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 | : 18.118.37.85
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_compile.py
# # Secret Labs' Regular Expression Engine # # convert template to internal format # # Copyright (c) 1997-2001 by Secret Labs AB. All rights reserved. # # See the sre.py file for information on usage and redistribution. # """Internal support module for sre""" import _sre import sre_parse from sre_constants import * assert _sre.MAGIC == MAGIC, "SRE module mismatch" _LITERAL_CODES = {LITERAL, NOT_LITERAL} _REPEATING_CODES = {REPEAT, MIN_REPEAT, MAX_REPEAT} _SUCCESS_CODES = {SUCCESS, FAILURE} _ASSERT_CODES = {ASSERT, ASSERT_NOT} # Sets of lowercase characters which have the same uppercase. _equivalences = ( # LATIN SMALL LETTER I, LATIN SMALL LETTER DOTLESS I (0x69, 0x131), # iı # LATIN SMALL LETTER S, LATIN SMALL LETTER LONG S (0x73, 0x17f), # sſ # MICRO SIGN, GREEK SMALL LETTER MU (0xb5, 0x3bc), # µμ # COMBINING GREEK YPOGEGRAMMENI, GREEK SMALL LETTER IOTA, GREEK PROSGEGRAMMENI (0x345, 0x3b9, 0x1fbe), # \u0345ιι # GREEK SMALL LETTER IOTA WITH DIALYTIKA AND TONOS, GREEK SMALL LETTER IOTA WITH DIALYTIKA AND OXIA (0x390, 0x1fd3), # ΐΐ # GREEK SMALL LETTER UPSILON WITH DIALYTIKA AND TONOS, GREEK SMALL LETTER UPSILON WITH DIALYTIKA AND OXIA (0x3b0, 0x1fe3), # ΰΰ # GREEK SMALL LETTER BETA, GREEK BETA SYMBOL (0x3b2, 0x3d0), # βϐ # GREEK SMALL LETTER EPSILON, GREEK LUNATE EPSILON SYMBOL (0x3b5, 0x3f5), # εϵ # GREEK SMALL LETTER THETA, GREEK THETA SYMBOL (0x3b8, 0x3d1), # θϑ # GREEK SMALL LETTER KAPPA, GREEK KAPPA SYMBOL (0x3ba, 0x3f0), # κϰ # GREEK SMALL LETTER PI, GREEK PI SYMBOL (0x3c0, 0x3d6), # πϖ # GREEK SMALL LETTER RHO, GREEK RHO SYMBOL (0x3c1, 0x3f1), # ρϱ # GREEK SMALL LETTER FINAL SIGMA, GREEK SMALL LETTER SIGMA (0x3c2, 0x3c3), # ςσ # GREEK SMALL LETTER PHI, GREEK PHI SYMBOL (0x3c6, 0x3d5), # φϕ # LATIN SMALL LETTER S WITH DOT ABOVE, LATIN SMALL LETTER LONG S WITH DOT ABOVE (0x1e61, 0x1e9b), # ṡẛ # LATIN SMALL LIGATURE LONG S T, LATIN SMALL LIGATURE ST (0xfb05, 0xfb06), # ſtst ) # Maps the lowercase code to lowercase codes which have the same uppercase. _ignorecase_fixes = {i: tuple(j for j in t if i != j) for t in _equivalences for i in t} def _compile(code, pattern, flags): # internal: compile a (sub)pattern emit = code.append _len = len LITERAL_CODES = _LITERAL_CODES REPEATING_CODES = _REPEATING_CODES SUCCESS_CODES = _SUCCESS_CODES ASSERT_CODES = _ASSERT_CODES if (flags & SRE_FLAG_IGNORECASE and not (flags & SRE_FLAG_LOCALE) and flags & SRE_FLAG_UNICODE): fixes = _ignorecase_fixes else: fixes = None for op, av in pattern: if op in LITERAL_CODES: if flags & SRE_FLAG_IGNORECASE: lo = _sre.getlower(av, flags) if fixes and lo in fixes: emit(IN_IGNORE) skip = _len(code); emit(0) if op is NOT_LITERAL: emit(NEGATE) for k in (lo,) + fixes[lo]: emit(LITERAL) emit(k) emit(FAILURE) code[skip] = _len(code) - skip else: emit(OP_IGNORE[op]) emit(lo) else: emit(op) emit(av) elif op is IN: if flags & SRE_FLAG_IGNORECASE: emit(OP_IGNORE[op]) def fixup(literal, flags=flags): return _sre.getlower(literal, flags) else: emit(op) fixup = None skip = _len(code); emit(0) _compile_charset(av, flags, code, fixup, fixes) code[skip] = _len(code) - skip elif op is ANY: if flags & SRE_FLAG_DOTALL: emit(ANY_ALL) else: emit(ANY) elif op in REPEATING_CODES: if flags & SRE_FLAG_TEMPLATE: raise error("internal: unsupported template operator %r" % (op,)) elif _simple(av) and op is not REPEAT: if op is MAX_REPEAT: emit(REPEAT_ONE) else: emit(MIN_REPEAT_ONE) skip = _len(code); emit(0) emit(av[0]) emit(av[1]) _compile(code, av[2], flags) emit(SUCCESS) code[skip] = _len(code) - skip else: emit(REPEAT) skip = _len(code); emit(0) emit(av[0]) emit(av[1]) _compile(code, av[2], flags) code[skip] = _len(code) - skip if op is MAX_REPEAT: emit(MAX_UNTIL) else: emit(MIN_UNTIL) elif op is SUBPATTERN: if av[0]: emit(MARK) emit((av[0]-1)*2) # _compile_info(code, av[1], flags) _compile(code, av[1], flags) if av[0]: emit(MARK) emit((av[0]-1)*2+1) elif op in SUCCESS_CODES: emit(op) elif op in ASSERT_CODES: emit(op) skip = _len(code); emit(0) if av[0] >= 0: emit(0) # look ahead else: lo, hi = av[1].getwidth() if lo != hi: raise error("look-behind requires fixed-width pattern") emit(lo) # look behind _compile(code, av[1], flags) emit(SUCCESS) code[skip] = _len(code) - skip elif op is CALL: emit(op) skip = _len(code); emit(0) _compile(code, av, flags) emit(SUCCESS) code[skip] = _len(code) - skip elif op is AT: emit(op) if flags & SRE_FLAG_MULTILINE: av = AT_MULTILINE.get(av, av) if flags & SRE_FLAG_LOCALE: av = AT_LOCALE.get(av, av) elif flags & SRE_FLAG_UNICODE: av = AT_UNICODE.get(av, av) emit(av) elif op is BRANCH: emit(op) tail = [] tailappend = tail.append for av in av[1]: skip = _len(code); emit(0) # _compile_info(code, av, flags) _compile(code, av, flags) emit(JUMP) tailappend(_len(code)); emit(0) code[skip] = _len(code) - skip emit(FAILURE) # end of branch for tail in tail: code[tail] = _len(code) - tail elif op is CATEGORY: emit(op) if flags & SRE_FLAG_LOCALE: av = CH_LOCALE[av] elif flags & SRE_FLAG_UNICODE: av = CH_UNICODE[av] emit(av) elif op is GROUPREF: if flags & SRE_FLAG_IGNORECASE: emit(OP_IGNORE[op]) else: emit(op) emit(av-1) elif op is GROUPREF_EXISTS: emit(op) emit(av[0]-1) skipyes = _len(code); emit(0) _compile(code, av[1], flags) if av[2]: emit(JUMP) skipno = _len(code); emit(0) code[skipyes] = _len(code) - skipyes + 1 _compile(code, av[2], flags) code[skipno] = _len(code) - skipno else: code[skipyes] = _len(code) - skipyes + 1 else: raise error("internal: unsupported operand type %r" % (op,)) def _compile_charset(charset, flags, code, fixup=None, fixes=None): # compile charset subprogram emit = code.append for op, av in _optimize_charset(charset, fixup, fixes): emit(op) if op is NEGATE: pass elif op is LITERAL: emit(av) elif op is RANGE or op is RANGE_IGNORE: emit(av[0]) emit(av[1]) elif op is CHARSET: code.extend(av) elif op is BIGCHARSET: code.extend(av) elif op is CATEGORY: if flags & SRE_FLAG_LOCALE: emit(CH_LOCALE[av]) elif flags & SRE_FLAG_UNICODE: emit(CH_UNICODE[av]) else: emit(av) else: raise error("internal: unsupported set operator %r" % (op,)) emit(FAILURE) def _optimize_charset(charset, fixup, fixes): # internal: optimize character set out = [] tail = [] charmap = bytearray(256) for op, av in charset: while True: try: if op is LITERAL: if fixup: lo = fixup(av) charmap[lo] = 1 if fixes and lo in fixes: for k in fixes[lo]: charmap[k] = 1 else: charmap[av] = 1 elif op is RANGE: r = range(av[0], av[1]+1) if fixup: r = map(fixup, r) if fixup and fixes: for i in r: charmap[i] = 1 if i in fixes: for k in fixes[i]: charmap[k] = 1 else: for i in r: charmap[i] = 1 elif op is NEGATE: out.append((op, av)) else: tail.append((op, av)) except IndexError: if len(charmap) == 256: # character set contains non-UCS1 character codes charmap += b'\0' * 0xff00 continue # Character set contains non-BMP character codes. # There are only two ranges of cased non-BMP characters: # 10400-1044F (Deseret) and 118A0-118DF (Warang Citi), # and for both ranges RANGE_IGNORE works. if fixup and op is RANGE: op = RANGE_IGNORE tail.append((op, av)) break # compress character map runs = [] q = 0 while True: p = charmap.find(1, q) if p < 0: break if len(runs) >= 2: runs = None break q = charmap.find(0, p) if q < 0: runs.append((p, len(charmap))) break runs.append((p, q)) if runs is not None: # use literal/range for p, q in runs: if q - p == 1: out.append((LITERAL, p)) else: out.append((RANGE, (p, q - 1))) out += tail # if the case was changed or new representation is more compact if fixup or len(out) < len(charset): return out # else original character set is good enough return charset # use bitmap if len(charmap) == 256: data = _mk_bitmap(charmap) out.append((CHARSET, data)) out += tail return out # To represent a big charset, first a bitmap of all characters in the # set is constructed. Then, this bitmap is sliced into chunks of 256 # characters, duplicate chunks are eliminated, and each chunk is # given a number. In the compiled expression, the charset is # represented by a 32-bit word sequence, consisting of one word for # the number of different chunks, a sequence of 256 bytes (64 words) # of chunk numbers indexed by their original chunk position, and a # sequence of 256-bit chunks (8 words each). # Compression is normally good: in a typical charset, large ranges of # Unicode will be either completely excluded (e.g. if only cyrillic # letters are to be matched), or completely included (e.g. if large # subranges of Kanji match). These ranges will be represented by # chunks of all one-bits or all zero-bits. # Matching can be also done efficiently: the more significant byte of # the Unicode character is an index into the chunk number, and the # less significant byte is a bit index in the chunk (just like the # CHARSET matching). charmap = bytes(charmap) # should be hashable comps = {} mapping = bytearray(256) block = 0 data = bytearray() for i in range(0, 65536, 256): chunk = charmap[i: i + 256] if chunk in comps: mapping[i // 256] = comps[chunk] else: mapping[i // 256] = comps[chunk] = block block += 1 data += chunk data = _mk_bitmap(data) data[0:0] = [block] + _bytes_to_codes(mapping) out.append((BIGCHARSET, data)) out += tail return out _CODEBITS = _sre.CODESIZE * 8 MAXCODE = (1 << _CODEBITS) - 1 _BITS_TRANS = b'0' + b'1' * 255 def _mk_bitmap(bits, _CODEBITS=_CODEBITS, _int=int): s = bits.translate(_BITS_TRANS)[::-1] return [_int(s[i - _CODEBITS: i], 2) for i in range(len(s), 0, -_CODEBITS)] def _bytes_to_codes(b): # Convert block indices to word array a = memoryview(b).cast('I') assert a.itemsize == _sre.CODESIZE assert len(a) * a.itemsize == len(b) return a.tolist() def _simple(av): # check if av is a "simple" operator lo, hi = av[2].getwidth() return lo == hi == 1 and av[2][0][0] != SUBPATTERN def _generate_overlap_table(prefix): """ Generate an overlap table for the following prefix. An overlap table is a table of the same size as the prefix which informs about the potential self-overlap for each index in the prefix: - if overlap[i] == 0, prefix[i:] can't overlap prefix[0:...] - if overlap[i] == k with 0 < k <= i, prefix[i-k+1:i+1] overlaps with prefix[0:k] """ table = [0] * len(prefix) for i in range(1, len(prefix)): idx = table[i - 1] while prefix[i] != prefix[idx]: if idx == 0: table[i] = 0 break idx = table[idx - 1] else: table[i] = idx + 1 return table def _compile_info(code, pattern, flags): # internal: compile an info block. in the current version, # this contains min/max pattern width, and an optional literal # prefix or a character map lo, hi = pattern.getwidth() if hi > MAXCODE: hi = MAXCODE if lo == 0: code.extend([INFO, 4, 0, lo, hi]) return # look for a literal prefix prefix = [] prefixappend = prefix.append prefix_skip = 0 charset = [] # not used charsetappend = charset.append if not (flags & SRE_FLAG_IGNORECASE): # look for literal prefix for op, av in pattern.data: if op is LITERAL: if len(prefix) == prefix_skip: prefix_skip = prefix_skip + 1 prefixappend(av) elif op is SUBPATTERN and len(av[1]) == 1: op, av = av[1][0] if op is LITERAL: prefixappend(av) else: break else: break # if no prefix, look for charset prefix if not prefix and pattern.data: op, av = pattern.data[0] if op is SUBPATTERN and av[1]: op, av = av[1][0] if op is LITERAL: charsetappend((op, av)) elif op is BRANCH: c = [] cappend = c.append for p in av[1]: if not p: break op, av = p[0] if op is LITERAL: cappend((op, av)) else: break else: charset = c elif op is BRANCH: c = [] cappend = c.append for p in av[1]: if not p: break op, av = p[0] if op is LITERAL: cappend((op, av)) else: break else: charset = c elif op is IN: charset = av ## if prefix: ## print("*** PREFIX", prefix, prefix_skip) ## if charset: ## print("*** CHARSET", charset) # add an info block emit = code.append emit(INFO) skip = len(code); emit(0) # literal flag mask = 0 if prefix: mask = SRE_INFO_PREFIX if len(prefix) == prefix_skip == len(pattern.data): mask = mask | SRE_INFO_LITERAL elif charset: mask = mask | SRE_INFO_CHARSET emit(mask) # pattern length if lo < MAXCODE: emit(lo) else: emit(MAXCODE) prefix = prefix[:MAXCODE] emit(min(hi, MAXCODE)) # add literal prefix if prefix: emit(len(prefix)) # length emit(prefix_skip) # skip code.extend(prefix) # generate overlap table code.extend(_generate_overlap_table(prefix)) elif charset: _compile_charset(charset, flags, code) code[skip] = len(code) - skip def isstring(obj): return isinstance(obj, (str, bytes)) def _code(p, flags): flags = p.pattern.flags | flags code = [] # compile info block _compile_info(code, p, flags) # compile the pattern _compile(code, p.data, flags) code.append(SUCCESS) return code def compile(p, flags=0): # internal: convert pattern list to internal format if isstring(p): pattern = p p = sre_parse.parse(p, flags) else: pattern = None code = _code(p, flags) # print(code) # map in either direction groupindex = p.pattern.groupdict indexgroup = [None] * p.pattern.groups for k, i in groupindex.items(): indexgroup[i] = k return _sre.compile( pattern, flags | p.pattern.flags, code, p.pattern.groups-1, groupindex, indexgroup )
Close