mirror of
https://github.com/python/cpython.git
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744 lines
25 KiB
Python
744 lines
25 KiB
Python
import parser
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import unittest
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import sys
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import operator
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import struct
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from test import support
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#
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# First, we test that we can generate trees from valid source fragments,
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# and that these valid trees are indeed allowed by the tree-loading side
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# of the parser module.
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#
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class RoundtripLegalSyntaxTestCase(unittest.TestCase):
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def roundtrip(self, f, s):
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st1 = f(s)
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t = st1.totuple()
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try:
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st2 = parser.sequence2st(t)
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except parser.ParserError as why:
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self.fail("could not roundtrip %r: %s" % (s, why))
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self.assertEqual(t, st2.totuple(),
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"could not re-generate syntax tree")
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def check_expr(self, s):
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self.roundtrip(parser.expr, s)
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def test_flags_passed(self):
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# The unicode literals flags has to be passed from the paser to AST
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# generation.
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suite = parser.suite("from __future__ import unicode_literals; x = ''")
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code = suite.compile()
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scope = {}
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exec(code, {}, scope)
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self.assertIsInstance(scope["x"], str)
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def check_suite(self, s):
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self.roundtrip(parser.suite, s)
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def test_yield_statement(self):
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self.check_suite("def f(): yield 1")
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self.check_suite("def f(): yield")
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self.check_suite("def f(): x += yield")
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self.check_suite("def f(): x = yield 1")
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self.check_suite("def f(): x = y = yield 1")
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self.check_suite("def f(): x = yield")
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self.check_suite("def f(): x = y = yield")
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self.check_suite("def f(): 1 + (yield)*2")
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self.check_suite("def f(): (yield 1)*2")
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self.check_suite("def f(): return; yield 1")
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self.check_suite("def f(): yield 1; return")
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self.check_suite("def f(): yield from 1")
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self.check_suite("def f(): x = yield from 1")
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self.check_suite("def f(): f((yield from 1))")
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self.check_suite("def f(): yield 1; return 1")
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self.check_suite("def f():\n"
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" for x in range(30):\n"
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" yield x\n")
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self.check_suite("def f():\n"
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" if (yield):\n"
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" yield x\n")
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def test_nonlocal_statement(self):
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self.check_suite("def f():\n"
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" x = 0\n"
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" def g():\n"
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" nonlocal x\n")
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self.check_suite("def f():\n"
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" x = y = 0\n"
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" def g():\n"
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" nonlocal x, y\n")
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def test_expressions(self):
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self.check_expr("foo(1)")
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self.check_expr("[1, 2, 3]")
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self.check_expr("[x**3 for x in range(20)]")
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self.check_expr("[x**3 for x in range(20) if x % 3]")
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self.check_expr("[x**3 for x in range(20) if x % 2 if x % 3]")
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self.check_expr("list(x**3 for x in range(20))")
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self.check_expr("list(x**3 for x in range(20) if x % 3)")
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self.check_expr("list(x**3 for x in range(20) if x % 2 if x % 3)")
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self.check_expr("foo(*args)")
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self.check_expr("foo(*args, **kw)")
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self.check_expr("foo(**kw)")
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self.check_expr("foo(key=value)")
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self.check_expr("foo(key=value, *args)")
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self.check_expr("foo(key=value, *args, **kw)")
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self.check_expr("foo(key=value, **kw)")
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self.check_expr("foo(a, b, c, *args)")
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self.check_expr("foo(a, b, c, *args, **kw)")
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self.check_expr("foo(a, b, c, **kw)")
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self.check_expr("foo(a, *args, keyword=23)")
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self.check_expr("foo + bar")
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self.check_expr("foo - bar")
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self.check_expr("foo * bar")
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self.check_expr("foo / bar")
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self.check_expr("foo // bar")
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self.check_expr("lambda: 0")
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self.check_expr("lambda x: 0")
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self.check_expr("lambda *y: 0")
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self.check_expr("lambda *y, **z: 0")
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self.check_expr("lambda **z: 0")
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self.check_expr("lambda x, y: 0")
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self.check_expr("lambda foo=bar: 0")
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self.check_expr("lambda foo=bar, spaz=nifty+spit: 0")
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self.check_expr("lambda foo=bar, **z: 0")
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self.check_expr("lambda foo=bar, blaz=blat+2, **z: 0")
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self.check_expr("lambda foo=bar, blaz=blat+2, *y, **z: 0")
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self.check_expr("lambda x, *y, **z: 0")
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self.check_expr("(x for x in range(10))")
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self.check_expr("foo(x for x in range(10))")
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self.check_expr("...")
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self.check_expr("a[...]")
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def test_simple_expression(self):
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# expr_stmt
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self.check_suite("a")
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def test_simple_assignments(self):
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self.check_suite("a = b")
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self.check_suite("a = b = c = d = e")
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def test_simple_augmented_assignments(self):
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self.check_suite("a += b")
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self.check_suite("a -= b")
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self.check_suite("a *= b")
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self.check_suite("a /= b")
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self.check_suite("a //= b")
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self.check_suite("a %= b")
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self.check_suite("a &= b")
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self.check_suite("a |= b")
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self.check_suite("a ^= b")
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self.check_suite("a <<= b")
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self.check_suite("a >>= b")
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self.check_suite("a **= b")
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def test_function_defs(self):
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self.check_suite("def f(): pass")
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self.check_suite("def f(*args): pass")
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self.check_suite("def f(*args, **kw): pass")
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self.check_suite("def f(**kw): pass")
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self.check_suite("def f(foo=bar): pass")
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self.check_suite("def f(foo=bar, *args): pass")
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self.check_suite("def f(foo=bar, *args, **kw): pass")
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self.check_suite("def f(foo=bar, **kw): pass")
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self.check_suite("def f(a, b): pass")
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self.check_suite("def f(a, b, *args): pass")
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self.check_suite("def f(a, b, *args, **kw): pass")
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self.check_suite("def f(a, b, **kw): pass")
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self.check_suite("def f(a, b, foo=bar): pass")
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self.check_suite("def f(a, b, foo=bar, *args): pass")
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self.check_suite("def f(a, b, foo=bar, *args, **kw): pass")
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self.check_suite("def f(a, b, foo=bar, **kw): pass")
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self.check_suite("@staticmethod\n"
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"def f(): pass")
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self.check_suite("@staticmethod\n"
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"@funcattrs(x, y)\n"
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"def f(): pass")
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self.check_suite("@funcattrs()\n"
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"def f(): pass")
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# keyword-only arguments
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self.check_suite("def f(*, a): pass")
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self.check_suite("def f(*, a = 5): pass")
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self.check_suite("def f(*, a = 5, b): pass")
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self.check_suite("def f(*, a, b = 5): pass")
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self.check_suite("def f(*, a, b = 5, **kwds): pass")
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self.check_suite("def f(*args, a): pass")
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self.check_suite("def f(*args, a = 5): pass")
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self.check_suite("def f(*args, a = 5, b): pass")
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self.check_suite("def f(*args, a, b = 5): pass")
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self.check_suite("def f(*args, a, b = 5, **kwds): pass")
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# function annotations
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self.check_suite("def f(a: int): pass")
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self.check_suite("def f(a: int = 5): pass")
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self.check_suite("def f(*args: list): pass")
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self.check_suite("def f(**kwds: dict): pass")
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self.check_suite("def f(*, a: int): pass")
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self.check_suite("def f(*, a: int = 5): pass")
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self.check_suite("def f() -> int: pass")
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def test_class_defs(self):
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self.check_suite("class foo():pass")
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self.check_suite("class foo(object):pass")
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self.check_suite("@class_decorator\n"
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"class foo():pass")
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self.check_suite("@class_decorator(arg)\n"
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"class foo():pass")
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self.check_suite("@decorator1\n"
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"@decorator2\n"
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"class foo():pass")
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def test_import_from_statement(self):
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self.check_suite("from sys.path import *")
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self.check_suite("from sys.path import dirname")
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self.check_suite("from sys.path import (dirname)")
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self.check_suite("from sys.path import (dirname,)")
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self.check_suite("from sys.path import dirname as my_dirname")
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self.check_suite("from sys.path import (dirname as my_dirname)")
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self.check_suite("from sys.path import (dirname as my_dirname,)")
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self.check_suite("from sys.path import dirname, basename")
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self.check_suite("from sys.path import (dirname, basename)")
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self.check_suite("from sys.path import (dirname, basename,)")
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self.check_suite(
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"from sys.path import dirname as my_dirname, basename")
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self.check_suite(
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"from sys.path import (dirname as my_dirname, basename)")
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self.check_suite(
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"from sys.path import (dirname as my_dirname, basename,)")
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self.check_suite(
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"from sys.path import dirname, basename as my_basename")
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self.check_suite(
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"from sys.path import (dirname, basename as my_basename)")
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self.check_suite(
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"from sys.path import (dirname, basename as my_basename,)")
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self.check_suite("from .bogus import x")
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def test_basic_import_statement(self):
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self.check_suite("import sys")
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self.check_suite("import sys as system")
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self.check_suite("import sys, math")
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self.check_suite("import sys as system, math")
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self.check_suite("import sys, math as my_math")
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def test_relative_imports(self):
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self.check_suite("from . import name")
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self.check_suite("from .. import name")
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# check all the way up to '....', since '...' is tokenized
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# differently from '.' (it's an ellipsis token).
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self.check_suite("from ... import name")
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self.check_suite("from .... import name")
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self.check_suite("from .pkg import name")
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self.check_suite("from ..pkg import name")
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self.check_suite("from ...pkg import name")
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self.check_suite("from ....pkg import name")
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def test_pep263(self):
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self.check_suite("# -*- coding: iso-8859-1 -*-\n"
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"pass\n")
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def test_assert(self):
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self.check_suite("assert alo < ahi and blo < bhi\n")
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def test_with(self):
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self.check_suite("with open('x'): pass\n")
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self.check_suite("with open('x') as f: pass\n")
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self.check_suite("with open('x') as f, open('y') as g: pass\n")
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def test_try_stmt(self):
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self.check_suite("try: pass\nexcept: pass\n")
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self.check_suite("try: pass\nfinally: pass\n")
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self.check_suite("try: pass\nexcept A: pass\nfinally: pass\n")
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self.check_suite("try: pass\nexcept A: pass\nexcept: pass\n"
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"finally: pass\n")
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self.check_suite("try: pass\nexcept: pass\nelse: pass\n")
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self.check_suite("try: pass\nexcept: pass\nelse: pass\n"
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"finally: pass\n")
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def test_position(self):
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# An absolutely minimal test of position information. Better
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# tests would be a big project.
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code = "def f(x):\n return x + 1"
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st1 = parser.suite(code)
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st2 = st1.totuple(line_info=1, col_info=1)
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def walk(tree):
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node_type = tree[0]
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next = tree[1]
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if isinstance(next, tuple):
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for elt in tree[1:]:
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for x in walk(elt):
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yield x
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else:
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yield tree
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terminals = list(walk(st2))
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self.assertEqual([
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(1, 'def', 1, 0),
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(1, 'f', 1, 4),
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(7, '(', 1, 5),
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(1, 'x', 1, 6),
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(8, ')', 1, 7),
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(11, ':', 1, 8),
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(4, '', 1, 9),
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(5, '', 2, -1),
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(1, 'return', 2, 4),
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(1, 'x', 2, 11),
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(14, '+', 2, 13),
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(2, '1', 2, 15),
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(4, '', 2, 16),
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(6, '', 2, -1),
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(4, '', 2, -1),
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(0, '', 2, -1)],
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terminals)
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def test_extended_unpacking(self):
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self.check_suite("*a = y")
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self.check_suite("x, *b, = m")
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self.check_suite("[*a, *b] = y")
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self.check_suite("for [*x, b] in x: pass")
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def test_raise_statement(self):
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self.check_suite("raise\n")
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self.check_suite("raise e\n")
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self.check_suite("try:\n"
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" suite\n"
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"except Exception as e:\n"
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" raise ValueError from e\n")
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def test_set_displays(self):
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self.check_expr('{2}')
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self.check_expr('{2,}')
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self.check_expr('{2, 3}')
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self.check_expr('{2, 3,}')
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def test_dict_displays(self):
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self.check_expr('{}')
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self.check_expr('{a:b}')
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self.check_expr('{a:b,}')
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self.check_expr('{a:b, c:d}')
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self.check_expr('{a:b, c:d,}')
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def test_set_comprehensions(self):
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self.check_expr('{x for x in seq}')
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self.check_expr('{f(x) for x in seq}')
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self.check_expr('{f(x) for x in seq if condition(x)}')
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def test_dict_comprehensions(self):
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self.check_expr('{x:x for x in seq}')
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self.check_expr('{x**2:x[3] for x in seq if condition(x)}')
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self.check_expr('{x:x for x in seq1 for y in seq2 if condition(x, y)}')
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#
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# Second, we take *invalid* trees and make sure we get ParserError
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# rejections for them.
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#
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class IllegalSyntaxTestCase(unittest.TestCase):
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def check_bad_tree(self, tree, label):
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try:
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parser.sequence2st(tree)
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except parser.ParserError:
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pass
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else:
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self.fail("did not detect invalid tree for %r" % label)
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def test_junk(self):
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# not even remotely valid:
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self.check_bad_tree((1, 2, 3), "<junk>")
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def test_illegal_yield_1(self):
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# Illegal yield statement: def f(): return 1; yield 1
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tree = \
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(257,
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(264,
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(285,
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(259,
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(1, 'def'),
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(1, 'f'),
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(260, (7, '('), (8, ')')),
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(11, ':'),
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(291,
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(4, ''),
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(5, ''),
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(264,
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(265,
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(266,
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(272,
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(275,
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(1, 'return'),
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(313,
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(292,
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(293,
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(294,
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(295,
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(297,
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(298,
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(299,
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(300,
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(301,
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(302, (303, (304, (305, (2, '1')))))))))))))))))),
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(264,
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(265,
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(266,
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(272,
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(276,
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(1, 'yield'),
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(313,
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(292,
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(293,
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(294,
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(295,
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(297,
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(298,
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(299,
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(300,
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(301,
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(302,
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(303, (304, (305, (2, '1')))))))))))))))))),
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(4, ''))),
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(6, ''))))),
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(4, ''),
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(0, ''))))
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self.check_bad_tree(tree, "def f():\n return 1\n yield 1")
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def test_illegal_yield_2(self):
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# Illegal return in generator: def f(): return 1; yield 1
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tree = \
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(257,
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(264,
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(265,
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(266,
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(278,
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(1, 'from'),
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(281, (1, '__future__')),
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(1, 'import'),
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(279, (1, 'generators')))),
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(4, ''))),
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(264,
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(285,
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(259,
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(1, 'def'),
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(1, 'f'),
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(260, (7, '('), (8, ')')),
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(11, ':'),
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(291,
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(4, ''),
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(5, ''),
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(264,
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(265,
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(266,
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(272,
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(275,
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(1, 'return'),
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(313,
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(292,
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(293,
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(294,
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(295,
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(297,
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(298,
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(299,
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(300,
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(301,
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(302, (303, (304, (305, (2, '1')))))))))))))))))),
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(264,
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(265,
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(266,
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(272,
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(276,
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(1, 'yield'),
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(313,
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(292,
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(293,
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(294,
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(295,
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(297,
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(298,
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(299,
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(300,
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(301,
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(302,
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(303, (304, (305, (2, '1')))))))))))))))))),
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(4, ''))),
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(6, ''))))),
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(4, ''),
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(0, ''))))
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|
self.check_bad_tree(tree, "def f():\n return 1\n yield 1")
|
|
|
|
def test_a_comma_comma_c(self):
|
|
# Illegal input: a,,c
|
|
tree = \
|
|
(258,
|
|
(311,
|
|
(290,
|
|
(291,
|
|
(292,
|
|
(293,
|
|
(295,
|
|
(296,
|
|
(297,
|
|
(298, (299, (300, (301, (302, (303, (1, 'a')))))))))))))),
|
|
(12, ','),
|
|
(12, ','),
|
|
(290,
|
|
(291,
|
|
(292,
|
|
(293,
|
|
(295,
|
|
(296,
|
|
(297,
|
|
(298, (299, (300, (301, (302, (303, (1, 'c'))))))))))))))),
|
|
(4, ''),
|
|
(0, ''))
|
|
self.check_bad_tree(tree, "a,,c")
|
|
|
|
def test_illegal_operator(self):
|
|
# Illegal input: a $= b
|
|
tree = \
|
|
(257,
|
|
(264,
|
|
(265,
|
|
(266,
|
|
(267,
|
|
(312,
|
|
(291,
|
|
(292,
|
|
(293,
|
|
(294,
|
|
(296,
|
|
(297,
|
|
(298,
|
|
(299,
|
|
(300, (301, (302, (303, (304, (1, 'a'))))))))))))))),
|
|
(268, (37, '$=')),
|
|
(312,
|
|
(291,
|
|
(292,
|
|
(293,
|
|
(294,
|
|
(296,
|
|
(297,
|
|
(298,
|
|
(299,
|
|
(300, (301, (302, (303, (304, (1, 'b'))))))))))))))))),
|
|
(4, ''))),
|
|
(0, ''))
|
|
self.check_bad_tree(tree, "a $= b")
|
|
|
|
def test_malformed_global(self):
|
|
#doesn't have global keyword in ast
|
|
tree = (257,
|
|
(264,
|
|
(265,
|
|
(266,
|
|
(282, (1, 'foo'))), (4, ''))),
|
|
(4, ''),
|
|
(0, ''))
|
|
self.check_bad_tree(tree, "malformed global ast")
|
|
|
|
def test_missing_import_source(self):
|
|
# from import fred
|
|
tree = \
|
|
(257,
|
|
(268,
|
|
(269,
|
|
(270,
|
|
(282,
|
|
(284, (1, 'from'), (1, 'import'),
|
|
(287, (285, (1, 'fred')))))),
|
|
(4, ''))),
|
|
(4, ''), (0, ''))
|
|
self.check_bad_tree(tree, "from import fred")
|
|
|
|
|
|
class CompileTestCase(unittest.TestCase):
|
|
|
|
# These tests are very minimal. :-(
|
|
|
|
def test_compile_expr(self):
|
|
st = parser.expr('2 + 3')
|
|
code = parser.compilest(st)
|
|
self.assertEqual(eval(code), 5)
|
|
|
|
def test_compile_suite(self):
|
|
st = parser.suite('x = 2; y = x + 3')
|
|
code = parser.compilest(st)
|
|
globs = {}
|
|
exec(code, globs)
|
|
self.assertEqual(globs['y'], 5)
|
|
|
|
def test_compile_error(self):
|
|
st = parser.suite('1 = 3 + 4')
|
|
self.assertRaises(SyntaxError, parser.compilest, st)
|
|
|
|
def test_compile_badunicode(self):
|
|
st = parser.suite('a = "\\U12345678"')
|
|
self.assertRaises(SyntaxError, parser.compilest, st)
|
|
st = parser.suite('a = "\\u1"')
|
|
self.assertRaises(SyntaxError, parser.compilest, st)
|
|
|
|
def test_issue_9011(self):
|
|
# Issue 9011: compilation of an unary minus expression changed
|
|
# the meaning of the ST, so that a second compilation produced
|
|
# incorrect results.
|
|
st = parser.expr('-3')
|
|
code1 = parser.compilest(st)
|
|
self.assertEqual(eval(code1), -3)
|
|
code2 = parser.compilest(st)
|
|
self.assertEqual(eval(code2), -3)
|
|
|
|
class ParserStackLimitTestCase(unittest.TestCase):
|
|
"""try to push the parser to/over its limits.
|
|
see http://bugs.python.org/issue1881 for a discussion
|
|
"""
|
|
def _nested_expression(self, level):
|
|
return "["*level+"]"*level
|
|
|
|
def test_deeply_nested_list(self):
|
|
# XXX used to be 99 levels in 2.x
|
|
e = self._nested_expression(93)
|
|
st = parser.expr(e)
|
|
st.compile()
|
|
|
|
def test_trigger_memory_error(self):
|
|
e = self._nested_expression(100)
|
|
print("Expecting 's_push: parser stack overflow' in next line",
|
|
file=sys.stderr)
|
|
sys.stderr.flush()
|
|
self.assertRaises(MemoryError, parser.expr, e)
|
|
|
|
class STObjectTestCase(unittest.TestCase):
|
|
"""Test operations on ST objects themselves"""
|
|
|
|
def test_comparisons(self):
|
|
# ST objects should support order and equality comparisons
|
|
st1 = parser.expr('2 + 3')
|
|
st2 = parser.suite('x = 2; y = x + 3')
|
|
st3 = parser.expr('list(x**3 for x in range(20))')
|
|
st1_copy = parser.expr('2 + 3')
|
|
st2_copy = parser.suite('x = 2; y = x + 3')
|
|
st3_copy = parser.expr('list(x**3 for x in range(20))')
|
|
|
|
# exercise fast path for object identity
|
|
self.assertEqual(st1 == st1, True)
|
|
self.assertEqual(st2 == st2, True)
|
|
self.assertEqual(st3 == st3, True)
|
|
# slow path equality
|
|
self.assertEqual(st1, st1_copy)
|
|
self.assertEqual(st2, st2_copy)
|
|
self.assertEqual(st3, st3_copy)
|
|
self.assertEqual(st1 == st2, False)
|
|
self.assertEqual(st1 == st3, False)
|
|
self.assertEqual(st2 == st3, False)
|
|
self.assertEqual(st1 != st1, False)
|
|
self.assertEqual(st2 != st2, False)
|
|
self.assertEqual(st3 != st3, False)
|
|
self.assertEqual(st1 != st1_copy, False)
|
|
self.assertEqual(st2 != st2_copy, False)
|
|
self.assertEqual(st3 != st3_copy, False)
|
|
self.assertEqual(st2 != st1, True)
|
|
self.assertEqual(st1 != st3, True)
|
|
self.assertEqual(st3 != st2, True)
|
|
# we don't particularly care what the ordering is; just that
|
|
# it's usable and self-consistent
|
|
self.assertEqual(st1 < st2, not (st2 <= st1))
|
|
self.assertEqual(st1 < st3, not (st3 <= st1))
|
|
self.assertEqual(st2 < st3, not (st3 <= st2))
|
|
self.assertEqual(st1 < st2, st2 > st1)
|
|
self.assertEqual(st1 < st3, st3 > st1)
|
|
self.assertEqual(st2 < st3, st3 > st2)
|
|
self.assertEqual(st1 <= st2, st2 >= st1)
|
|
self.assertEqual(st3 <= st1, st1 >= st3)
|
|
self.assertEqual(st2 <= st3, st3 >= st2)
|
|
# transitivity
|
|
bottom = min(st1, st2, st3)
|
|
top = max(st1, st2, st3)
|
|
mid = sorted([st1, st2, st3])[1]
|
|
self.assertTrue(bottom < mid)
|
|
self.assertTrue(bottom < top)
|
|
self.assertTrue(mid < top)
|
|
self.assertTrue(bottom <= mid)
|
|
self.assertTrue(bottom <= top)
|
|
self.assertTrue(mid <= top)
|
|
self.assertTrue(bottom <= bottom)
|
|
self.assertTrue(mid <= mid)
|
|
self.assertTrue(top <= top)
|
|
# interaction with other types
|
|
self.assertEqual(st1 == 1588.602459, False)
|
|
self.assertEqual('spanish armada' != st2, True)
|
|
self.assertRaises(TypeError, operator.ge, st3, None)
|
|
self.assertRaises(TypeError, operator.le, False, st1)
|
|
self.assertRaises(TypeError, operator.lt, st1, 1815)
|
|
self.assertRaises(TypeError, operator.gt, b'waterloo', st2)
|
|
|
|
check_sizeof = support.check_sizeof
|
|
|
|
@support.cpython_only
|
|
def test_sizeof(self):
|
|
def XXXROUNDUP(n):
|
|
if n <= 1:
|
|
return n
|
|
if n <= 128:
|
|
return (n + 3) & ~3
|
|
return 1 << (n - 1).bit_length()
|
|
|
|
basesize = support.calcobjsize('Pii')
|
|
nodesize = struct.calcsize('hP3iP0h')
|
|
def sizeofchildren(node):
|
|
if node is None:
|
|
return 0
|
|
res = 0
|
|
hasstr = len(node) > 1 and isinstance(node[-1], str)
|
|
if hasstr:
|
|
res += len(node[-1]) + 1
|
|
children = node[1:-1] if hasstr else node[1:]
|
|
if children:
|
|
res += XXXROUNDUP(len(children)) * nodesize
|
|
for child in children:
|
|
res += sizeofchildren(child)
|
|
return res
|
|
|
|
def check_st_sizeof(st):
|
|
self.check_sizeof(st, basesize + nodesize +
|
|
sizeofchildren(st.totuple()))
|
|
|
|
check_st_sizeof(parser.expr('2 + 3'))
|
|
check_st_sizeof(parser.expr('2 + 3 + 4'))
|
|
check_st_sizeof(parser.suite('x = 2 + 3'))
|
|
check_st_sizeof(parser.suite(''))
|
|
check_st_sizeof(parser.suite('# -*- coding: utf-8 -*-'))
|
|
check_st_sizeof(parser.expr('[' + '2,' * 1000 + ']'))
|
|
|
|
|
|
# XXX tests for pickling and unpickling of ST objects should go here
|
|
|
|
class OtherParserCase(unittest.TestCase):
|
|
|
|
def test_two_args_to_expr(self):
|
|
# See bug #12264
|
|
with self.assertRaises(TypeError):
|
|
parser.expr("a", "b")
|
|
|
|
def test_main():
|
|
support.run_unittest(
|
|
RoundtripLegalSyntaxTestCase,
|
|
IllegalSyntaxTestCase,
|
|
CompileTestCase,
|
|
ParserStackLimitTestCase,
|
|
STObjectTestCase,
|
|
OtherParserCase,
|
|
)
|
|
|
|
|
|
if __name__ == "__main__":
|
|
test_main()
|