##// END OF EJS Templates
treemanifest: further optimize treemanifest.matches()...
treemanifest: further optimize treemanifest.matches() The matches function was previously traversing all submanifests to look for matching files, even though it was possible to know if a submanifest won't contain any matches. This change adds a visitdir function on the match object to decide quickly if a directory should be visited when traversing. The function also decides if _all_ subdirectories should be traversed. Adding this logic as methods on the match object also makes the logic modifiable by extensions, such as largefiles. An example of a command this speeds up is running hg status --rev .^ python/ on the Mozilla repo with the treemanifest experiment enabled. It goes from 2.03s to 1.85s. More improvements to speed from this change will happen when treemanifests are lazily loaded. Because a flat manifest is still loaded and then converted into treemanifests, speed improvements are limited. This change has no negative effect on speed. For a worst-case example, this command is not negatively impacted: hg status --rev .^ 'relglob:*.js' on the Mozilla repo. It goes from 2.83s to 2.82s.

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lsprofcalltree.py
86 lines | 2.7 KiB | text/x-python | PythonLexer
"""
lsprofcalltree.py - lsprof output which is readable by kcachegrind
Authors:
* David Allouche <david <at> allouche.net>
* Jp Calderone & Itamar Shtull-Trauring
* Johan Dahlin
This software may be used and distributed according to the terms
of the GNU General Public License, incorporated herein by reference.
"""
def label(code):
if isinstance(code, str):
return '~' + code # built-in functions ('~' sorts at the end)
else:
return '%s %s:%d' % (code.co_name,
code.co_filename,
code.co_firstlineno)
class KCacheGrind(object):
def __init__(self, profiler):
self.data = profiler.getstats()
self.out_file = None
def output(self, out_file):
self.out_file = out_file
print >> out_file, 'events: Ticks'
self._print_summary()
for entry in self.data:
self._entry(entry)
def _print_summary(self):
max_cost = 0
for entry in self.data:
totaltime = int(entry.totaltime * 1000)
max_cost = max(max_cost, totaltime)
print >> self.out_file, 'summary: %d' % (max_cost,)
def _entry(self, entry):
out_file = self.out_file
code = entry.code
#print >> out_file, 'ob=%s' % (code.co_filename,)
if isinstance(code, str):
print >> out_file, 'fi=~'
else:
print >> out_file, 'fi=%s' % (code.co_filename,)
print >> out_file, 'fn=%s' % (label(code),)
inlinetime = int(entry.inlinetime * 1000)
if isinstance(code, str):
print >> out_file, '0 ', inlinetime
else:
print >> out_file, '%d %d' % (code.co_firstlineno, inlinetime)
# recursive calls are counted in entry.calls
if entry.calls:
calls = entry.calls
else:
calls = []
if isinstance(code, str):
lineno = 0
else:
lineno = code.co_firstlineno
for subentry in calls:
self._subentry(lineno, subentry)
print >> out_file
def _subentry(self, lineno, subentry):
out_file = self.out_file
code = subentry.code
#print >> out_file, 'cob=%s' % (code.co_filename,)
print >> out_file, 'cfn=%s' % (label(code),)
if isinstance(code, str):
print >> out_file, 'cfi=~'
print >> out_file, 'calls=%d 0' % (subentry.callcount,)
else:
print >> out_file, 'cfi=%s' % (code.co_filename,)
print >> out_file, 'calls=%d %d' % (
subentry.callcount, code.co_firstlineno)
totaltime = int(subentry.totaltime * 1000)
print >> out_file, '%d %d' % (lineno, totaltime)