__all__ = ['Generator', 'DecodedGenerator', 'BytesGenerator']
import re
import sys
import time
import random
from copy import deepcopy
from io import StringIO, BytesIO
from email.utils import _has_surrogates
from email.errors import HeaderWriteError
UNDERSCORE = '_'
NL = '\n'
NLCRE = re.compile(r'\r\n|\r|\n')
fcre = re.compile(r'^From ', re.MULTILINE)
NEWLINE_WITHOUT_FWSP = re.compile(r'\r\n[^ \t]|\r[^ \n\t]|\n[^ \t]')
class Generator:
def __init__(self, outfp, mangle_from_=None, maxheaderlen=None, *,
policy=None):
if mangle_from_ is None:
mangle_from_ = True if policy is None else policy.mangle_from_
self._fp = outfp
self._mangle_from_ = mangle_from_
self.maxheaderlen = maxheaderlen
self.policy = policy
def write(self, s):
self._fp.write(s)
def flatten(self, msg, unixfrom=False, linesep=None):
policy = msg.policy if self.policy is None else self.policy
if linesep is not None:
policy = policy.clone(linesep=linesep)
if self.maxheaderlen is not None:
policy = policy.clone(max_line_length=self.maxheaderlen)
self._NL = policy.linesep
self._encoded_NL = self._encode(self._NL)
self._EMPTY = ''
self._encoded_EMPTY = self._encode(self._EMPTY)
old_gen_policy = self.policy
old_msg_policy = msg.policy
try:
self.policy = policy
msg.policy = policy
if unixfrom:
ufrom = msg.get_unixfrom()
if not ufrom:
ufrom = 'From nobody ' + time.ctime(time.time())
self.write(ufrom + self._NL)
self._write(msg)
finally:
self.policy = old_gen_policy
msg.policy = old_msg_policy
def clone(self, fp):
return self.__class__(fp,
self._mangle_from_,
None, policy=self.policy)
def _new_buffer(self):
return StringIO()
def _encode(self, s):
return s
def _write_lines(self, lines):
if not lines:
return
lines = NLCRE.split(lines)
for line in lines[:-1]:
self.write(line)
self.write(self._NL)
if lines[-1]:
self.write(lines[-1])
def _write(self, msg):
oldfp = self._fp
try:
self._munge_cte = None
self._fp = sfp = self._new_buffer()
self._dispatch(msg)
finally:
self._fp = oldfp
munge_cte = self._munge_cte
del self._munge_cte
if munge_cte:
msg = deepcopy(msg)
if msg.get('content-transfer-encoding') is None:
msg['Content-Transfer-Encoding'] = munge_cte[0]
else:
msg.replace_header('content-transfer-encoding', munge_cte[0])
msg.replace_header('content-type', munge_cte[1])
meth = getattr(msg, '_write_headers', None)
if meth is None:
self._write_headers(msg)
else:
meth(self)
self._fp.write(sfp.getvalue())
def _dispatch(self, msg):
main = msg.get_content_maintype()
sub = msg.get_content_subtype()
specific = UNDERSCORE.join((main, sub)).replace('-', '_')
meth = getattr(self, '_handle_' + specific, None)
if meth is None:
generic = main.replace('-', '_')
meth = getattr(self, '_handle_' + generic, None)
if meth is None:
meth = self._writeBody
meth(msg)
def _write_headers(self, msg):
for h, v in msg.raw_items():
folded = self.policy.fold(h, v)
if self.policy.verify_generated_headers:
linesep = self.policy.linesep
if not folded.endswith(self.policy.linesep):
raise HeaderWriteError(
f'folded header does not end with {linesep!r}: {folded!r}')
if NEWLINE_WITHOUT_FWSP.search(folded.removesuffix(linesep)):
raise HeaderWriteError(
f'folded header contains newline: {folded!r}')
self.write(folded)
self.write(self._NL)
def _handle_text(self, msg):
payload = msg.get_payload()
if payload is None:
return
if not isinstance(payload, str):
raise TypeError('string payload expected: %s' % type(payload))
if _has_surrogates(msg._payload):
charset = msg.get_param('charset')
if charset is not None:
msg = deepcopy(msg)
del msg['content-transfer-encoding']
msg.set_payload(msg._payload, charset)
payload = msg.get_payload()
self._munge_cte = (msg['content-transfer-encoding'],
msg['content-type'])
if self._mangle_from_:
payload = fcre.sub('>From ', payload)
self._write_lines(payload)
_writeBody = _handle_text
def _handle_multipart(self, msg):
msgtexts = []
subparts = msg.get_payload()
if subparts is None:
subparts = []
elif isinstance(subparts, str):
self.write(subparts)
return
elif not isinstance(subparts, list):
subparts = [subparts]
for part in subparts:
s = self._new_buffer()
g = self.clone(s)
g.flatten(part, unixfrom=False, linesep=self._NL)
msgtexts.append(s.getvalue())
boundary = msg.get_boundary()
if not boundary:
alltext = self._encoded_NL.join(msgtexts)
boundary = self._make_boundary(alltext)
msg.set_boundary(boundary)
if msg.preamble is not None:
if self._mangle_from_:
preamble = fcre.sub('>From ', msg.preamble)
else:
preamble = msg.preamble
self._write_lines(preamble)
self.write(self._NL)
self.write('--' + boundary + self._NL)
if msgtexts:
self._fp.write(msgtexts.pop(0))
for body_part in msgtexts:
self.write(self._NL + '--' + boundary + self._NL)
self._fp.write(body_part)
self.write(self._NL + '--' + boundary + '--' + self._NL)
if msg.epilogue is not None:
if self._mangle_from_:
epilogue = fcre.sub('>From ', msg.epilogue)
else:
epilogue = msg.epilogue
self._write_lines(epilogue)
def _handle_multipart_signed(self, msg):
p = self.policy
self.policy = p.clone(max_line_length=0)
try:
self._handle_multipart(msg)
finally:
self.policy = p
def _handle_message_delivery_status(self, msg):
blocks = []
for part in msg.get_payload():
s = self._new_buffer()
g = self.clone(s)
g.flatten(part, unixfrom=False, linesep=self._NL)
text = s.getvalue()
lines = text.split(self._encoded_NL)
if lines and lines[-1] == self._encoded_EMPTY:
blocks.append(self._encoded_NL.join(lines[:-1]))
else:
blocks.append(text)
self._fp.write(self._encoded_NL.join(blocks))
def _handle_message(self, msg):
s = self._new_buffer()
g = self.clone(s)
payload = msg._payload
if isinstance(payload, list):
g.flatten(msg.get_payload(0), unixfrom=False, linesep=self._NL)
payload = s.getvalue()
else:
payload = self._encode(payload)
self._fp.write(payload)
@classmethod
def _make_boundary(cls, text=None):
token = random.randrange(sys.maxsize)
boundary = ('=' * 15) + (_fmt % token) + '=='
if text is None:
return boundary
b = boundary
counter = 0
while True:
cre = cls._compile_re('^--' + re.escape(b) + '(--)?$', re.MULTILINE)
if not cre.search(text):
break
b = boundary + '.' + str(counter)
counter += 1
return b
@classmethod
def _compile_re(cls, s, flags):
return re.compile(s, flags)
class BytesGenerator(Generator):
def write(self, s):
self._fp.write(s.encode('ascii', 'surrogateescape'))
def _new_buffer(self):
return BytesIO()
def _encode(self, s):
return s.encode('ascii')
def _write_headers(self, msg):
for h, v in msg.raw_items():
self._fp.write(self.policy.fold_binary(h, v))
self.write(self._NL)
def _handle_text(self, msg):
if msg._payload is None:
return
if _has_surrogates(msg._payload) and not self.policy.cte_type=='7bit':
if self._mangle_from_:
msg._payload = fcre.sub(">From ", msg._payload)
self._write_lines(msg._payload)
else:
super(BytesGenerator,self)._handle_text(msg)
_writeBody = _handle_text
@classmethod
def _compile_re(cls, s, flags):
return re.compile(s.encode('ascii'), flags)
_FMT = '[Non-text (%(type)s) part of message omitted, filename %(filename)s]'
class DecodedGenerator(Generator):
def __init__(self, outfp, mangle_from_=None, maxheaderlen=None, fmt=None, *,
policy=None):
Generator.__init__(self, outfp, mangle_from_, maxheaderlen,
policy=policy)
if fmt is None:
self._fmt = _FMT
else:
self._fmt = fmt
def _dispatch(self, msg):
for part in msg.walk():
maintype = part.get_content_maintype()
if maintype == 'text':
print(part.get_payload(decode=False), file=self)
elif maintype == 'multipart':
pass
else:
print(self._fmt % {
'type' : part.get_content_type(),
'maintype' : part.get_content_maintype(),
'subtype' : part.get_content_subtype(),
'filename' : part.get_filename('[no filename]'),
'description': part.get('Content-Description',
'[no description]'),
'encoding' : part.get('Content-Transfer-Encoding',
'[no encoding]'),
}, file=self)
_width = len(repr(sys.maxsize-1))
_fmt = '%%0%dd' % _width
_make_boundary = Generator._make_boundary