http://s.ytimg.com/yts/jsbin/html5player-zh_HK-vfl1NK6PR/html5player.js fix raise ExtractorError
		
			
				
	
	
		
			182 lines
		
	
	
		
			6.1 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			182 lines
		
	
	
		
			6.1 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
| from __future__ import unicode_literals
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| 
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| import json
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| import re
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| 
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| from .utils import (
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|     ExtractorError,
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| )
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| 
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| 
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| class JSInterpreter(object):
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|     def __init__(self, code):
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|         self.code = code
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|         self._functions = {}
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|         self._objects = {}
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| 
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|     def interpret_statement(self, stmt, local_vars, allow_recursion=20):
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|         if allow_recursion < 0:
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|             raise ExtractorError('Recursion limit reached')
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| 
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|         if stmt.startswith('var '):
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|             stmt = stmt[len('var '):]
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|         ass_m = re.match(r'^(?P<out>[a-z]+)(?:\[(?P<index>[^\]]+)\])?' +
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|                          r'=(?P<expr>.*)$', stmt)
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|         if ass_m:
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|             if ass_m.groupdict().get('index'):
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|                 def assign(val):
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|                     lvar = local_vars[ass_m.group('out')]
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|                     idx = self.interpret_expression(
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|                         ass_m.group('index'), local_vars, allow_recursion)
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|                     assert isinstance(idx, int)
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|                     lvar[idx] = val
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|                     return val
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|                 expr = ass_m.group('expr')
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|             else:
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|                 def assign(val):
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|                     local_vars[ass_m.group('out')] = val
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|                     return val
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|                 expr = ass_m.group('expr')
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|         elif stmt.startswith('return '):
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|             assign = lambda v: v
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|             expr = stmt[len('return '):]
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|         else:
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|             # Try interpreting it as an expression
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|             expr = stmt
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|             assign = lambda v: v
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| 
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|         v = self.interpret_expression(expr, local_vars, allow_recursion)
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|         return assign(v)
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| 
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|     def interpret_expression(self, expr, local_vars, allow_recursion):
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|         if expr.isdigit():
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|             return int(expr)
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| 
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|         if expr.isalpha():
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|             return local_vars[expr]
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| 
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|         try:
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|             return json.loads(expr)
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|         except ValueError:
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|             pass
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| 
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|         m = re.match(
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|             r'^(?P<var>[$a-zA-Z0-9_]+)\.(?P<member>[^(]+)(?:\(+(?P<args>[^()]*)\))?$',
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|             expr)
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|         if m:
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|             variable = m.group('var')
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|             member = m.group('member')
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|             arg_str = m.group('args')
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| 
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|             if variable in local_vars:
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|                 obj = local_vars[variable]
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|             else:
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|                 if variable not in self._objects:
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|                     self._objects[variable] = self.extract_object(variable)
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|                 obj = self._objects[variable]
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| 
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|             if arg_str is None:
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|                 # Member access
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|                 if member == 'length':
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|                     return len(obj)
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|                 return obj[member]
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| 
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|             assert expr.endswith(')')
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|             # Function call
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|             if arg_str == '':
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|                 argvals = tuple()
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|             else:
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|                 argvals = tuple([
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|                     self.interpret_expression(v, local_vars, allow_recursion)
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|                     for v in arg_str.split(',')])
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| 
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|             if member == 'split':
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|                 assert argvals == ('',)
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|                 return list(obj)
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|             if member == 'join':
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|                 assert len(argvals) == 1
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|                 return argvals[0].join(obj)
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|             if member == 'reverse':
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|                 assert len(argvals) == 0
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|                 obj.reverse()
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|                 return obj
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|             if member == 'slice':
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|                 assert len(argvals) == 1
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|                 return obj[argvals[0]:]
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|             if member == 'splice':
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|                 assert isinstance(obj, list)
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|                 index, howMany = argvals
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|                 res = []
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|                 for i in range(index, min(index + howMany, len(obj))):
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|                     res.append(obj.pop(index))
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|                 return res
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| 
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|             return obj[member](argvals)
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| 
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|         m = re.match(
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|             r'^(?P<in>[a-z]+)\[(?P<idx>.+)\]$', expr)
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|         if m:
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|             val = local_vars[m.group('in')]
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|             idx = self.interpret_expression(
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|                 m.group('idx'), local_vars, allow_recursion - 1)
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|             return val[idx]
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| 
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|         m = re.match(r'^(?P<a>.+?)(?P<op>[%])(?P<b>.+?)$', expr)
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|         if m:
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|             a = self.interpret_expression(
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|                 m.group('a'), local_vars, allow_recursion)
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|             b = self.interpret_expression(
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|                 m.group('b'), local_vars, allow_recursion)
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|             return a % b
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| 
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|         m = re.match(
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|             r'^(?P<func>[a-zA-Z$]+)\((?P<args>[a-z0-9,]+)\)$', expr)
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|         if m:
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|             fname = m.group('func')
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|             argvals = tuple([
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|                 int(v) if v.isdigit() else local_vars[v]
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|                 for v in m.group('args').split(',')])
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|             if fname not in self._functions:
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|                 self._functions[fname] = self.extract_function(fname)
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|             return self._functions[fname](argvals)
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|         raise ExtractorError('Unsupported JS expression %r' % expr)
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| 
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|     def extract_object(self, objname):
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|         obj = {}
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|         obj_m = re.search(
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|             (r'(?:var\s+)?%s\s*=\s*\{' % re.escape(objname)) +
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|             r'\s*(?P<fields>([a-zA-Z$0-9]+\s*:\s*function\(.*?\)\s*\{.*?\})*)' +
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|             r'\}\s*;',
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|             self.code)
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|         fields = obj_m.group('fields')
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|         # Currently, it only supports function definitions
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|         fields_m = re.finditer(
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|             r'(?P<key>[a-zA-Z$0-9]+)\s*:\s*function'
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|             r'\((?P<args>[a-z,]+)\){(?P<code>[^}]+)}',
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|             fields)
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|         for f in fields_m:
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|             argnames = f.group('args').split(',')
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|             obj[f.group('key')] = self.build_function(argnames, f.group('code'))
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| 
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|         return obj
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| 
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|     def extract_function(self, funcname):
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|         func_m = re.search(
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|             (r'(?:function %s|[{;]%s\s*=\s*function)' % (
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|                 re.escape(funcname), re.escape(funcname))) +
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|             r'\((?P<args>[a-z,]+)\){(?P<code>[^}]+)}',
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|             self.code)
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|         if func_m is None:
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|             raise ExtractorError('Could not find JS function %r' % funcname)
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|         argnames = func_m.group('args').split(',')
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| 
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|         return self.build_function(argnames, func_m.group('code'))
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| 
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|     def build_function(self, argnames, code):
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|         def resf(args):
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|             local_vars = dict(zip(argnames, args))
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|             for stmt in code.split(';'):
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|                 res = self.interpret_statement(stmt, local_vars)
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|             return res
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|         return resf
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