| 1 | import dis
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| 2 | import sys
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| 3 | from cStringIO import StringIO
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| 4 | import unittest
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| 5 |
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| 6 | def disassemble(func):
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| 7 | f = StringIO()
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| 8 | tmp = sys.stdout
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| 9 | sys.stdout = f
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| 10 | dis.dis(func)
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| 11 | sys.stdout = tmp
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| 12 | result = f.getvalue()
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| 13 | f.close()
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| 14 | return result
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| 15 |
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| 16 | def dis_single(line):
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| 17 | return disassemble(compile(line, '', 'single'))
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| 18 |
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| 19 | class TestTranforms(unittest.TestCase):
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| 20 |
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| 21 | def test_unot(self):
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| 22 | # UNARY_NOT JUMP_IF_FALSE POP_TOP --> JUMP_IF_TRUE POP_TOP'
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| 23 | def unot(x):
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| 24 | if not x == 2:
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| 25 | del x
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| 26 | asm = disassemble(unot)
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| 27 | for elem in ('UNARY_NOT', 'JUMP_IF_FALSE'):
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| 28 | self.assert_(elem not in asm)
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| 29 | for elem in ('JUMP_IF_TRUE', 'POP_TOP'):
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| 30 | self.assert_(elem in asm)
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| 31 |
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| 32 | def test_elim_inversion_of_is_or_in(self):
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| 33 | for line, elem in (
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| 34 | ('not a is b', '(is not)',),
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| 35 | ('not a in b', '(not in)',),
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| 36 | ('not a is not b', '(is)',),
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| 37 | ('not a not in b', '(in)',),
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| 38 | ):
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| 39 | asm = dis_single(line)
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| 40 | self.assert_(elem in asm)
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| 41 |
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| 42 | def test_none_as_constant(self):
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| 43 | # LOAD_GLOBAL None --> LOAD_CONST None
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| 44 | def f(x):
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| 45 | None
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| 46 | return x
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| 47 | asm = disassemble(f)
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| 48 | for elem in ('LOAD_GLOBAL',):
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| 49 | self.assert_(elem not in asm)
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| 50 | for elem in ('LOAD_CONST', '(None)'):
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| 51 | self.assert_(elem in asm)
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| 52 |
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| 53 | def test_while_one(self):
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| 54 | # Skip over: LOAD_CONST trueconst JUMP_IF_FALSE xx POP_TOP
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| 55 | def f():
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| 56 | while 1:
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| 57 | pass
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| 58 | return list
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| 59 | asm = disassemble(f)
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| 60 | for elem in ('LOAD_CONST', 'JUMP_IF_FALSE'):
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| 61 | self.assert_(elem not in asm)
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| 62 | for elem in ('JUMP_ABSOLUTE',):
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| 63 | self.assert_(elem in asm)
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| 64 |
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| 65 | def test_pack_unpack(self):
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| 66 | for line, elem in (
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| 67 | ('a, = a,', 'LOAD_CONST',),
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| 68 | ('a, b = a, b', 'ROT_TWO',),
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| 69 | ('a, b, c = a, b, c', 'ROT_THREE',),
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| 70 | ):
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| 71 | asm = dis_single(line)
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| 72 | self.assert_(elem in asm)
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| 73 | self.assert_('BUILD_TUPLE' not in asm)
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| 74 | self.assert_('UNPACK_TUPLE' not in asm)
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| 75 |
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| 76 | def test_folding_of_tuples_of_constants(self):
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| 77 | for line, elem in (
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| 78 | ('a = 1,2,3', '((1, 2, 3))'),
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| 79 | ('("a","b","c")', "(('a', 'b', 'c'))"),
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| 80 | ('a,b,c = 1,2,3', '((1, 2, 3))'),
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| 81 | ('(None, 1, None)', '((None, 1, None))'),
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| 82 | ('((1, 2), 3, 4)', '(((1, 2), 3, 4))'),
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| 83 | ):
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| 84 | asm = dis_single(line)
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| 85 | self.assert_(elem in asm)
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| 86 | self.assert_('BUILD_TUPLE' not in asm)
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| 87 |
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| 88 | # Bug 1053819: Tuple of constants misidentified when presented with:
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| 89 | # . . . opcode_with_arg 100 unary_opcode BUILD_TUPLE 1 . . .
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| 90 | # The following would segfault upon compilation
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| 91 | def crater():
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| 92 | (~[
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| 93 | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
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| 94 | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
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| 95 | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
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| 96 | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
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| 97 | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
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| 98 | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
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| 99 | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
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| 100 | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
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| 101 | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
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| 102 | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
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| 103 | ],)
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| 104 |
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| 105 | def test_folding_of_binops_on_constants(self):
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| 106 | for line, elem in (
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| 107 | ('a = 2+3+4', '(9)'), # chained fold
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| 108 | ('"@"*4', "('@@@@')"), # check string ops
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| 109 | ('a="abc" + "def"', "('abcdef')"), # check string ops
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| 110 | ('a = 3**4', '(81)'), # binary power
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| 111 | ('a = 3*4', '(12)'), # binary multiply
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| 112 | ('a = 13//4', '(3)'), # binary floor divide
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| 113 | ('a = 14%4', '(2)'), # binary modulo
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| 114 | ('a = 2+3', '(5)'), # binary add
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| 115 | ('a = 13-4', '(9)'), # binary subtract
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| 116 | ('a = (12,13)[1]', '(13)'), # binary subscr
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| 117 | ('a = 13 << 2', '(52)'), # binary lshift
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| 118 | ('a = 13 >> 2', '(3)'), # binary rshift
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| 119 | ('a = 13 & 7', '(5)'), # binary and
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| 120 | ('a = 13 ^ 7', '(10)'), # binary xor
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| 121 | ('a = 13 | 7', '(15)'), # binary or
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| 122 | ):
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| 123 | asm = dis_single(line)
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| 124 | self.assert_(elem in asm, asm)
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| 125 | self.assert_('BINARY_' not in asm)
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| 126 |
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| 127 | # Verify that unfoldables are skipped
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| 128 | asm = dis_single('a=2+"b"')
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| 129 | self.assert_('(2)' in asm)
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| 130 | self.assert_("('b')" in asm)
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| 131 |
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| 132 | # Verify that large sequences do not result from folding
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| 133 | asm = dis_single('a="x"*1000')
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| 134 | self.assert_('(1000)' in asm)
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| 135 |
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| 136 | def test_folding_of_unaryops_on_constants(self):
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| 137 | for line, elem in (
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| 138 | ('`1`', "('1')"), # unary convert
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| 139 | ('-0.5', '(-0.5)'), # unary negative
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| 140 | ('~-2', '(1)'), # unary invert
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| 141 | ):
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| 142 | asm = dis_single(line)
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| 143 | self.assert_(elem in asm, asm)
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| 144 | self.assert_('UNARY_' not in asm)
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| 145 |
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| 146 | # Verify that unfoldables are skipped
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| 147 | for line, elem in (
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| 148 | ('-"abc"', "('abc')"), # unary negative
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| 149 | ('~"abc"', "('abc')"), # unary invert
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| 150 | ):
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| 151 | asm = dis_single(line)
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| 152 | self.assert_(elem in asm, asm)
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| 153 | self.assert_('UNARY_' in asm)
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| 154 |
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| 155 | def test_elim_extra_return(self):
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| 156 | # RETURN LOAD_CONST None RETURN --> RETURN
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| 157 | def f(x):
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| 158 | return x
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| 159 | asm = disassemble(f)
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| 160 | self.assert_('LOAD_CONST' not in asm)
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| 161 | self.assert_('(None)' not in asm)
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| 162 | self.assertEqual(asm.split().count('RETURN_VALUE'), 1)
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| 163 |
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| 164 |
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| 165 |
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| 166 | def test_main(verbose=None):
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| 167 | import sys
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| 168 | from test import test_support
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| 169 | test_classes = (TestTranforms,)
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| 170 | test_support.run_unittest(*test_classes)
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| 171 |
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| 172 | # verify reference counting
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| 173 | if verbose and hasattr(sys, "gettotalrefcount"):
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| 174 | import gc
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| 175 | counts = [None] * 5
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| 176 | for i in xrange(len(counts)):
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| 177 | test_support.run_unittest(*test_classes)
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| 178 | gc.collect()
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| 179 | counts[i] = sys.gettotalrefcount()
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| 180 | print counts
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| 181 |
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| 182 | if __name__ == "__main__":
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| 183 | test_main(verbose=True)
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