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      1 from test import test_support
      2 from test.test_support import bigmemtest, _1G, _2G, _4G, precisionbigmemtest
      3 
      4 import unittest
      5 import operator
      6 import string
      7 import sys
      8 
      9 # Bigmem testing houserules:
     10 #
     11 #  - Try not to allocate too many large objects. It's okay to rely on
     12 #    refcounting semantics, but don't forget that 's = create_largestring()'
     13 #    doesn't release the old 's' (if it exists) until well after its new
     14 #    value has been created. Use 'del s' before the create_largestring call.
     15 #
     16 #  - Do *not* compare large objects using assertEqual or similar. It's a
     17 #    lengty operation and the errormessage will be utterly useless due to
     18 #    its size. To make sure whether a result has the right contents, better
     19 #    to use the strip or count methods, or compare meaningful slices.
     20 #
     21 #  - Don't forget to test for large indices, offsets and results and such,
     22 #    in addition to large sizes.
     23 #
     24 #  - When repeating an object (say, a substring, or a small list) to create
     25 #    a large object, make the subobject of a length that is not a power of
     26 #    2. That way, int-wrapping problems are more easily detected.
     27 #
     28 #  - While the bigmemtest decorator speaks of 'minsize', all tests will
     29 #    actually be called with a much smaller number too, in the normal
     30 #    test run (5Kb currently.) This is so the tests themselves get frequent
     31 #    testing. Consequently, always make all large allocations based on the
     32 #    passed-in 'size', and don't rely on the size being very large. Also,
     33 #    memuse-per-size should remain sane (less than a few thousand); if your
     34 #    test uses more, adjust 'size' upward, instead.
     35 
     36 class StrTest(unittest.TestCase):
     37     @bigmemtest(minsize=_2G, memuse=2)
     38     def test_capitalize(self, size):
     39         SUBSTR = ' abc def ghi'
     40         s = '-' * size + SUBSTR
     41         caps = s.capitalize()
     42         self.assertEqual(caps[-len(SUBSTR):],
     43                          SUBSTR.capitalize())
     44         self.assertEqual(caps.lstrip('-'), SUBSTR)
     45 
     46     @bigmemtest(minsize=_2G + 10, memuse=1)
     47     def test_center(self, size):
     48         SUBSTR = ' abc def ghi'
     49         s = SUBSTR.center(size)
     50         self.assertEqual(len(s), size)
     51         lpadsize = rpadsize = (len(s) - len(SUBSTR)) // 2
     52         if len(s) % 2:
     53             lpadsize += 1
     54         self.assertEqual(s[lpadsize:-rpadsize], SUBSTR)
     55         self.assertEqual(s.strip(), SUBSTR.strip())
     56 
     57     @precisionbigmemtest(size=_2G - 1, memuse=1)
     58     def test_center_unicode(self, size):
     59         SUBSTR = u' abc def ghi'
     60         try:
     61             s = SUBSTR.center(size)
     62         except OverflowError:
     63             pass # acceptable on 32-bit
     64         else:
     65             self.assertEqual(len(s), size)
     66             lpadsize = rpadsize = (len(s) - len(SUBSTR)) // 2
     67             if len(s) % 2:
     68                 lpadsize += 1
     69             self.assertEqual(s[lpadsize:-rpadsize], SUBSTR)
     70             self.assertEqual(s.strip(), SUBSTR.strip())
     71             del s
     72 
     73     @bigmemtest(minsize=_2G, memuse=2)
     74     def test_count(self, size):
     75         SUBSTR = ' abc def ghi'
     76         s = '.' * size + SUBSTR
     77         self.assertEqual(s.count('.'), size)
     78         s += '.'
     79         self.assertEqual(s.count('.'), size + 1)
     80         self.assertEqual(s.count(' '), 3)
     81         self.assertEqual(s.count('i'), 1)
     82         self.assertEqual(s.count('j'), 0)
     83 
     84     @bigmemtest(minsize=_2G + 2, memuse=3)
     85     def test_decode(self, size):
     86         s = '.' * size
     87         self.assertEqual(len(s.decode('utf-8')), size)
     88 
     89     def basic_encode_test(self, size, enc, c=u'.', expectedsize=None):
     90         if expectedsize is None:
     91             expectedsize = size
     92 
     93         s = c * size
     94         self.assertEqual(len(s.encode(enc)), expectedsize)
     95 
     96     @bigmemtest(minsize=_2G + 2, memuse=3)
     97     def test_encode(self, size):
     98         return self.basic_encode_test(size, 'utf-8')
     99 
    100     @precisionbigmemtest(size=_4G // 6 + 2, memuse=2)
    101     def test_encode_raw_unicode_escape(self, size):
    102         try:
    103             return self.basic_encode_test(size, 'raw_unicode_escape')
    104         except MemoryError:
    105             pass # acceptable on 32-bit
    106 
    107     @precisionbigmemtest(size=_4G // 5 + 70, memuse=3)
    108     def test_encode_utf7(self, size):
    109         try:
    110             return self.basic_encode_test(size, 'utf7')
    111         except MemoryError:
    112             pass # acceptable on 32-bit
    113 
    114     @precisionbigmemtest(size=_4G // 4 + 5, memuse=6)
    115     def test_encode_utf32(self, size):
    116         try:
    117             return self.basic_encode_test(size, 'utf32', expectedsize=4*size+4)
    118         except MemoryError:
    119             pass # acceptable on 32-bit
    120 
    121     @precisionbigmemtest(size=_2G-1, memuse=4)
    122     def test_decodeascii(self, size):
    123         return self.basic_encode_test(size, 'ascii', c='A')
    124 
    125     @precisionbigmemtest(size=_4G // 5, memuse=6+2)
    126     def test_unicode_repr_oflw(self, size):
    127         self.skipTest("test crashes - see issue #14904")
    128         try:
    129             s = u"\uAAAA"*size
    130             r = repr(s)
    131         except MemoryError:
    132             pass # acceptable on 32-bit
    133         else:
    134             self.assertTrue(s == eval(r))
    135 
    136     @bigmemtest(minsize=_2G, memuse=2)
    137     def test_endswith(self, size):
    138         SUBSTR = ' abc def ghi'
    139         s = '-' * size + SUBSTR
    140         self.assertTrue(s.endswith(SUBSTR))
    141         self.assertTrue(s.endswith(s))
    142         s2 = '...' + s
    143         self.assertTrue(s2.endswith(s))
    144         self.assertFalse(s.endswith('a' + SUBSTR))
    145         self.assertFalse(SUBSTR.endswith(s))
    146 
    147     @bigmemtest(minsize=_2G + 10, memuse=2)
    148     def test_expandtabs(self, size):
    149         s = '-' * size
    150         tabsize = 8
    151         self.assertEqual(s.expandtabs(), s)
    152         del s
    153         slen, remainder = divmod(size, tabsize)
    154         s = '       \t' * slen
    155         s = s.expandtabs(tabsize)
    156         self.assertEqual(len(s), size - remainder)
    157         self.assertEqual(len(s.strip(' ')), 0)
    158 
    159     @bigmemtest(minsize=_2G, memuse=2)
    160     def test_find(self, size):
    161         SUBSTR = ' abc def ghi'
    162         sublen = len(SUBSTR)
    163         s = ''.join([SUBSTR, '-' * size, SUBSTR])
    164         self.assertEqual(s.find(' '), 0)
    165         self.assertEqual(s.find(SUBSTR), 0)
    166         self.assertEqual(s.find(' ', sublen), sublen + size)
    167         self.assertEqual(s.find(SUBSTR, len(SUBSTR)), sublen + size)
    168         self.assertEqual(s.find('i'), SUBSTR.find('i'))
    169         self.assertEqual(s.find('i', sublen),
    170                          sublen + size + SUBSTR.find('i'))
    171         self.assertEqual(s.find('i', size),
    172                          sublen + size + SUBSTR.find('i'))
    173         self.assertEqual(s.find('j'), -1)
    174 
    175     @bigmemtest(minsize=_2G, memuse=2)
    176     def test_index(self, size):
    177         SUBSTR = ' abc def ghi'
    178         sublen = len(SUBSTR)
    179         s = ''.join([SUBSTR, '-' * size, SUBSTR])
    180         self.assertEqual(s.index(' '), 0)
    181         self.assertEqual(s.index(SUBSTR), 0)
    182         self.assertEqual(s.index(' ', sublen), sublen + size)
    183         self.assertEqual(s.index(SUBSTR, sublen), sublen + size)
    184         self.assertEqual(s.index('i'), SUBSTR.index('i'))
    185         self.assertEqual(s.index('i', sublen),
    186                          sublen + size + SUBSTR.index('i'))
    187         self.assertEqual(s.index('i', size),
    188                          sublen + size + SUBSTR.index('i'))
    189         self.assertRaises(ValueError, s.index, 'j')
    190 
    191     @bigmemtest(minsize=_2G, memuse=2)
    192     def test_isalnum(self, size):
    193         SUBSTR = '123456'
    194         s = 'a' * size + SUBSTR
    195         self.assertTrue(s.isalnum())
    196         s += '.'
    197         self.assertFalse(s.isalnum())
    198 
    199     @bigmemtest(minsize=_2G, memuse=2)
    200     def test_isalpha(self, size):
    201         SUBSTR = 'zzzzzzz'
    202         s = 'a' * size + SUBSTR
    203         self.assertTrue(s.isalpha())
    204         s += '.'
    205         self.assertFalse(s.isalpha())
    206 
    207     @bigmemtest(minsize=_2G, memuse=2)
    208     def test_isdigit(self, size):
    209         SUBSTR = '123456'
    210         s = '9' * size + SUBSTR
    211         self.assertTrue(s.isdigit())
    212         s += 'z'
    213         self.assertFalse(s.isdigit())
    214 
    215     @bigmemtest(minsize=_2G, memuse=2)
    216     def test_islower(self, size):
    217         chars = ''.join([ chr(c) for c in range(255) if not chr(c).isupper() ])
    218         repeats = size // len(chars) + 2
    219         s = chars * repeats
    220         self.assertTrue(s.islower())
    221         s += 'A'
    222         self.assertFalse(s.islower())
    223 
    224     @bigmemtest(minsize=_2G, memuse=2)
    225     def test_isspace(self, size):
    226         whitespace = ' \f\n\r\t\v'
    227         repeats = size // len(whitespace) + 2
    228         s = whitespace * repeats
    229         self.assertTrue(s.isspace())
    230         s += 'j'
    231         self.assertFalse(s.isspace())
    232 
    233     @bigmemtest(minsize=_2G, memuse=2)
    234     def test_istitle(self, size):
    235         SUBSTR = '123456'
    236         s = ''.join(['A', 'a' * size, SUBSTR])
    237         self.assertTrue(s.istitle())
    238         s += 'A'
    239         self.assertTrue(s.istitle())
    240         s += 'aA'
    241         self.assertFalse(s.istitle())
    242 
    243     @bigmemtest(minsize=_2G, memuse=2)
    244     def test_isupper(self, size):
    245         chars = ''.join([ chr(c) for c in range(255) if not chr(c).islower() ])
    246         repeats = size // len(chars) + 2
    247         s = chars * repeats
    248         self.assertTrue(s.isupper())
    249         s += 'a'
    250         self.assertFalse(s.isupper())
    251 
    252     @bigmemtest(minsize=_2G, memuse=2)
    253     def test_join(self, size):
    254         s = 'A' * size
    255         x = s.join(['aaaaa', 'bbbbb'])
    256         self.assertEqual(x.count('a'), 5)
    257         self.assertEqual(x.count('b'), 5)
    258         self.assertTrue(x.startswith('aaaaaA'))
    259         self.assertTrue(x.endswith('Abbbbb'))
    260 
    261     @bigmemtest(minsize=_2G + 10, memuse=1)
    262     def test_ljust(self, size):
    263         SUBSTR = ' abc def ghi'
    264         s = SUBSTR.ljust(size)
    265         self.assertTrue(s.startswith(SUBSTR + '  '))
    266         self.assertEqual(len(s), size)
    267         self.assertEqual(s.strip(), SUBSTR.strip())
    268 
    269     @bigmemtest(minsize=_2G + 10, memuse=2)
    270     def test_lower(self, size):
    271         s = 'A' * size
    272         s = s.lower()
    273         self.assertEqual(len(s), size)
    274         self.assertEqual(s.count('a'), size)
    275 
    276     @bigmemtest(minsize=_2G + 10, memuse=1)
    277     def test_lstrip(self, size):
    278         SUBSTR = 'abc def ghi'
    279         s = SUBSTR.rjust(size)
    280         self.assertEqual(len(s), size)
    281         self.assertEqual(s.lstrip(), SUBSTR.lstrip())
    282         del s
    283         s = SUBSTR.ljust(size)
    284         self.assertEqual(len(s), size)
    285         stripped = s.lstrip()
    286         self.assertTrue(stripped is s)
    287 
    288     @bigmemtest(minsize=_2G + 10, memuse=2)
    289     def test_replace(self, size):
    290         replacement = 'a'
    291         s = ' ' * size
    292         s = s.replace(' ', replacement)
    293         self.assertEqual(len(s), size)
    294         self.assertEqual(s.count(replacement), size)
    295         s = s.replace(replacement, ' ', size - 4)
    296         self.assertEqual(len(s), size)
    297         self.assertEqual(s.count(replacement), 4)
    298         self.assertEqual(s[-10:], '      aaaa')
    299 
    300     @bigmemtest(minsize=_2G, memuse=2)
    301     def test_rfind(self, size):
    302         SUBSTR = ' abc def ghi'
    303         sublen = len(SUBSTR)
    304         s = ''.join([SUBSTR, '-' * size, SUBSTR])
    305         self.assertEqual(s.rfind(' '), sublen + size + SUBSTR.rfind(' '))
    306         self.assertEqual(s.rfind(SUBSTR), sublen + size)
    307         self.assertEqual(s.rfind(' ', 0, size), SUBSTR.rfind(' '))
    308         self.assertEqual(s.rfind(SUBSTR, 0, sublen + size), 0)
    309         self.assertEqual(s.rfind('i'), sublen + size + SUBSTR.rfind('i'))
    310         self.assertEqual(s.rfind('i', 0, sublen), SUBSTR.rfind('i'))
    311         self.assertEqual(s.rfind('i', 0, sublen + size),
    312                          SUBSTR.rfind('i'))
    313         self.assertEqual(s.rfind('j'), -1)
    314 
    315     @bigmemtest(minsize=_2G, memuse=2)
    316     def test_rindex(self, size):
    317         SUBSTR = ' abc def ghi'
    318         sublen = len(SUBSTR)
    319         s = ''.join([SUBSTR, '-' * size, SUBSTR])
    320         self.assertEqual(s.rindex(' '),
    321                           sublen + size + SUBSTR.rindex(' '))
    322         self.assertEqual(s.rindex(SUBSTR), sublen + size)
    323         self.assertEqual(s.rindex(' ', 0, sublen + size - 1),
    324                          SUBSTR.rindex(' '))
    325         self.assertEqual(s.rindex(SUBSTR, 0, sublen + size), 0)
    326         self.assertEqual(s.rindex('i'),
    327                          sublen + size + SUBSTR.rindex('i'))
    328         self.assertEqual(s.rindex('i', 0, sublen), SUBSTR.rindex('i'))
    329         self.assertEqual(s.rindex('i', 0, sublen + size),
    330                          SUBSTR.rindex('i'))
    331         self.assertRaises(ValueError, s.rindex, 'j')
    332 
    333     @bigmemtest(minsize=_2G + 10, memuse=1)
    334     def test_rjust(self, size):
    335         SUBSTR = ' abc def ghi'
    336         s = SUBSTR.ljust(size)
    337         self.assertTrue(s.startswith(SUBSTR + '  '))
    338         self.assertEqual(len(s), size)
    339         self.assertEqual(s.strip(), SUBSTR.strip())
    340 
    341     @bigmemtest(minsize=_2G + 10, memuse=1)
    342     def test_rstrip(self, size):
    343         SUBSTR = ' abc def ghi'
    344         s = SUBSTR.ljust(size)
    345         self.assertEqual(len(s), size)
    346         self.assertEqual(s.rstrip(), SUBSTR.rstrip())
    347         del s
    348         s = SUBSTR.rjust(size)
    349         self.assertEqual(len(s), size)
    350         stripped = s.rstrip()
    351         self.assertTrue(stripped is s)
    352 
    353     # The test takes about size bytes to build a string, and then about
    354     # sqrt(size) substrings of sqrt(size) in size and a list to
    355     # hold sqrt(size) items. It's close but just over 2x size.
    356     @bigmemtest(minsize=_2G, memuse=2.1)
    357     def test_split_small(self, size):
    358         # Crudely calculate an estimate so that the result of s.split won't
    359         # take up an inordinate amount of memory
    360         chunksize = int(size ** 0.5 + 2)
    361         SUBSTR = 'a' + ' ' * chunksize
    362         s = SUBSTR * chunksize
    363         l = s.split()
    364         self.assertEqual(len(l), chunksize)
    365         self.assertEqual(set(l), set(['a']))
    366         del l
    367         l = s.split('a')
    368         self.assertEqual(len(l), chunksize + 1)
    369         self.assertEqual(set(l), set(['', ' ' * chunksize]))
    370 
    371     # Allocates a string of twice size (and briefly two) and a list of
    372     # size.  Because of internal affairs, the s.split() call produces a
    373     # list of size times the same one-character string, so we only
    374     # suffer for the list size. (Otherwise, it'd cost another 48 times
    375     # size in bytes!) Nevertheless, a list of size takes
    376     # 8*size bytes.
    377     @bigmemtest(minsize=_2G + 5, memuse=10)
    378     def test_split_large(self, size):
    379         s = ' a' * size + ' '
    380         l = s.split()
    381         self.assertEqual(len(l), size)
    382         self.assertEqual(set(l), set(['a']))
    383         del l
    384         l = s.split('a')
    385         self.assertEqual(len(l), size + 1)
    386         self.assertEqual(set(l), set([' ']))
    387 
    388     @bigmemtest(minsize=_2G, memuse=2.1)
    389     def test_splitlines(self, size):
    390         # Crudely calculate an estimate so that the result of s.split won't
    391         # take up an inordinate amount of memory
    392         chunksize = int(size ** 0.5 + 2) // 2
    393         SUBSTR = ' ' * chunksize + '\n' + ' ' * chunksize + '\r\n'
    394         s = SUBSTR * chunksize
    395         l = s.splitlines()
    396         self.assertEqual(len(l), chunksize * 2)
    397         self.assertEqual(set(l), set([' ' * chunksize]))
    398 
    399     @bigmemtest(minsize=_2G, memuse=2)
    400     def test_startswith(self, size):
    401         SUBSTR = ' abc def ghi'
    402         s = '-' * size + SUBSTR
    403         self.assertTrue(s.startswith(s))
    404         self.assertTrue(s.startswith('-' * size))
    405         self.assertFalse(s.startswith(SUBSTR))
    406 
    407     @bigmemtest(minsize=_2G, memuse=1)
    408     def test_strip(self, size):
    409         SUBSTR = '   abc def ghi   '
    410         s = SUBSTR.rjust(size)
    411         self.assertEqual(len(s), size)
    412         self.assertEqual(s.strip(), SUBSTR.strip())
    413         del s
    414         s = SUBSTR.ljust(size)
    415         self.assertEqual(len(s), size)
    416         self.assertEqual(s.strip(), SUBSTR.strip())
    417 
    418     @bigmemtest(minsize=_2G, memuse=2)
    419     def test_swapcase(self, size):
    420         SUBSTR = "aBcDeFG12.'\xa9\x00"
    421         sublen = len(SUBSTR)
    422         repeats = size // sublen + 2
    423         s = SUBSTR * repeats
    424         s = s.swapcase()
    425         self.assertEqual(len(s), sublen * repeats)
    426         self.assertEqual(s[:sublen * 3], SUBSTR.swapcase() * 3)
    427         self.assertEqual(s[-sublen * 3:], SUBSTR.swapcase() * 3)
    428 
    429     @bigmemtest(minsize=_2G, memuse=2)
    430     def test_title(self, size):
    431         SUBSTR = 'SpaaHAaaAaham'
    432         s = SUBSTR * (size // len(SUBSTR) + 2)
    433         s = s.title()
    434         self.assertTrue(s.startswith((SUBSTR * 3).title()))
    435         self.assertTrue(s.endswith(SUBSTR.lower() * 3))
    436 
    437     @bigmemtest(minsize=_2G, memuse=2)
    438     def test_translate(self, size):
    439         trans = string.maketrans('.aZ', '-!$')
    440         SUBSTR = 'aZz.z.Aaz.'
    441         sublen = len(SUBSTR)
    442         repeats = size // sublen + 2
    443         s = SUBSTR * repeats
    444         s = s.translate(trans)
    445         self.assertEqual(len(s), repeats * sublen)
    446         self.assertEqual(s[:sublen], SUBSTR.translate(trans))
    447         self.assertEqual(s[-sublen:], SUBSTR.translate(trans))
    448         self.assertEqual(s.count('.'), 0)
    449         self.assertEqual(s.count('!'), repeats * 2)
    450         self.assertEqual(s.count('z'), repeats * 3)
    451 
    452     @bigmemtest(minsize=_2G + 5, memuse=2)
    453     def test_upper(self, size):
    454         s = 'a' * size
    455         s = s.upper()
    456         self.assertEqual(len(s), size)
    457         self.assertEqual(s.count('A'), size)
    458 
    459     @bigmemtest(minsize=_2G + 20, memuse=1)
    460     def test_zfill(self, size):
    461         SUBSTR = '-568324723598234'
    462         s = SUBSTR.zfill(size)
    463         self.assertTrue(s.endswith('0' + SUBSTR[1:]))
    464         self.assertTrue(s.startswith('-0'))
    465         self.assertEqual(len(s), size)
    466         self.assertEqual(s.count('0'), size - len(SUBSTR))
    467 
    468     @bigmemtest(minsize=_2G + 10, memuse=2)
    469     def test_format(self, size):
    470         s = '-' * size
    471         sf = '%s' % (s,)
    472         self.assertTrue(s == sf)
    473         del sf
    474         sf = '..%s..' % (s,)
    475         self.assertEqual(len(sf), len(s) + 4)
    476         self.assertTrue(sf.startswith('..-'))
    477         self.assertTrue(sf.endswith('-..'))
    478         del s, sf
    479 
    480         size //= 2
    481         edge = '-' * size
    482         s = ''.join([edge, '%s', edge])
    483         del edge
    484         s = s % '...'
    485         self.assertEqual(len(s), size * 2 + 3)
    486         self.assertEqual(s.count('.'), 3)
    487         self.assertEqual(s.count('-'), size * 2)
    488 
    489     @bigmemtest(minsize=_2G + 10, memuse=5)
    490     def test_repr_small(self, size):
    491         s = '-' * size
    492         s = repr(s)
    493         self.assertEqual(len(s), size + 2)
    494         self.assertEqual(s[0], "'")
    495         self.assertEqual(s[-1], "'")
    496         self.assertEqual(s.count('-'), size)
    497         del s
    498         # repr() will create a string four times as large as this 'binary
    499         # string', but we don't want to allocate much more than twice
    500         # size in total.  (We do extra testing in test_repr_large())
    501         s = '\x00' * size
    502         s = repr(s)
    503         self.assertEqual(len(s), size * 4 + 2)
    504         self.assertEqual(s[0], "'")
    505         self.assertEqual(s[-1], "'")
    506         self.assertEqual(s.count('\\'), size)
    507         self.assertEqual(s.count('0'), size * 2)
    508 
    509     @bigmemtest(minsize=_2G + 10, memuse=5)
    510     def test_repr_large(self, size):
    511         s = '\x00' * size
    512         s = repr(s)
    513         self.assertEqual(len(s), size * 4 + 2)
    514         self.assertEqual(s[0], "'")
    515         self.assertEqual(s[-1], "'")
    516         self.assertEqual(s.count('\\'), size)
    517         self.assertEqual(s.count('0'), size * 2)
    518 
    519     @bigmemtest(minsize=2**32 // 5, memuse=6+2)
    520     def test_unicode_repr(self, size):
    521         s = u"\uAAAA" * size
    522         self.assertTrue(len(repr(s)) > size)
    523 
    524     # This test is meaningful even with size < 2G, as long as the
    525     # doubled string is > 2G (but it tests more if both are > 2G :)
    526     @bigmemtest(minsize=_1G + 2, memuse=3)
    527     def test_concat(self, size):
    528         s = '.' * size
    529         self.assertEqual(len(s), size)
    530         s = s + s
    531         self.assertEqual(len(s), size * 2)
    532         self.assertEqual(s.count('.'), size * 2)
    533 
    534     # This test is meaningful even with size < 2G, as long as the
    535     # repeated string is > 2G (but it tests more if both are > 2G :)
    536     @bigmemtest(minsize=_1G + 2, memuse=3)
    537     def test_repeat(self, size):
    538         s = '.' * size
    539         self.assertEqual(len(s), size)
    540         s = s * 2
    541         self.assertEqual(len(s), size * 2)
    542         self.assertEqual(s.count('.'), size * 2)
    543 
    544     @bigmemtest(minsize=_2G + 20, memuse=2)
    545     def test_slice_and_getitem(self, size):
    546         SUBSTR = '0123456789'
    547         sublen = len(SUBSTR)
    548         s = SUBSTR * (size // sublen)
    549         stepsize = len(s) // 100
    550         stepsize = stepsize - (stepsize % sublen)
    551         for i in range(0, len(s) - stepsize, stepsize):
    552             self.assertEqual(s[i], SUBSTR[0])
    553             self.assertEqual(s[i:i + sublen], SUBSTR)
    554             self.assertEqual(s[i:i + sublen:2], SUBSTR[::2])
    555             if i > 0:
    556                 self.assertEqual(s[i + sublen - 1:i - 1:-3],
    557                                  SUBSTR[sublen::-3])
    558         # Make sure we do some slicing and indexing near the end of the
    559         # string, too.
    560         self.assertEqual(s[len(s) - 1], SUBSTR[-1])
    561         self.assertEqual(s[-1], SUBSTR[-1])
    562         self.assertEqual(s[len(s) - 10], SUBSTR[0])
    563         self.assertEqual(s[-sublen], SUBSTR[0])
    564         self.assertEqual(s[len(s):], '')
    565         self.assertEqual(s[len(s) - 1:], SUBSTR[-1])
    566         self.assertEqual(s[-1:], SUBSTR[-1])
    567         self.assertEqual(s[len(s) - sublen:], SUBSTR)
    568         self.assertEqual(s[-sublen:], SUBSTR)
    569         self.assertEqual(len(s[:]), len(s))
    570         self.assertEqual(len(s[:len(s) - 5]), len(s) - 5)
    571         self.assertEqual(len(s[5:-5]), len(s) - 10)
    572 
    573         self.assertRaises(IndexError, operator.getitem, s, len(s))
    574         self.assertRaises(IndexError, operator.getitem, s, len(s) + 1)
    575         self.assertRaises(IndexError, operator.getitem, s, len(s) + 1<<31)
    576 
    577     @bigmemtest(minsize=_2G, memuse=2)
    578     def test_contains(self, size):
    579         SUBSTR = '0123456789'
    580         edge = '-' * (size // 2)
    581         s = ''.join([edge, SUBSTR, edge])
    582         del edge
    583         self.assertIn(SUBSTR, s)
    584         self.assertNotIn(SUBSTR * 2, s)
    585         self.assertIn('-', s)
    586         self.assertNotIn('a', s)
    587         s += 'a'
    588         self.assertIn('a', s)
    589 
    590     @bigmemtest(minsize=_2G + 10, memuse=2)
    591     def test_compare(self, size):
    592         s1 = '-' * size
    593         s2 = '-' * size
    594         self.assertTrue(s1 == s2)
    595         del s2
    596         s2 = s1 + 'a'
    597         self.assertFalse(s1 == s2)
    598         del s2
    599         s2 = '.' * size
    600         self.assertFalse(s1 == s2)
    601 
    602     @bigmemtest(minsize=_2G + 10, memuse=1)
    603     def test_hash(self, size):
    604         # Not sure if we can do any meaningful tests here...  Even if we
    605         # start relying on the exact algorithm used, the result will be
    606         # different depending on the size of the C 'long int'.  Even this
    607         # test is dodgy (there's no *guarantee* that the two things should
    608         # have a different hash, even if they, in the current
    609         # implementation, almost always do.)
    610         s = '\x00' * size
    611         h1 = hash(s)
    612         del s
    613         s = '\x00' * (size + 1)
    614         self.assertFalse(h1 == hash(s))
    615 
    616 class TupleTest(unittest.TestCase):
    617 
    618     # Tuples have a small, fixed-sized head and an array of pointers to
    619     # data.  Since we're testing 64-bit addressing, we can assume that the
    620     # pointers are 8 bytes, and that thus that the tuples take up 8 bytes
    621     # per size.
    622 
    623     # As a side-effect of testing long tuples, these tests happen to test
    624     # having more than 2<<31 references to any given object. Hence the
    625     # use of different types of objects as contents in different tests.
    626 
    627     @bigmemtest(minsize=_2G + 2, memuse=16)
    628     def test_compare(self, size):
    629         t1 = (u'',) * size
    630         t2 = (u'',) * size
    631         self.assertTrue(t1 == t2)
    632         del t2
    633         t2 = (u'',) * (size + 1)
    634         self.assertFalse(t1 == t2)
    635         del t2
    636         t2 = (1,) * size
    637         self.assertFalse(t1 == t2)
    638 
    639     # Test concatenating into a single tuple of more than 2G in length,
    640     # and concatenating a tuple of more than 2G in length separately, so
    641     # the smaller test still gets run even if there isn't memory for the
    642     # larger test (but we still let the tester know the larger test is
    643     # skipped, in verbose mode.)
    644     def basic_concat_test(self, size):
    645         t = ((),) * size
    646         self.assertEqual(len(t), size)
    647         t = t + t
    648         self.assertEqual(len(t), size * 2)
    649 
    650     @bigmemtest(minsize=_2G // 2 + 2, memuse=24)
    651     def test_concat_small(self, size):
    652         return self.basic_concat_test(size)
    653 
    654     @bigmemtest(minsize=_2G + 2, memuse=24)
    655     def test_concat_large(self, size):
    656         return self.basic_concat_test(size)
    657 
    658     @bigmemtest(minsize=_2G // 5 + 10, memuse=8 * 5)
    659     def test_contains(self, size):
    660         t = (1, 2, 3, 4, 5) * size
    661         self.assertEqual(len(t), size * 5)
    662         self.assertIn(5, t)
    663         self.assertNotIn((1, 2, 3, 4, 5), t)
    664         self.assertNotIn(0, t)
    665 
    666     @bigmemtest(minsize=_2G + 10, memuse=8)
    667     def test_hash(self, size):
    668         t1 = (0,) * size
    669         h1 = hash(t1)
    670         del t1
    671         t2 = (0,) * (size + 1)
    672         self.assertFalse(h1 == hash(t2))
    673 
    674     @bigmemtest(minsize=_2G + 10, memuse=8)
    675     def test_index_and_slice(self, size):
    676         t = (None,) * size
    677         self.assertEqual(len(t), size)
    678         self.assertEqual(t[-1], None)
    679         self.assertEqual(t[5], None)
    680         self.assertEqual(t[size - 1], None)
    681         self.assertRaises(IndexError, operator.getitem, t, size)
    682         self.assertEqual(t[:5], (None,) * 5)
    683         self.assertEqual(t[-5:], (None,) * 5)
    684         self.assertEqual(t[20:25], (None,) * 5)
    685         self.assertEqual(t[-25:-20], (None,) * 5)
    686         self.assertEqual(t[size - 5:], (None,) * 5)
    687         self.assertEqual(t[size - 5:size], (None,) * 5)
    688         self.assertEqual(t[size - 6:size - 2], (None,) * 4)
    689         self.assertEqual(t[size:size], ())
    690         self.assertEqual(t[size:size+5], ())
    691 
    692     # Like test_concat, split in two.
    693     def basic_test_repeat(self, size):
    694         t = ('',) * size
    695         self.assertEqual(len(t), size)
    696         t = t * 2
    697         self.assertEqual(len(t), size * 2)
    698 
    699     @bigmemtest(minsize=_2G // 2 + 2, memuse=24)
    700     def test_repeat_small(self, size):
    701         return self.basic_test_repeat(size)
    702 
    703     @bigmemtest(minsize=_2G + 2, memuse=24)
    704     def test_repeat_large(self, size):
    705         return self.basic_test_repeat(size)
    706 
    707     @bigmemtest(minsize=_1G - 1, memuse=12)
    708     def test_repeat_large_2(self, size):
    709         return self.basic_test_repeat(size)
    710 
    711     @precisionbigmemtest(size=_1G - 1, memuse=9)
    712     def test_from_2G_generator(self, size):
    713         try:
    714             t = tuple(xrange(size))
    715         except MemoryError:
    716             pass # acceptable on 32-bit
    717         else:
    718             count = 0
    719             for item in t:
    720                 self.assertEqual(item, count)
    721                 count += 1
    722             self.assertEqual(count, size)
    723 
    724     @precisionbigmemtest(size=_1G - 25, memuse=9)
    725     def test_from_almost_2G_generator(self, size):
    726         try:
    727             t = tuple(xrange(size))
    728             count = 0
    729             for item in t:
    730                 self.assertEqual(item, count)
    731                 count += 1
    732             self.assertEqual(count, size)
    733         except MemoryError:
    734             pass # acceptable, expected on 32-bit
    735 
    736     # Like test_concat, split in two.
    737     def basic_test_repr(self, size):
    738         t = (0,) * size
    739         s = repr(t)
    740         # The repr of a tuple of 0's is exactly three times the tuple length.
    741         self.assertEqual(len(s), size * 3)
    742         self.assertEqual(s[:5], '(0, 0')
    743         self.assertEqual(s[-5:], '0, 0)')
    744         self.assertEqual(s.count('0'), size)
    745 
    746     @bigmemtest(minsize=_2G // 3 + 2, memuse=8 + 3)
    747     def test_repr_small(self, size):
    748         return self.basic_test_repr(size)
    749 
    750     @bigmemtest(minsize=_2G + 2, memuse=8 + 3)
    751     def test_repr_large(self, size):
    752         return self.basic_test_repr(size)
    753 
    754 class ListTest(unittest.TestCase):
    755 
    756     # Like tuples, lists have a small, fixed-sized head and an array of
    757     # pointers to data, so 8 bytes per size. Also like tuples, we make the
    758     # lists hold references to various objects to test their refcount
    759     # limits.
    760 
    761     @bigmemtest(minsize=_2G + 2, memuse=16)
    762     def test_compare(self, size):
    763         l1 = [u''] * size
    764         l2 = [u''] * size
    765         self.assertTrue(l1 == l2)
    766         del l2
    767         l2 = [u''] * (size + 1)
    768         self.assertFalse(l1 == l2)
    769         del l2
    770         l2 = [2] * size
    771         self.assertFalse(l1 == l2)
    772 
    773     # Test concatenating into a single list of more than 2G in length,
    774     # and concatenating a list of more than 2G in length separately, so
    775     # the smaller test still gets run even if there isn't memory for the
    776     # larger test (but we still let the tester know the larger test is
    777     # skipped, in verbose mode.)
    778     def basic_test_concat(self, size):
    779         l = [[]] * size
    780         self.assertEqual(len(l), size)
    781         l = l + l
    782         self.assertEqual(len(l), size * 2)
    783 
    784     @bigmemtest(minsize=_2G // 2 + 2, memuse=24)
    785     def test_concat_small(self, size):
    786         return self.basic_test_concat(size)
    787 
    788     @bigmemtest(minsize=_2G + 2, memuse=24)
    789     def test_concat_large(self, size):
    790         return self.basic_test_concat(size)
    791 
    792     def basic_test_inplace_concat(self, size):
    793         l = [sys.stdout] * size
    794         l += l
    795         self.assertEqual(len(l), size * 2)
    796         self.assertTrue(l[0] is l[-1])
    797         self.assertTrue(l[size - 1] is l[size + 1])
    798 
    799     @bigmemtest(minsize=_2G // 2 + 2, memuse=24)
    800     def test_inplace_concat_small(self, size):
    801         return self.basic_test_inplace_concat(size)
    802 
    803     @bigmemtest(minsize=_2G + 2, memuse=24)
    804     def test_inplace_concat_large(self, size):
    805         return self.basic_test_inplace_concat(size)
    806 
    807     @bigmemtest(minsize=_2G // 5 + 10, memuse=8 * 5)
    808     def test_contains(self, size):
    809         l = [1, 2, 3, 4, 5] * size
    810         self.assertEqual(len(l), size * 5)
    811         self.assertIn(5, l)
    812         self.assertNotIn([1, 2, 3, 4, 5], l)
    813         self.assertNotIn(0, l)
    814 
    815     @bigmemtest(minsize=_2G + 10, memuse=8)
    816     def test_hash(self, size):
    817         l = [0] * size
    818         self.assertRaises(TypeError, hash, l)
    819 
    820     @bigmemtest(minsize=_2G + 10, memuse=8)
    821     def test_index_and_slice(self, size):
    822         l = [None] * size
    823         self.assertEqual(len(l), size)
    824         self.assertEqual(l[-1], None)
    825         self.assertEqual(l[5], None)
    826         self.assertEqual(l[size - 1], None)
    827         self.assertRaises(IndexError, operator.getitem, l, size)
    828         self.assertEqual(l[:5], [None] * 5)
    829         self.assertEqual(l[-5:], [None] * 5)
    830         self.assertEqual(l[20:25], [None] * 5)
    831         self.assertEqual(l[-25:-20], [None] * 5)
    832         self.assertEqual(l[size - 5:], [None] * 5)
    833         self.assertEqual(l[size - 5:size], [None] * 5)
    834         self.assertEqual(l[size - 6:size - 2], [None] * 4)
    835         self.assertEqual(l[size:size], [])
    836         self.assertEqual(l[size:size+5], [])
    837 
    838         l[size - 2] = 5
    839         self.assertEqual(len(l), size)
    840         self.assertEqual(l[-3:], [None, 5, None])
    841         self.assertEqual(l.count(5), 1)
    842         self.assertRaises(IndexError, operator.setitem, l, size, 6)
    843         self.assertEqual(len(l), size)
    844 
    845         l[size - 7:] = [1, 2, 3, 4, 5]
    846         size -= 2
    847         self.assertEqual(len(l), size)
    848         self.assertEqual(l[-7:], [None, None, 1, 2, 3, 4, 5])
    849 
    850         l[:7] = [1, 2, 3, 4, 5]
    851         size -= 2
    852         self.assertEqual(len(l), size)
    853         self.assertEqual(l[:7], [1, 2, 3, 4, 5, None, None])
    854 
    855         del l[size - 1]
    856         size -= 1
    857         self.assertEqual(len(l), size)
    858         self.assertEqual(l[-1], 4)
    859 
    860         del l[-2:]
    861         size -= 2
    862         self.assertEqual(len(l), size)
    863         self.assertEqual(l[-1], 2)
    864 
    865         del l[0]
    866         size -= 1
    867         self.assertEqual(len(l), size)
    868         self.assertEqual(l[0], 2)
    869 
    870         del l[:2]
    871         size -= 2
    872         self.assertEqual(len(l), size)
    873         self.assertEqual(l[0], 4)
    874 
    875     # Like test_concat, split in two.
    876     def basic_test_repeat(self, size):
    877         l = [] * size
    878         self.assertFalse(l)
    879         l = [''] * size
    880         self.assertEqual(len(l), size)
    881         l = l * 2
    882         self.assertEqual(len(l), size * 2)
    883 
    884     @bigmemtest(minsize=_2G // 2 + 2, memuse=24)
    885     def test_repeat_small(self, size):
    886         return self.basic_test_repeat(size)
    887 
    888     @bigmemtest(minsize=_2G + 2, memuse=24)
    889     def test_repeat_large(self, size):
    890         return self.basic_test_repeat(size)
    891 
    892     def basic_test_inplace_repeat(self, size):
    893         l = ['']
    894         l *= size
    895         self.assertEqual(len(l), size)
    896         self.assertTrue(l[0] is l[-1])
    897         del l
    898 
    899         l = [''] * size
    900         l *= 2
    901         self.assertEqual(len(l), size * 2)
    902         self.assertTrue(l[size - 1] is l[-1])
    903 
    904     @bigmemtest(minsize=_2G // 2 + 2, memuse=16)
    905     def test_inplace_repeat_small(self, size):
    906         return self.basic_test_inplace_repeat(size)
    907 
    908     @bigmemtest(minsize=_2G + 2, memuse=16)
    909     def test_inplace_repeat_large(self, size):
    910         return self.basic_test_inplace_repeat(size)
    911 
    912     def basic_test_repr(self, size):
    913         l = [0] * size
    914         s = repr(l)
    915         # The repr of a list of 0's is exactly three times the list length.
    916         self.assertEqual(len(s), size * 3)
    917         self.assertEqual(s[:5], '[0, 0')
    918         self.assertEqual(s[-5:], '0, 0]')
    919         self.assertEqual(s.count('0'), size)
    920 
    921     @bigmemtest(minsize=_2G // 3 + 2, memuse=8 + 3)
    922     def test_repr_small(self, size):
    923         return self.basic_test_repr(size)
    924 
    925     @bigmemtest(minsize=_2G + 2, memuse=8 + 3)
    926     def test_repr_large(self, size):
    927         return self.basic_test_repr(size)
    928 
    929     # list overallocates ~1/8th of the total size (on first expansion) so
    930     # the single list.append call puts memuse at 9 bytes per size.
    931     @bigmemtest(minsize=_2G, memuse=9)
    932     def test_append(self, size):
    933         l = [object()] * size
    934         l.append(object())
    935         self.assertEqual(len(l), size+1)
    936         self.assertTrue(l[-3] is l[-2])
    937         self.assertFalse(l[-2] is l[-1])
    938 
    939     @bigmemtest(minsize=_2G // 5 + 2, memuse=8 * 5)
    940     def test_count(self, size):
    941         l = [1, 2, 3, 4, 5] * size
    942         self.assertEqual(l.count(1), size)
    943         self.assertEqual(l.count("1"), 0)
    944 
    945     def basic_test_extend(self, size):
    946         l = [file] * size
    947         l.extend(l)
    948         self.assertEqual(len(l), size * 2)
    949         self.assertTrue(l[0] is l[-1])
    950         self.assertTrue(l[size - 1] is l[size + 1])
    951 
    952     @bigmemtest(minsize=_2G // 2 + 2, memuse=16)
    953     def test_extend_small(self, size):
    954         return self.basic_test_extend(size)
    955 
    956     @bigmemtest(minsize=_2G + 2, memuse=16)
    957     def test_extend_large(self, size):
    958         return self.basic_test_extend(size)
    959 
    960     @bigmemtest(minsize=_2G // 5 + 2, memuse=8 * 5)
    961     def test_index(self, size):
    962         l = [1L, 2L, 3L, 4L, 5L] * size
    963         size *= 5
    964         self.assertEqual(l.index(1), 0)
    965         self.assertEqual(l.index(5, size - 5), size - 1)
    966         self.assertEqual(l.index(5, size - 5, size), size - 1)
    967         self.assertRaises(ValueError, l.index, 1, size - 4, size)
    968         self.assertRaises(ValueError, l.index, 6L)
    969 
    970     # This tests suffers from overallocation, just like test_append.
    971     @bigmemtest(minsize=_2G + 10, memuse=9)
    972     def test_insert(self, size):
    973         l = [1.0] * size
    974         l.insert(size - 1, "A")
    975         size += 1
    976         self.assertEqual(len(l), size)
    977         self.assertEqual(l[-3:], [1.0, "A", 1.0])
    978 
    979         l.insert(size + 1, "B")
    980         size += 1
    981         self.assertEqual(len(l), size)
    982         self.assertEqual(l[-3:], ["A", 1.0, "B"])
    983 
    984         l.insert(1, "C")
    985         size += 1
    986         self.assertEqual(len(l), size)
    987         self.assertEqual(l[:3], [1.0, "C", 1.0])
    988         self.assertEqual(l[size - 3:], ["A", 1.0, "B"])
    989 
    990     @bigmemtest(minsize=_2G // 5 + 4, memuse=8 * 5)
    991     def test_pop(self, size):
    992         l = [u"a", u"b", u"c", u"d", u"e"] * size
    993         size *= 5
    994         self.assertEqual(len(l), size)
    995 
    996         item = l.pop()
    997         size -= 1
    998         self.assertEqual(len(l), size)
    999         self.assertEqual(item, u"e")
   1000         self.assertEqual(l[-2:], [u"c", u"d"])
   1001 
   1002         item = l.pop(0)
   1003         size -= 1
   1004         self.assertEqual(len(l), size)
   1005         self.assertEqual(item, u"a")
   1006         self.assertEqual(l[:2], [u"b", u"c"])
   1007 
   1008         item = l.pop(size - 2)
   1009         size -= 1
   1010         self.assertEqual(len(l), size)
   1011         self.assertEqual(item, u"c")
   1012         self.assertEqual(l[-2:], [u"b", u"d"])
   1013 
   1014     @bigmemtest(minsize=_2G + 10, memuse=8)
   1015     def test_remove(self, size):
   1016         l = [10] * size
   1017         self.assertEqual(len(l), size)
   1018 
   1019         l.remove(10)
   1020         size -= 1
   1021         self.assertEqual(len(l), size)
   1022 
   1023         # Because of the earlier l.remove(), this append doesn't trigger
   1024         # a resize.
   1025         l.append(5)
   1026         size += 1
   1027         self.assertEqual(len(l), size)
   1028         self.assertEqual(l[-2:], [10, 5])
   1029         l.remove(5)
   1030         size -= 1
   1031         self.assertEqual(len(l), size)
   1032         self.assertEqual(l[-2:], [10, 10])
   1033 
   1034     @bigmemtest(minsize=_2G // 5 + 2, memuse=8 * 5)
   1035     def test_reverse(self, size):
   1036         l = [1, 2, 3, 4, 5] * size
   1037         l.reverse()
   1038         self.assertEqual(len(l), size * 5)
   1039         self.assertEqual(l[-5:], [5, 4, 3, 2, 1])
   1040         self.assertEqual(l[:5], [5, 4, 3, 2, 1])
   1041 
   1042     @bigmemtest(minsize=_2G // 5 + 2, memuse=8 * 5)
   1043     def test_sort(self, size):
   1044         l = [1, 2, 3, 4, 5] * size
   1045         l.sort()
   1046         self.assertEqual(len(l), size * 5)
   1047         self.assertEqual(l.count(1), size)
   1048         self.assertEqual(l[:10], [1] * 10)
   1049         self.assertEqual(l[-10:], [5] * 10)
   1050 
   1051 class BufferTest(unittest.TestCase):
   1052 
   1053     @precisionbigmemtest(size=_1G, memuse=4)
   1054     def test_repeat(self, size):
   1055         try:
   1056             with test_support.check_py3k_warnings():
   1057                 b = buffer("AAAA")*size
   1058         except MemoryError:
   1059             pass # acceptable on 32-bit
   1060         else:
   1061             count = 0
   1062             for c in b:
   1063                 self.assertEqual(c, 'A')
   1064                 count += 1
   1065             self.assertEqual(count, size*4)
   1066 
   1067 def test_main():
   1068     test_support.run_unittest(StrTest, TupleTest, ListTest, BufferTest)
   1069 
   1070 if __name__ == '__main__':
   1071     if len(sys.argv) > 1:
   1072         test_support.set_memlimit(sys.argv[1])
   1073     test_main()
   1074