Linux ip-148-66-134-25.ip.secureserver.net 3.10.0-1160.119.1.el7.tuxcare.els10.x86_64 #1 SMP Fri Oct 11 21:40:41 UTC 2024 x86_64
Apache
: 148.66.134.25 | : 3.147.75.46
66 Domain
8.0.30
amvm
www.github.com/MadExploits
Terminal
AUTO ROOT
Adminer
Backdoor Destroyer
Linux Exploit
Lock Shell
Lock File
Create User
CREATE RDP
PHP Mailer
BACKCONNECT
UNLOCK SHELL
HASH IDENTIFIER
CPANEL RESET
BLACK DEFEND!
README
+ Create Folder
+ Create File
/
opt /
python35 /
lib /
python3.5 /
[ HOME SHELL ]
Name
Size
Permission
Action
__pycache__
[ DIR ]
drwxr-xr-x
asyncio
[ DIR ]
drwxr-xr-x
collections
[ DIR ]
drwxr-xr-x
concurrent
[ DIR ]
drwxr-xr-x
config-3.5m
[ DIR ]
drwxr-xr-x
ctypes
[ DIR ]
drwxr-xr-x
curses
[ DIR ]
drwxr-xr-x
dbm
[ DIR ]
drwxr-xr-x
distutils
[ DIR ]
drwxr-xr-x
email
[ DIR ]
drwxr-xr-x
encodings
[ DIR ]
drwxr-xr-x
ensurepip
[ DIR ]
drwxr-xr-x
html
[ DIR ]
drwxr-xr-x
http
[ DIR ]
drwxr-xr-x
idlelib
[ DIR ]
drwxr-xr-x
importlib
[ DIR ]
drwxr-xr-x
json
[ DIR ]
drwxr-xr-x
lib-dynload
[ DIR ]
drwxr-xr-x
lib2to3
[ DIR ]
drwxr-xr-x
logging
[ DIR ]
drwxr-xr-x
multiprocessing
[ DIR ]
drwxr-xr-x
plat-linux
[ DIR ]
drwxr-xr-x
pydoc_data
[ DIR ]
drwxr-xr-x
site-packages
[ DIR ]
drwxr-xr-x
sqlite3
[ DIR ]
drwxr-xr-x
tkinter
[ DIR ]
drwxr-xr-x
turtledemo
[ DIR ]
drwxr-xr-x
unittest
[ DIR ]
drwxr-xr-x
urllib
[ DIR ]
drwxr-xr-x
venv
[ DIR ]
drwxr-xr-x
wsgiref
[ DIR ]
drwxr-xr-x
xml
[ DIR ]
drwxr-xr-x
xmlrpc
[ DIR ]
drwxr-xr-x
LICENSE.txt
12.46
KB
-rw-r--r--
__future__.py
4.73
KB
-rw-r--r--
__phello__.foo.py
64
B
-rw-r--r--
_bootlocale.py
1.27
KB
-rw-r--r--
_collections_abc.py
24.21
KB
-rw-r--r--
_compat_pickle.py
8.36
KB
-rw-r--r--
_compression.py
5.21
KB
-rw-r--r--
_dummy_thread.py
5
KB
-rw-r--r--
_markupbase.py
14.26
KB
-rw-r--r--
_osx_support.py
18.67
KB
-rw-r--r--
_pydecimal.py
223.27
KB
-rw-r--r--
_pyio.py
85.91
KB
-rw-r--r--
_sitebuiltins.py
3.04
KB
-rw-r--r--
_strptime.py
21.67
KB
-rw-r--r--
_sysconfigdata.py
18.33
KB
-rw-r--r--
_threading_local.py
7.24
KB
-rw-r--r--
_weakrefset.py
5.57
KB
-rw-r--r--
abc.py
8.43
KB
-rw-r--r--
aifc.py
31.22
KB
-rw-r--r--
antigravity.py
476
B
-rw-r--r--
argparse.py
88.03
KB
-rw-r--r--
ast.py
11.72
KB
-rw-r--r--
asynchat.py
11.69
KB
-rw-r--r--
asyncore.py
19.63
KB
-rw-r--r--
base64.py
20.03
KB
-rwxr-xr-x
bdb.py
22.81
KB
-rw-r--r--
binhex.py
13.63
KB
-rw-r--r--
bisect.py
2.53
KB
-rw-r--r--
bz2.py
12.13
KB
-rw-r--r--
cProfile.py
5.19
KB
-rwxr-xr-x
calendar.py
22.46
KB
-rw-r--r--
cgi.py
35.2
KB
-rwxr-xr-x
cgitb.py
11.74
KB
-rw-r--r--
chunk.py
5.3
KB
-rw-r--r--
cmd.py
14.51
KB
-rw-r--r--
code.py
9.88
KB
-rw-r--r--
codecs.py
35.38
KB
-rw-r--r--
codeop.py
5.85
KB
-rw-r--r--
colorsys.py
3.97
KB
-rw-r--r--
compileall.py
11.44
KB
-rw-r--r--
configparser.py
52.2
KB
-rw-r--r--
contextlib.py
12.16
KB
-rw-r--r--
copy.py
8.74
KB
-rw-r--r--
copyreg.py
6.67
KB
-rw-r--r--
crypt.py
1.83
KB
-rw-r--r--
csv.py
15.75
KB
-rw-r--r--
datetime.py
74.12
KB
-rw-r--r--
decimal.py
320
B
-rw-r--r--
difflib.py
82.23
KB
-rw-r--r--
dis.py
16.94
KB
-rw-r--r--
doctest.py
101.6
KB
-rw-r--r--
dummy_threading.py
2.75
KB
-rw-r--r--
enum.py
21.71
KB
-rw-r--r--
filecmp.py
9.6
KB
-rw-r--r--
fileinput.py
13.92
KB
-rw-r--r--
fnmatch.py
3.09
KB
-rw-r--r--
formatter.py
14.79
KB
-rw-r--r--
fractions.py
24.04
KB
-rw-r--r--
ftplib.py
34.13
KB
-rw-r--r--
functools.py
28.27
KB
-rw-r--r--
genericpath.py
4.26
KB
-rw-r--r--
getopt.py
7.31
KB
-rw-r--r--
getpass.py
5.85
KB
-rw-r--r--
gettext.py
21.03
KB
-rw-r--r--
glob.py
4.95
KB
-rw-r--r--
gzip.py
19.79
KB
-rw-r--r--
hashlib.py
7.79
KB
-rw-r--r--
heapq.py
22.39
KB
-rw-r--r--
hmac.py
4.94
KB
-rw-r--r--
imaplib.py
50.96
KB
-rw-r--r--
imghdr.py
3.67
KB
-rw-r--r--
imp.py
10.43
KB
-rw-r--r--
inspect.py
111.52
KB
-rw-r--r--
io.py
3.32
KB
-rw-r--r--
ipaddress.py
73.96
KB
-rw-r--r--
keyword.py
2.16
KB
-rwxr-xr-x
linecache.py
5.19
KB
-rw-r--r--
locale.py
72.96
KB
-rw-r--r--
lzma.py
12.62
KB
-rw-r--r--
macpath.py
5.77
KB
-rw-r--r--
macurl2path.py
2.67
KB
-rw-r--r--
mailbox.py
76.58
KB
-rw-r--r--
mailcap.py
7.91
KB
-rw-r--r--
mimetypes.py
20.36
KB
-rw-r--r--
modulefinder.py
22.54
KB
-rw-r--r--
netrc.py
5.61
KB
-rw-r--r--
nntplib.py
42.07
KB
-rw-r--r--
ntpath.py
22.26
KB
-rw-r--r--
nturl2path.py
2.39
KB
-rw-r--r--
numbers.py
10
KB
-rw-r--r--
opcode.py
5.75
KB
-rw-r--r--
operator.py
10.61
KB
-rw-r--r--
optparse.py
58.93
KB
-rw-r--r--
os.py
36.17
KB
-rw-r--r--
pathlib.py
45.9
KB
-rw-r--r--
pdb.py
59.71
KB
-rwxr-xr-x
pickle.py
54.86
KB
-rw-r--r--
pickletools.py
89.61
KB
-rw-r--r--
pipes.py
8.71
KB
-rw-r--r--
pkgutil.py
20.85
KB
-rw-r--r--
platform.py
45.05
KB
-rwxr-xr-x
plistlib.py
30.73
KB
-rw-r--r--
poplib.py
14.37
KB
-rw-r--r--
posixpath.py
14.56
KB
-rw-r--r--
pprint.py
20.37
KB
-rw-r--r--
profile.py
21.5
KB
-rwxr-xr-x
pstats.py
25.94
KB
-rw-r--r--
pty.py
4.65
KB
-rw-r--r--
py_compile.py
7.01
KB
-rw-r--r--
pyclbr.py
13.25
KB
-rw-r--r--
pydoc.py
101.21
KB
-rwxr-xr-x
queue.py
8.57
KB
-rw-r--r--
quopri.py
7.08
KB
-rwxr-xr-x
random.py
25.84
KB
-rw-r--r--
re.py
15.14
KB
-rw-r--r--
reprlib.py
5.21
KB
-rw-r--r--
rlcompleter.py
6.16
KB
-rw-r--r--
runpy.py
11.68
KB
-rw-r--r--
sched.py
6.07
KB
-rw-r--r--
selectors.py
18.98
KB
-rw-r--r--
shelve.py
8.33
KB
-rw-r--r--
shlex.py
11.18
KB
-rw-r--r--
shutil.py
39.11
KB
-rw-r--r--
signal.py
2.07
KB
-rw-r--r--
site.py
20.74
KB
-rw-r--r--
smtpd.py
34.53
KB
-rwxr-xr-x
smtplib.py
42.6
KB
-rwxr-xr-x
sndhdr.py
6.27
KB
-rw-r--r--
socket.py
26.5
KB
-rw-r--r--
socketserver.py
24.09
KB
-rw-r--r--
sre_compile.py
17.98
KB
-rw-r--r--
sre_constants.py
6.66
KB
-rw-r--r--
sre_parse.py
34.29
KB
-rw-r--r--
ssl.py
41.36
KB
-rw-r--r--
stat.py
4.92
KB
-rw-r--r--
statistics.py
19.08
KB
-rw-r--r--
string.py
11.58
KB
-rw-r--r--
stringprep.py
12.61
KB
-rw-r--r--
struct.py
257
B
-rw-r--r--
subprocess.py
57.53
KB
-rw-r--r--
sunau.py
17.67
KB
-rw-r--r--
symbol.py
2.05
KB
-rwxr-xr-x
symtable.py
7.02
KB
-rw-r--r--
sysconfig.py
23.77
KB
-rw-r--r--
tabnanny.py
11.14
KB
-rwxr-xr-x
tarfile.py
90.88
KB
-rwxr-xr-x
telnetlib.py
22.48
KB
-rw-r--r--
tempfile.py
26.01
KB
-rw-r--r--
textwrap.py
19.1
KB
-rw-r--r--
this.py
1003
B
-rw-r--r--
threading.py
47.88
KB
-rw-r--r--
timeit.py
12.1
KB
-rwxr-xr-x
token.py
3
KB
-rw-r--r--
tokenize.py
27.14
KB
-rw-r--r--
trace.py
30.8
KB
-rwxr-xr-x
traceback.py
21.66
KB
-rw-r--r--
tracemalloc.py
15.27
KB
-rw-r--r--
tty.py
879
B
-rw-r--r--
turtle.py
140.25
KB
-rw-r--r--
types.py
8.59
KB
-rw-r--r--
typing.py
78.26
KB
-rw-r--r--
uu.py
6.6
KB
-rwxr-xr-x
uuid.py
22.72
KB
-rw-r--r--
warnings.py
15.48
KB
-rw-r--r--
wave.py
17.27
KB
-rw-r--r--
weakref.py
19.99
KB
-rw-r--r--
webbrowser.py
21.31
KB
-rwxr-xr-x
xdrlib.py
5.77
KB
-rw-r--r--
zipapp.py
6.99
KB
-rw-r--r--
zipfile.py
71.95
KB
-rw-r--r--
Delete
Unzip
Zip
${this.title}
Close
Code Editor : sre_parse.py
# # Secret Labs' Regular Expression Engine # # convert re-style regular expression to sre pattern # # Copyright (c) 1998-2001 by Secret Labs AB. All rights reserved. # # See the sre.py file for information on usage and redistribution. # """Internal support module for sre""" # XXX: show string offset and offending character for all errors from sre_constants import * SPECIAL_CHARS = ".\\[{()*+?^$|" REPEAT_CHARS = "*+?{" DIGITS = frozenset("0123456789") OCTDIGITS = frozenset("01234567") HEXDIGITS = frozenset("0123456789abcdefABCDEF") ASCIILETTERS = frozenset("abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ") WHITESPACE = frozenset(" \t\n\r\v\f") _REPEATCODES = frozenset({MIN_REPEAT, MAX_REPEAT}) _UNITCODES = frozenset({ANY, RANGE, IN, LITERAL, NOT_LITERAL, CATEGORY}) ESCAPES = { r"\a": (LITERAL, ord("\a")), r"\b": (LITERAL, ord("\b")), r"\f": (LITERAL, ord("\f")), r"\n": (LITERAL, ord("\n")), r"\r": (LITERAL, ord("\r")), r"\t": (LITERAL, ord("\t")), r"\v": (LITERAL, ord("\v")), r"\\": (LITERAL, ord("\\")) } CATEGORIES = { r"\A": (AT, AT_BEGINNING_STRING), # start of string r"\b": (AT, AT_BOUNDARY), r"\B": (AT, AT_NON_BOUNDARY), r"\d": (IN, [(CATEGORY, CATEGORY_DIGIT)]), r"\D": (IN, [(CATEGORY, CATEGORY_NOT_DIGIT)]), r"\s": (IN, [(CATEGORY, CATEGORY_SPACE)]), r"\S": (IN, [(CATEGORY, CATEGORY_NOT_SPACE)]), r"\w": (IN, [(CATEGORY, CATEGORY_WORD)]), r"\W": (IN, [(CATEGORY, CATEGORY_NOT_WORD)]), r"\Z": (AT, AT_END_STRING), # end of string } FLAGS = { # standard flags "i": SRE_FLAG_IGNORECASE, "L": SRE_FLAG_LOCALE, "m": SRE_FLAG_MULTILINE, "s": SRE_FLAG_DOTALL, "x": SRE_FLAG_VERBOSE, # extensions "a": SRE_FLAG_ASCII, "t": SRE_FLAG_TEMPLATE, "u": SRE_FLAG_UNICODE, } class Pattern: # master pattern object. keeps track of global attributes def __init__(self): self.flags = 0 self.groupdict = {} self.groupwidths = [None] # group 0 self.lookbehindgroups = None @property def groups(self): return len(self.groupwidths) def opengroup(self, name=None): gid = self.groups self.groupwidths.append(None) if self.groups > MAXGROUPS: raise error("too many groups") if name is not None: ogid = self.groupdict.get(name, None) if ogid is not None: raise error("redefinition of group name %r as group %d; " "was group %d" % (name, gid, ogid)) self.groupdict[name] = gid return gid def closegroup(self, gid, p): self.groupwidths[gid] = p.getwidth() def checkgroup(self, gid): return gid < self.groups and self.groupwidths[gid] is not None def checklookbehindgroup(self, gid, source): if self.lookbehindgroups is not None: if not self.checkgroup(gid): raise source.error('cannot refer to an open group') if gid >= self.lookbehindgroups: raise source.error('cannot refer to group defined in the same ' 'lookbehind subpattern') class SubPattern: # a subpattern, in intermediate form def __init__(self, pattern, data=None): self.pattern = pattern if data is None: data = [] self.data = data self.width = None def dump(self, level=0): nl = True seqtypes = (tuple, list) for op, av in self.data: print(level*" " + str(op), end='') if op is IN: # member sublanguage print() for op, a in av: print((level+1)*" " + str(op), a) elif op is BRANCH: print() for i, a in enumerate(av[1]): if i: print(level*" " + "OR") a.dump(level+1) elif op is GROUPREF_EXISTS: condgroup, item_yes, item_no = av print('', condgroup) item_yes.dump(level+1) if item_no: print(level*" " + "ELSE") item_no.dump(level+1) elif isinstance(av, seqtypes): nl = False for a in av: if isinstance(a, SubPattern): if not nl: print() a.dump(level+1) nl = True else: if not nl: print(' ', end='') print(a, end='') nl = False if not nl: print() else: print('', av) def __repr__(self): return repr(self.data) def __len__(self): return len(self.data) def __delitem__(self, index): del self.data[index] def __getitem__(self, index): if isinstance(index, slice): return SubPattern(self.pattern, self.data[index]) return self.data[index] def __setitem__(self, index, code): self.data[index] = code def insert(self, index, code): self.data.insert(index, code) def append(self, code): self.data.append(code) def getwidth(self): # determine the width (min, max) for this subpattern if self.width is not None: return self.width lo = hi = 0 for op, av in self.data: if op is BRANCH: i = MAXREPEAT - 1 j = 0 for av in av[1]: l, h = av.getwidth() i = min(i, l) j = max(j, h) lo = lo + i hi = hi + j elif op is CALL: i, j = av.getwidth() lo = lo + i hi = hi + j elif op is SUBPATTERN: i, j = av[1].getwidth() lo = lo + i hi = hi + j elif op in _REPEATCODES: i, j = av[2].getwidth() lo = lo + i * av[0] hi = hi + j * av[1] elif op in _UNITCODES: lo = lo + 1 hi = hi + 1 elif op is GROUPREF: i, j = self.pattern.groupwidths[av] lo = lo + i hi = hi + j elif op is GROUPREF_EXISTS: i, j = av[1].getwidth() if av[2] is not None: l, h = av[2].getwidth() i = min(i, l) j = max(j, h) else: i = 0 lo = lo + i hi = hi + j elif op is SUCCESS: break self.width = min(lo, MAXREPEAT - 1), min(hi, MAXREPEAT) return self.width class Tokenizer: def __init__(self, string): self.istext = isinstance(string, str) self.string = string if not self.istext: string = str(string, 'latin1') self.decoded_string = string self.index = 0 self.next = None self.__next() def __next(self): index = self.index try: char = self.decoded_string[index] except IndexError: self.next = None return if char == "\\": index += 1 try: char += self.decoded_string[index] except IndexError: raise error("bad escape (end of pattern)", self.string, len(self.string) - 1) from None self.index = index + 1 self.next = char def match(self, char): if char == self.next: self.__next() return True return False def get(self): this = self.next self.__next() return this def getwhile(self, n, charset): result = '' for _ in range(n): c = self.next if c not in charset: break result += c self.__next() return result def getuntil(self, terminator): result = '' while True: c = self.next self.__next() if c is None: if not result: raise self.error("missing group name") raise self.error("missing %s, unterminated name" % terminator, len(result)) if c == terminator: if not result: raise self.error("missing group name", 1) break result += c return result def tell(self): return self.index - len(self.next or '') def seek(self, index): self.index = index self.__next() def error(self, msg, offset=0): return error(msg, self.string, self.tell() - offset) # The following three functions are not used in this module anymore, but we keep # them here (with DeprecationWarnings) for backwards compatibility. def isident(char): import warnings warnings.warn('sre_parse.isident() will be removed in 3.5', DeprecationWarning, stacklevel=2) return "a" <= char <= "z" or "A" <= char <= "Z" or char == "_" def isdigit(char): import warnings warnings.warn('sre_parse.isdigit() will be removed in 3.5', DeprecationWarning, stacklevel=2) return "0" <= char <= "9" def isname(name): import warnings warnings.warn('sre_parse.isname() will be removed in 3.5', DeprecationWarning, stacklevel=2) # check that group name is a valid string if not isident(name[0]): return False for char in name[1:]: if not isident(char) and not isdigit(char): return False return True def _class_escape(source, escape, nested): # handle escape code inside character class code = ESCAPES.get(escape) if code: return code code = CATEGORIES.get(escape) if code and code[0] is IN: return code try: c = escape[1:2] if c == "x": # hexadecimal escape (exactly two digits) escape += source.getwhile(2, HEXDIGITS) if len(escape) != 4: raise source.error("incomplete escape %s" % escape, len(escape)) return LITERAL, int(escape[2:], 16) elif c == "u" and source.istext: # unicode escape (exactly four digits) escape += source.getwhile(4, HEXDIGITS) if len(escape) != 6: raise source.error("incomplete escape %s" % escape, len(escape)) return LITERAL, int(escape[2:], 16) elif c == "U" and source.istext: # unicode escape (exactly eight digits) escape += source.getwhile(8, HEXDIGITS) if len(escape) != 10: raise source.error("incomplete escape %s" % escape, len(escape)) c = int(escape[2:], 16) chr(c) # raise ValueError for invalid code return LITERAL, c elif c in OCTDIGITS: # octal escape (up to three digits) escape += source.getwhile(2, OCTDIGITS) c = int(escape[1:], 8) if c > 0o377: raise source.error('octal escape value %s outside of ' 'range 0-0o377' % escape, len(escape)) return LITERAL, c elif c in DIGITS: raise ValueError if len(escape) == 2: if c in ASCIILETTERS: import warnings warnings.warn('bad escape %s' % escape, DeprecationWarning, stacklevel=nested + 6) return LITERAL, ord(escape[1]) except ValueError: pass raise source.error("bad escape %s" % escape, len(escape)) def _escape(source, escape, state, nested): # handle escape code in expression code = CATEGORIES.get(escape) if code: return code code = ESCAPES.get(escape) if code: return code try: c = escape[1:2] if c == "x": # hexadecimal escape escape += source.getwhile(2, HEXDIGITS) if len(escape) != 4: raise source.error("incomplete escape %s" % escape, len(escape)) return LITERAL, int(escape[2:], 16) elif c == "u" and source.istext: # unicode escape (exactly four digits) escape += source.getwhile(4, HEXDIGITS) if len(escape) != 6: raise source.error("incomplete escape %s" % escape, len(escape)) return LITERAL, int(escape[2:], 16) elif c == "U" and source.istext: # unicode escape (exactly eight digits) escape += source.getwhile(8, HEXDIGITS) if len(escape) != 10: raise source.error("incomplete escape %s" % escape, len(escape)) c = int(escape[2:], 16) chr(c) # raise ValueError for invalid code return LITERAL, c elif c == "0": # octal escape escape += source.getwhile(2, OCTDIGITS) return LITERAL, int(escape[1:], 8) elif c in DIGITS: # octal escape *or* decimal group reference (sigh) if source.next in DIGITS: escape += source.get() if (escape[1] in OCTDIGITS and escape[2] in OCTDIGITS and source.next in OCTDIGITS): # got three octal digits; this is an octal escape escape += source.get() c = int(escape[1:], 8) if c > 0o377: raise source.error('octal escape value %s outside of ' 'range 0-0o377' % escape, len(escape)) return LITERAL, c # not an octal escape, so this is a group reference group = int(escape[1:]) if group < state.groups: if not state.checkgroup(group): raise source.error("cannot refer to an open group", len(escape)) state.checklookbehindgroup(group, source) return GROUPREF, group raise source.error("invalid group reference", len(escape)) if len(escape) == 2: if c in ASCIILETTERS: import warnings warnings.warn('bad escape %s' % escape, DeprecationWarning, stacklevel=nested + 6) return LITERAL, ord(escape[1]) except ValueError: pass raise source.error("bad escape %s" % escape, len(escape)) def _parse_sub(source, state, nested): # parse an alternation: a|b|c items = [] itemsappend = items.append sourcematch = source.match start = source.tell() while True: itemsappend(_parse(source, state, nested + 1)) if not sourcematch("|"): break if len(items) == 1: return items[0] subpattern = SubPattern(state) subpatternappend = subpattern.append # check if all items share a common prefix while True: prefix = None for item in items: if not item: break if prefix is None: prefix = item[0] elif item[0] != prefix: break else: # all subitems start with a common "prefix". # move it out of the branch for item in items: del item[0] subpatternappend(prefix) continue # check next one break # check if the branch can be replaced by a character set for item in items: if len(item) != 1 or item[0][0] is not LITERAL: break else: # we can store this as a character set instead of a # branch (the compiler may optimize this even more) subpatternappend((IN, [item[0] for item in items])) return subpattern subpattern.append((BRANCH, (None, items))) return subpattern def _parse_sub_cond(source, state, condgroup, nested): item_yes = _parse(source, state, nested + 1) if source.match("|"): item_no = _parse(source, state, nested + 1) if source.next == "|": raise source.error("conditional backref with more than two branches") else: item_no = None subpattern = SubPattern(state) subpattern.append((GROUPREF_EXISTS, (condgroup, item_yes, item_no))) return subpattern def _parse(source, state, nested): # parse a simple pattern subpattern = SubPattern(state) # precompute constants into local variables subpatternappend = subpattern.append sourceget = source.get sourcematch = source.match _len = len _ord = ord verbose = state.flags & SRE_FLAG_VERBOSE while True: this = source.next if this is None: break # end of pattern if this in "|)": break # end of subpattern sourceget() if verbose: # skip whitespace and comments if this in WHITESPACE: continue if this == "#": while True: this = sourceget() if this is None or this == "\n": break continue if this[0] == "\\": code = _escape(source, this, state, nested + 1) subpatternappend(code) elif this not in SPECIAL_CHARS: subpatternappend((LITERAL, _ord(this))) elif this == "[": here = source.tell() - 1 # character set set = [] setappend = set.append ## if sourcematch(":"): ## pass # handle character classes if sourcematch("^"): setappend((NEGATE, None)) # check remaining characters start = set[:] while True: this = sourceget() if this is None: raise source.error("unterminated character set", source.tell() - here) if this == "]" and set != start: break elif this[0] == "\\": code1 = _class_escape(source, this, nested + 1) else: code1 = LITERAL, _ord(this) if sourcematch("-"): # potential range that = sourceget() if that is None: raise source.error("unterminated character set", source.tell() - here) if that == "]": if code1[0] is IN: code1 = code1[1][0] setappend(code1) setappend((LITERAL, _ord("-"))) break if that[0] == "\\": code2 = _class_escape(source, that, nested + 1) else: code2 = LITERAL, _ord(that) if code1[0] != LITERAL or code2[0] != LITERAL: msg = "bad character range %s-%s" % (this, that) raise source.error(msg, len(this) + 1 + len(that)) lo = code1[1] hi = code2[1] if hi < lo: msg = "bad character range %s-%s" % (this, that) raise source.error(msg, len(this) + 1 + len(that)) setappend((RANGE, (lo, hi))) else: if code1[0] is IN: code1 = code1[1][0] setappend(code1) # XXX: <fl> should move set optimization to compiler! if _len(set)==1 and set[0][0] is LITERAL: subpatternappend(set[0]) # optimization elif _len(set)==2 and set[0][0] is NEGATE and set[1][0] is LITERAL: subpatternappend((NOT_LITERAL, set[1][1])) # optimization else: # XXX: <fl> should add charmap optimization here subpatternappend((IN, set)) elif this in REPEAT_CHARS: # repeat previous item here = source.tell() if this == "?": min, max = 0, 1 elif this == "*": min, max = 0, MAXREPEAT elif this == "+": min, max = 1, MAXREPEAT elif this == "{": if source.next == "}": subpatternappend((LITERAL, _ord(this))) continue min, max = 0, MAXREPEAT lo = hi = "" while source.next in DIGITS: lo += sourceget() if sourcematch(","): while source.next in DIGITS: hi += sourceget() else: hi = lo if not sourcematch("}"): subpatternappend((LITERAL, _ord(this))) source.seek(here) continue if lo: min = int(lo) if min >= MAXREPEAT: raise OverflowError("the repetition number is too large") if hi: max = int(hi) if max >= MAXREPEAT: raise OverflowError("the repetition number is too large") if max < min: raise source.error("min repeat greater than max repeat", source.tell() - here) else: raise AssertionError("unsupported quantifier %r" % (char,)) # figure out which item to repeat if subpattern: item = subpattern[-1:] else: item = None if not item or (_len(item) == 1 and item[0][0] is AT): raise source.error("nothing to repeat", source.tell() - here + len(this)) if item[0][0] in _REPEATCODES: raise source.error("multiple repeat", source.tell() - here + len(this)) if sourcematch("?"): subpattern[-1] = (MIN_REPEAT, (min, max, item)) else: subpattern[-1] = (MAX_REPEAT, (min, max, item)) elif this == ".": subpatternappend((ANY, None)) elif this == "(": start = source.tell() - 1 group = True name = None condgroup = None if sourcematch("?"): # options char = sourceget() if char is None: raise source.error("unexpected end of pattern") if char == "P": # python extensions if sourcematch("<"): # named group: skip forward to end of name name = source.getuntil(">") if not name.isidentifier(): msg = "bad character in group name %r" % name raise source.error(msg, len(name) + 1) elif sourcematch("="): # named backreference name = source.getuntil(")") if not name.isidentifier(): msg = "bad character in group name %r" % name raise source.error(msg, len(name) + 1) gid = state.groupdict.get(name) if gid is None: msg = "unknown group name %r" % name raise source.error(msg, len(name) + 1) if not state.checkgroup(gid): raise source.error("cannot refer to an open group", len(name) + 1) state.checklookbehindgroup(gid, source) subpatternappend((GROUPREF, gid)) continue else: char = sourceget() if char is None: raise source.error("unexpected end of pattern") raise source.error("unknown extension ?P" + char, len(char) + 2) elif char == ":": # non-capturing group group = None elif char == "#": # comment while True: if source.next is None: raise source.error("missing ), unterminated comment", source.tell() - start) if sourceget() == ")": break continue elif char in "=!<": # lookahead assertions dir = 1 if char == "<": char = sourceget() if char is None: raise source.error("unexpected end of pattern") if char not in "=!": raise source.error("unknown extension ?<" + char, len(char) + 2) dir = -1 # lookbehind lookbehindgroups = state.lookbehindgroups if lookbehindgroups is None: state.lookbehindgroups = state.groups p = _parse_sub(source, state, nested + 1) if dir < 0: if lookbehindgroups is None: state.lookbehindgroups = None if not sourcematch(")"): raise source.error("missing ), unterminated subpattern", source.tell() - start) if char == "=": subpatternappend((ASSERT, (dir, p))) else: subpatternappend((ASSERT_NOT, (dir, p))) continue elif char == "(": # conditional backreference group condname = source.getuntil(")") group = None if condname.isidentifier(): condgroup = state.groupdict.get(condname) if condgroup is None: msg = "unknown group name %r" % condname raise source.error(msg, len(condname) + 1) else: try: condgroup = int(condname) if condgroup < 0: raise ValueError except ValueError: msg = "bad character in group name %r" % condname raise source.error(msg, len(condname) + 1) from None if not condgroup: raise source.error("bad group number", len(condname) + 1) if condgroup >= MAXGROUPS: raise source.error("invalid group reference", len(condname) + 1) state.checklookbehindgroup(condgroup, source) elif char in FLAGS: # flags while True: state.flags |= FLAGS[char] char = sourceget() if char is None: raise source.error("missing )") if char == ")": break if char not in FLAGS: raise source.error("unknown flag", len(char)) verbose = state.flags & SRE_FLAG_VERBOSE continue else: raise source.error("unknown extension ?" + char, len(char) + 1) # parse group contents if group is not None: try: group = state.opengroup(name) except error as err: raise source.error(err.msg, len(name) + 1) from None if condgroup: p = _parse_sub_cond(source, state, condgroup, nested + 1) else: p = _parse_sub(source, state, nested + 1) if not source.match(")"): raise source.error("missing ), unterminated subpattern", source.tell() - start) if group is not None: state.closegroup(group, p) subpatternappend((SUBPATTERN, (group, p))) elif this == "^": subpatternappend((AT, AT_BEGINNING)) elif this == "$": subpattern.append((AT, AT_END)) else: raise AssertionError("unsupported special character %r" % (char,)) return subpattern def fix_flags(src, flags): # Check and fix flags according to the type of pattern (str or bytes) if isinstance(src, str): if flags & SRE_FLAG_LOCALE: import warnings warnings.warn("LOCALE flag with a str pattern is deprecated. " "Will be an error in 3.6", DeprecationWarning, stacklevel=6) if not flags & SRE_FLAG_ASCII: flags |= SRE_FLAG_UNICODE elif flags & SRE_FLAG_UNICODE: raise ValueError("ASCII and UNICODE flags are incompatible") else: if flags & SRE_FLAG_UNICODE: raise ValueError("cannot use UNICODE flag with a bytes pattern") if flags & SRE_FLAG_LOCALE and flags & SRE_FLAG_ASCII: import warnings warnings.warn("ASCII and LOCALE flags are incompatible. " "Will be an error in 3.6", DeprecationWarning, stacklevel=6) return flags def parse(str, flags=0, pattern=None): # parse 're' pattern into list of (opcode, argument) tuples source = Tokenizer(str) if pattern is None: pattern = Pattern() pattern.flags = flags pattern.str = str p = _parse_sub(source, pattern, 0) p.pattern.flags = fix_flags(str, p.pattern.flags) if source.next is not None: assert source.next == ")" raise source.error("unbalanced parenthesis") if not (flags & SRE_FLAG_VERBOSE) and p.pattern.flags & SRE_FLAG_VERBOSE: # the VERBOSE flag was switched on inside the pattern. to be # on the safe side, we'll parse the whole thing again... return parse(str, p.pattern.flags) if flags & SRE_FLAG_DEBUG: p.dump() return p def parse_template(source, pattern): # parse 're' replacement string into list of literals and # group references s = Tokenizer(source) sget = s.get groups = [] literals = [] literal = [] lappend = literal.append def addgroup(index): if literal: literals.append(''.join(literal)) del literal[:] groups.append((len(literals), index)) literals.append(None) groupindex = pattern.groupindex while True: this = sget() if this is None: break # end of replacement string if this[0] == "\\": # group c = this[1] if c == "g": name = "" if not s.match("<"): raise s.error("missing <") name = s.getuntil(">") if name.isidentifier(): try: index = groupindex[name] except KeyError: raise IndexError("unknown group name %r" % name) else: try: index = int(name) if index < 0: raise ValueError except ValueError: raise s.error("bad character in group name %r" % name, len(name) + 1) from None if index >= MAXGROUPS: raise s.error("invalid group reference", len(name) + 1) addgroup(index) elif c == "0": if s.next in OCTDIGITS: this += sget() if s.next in OCTDIGITS: this += sget() lappend(chr(int(this[1:], 8) & 0xff)) elif c in DIGITS: isoctal = False if s.next in DIGITS: this += sget() if (c in OCTDIGITS and this[2] in OCTDIGITS and s.next in OCTDIGITS): this += sget() isoctal = True c = int(this[1:], 8) if c > 0o377: raise s.error('octal escape value %s outside of ' 'range 0-0o377' % this, len(this)) lappend(chr(c)) if not isoctal: addgroup(int(this[1:])) else: try: this = chr(ESCAPES[this][1]) except KeyError: if c in ASCIILETTERS: import warnings warnings.warn('bad escape %s' % this, DeprecationWarning, stacklevel=4) lappend(this) else: lappend(this) if literal: literals.append(''.join(literal)) if not isinstance(source, str): # The tokenizer implicitly decodes bytes objects as latin-1, we must # therefore re-encode the final representation. literals = [None if s is None else s.encode('latin-1') for s in literals] return groups, literals def expand_template(template, match): g = match.group empty = match.string[:0] groups, literals = template literals = literals[:] try: for index, group in groups: literals[index] = g(group) or empty except IndexError: raise error("invalid group reference") return empty.join(literals)
Close