2020-10-22 21:42:51 -03:00
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from collections import namedtuple
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2020-11-20 18:39:28 -04:00
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import os.path
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2020-10-22 21:42:51 -03:00
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2020-11-20 18:39:28 -04:00
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from c_common import fsutil
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2020-10-22 21:42:51 -03:00
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from c_common.clsutil import classonly
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import c_common.misc as _misc
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from c_parser.info import (
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KIND,
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HighlevelParsedItem,
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Declaration,
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TypeDeclaration,
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2020-10-30 18:46:52 -03:00
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)
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from c_parser.match import (
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is_type_decl,
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)
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from .match import (
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is_process_global,
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)
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IGNORED = _misc.Labeled('IGNORED')
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UNKNOWN = _misc.Labeled('UNKNOWN')
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class SystemType(TypeDeclaration):
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def __init__(self, name):
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super().__init__(None, name, None, None, _shortkey=name)
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class Analyzed:
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_locked = False
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@classonly
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def is_target(cls, raw):
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if isinstance(raw, HighlevelParsedItem):
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return True
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else:
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return False
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@classonly
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def from_raw(cls, raw, **extra):
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if isinstance(raw, cls):
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if extra:
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# XXX ?
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raise NotImplementedError((raw, extra))
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#return cls(raw.item, raw.typedecl, **raw._extra, **extra)
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else:
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return info
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elif cls.is_target(raw):
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return cls(raw, **extra)
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else:
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raise NotImplementedError((raw, extra))
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@classonly
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def from_resolved(cls, item, resolved, **extra):
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if isinstance(resolved, TypeDeclaration):
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return cls(item, typedecl=resolved, **extra)
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else:
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typedeps, extra = cls._parse_raw_resolved(item, resolved, extra)
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if item.kind is KIND.ENUM:
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if typedeps:
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raise NotImplementedError((item, resolved, extra))
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elif not typedeps:
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raise NotImplementedError((item, resolved, extra))
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return cls(item, typedeps, **extra or {})
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@classonly
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def _parse_raw_resolved(cls, item, resolved, extra_extra):
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if resolved in (UNKNOWN, IGNORED):
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return resolved, None
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try:
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typedeps, extra = resolved
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except (TypeError, ValueError):
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typedeps = extra = None
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if extra:
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# The resolved data takes precedence.
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extra = dict(extra_extra, **extra)
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if isinstance(typedeps, TypeDeclaration):
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return typedeps, extra
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elif typedeps in (None, UNKNOWN):
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# It is still effectively unresolved.
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return UNKNOWN, extra
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elif None in typedeps or UNKNOWN in typedeps:
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# It is still effectively unresolved.
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return typedeps, extra
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elif any(not isinstance(td, TypeDeclaration) for td in typedeps):
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raise NotImplementedError((item, typedeps, extra))
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return typedeps, extra
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def __init__(self, item, typedecl=None, **extra):
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assert item is not None
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self.item = item
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if typedecl in (UNKNOWN, IGNORED):
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pass
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elif item.kind is KIND.STRUCT or item.kind is KIND.UNION:
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if isinstance(typedecl, TypeDeclaration):
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raise NotImplementedError(item, typedecl)
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elif typedecl is None:
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typedecl = UNKNOWN
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else:
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typedecl = [UNKNOWN if d is None else d for d in typedecl]
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elif typedecl is None:
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typedecl = UNKNOWN
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elif typedecl and not isinstance(typedecl, TypeDeclaration):
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# All the other decls have a single type decl.
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typedecl, = typedecl
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if typedecl is None:
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typedecl = UNKNOWN
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self.typedecl = typedecl
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self._extra = extra
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self._locked = True
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self._validate()
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def _validate(self):
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item = self.item
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extra = self._extra
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# Check item.
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if not isinstance(item, HighlevelParsedItem):
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raise ValueError(f'"item" must be a high-level parsed item, got {item!r}')
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# Check extra.
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for key, value in extra.items():
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if key.startswith('_'):
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raise ValueError(f'extra items starting with {"_"!r} not allowed, got {extra!r}')
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if hasattr(item, key) and not callable(getattr(item, key)):
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raise ValueError(f'extra cannot override item, got {value!r} for key {key!r}')
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def __repr__(self):
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kwargs = [
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f'item={self.item!r}',
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f'typedecl={self.typedecl!r}',
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*(f'{k}={v!r}' for k, v in self._extra.items())
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]
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return f'{type(self).__name__}({", ".join(kwargs)})'
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def __str__(self):
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try:
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return self._str
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except AttributeError:
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self._str, = self.render('line')
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return self._str
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def __hash__(self):
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return hash(self.item)
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def __eq__(self, other):
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if isinstance(other, Analyzed):
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return self.item == other.item
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elif isinstance(other, HighlevelParsedItem):
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return self.item == other
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elif type(other) is tuple:
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return self.item == other
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else:
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return NotImplemented
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def __gt__(self, other):
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if isinstance(other, Analyzed):
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return self.item > other.item
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elif isinstance(other, HighlevelParsedItem):
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return self.item > other
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elif type(other) is tuple:
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return self.item > other
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else:
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return NotImplemented
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def __dir__(self):
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names = set(super().__dir__())
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names.update(self._extra)
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names.remove('_locked')
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return sorted(names)
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def __getattr__(self, name):
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if name.startswith('_'):
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raise AttributeError(name)
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# The item takes precedence over the extra data (except if callable).
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try:
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value = getattr(self.item, name)
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if callable(value):
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raise AttributeError(name)
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except AttributeError:
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try:
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value = self._extra[name]
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except KeyError:
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pass
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else:
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# Speed things up the next time.
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self.__dict__[name] = value
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return value
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raise # re-raise
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else:
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return value
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def __setattr__(self, name, value):
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if self._locked and name != '_str':
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raise AttributeError(f'readonly ({name})')
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super().__setattr__(name, value)
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def __delattr__(self, name):
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if self._locked:
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raise AttributeError(f'readonly ({name})')
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super().__delattr__(name)
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@property
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def decl(self):
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if not isinstance(self.item, Declaration):
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raise AttributeError('decl')
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return self.item
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@property
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def signature(self):
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# XXX vartype...
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...
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@property
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def istype(self):
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return is_type_decl(self.item.kind)
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@property
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def is_known(self):
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if self.typedecl in (UNKNOWN, IGNORED):
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return False
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elif isinstance(self.typedecl, TypeDeclaration):
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return True
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else:
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return UNKNOWN not in self.typedecl
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2020-11-20 18:39:28 -04:00
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def fix_filename(self, relroot=fsutil.USE_CWD, **kwargs):
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self.item.fix_filename(relroot, **kwargs)
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return self
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def as_rowdata(self, columns=None):
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# XXX finish!
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return self.item.as_rowdata(columns)
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def render_rowdata(self, columns=None):
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# XXX finish!
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return self.item.render_rowdata(columns)
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def render(self, fmt='line', *, itemonly=False):
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if fmt == 'raw':
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yield repr(self)
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return
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rendered = self.item.render(fmt)
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if itemonly or not self._extra:
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yield from rendered
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return
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extra = self._render_extra(fmt)
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if not extra:
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yield from rendered
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elif fmt in ('brief', 'line'):
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rendered, = rendered
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extra, = extra
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yield f'{rendered}\t{extra}'
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elif fmt == 'summary':
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raise NotImplementedError(fmt)
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elif fmt == 'full':
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yield from rendered
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for line in extra:
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yield f'\t{line}'
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else:
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raise NotImplementedError(fmt)
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def _render_extra(self, fmt):
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if fmt in ('brief', 'line'):
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yield str(self._extra)
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else:
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raise NotImplementedError(fmt)
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class Analysis:
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_item_class = Analyzed
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@classonly
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def build_item(cls, info, resolved=None, **extra):
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if resolved is None:
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return cls._item_class.from_raw(info, **extra)
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else:
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return cls._item_class.from_resolved(info, resolved, **extra)
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@classmethod
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def from_results(cls, results):
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self = cls()
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for info, resolved in results:
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self._add_result(info, resolved)
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return self
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def __init__(self, items=None):
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self._analyzed = {type(self).build_item(item): None
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for item in items or ()}
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def __repr__(self):
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return f'{type(self).__name__}({list(self._analyzed.keys())})'
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def __iter__(self):
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#yield from self.types
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#yield from self.functions
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#yield from self.variables
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yield from self._analyzed
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def __len__(self):
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return len(self._analyzed)
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def __getitem__(self, key):
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if type(key) is int:
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for i, val in enumerate(self._analyzed):
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if i == key:
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return val
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else:
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raise IndexError(key)
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else:
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return self._analyzed[key]
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2020-11-20 18:39:28 -04:00
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def fix_filenames(self, relroot=fsutil.USE_CWD, **kwargs):
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if relroot and relroot is not fsutil.USE_CWD:
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relroot = os.path.abspath(relroot)
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for item in self._analyzed:
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item.fix_filename(relroot, fixroot=False, **kwargs)
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def _add_result(self, info, resolved):
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analyzed = type(self).build_item(info, resolved)
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self._analyzed[analyzed] = None
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return analyzed
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