mirror of
https://github.com/pocketpy/pocketpy
synced 2025-10-20 19:40:18 +00:00
324 lines
9.7 KiB
Python
324 lines
9.7 KiB
Python
import sys as _sys
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import operator as _operator
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def print(*args, sep=' ', end='\n'):
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s = sep.join([str(i) for i in args])
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_sys.stdout.write(s + end)
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def issubclass(cls, base):
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if type(cls) is not type:
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raise TypeError('issubclass() arg 1 must be a class')
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if type(base) is not type:
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raise TypeError('issubclass() arg 2 must be a class')
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while cls is not None:
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if cls is base:
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return True
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cls = cls.__base__
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return False
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def _minmax_reduce(op, args, key):
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if key is None:
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if len(args) == 2:
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return args[0] if op(args[0], args[1]) else args[1]
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key = lambda x: x
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if len(args) == 0:
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raise TypeError('expected 1 arguments, got 0')
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if len(args) == 1:
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args = args[0]
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args = iter(args)
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res = next(args)
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if res is StopIteration:
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raise ValueError('args is an empty sequence')
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while True:
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i = next(args)
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if i is StopIteration:
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break
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if op(key(i), key(res)):
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res = i
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return res
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def min(*args, key=None):
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return _minmax_reduce(_operator.lt, args, key)
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def max(*args, key=None):
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return _minmax_reduce(_operator.gt, args, key)
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def all(iterable):
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for i in iterable:
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if not i:
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return False
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return True
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def any(iterable):
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for i in iterable:
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if i:
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return True
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return False
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def enumerate(iterable, start=0):
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n = start
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for elem in iterable:
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yield n, elem
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++n
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def sum(iterable):
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res = 0
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for i in iterable:
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res += i
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return res
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def map(f, iterable):
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for i in iterable:
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yield f(i)
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def filter(f, iterable):
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for i in iterable:
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if f(i):
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yield i
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def zip(a, b):
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a = iter(a)
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b = iter(b)
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while True:
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ai = next(a)
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bi = next(b)
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if ai is StopIteration or bi is StopIteration:
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break
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yield ai, bi
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def reversed(iterable):
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a = list(iterable)
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a.reverse()
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return a
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def sorted(iterable, key=None, reverse=False):
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a = list(iterable)
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a.sort(key=key, reverse=reverse)
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return a
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##### str #####
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def __f(self: str, *args, **kwargs) -> str:
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def tokenizeString(s: str):
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tokens = []
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L, R = 0,0
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mode = None
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curArg = 0
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# lookingForKword = False
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while(R<len(s)):
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curChar = s[R]
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nextChar = s[R+1] if R+1<len(s) else ''
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# Invalid case 1: stray '}' encountered, example: "ABCD EFGH {name} IJKL}", "Hello {vv}}", "HELLO {0} WORLD}"
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if curChar == '}' and nextChar != '}':
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raise ValueError("Single '}' encountered in format string")
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# Valid Case 1: Escaping case, we escape "{{ or "}}" to be "{" or "}", example: "{{}}", "{{My Name is {0}}}"
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if (curChar == '{' and nextChar == '{') or (curChar == '}' and nextChar == '}'):
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if (L<R): # Valid Case 1.1: make sure we are not adding empty string
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tokens.append(s[L:R]) # add the string before the escape
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tokens.append(curChar) # Valid Case 1.2: add the escape char
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L = R+2 # move the left pointer to the next char
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R = R+2 # move the right pointer to the next char
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continue
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# Valid Case 2: Regular command line arg case: example: "ABCD EFGH {} IJKL", "{}", "HELLO {} WORLD"
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elif curChar == '{' and nextChar == '}':
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if mode is not None and mode != 'auto':
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# Invalid case 2: mixing automatic and manual field specifications -- example: "ABCD EFGH {name} IJKL {}", "Hello {vv} {}", "HELLO {0} WORLD {}"
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raise ValueError("Cannot switch from manual field numbering to automatic field specification")
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mode = 'auto'
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if(L<R): # Valid Case 2.1: make sure we are not adding empty string
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tokens.append(s[L:R]) # add the string before the special marker for the arg
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tokens.append("{"+str(curArg)+"}") # Valid Case 2.2: add the special marker for the arg
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curArg+=1 # increment the arg position, this will be used for referencing the arg later
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L = R+2 # move the left pointer to the next char
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R = R+2 # move the right pointer to the next char
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continue
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# Valid Case 3: Key-word arg case: example: "ABCD EFGH {name} IJKL", "Hello {vv}", "HELLO {name} WORLD"
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elif (curChar == '{'):
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if mode is not None and mode != 'manual':
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# # Invalid case 2: mixing automatic and manual field specifications -- example: "ABCD EFGH {} IJKL {name}", "Hello {} {1}", "HELLO {} WORLD {name}"
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raise ValueError("Cannot switch from automatic field specification to manual field numbering")
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mode = 'manual'
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if(L<R): # Valid case 3.1: make sure we are not adding empty string
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tokens.append(s[L:R]) # add the string before the special marker for the arg
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# We look for the end of the keyword
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kwL = R # Keyword left pointer
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kwR = R+1 # Keyword right pointer
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while(kwR<len(s) and s[kwR]!='}'):
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if s[kwR] == '{': # Invalid case 3: stray '{' encountered, example: "ABCD EFGH {n{ame} IJKL {", "Hello {vv{}}", "HELLO {0} WOR{LD}"
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raise ValueError("Unexpected '{' in field name")
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kwR += 1
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# Valid case 3.2: We have successfully found the end of the keyword
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if kwR<len(s) and s[kwR] == '}':
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tokens.append(s[kwL:kwR+1]) # add the special marker for the arg
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L = kwR+1
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R = kwR+1
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# Invalid case 4: We didn't find the end of the keyword, throw error
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else:
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raise ValueError("Expected '}' before end of string")
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continue
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R = R+1
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# Valid case 4: We have reached the end of the string, add the remaining string to the tokens
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if L<R:
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tokens.append(s[L:R])
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# print(tokens)
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return tokens
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tokens = tokenizeString(self)
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argMap = {}
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for i, a in enumerate(args):
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argMap[str(i)] = a
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final_tokens = []
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for t in tokens:
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if t[0] == '{' and t[-1] == '}':
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key = t[1:-1]
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argMapVal = argMap.get(key, None)
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kwargsVal = kwargs.get(key, None)
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if argMapVal is None and kwargsVal is None:
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raise ValueError("No arg found for token: "+t)
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elif argMapVal is not None:
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final_tokens.append(str(argMapVal))
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else:
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final_tokens.append(str(kwargsVal))
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else:
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final_tokens.append(t)
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return ''.join(final_tokens)
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str.format = __f
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def __f(self, chars=None):
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chars = chars or ' \t\n\r'
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i = 0
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while i < len(self) and self[i] in chars:
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++i
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return self[i:]
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str.lstrip = __f
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def __f(self, chars=None):
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chars = chars or ' \t\n\r'
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j = len(self) - 1
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while j >= 0 and self[j] in chars:
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--j
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return self[:j+1]
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str.rstrip = __f
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def __f(self, chars=None):
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chars = chars or ' \t\n\r'
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i = 0
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while i < len(self) and self[i] in chars:
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++i
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j = len(self) - 1
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while j >= 0 and self[j] in chars:
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--j
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return self[i:j+1]
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str.strip = __f
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def __f(self, width: int):
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delta = width - len(self)
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if delta <= 0:
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return self
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return '0' * delta + self
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str.zfill = __f
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def __f(self, width: int, fillchar=' '):
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delta = width - len(self)
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if delta <= 0:
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return self
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assert len(fillchar) == 1
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return fillchar * delta + self
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str.rjust = __f
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def __f(self, width: int, fillchar=' '):
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delta = width - len(self)
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if delta <= 0:
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return self
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assert len(fillchar) == 1
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return self + fillchar * delta
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str.ljust = __f
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del __f
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def help(obj):
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if hasattr(obj, '__func__'):
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obj = obj.__func__
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print(obj.__signature__)
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print(obj.__doc__)
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class classmethod:
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def __init__(self, f):
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self.f = f
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raise NotImplementedError
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def staticmethod(f):
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return f
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def complex(*args, **kwargs):
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import cmath
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return cmath.complex(*args, **kwargs)
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def long(*args, **kwargs):
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import _long
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return _long.long(*args, **kwargs)
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# builtin exceptions
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class SyntaxError(Exception): pass
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class IndentationError(SyntaxError): pass
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class StackOverflowError(Exception): pass
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class IOError(Exception): pass
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class NotImplementedError(Exception): pass
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class TypeError(Exception): pass
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class IndexError(Exception): pass
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class ValueError(Exception): pass
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class RuntimeError(Exception): pass
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class ZeroDivisionError(Exception): pass
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class NameError(Exception): pass
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class UnboundLocalError(Exception): pass
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class AttributeError(Exception): pass
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class ImportError(Exception): pass
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class AssertionError(Exception): pass
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class KeyError(Exception):
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def __init__(self, key=...):
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self.key = key
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if key is ...:
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super().__init__()
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else:
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super().__init__(repr(key))
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def __str__(self):
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if self.key is ...:
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return ''
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return str(self.key)
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def __repr__(self):
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if self.key is ...:
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return 'KeyError()'
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return f'KeyError({self.key!r})'
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