mirror of https://github.com/python/cpython
866 lines
25 KiB
Python
866 lines
25 KiB
Python
"""This module includes tests of the code object representation.
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>>> def f(x):
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... def g(y):
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... return x + y
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... return g
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...
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>>> dump(f.__code__)
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name: f
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argcount: 1
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posonlyargcount: 0
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kwonlyargcount: 0
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names: ()
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varnames: ('x', 'g')
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cellvars: ('x',)
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freevars: ()
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nlocals: 2
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flags: 3
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consts: ('None', '<code object g>')
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>>> dump(f(4).__code__)
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name: g
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argcount: 1
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posonlyargcount: 0
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kwonlyargcount: 0
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names: ()
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varnames: ('y',)
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cellvars: ()
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freevars: ('x',)
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nlocals: 1
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flags: 19
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consts: ('None',)
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>>> def h(x, y):
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... a = x + y
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... b = x - y
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... c = a * b
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... return c
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...
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>>> dump(h.__code__)
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name: h
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argcount: 2
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posonlyargcount: 0
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kwonlyargcount: 0
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names: ()
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varnames: ('x', 'y', 'a', 'b', 'c')
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cellvars: ()
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freevars: ()
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nlocals: 5
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flags: 3
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consts: ('None',)
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>>> def attrs(obj):
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... print(obj.attr1)
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... print(obj.attr2)
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... print(obj.attr3)
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>>> dump(attrs.__code__)
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name: attrs
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argcount: 1
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posonlyargcount: 0
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kwonlyargcount: 0
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names: ('print', 'attr1', 'attr2', 'attr3')
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varnames: ('obj',)
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cellvars: ()
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freevars: ()
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nlocals: 1
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flags: 3
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consts: ('None',)
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>>> def optimize_away():
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... 'doc string'
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... 'not a docstring'
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... 53
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... 0x53
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>>> dump(optimize_away.__code__)
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name: optimize_away
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argcount: 0
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posonlyargcount: 0
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kwonlyargcount: 0
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names: ()
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varnames: ()
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cellvars: ()
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freevars: ()
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nlocals: 0
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flags: 3
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consts: ("'doc string'", 'None')
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>>> def keywordonly_args(a,b,*,k1):
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... return a,b,k1
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...
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>>> dump(keywordonly_args.__code__)
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name: keywordonly_args
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argcount: 2
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posonlyargcount: 0
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kwonlyargcount: 1
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names: ()
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varnames: ('a', 'b', 'k1')
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cellvars: ()
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freevars: ()
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nlocals: 3
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flags: 3
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consts: ('None',)
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>>> def posonly_args(a,b,/,c):
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... return a,b,c
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...
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>>> dump(posonly_args.__code__)
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name: posonly_args
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argcount: 3
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posonlyargcount: 2
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kwonlyargcount: 0
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names: ()
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varnames: ('a', 'b', 'c')
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cellvars: ()
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freevars: ()
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nlocals: 3
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flags: 3
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consts: ('None',)
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"""
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import copy
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import inspect
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import sys
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import threading
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import doctest
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import unittest
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import textwrap
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import weakref
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import dis
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try:
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import ctypes
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except ImportError:
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ctypes = None
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from test.support import (cpython_only,
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check_impl_detail, requires_debug_ranges,
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gc_collect)
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from test.support.script_helper import assert_python_ok
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from test.support import threading_helper
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from opcode import opmap, opname
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COPY_FREE_VARS = opmap['COPY_FREE_VARS']
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def consts(t):
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"""Yield a doctest-safe sequence of object reprs."""
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for elt in t:
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r = repr(elt)
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if r.startswith("<code object"):
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yield "<code object %s>" % elt.co_name
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else:
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yield r
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def dump(co):
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"""Print out a text representation of a code object."""
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for attr in ["name", "argcount", "posonlyargcount",
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"kwonlyargcount", "names", "varnames",
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"cellvars", "freevars", "nlocals", "flags"]:
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print("%s: %s" % (attr, getattr(co, "co_" + attr)))
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print("consts:", tuple(consts(co.co_consts)))
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# Needed for test_closure_injection below
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# Defined at global scope to avoid implicitly closing over __class__
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def external_getitem(self, i):
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return f"Foreign getitem: {super().__getitem__(i)}"
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class CodeTest(unittest.TestCase):
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@cpython_only
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def test_newempty(self):
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import _testcapi
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co = _testcapi.code_newempty("filename", "funcname", 15)
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self.assertEqual(co.co_filename, "filename")
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self.assertEqual(co.co_name, "funcname")
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self.assertEqual(co.co_firstlineno, 15)
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#Empty code object should raise, but not crash the VM
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with self.assertRaises(Exception):
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exec(co)
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@cpython_only
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def test_closure_injection(self):
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# From https://bugs.python.org/issue32176
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from types import FunctionType
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def create_closure(__class__):
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return (lambda: __class__).__closure__
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def new_code(c):
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'''A new code object with a __class__ cell added to freevars'''
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return c.replace(co_freevars=c.co_freevars + ('__class__',), co_code=bytes([COPY_FREE_VARS, 1])+c.co_code)
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def add_foreign_method(cls, name, f):
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code = new_code(f.__code__)
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assert not f.__closure__
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closure = create_closure(cls)
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defaults = f.__defaults__
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setattr(cls, name, FunctionType(code, globals(), name, defaults, closure))
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class List(list):
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pass
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add_foreign_method(List, "__getitem__", external_getitem)
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# Ensure the closure injection actually worked
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function = List.__getitem__
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class_ref = function.__closure__[0].cell_contents
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self.assertIs(class_ref, List)
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# Ensure the zero-arg super() call in the injected method works
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obj = List([1, 2, 3])
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self.assertEqual(obj[0], "Foreign getitem: 1")
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def test_constructor(self):
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def func(): pass
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co = func.__code__
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CodeType = type(co)
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# test code constructor
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CodeType(co.co_argcount,
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co.co_posonlyargcount,
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co.co_kwonlyargcount,
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co.co_nlocals,
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co.co_stacksize,
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co.co_flags,
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co.co_code,
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co.co_consts,
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co.co_names,
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co.co_varnames,
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co.co_filename,
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co.co_name,
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co.co_qualname,
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co.co_firstlineno,
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co.co_linetable,
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co.co_exceptiontable,
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co.co_freevars,
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co.co_cellvars)
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def test_qualname(self):
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self.assertEqual(
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CodeTest.test_qualname.__code__.co_qualname,
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CodeTest.test_qualname.__qualname__
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)
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def test_replace(self):
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def func():
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x = 1
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return x
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code = func.__code__
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# different co_name, co_varnames, co_consts
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def func2():
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y = 2
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z = 3
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return y
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code2 = func2.__code__
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for attr, value in (
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("co_argcount", 0),
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("co_posonlyargcount", 0),
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("co_kwonlyargcount", 0),
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("co_nlocals", 1),
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("co_stacksize", 1),
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("co_flags", code.co_flags | inspect.CO_COROUTINE),
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("co_firstlineno", 100),
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("co_code", code2.co_code),
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("co_consts", code2.co_consts),
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("co_names", ("myname",)),
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("co_varnames", ('spam',)),
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("co_freevars", ("freevar",)),
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("co_cellvars", ("cellvar",)),
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("co_filename", "newfilename"),
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("co_name", "newname"),
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("co_linetable", code2.co_linetable),
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):
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with self.subTest(attr=attr, value=value):
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new_code = code.replace(**{attr: value})
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self.assertEqual(getattr(new_code, attr), value)
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new_code = copy.replace(code, **{attr: value})
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self.assertEqual(getattr(new_code, attr), value)
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new_code = code.replace(co_varnames=code2.co_varnames,
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co_nlocals=code2.co_nlocals)
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self.assertEqual(new_code.co_varnames, code2.co_varnames)
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self.assertEqual(new_code.co_nlocals, code2.co_nlocals)
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new_code = copy.replace(code, co_varnames=code2.co_varnames,
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co_nlocals=code2.co_nlocals)
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self.assertEqual(new_code.co_varnames, code2.co_varnames)
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self.assertEqual(new_code.co_nlocals, code2.co_nlocals)
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def test_nlocals_mismatch(self):
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def func():
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x = 1
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return x
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co = func.__code__
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assert co.co_nlocals > 0;
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# First we try the constructor.
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CodeType = type(co)
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for diff in (-1, 1):
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with self.assertRaises(ValueError):
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CodeType(co.co_argcount,
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co.co_posonlyargcount,
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co.co_kwonlyargcount,
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# This is the only change.
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co.co_nlocals + diff,
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co.co_stacksize,
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co.co_flags,
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co.co_code,
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co.co_consts,
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co.co_names,
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co.co_varnames,
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co.co_filename,
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co.co_name,
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co.co_qualname,
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co.co_firstlineno,
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co.co_linetable,
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co.co_exceptiontable,
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co.co_freevars,
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co.co_cellvars,
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)
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# Then we try the replace method.
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with self.assertRaises(ValueError):
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co.replace(co_nlocals=co.co_nlocals - 1)
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with self.assertRaises(ValueError):
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co.replace(co_nlocals=co.co_nlocals + 1)
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def test_shrinking_localsplus(self):
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# Check that PyCode_NewWithPosOnlyArgs resizes both
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# localsplusnames and localspluskinds, if an argument is a cell.
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def func(arg):
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return lambda: arg
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code = func.__code__
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newcode = code.replace(co_name="func") # Should not raise SystemError
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self.assertEqual(code, newcode)
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def test_empty_linetable(self):
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def func():
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pass
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new_code = code = func.__code__.replace(co_linetable=b'')
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self.assertEqual(list(new_code.co_lines()), [])
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def test_co_lnotab_is_deprecated(self): # TODO: remove in 3.14
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def func():
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pass
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with self.assertWarns(DeprecationWarning):
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func.__code__.co_lnotab
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def test_invalid_bytecode(self):
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def foo():
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pass
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# assert that opcode 229 is invalid
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self.assertEqual(opname[229], '<229>')
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# change first opcode to 0xeb (=229)
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foo.__code__ = foo.__code__.replace(
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co_code=b'\xe5' + foo.__code__.co_code[1:])
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msg = "unknown opcode 229"
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with self.assertRaisesRegex(SystemError, msg):
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foo()
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@requires_debug_ranges()
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def test_co_positions_artificial_instructions(self):
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import dis
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namespace = {}
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exec(textwrap.dedent("""\
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try:
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1/0
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except Exception as e:
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exc = e
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"""), namespace)
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exc = namespace['exc']
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traceback = exc.__traceback__
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code = traceback.tb_frame.f_code
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artificial_instructions = []
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for instr, positions in zip(
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dis.get_instructions(code, show_caches=True),
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code.co_positions(),
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strict=True
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):
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# If any of the positions is None, then all have to
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# be None as well for the case above. There are still
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# some places in the compiler, where the artificial instructions
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# get assigned the first_lineno but they don't have other positions.
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# There is no easy way of inferring them at that stage, so for now
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# we don't support it.
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self.assertIn(positions.count(None), [0, 3, 4])
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if not any(positions):
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artificial_instructions.append(instr)
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self.assertEqual(
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[
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(instruction.opname, instruction.argval)
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for instruction in artificial_instructions
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],
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[
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("PUSH_EXC_INFO", None),
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("LOAD_CONST", None), # artificial 'None'
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("STORE_NAME", "e"), # XX: we know the location for this
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("DELETE_NAME", "e"),
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("RERAISE", 1),
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("COPY", 3),
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("POP_EXCEPT", None),
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("RERAISE", 1)
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]
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)
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def test_endline_and_columntable_none_when_no_debug_ranges(self):
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# Make sure that if `-X no_debug_ranges` is used, there is
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# minimal debug info
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code = textwrap.dedent("""
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def f():
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pass
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positions = f.__code__.co_positions()
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for line, end_line, column, end_column in positions:
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assert line == end_line
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assert column is None
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assert end_column is None
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""")
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assert_python_ok('-X', 'no_debug_ranges', '-c', code)
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def test_endline_and_columntable_none_when_no_debug_ranges_env(self):
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# Same as above but using the environment variable opt out.
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code = textwrap.dedent("""
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def f():
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pass
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positions = f.__code__.co_positions()
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for line, end_line, column, end_column in positions:
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assert line == end_line
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assert column is None
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assert end_column is None
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""")
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assert_python_ok('-c', code, PYTHONNODEBUGRANGES='1')
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# co_positions behavior when info is missing.
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@requires_debug_ranges()
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def test_co_positions_empty_linetable(self):
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def func():
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x = 1
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new_code = func.__code__.replace(co_linetable=b'')
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positions = new_code.co_positions()
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for line, end_line, column, end_column in positions:
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self.assertIsNone(line)
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self.assertEqual(end_line, new_code.co_firstlineno + 1)
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def test_code_equality(self):
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def f():
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try:
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a()
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except:
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b()
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else:
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c()
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finally:
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d()
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code_a = f.__code__
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code_b = code_a.replace(co_linetable=b"")
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code_c = code_a.replace(co_exceptiontable=b"")
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code_d = code_b.replace(co_exceptiontable=b"")
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self.assertNotEqual(code_a, code_b)
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self.assertNotEqual(code_a, code_c)
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self.assertNotEqual(code_a, code_d)
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self.assertNotEqual(code_b, code_c)
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self.assertNotEqual(code_b, code_d)
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self.assertNotEqual(code_c, code_d)
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def test_code_hash_uses_firstlineno(self):
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c1 = (lambda: 1).__code__
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c2 = (lambda: 1).__code__
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self.assertNotEqual(c1, c2)
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self.assertNotEqual(hash(c1), hash(c2))
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c3 = c1.replace(co_firstlineno=17)
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self.assertNotEqual(c1, c3)
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self.assertNotEqual(hash(c1), hash(c3))
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def test_code_hash_uses_order(self):
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# Swapping posonlyargcount and kwonlyargcount should change the hash.
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c = (lambda x, y, *, z=1, w=1: 1).__code__
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self.assertEqual(c.co_argcount, 2)
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self.assertEqual(c.co_posonlyargcount, 0)
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self.assertEqual(c.co_kwonlyargcount, 2)
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swapped = c.replace(co_posonlyargcount=2, co_kwonlyargcount=0)
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self.assertNotEqual(c, swapped)
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self.assertNotEqual(hash(c), hash(swapped))
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def test_code_hash_uses_bytecode(self):
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c = (lambda x, y: x + y).__code__
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d = (lambda x, y: x * y).__code__
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c1 = c.replace(co_code=d.co_code)
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self.assertNotEqual(c, c1)
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self.assertNotEqual(hash(c), hash(c1))
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def isinterned(s):
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return s is sys.intern(('_' + s + '_')[1:-1])
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class CodeConstsTest(unittest.TestCase):
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def find_const(self, consts, value):
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for v in consts:
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if v == value:
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return v
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self.assertIn(value, consts) # raises an exception
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self.fail('Should never be reached')
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def assertIsInterned(self, s):
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if not isinterned(s):
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self.fail('String %r is not interned' % (s,))
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def assertIsNotInterned(self, s):
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if isinterned(s):
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self.fail('String %r is interned' % (s,))
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@cpython_only
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def test_interned_string(self):
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co = compile('res = "str_value"', '?', 'exec')
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v = self.find_const(co.co_consts, 'str_value')
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self.assertIsInterned(v)
|
|
|
|
@cpython_only
|
|
def test_interned_string_in_tuple(self):
|
|
co = compile('res = ("str_value",)', '?', 'exec')
|
|
v = self.find_const(co.co_consts, ('str_value',))
|
|
self.assertIsInterned(v[0])
|
|
|
|
@cpython_only
|
|
def test_interned_string_in_frozenset(self):
|
|
co = compile('res = a in {"str_value"}', '?', 'exec')
|
|
v = self.find_const(co.co_consts, frozenset(('str_value',)))
|
|
self.assertIsInterned(tuple(v)[0])
|
|
|
|
@cpython_only
|
|
def test_interned_string_default(self):
|
|
def f(a='str_value'):
|
|
return a
|
|
self.assertIsInterned(f())
|
|
|
|
@cpython_only
|
|
def test_interned_string_with_null(self):
|
|
co = compile(r'res = "str\0value!"', '?', 'exec')
|
|
v = self.find_const(co.co_consts, 'str\0value!')
|
|
self.assertIsNotInterned(v)
|
|
|
|
|
|
class CodeWeakRefTest(unittest.TestCase):
|
|
|
|
def test_basic(self):
|
|
# Create a code object in a clean environment so that we know we have
|
|
# the only reference to it left.
|
|
namespace = {}
|
|
exec("def f(): pass", globals(), namespace)
|
|
f = namespace["f"]
|
|
del namespace
|
|
|
|
self.called = False
|
|
def callback(code):
|
|
self.called = True
|
|
|
|
# f is now the last reference to the function, and through it, the code
|
|
# object. While we hold it, check that we can create a weakref and
|
|
# deref it. Then delete it, and check that the callback gets called and
|
|
# the reference dies.
|
|
coderef = weakref.ref(f.__code__, callback)
|
|
self.assertTrue(bool(coderef()))
|
|
del f
|
|
gc_collect() # For PyPy or other GCs.
|
|
self.assertFalse(bool(coderef()))
|
|
self.assertTrue(self.called)
|
|
|
|
# Python implementation of location table parsing algorithm
|
|
def read(it):
|
|
return next(it)
|
|
|
|
def read_varint(it):
|
|
b = read(it)
|
|
val = b & 63;
|
|
shift = 0;
|
|
while b & 64:
|
|
b = read(it)
|
|
shift += 6
|
|
val |= (b&63) << shift
|
|
return val
|
|
|
|
def read_signed_varint(it):
|
|
uval = read_varint(it)
|
|
if uval & 1:
|
|
return -(uval >> 1)
|
|
else:
|
|
return uval >> 1
|
|
|
|
def parse_location_table(code):
|
|
line = code.co_firstlineno
|
|
it = iter(code.co_linetable)
|
|
while True:
|
|
try:
|
|
first_byte = read(it)
|
|
except StopIteration:
|
|
return
|
|
code = (first_byte >> 3) & 15
|
|
length = (first_byte & 7) + 1
|
|
if code == 15:
|
|
yield (code, length, None, None, None, None)
|
|
elif code == 14:
|
|
line_delta = read_signed_varint(it)
|
|
line += line_delta
|
|
end_line = line + read_varint(it)
|
|
col = read_varint(it)
|
|
if col == 0:
|
|
col = None
|
|
else:
|
|
col -= 1
|
|
end_col = read_varint(it)
|
|
if end_col == 0:
|
|
end_col = None
|
|
else:
|
|
end_col -= 1
|
|
yield (code, length, line, end_line, col, end_col)
|
|
elif code == 13: # No column
|
|
line_delta = read_signed_varint(it)
|
|
line += line_delta
|
|
yield (code, length, line, line, None, None)
|
|
elif code in (10, 11, 12): # new line
|
|
line_delta = code - 10
|
|
line += line_delta
|
|
column = read(it)
|
|
end_column = read(it)
|
|
yield (code, length, line, line, column, end_column)
|
|
else:
|
|
assert (0 <= code < 10)
|
|
second_byte = read(it)
|
|
column = code << 3 | (second_byte >> 4)
|
|
yield (code, length, line, line, column, column + (second_byte & 15))
|
|
|
|
def positions_from_location_table(code):
|
|
for _, length, line, end_line, col, end_col in parse_location_table(code):
|
|
for _ in range(length):
|
|
yield (line, end_line, col, end_col)
|
|
|
|
def dedup(lst, prev=object()):
|
|
for item in lst:
|
|
if item != prev:
|
|
yield item
|
|
prev = item
|
|
|
|
def lines_from_postions(positions):
|
|
return dedup(l for (l, _, _, _) in positions)
|
|
|
|
def misshappen():
|
|
"""
|
|
|
|
|
|
|
|
|
|
|
|
"""
|
|
x = (
|
|
|
|
|
|
4
|
|
|
|
+
|
|
|
|
y
|
|
|
|
)
|
|
y = (
|
|
a
|
|
+
|
|
b
|
|
+
|
|
|
|
d
|
|
)
|
|
return q if (
|
|
|
|
x
|
|
|
|
) else p
|
|
|
|
def bug93662():
|
|
example_report_generation_message= (
|
|
"""
|
|
"""
|
|
).strip()
|
|
raise ValueError()
|
|
|
|
|
|
class CodeLocationTest(unittest.TestCase):
|
|
|
|
def check_positions(self, func):
|
|
pos1 = list(func.__code__.co_positions())
|
|
pos2 = list(positions_from_location_table(func.__code__))
|
|
for l1, l2 in zip(pos1, pos2):
|
|
self.assertEqual(l1, l2)
|
|
self.assertEqual(len(pos1), len(pos2))
|
|
|
|
def test_positions(self):
|
|
self.check_positions(parse_location_table)
|
|
self.check_positions(misshappen)
|
|
self.check_positions(bug93662)
|
|
|
|
def check_lines(self, func):
|
|
co = func.__code__
|
|
lines1 = [line for _, _, line in co.co_lines()]
|
|
self.assertEqual(lines1, list(dedup(lines1)))
|
|
lines2 = list(lines_from_postions(positions_from_location_table(co)))
|
|
for l1, l2 in zip(lines1, lines2):
|
|
self.assertEqual(l1, l2)
|
|
self.assertEqual(len(lines1), len(lines2))
|
|
|
|
def test_lines(self):
|
|
self.check_lines(parse_location_table)
|
|
self.check_lines(misshappen)
|
|
self.check_lines(bug93662)
|
|
|
|
@cpython_only
|
|
def test_code_new_empty(self):
|
|
# If this test fails, it means that the construction of PyCode_NewEmpty
|
|
# needs to be modified! Please update this test *and* PyCode_NewEmpty,
|
|
# so that they both stay in sync.
|
|
def f():
|
|
pass
|
|
PY_CODE_LOCATION_INFO_NO_COLUMNS = 13
|
|
f.__code__ = f.__code__.replace(
|
|
co_stacksize=1,
|
|
co_firstlineno=42,
|
|
co_code=bytes(
|
|
[
|
|
dis.opmap["RESUME"], 0,
|
|
dis.opmap["LOAD_ASSERTION_ERROR"], 0,
|
|
dis.opmap["RAISE_VARARGS"], 1,
|
|
]
|
|
),
|
|
co_linetable=bytes(
|
|
[
|
|
(1 << 7)
|
|
| (PY_CODE_LOCATION_INFO_NO_COLUMNS << 3)
|
|
| (3 - 1),
|
|
0,
|
|
]
|
|
),
|
|
)
|
|
self.assertRaises(AssertionError, f)
|
|
self.assertEqual(
|
|
list(f.__code__.co_positions()),
|
|
3 * [(42, 42, None, None)],
|
|
)
|
|
|
|
|
|
if check_impl_detail(cpython=True) and ctypes is not None:
|
|
py = ctypes.pythonapi
|
|
freefunc = ctypes.CFUNCTYPE(None,ctypes.c_voidp)
|
|
|
|
RequestCodeExtraIndex = py.PyUnstable_Eval_RequestCodeExtraIndex
|
|
RequestCodeExtraIndex.argtypes = (freefunc,)
|
|
RequestCodeExtraIndex.restype = ctypes.c_ssize_t
|
|
|
|
SetExtra = py.PyUnstable_Code_SetExtra
|
|
SetExtra.argtypes = (ctypes.py_object, ctypes.c_ssize_t, ctypes.c_voidp)
|
|
SetExtra.restype = ctypes.c_int
|
|
|
|
GetExtra = py.PyUnstable_Code_GetExtra
|
|
GetExtra.argtypes = (ctypes.py_object, ctypes.c_ssize_t,
|
|
ctypes.POINTER(ctypes.c_voidp))
|
|
GetExtra.restype = ctypes.c_int
|
|
|
|
LAST_FREED = None
|
|
def myfree(ptr):
|
|
global LAST_FREED
|
|
LAST_FREED = ptr
|
|
|
|
FREE_FUNC = freefunc(myfree)
|
|
FREE_INDEX = RequestCodeExtraIndex(FREE_FUNC)
|
|
|
|
class CoExtra(unittest.TestCase):
|
|
def get_func(self):
|
|
# Defining a function causes the containing function to have a
|
|
# reference to the code object. We need the code objects to go
|
|
# away, so we eval a lambda.
|
|
return eval('lambda:42')
|
|
|
|
def test_get_non_code(self):
|
|
f = self.get_func()
|
|
|
|
self.assertRaises(SystemError, SetExtra, 42, FREE_INDEX,
|
|
ctypes.c_voidp(100))
|
|
self.assertRaises(SystemError, GetExtra, 42, FREE_INDEX,
|
|
ctypes.c_voidp(100))
|
|
|
|
def test_bad_index(self):
|
|
f = self.get_func()
|
|
self.assertRaises(SystemError, SetExtra, f.__code__,
|
|
FREE_INDEX+100, ctypes.c_voidp(100))
|
|
self.assertEqual(GetExtra(f.__code__, FREE_INDEX+100,
|
|
ctypes.c_voidp(100)), 0)
|
|
|
|
def test_free_called(self):
|
|
# Verify that the provided free function gets invoked
|
|
# when the code object is cleaned up.
|
|
f = self.get_func()
|
|
|
|
SetExtra(f.__code__, FREE_INDEX, ctypes.c_voidp(100))
|
|
del f
|
|
self.assertEqual(LAST_FREED, 100)
|
|
|
|
def test_get_set(self):
|
|
# Test basic get/set round tripping.
|
|
f = self.get_func()
|
|
|
|
extra = ctypes.c_voidp()
|
|
|
|
SetExtra(f.__code__, FREE_INDEX, ctypes.c_voidp(200))
|
|
# reset should free...
|
|
SetExtra(f.__code__, FREE_INDEX, ctypes.c_voidp(300))
|
|
self.assertEqual(LAST_FREED, 200)
|
|
|
|
extra = ctypes.c_voidp()
|
|
GetExtra(f.__code__, FREE_INDEX, extra)
|
|
self.assertEqual(extra.value, 300)
|
|
del f
|
|
|
|
@threading_helper.requires_working_threading()
|
|
def test_free_different_thread(self):
|
|
# Freeing a code object on a different thread then
|
|
# where the co_extra was set should be safe.
|
|
f = self.get_func()
|
|
class ThreadTest(threading.Thread):
|
|
def __init__(self, f, test):
|
|
super().__init__()
|
|
self.f = f
|
|
self.test = test
|
|
def run(self):
|
|
del self.f
|
|
self.test.assertEqual(LAST_FREED, 500)
|
|
|
|
SetExtra(f.__code__, FREE_INDEX, ctypes.c_voidp(500))
|
|
tt = ThreadTest(f, self)
|
|
del f
|
|
tt.start()
|
|
tt.join()
|
|
self.assertEqual(LAST_FREED, 500)
|
|
|
|
|
|
def load_tests(loader, tests, pattern):
|
|
tests.addTest(doctest.DocTestSuite())
|
|
return tests
|
|
|
|
|
|
if __name__ == "__main__":
|
|
unittest.main()
|