Lichen

Annotated results.py

639:93254c89358b
2017-02-28 Paul Boddie Added testing of temporary result variable availability.
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#!/usr/bin/env python
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"""
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Result abstractions.
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Copyright (C) 2016, 2017 Paul Boddie <paul@boddie.org.uk>
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This program is free software; you can redistribute it and/or modify it under
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the terms of the GNU General Public License as published by the Free Software
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Foundation; either version 3 of the License, or (at your option) any later
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version.
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This program is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
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FOR A PARTICULAR PURPOSE.  See the GNU General Public License for more
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details.
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You should have received a copy of the GNU General Public License along with
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this program.  If not, see <http://www.gnu.org/licenses/>.
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"""
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from referencing import Reference
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# Classes representing inspection and translation observations.
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class Result:
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    "An abstract expression result."
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    def is_name(self):
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        return False
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    def is_global_name(self):
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        return False
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    def reference(self):
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        return None
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    def references(self):
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        return None
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    def access_location(self):
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        return None
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    def context_identity(self):
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        return None
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    def discards_temporary(self, test=True):
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        return None
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    def get_name(self):
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        return None
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    def get_origin(self):
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        return None
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    def static(self):
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        return None
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    def final(self):
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        return None
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    def has_kind(self, kinds):
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        return False
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class AccessRef(Result):
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    """
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    A reference to an attribute access that is generally only returned from a
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    processed access for possible initialiser resolution for assignments.
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    """
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    def __init__(self, original_name, attrnames, number):
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        self.original_name = original_name
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        self.attrnames = attrnames
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        self.number = number
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    def __repr__(self):
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        return "AccessRef(%r, %r, %r)" % (self.original_name, self.attrnames, self.number)
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class InvocationRef(Result):
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    "An invocation of a name reference."
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    def __init__(self, name_ref):
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        self.name_ref = name_ref
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    def reference(self):
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        origin = self.name_ref.get_origin()
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        if origin:
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            return Reference("<invoke>", origin)
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        else:
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            return Reference("<var>")
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    def __repr__(self):
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        return "InvocationRef(%r)" % self.name_ref
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class NameRef(Result):
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    "A reference to a name."
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    def __init__(self, name, expr=None, is_global=False):
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        self.name = name
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        self.expr = expr
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        self.is_global = is_global
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    def is_name(self):
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        return True
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    def is_global_name(self):
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        return self.is_global
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    def final(self):
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        return None
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    def __repr__(self):
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        return "NameRef(%r, %r, %r)" % (self.name, self.expr, self.is_global)
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class LocalNameRef(NameRef):
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    "A reference to a local name."
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    def __init__(self, name, number):
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        NameRef.__init__(self, name, is_global=False)
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        self.number = number
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    def __repr__(self):
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        return "LocalNameRef(%r, %r)" % (self.name, self.number)
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class ResolvedRef:
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    "A resolved reference mix-in."
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    def __init__(self, ref):
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        self.ref = ref
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    def reference(self):
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        return self.ref
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    def references(self):
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        return [self.ref]
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    def get_name(self):
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        return self.ref and self.ref.get_name() or None
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    def get_origin(self):
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        return self.ref and self.ref.get_origin() or None
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    def static(self):
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        return self.ref and self.ref.static() or None
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    def final(self):
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        return self.ref and self.ref.final() or None
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    def has_kind(self, kinds):
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        return self.ref and self.ref.has_kind(kinds)
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    def is_constant_alias(self):
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        return self.ref and self.ref.is_constant_alias()
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class ResolvedNameRef(ResolvedRef, NameRef):
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    "A resolved name-based reference."
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    def __init__(self, name, ref, expr=None, is_global=False):
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        NameRef.__init__(self, name, expr, is_global)
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        ResolvedRef.__init__(self, ref)
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    def __repr__(self):
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        return "ResolvedNameRef(%r, %r, %r, %r)" % (self.name, self.ref, self.expr, self.is_global)
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class ConstantValueRef(ResolvedNameRef):
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    "A constant reference representing a single literal value."
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    def __init__(self, name, ref, value, number=None):
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        ResolvedNameRef.__init__(self, name, ref)
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        self.value = value
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        self.number = number
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    def __repr__(self):
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        return "ConstantValueRef(%r, %r, %r, %r)" % (self.name, self.ref, self.value, self.number)
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class InstanceRef(ResolvedRef, Result):
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    "An instance reference."
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    def reference(self):
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        return self.ref
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    def __repr__(self):
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        return "InstanceRef(%r)" % self.ref
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class LiteralSequenceRef(ResolvedNameRef):
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    "A reference representing a sequence of values."
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    def __init__(self, name, ref, node, items=None):
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        ResolvedNameRef.__init__(self, name, ref)
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        self.node = node
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        self.items = items
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    def __repr__(self):
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        return "LiteralSequenceRef(%r, %r, %r, %r)" % (self.name, self.ref, self.node, self.items)
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class VariableRef(Result):
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    "A variable reference."
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    def __repr__(self):
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        return "VariableRef()"
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