/opt/alt/python27/lib64/python2.7
NameSizeModeActions
bsddb/-0755rm
compiler/-0755rm
config/-0755rm
ctypes/-0755rm
curses/-0755rm
distutils/-0755rm
email/-0755rm
encodings/-0755rm
ensurepip/-0755rm
hotshot/-0755rm
idlelib/-0755rm
importlib/-0755rm
json/-0755rm
lib-dynload/-0755rm
lib2to3/-0755rm
logging/-0755rm
multiprocessing/-0755rm
plat-linux2/-0755rm
pydoc_data/-0755rm
site-packages/-0755rm
sqlite3/-0755rm
test/-0755rm
unittest/-0755rm
wsgiref/-0755rm
xml/-0755rm
abc.py71450644editdlrm
abc.pyc62860644editdlrm
abc.pyo62300644editdlrm
aifc.py345790644editdlrm
aifc.pyc314080644editdlrm
aifc.pyo314080644editdlrm
antigravity.py600644editdlrm
antigravity.pyc2160644editdlrm
antigravity.pyo2160644editdlrm
anydbm.py26630644editdlrm
anydbm.pyc28390644editdlrm
anydbm.pyo28390644editdlrm
argparse.py892280644editdlrm
argparse.pyc663820644editdlrm
argparse.pyo662170644editdlrm
ast.py118050644editdlrm
ast.pyc132500644editdlrm
ast.pyo132500644editdlrm
asynchat.py115810644editdlrm
asynchat.pyc92000644editdlrm
asynchat.pyo92000644editdlrm
asyncore.py209430644editdlrm
asyncore.pyc196600644editdlrm
asyncore.pyo196600644editdlrm
atexit.py17050644editdlrm
atexit.pyc22810644editdlrm
atexit.pyo22810644editdlrm
audiodev.py75970644editdlrm
audiodev.pyc88200644editdlrm
audiodev.pyo88200644editdlrm
base64.py118030755editdlrm
base64.pyc115310644editdlrm
base64.pyo115310644editdlrm
BaseHTTPServer.py227470644editdlrm
BaseHTTPServer.pyc219820644editdlrm
BaseHTTPServer.pyo219820644editdlrm
Bastion.py57440644editdlrm
Bastion.pyc68550644editdlrm
Bastion.pyo68550644editdlrm
bdb.py217140644editdlrm
bdb.pyc198940644editdlrm
bdb.pyo198940644editdlrm
binhex.py146980644editdlrm
binhex.pyc161230644editdlrm
binhex.pyo161230644editdlrm
bisect.py25950644editdlrm
bisect.pyc31360644editdlrm
bisect.pyo31360644editdlrm
calendar.py233840644editdlrm
calendar.pyc289400644editdlrm
calendar.pyo289400644editdlrm
cgi.py357940755editdlrm
cgi.pyc340340644editdlrm
cgi.pyo340340644editdlrm
CGIHTTPServer.py130890644editdlrm
CGIHTTPServer.pyc111870644editdlrm
CGIHTTPServer.pyo111870644editdlrm
cgitb.py121750644editdlrm
cgitb.pyc123720644editdlrm
cgitb.pyo123720644editdlrm
chunk.py54190644editdlrm
chunk.pyc57450644editdlrm
chunk.pyo57450644editdlrm
cmd.py150260644editdlrm
cmd.pyc143120644editdlrm
cmd.pyo143120644editdlrm
code.py101890644editdlrm
code.pyc105420644editdlrm
code.pyo105420644editdlrm
codecs.py361430644editdlrm
codecs.pyc380460644editdlrm
codecs.pyo380460644editdlrm
codeop.py59990644editdlrm
codeop.pyc67270644editdlrm
codeop.pyo67270644editdlrm
collections.py277980644editdlrm
collections.pyc268390644editdlrm
collections.pyo267880644editdlrm
colorsys.py36910644editdlrm
colorsys.pyc40950644editdlrm
colorsys.pyo40950644editdlrm
commands.py25450644editdlrm
commands.pyc25470644editdlrm
commands.pyo25470644editdlrm
compileall.py77630644editdlrm
compileall.pyc70950644editdlrm
compileall.pyo70950644editdlrm
ConfigParser.py277460644editdlrm
ConfigParser.pyc259800644editdlrm
ConfigParser.pyo259800644editdlrm
contextlib.py44240644editdlrm
contextlib.pyc46100644editdlrm
contextlib.pyo46100644editdlrm
Cookie.py265380644editdlrm
Cookie.pyc231520644editdlrm
Cookie.pyo231520644editdlrm
cookielib.py654860644editdlrm
cookielib.pyc559860644editdlrm
cookielib.pyo557980644editdlrm
copy.py115330644editdlrm
copy.pyc125080644editdlrm
copy.pyo124160644editdlrm
copy_reg.py69740644editdlrm
copy_reg.pyc53100644editdlrm
copy_reg.pyo52660644editdlrm
cProfile.py65700755editdlrm
cProfile.pyc65770644editdlrm
cProfile.pyo65770644editdlrm
crypt.py22910644editdlrm
crypt.pyc30250644editdlrm
crypt.pyo30250644editdlrm
csv.py167080644editdlrm
csv.pyc138840644editdlrm
csv.pyo138840644editdlrm
dbhash.py4980644editdlrm
dbhash.pyc7440644editdlrm
dbhash.pyo7440644editdlrm
decimal.py2219330644editdlrm
decimal.pyc1754700644editdlrm
decimal.pyo1754700644editdlrm
difflib.py823250644editdlrm
difflib.pyc626000644editdlrm
difflib.pyo625490644editdlrm
dircache.py11260644editdlrm
dircache.pyc16280644editdlrm
dircache.pyo16280644editdlrm
dis.py64990644editdlrm
dis.pyc63320644editdlrm
dis.pyo63320644editdlrm
doctest.py1050950644editdlrm
doctest.pyc852100644editdlrm
doctest.pyo849230644editdlrm
DocXMLRPCServer.py107680644editdlrm
DocXMLRPCServer.pyc104420644editdlrm
DocXMLRPCServer.pyo103330644editdlrm
dumbdbm.py91410644editdlrm
dumbdbm.pyc69930644editdlrm
dumbdbm.pyo69930644editdlrm
dummy_thread.py44180644editdlrm
dummy_thread.pyc55890644editdlrm
dummy_thread.pyo55890644editdlrm
dummy_threading.py28040644editdlrm
dummy_threading.pyc12980644editdlrm
dummy_threading.pyo12980644editdlrm
filecmp.py95880644editdlrm
filecmp.pyc98820644editdlrm
filecmp.pyo98820644editdlrm
fileinput.py137460644editdlrm
fileinput.pyc148900644editdlrm
fileinput.pyo148900644editdlrm
fnmatch.py33150644editdlrm
fnmatch.pyc36920644editdlrm
fnmatch.pyo36920644editdlrm
formatter.py149110644editdlrm
formatter.pyc201790644editdlrm
formatter.pyo201790644editdlrm
fpformat.py47320644editdlrm
fpformat.pyc48070644editdlrm
fpformat.pyo48070644editdlrm
fractions.py223900644editdlrm
fractions.pyc202180644editdlrm
fractions.pyo202180644editdlrm
ftplib.py381940644editdlrm
ftplib.pyc356520644editdlrm
ftplib.pyo356520644editdlrm
functools.py48060644editdlrm
functools.pyc70190644editdlrm
functools.pyo70190644editdlrm
genericpath.py32010644editdlrm
genericpath.pyc36600644editdlrm
genericpath.pyo36600644editdlrm
getopt.py73190644editdlrm
getopt.pyc67840644editdlrm
getopt.pyo67390644editdlrm
getpass.py55630644editdlrm
getpass.pyc48350644editdlrm
getpass.pyo48350644editdlrm
gettext.py226660644editdlrm
gettext.pyc186020644editdlrm
gettext.pyo186020644editdlrm
glob.py31140644editdlrm
glob.pyc30470644editdlrm
glob.pyo30470644editdlrm
gzip.py190280644editdlrm
gzip.pyc156260644editdlrm
gzip.pyo156260644editdlrm
hashlib.py78420644editdlrm
hashlib.pyc70260644editdlrm
hashlib.pyo70260644editdlrm
heapq.py182950644editdlrm
heapq.pyc147980644editdlrm
heapq.pyo147980644editdlrm
hmac.py45880644editdlrm
hmac.pyc46720644editdlrm
hmac.pyo46720644editdlrm
htmlentitydefs.py180560644editdlrm
htmlentitydefs.pyc63800644editdlrm
htmlentitydefs.pyo63800644editdlrm
htmllib.py128690644editdlrm
htmllib.pyc214920644editdlrm
htmllib.pyo214920644editdlrm
HTMLParser.py171710644editdlrm
HTMLParser.pyc141430644editdlrm
HTMLParser.pyo138380644editdlrm
httplib.py523000644editdlrm
httplib.pyc387930644editdlrm
httplib.pyo386090644editdlrm
ihooks.py189860644editdlrm
ihooks.pyc222690644editdlrm
ihooks.pyo222690644editdlrm
imaplib.py483660644editdlrm
imaplib.pyc462720644editdlrm
imaplib.pyo435060644editdlrm
imghdr.py35410644editdlrm
imghdr.pyc50460644editdlrm
imghdr.pyo50460644editdlrm
imputil.py257640644editdlrm
imputil.pyc161170644editdlrm
imputil.pyo159390644editdlrm
inspect.py430080644editdlrm
inspect.pyc411260644editdlrm
inspect.pyo411260644editdlrm
io.py33220644editdlrm
io.pyc36540644editdlrm
io.pyo36540644editdlrm
keyword.py19920755editdlrm
keyword.pyc21310644editdlrm
keyword.pyo21310644editdlrm
linecache.py40270644editdlrm
linecache.pyc33500644editdlrm
linecache.pyo33500644editdlrm
locale.py1028340644editdlrm
locale.pyc570260644editdlrm
locale.pyo570260644editdlrm
macpath.py62890644editdlrm
macpath.pyc79280644editdlrm
macpath.pyo79280644editdlrm
macurl2path.py27310644editdlrm
macurl2path.pyc22960644editdlrm
macurl2path.pyo22960644editdlrm
mailbox.py812400644editdlrm
mailbox.pyc795640644editdlrm
mailbox.pyo795170644editdlrm
mailcap.py74290644editdlrm
mailcap.pyc72480644editdlrm
mailcap.pyo72480644editdlrm
markupbase.py146430644editdlrm
markupbase.pyc94880644editdlrm
markupbase.pyo92920644editdlrm
md5.py3580644editdlrm
md5.pyc3910644editdlrm
md5.pyo3910644editdlrm
mhlib.py334340644editdlrm
mhlib.pyc347910644editdlrm
mhlib.pyo347910644editdlrm
mimetools.py71680644editdlrm
mimetools.pyc84610644editdlrm
mimetools.pyo84610644editdlrm
mimetypes.py210280644editdlrm
mimetypes.pyc187360644editdlrm
mimetypes.pyo187360644editdlrm
MimeWriter.py64820644editdlrm
MimeWriter.pyc74810644editdlrm
MimeWriter.pyo74810644editdlrm
mimify.py150170755editdlrm
mimify.pyc121960644editdlrm
mimify.pyo121960644editdlrm
modulefinder.py244610644editdlrm
modulefinder.pyc195820644editdlrm
modulefinder.pyo195000644editdlrm
multifile.py48200644editdlrm
multifile.pyc56150644editdlrm
multifile.pyo55730644editdlrm
mutex.py18780644editdlrm
mutex.pyc26070644editdlrm
mutex.pyo26070644editdlrm
netrc.py58880644editdlrm
netrc.pyc48310644editdlrm
netrc.pyo48310644editdlrm
new.py6100644editdlrm
new.pyc8750644editdlrm
new.pyo8750644editdlrm
nntplib.py214700644editdlrm
nntplib.pyc216160644editdlrm
nntplib.pyo216160644editdlrm
ntpath.py194290644editdlrm
ntpath.pyc134150644editdlrm
ntpath.pyo134150644editdlrm
nturl2path.py24190644editdlrm
nturl2path.pyc18540644editdlrm
nturl2path.pyo18540644editdlrm
numbers.py103190644editdlrm
numbers.pyc148180644editdlrm
numbers.pyo148180644editdlrm
opcode.py54740644editdlrm
opcode.pyc62100644editdlrm
opcode.pyo62100644editdlrm
optparse.py612030644editdlrm
optparse.pyc557140644editdlrm
optparse.pyo556310644editdlrm
os.py259100644editdlrm
os.pyc263780644editdlrm
os.pyo263780644editdlrm
os2emxpath.py46350644editdlrm
os2emxpath.pyc46420644editdlrm
os2emxpath.pyo46420644editdlrm
pdb.doc79140644editdlrm
pdb.py460950755editdlrm
pdb.pyc451510644editdlrm
pdb.pyo451510644editdlrm
pickle.py454890644editdlrm
pickle.pyc399120644editdlrm
pickle.pyo397160644editdlrm
pickletools.py745230644editdlrm
pickletools.pyc574480644editdlrm
pickletools.pyo565870644editdlrm
pipes.py95820644editdlrm
pipes.pyc95160644editdlrm
pipes.pyo95160644editdlrm
pkgutil.py202430644editdlrm
pkgutil.pyc193880644editdlrm
pkgutil.pyo193880644editdlrm
platform.py527850755editdlrm
platform.pyc386020644editdlrm
platform.pyo386020644editdlrm
plistlib.py151850644editdlrm
plistlib.pyc200080644editdlrm
plistlib.pyo199220644editdlrm
popen2.py84160644editdlrm
popen2.pyc92330644editdlrm
popen2.pyo91910644editdlrm
poplib.py128240644editdlrm
poplib.pyc137740644editdlrm
poplib.pyo137740644editdlrm
posixfile.py80030644editdlrm
posixfile.pyc78080644editdlrm
posixfile.pyo78080644editdlrm
posixpath.py142930644editdlrm
posixpath.pyc117610644editdlrm
posixpath.pyo117610644editdlrm
pprint.py117770644editdlrm
pprint.pyc104410644editdlrm
pprint.pyo102640644editdlrm
profile.py227780755editdlrm
profile.pyc169630644editdlrm
profile.pyo167160644editdlrm
pstats.py267120644editdlrm
pstats.pyc257930644editdlrm
pstats.pyo257930644editdlrm
pty.py50580644editdlrm
pty.pyc50960644editdlrm
pty.pyo50960644editdlrm
pyclbr.py133880644editdlrm
pyclbr.pyc98200644editdlrm
pyclbr.pyo98200644editdlrm
pydoc.py956630755editdlrm
pydoc.pyc949140644editdlrm
pydoc.pyo948500644editdlrm
py_compile.py59360644editdlrm
py_compile.pyc65190644editdlrm
py_compile.pyo65190644editdlrm
Queue.py85770644editdlrm
Queue.pyc97880644editdlrm
Queue.pyo97880644editdlrm
quopri.py69650755editdlrm
quopri.pyc67170644editdlrm
quopri.pyo67170644editdlrm
random.py324570644editdlrm
random.pyc262630644editdlrm
random.pyo262630644editdlrm
re.py134230644editdlrm
re.pyc136860644editdlrm
re.pyo136860644editdlrm
repr.py42960644editdlrm
repr.pyc56060644editdlrm
repr.pyo56060644editdlrm
rexec.py201480644editdlrm
rexec.pyc245740644editdlrm
rexec.pyo245740644editdlrm
rfc822.py335420644editdlrm
rfc822.pyc325930644editdlrm
rfc822.pyo325930644editdlrm
rlcompleter.py59910644editdlrm
rlcompleter.pyc61820644editdlrm
rlcompleter.pyo61820644editdlrm
robotparser.py76950644editdlrm
robotparser.pyc83150644editdlrm
robotparser.pyo83150644editdlrm
runpy.py110810644editdlrm
runpy.pyc90630644editdlrm
runpy.pyo90630644editdlrm
sched.py50880644editdlrm
sched.pyc51110644editdlrm
sched.pyo51110644editdlrm
sets.py190500644editdlrm
sets.pyc176230644editdlrm
sets.pyo176230644editdlrm
sgmllib.py178840644editdlrm
sgmllib.pyc160470644editdlrm
sgmllib.pyo160470644editdlrm
sha.py3930644editdlrm
sha.pyc4340644editdlrm
sha.pyo4340644editdlrm
shelve.py81780644editdlrm
shelve.pyc106070644editdlrm
shelve.pyo106070644editdlrm
shlex.py111640644editdlrm
shlex.pyc77270644editdlrm
shlex.pyo77270644editdlrm
shutil.py198710644editdlrm
shutil.pyc196490644editdlrm
shutil.pyo196490644editdlrm
SimpleHTTPServer.py79970644editdlrm
SimpleHTTPServer.pyc81530644editdlrm
SimpleHTTPServer.pyo81530644editdlrm
SimpleXMLRPCServer.py258120644editdlrm
SimpleXMLRPCServer.pyc233310644editdlrm
SimpleXMLRPCServer.pyo233310644editdlrm
site.py196370644editdlrm
site.pyc198190644editdlrm
site.pyo198190644editdlrm
smtpd.py185390755editdlrm
smtpd.pyc162860644editdlrm
smtpd.pyo162860644editdlrm
smtplib.py321310755editdlrm
smtplib.pyc310190644editdlrm
smtplib.pyo310190644editdlrm
sndhdr.py59730644editdlrm
sndhdr.pyc75820644editdlrm
sndhdr.pyo75820644editdlrm
socket.py206150644editdlrm
socket.pyc165420644editdlrm
socket.pyo164560644editdlrm
SocketServer.py239480644editdlrm
SocketServer.pyc248280644editdlrm
SocketServer.pyo248280644editdlrm
sre.py3840644editdlrm
sre.pyc5320644editdlrm
sre.pyo5320644editdlrm
sre_compile.py198230644editdlrm
sre_compile.pyc127550644editdlrm
sre_compile.pyo125990644editdlrm
sre_constants.py71970644editdlrm
sre_constants.pyc62600644editdlrm
sre_constants.pyo62600644editdlrm
sre_parse.py307000644editdlrm
sre_parse.pyc216240644editdlrm
sre_parse.pyo216240644editdlrm
ssl.py374550644editdlrm
ssl.pyc330150644editdlrm
ssl.pyo330150644editdlrm
stat.py18420644editdlrm
stat.pyc28810644editdlrm
stat.pyo28810644editdlrm
statvfs.py8980644editdlrm
statvfs.pyc6330644editdlrm
statvfs.pyo6330644editdlrm
string.py215480644editdlrm
string.pyc211220644editdlrm
string.pyo211220644editdlrm
StringIO.py106620644editdlrm
StringIO.pyc117270644editdlrm
StringIO.pyo117270644editdlrm
stringold.py124490644editdlrm
stringold.pyc129000644editdlrm
stringold.pyo129000644editdlrm
stringprep.py135220644editdlrm
stringprep.pyc147470644editdlrm
stringprep.pyo146750644editdlrm
struct.py820644editdlrm
struct.pyc2520644editdlrm
struct.pyo2520644editdlrm
subprocess.py505200644editdlrm
subprocess.pyc331000644editdlrm
subprocess.pyo331000644editdlrm
sunau.py172220644editdlrm
sunau.pyc190180644editdlrm
sunau.pyo190180644editdlrm
sunaudio.py13990644editdlrm
sunaudio.pyc20520644editdlrm
sunaudio.pyo20520644editdlrm
symbol.py20540755editdlrm
symbol.pyc30520644editdlrm
symbol.pyo30520644editdlrm
symtable.py74370644editdlrm
symtable.pyc124360644editdlrm
symtable.pyo123050644editdlrm
sysconfig.py228520644editdlrm
sysconfig.pyc181560644editdlrm
sysconfig.pyo181530644editdlrm
tabnanny.py113360755editdlrm
tabnanny.pyc85070644editdlrm
tabnanny.pyo85070644editdlrm
tarfile.py905680644editdlrm
tarfile.pyc783740644editdlrm
tarfile.pyo783740644editdlrm
telnetlib.py270360644editdlrm
telnetlib.pyc235830644editdlrm
telnetlib.pyo235830644editdlrm
tempfile.py195470644editdlrm
tempfile.pyc210460644editdlrm
tempfile.pyo210460644editdlrm
textwrap.py172800644editdlrm
textwrap.pyc122790644editdlrm
textwrap.pyo121870644editdlrm
this.py10020644editdlrm
this.pyc12330644editdlrm
this.pyo12330644editdlrm
threading.py472820644editdlrm
threading.pyc439990644editdlrm
threading.pyo418250644editdlrm
timeit.py127880755editdlrm
timeit.pyc123520644editdlrm
timeit.pyo123520644editdlrm
toaiff.py31420644editdlrm
toaiff.pyc31580644editdlrm
toaiff.pyo31580644editdlrm
token.py29220644editdlrm
token.pyc38810644editdlrm
token.pyo38810644editdlrm
tokenize.py174830644editdlrm
tokenize.pyc147130644editdlrm
tokenize.pyo146570644editdlrm
trace.py298880755editdlrm
trace.pyc232350644editdlrm
trace.pyo231720644editdlrm
traceback.py112850644editdlrm
traceback.pyc119390644editdlrm
traceback.pyo119390644editdlrm
tty.py8790644editdlrm
tty.pyc13560644editdlrm
tty.pyo13560644editdlrm
types.py20940644editdlrm
types.pyc28160644editdlrm
types.pyo28160644editdlrm
urllib.py602280644editdlrm
urllib.pyc525800644editdlrm
urllib.pyo524850644editdlrm
urllib2.py525370644editdlrm
urllib2.pyc489490644editdlrm
urllib2.pyo488540644editdlrm
urlparse.py166780644editdlrm
urlparse.pyc158860644editdlrm
urlparse.pyo158860644editdlrm
user.py16270644editdlrm
user.pyc17370644editdlrm
user.pyo17370644editdlrm
UserDict.py70600644editdlrm
UserDict.pyc102960644editdlrm
UserDict.pyo102960644editdlrm
UserList.py36440644editdlrm
UserList.pyc70190644editdlrm
UserList.pyo70190644editdlrm
UserString.py96840755editdlrm
UserString.pyc157480644editdlrm
UserString.pyo157480644editdlrm
uu.py66940755editdlrm
uu.pyc44550644editdlrm
uu.pyo44550644editdlrm
uuid.py231750644editdlrm
uuid.pyc237780644editdlrm
uuid.pyo236620644editdlrm
warnings.py148230644editdlrm
warnings.pyc138090644editdlrm
warnings.pyo130200644editdlrm
wave.py185820644editdlrm
wave.pyc206760644editdlrm
wave.pyo205320644editdlrm
weakref.py148300644editdlrm
weakref.pyc171300644editdlrm
weakref.pyo171300644editdlrm
webbrowser.py227220755editdlrm
webbrowser.pyc203350644editdlrm
webbrowser.pyo202900644editdlrm
whichdb.py33880644editdlrm
whichdb.pyc22670644editdlrm
whichdb.pyo22670644editdlrm
wsgiref.egg-info1870644editdlrm
xdrlib.py60690644editdlrm
xdrlib.pyc104480644editdlrm
xdrlib.pyo104480644editdlrm
xmllib.py348650644editdlrm
xmllib.pyc275500644editdlrm
xmllib.pyo275500644editdlrm
xmlrpclib.py521360644editdlrm
xmlrpclib.pyc458870644editdlrm
xmlrpclib.pyo457030644editdlrm
zipfile.py594770644editdlrm
zipfile.pyc429300644editdlrm
zipfile.pyo429300644editdlrm
_abcoll.py186190644editdlrm
_abcoll.pyc270340644editdlrm
_abcoll.pyo270340644editdlrm
_LWPCookieJar.py65530644editdlrm
_LWPCookieJar.pyc55120644editdlrm
_LWPCookieJar.pyo55120644editdlrm
_MozillaCookieJar.py57970644editdlrm
_MozillaCookieJar.pyc45130644editdlrm
_MozillaCookieJar.pyo44740644editdlrm
_osx_support.py191000644editdlrm
_osx_support.pyc120050644editdlrm
_osx_support.pyo120050644editdlrm
_pyio.py696300644editdlrm
_pyio.pyc669760644editdlrm
_pyio.pyo669760644editdlrm
_strptime.py207280644editdlrm
_strptime.pyc154320644editdlrm
_strptime.pyo154320644editdlrm
_sysconfigdata.py191820644editdlrm
_sysconfigdata.pyc223610644editdlrm
_sysconfigdata.pyo223610644editdlrm
_threading_local.py72600644editdlrm
_threading_local.pyc64900644editdlrm
_threading_local.pyo64900644editdlrm
_weakrefset.py59110644editdlrm
_weakrefset.pyc103020644editdlrm
_weakrefset.pyo103020644editdlrm
__future__.py43800644editdlrm
__future__.pyc43010644editdlrm
__future__.pyo43010644editdlrm
__phello__.foo.py640644editdlrm
__phello__.foo.pyc1380644editdlrm
__phello__.foo.pyo1380644editdlrm
Edit: /opt/alt/python27/lib64/python2.7/random.py (32457B)
"""Random variable generators. integers -------- uniform within range sequences --------- pick random element pick random sample generate random permutation distributions on the real line: ------------------------------ uniform triangular normal (Gaussian) lognormal negative exponential gamma beta pareto Weibull distributions on the circle (angles 0 to 2pi) --------------------------------------------- circular uniform von Mises General notes on the underlying Mersenne Twister core generator: * The period is 2**19937-1. * It is one of the most extensively tested generators in existence. * Without a direct way to compute N steps forward, the semantics of jumpahead(n) are weakened to simply jump to another distant state and rely on the large period to avoid overlapping sequences. * The random() method is implemented in C, executes in a single Python step, and is, therefore, threadsafe. """ from __future__ import division from warnings import warn as _warn from types import MethodType as _MethodType, BuiltinMethodType as _BuiltinMethodType from math import log as _log, exp as _exp, pi as _pi, e as _e, ceil as _ceil from math import sqrt as _sqrt, acos as _acos, cos as _cos, sin as _sin from os import urandom as _urandom from binascii import hexlify as _hexlify import hashlib as _hashlib __all__ = ["Random","seed","random","uniform","randint","choice","sample", "randrange","shuffle","normalvariate","lognormvariate", "expovariate","vonmisesvariate","gammavariate","triangular", "gauss","betavariate","paretovariate","weibullvariate", "getstate","setstate","jumpahead", "WichmannHill", "getrandbits", "SystemRandom"] NV_MAGICCONST = 4 * _exp(-0.5)/_sqrt(2.0) TWOPI = 2.0*_pi LOG4 = _log(4.0) SG_MAGICCONST = 1.0 + _log(4.5) BPF = 53 # Number of bits in a float RECIP_BPF = 2**-BPF # Translated by Guido van Rossum from C source provided by # Adrian Baddeley. Adapted by Raymond Hettinger for use with # the Mersenne Twister and os.urandom() core generators. import _random class Random(_random.Random): """Random number generator base class used by bound module functions. Used to instantiate instances of Random to get generators that don't share state. Especially useful for multi-threaded programs, creating a different instance of Random for each thread, and using the jumpahead() method to ensure that the generated sequences seen by each thread don't overlap. Class Random can also be subclassed if you want to use a different basic generator of your own devising: in that case, override the following methods: random(), seed(), getstate(), setstate() and jumpahead(). Optionally, implement a getrandbits() method so that randrange() can cover arbitrarily large ranges. """ VERSION = 3 # used by getstate/setstate def __init__(self, x=None): """Initialize an instance. Optional argument x controls seeding, as for Random.seed(). """ self.seed(x) self.gauss_next = None def seed(self, a=None): """Initialize internal state of the random number generator. None or no argument seeds from current time or from an operating system specific randomness source if available. If a is not None or is an int or long, hash(a) is used instead. Hash values for some types are nondeterministic when the PYTHONHASHSEED environment variable is enabled. """ if a is None: try: # Seed with enough bytes to span the 19937 bit # state space for the Mersenne Twister a = long(_hexlify(_urandom(2500)), 16) except NotImplementedError: import time a = long(time.time() * 256) # use fractional seconds super(Random, self).seed(a) self.gauss_next = None def getstate(self): """Return internal state; can be passed to setstate() later.""" return self.VERSION, super(Random, self).getstate(), self.gauss_next def setstate(self, state): """Restore internal state from object returned by getstate().""" version = state[0] if version == 3: version, internalstate, self.gauss_next = state super(Random, self).setstate(internalstate) elif version == 2: version, internalstate, self.gauss_next = state # In version 2, the state was saved as signed ints, which causes # inconsistencies between 32/64-bit systems. The state is # really unsigned 32-bit ints, so we convert negative ints from # version 2 to positive longs for version 3. try: internalstate = tuple( long(x) % (2**32) for x in internalstate ) except ValueError, e: raise TypeError, e super(Random, self).setstate(internalstate) else: raise ValueError("state with version %s passed to " "Random.setstate() of version %s" % (version, self.VERSION)) def jumpahead(self, n): """Change the internal state to one that is likely far away from the current state. This method will not be in Py3.x, so it is better to simply reseed. """ # The super.jumpahead() method uses shuffling to change state, # so it needs a large and "interesting" n to work with. Here, # we use hashing to create a large n for the shuffle. s = repr(n) + repr(self.getstate()) n = int(_hashlib.new('sha512', s).hexdigest(), 16) super(Random, self).jumpahead(n) ## ---- Methods below this point do not need to be overridden when ## ---- subclassing for the purpose of using a different core generator. ## -------------------- pickle support ------------------- def __getstate__(self): # for pickle return self.getstate() def __setstate__(self, state): # for pickle self.setstate(state) def __reduce__(self): return self.__class__, (), self.getstate() ## -------------------- integer methods ------------------- def randrange(self, start, stop=None, step=1, _int=int, _maxwidth=1L< 0: if istart >= _maxwidth: return self._randbelow(istart) return _int(self.random() * istart) raise ValueError, "empty range for randrange()" # stop argument supplied. istop = _int(stop) if istop != stop: raise ValueError, "non-integer stop for randrange()" width = istop - istart if step == 1 and width > 0: # Note that # int(istart + self.random()*width) # instead would be incorrect. For example, consider istart # = -2 and istop = 0. Then the guts would be in # -2.0 to 0.0 exclusive on both ends (ignoring that random() # might return 0.0), and because int() truncates toward 0, the # final result would be -1 or 0 (instead of -2 or -1). # istart + int(self.random()*width) # would also be incorrect, for a subtler reason: the RHS # can return a long, and then randrange() would also return # a long, but we're supposed to return an int (for backward # compatibility). if width >= _maxwidth: return _int(istart + self._randbelow(width)) return _int(istart + _int(self.random()*width)) if step == 1: raise ValueError, "empty range for randrange() (%d,%d, %d)" % (istart, istop, width) # Non-unit step argument supplied. istep = _int(step) if istep != step: raise ValueError, "non-integer step for randrange()" if istep > 0: n = (width + istep - 1) // istep elif istep < 0: n = (width + istep + 1) // istep else: raise ValueError, "zero step for randrange()" if n <= 0: raise ValueError, "empty range for randrange()" if n >= _maxwidth: return istart + istep*self._randbelow(n) return istart + istep*_int(self.random() * n) def randint(self, a, b): """Return random integer in range [a, b], including both end points. """ return self.randrange(a, b+1) def _randbelow(self, n, _log=_log, _int=int, _maxwidth=1L< n-1 > 2**(k-2) r = getrandbits(k) while r >= n: r = getrandbits(k) return r if n >= _maxwidth: _warn("Underlying random() generator does not supply \n" "enough bits to choose from a population range this large") return _int(self.random() * n) ## -------------------- sequence methods ------------------- def choice(self, seq): """Choose a random element from a non-empty sequence.""" return seq[int(self.random() * len(seq))] # raises IndexError if seq is empty def shuffle(self, x, random=None): """x, random=random.random -> shuffle list x in place; return None. Optional arg random is a 0-argument function returning a random float in [0.0, 1.0); by default, the standard random.random. """ if random is None: random = self.random _int = int for i in reversed(xrange(1, len(x))): # pick an element in x[:i+1] with which to exchange x[i] j = _int(random() * (i+1)) x[i], x[j] = x[j], x[i] def sample(self, population, k): """Chooses k unique random elements from a population sequence. Returns a new list containing elements from the population while leaving the original population unchanged. The resulting list is in selection order so that all sub-slices will also be valid random samples. This allows raffle winners (the sample) to be partitioned into grand prize and second place winners (the subslices). Members of the population need not be hashable or unique. If the population contains repeats, then each occurrence is a possible selection in the sample. To choose a sample in a range of integers, use xrange as an argument. This is especially fast and space efficient for sampling from a large population: sample(xrange(10000000), 60) """ # Sampling without replacement entails tracking either potential # selections (the pool) in a list or previous selections in a set. # When the number of selections is small compared to the # population, then tracking selections is efficient, requiring # only a small set and an occasional reselection. For # a larger number of selections, the pool tracking method is # preferred since the list takes less space than the # set and it doesn't suffer from frequent reselections. n = len(population) if not 0 <= k <= n: raise ValueError("sample larger than population") random = self.random _int = int result = [None] * k setsize = 21 # size of a small set minus size of an empty list if k > 5: setsize += 4 ** _ceil(_log(k * 3, 4)) # table size for big sets if n <= setsize or hasattr(population, "keys"): # An n-length list is smaller than a k-length set, or this is a # mapping type so the other algorithm wouldn't work. pool = list(population) for i in xrange(k): # invariant: non-selected at [0,n-i) j = _int(random() * (n-i)) result[i] = pool[j] pool[j] = pool[n-i-1] # move non-selected item into vacancy else: try: selected = set() selected_add = selected.add for i in xrange(k): j = _int(random() * n) while j in selected: j = _int(random() * n) selected_add(j) result[i] = population[j] except (TypeError, KeyError): # handle (at least) sets if isinstance(population, list): raise return self.sample(tuple(population), k) return result ## -------------------- real-valued distributions ------------------- ## -------------------- uniform distribution ------------------- def uniform(self, a, b): "Get a random number in the range [a, b) or [a, b] depending on rounding." return a + (b-a) * self.random() ## -------------------- triangular -------------------- def triangular(self, low=0.0, high=1.0, mode=None): """Triangular distribution. Continuous distribution bounded by given lower and upper limits, and having a given mode value in-between. http://en.wikipedia.org/wiki/Triangular_distribution """ u = self.random() try: c = 0.5 if mode is None else (mode - low) / (high - low) except ZeroDivisionError: return low if u > c: u = 1.0 - u c = 1.0 - c low, high = high, low return low + (high - low) * (u * c) ** 0.5 ## -------------------- normal distribution -------------------- def normalvariate(self, mu, sigma): """Normal distribution. mu is the mean, and sigma is the standard deviation. """ # mu = mean, sigma = standard deviation # Uses Kinderman and Monahan method. Reference: Kinderman, # A.J. and Monahan, J.F., "Computer generation of random # variables using the ratio of uniform deviates", ACM Trans # Math Software, 3, (1977), pp257-260. random = self.random while 1: u1 = random() u2 = 1.0 - random() z = NV_MAGICCONST*(u1-0.5)/u2 zz = z*z/4.0 if zz <= -_log(u2): break return mu + z*sigma ## -------------------- lognormal distribution -------------------- def lognormvariate(self, mu, sigma): """Log normal distribution. If you take the natural logarithm of this distribution, you'll get a normal distribution with mean mu and standard deviation sigma. mu can have any value, and sigma must be greater than zero. """ return _exp(self.normalvariate(mu, sigma)) ## -------------------- exponential distribution -------------------- def expovariate(self, lambd): """Exponential distribution. lambd is 1.0 divided by the desired mean. It should be nonzero. (The parameter would be called "lambda", but that is a reserved word in Python.) Returned values range from 0 to positive infinity if lambd is positive, and from negative infinity to 0 if lambd is negative. """ # lambd: rate lambd = 1/mean # ('lambda' is a Python reserved word) # we use 1-random() instead of random() to preclude the # possibility of taking the log of zero. return -_log(1.0 - self.random())/lambd ## -------------------- von Mises distribution -------------------- def vonmisesvariate(self, mu, kappa): """Circular data distribution. mu is the mean angle, expressed in radians between 0 and 2*pi, and kappa is the concentration parameter, which must be greater than or equal to zero. If kappa is equal to zero, this distribution reduces to a uniform random angle over the range 0 to 2*pi. """ # mu: mean angle (in radians between 0 and 2*pi) # kappa: concentration parameter kappa (>= 0) # if kappa = 0 generate uniform random angle # Based upon an algorithm published in: Fisher, N.I., # "Statistical Analysis of Circular Data", Cambridge # University Press, 1993. # Thanks to Magnus Kessler for a correction to the # implementation of step 4. random = self.random if kappa <= 1e-6: return TWOPI * random() s = 0.5 / kappa r = s + _sqrt(1.0 + s * s) while 1: u1 = random() z = _cos(_pi * u1) d = z / (r + z) u2 = random() if u2 < 1.0 - d * d or u2 <= (1.0 - d) * _exp(d): break q = 1.0 / r f = (q + z) / (1.0 + q * z) u3 = random() if u3 > 0.5: theta = (mu + _acos(f)) % TWOPI else: theta = (mu - _acos(f)) % TWOPI return theta ## -------------------- gamma distribution -------------------- def gammavariate(self, alpha, beta): """Gamma distribution. Not the gamma function! Conditions on the parameters are alpha > 0 and beta > 0. The probability distribution function is: x ** (alpha - 1) * math.exp(-x / beta) pdf(x) = -------------------------------------- math.gamma(alpha) * beta ** alpha """ # alpha > 0, beta > 0, mean is alpha*beta, variance is alpha*beta**2 # Warning: a few older sources define the gamma distribution in terms # of alpha > -1.0 if alpha <= 0.0 or beta <= 0.0: raise ValueError, 'gammavariate: alpha and beta must be > 0.0' random = self.random if alpha > 1.0: # Uses R.C.H. Cheng, "The generation of Gamma # variables with non-integral shape parameters", # Applied Statistics, (1977), 26, No. 1, p71-74 ainv = _sqrt(2.0 * alpha - 1.0) bbb = alpha - LOG4 ccc = alpha + ainv while 1: u1 = random() if not 1e-7 < u1 < .9999999: continue u2 = 1.0 - random() v = _log(u1/(1.0-u1))/ainv x = alpha*_exp(v) z = u1*u1*u2 r = bbb+ccc*v-x if r + SG_MAGICCONST - 4.5*z >= 0.0 or r >= _log(z): return x * beta elif alpha == 1.0: # expovariate(1) u = random() while u <= 1e-7: u = random() return -_log(u) * beta else: # alpha is between 0 and 1 (exclusive) # Uses ALGORITHM GS of Statistical Computing - Kennedy & Gentle while 1: u = random() b = (_e + alpha)/_e p = b*u if p <= 1.0: x = p ** (1.0/alpha) else: x = -_log((b-p)/alpha) u1 = random() if p > 1.0: if u1 <= x ** (alpha - 1.0): break elif u1 <= _exp(-x): break return x * beta ## -------------------- Gauss (faster alternative) -------------------- def gauss(self, mu, sigma): """Gaussian distribution. mu is the mean, and sigma is the standard deviation. This is slightly faster than the normalvariate() function. Not thread-safe without a lock around calls. """ # When x and y are two variables from [0, 1), uniformly # distributed, then # # cos(2*pi*x)*sqrt(-2*log(1-y)) # sin(2*pi*x)*sqrt(-2*log(1-y)) # # are two *independent* variables with normal distribution # (mu = 0, sigma = 1). # (Lambert Meertens) # (corrected version; bug discovered by Mike Miller, fixed by LM) # Multithreading note: When two threads call this function # simultaneously, it is possible that they will receive the # same return value. The window is very small though. To # avoid this, you have to use a lock around all calls. (I # didn't want to slow this down in the serial case by using a # lock here.) random = self.random z = self.gauss_next self.gauss_next = None if z is None: x2pi = random() * TWOPI g2rad = _sqrt(-2.0 * _log(1.0 - random())) z = _cos(x2pi) * g2rad self.gauss_next = _sin(x2pi) * g2rad return mu + z*sigma ## -------------------- beta -------------------- ## See ## http://mail.python.org/pipermail/python-bugs-list/2001-January/003752.html ## for Ivan Frohne's insightful analysis of why the original implementation: ## ## def betavariate(self, alpha, beta): ## # Discrete Event Simulation in C, pp 87-88. ## ## y = self.expovariate(alpha) ## z = self.expovariate(1.0/beta) ## return z/(y+z) ## ## was dead wrong, and how it probably got that way. def betavariate(self, alpha, beta): """Beta distribution. Conditions on the parameters are alpha > 0 and beta > 0. Returned values range between 0 and 1. """ # This version due to Janne Sinkkonen, and matches all the std # texts (e.g., Knuth Vol 2 Ed 3 pg 134 "the beta distribution"). y = self.gammavariate(alpha, 1.) if y == 0: return 0.0 else: return y / (y + self.gammavariate(beta, 1.)) ## -------------------- Pareto -------------------- def paretovariate(self, alpha): """Pareto distribution. alpha is the shape parameter.""" # Jain, pg. 495 u = 1.0 - self.random() return 1.0 / pow(u, 1.0/alpha) ## -------------------- Weibull -------------------- def weibullvariate(self, alpha, beta): """Weibull distribution. alpha is the scale parameter and beta is the shape parameter. """ # Jain, pg. 499; bug fix courtesy Bill Arms u = 1.0 - self.random() return alpha * pow(-_log(u), 1.0/beta) ## -------------------- Wichmann-Hill ------------------- class WichmannHill(Random): VERSION = 1 # used by getstate/setstate def seed(self, a=None): """Initialize internal state from hashable object. None or no argument seeds from current time or from an operating system specific randomness source if available. If a is not None or an int or long, hash(a) is used instead. If a is an int or long, a is used directly. Distinct values between 0 and 27814431486575L inclusive are guaranteed to yield distinct internal states (this guarantee is specific to the default Wichmann-Hill generator). """ if a is None: try: a = long(_hexlify(_urandom(16)), 16) except NotImplementedError: import time a = long(time.time() * 256) # use fractional seconds if not isinstance(a, (int, long)): a = hash(a) a, x = divmod(a, 30268) a, y = divmod(a, 30306) a, z = divmod(a, 30322) self._seed = int(x)+1, int(y)+1, int(z)+1 self.gauss_next = None def random(self): """Get the next random number in the range [0.0, 1.0).""" # Wichman-Hill random number generator. # # Wichmann, B. A. & Hill, I. D. (1982) # Algorithm AS 183: # An efficient and portable pseudo-random number generator # Applied Statistics 31 (1982) 188-190 # # see also: # Correction to Algorithm AS 183 # Applied Statistics 33 (1984) 123 # # McLeod, A. I. (1985) # A remark on Algorithm AS 183 # Applied Statistics 34 (1985),198-200 # This part is thread-unsafe: # BEGIN CRITICAL SECTION x, y, z = self._seed x = (171 * x) % 30269 y = (172 * y) % 30307 z = (170 * z) % 30323 self._seed = x, y, z # END CRITICAL SECTION # Note: on a platform using IEEE-754 double arithmetic, this can # never return 0.0 (asserted by Tim; proof too long for a comment). return (x/30269.0 + y/30307.0 + z/30323.0) % 1.0 def getstate(self): """Return internal state; can be passed to setstate() later.""" return self.VERSION, self._seed, self.gauss_next def setstate(self, state): """Restore internal state from object returned by getstate().""" version = state[0] if version == 1: version, self._seed, self.gauss_next = state else: raise ValueError("state with version %s passed to " "Random.setstate() of version %s" % (version, self.VERSION)) def jumpahead(self, n): """Act as if n calls to random() were made, but quickly. n is an int, greater than or equal to 0. Example use: If you have 2 threads and know that each will consume no more than a million random numbers, create two Random objects r1 and r2, then do r2.setstate(r1.getstate()) r2.jumpahead(1000000) Then r1 and r2 will use guaranteed-disjoint segments of the full period. """ if not n >= 0: raise ValueError("n must be >= 0") x, y, z = self._seed x = int(x * pow(171, n, 30269)) % 30269 y = int(y * pow(172, n, 30307)) % 30307 z = int(z * pow(170, n, 30323)) % 30323 self._seed = x, y, z def __whseed(self, x=0, y=0, z=0): """Set the Wichmann-Hill seed from (x, y, z). These must be integers in the range [0, 256). """ if not type(x) == type(y) == type(z) == int: raise TypeError('seeds must be integers') if not (0 <= x < 256 and 0 <= y < 256 and 0 <= z < 256): raise ValueError('seeds must be in range(0, 256)') if 0 == x == y == z: # Initialize from current time import time t = long(time.time() * 256) t = int((t&0xffffff) ^ (t>>24)) t, x = divmod(t, 256) t, y = divmod(t, 256) t, z = divmod(t, 256) # Zero is a poor seed, so substitute 1 self._seed = (x or 1, y or 1, z or 1) self.gauss_next = None def whseed(self, a=None): """Seed from hashable object's hash code. None or no argument seeds from current time. It is not guaranteed that objects with distinct hash codes lead to distinct internal states. This is obsolete, provided for compatibility with the seed routine used prior to Python 2.1. Use the .seed() method instead. """ if a is None: self.__whseed() return a = hash(a) a, x = divmod(a, 256) a, y = divmod(a, 256) a, z = divmod(a, 256) x = (x + a) % 256 or 1 y = (y + a) % 256 or 1 z = (z + a) % 256 or 1 self.__whseed(x, y, z) ## --------------- Operating System Random Source ------------------ class SystemRandom(Random): """Alternate random number generator using sources provided by the operating system (such as /dev/urandom on Unix or CryptGenRandom on Windows). Not available on all systems (see os.urandom() for details). """ def random(self): """Get the next random number in the range [0.0, 1.0).""" return (long(_hexlify(_urandom(7)), 16) >> 3) * RECIP_BPF def getrandbits(self, k): """getrandbits(k) -> x. Generates a long int with k random bits.""" if k <= 0: raise ValueError('number of bits must be greater than zero') if k != int(k): raise TypeError('number of bits should be an integer') bytes = (k + 7) // 8 # bits / 8 and rounded up x = long(_hexlify(_urandom(bytes)), 16) return x >> (bytes * 8 - k) # trim excess bits def _stub(self, *args, **kwds): "Stub method. Not used for a system random number generator." return None seed = jumpahead = _stub def _notimplemented(self, *args, **kwds): "Method should not be called for a system random number generator." raise NotImplementedError('System entropy source does not have state.') getstate = setstate = _notimplemented ## -------------------- test program -------------------- def _test_generator(n, func, args): import time print n, 'times', func.__name__ total = 0.0 sqsum = 0.0 smallest = 1e10 largest = -1e10 t0 = time.time() for i in range(n): x = func(*args) total += x sqsum = sqsum + x*x smallest = min(x, smallest) largest = max(x, largest) t1 = time.time() print round(t1-t0, 3), 'sec,', avg = total/n stddev = _sqrt(sqsum/n - avg*avg) print 'avg %g, stddev %g, min %g, max %g' % \ (avg, stddev, smallest, largest) def _test(N=2000): _test_generator(N, random, ()) _test_generator(N, normalvariate, (0.0, 1.0)) _test_generator(N, lognormvariate, (0.0, 1.0)) _test_generator(N, vonmisesvariate, (0.0, 1.0)) _test_generator(N, gammavariate, (0.01, 1.0)) _test_generator(N, gammavariate, (0.1, 1.0)) _test_generator(N, gammavariate, (0.1, 2.0)) _test_generator(N, gammavariate, (0.5, 1.0)) _test_generator(N, gammavariate, (0.9, 1.0)) _test_generator(N, gammavariate, (1.0, 1.0)) _test_generator(N, gammavariate, (2.0, 1.0)) _test_generator(N, gammavariate, (20.0, 1.0)) _test_generator(N, gammavariate, (200.0, 1.0)) _test_generator(N, gauss, (0.0, 1.0)) _test_generator(N, betavariate, (3.0, 3.0)) _test_generator(N, triangular, (0.0, 1.0, 1.0/3.0)) # Create one instance, seeded from current time, and export its methods # as module-level functions. The functions share state across all uses #(both in the user's code and in the Python libraries), but that's fine # for most programs and is easier for the casual user than making them # instantiate their own Random() instance. _inst = Random() seed = _inst.seed random = _inst.random uniform = _inst.uniform triangular = _inst.triangular randint = _inst.randint choice = _inst.choice randrange = _inst.randrange sample = _inst.sample shuffle = _inst.shuffle normalvariate = _inst.normalvariate lognormvariate = _inst.lognormvariate expovariate = _inst.expovariate vonmisesvariate = _inst.vonmisesvariate gammavariate = _inst.gammavariate gauss = _inst.gauss betavariate = _inst.betavariate paretovariate = _inst.paretovariate weibullvariate = _inst.weibullvariate getstate = _inst.getstate setstate = _inst.setstate jumpahead = _inst.jumpahead getrandbits = _inst.getrandbits if __name__ == '__main__': _test()