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import sys
from typing import (
Callable,
import sys
from typing import (
Callable,
Iterable,
Iterator,
List,
Optional,
Iterable,
Iterator,
List,
Optional,
-from typing import Final
-
-from blib2to3.pgen2.token import *
from blib2to3.pgen2.grammar import Grammar
from blib2to3.pgen2.grammar import Grammar
+from blib2to3.pgen2.token import (
+ ASYNC,
+ AWAIT,
+ COMMENT,
+ DEDENT,
+ ENDMARKER,
+ ERRORTOKEN,
+ INDENT,
+ NAME,
+ NEWLINE,
+ NL,
+ NUMBER,
+ OP,
+ STRING,
+ tok_name,
+)
__author__ = "Ka-Ping Yee <ping@lfw.org>"
__credits__ = "GvR, ESR, Tim Peters, Thomas Wouters, Fred Drake, Skip Montanaro"
import re
from codecs import BOM_UTF8, lookup
__author__ = "Ka-Ping Yee <ping@lfw.org>"
__credits__ = "GvR, ESR, Tim Peters, Thomas Wouters, Fred Drake, Skip Montanaro"
import re
from codecs import BOM_UTF8, lookup
-from blib2to3.pgen2.token import *
def _combinations(*l: str) -> Set[str]:
def _combinations(*l: str) -> Set[str]:
- return set(x + y for x in l for y in l + ("",) if x.casefold() != y.casefold())
+ return {x + y for x in l for y in l + ("",) if x.casefold() != y.casefold()}
- type: int, token: Text, srow_col: Coord, erow_col: Coord, line: Text
+ type: int, token: str, srow_col: Coord, erow_col: Coord, line: str
) -> None: # for testing
(srow, scol) = srow_col
(erow, ecol) = erow_col
) -> None: # for testing
(srow, scol) = srow_col
(erow, ecol) = erow_col
-TokenEater = Callable[[int, Text, Coord, Coord, Text ], None]
+TokenEater = Callable[[int, str, Coord, Coord, str ], None]
-def tokenize(readline: Callable[[], Text ], tokeneater: TokenEater = printtoken) -> None:
+def tokenize(readline: Callable[[], str ], tokeneater: TokenEater = printtoken) -> None:
"""
The tokenize() function accepts two parameters: one representing the
input stream, and one providing an output mechanism for tokenize().
"""
The tokenize() function accepts two parameters: one representing the
input stream, and one providing an output mechanism for tokenize().
# backwards compatible interface
# backwards compatible interface
-def tokenize_loop(readline: Callable[[], Text ], tokeneater: TokenEater) -> None:
+def tokenize_loop(readline: Callable[[], str ], tokeneater: TokenEater) -> None:
for token_info in generate_tokens(readline):
tokeneater(*token_info)
for token_info in generate_tokens(readline):
tokeneater(*token_info)
-GoodTokenInfo = Tuple[int, Text, Coord, Coord, Text ]
+GoodTokenInfo = Tuple[int, str, Coord, Coord, str ]
TokenInfo = Union[Tuple[int, str], GoodTokenInfo]
class Untokenizer:
TokenInfo = Union[Tuple[int, str], GoodTokenInfo]
class Untokenizer:
prev_row: int
prev_col: int
prev_row: int
prev_col: int
if col_offset:
self.tokens.append(" " * col_offset)
if col_offset:
self.tokens.append(" " * col_offset)
- def untokenize(self, iterable: Iterable[TokenInfo]) -> Text :
+ def untokenize(self, iterable: Iterable[TokenInfo]) -> str :
for t in iterable:
if len(t) == 2:
self.compat(cast(Tuple[int, str], t), iterable)
break
tok_type, token, start, end, line = cast(
for t in iterable:
if len(t) == 2:
self.compat(cast(Tuple[int, str], t), iterable)
break
tok_type, token, start, end, line = cast(
- Tuple[int, Text, Coord, Coord, Text ], t
+ Tuple[int, str, Coord, Coord, str ], t
)
self.add_whitespace(start)
self.tokens.append(token)
)
self.add_whitespace(start)
self.tokens.append(token)
self.prev_col = 0
return "".join(self.tokens)
self.prev_col = 0
return "".join(self.tokens)
- def compat(self, token: Tuple[int, Text ], iterable: Iterable[TokenInfo]) -> None:
+ def compat(self, token: Tuple[int, str ], iterable: Iterable[TokenInfo]) -> None:
startline = False
indents = []
toks_append = self.tokens.append
startline = False
indents = []
toks_append = self.tokens.append
try:
return readline()
except StopIteration:
try:
return readline()
except StopIteration:
def find_cookie(line: bytes) -> Optional[str]:
try:
def find_cookie(line: bytes) -> Optional[str]:
try:
return default, [first, second]
return default, [first, second]
-def untokenize(iterable: Iterable[TokenInfo]) -> Text :
+def untokenize(iterable: Iterable[TokenInfo]) -> str :
"""Transform tokens back into Python source code.
Each element returned by the iterable must be a token sequence
"""Transform tokens back into Python source code.
Each element returned by the iterable must be a token sequence
- readline: Callable[[], Text ], grammar: Optional[Grammar] = None
+ readline: Callable[[], str ], grammar: Optional[Grammar] = None
) -> Iterator[GoodTokenInfo]:
"""
The generate_tokens() generator requires one argument, readline, which
) -> Iterator[GoodTokenInfo]:
"""
The generate_tokens() generator requires one argument, readline, which
yield stashed
stashed = None
yield stashed
stashed = None
- for indent in indents[1:]: # pop remaining indent levels
+ for _ indent in indents[1:]: # pop remaining indent levels
yield (DEDENT, "", (lnum, 0), (lnum, 0), "")
yield (ENDMARKER, "", (lnum, 0), (lnum, 0), "")
if __name__ == "__main__": # testing
yield (DEDENT, "", (lnum, 0), (lnum, 0), "")
yield (ENDMARKER, "", (lnum, 0), (lnum, 0), "")
if __name__ == "__main__": # testing
if len(sys.argv) > 1:
tokenize(open(sys.argv[1]).readline)
else:
if len(sys.argv) > 1:
tokenize(open(sys.argv[1]).readline)
else: