:
            if child.type == syms.Details:
                leaf = False
                details_node = child
            elif child.type == syms.Repeater:
                has_repeater = True
                repeater_node = child
            elif child.type == syms.Alternatives:
                alternatives_node = child
            if hasattr(child, 'value') and child.value == '=': # variable name
                has_variable_name = True

        #skip variable name
        if has_variable_name:
            #skip variable name, '='
            name_leaf = node.children[2]
            if hasattr(name_leaf, 'value') and name_leaf.value == '(':
                # skip parenthesis
                name_leaf = node.children[3]
        else:
            name_leaf = node.children[0]

        #set node type
        if name_leaf.type == token_labels.NAME:
            #(python) non-name or wildcard
            if name_leaf.value == 'any':
                new_node = MinNode(type=TYPE_ANY)
            else:
                if hasattr(token_labels, name_leaf.value):
                    new_node = MinNode(type=getattr(token_labels, name_leaf.value))
                else:
                    new_node = MinNode(type=getattr(pysyms, name_leaf.value))

        elif name_leaf.type == token_labels.STRING:
            #(python) name or character; remove the apostrophes from
            #the string value
            name = name_leaf.value.strip("'")
            if name in tokens:
                new_node = MinNode(type=tokens[name])
            else:
                new_node = MinNode(type=token_labels.NAME, name=name)
        elif name_leaf.type == syms.Alternatives:
            new_node = reduce_tree(alternatives_node, parent)

        #handle repeaters
        if has_repeater:
            if repeater_node.children[0].value == '*':
                #reduce to None
                new_node = None
            elif repeater_node.children[0].value == '+':
                #reduce to a single occurrence i.e. do nothing
                pass
            else:
                #TODO: handle {min, max} repeaters
                raise NotImplementedError
                pass

        #add children
        if details_node and new_node is not None:
            for child in details_node.children[1:-1]:
                #skip '<', '>' markers
                reduced = reduce_tree(child, new_node)
                if reduced is not None:
                    new_node.children.append(reduced)
    if new_node:
        new_node.parent = parent
    return new_node


def get_characteristic_subpattern(subpatterns):
    """Picks the most characteristic from a list of linear patterns
    Current order used is:
    names > common_names > common_chars
    """
    if not isinstance(subpatterns, list):
        return subpatterns
    if len(subpatterns)==1:
        return subpatterns[0]

    # first pick out the ones containing variable names
    subpatterns_with_names = []
    subpatterns_with_common_names = []
    common_names = ['in', 'for', 'if' , 'not', 'None']
    subpatterns_with_common_chars = []
    common_chars = "[]().,:"
    for subpattern in subpatterns:
        if any(rec_test(subpattern, lambda x: type(x) is str)):
            if any(rec_test(subpattern,
                            lambda x: isinstance(x, str) and x in common_chars)):
                subpatterns_with_common_chars.append(subpattern)
            elif any(rec_test(subpattern,
                              lambda x: isinstance(x, str) and x in common_names)):
                subpatterns_with_common_names.append(subpattern)

            else:
                subpatterns_with_names.append(subpattern)

    if subpatterns_with_names:
        subpatterns = subpatterns_with_names
    elif subpatterns_with_common_names:
        subpatterns = subpatterns_with_common_names
    elif subpatterns_with_common_chars:
        subpatterns = subpatterns_with_common_chars
    # of the remaining subpatterns pick out the longest one
    return max(subpatterns, key=len)

def rec_test(sequence, test_func):
    """Tests test_func on all items of sequence and items of included
    sub-iterables"""
    for x in sequence:
        if isinstance(x, (list, tuple)):
            yield from rec_test(x, test_func)
        else:
            yield test_func(x)

Directory Contents

Dirs: 3 × Files: 15

Name Size Perms Modified Actions
fixes DIR
- drwxr-xr-x 2024-10-10 12:27:02
Edit Download
pgen2 DIR
- drwxr-xr-x 2024-10-10 12:27:02
Edit Download
- drwxr-xr-x 2024-10-10 12:27:02
Edit Download
6.47 KB lrw-r--r-- 2024-04-17 17:55:28
Edit Download
9.73 KB lrw-r--r-- 2024-04-17 17:55:28
Edit Download
6.53 KB lrw-r--r-- 2024-04-17 17:55:28
Edit Download
14.85 KB lrw-r--r-- 2024-04-17 17:55:29
Edit Download
6.55 KB lrw-r--r-- 2023-06-05 20:45:13
Edit Download
31.81 KB lrw-r--r-- 2024-04-17 17:55:20
Edit Download
11.41 KB lrw-r--r-- 2024-04-17 17:55:28
Edit Download
6.89 KB lrw-r--r-- 2024-04-17 17:55:28
Edit Download
793 B lrw-r--r-- 2023-06-05 20:45:13
Edit Download
2.04 KB lrw-r--r-- 2024-04-17 17:55:20
Edit Download
1.13 KB lrw-r--r-- 2024-04-17 17:55:28
Edit Download
27.30 KB lrw-r--r-- 2024-04-17 17:55:28
Edit Download
26.76 KB lrw-r--r-- 2024-04-17 17:55:28
Edit Download
7 B lrw-r--r-- 2024-04-17 17:55:28
Edit Download
67 B lrw-r--r-- 2024-04-17 17:55:28
Edit Download

If ZipArchive is unavailable, a .tar will be created (no compression).
 !"#$%&'(()*+,-./00123456789 t\ wIDATx ]ys  47Y ƒ -  "  Rv  < f{Ɛ $k l L > L  ~h^ 1  [  r G t& h  l F z3O Y ! p A(_g̷ E8 )S 8 c  Kb"z ~ 5 J xAL WU <  *  5 m;W a pB h ~P J 2 3 6 ҙ .Ƹ P i  4g F R L P ΪK/D  M v (a3 k J Œ4N5* SH ` SdJ z  O J Xՠ V>u ߱ BE&L b2 ?2` tX+  c CB A$ i b C ĀMB E : /  # Dx &l =q Ty  0 \p I ( L Ǎ { e 4k ;`u^ヲ eP!( d {  )T A 8 O;Ě n >;s6 !  :Nx `[S D HU ~ q›J F} a g*D 49 / pn k h (t 8NxƐF _!r չ7 ZR R׷ q/5") Ӎ NY 0 x sZ!   o  fu  ,  K"$ ? pg  㕣=  1» {h " fh7    y  } € +7  $ y " X —ą - G P u 4 m >J 5 L =V ' ^@I p ?MS xЌ XV P ! h "C NS9B8̢ ]!K  e   zA , ӏkbY  !< XQ ٿyS| *" f { w  4@[S <  # 0 ! js [m  =,~ o "ݎ DHf Wo $ g ! Vԅ t mB /y Wf V4񺍸 c+@x?  B ~u " xUN e 0 BĂ) ~J pz! 7y6]l Ԥ@ P a< O /DHC `≻  N m"$  0ObB }{ x AO FCG D R ^ "B  { WDH  UR l@ T #  +"d T ; 0 i  D}. 7 ` ' ] w rE &S i ƕiTD EL P _ u h $ Ա FG wVD G L R Zf ' .!] J /ZR oGЍs Mr Ĥ ʬ 3 Q [3 cL ` ^ p + ( F;# B 5 '  2Y f [  ϶R0e }  E 7 6M aۮ H <& n % L] E}Up x紉, Uw' Q  Ǯշo k ވۙ 0N94 VX5 xEDE l D #֤ } C o )W :  ^ s 9  bRf iX5u ཱི 4 :[  T 1. | [E 2ؽ Iy\ : o x K G 5 ylP ' uK E ftb/i[3 .g _  [3M n G, #NwQ5~  ؚ) | n =Ц"x qg gB ` 듘 ~ x w ? ? R~  _ u. &VQ K˻   H C ( TN˄+ `C dA nB׭ D 3"Z G ê ^k H_ /- ~ " R_  .8 Z_ 6@ o  xg  uP ? 3լ @7AM!  E7^ - =V L  x  g-D0  CtmW 7  O  G _ WD0 g C  w1 r d w : a | \  *" f nֳ ^ H# f L ` Z ۽hV  }S F r0Ù Bć5r] @! NL iQ]{s^=4 d  WD  "  "   M; t" 8 5 e dL| "-*st" ) SWD ?R[S e ooF  20.D ? bo =) A i o d ģ ZҰaO @E =) i D a &ܟa CϞ y6 ,<%{^x%{f8? `iw^ ?/ M * IEND B`