553 lines
19 KiB
Python
553 lines
19 KiB
Python
#
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# Cython - Compilation-wide options and pragma declarations
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#
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from __future__ import absolute_import
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class ShouldBeFromDirective(object):
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known_directives = []
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def __init__(self, options_name, directive_name=None, disallow=False):
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self.options_name = options_name
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self.directive_name = directive_name or options_name
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self.disallow = disallow
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self.known_directives.append(self)
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def __nonzero__(self):
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self._bad_access()
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def __int__(self):
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self._bad_access()
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def _bad_access(self):
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raise RuntimeError(repr(self))
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def __repr__(self):
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return (
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"Illegal access of '%s' from Options module rather than directive '%s'"
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% (self.options_name, self.directive_name))
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"""
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The members of this module are documented using autodata in
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Cython/docs/src/reference/compilation.rst.
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See http://www.sphinx-doc.org/en/master/ext/autodoc.html#directive-autoattribute
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for how autodata works.
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Descriptions of those members should start with a #:
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Donc forget to keep the docs in sync by removing and adding
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the members in both this file and the .rst file.
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"""
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#: Whether or not to include docstring in the Python extension. If False, the binary size
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#: will be smaller, but the ``__doc__`` attribute of any class or function will be an
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#: empty string.
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docstrings = True
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#: Embed the source code position in the docstrings of functions and classes.
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embed_pos_in_docstring = False
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#: Copy the original source code line by line into C code comments
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#: in the generated code file to help with understanding the output.
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#: This is also required for coverage analysis.
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emit_code_comments = True
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# undocumented
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pre_import = None
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#: Decref global variables in each module on exit for garbage collection.
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#: 0: None, 1+: interned objects, 2+: cdef globals, 3+: types objects
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#: Mostly for reducing noise in Valgrind as it typically executes at process exit
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#: (when all memory will be reclaimed anyways).
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#: Note that directly or indirectly executed cleanup code that makes use of global
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#: variables or types may no longer be safe when enabling the respective level since
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#: there is no guaranteed order in which the (reference counted) objects will
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#: be cleaned up. The order can change due to live references and reference cycles.
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generate_cleanup_code = False
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#: Should tp_clear() set object fields to None instead of clearing them to NULL?
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clear_to_none = True
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#: Generate an annotated HTML version of the input source files for debugging and optimisation purposes.
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#: This has the same effect as the ``annotate`` argument in :func:`cythonize`.
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annotate = False
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# When annotating source files in HTML, include coverage information from
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# this file.
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annotate_coverage_xml = None
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#: This will abort the compilation on the first error occurred rather than trying
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#: to keep going and printing further error messages.
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fast_fail = False
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#: Turn all warnings into errors.
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warning_errors = False
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#: Make unknown names an error. Python raises a NameError when
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#: encountering unknown names at runtime, whereas this option makes
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#: them a compile time error. If you want full Python compatibility,
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#: you should disable this option and also 'cache_builtins'.
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error_on_unknown_names = True
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#: Make uninitialized local variable reference a compile time error.
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#: Python raises UnboundLocalError at runtime, whereas this option makes
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#: them a compile time error. Note that this option affects only variables
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#: of "python object" type.
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error_on_uninitialized = True
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#: This will convert statements of the form ``for i in range(...)``
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#: to ``for i from ...`` when ``i`` is a C integer type, and the direction
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#: (i.e. sign of step) can be determined.
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#: WARNING: This may change the semantics if the range causes assignment to
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#: i to overflow. Specifically, if this option is set, an error will be
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#: raised before the loop is entered, whereas without this option the loop
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#: will execute until an overflowing value is encountered.
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convert_range = True
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#: Perform lookups on builtin names only once, at module initialisation
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#: time. This will prevent the module from getting imported if a
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#: builtin name that it uses cannot be found during initialisation.
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#: Default is True.
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#: Note that some legacy builtins are automatically remapped
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#: from their Python 2 names to their Python 3 names by Cython
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#: when building in Python 3.x,
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#: so that they do not get in the way even if this option is enabled.
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cache_builtins = True
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#: Generate branch prediction hints to speed up error handling etc.
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gcc_branch_hints = True
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#: Enable this to allow one to write ``your_module.foo = ...`` to overwrite the
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#: definition if the cpdef function foo, at the cost of an extra dictionary
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#: lookup on every call.
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#: If this is false it generates only the Python wrapper and no override check.
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lookup_module_cpdef = False
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#: Whether or not to embed the Python interpreter, for use in making a
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#: standalone executable or calling from external libraries.
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#: This will provide a C function which initialises the interpreter and
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#: executes the body of this module.
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#: See `this demo <https://github.com/cython/cython/tree/master/Demos/embed>`_
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#: for a concrete example.
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#: If true, the initialisation function is the C main() function, but
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#: this option can also be set to a non-empty string to provide a function name explicitly.
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#: Default is False.
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embed = None
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# In previous iterations of Cython, globals() gave the first non-Cython module
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# globals in the call stack. Sage relies on this behavior for variable injection.
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old_style_globals = ShouldBeFromDirective('old_style_globals')
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#: Allows cimporting from a pyx file without a pxd file.
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cimport_from_pyx = False
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#: Maximum number of dimensions for buffers -- set lower than number of
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#: dimensions in numpy, as
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#: slices are passed by value and involve a lot of copying.
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buffer_max_dims = 8
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#: Number of function closure instances to keep in a freelist (0: no freelists)
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closure_freelist_size = 8
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def get_directive_defaults():
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# To add an item to this list, all accesses should be changed to use the new
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# directive, and the global option itself should be set to an instance of
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# ShouldBeFromDirective.
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for old_option in ShouldBeFromDirective.known_directives:
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value = globals().get(old_option.options_name)
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assert old_option.directive_name in _directive_defaults
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if not isinstance(value, ShouldBeFromDirective):
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if old_option.disallow:
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raise RuntimeError(
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"Option '%s' must be set from directive '%s'" % (
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old_option.option_name, old_option.directive_name))
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else:
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# Warn?
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_directive_defaults[old_option.directive_name] = value
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return _directive_defaults
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# Declare compiler directives
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_directive_defaults = {
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'boundscheck' : True,
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'nonecheck' : False,
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'initializedcheck' : True,
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'embedsignature' : False,
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'auto_cpdef': False,
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'auto_pickle': None,
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'cdivision': False, # was True before 0.12
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'cdivision_warnings': False,
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'c_api_binop_methods': True,
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'cpow': True,
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'overflowcheck': False,
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'overflowcheck.fold': True,
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'always_allow_keywords': False,
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'allow_none_for_extension_args': True,
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'wraparound' : True,
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'ccomplex' : False, # use C99/C++ for complex types and arith
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'callspec' : "",
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'nogil' : False,
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'profile': False,
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'linetrace': False,
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'emit_code_comments': True, # copy original source code into C code comments
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'annotation_typing': True, # read type declarations from Python function annotations
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'infer_types': None,
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'infer_types.verbose': False,
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'autotestdict': True,
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'autotestdict.cdef': False,
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'autotestdict.all': False,
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'language_level': None,
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'fast_getattr': False, # Undocumented until we come up with a better way to handle this everywhere.
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'py2_import': False, # For backward compatibility of Cython's source code in Py3 source mode
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'preliminary_late_includes_cy28': False, # Temporary directive in 0.28, to be removed in a later version (see GH#2079).
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'iterable_coroutine': False, # Make async coroutines backwards compatible with the old asyncio yield-from syntax.
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'c_string_type': 'bytes',
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'c_string_encoding': '',
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'type_version_tag': True, # enables Py_TPFLAGS_HAVE_VERSION_TAG on extension types
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'unraisable_tracebacks': True,
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'old_style_globals': False,
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'np_pythran': False,
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'fast_gil': False,
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# set __file__ and/or __path__ to known source/target path at import time (instead of not having them available)
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'set_initial_path' : None, # SOURCEFILE or "/full/path/to/module"
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'warn': None,
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'warn.undeclared': False,
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'warn.unreachable': True,
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'warn.maybe_uninitialized': False,
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'warn.unused': False,
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'warn.unused_arg': False,
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'warn.unused_result': False,
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'warn.multiple_declarators': True,
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# optimizations
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'optimize.inline_defnode_calls': True,
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'optimize.unpack_method_calls': True, # increases code size when True
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'optimize.unpack_method_calls_in_pyinit': False, # uselessly increases code size when True
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'optimize.use_switch': True,
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# remove unreachable code
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'remove_unreachable': True,
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# control flow debug directives
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'control_flow.dot_output': "", # Graphviz output filename
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'control_flow.dot_annotate_defs': False, # Annotate definitions
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# test support
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'test_assert_path_exists' : [],
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'test_fail_if_path_exists' : [],
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# experimental, subject to change
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'binding': None,
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'formal_grammar': False,
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}
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# Extra warning directives
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extra_warnings = {
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'warn.maybe_uninitialized': True,
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'warn.unreachable': True,
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'warn.unused': True,
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}
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def one_of(*args):
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def validate(name, value):
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if value not in args:
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raise ValueError("%s directive must be one of %s, got '%s'" % (
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name, args, value))
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else:
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return value
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return validate
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def normalise_encoding_name(option_name, encoding):
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"""
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>>> normalise_encoding_name('c_string_encoding', 'ascii')
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'ascii'
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>>> normalise_encoding_name('c_string_encoding', 'AsCIi')
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'ascii'
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>>> normalise_encoding_name('c_string_encoding', 'us-ascii')
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'ascii'
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>>> normalise_encoding_name('c_string_encoding', 'utF8')
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'utf8'
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>>> normalise_encoding_name('c_string_encoding', 'utF-8')
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'utf8'
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>>> normalise_encoding_name('c_string_encoding', 'deFAuLT')
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'default'
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>>> normalise_encoding_name('c_string_encoding', 'default')
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'default'
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>>> normalise_encoding_name('c_string_encoding', 'SeriousLyNoSuch--Encoding')
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'SeriousLyNoSuch--Encoding'
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"""
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if not encoding:
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return ''
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if encoding.lower() in ('default', 'ascii', 'utf8'):
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return encoding.lower()
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import codecs
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try:
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decoder = codecs.getdecoder(encoding)
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except LookupError:
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return encoding # may exists at runtime ...
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for name in ('ascii', 'utf8'):
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if codecs.getdecoder(name) == decoder:
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return name
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return encoding
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# Override types possibilities above, if needed
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directive_types = {
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'language_level': str, # values can be None/2/3/'3str', where None == 2+warning
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'auto_pickle': bool,
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'locals': dict,
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'final' : bool, # final cdef classes and methods
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'nogil' : bool,
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'internal' : bool, # cdef class visibility in the module dict
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'infer_types' : bool, # values can be True/None/False
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'binding' : bool,
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'cfunc' : None, # decorators do not take directive value
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'ccall' : None,
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'inline' : None,
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'staticmethod' : None,
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'cclass' : None,
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'no_gc_clear' : bool,
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'no_gc' : bool,
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'returns' : type,
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'exceptval': type, # actually (type, check=True/False), but has its own parser
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'set_initial_path': str,
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'freelist': int,
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'c_string_type': one_of('bytes', 'bytearray', 'str', 'unicode'),
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'c_string_encoding': normalise_encoding_name,
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'cpow': bool
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}
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for key, val in _directive_defaults.items():
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if key not in directive_types:
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directive_types[key] = type(val)
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directive_scopes = { # defaults to available everywhere
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# 'module', 'function', 'class', 'with statement'
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'auto_pickle': ('module', 'cclass'),
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'final' : ('cclass', 'function'),
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'nogil' : ('function', 'with statement'),
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'inline' : ('function',),
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'cfunc' : ('function', 'with statement'),
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'ccall' : ('function', 'with statement'),
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'returns' : ('function',),
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'exceptval' : ('function',),
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'locals' : ('function',),
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'staticmethod' : ('function',), # FIXME: analysis currently lacks more specific function scope
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'no_gc_clear' : ('cclass',),
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'no_gc' : ('cclass',),
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'internal' : ('cclass',),
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'cclass' : ('class', 'cclass', 'with statement'),
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'autotestdict' : ('module',),
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'autotestdict.all' : ('module',),
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'autotestdict.cdef' : ('module',),
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'set_initial_path' : ('module',),
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'test_assert_path_exists' : ('function', 'class', 'cclass'),
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'test_fail_if_path_exists' : ('function', 'class', 'cclass'),
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'freelist': ('cclass',),
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'emit_code_comments': ('module',),
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'annotation_typing': ('module',), # FIXME: analysis currently lacks more specific function scope
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# Avoid scope-specific to/from_py_functions for c_string.
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'c_string_type': ('module',),
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'c_string_encoding': ('module',),
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'type_version_tag': ('module', 'cclass'),
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'language_level': ('module',),
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# globals() could conceivably be controlled at a finer granularity,
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# but that would complicate the implementation
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'old_style_globals': ('module',),
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'np_pythran': ('module',),
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'fast_gil': ('module',),
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'iterable_coroutine': ('module', 'function'),
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}
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def parse_directive_value(name, value, relaxed_bool=False):
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"""
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Parses value as an option value for the given name and returns
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the interpreted value. None is returned if the option does not exist.
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>>> print(parse_directive_value('nonexisting', 'asdf asdfd'))
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None
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>>> parse_directive_value('boundscheck', 'True')
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True
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>>> parse_directive_value('boundscheck', 'true')
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Traceback (most recent call last):
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...
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ValueError: boundscheck directive must be set to True or False, got 'true'
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>>> parse_directive_value('c_string_encoding', 'us-ascii')
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'ascii'
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>>> parse_directive_value('c_string_type', 'str')
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'str'
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>>> parse_directive_value('c_string_type', 'bytes')
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'bytes'
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>>> parse_directive_value('c_string_type', 'bytearray')
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'bytearray'
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>>> parse_directive_value('c_string_type', 'unicode')
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'unicode'
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>>> parse_directive_value('c_string_type', 'unnicode')
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Traceback (most recent call last):
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ValueError: c_string_type directive must be one of ('bytes', 'bytearray', 'str', 'unicode'), got 'unnicode'
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"""
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type = directive_types.get(name)
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if not type:
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return None
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orig_value = value
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if type is bool:
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value = str(value)
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if value == 'True':
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return True
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if value == 'False':
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return False
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if relaxed_bool:
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value = value.lower()
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if value in ("true", "yes"):
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return True
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elif value in ("false", "no"):
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return False
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raise ValueError("%s directive must be set to True or False, got '%s'" % (
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name, orig_value))
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elif type is int:
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try:
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return int(value)
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except ValueError:
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raise ValueError("%s directive must be set to an integer, got '%s'" % (
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name, orig_value))
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elif type is str:
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return str(value)
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elif callable(type):
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return type(name, value)
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else:
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assert False
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def parse_directive_list(s, relaxed_bool=False, ignore_unknown=False,
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current_settings=None):
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"""
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Parses a comma-separated list of pragma options. Whitespace
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is not considered.
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>>> parse_directive_list(' ')
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{}
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>>> (parse_directive_list('boundscheck=True') ==
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... {'boundscheck': True})
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True
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>>> parse_directive_list(' asdf')
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Traceback (most recent call last):
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...
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ValueError: Expected "=" in option "asdf"
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>>> parse_directive_list('boundscheck=hey')
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Traceback (most recent call last):
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...
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ValueError: boundscheck directive must be set to True or False, got 'hey'
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>>> parse_directive_list('unknown=True')
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Traceback (most recent call last):
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...
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ValueError: Unknown option: "unknown"
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>>> warnings = parse_directive_list('warn.all=True')
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>>> len(warnings) > 1
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True
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>>> sum(warnings.values()) == len(warnings) # all true.
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True
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"""
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if current_settings is None:
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result = {}
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else:
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result = current_settings
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for item in s.split(','):
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item = item.strip()
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if not item:
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continue
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if '=' not in item:
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raise ValueError('Expected "=" in option "%s"' % item)
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name, value = [s.strip() for s in item.strip().split('=', 1)]
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if name not in _directive_defaults:
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found = False
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if name.endswith('.all'):
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prefix = name[:-3]
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for directive in _directive_defaults:
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if directive.startswith(prefix):
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found = True
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parsed_value = parse_directive_value(directive, value, relaxed_bool=relaxed_bool)
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result[directive] = parsed_value
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if not found and not ignore_unknown:
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raise ValueError('Unknown option: "%s"' % name)
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else:
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parsed_value = parse_directive_value(name, value, relaxed_bool=relaxed_bool)
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result[name] = parsed_value
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return result
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def parse_variable_value(value):
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"""
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|
Parses value as an option value for the given name and returns
|
|
the interpreted value.
|
|
|
|
>>> parse_variable_value('True')
|
|
True
|
|
>>> parse_variable_value('true')
|
|
'true'
|
|
>>> parse_variable_value('us-ascii')
|
|
'us-ascii'
|
|
>>> parse_variable_value('str')
|
|
'str'
|
|
>>> parse_variable_value('123')
|
|
123
|
|
>>> parse_variable_value('1.23')
|
|
1.23
|
|
|
|
"""
|
|
if value == "True":
|
|
return True
|
|
elif value == "False":
|
|
return False
|
|
elif value == "None":
|
|
return None
|
|
elif value.isdigit():
|
|
return int(value)
|
|
else:
|
|
try:
|
|
value = float(value)
|
|
except Exception:
|
|
# Not a float
|
|
pass
|
|
return value
|
|
|
|
|
|
def parse_compile_time_env(s, current_settings=None):
|
|
"""
|
|
Parses a comma-separated list of pragma options. Whitespace
|
|
is not considered.
|
|
|
|
>>> parse_compile_time_env(' ')
|
|
{}
|
|
>>> (parse_compile_time_env('HAVE_OPENMP=True') ==
|
|
... {'HAVE_OPENMP': True})
|
|
True
|
|
>>> parse_compile_time_env(' asdf')
|
|
Traceback (most recent call last):
|
|
...
|
|
ValueError: Expected "=" in option "asdf"
|
|
>>> parse_compile_time_env('NUM_THREADS=4') == {'NUM_THREADS': 4}
|
|
True
|
|
>>> parse_compile_time_env('unknown=anything') == {'unknown': 'anything'}
|
|
True
|
|
"""
|
|
if current_settings is None:
|
|
result = {}
|
|
else:
|
|
result = current_settings
|
|
for item in s.split(','):
|
|
item = item.strip()
|
|
if not item:
|
|
continue
|
|
if '=' not in item:
|
|
raise ValueError('Expected "=" in option "%s"' % item)
|
|
name, value = [s.strip() for s in item.split('=', 1)]
|
|
result[name] = parse_variable_value(value)
|
|
return result
|