mirror of
https://github.com/yt-dlp/yt-dlp.git
synced 2024-11-10 01:02:13 +01:00
[youtube] Fix throttling by decrypting n-sig (#1437)
This commit is contained in:
parent
cd9ea4104b
commit
404f611f1c
5 changed files with 547 additions and 147 deletions
1
.gitignore
vendored
1
.gitignore
vendored
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@ -41,6 +41,7 @@ cookies
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*.webp
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*.annotations.xml
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*.description
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.cache/
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# Allow config/media files in testdata
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!test/**
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@ -112,6 +112,56 @@ def test_call(self):
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''')
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self.assertEqual(jsi.call_function('z'), 5)
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def test_for_loop(self):
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jsi = JSInterpreter('''
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function x() { a=0; for (i=0; i-10; i++) {a++} a }
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''')
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self.assertEqual(jsi.call_function('x'), 10)
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def test_switch(self):
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jsi = JSInterpreter('''
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function x(f) { switch(f){
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case 1:f+=1;
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case 2:f+=2;
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case 3:f+=3;break;
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case 4:f+=4;
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default:f=0;
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} return f }
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''')
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self.assertEqual(jsi.call_function('x', 1), 7)
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self.assertEqual(jsi.call_function('x', 3), 6)
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self.assertEqual(jsi.call_function('x', 5), 0)
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def test_try(self):
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jsi = JSInterpreter('''
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function x() { try{return 10} catch(e){return 5} }
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''')
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self.assertEqual(jsi.call_function('x'), 10)
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def test_for_loop_continue(self):
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jsi = JSInterpreter('''
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function x() { a=0; for (i=0; i-10; i++) { continue; a++ } a }
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''')
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self.assertEqual(jsi.call_function('x'), 0)
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def test_for_loop_break(self):
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jsi = JSInterpreter('''
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function x() { a=0; for (i=0; i-10; i++) { break; a++ } a }
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''')
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self.assertEqual(jsi.call_function('x'), 0)
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def test_literal_list(self):
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jsi = JSInterpreter('''
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function x() { [1, 2, "asdf", [5, 6, 7]][3] }
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''')
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self.assertEqual(jsi.call_function('x'), [5, 6, 7])
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def test_comma(self):
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jsi = JSInterpreter('''
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function x() { a=5; a -= 1, a+=3; return a }
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''')
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self.assertEqual(jsi.call_function('x'), 7)
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if __name__ == '__main__':
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unittest.main()
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@ -14,9 +14,10 @@
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from test.helper import FakeYDL, is_download_test
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from yt_dlp.extractor import YoutubeIE
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from yt_dlp.jsinterp import JSInterpreter
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from yt_dlp.compat import compat_str, compat_urlretrieve
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_TESTS = [
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_SIG_TESTS = [
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(
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'https://s.ytimg.com/yts/jsbin/html5player-vflHOr_nV.js',
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86,
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@ -64,6 +65,13 @@
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)
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]
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_NSIG_TESTS = [
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(
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'https://www.youtube.com/s/player/9216d1f7/player_ias.vflset/en_US/base.js',
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'SLp9F5bwjAdhE9F-', 'gWnb9IK2DJ8Q1w',
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), # TODO: Add more tests
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]
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@is_download_test
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class TestPlayerInfo(unittest.TestCase):
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@ -97,35 +105,49 @@ def setUp(self):
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os.mkdir(self.TESTDATA_DIR)
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def make_tfunc(url, sig_input, expected_sig):
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m = re.match(r'.*-([a-zA-Z0-9_-]+)(?:/watch_as3|/html5player)?\.[a-z]+$', url)
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def t_factory(name, sig_func, url_pattern):
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def make_tfunc(url, sig_input, expected_sig):
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m = url_pattern.match(url)
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assert m, '%r should follow URL format' % url
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test_id = m.group(1)
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test_id = m.group('id')
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def test_func(self):
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basename = 'player-%s.js' % test_id
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basename = f'player-{name}-{test_id}.js'
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fn = os.path.join(self.TESTDATA_DIR, basename)
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if not os.path.exists(fn):
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compat_urlretrieve(url, fn)
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ydl = FakeYDL()
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ie = YoutubeIE(ydl)
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with io.open(fn, encoding='utf-8') as testf:
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jscode = testf.read()
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func = ie._parse_sig_js(jscode)
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self.assertEqual(sig_func(jscode, sig_input), expected_sig)
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test_func.__name__ = f'test_{name}_js_{test_id}'
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setattr(TestSignature, test_func.__name__, test_func)
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return make_tfunc
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def signature(jscode, sig_input):
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func = YoutubeIE(FakeYDL())._parse_sig_js(jscode)
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src_sig = (
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compat_str(string.printable[:sig_input])
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if isinstance(sig_input, int) else sig_input)
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got_sig = func(src_sig)
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self.assertEqual(got_sig, expected_sig)
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test_func.__name__ = str('test_signature_js_' + test_id)
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setattr(TestSignature, test_func.__name__, test_func)
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return func(src_sig)
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for test_spec in _TESTS:
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make_tfunc(*test_spec)
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def n_sig(jscode, sig_input):
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funcname = YoutubeIE(FakeYDL())._extract_n_function_name(jscode)
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return JSInterpreter(jscode).call_function(funcname, sig_input)
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make_sig_test = t_factory(
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'signature', signature, re.compile(r'.*-(?P<id>[a-zA-Z0-9_-]+)(?:/watch_as3|/html5player)?\.[a-z]+$'))
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for test_spec in _SIG_TESTS:
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make_sig_test(*test_spec)
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make_nsig_test = t_factory(
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'nsig', n_sig, re.compile(r'.+/player/(?P<id>[a-zA-Z0-9_-]+)/.+.js$'))
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for test_spec in _NSIG_TESTS:
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make_nsig_test(*test_spec)
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if __name__ == '__main__':
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@ -1720,7 +1720,7 @@ def _extract_player_info(cls, player_url):
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raise ExtractorError('Cannot identify player %r' % player_url)
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return id_m.group('id')
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def _load_player(self, video_id, player_url, fatal=True) -> bool:
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def _load_player(self, video_id, player_url, fatal=True):
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player_id = self._extract_player_info(player_url)
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if player_id not in self._code_cache:
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code = self._download_webpage(
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@ -1729,7 +1729,7 @@ def _load_player(self, video_id, player_url, fatal=True) -> bool:
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errnote='Download of %s failed' % player_url)
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if code:
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self._code_cache[player_id] = code
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return player_id in self._code_cache
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return self._code_cache.get(player_id)
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def _extract_signature_function(self, video_id, player_url, example_sig):
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player_id = self._extract_player_info(player_url)
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@ -1743,8 +1743,8 @@ def _extract_signature_function(self, video_id, player_url, example_sig):
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if cache_spec is not None:
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return lambda s: ''.join(s[i] for i in cache_spec)
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if self._load_player(video_id, player_url):
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code = self._code_cache[player_id]
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code = self._load_player(video_id, player_url)
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if code:
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res = self._parse_sig_js(code)
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test_string = ''.join(map(compat_chr, range(len(example_sig))))
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@ -1755,6 +1755,9 @@ def _extract_signature_function(self, video_id, player_url, example_sig):
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return res
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def _print_sig_code(self, func, example_sig):
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if not self.get_param('youtube_print_sig_code'):
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return
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def gen_sig_code(idxs):
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def _genslice(start, end, step):
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starts = '' if start == 0 else str(start)
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@ -1831,13 +1834,58 @@ def _decrypt_signature(self, s, video_id, player_url):
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)
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self._player_cache[player_id] = func
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func = self._player_cache[player_id]
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if self.get_param('youtube_print_sig_code'):
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self._print_sig_code(func, s)
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return func(s)
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except Exception as e:
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tb = traceback.format_exc()
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raise ExtractorError(
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'Signature extraction failed: ' + tb, cause=e)
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raise ExtractorError('Signature extraction failed: ' + traceback.format_exc(), cause=e)
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def _decrypt_nsig(self, s, video_id, player_url):
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"""Turn the encrypted n field into a working signature"""
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if player_url is None:
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raise ExtractorError('Cannot decrypt nsig without player_url')
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if player_url.startswith('//'):
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player_url = 'https:' + player_url
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elif not re.match(r'https?://', player_url):
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player_url = compat_urlparse.urljoin(
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'https://www.youtube.com', player_url)
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sig_id = ('nsig_value', s)
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if sig_id in self._player_cache:
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return self._player_cache[sig_id]
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try:
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player_id = ('nsig', player_url)
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if player_id not in self._player_cache:
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self._player_cache[player_id] = self._extract_n_function(video_id, player_url)
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func = self._player_cache[player_id]
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self._player_cache[sig_id] = func(s)
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self.write_debug(f'Decrypted nsig {s} => {self._player_cache[sig_id]}')
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return self._player_cache[sig_id]
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except Exception as e:
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raise ExtractorError(traceback.format_exc(), cause=e)
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def _extract_n_function_name(self, jscode):
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return self._search_regex(
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(r'\.get\("n"\)\)&&\(b=(?P<nfunc>[a-zA-Z0-9$]{3})\([a-zA-Z0-9]\)',),
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jscode, 'Initial JS player n function name', group='nfunc')
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def _extract_n_function(self, video_id, player_url):
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player_id = self._extract_player_info(player_url)
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func_code = self._downloader.cache.load('youtube-nsig', player_id)
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if func_code:
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jsi = JSInterpreter(func_code)
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else:
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jscode = self._load_player(video_id, player_url)
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funcname = self._extract_n_function_name(jscode)
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jsi = JSInterpreter(jscode)
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func_code = jsi.extract_function_code(funcname)
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self._downloader.cache.store('youtube-nsig', player_id, func_code)
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if self.get_param('youtube_print_sig_code'):
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self.to_screen(f'Extracted nsig function from {player_id}:\n{func_code[1]}\n')
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return lambda s: jsi.extract_function_from_code(*func_code)([s])
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def _extract_signature_timestamp(self, video_id, player_url, ytcfg=None, fatal=False):
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"""
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@ -1856,9 +1904,8 @@ def _extract_signature_timestamp(self, video_id, player_url, ytcfg=None, fatal=F
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raise ExtractorError(error_msg)
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self.report_warning(error_msg)
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return
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if self._load_player(video_id, player_url, fatal=fatal):
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player_id = self._extract_player_info(player_url)
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code = self._code_cache[player_id]
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code = self._load_player(video_id, player_url, fatal=fatal)
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if code:
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sts = int_or_none(self._search_regex(
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r'(?:signatureTimestamp|sts)\s*:\s*(?P<sts>[0-9]{5})', code,
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'JS player signature timestamp', group='sts', fatal=fatal))
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@ -2440,6 +2487,16 @@ def _extract_formats(self, streaming_data, video_id, player_url, is_live):
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sp = try_get(sc, lambda x: x['sp'][0]) or 'signature'
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fmt_url += '&' + sp + '=' + signature
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query = parse_qs(fmt_url)
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throttled = False
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if query.get('ratebypass') != ['yes'] and query.get('n'):
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try:
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fmt_url = update_url_query(fmt_url, {
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'n': self._decrypt_nsig(query['n'][0], video_id, player_url)})
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except ExtractorError as e:
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self.report_warning(f'nsig extraction failed: You may experience throttling for some formats\n{e}', only_once=True)
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throttled = True
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if itag:
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itags.append(itag)
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stream_ids.append(stream_id)
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@ -2453,7 +2510,9 @@ def _extract_formats(self, streaming_data, video_id, player_url, is_live):
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'format_note': ', '.join(filter(None, (
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'%s%s' % (audio_track.get('displayName') or '',
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' (default)' if audio_track.get('audioIsDefault') else ''),
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fmt.get('qualityLabel') or quality.replace('audio_quality_', '')))),
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fmt.get('qualityLabel') or quality.replace('audio_quality_', ''),
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throttled and 'THROTTLED'))),
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'source_preference': -10 if not throttled else -1,
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'fps': int_or_none(fmt.get('fps')),
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'height': height,
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'quality': q(quality),
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@ -2645,12 +2704,6 @@ def feed_entry(name):
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if reason:
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self.raise_no_formats(reason, expected=True)
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for f in formats:
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if '&c=WEB&' in f['url'] and '&ratebypass=yes&' not in f['url']: # throttled
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f['source_preference'] = -10
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# TODO: this method is not reliable
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f['format_note'] = format_field(f, 'format_note', '%s ') + '(maybe throttled)'
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# Source is given priority since formats that throttle are given lower source_preference
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# When throttling issue is fully fixed, remove this
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self._sort_formats(formats, ('quality', 'res', 'fps', 'hdr:12', 'source', 'codec:vp9.2', 'lang'))
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@ -1,5 +1,4 @@
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from __future__ import unicode_literals
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from collections.abc import MutableMapping
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import json
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import operator
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import re
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@ -22,11 +21,54 @@
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('*', operator.mul),
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]
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_ASSIGN_OPERATORS = [(op + '=', opfunc) for op, opfunc in _OPERATORS]
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_ASSIGN_OPERATORS.append(('=', lambda cur, right: right))
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_ASSIGN_OPERATORS.append(('=', (lambda cur, right: right)))
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_NAME_RE = r'[a-zA-Z_$][a-zA-Z_$0-9]*'
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class JS_Break(ExtractorError):
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def __init__(self):
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ExtractorError.__init__(self, 'Invalid break')
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class JS_Continue(ExtractorError):
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def __init__(self):
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ExtractorError.__init__(self, 'Invalid continue')
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class LocalNameSpace(MutableMapping):
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def __init__(self, *stack):
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self.stack = tuple(stack)
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def __getitem__(self, key):
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for scope in self.stack:
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if key in scope:
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return scope[key]
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raise KeyError(key)
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def __setitem__(self, key, value):
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for scope in self.stack:
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if key in scope:
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scope[key] = value
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break
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else:
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self.stack[0][key] = value
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return value
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def __delitem__(self, key):
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raise NotImplementedError('Deleting is not supported')
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def __iter__(self):
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for scope in self.stack:
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yield from scope
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def __len__(self, key):
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return len(iter(self))
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def __repr__(self):
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return f'LocalNameSpace{self.stack}'
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class JSInterpreter(object):
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def __init__(self, code, objects=None):
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if objects is None:
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|
@ -34,11 +76,58 @@ def __init__(self, code, objects=None):
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self.code = code
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self._functions = {}
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self._objects = objects
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self.__named_object_counter = 0
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def _named_object(self, namespace, obj):
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self.__named_object_counter += 1
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name = f'__yt_dlp_jsinterp_obj{self.__named_object_counter}'
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namespace[name] = obj
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return name
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@staticmethod
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def _seperate(expr, delim=',', max_split=None):
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if not expr:
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return
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parens = {'(': 0, '{': 0, '[': 0, ']': 0, '}': 0, ')': 0}
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start, splits, pos, max_pos = 0, 0, 0, len(delim) - 1
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for idx, char in enumerate(expr):
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if char in parens:
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parens[char] += 1
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is_in_parens = (parens['['] - parens[']']
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or parens['('] - parens[')']
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or parens['{'] - parens['}'])
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if char == delim[pos] and not is_in_parens:
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if pos == max_pos:
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pos = 0
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yield expr[start: idx - max_pos]
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start = idx + 1
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splits += 1
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if max_split and splits >= max_split:
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break
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else:
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pos += 1
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else:
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pos = 0
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yield expr[start:]
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@staticmethod
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def _seperate_at_paren(expr, delim):
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seperated = list(JSInterpreter._seperate(expr, delim, 1))
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if len(seperated) < 2:
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raise ExtractorError(f'No terminating paren {delim} in {expr}')
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return seperated[0][1:].strip(), seperated[1].strip()
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|
||||
def interpret_statement(self, stmt, local_vars, allow_recursion=100):
|
||||
if allow_recursion < 0:
|
||||
raise ExtractorError('Recursion limit reached')
|
||||
|
||||
sub_statements = list(self._seperate(stmt, ';'))
|
||||
stmt = (sub_statements or ['']).pop()
|
||||
for sub_stmt in sub_statements:
|
||||
ret, should_abort = self.interpret_statement(sub_stmt, local_vars, allow_recursion - 1)
|
||||
if should_abort:
|
||||
return ret
|
||||
|
||||
should_abort = False
|
||||
stmt = stmt.lstrip()
|
||||
stmt_m = re.match(r'var\s', stmt)
|
||||
|
@ -61,25 +150,118 @@ def interpret_expression(self, expr, local_vars, allow_recursion):
|
|||
if expr == '': # Empty expression
|
||||
return None
|
||||
|
||||
if expr.startswith('{'):
|
||||
inner, outer = self._seperate_at_paren(expr, '}')
|
||||
inner, should_abort = self.interpret_statement(inner, local_vars, allow_recursion - 1)
|
||||
if not outer or should_abort:
|
||||
return inner
|
||||
else:
|
||||
expr = json.dumps(inner) + outer
|
||||
|
||||
if expr.startswith('('):
|
||||
parens_count = 0
|
||||
for m in re.finditer(r'[()]', expr):
|
||||
if m.group(0) == '(':
|
||||
parens_count += 1
|
||||
inner, outer = self._seperate_at_paren(expr, ')')
|
||||
inner = self.interpret_expression(inner, local_vars, allow_recursion)
|
||||
if not outer:
|
||||
return inner
|
||||
else:
|
||||
parens_count -= 1
|
||||
if parens_count == 0:
|
||||
sub_expr = expr[1:m.start()]
|
||||
sub_result = self.interpret_expression(
|
||||
sub_expr, local_vars, allow_recursion)
|
||||
remaining_expr = expr[m.end():].strip()
|
||||
if not remaining_expr:
|
||||
return sub_result
|
||||
expr = json.dumps(inner) + outer
|
||||
|
||||
if expr.startswith('['):
|
||||
inner, outer = self._seperate_at_paren(expr, ']')
|
||||
name = self._named_object(local_vars, [
|
||||
self.interpret_expression(item, local_vars, allow_recursion)
|
||||
for item in self._seperate(inner)])
|
||||
expr = name + outer
|
||||
|
||||
m = re.match(r'try\s*', expr)
|
||||
if m:
|
||||
if expr[m.end()] == '{':
|
||||
try_expr, expr = self._seperate_at_paren(expr[m.end():], '}')
|
||||
else:
|
||||
expr = json.dumps(sub_result) + remaining_expr
|
||||
try_expr, expr = expr[m.end() - 1:], ''
|
||||
ret, should_abort = self.interpret_statement(try_expr, local_vars, allow_recursion - 1)
|
||||
if should_abort:
|
||||
return ret
|
||||
return self.interpret_statement(expr, local_vars, allow_recursion - 1)[0]
|
||||
|
||||
m = re.match(r'catch\s*\(', expr)
|
||||
if m:
|
||||
# We ignore the catch block
|
||||
_, expr = self._seperate_at_paren(expr, '}')
|
||||
return self.interpret_statement(expr, local_vars, allow_recursion - 1)[0]
|
||||
|
||||
m = re.match(r'for\s*\(', expr)
|
||||
if m:
|
||||
constructor, remaining = self._seperate_at_paren(expr[m.end() - 1:], ')')
|
||||
if remaining.startswith('{'):
|
||||
body, expr = self._seperate_at_paren(remaining, '}')
|
||||
else:
|
||||
m = re.match(r'switch\s*\(', remaining) # FIXME
|
||||
if m:
|
||||
switch_val, remaining = self._seperate_at_paren(remaining[m.end() - 1:], ')')
|
||||
body, expr = self._seperate_at_paren(remaining, '}')
|
||||
body = 'switch(%s){%s}' % (switch_val, body)
|
||||
else:
|
||||
body, expr = remaining, ''
|
||||
start, cndn, increment = self._seperate(constructor, ';')
|
||||
if self.interpret_statement(start, local_vars, allow_recursion - 1)[1]:
|
||||
raise ExtractorError(
|
||||
f'Premature return in the initialization of a for loop in {constructor!r}')
|
||||
while True:
|
||||
if not self.interpret_expression(cndn, local_vars, allow_recursion):
|
||||
break
|
||||
else:
|
||||
raise ExtractorError('Premature end of parens in %r' % expr)
|
||||
try:
|
||||
ret, should_abort = self.interpret_statement(body, local_vars, allow_recursion - 1)
|
||||
if should_abort:
|
||||
return ret
|
||||
except JS_Break:
|
||||
break
|
||||
except JS_Continue:
|
||||
pass
|
||||
if self.interpret_statement(increment, local_vars, allow_recursion - 1)[1]:
|
||||
raise ExtractorError(
|
||||
f'Premature return in the initialization of a for loop in {constructor!r}')
|
||||
return self.interpret_statement(expr, local_vars, allow_recursion - 1)[0]
|
||||
|
||||
m = re.match(r'switch\s*\(', expr)
|
||||
if m:
|
||||
switch_val, remaining = self._seperate_at_paren(expr[m.end() - 1:], ')')
|
||||
switch_val = self.interpret_expression(switch_val, local_vars, allow_recursion)
|
||||
body, expr = self._seperate_at_paren(remaining, '}')
|
||||
body, default = body.split('default:') if 'default:' in body else (body, None)
|
||||
items = body.split('case ')[1:]
|
||||
if default:
|
||||
items.append(f'default:{default}')
|
||||
matched = False
|
||||
for item in items:
|
||||
case, stmt = [i.strip() for i in self._seperate(item, ':', 1)]
|
||||
matched = matched or case == 'default' or switch_val == self.interpret_expression(case, local_vars, allow_recursion)
|
||||
if matched:
|
||||
try:
|
||||
ret, should_abort = self.interpret_statement(stmt, local_vars, allow_recursion - 1)
|
||||
if should_abort:
|
||||
return ret
|
||||
except JS_Break:
|
||||
break
|
||||
return self.interpret_statement(expr, local_vars, allow_recursion - 1)[0]
|
||||
|
||||
# Comma seperated statements
|
||||
sub_expressions = list(self._seperate(expr))
|
||||
expr = sub_expressions.pop().strip() if sub_expressions else ''
|
||||
for sub_expr in sub_expressions:
|
||||
self.interpret_expression(sub_expr, local_vars, allow_recursion)
|
||||
|
||||
for m in re.finditer(rf'''(?x)
|
||||
(?P<pre_sign>\+\+|--)(?P<var1>{_NAME_RE})|
|
||||
(?P<var2>{_NAME_RE})(?P<post_sign>\+\+|--)''', expr):
|
||||
var = m.group('var1') or m.group('var2')
|
||||
start, end = m.span()
|
||||
sign = m.group('pre_sign') or m.group('post_sign')
|
||||
ret = local_vars[var]
|
||||
local_vars[var] += 1 if sign[0] == '+' else -1
|
||||
if m.group('pre_sign'):
|
||||
ret = local_vars[var]
|
||||
expr = expr[:start] + json.dumps(ret) + expr[end:]
|
||||
|
||||
for op, opfunc in _ASSIGN_OPERATORS:
|
||||
m = re.match(r'''(?x)
|
||||
|
@ -88,14 +270,13 @@ def interpret_expression(self, expr, local_vars, allow_recursion):
|
|||
(?P<expr>.*)$''' % (_NAME_RE, re.escape(op)), expr)
|
||||
if not m:
|
||||
continue
|
||||
right_val = self.interpret_expression(
|
||||
m.group('expr'), local_vars, allow_recursion - 1)
|
||||
right_val = self.interpret_expression(m.group('expr'), local_vars, allow_recursion)
|
||||
|
||||
if m.groupdict().get('index'):
|
||||
lvar = local_vars[m.group('out')]
|
||||
idx = self.interpret_expression(
|
||||
m.group('index'), local_vars, allow_recursion)
|
||||
assert isinstance(idx, int)
|
||||
idx = self.interpret_expression(m.group('index'), local_vars, allow_recursion)
|
||||
if not isinstance(idx, int):
|
||||
raise ExtractorError(f'List indices must be integers: {idx}')
|
||||
cur = lvar[idx]
|
||||
val = opfunc(cur, right_val)
|
||||
lvar[idx] = val
|
||||
|
@ -109,8 +290,13 @@ def interpret_expression(self, expr, local_vars, allow_recursion):
|
|||
if expr.isdigit():
|
||||
return int(expr)
|
||||
|
||||
if expr == 'break':
|
||||
raise JS_Break()
|
||||
elif expr == 'continue':
|
||||
raise JS_Continue()
|
||||
|
||||
var_m = re.match(
|
||||
r'(?!if|return|true|false)(?P<name>%s)$' % _NAME_RE,
|
||||
r'(?!if|return|true|false|null)(?P<name>%s)$' % _NAME_RE,
|
||||
expr)
|
||||
if var_m:
|
||||
return local_vars[var_m.group('name')]
|
||||
|
@ -124,19 +310,47 @@ def interpret_expression(self, expr, local_vars, allow_recursion):
|
|||
r'(?P<in>%s)\[(?P<idx>.+)\]$' % _NAME_RE, expr)
|
||||
if m:
|
||||
val = local_vars[m.group('in')]
|
||||
idx = self.interpret_expression(
|
||||
m.group('idx'), local_vars, allow_recursion - 1)
|
||||
idx = self.interpret_expression(m.group('idx'), local_vars, allow_recursion)
|
||||
return val[idx]
|
||||
|
||||
for op, opfunc in _OPERATORS:
|
||||
seperated = list(self._seperate(expr, op))
|
||||
if len(seperated) < 2:
|
||||
continue
|
||||
right_val = seperated.pop()
|
||||
left_val = op.join(seperated)
|
||||
left_val, should_abort = self.interpret_statement(
|
||||
left_val, local_vars, allow_recursion - 1)
|
||||
if should_abort:
|
||||
raise ExtractorError(f'Premature left-side return of {op} in {expr!r}')
|
||||
right_val, should_abort = self.interpret_statement(
|
||||
right_val, local_vars, allow_recursion - 1)
|
||||
if should_abort:
|
||||
raise ExtractorError(f'Premature right-side return of {op} in {expr!r}')
|
||||
return opfunc(left_val or 0, right_val)
|
||||
|
||||
m = re.match(
|
||||
r'(?P<var>%s)(?:\.(?P<member>[^(]+)|\[(?P<member2>[^]]+)\])\s*(?:\(+(?P<args>[^()]*)\))?$' % _NAME_RE,
|
||||
r'(?P<var>%s)(?:\.(?P<member>[^(]+)|\[(?P<member2>[^]]+)\])\s*' % _NAME_RE,
|
||||
expr)
|
||||
if m:
|
||||
variable = m.group('var')
|
||||
member = remove_quotes(m.group('member') or m.group('member2'))
|
||||
arg_str = m.group('args')
|
||||
arg_str = expr[m.end():]
|
||||
if arg_str.startswith('('):
|
||||
arg_str, remaining = self._seperate_at_paren(arg_str, ')')
|
||||
else:
|
||||
arg_str, remaining = None, arg_str
|
||||
|
||||
if variable in local_vars:
|
||||
def assertion(cndn, msg):
|
||||
""" assert, but without risk of getting optimized out """
|
||||
if not cndn:
|
||||
raise ExtractorError(f'{member} {msg}: {expr}')
|
||||
|
||||
def eval_method():
|
||||
nonlocal member
|
||||
if variable == 'String':
|
||||
obj = str
|
||||
elif variable in local_vars:
|
||||
obj = local_vars[variable]
|
||||
else:
|
||||
if variable not in self._objects:
|
||||
|
@ -149,65 +363,100 @@ def interpret_expression(self, expr, local_vars, allow_recursion):
|
|||
return len(obj)
|
||||
return obj[member]
|
||||
|
||||
assert expr.endswith(')')
|
||||
# Function call
|
||||
if arg_str == '':
|
||||
argvals = tuple()
|
||||
else:
|
||||
argvals = tuple([
|
||||
argvals = [
|
||||
self.interpret_expression(v, local_vars, allow_recursion)
|
||||
for v in arg_str.split(',')])
|
||||
for v in self._seperate(arg_str)]
|
||||
|
||||
if obj == str:
|
||||
if member == 'fromCharCode':
|
||||
assertion(argvals, 'takes one or more arguments')
|
||||
return ''.join(map(chr, argvals))
|
||||
raise ExtractorError(f'Unsupported string method {member}')
|
||||
|
||||
if member == 'split':
|
||||
assert argvals == ('',)
|
||||
assertion(argvals, 'takes one or more arguments')
|
||||
assertion(argvals == [''], 'with arguments is not implemented')
|
||||
return list(obj)
|
||||
if member == 'join':
|
||||
assert len(argvals) == 1
|
||||
elif member == 'join':
|
||||
assertion(isinstance(obj, list), 'must be applied on a list')
|
||||
assertion(len(argvals) == 1, 'takes exactly one argument')
|
||||
return argvals[0].join(obj)
|
||||
if member == 'reverse':
|
||||
assert len(argvals) == 0
|
||||
elif member == 'reverse':
|
||||
assertion(not argvals, 'does not take any arguments')
|
||||
obj.reverse()
|
||||
return obj
|
||||
if member == 'slice':
|
||||
assert len(argvals) == 1
|
||||
elif member == 'slice':
|
||||
assertion(isinstance(obj, list), 'must be applied on a list')
|
||||
assertion(len(argvals) == 1, 'takes exactly one argument')
|
||||
return obj[argvals[0]:]
|
||||
if member == 'splice':
|
||||
assert isinstance(obj, list)
|
||||
index, howMany = argvals
|
||||
elif member == 'splice':
|
||||
assertion(isinstance(obj, list), 'must be applied on a list')
|
||||
assertion(argvals, 'takes one or more arguments')
|
||||
index, howMany = (argvals + [len(obj)])[:2]
|
||||
if index < 0:
|
||||
index += len(obj)
|
||||
add_items = argvals[2:]
|
||||
res = []
|
||||
for i in range(index, min(index + howMany, len(obj))):
|
||||
res.append(obj.pop(index))
|
||||
for i, item in enumerate(add_items):
|
||||
obj.insert(index + i, item)
|
||||
return res
|
||||
elif member == 'unshift':
|
||||
assertion(isinstance(obj, list), 'must be applied on a list')
|
||||
assertion(argvals, 'takes one or more arguments')
|
||||
for item in reversed(argvals):
|
||||
obj.insert(0, item)
|
||||
return obj
|
||||
elif member == 'pop':
|
||||
assertion(isinstance(obj, list), 'must be applied on a list')
|
||||
assertion(not argvals, 'does not take any arguments')
|
||||
if not obj:
|
||||
return
|
||||
return obj.pop()
|
||||
elif member == 'push':
|
||||
assertion(argvals, 'takes one or more arguments')
|
||||
obj.extend(argvals)
|
||||
return obj
|
||||
elif member == 'forEach':
|
||||
assertion(argvals, 'takes one or more arguments')
|
||||
assertion(len(argvals) <= 2, 'takes at-most 2 arguments')
|
||||
f, this = (argvals + [''])[:2]
|
||||
return [f((item, idx, obj), this=this) for idx, item in enumerate(obj)]
|
||||
elif member == 'indexOf':
|
||||
assertion(argvals, 'takes one or more arguments')
|
||||
assertion(len(argvals) <= 2, 'takes at-most 2 arguments')
|
||||
idx, start = (argvals + [0])[:2]
|
||||
try:
|
||||
return obj.index(idx, start)
|
||||
except ValueError:
|
||||
return -1
|
||||
|
||||
if isinstance(obj, list):
|
||||
member = int(member)
|
||||
return obj[member](argvals)
|
||||
|
||||
for op, opfunc in _OPERATORS:
|
||||
m = re.match(r'(?P<x>.+?)%s(?P<y>.+)' % re.escape(op), expr)
|
||||
if not m:
|
||||
continue
|
||||
x, abort = self.interpret_statement(
|
||||
m.group('x'), local_vars, allow_recursion - 1)
|
||||
if abort:
|
||||
raise ExtractorError(
|
||||
'Premature left-side return of %s in %r' % (op, expr))
|
||||
y, abort = self.interpret_statement(
|
||||
m.group('y'), local_vars, allow_recursion - 1)
|
||||
if abort:
|
||||
raise ExtractorError(
|
||||
'Premature right-side return of %s in %r' % (op, expr))
|
||||
return opfunc(x, y)
|
||||
if remaining:
|
||||
return self.interpret_expression(
|
||||
self._named_object(local_vars, eval_method()) + remaining,
|
||||
local_vars, allow_recursion)
|
||||
else:
|
||||
return eval_method()
|
||||
|
||||
m = re.match(
|
||||
r'^(?P<func>%s)\((?P<args>[a-zA-Z0-9_$,]*)\)$' % _NAME_RE, expr)
|
||||
m = re.match(r'^(?P<func>%s)\((?P<args>[a-zA-Z0-9_$,]*)\)$' % _NAME_RE, expr)
|
||||
if m:
|
||||
fname = m.group('func')
|
||||
argvals = tuple([
|
||||
int(v) if v.isdigit() else local_vars[v]
|
||||
for v in m.group('args').split(',')]) if len(m.group('args')) > 0 else tuple()
|
||||
if fname not in self._functions:
|
||||
for v in self._seperate(m.group('args'))])
|
||||
if fname in local_vars:
|
||||
return local_vars[fname](argvals)
|
||||
elif fname not in self._functions:
|
||||
self._functions[fname] = self.extract_function(fname)
|
||||
return self._functions[fname](argvals)
|
||||
|
||||
if expr:
|
||||
raise ExtractorError('Unsupported JS expression %r' % expr)
|
||||
|
||||
def extract_object(self, objname):
|
||||
|
@ -233,30 +482,55 @@ def extract_object(self, objname):
|
|||
|
||||
return obj
|
||||
|
||||
def extract_function(self, funcname):
|
||||
def extract_function_code(self, funcname):
|
||||
""" @returns argnames, code """
|
||||
func_m = re.search(
|
||||
r'''(?x)
|
||||
(?:function\s+%s|[{;,]\s*%s\s*=\s*function|var\s+%s\s*=\s*function)\s*
|
||||
\((?P<args>[^)]*)\)\s*
|
||||
\{(?P<code>[^}]+)\}''' % (
|
||||
(?P<code>\{(?:(?!};)[^"]|"([^"]|\\")*")+\})''' % (
|
||||
re.escape(funcname), re.escape(funcname), re.escape(funcname)),
|
||||
self.code)
|
||||
code, _ = self._seperate_at_paren(func_m.group('code'), '}') # refine the match
|
||||
if func_m is None:
|
||||
raise ExtractorError('Could not find JS function %r' % funcname)
|
||||
argnames = func_m.group('args').split(',')
|
||||
return func_m.group('args').split(','), code
|
||||
|
||||
return self.build_function(argnames, func_m.group('code'))
|
||||
def extract_function(self, funcname):
|
||||
return self.extract_function_from_code(*self.extract_function_code(funcname))
|
||||
|
||||
def extract_function_from_code(self, argnames, code, *global_stack):
|
||||
local_vars = {}
|
||||
while True:
|
||||
mobj = re.search(r'function\((?P<args>[^)]*)\)\s*{', code)
|
||||
if mobj is None:
|
||||
break
|
||||
start, body_start = mobj.span()
|
||||
body, remaining = self._seperate_at_paren(code[body_start - 1:], '}')
|
||||
name = self._named_object(
|
||||
local_vars,
|
||||
self.extract_function_from_code(
|
||||
[str.strip(x) for x in mobj.group('args').split(',')],
|
||||
body, local_vars, *global_stack))
|
||||
code = code[:start] + name + remaining
|
||||
return self.build_function(argnames, code, local_vars, *global_stack)
|
||||
|
||||
def call_function(self, funcname, *args):
|
||||
f = self.extract_function(funcname)
|
||||
return f(args)
|
||||
return self.extract_function(funcname)(args)
|
||||
|
||||
def build_function(self, argnames, code):
|
||||
def resf(args):
|
||||
local_vars = dict(zip(argnames, args))
|
||||
for stmt in code.split(';'):
|
||||
res, abort = self.interpret_statement(stmt, local_vars)
|
||||
if abort:
|
||||
def build_function(self, argnames, code, *global_stack):
|
||||
global_stack = list(global_stack) or [{}]
|
||||
local_vars = global_stack.pop(0)
|
||||
|
||||
def resf(args, **kwargs):
|
||||
local_vars.update({
|
||||
**dict(zip(argnames, args)),
|
||||
**kwargs
|
||||
})
|
||||
var_stack = LocalNameSpace(local_vars, *global_stack)
|
||||
for stmt in self._seperate(code.replace('\n', ''), ';'):
|
||||
ret, should_abort = self.interpret_statement(stmt, var_stack)
|
||||
if should_abort:
|
||||
break
|
||||
return res
|
||||
return ret
|
||||
return resf
|
||||
|
|
Loading…
Reference in a new issue