2363d6de43
git-svn-id: http://google-refine.googlecode.com/svn/trunk@517 7d457c2a-affb-35e4-300a-418c747d4874
557 lines
19 KiB
Python
557 lines
19 KiB
Python
"""Utilities to support packages."""
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# NOTE: This module must remain compatible with Python 2.3, as it is shared
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# by setuptools for distribution with Python 2.3 and up.
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import os
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import sys
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import imp
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import os.path
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from types import ModuleType
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from org.python.core import imp as _imp, BytecodeLoader
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__all__ = [
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'get_importer', 'iter_importers', 'get_loader', 'find_loader',
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'walk_packages', 'iter_modules',
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'ImpImporter', 'ImpLoader', 'read_code', 'extend_path',
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]
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# equivalent to CPythonLib's pkgutil.read_code except that we need
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# diff args to pass into our underlying imp implementation, as
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# accessed by _imp here
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def read_jython_code(fullname, file, filename):
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data = _imp.readCode(filename, file, False)
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return BytecodeLoader.makeCode(fullname + "$py", data, filename)
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def simplegeneric(func):
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"""Make a trivial single-dispatch generic function"""
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registry = {}
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def wrapper(*args, **kw):
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ob = args[0]
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try:
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cls = ob.__class__
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except AttributeError:
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cls = type(ob)
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try:
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mro = cls.__mro__
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except AttributeError:
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try:
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class cls(cls, object):
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pass
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mro = cls.__mro__[1:]
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except TypeError:
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mro = object, # must be an ExtensionClass or some such :(
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for t in mro:
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if t in registry:
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return registry[t](*args, **kw)
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else:
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return func(*args, **kw)
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try:
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wrapper.__name__ = func.__name__
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except (TypeError, AttributeError):
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pass # Python 2.3 doesn't allow functions to be renamed
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def register(typ, func=None):
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if func is None:
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return lambda f: register(typ, f)
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registry[typ] = func
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return func
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wrapper.__dict__ = func.__dict__
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wrapper.__doc__ = func.__doc__
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wrapper.register = register
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return wrapper
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def walk_packages(path=None, prefix='', onerror=None):
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"""Yields (module_loader, name, ispkg) for all modules recursively
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on path, or, if path is None, all accessible modules.
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'path' should be either None or a list of paths to look for
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modules in.
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'prefix' is a string to output on the front of every module name
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on output.
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Note that this function must import all *packages* (NOT all
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modules!) on the given path, in order to access the __path__
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attribute to find submodules.
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'onerror' is a function which gets called with one argument (the
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name of the package which was being imported) if any exception
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occurs while trying to import a package. If no onerror function is
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supplied, ImportErrors are caught and ignored, while all other
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exceptions are propagated, terminating the search.
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Examples:
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# list all modules python can access
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walk_packages()
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# list all submodules of ctypes
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walk_packages(ctypes.__path__, ctypes.__name__+'.')
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"""
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def seen(p, m={}):
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if p in m:
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return True
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m[p] = True
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for importer, name, ispkg in iter_modules(path, prefix):
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yield importer, name, ispkg
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if ispkg:
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try:
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__import__(name)
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except ImportError:
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if onerror is not None:
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onerror(name)
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except Exception:
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if onerror is not None:
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onerror(name)
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else:
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raise
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else:
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path = getattr(sys.modules[name], '__path__', None) or []
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# don't traverse path items we've seen before
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path = [p for p in path if not seen(p)]
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for item in walk_packages(path, name+'.', onerror):
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yield item
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def iter_modules(path=None, prefix=''):
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"""Yields (module_loader, name, ispkg) for all submodules on path,
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or, if path is None, all top-level modules on sys.path.
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'path' should be either None or a list of paths to look for
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modules in.
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'prefix' is a string to output on the front of every module name
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on output.
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"""
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if path is None:
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importers = iter_importers()
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else:
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importers = map(get_importer, path)
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yielded = {}
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for i in importers:
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for name, ispkg in iter_importer_modules(i, prefix):
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if name not in yielded:
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yielded[name] = 1
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yield i, name, ispkg
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#@simplegeneric
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def iter_importer_modules(importer, prefix=''):
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if not hasattr(importer, 'iter_modules'):
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return []
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return importer.iter_modules(prefix)
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iter_importer_modules = simplegeneric(iter_importer_modules)
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class ImpImporter:
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"""PEP 302 Importer that wraps Python's "classic" import algorithm
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ImpImporter(dirname) produces a PEP 302 importer that searches that
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directory. ImpImporter(None) produces a PEP 302 importer that searches
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the current sys.path, plus any modules that are frozen or built-in.
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Note that ImpImporter does not currently support being used by placement
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on sys.meta_path.
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"""
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def __init__(self, path=None):
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self.path = path
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def find_module(self, fullname, path=None):
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# Note: we ignore 'path' argument since it is only used via meta_path
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subname = fullname.split(".")[-1]
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if subname != fullname and self.path is None:
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return None
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if self.path is None:
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path = None
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else:
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path = [os.path.realpath(self.path)]
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try:
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file, filename, etc = imp.find_module(subname, path)
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except ImportError:
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return None
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return ImpLoader(fullname, file, filename, etc)
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def iter_modules(self, prefix=''):
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if self.path is None or not os.path.isdir(self.path):
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return
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yielded = {}
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import inspect
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filenames = os.listdir(self.path)
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filenames.sort() # handle packages before same-named modules
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for fn in filenames:
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modname = inspect.getmodulename(fn)
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if modname=='__init__' or modname in yielded:
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continue
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path = os.path.join(self.path, fn)
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ispkg = False
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if not modname and os.path.isdir(path) and '.' not in fn:
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modname = fn
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for fn in os.listdir(path):
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subname = inspect.getmodulename(fn)
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if subname=='__init__':
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ispkg = True
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break
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else:
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continue # not a package
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if modname and '.' not in modname:
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yielded[modname] = 1
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yield prefix + modname, ispkg
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class ImpLoader:
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"""PEP 302 Loader that wraps Python's "classic" import algorithm
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"""
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code = source = None
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def __init__(self, fullname, file, filename, etc):
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self.file = file
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self.filename = filename
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self.fullname = fullname
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self.etc = etc
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def load_module(self, fullname):
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self._reopen()
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try:
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mod = imp.load_module(fullname, self.file, self.filename, self.etc)
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finally:
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if self.file:
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self.file.close()
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# Note: we don't set __loader__ because we want the module to look
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# normal; i.e. this is just a wrapper for standard import machinery
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return mod
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def get_data(self, pathname):
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f = open(pathname, "rb")
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try:
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return f.read()
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finally:
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f.close()
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def _reopen(self):
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if self.file and self.file.closed:
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mod_type = self.etc[2]
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if mod_type==imp.PY_SOURCE:
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self.file = open(self.filename, 'rU')
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elif mod_type in (imp.PY_COMPILED, imp.C_EXTENSION):
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self.file = open(self.filename, 'rb')
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def _fix_name(self, fullname):
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if fullname is None:
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fullname = self.fullname
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elif fullname != self.fullname:
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raise ImportError("Loader for module %s cannot handle "
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"module %s" % (self.fullname, fullname))
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return fullname
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def is_package(self, fullname):
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fullname = self._fix_name(fullname)
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return self.etc[2]==imp.PKG_DIRECTORY
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def get_code(self, fullname=None):
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fullname = self._fix_name(fullname)
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if self.code is None:
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mod_type = self.etc[2]
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if mod_type==imp.PY_SOURCE:
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source = self.get_source(fullname)
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self.code = compile(source, self.filename, 'exec')
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elif mod_type==imp.PY_COMPILED:
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self._reopen()
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try:
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self.code = read_jython_code(fullname, self.file, self.filename)
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finally:
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self.file.close()
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elif mod_type==imp.PKG_DIRECTORY:
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self.code = self._get_delegate().get_code()
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return self.code
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def get_source(self, fullname=None):
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fullname = self._fix_name(fullname)
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if self.source is None:
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mod_type = self.etc[2]
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if mod_type==imp.PY_SOURCE:
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self._reopen()
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try:
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self.source = self.file.read()
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finally:
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self.file.close()
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elif mod_type==imp.PY_COMPILED:
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if os.path.exists(self.filename[:-1]):
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f = open(self.filename[:-1], 'rU')
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try:
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self.source = f.read()
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finally:
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f.close()
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elif mod_type==imp.PKG_DIRECTORY:
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self.source = self._get_delegate().get_source()
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return self.source
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def _get_delegate(self):
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return ImpImporter(self.filename).find_module('__init__')
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def get_filename(self, fullname=None):
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fullname = self._fix_name(fullname)
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mod_type = self.etc[2]
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if self.etc[2]==imp.PKG_DIRECTORY:
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return self._get_delegate().get_filename()
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elif self.etc[2] in (imp.PY_SOURCE, imp.PY_COMPILED, imp.C_EXTENSION):
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return self.filename
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return None
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try:
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import zipimport
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from zipimport import zipimporter
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def iter_zipimport_modules(importer, prefix=''):
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dirlist = zipimport._zip_directory_cache[importer.archive].keys()
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dirlist.sort()
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_prefix = importer.prefix
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plen = len(_prefix)
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yielded = {}
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import inspect
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for fn in dirlist:
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if not fn.startswith(_prefix):
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continue
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fn = fn[plen:].split(os.sep)
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if len(fn)==2 and fn[1].startswith('__init__.py'):
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if fn[0] not in yielded:
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yielded[fn[0]] = 1
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yield fn[0], True
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if len(fn)!=1:
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continue
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modname = inspect.getmodulename(fn[0])
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if modname=='__init__':
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continue
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if modname and '.' not in modname and modname not in yielded:
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yielded[modname] = 1
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yield prefix + modname, False
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iter_importer_modules.register(zipimporter, iter_zipimport_modules)
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except ImportError:
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pass
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def get_importer(path_item):
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"""Retrieve a PEP 302 importer for the given path item
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The returned importer is cached in sys.path_importer_cache
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if it was newly created by a path hook.
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If there is no importer, a wrapper around the basic import
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machinery is returned. This wrapper is never inserted into
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the importer cache (None is inserted instead).
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The cache (or part of it) can be cleared manually if a
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rescan of sys.path_hooks is necessary.
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"""
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try:
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importer = sys.path_importer_cache[path_item]
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except KeyError:
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for path_hook in sys.path_hooks:
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try:
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importer = path_hook(path_item)
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break
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except ImportError:
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pass
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else:
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importer = None
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sys.path_importer_cache.setdefault(path_item, importer)
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if importer is None:
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try:
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importer = ImpImporter(path_item)
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except ImportError:
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importer = None
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return importer
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def iter_importers(fullname=""):
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"""Yield PEP 302 importers for the given module name
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If fullname contains a '.', the importers will be for the package
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containing fullname, otherwise they will be importers for sys.meta_path,
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sys.path, and Python's "classic" import machinery, in that order. If
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the named module is in a package, that package is imported as a side
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effect of invoking this function.
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Non PEP 302 mechanisms (e.g. the Windows registry) used by the
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standard import machinery to find files in alternative locations
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are partially supported, but are searched AFTER sys.path. Normally,
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these locations are searched BEFORE sys.path, preventing sys.path
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entries from shadowing them.
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For this to cause a visible difference in behaviour, there must
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be a module or package name that is accessible via both sys.path
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and one of the non PEP 302 file system mechanisms. In this case,
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the emulation will find the former version, while the builtin
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import mechanism will find the latter.
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Items of the following types can be affected by this discrepancy:
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imp.C_EXTENSION, imp.PY_SOURCE, imp.PY_COMPILED, imp.PKG_DIRECTORY
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"""
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if fullname.startswith('.'):
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raise ImportError("Relative module names not supported")
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if '.' in fullname:
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# Get the containing package's __path__
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pkg = '.'.join(fullname.split('.')[:-1])
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if pkg not in sys.modules:
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__import__(pkg)
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path = getattr(sys.modules[pkg], '__path__', None) or []
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else:
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for importer in sys.meta_path:
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yield importer
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path = sys.path
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for item in path:
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yield get_importer(item)
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if '.' not in fullname:
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yield ImpImporter()
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def get_loader(module_or_name):
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"""Get a PEP 302 "loader" object for module_or_name
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If the module or package is accessible via the normal import
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mechanism, a wrapper around the relevant part of that machinery
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is returned. Returns None if the module cannot be found or imported.
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If the named module is not already imported, its containing package
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(if any) is imported, in order to establish the package __path__.
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This function uses iter_importers(), and is thus subject to the same
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limitations regarding platform-specific special import locations such
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as the Windows registry.
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"""
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if module_or_name in sys.modules:
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module_or_name = sys.modules[module_or_name]
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if isinstance(module_or_name, ModuleType):
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module = module_or_name
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loader = getattr(module, '__loader__', None)
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if loader is not None:
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return loader
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fullname = module.__name__
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elif module_or_name == sys:
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# Jython sys is not a real module; fake it here for now since
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# making it a module requires a fair amount of decoupling from
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# PySystemState
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fullname = "sys"
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else:
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fullname = module_or_name
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return find_loader(fullname)
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def find_loader(fullname):
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"""Find a PEP 302 "loader" object for fullname
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If fullname contains dots, path must be the containing package's __path__.
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Returns None if the module cannot be found or imported. This function uses
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iter_importers(), and is thus subject to the same limitations regarding
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platform-specific special import locations such as the Windows registry.
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"""
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for importer in iter_importers(fullname):
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loader = importer.find_module(fullname)
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if loader is not None:
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return loader
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return None
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def extend_path(path, name):
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"""Extend a package's path.
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Intended use is to place the following code in a package's __init__.py:
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from pkgutil import extend_path
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__path__ = extend_path(__path__, __name__)
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This will add to the package's __path__ all subdirectories of
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directories on sys.path named after the package. This is useful
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if one wants to distribute different parts of a single logical
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package as multiple directories.
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It also looks for *.pkg files beginning where * matches the name
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argument. This feature is similar to *.pth files (see site.py),
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except that it doesn't special-case lines starting with 'import'.
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A *.pkg file is trusted at face value: apart from checking for
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duplicates, all entries found in a *.pkg file are added to the
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path, regardless of whether they are exist the filesystem. (This
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is a feature.)
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If the input path is not a list (as is the case for frozen
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packages) it is returned unchanged. The input path is not
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modified; an extended copy is returned. Items are only appended
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to the copy at the end.
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It is assumed that sys.path is a sequence. Items of sys.path that
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are not (unicode or 8-bit) strings referring to existing
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directories are ignored. Unicode items of sys.path that cause
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errors when used as filenames may cause this function to raise an
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exception (in line with os.path.isdir() behavior).
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"""
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if not isinstance(path, list):
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# This could happen e.g. when this is called from inside a
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# frozen package. Return the path unchanged in that case.
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return path
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pname = os.path.join(*name.split('.')) # Reconstitute as relative path
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# Just in case os.extsep != '.'
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sname = os.extsep.join(name.split('.'))
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sname_pkg = sname + os.extsep + "pkg"
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init_py = "__init__" + os.extsep + "py"
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path = path[:] # Start with a copy of the existing path
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for dir in sys.path:
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if not isinstance(dir, basestring) or not os.path.isdir(dir):
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continue
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subdir = os.path.join(dir, pname)
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# XXX This may still add duplicate entries to path on
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# case-insensitive filesystems
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|
initfile = os.path.join(subdir, init_py)
|
|
if subdir not in path and os.path.isfile(initfile):
|
|
path.append(subdir)
|
|
# XXX Is this the right thing for subpackages like zope.app?
|
|
# It looks for a file named "zope.app.pkg"
|
|
pkgfile = os.path.join(dir, sname_pkg)
|
|
if os.path.isfile(pkgfile):
|
|
try:
|
|
f = open(pkgfile)
|
|
except IOError, msg:
|
|
sys.stderr.write("Can't open %s: %s\n" %
|
|
(pkgfile, msg))
|
|
else:
|
|
try:
|
|
for line in f:
|
|
line = line.rstrip('\n')
|
|
if not line or line.startswith('#'):
|
|
continue
|
|
path.append(line) # Don't check for existence!
|
|
finally:
|
|
f.close()
|
|
|
|
return path
|