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# This is a randomized test that generates different pathnames every
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# time it is invoked, and tests the encoding of those pathnames.
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#
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# It uses a simple probabilistic model to generate valid pathnames
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# that have proven likely to expose bugs and divergent behaviour in
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# different encoding implementations.
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from mercurial import parsers
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from mercurial import store
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import binascii, itertools, math, os, random, sys, time
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import collections
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if sys.version_info[:2] < (2, 6):
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sys.exit(0)
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validchars = set(map(chr, range(0, 256)))
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alphanum = range(ord('A'), ord('Z'))
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for c in '\0/':
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validchars.remove(c)
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winreserved = ('aux con prn nul'.split() +
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['com%d' % i for i in xrange(1, 10)] +
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['lpt%d' % i for i in xrange(1, 10)])
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def casecombinations(names):
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'''Build all case-diddled combinations of names.'''
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combos = set()
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for r in names:
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for i in xrange(len(r) + 1):
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for c in itertools.combinations(xrange(len(r)), i):
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d = r
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for j in c:
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d = ''.join((d[:j], d[j].upper(), d[j + 1:]))
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combos.add(d)
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return sorted(combos)
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def buildprobtable(fp, cmd='hg manifest tip'):
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'''Construct and print a table of probabilities for path name
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components. The numbers are percentages.'''
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counts = collections.defaultdict(lambda: 0)
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for line in os.popen(cmd).read().splitlines():
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if line[-2:] in ('.i', '.d'):
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line = line[:-2]
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if line.startswith('data/'):
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line = line[5:]
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for c in line:
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counts[c] += 1
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for c in '\r/\n':
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counts.pop(c, None)
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t = sum(counts.itervalues()) / 100.0
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fp.write('probtable = (')
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for i, (k, v) in enumerate(sorted(counts.iteritems(), key=lambda x: x[1],
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reverse=True)):
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if (i % 5) == 0:
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fp.write('\n ')
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vt = v / t
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if vt < 0.0005:
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break
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fp.write('(%r, %.03f), ' % (k, vt))
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fp.write('\n )\n')
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# A table of character frequencies (as percentages), gleaned by
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# looking at filelog names from a real-world, very large repo.
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probtable = (
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('t', 9.828), ('e', 9.042), ('s', 8.011), ('a', 6.801), ('i', 6.618),
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('g', 5.053), ('r', 5.030), ('o', 4.887), ('p', 4.363), ('n', 4.258),
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('l', 3.830), ('h', 3.693), ('_', 3.659), ('.', 3.377), ('m', 3.194),
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('u', 2.364), ('d', 2.296), ('c', 2.163), ('b', 1.739), ('f', 1.625),
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('6', 0.666), ('j', 0.610), ('y', 0.554), ('x', 0.487), ('w', 0.477),
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('k', 0.476), ('v', 0.473), ('3', 0.336), ('1', 0.335), ('2', 0.326),
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('4', 0.310), ('5', 0.305), ('9', 0.302), ('8', 0.300), ('7', 0.299),
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('q', 0.298), ('0', 0.250), ('z', 0.223), ('-', 0.118), ('C', 0.095),
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('T', 0.087), ('F', 0.085), ('B', 0.077), ('S', 0.076), ('P', 0.076),
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('L', 0.059), ('A', 0.058), ('N', 0.051), ('D', 0.049), ('M', 0.046),
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('E', 0.039), ('I', 0.035), ('R', 0.035), ('G', 0.028), ('U', 0.026),
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('W', 0.025), ('O', 0.017), ('V', 0.015), ('H', 0.013), ('Q', 0.011),
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('J', 0.007), ('K', 0.005), ('+', 0.004), ('X', 0.003), ('Y', 0.001),
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)
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for c, _ in probtable:
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validchars.remove(c)
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validchars = list(validchars)
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def pickfrom(rng, table):
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c = 0
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r = rng.random() * sum(i[1] for i in table)
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for i, p in table:
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c += p
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if c >= r:
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return i
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reservedcombos = casecombinations(winreserved)
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# The first component of a name following a slash.
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firsttable = (
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(lambda rng: pickfrom(rng, probtable), 90),
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(lambda rng: rng.choice(validchars), 5),
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(lambda rng: rng.choice(reservedcombos), 5),
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)
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# Components of a name following the first.
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resttable = firsttable[:-1]
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# Special suffixes.
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internalsuffixcombos = casecombinations('.hg .i .d'.split())
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# The last component of a path, before a slash or at the end of a name.
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lasttable = resttable + (
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(lambda rng: '', 95),
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(lambda rng: rng.choice(internalsuffixcombos), 5),
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)
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def makepart(rng, k):
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'''Construct a part of a pathname, without slashes.'''
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p = pickfrom(rng, firsttable)(rng)
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l = len(p)
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ps = [p]
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while l <= k:
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p = pickfrom(rng, resttable)(rng)
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l += len(p)
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ps.append(p)
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ps.append(pickfrom(rng, lasttable)(rng))
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return ''.join(ps)
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def makepath(rng, j, k):
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'''Construct a complete pathname.'''
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return ('data/' + '/'.join(makepart(rng, k) for _ in xrange(j)) +
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rng.choice(['.d', '.i']))
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def genpath(rng, count):
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'''Generate random pathnames with gradually increasing lengths.'''
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mink, maxk = 1, 4096
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def steps():
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x, k = 0, mink
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for i in xrange(count):
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yield mink + int(round(math.sqrt((maxk - mink) * float(i) / count)))
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for k in steps():
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x = rng.randint(1, k)
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y = rng.randint(1, k)
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yield makepath(rng, x, y)
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def runtests(rng, seed, count):
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nerrs = 0
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for p in genpath(rng, count):
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h = store._dothybridencode(p) # uses C implementation, if available
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r = store._hybridencode(p, True) # reference implementation in Python
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if h != r:
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if nerrs == 0:
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print >> sys.stderr, 'seed:', hex(seed)[:-1]
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print >> sys.stderr, "\np: '%s'" % p.encode("string_escape")
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print >> sys.stderr, "h: '%s'" % h.encode("string_escape")
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print >> sys.stderr, "r: '%s'" % r.encode("string_escape")
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nerrs += 1
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return nerrs
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def main():
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import getopt
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# Empirically observed to take about a second to run
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count = 100
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seed = None
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opts, args = getopt.getopt(sys.argv[1:], 'c:s:',
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['build', 'count=', 'seed='])
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for o, a in opts:
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if o in ('-c', '--count'):
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count = int(a)
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elif o in ('-s', '--seed'):
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seed = long(a)
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elif o == '--build':
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buildprobtable(sys.stdout,
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'find .hg/store/data -type f && '
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'cat .hg/store/fncache 2>/dev/null')
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sys.exit(0)
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if seed is None:
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try:
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seed = long(binascii.hexlify(os.urandom(16)), 16)
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except AttributeError:
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seed = long(time.time() * 1000)
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rng = random.Random(seed)
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if runtests(rng, seed, count):
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sys.exit(1)
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if __name__ == '__main__':
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main()
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