Upload text_utils.py with huggingface_hub
Browse files- text_utils.py +163 -0
text_utils.py
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import re
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def split_words(s):
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# Split PascalCase or camelCase
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s = re.sub("([A-Z][a-z]+)", r" \1", re.sub("([A-Z]+)", r" \1", s)).strip()
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# Split snake_case or kebab-case
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s = re.sub("[_-]", " ", s)
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# Split numbers attached to strings
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s = re.sub("([a-zA-Z])(\d)", r"\1 \2", s)
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s = re.sub("(\d)([a-zA-Z])", r"\1 \2", s)
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# Split the string into words based on spaces
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words = s.split()
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return words
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def is_camel_case(s):
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# The string must start with an uppercase letter, followed by zero or more sequences of an uppercase letter followed by zero or more lowercase letters.
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return re.match(r"^[A-Z]+([a-z0-9]*[A-Z]*[a-z0-9]*)*$", s) is not None
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def is_snake_case(s):
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# The string must start with a lowercase letter, followed by zero or more sequences of an underscore followed by one or more lowercase letters.
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return re.match(r"^[a-z0-9]+(_[a-z0-9]+)*$", s) is not None
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def camel_to_snake_case(s):
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# Add an underscore before every uppercase letter that is followed by a lowercase letter or digit and not preceded by an underscore, a hyphen or an uppercase letter
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s = re.sub("(?<=[^A-Z_-])([A-Z])", r"_\1", s)
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# Ensure there's an underscore before any uppercase letter that's followed by a lowercase letter or digit and comes after a sequence of uppercase letters
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s = re.sub("([A-Z]+)([A-Z][a-z0-9])", r"\1_\2", s)
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s = s.lower()
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return s
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import shutil
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def print_dict(d, indent=0, indent_delta=4, max_chars=None):
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max_chars = max_chars or shutil.get_terminal_size()[0] - 10 # Get terminal size if max_chars not set
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indent_str = " " * indent
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indent_delta_str = " " * indent_delta
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for key, value in d.items():
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if isinstance(value, dict):
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print(f"{indent_str}{key}:")
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print_dict(value, indent=indent + indent_delta, max_chars=max_chars)
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else:
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# Value is not a dict, print as a string
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str_value = str(value)
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line_width = max_chars - indent
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# Split value by newline characters and handle each line separately
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lines = str_value.split("\n")
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print(f"{indent_str}{key}:")
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for line in lines:
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if len(line) + len(indent_str) + indent_delta > line_width:
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# Split long lines into multiple lines
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print(f"{indent_str}{indent_delta_str}{line[:line_width]}")
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for i in range(line_width, len(line), line_width):
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print(f"{indent_str}{indent_delta_str}{line[i:i+line_width]}")
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else:
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print(f"{indent_str}{indent_delta_str}{line}")
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key = "" # Empty the key for lines after the first one
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def nested_tuple_to_string(nested_tuple: tuple) -> str:
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result = []
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for item in nested_tuple:
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if isinstance(item, tuple):
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result.append(nested_tuple_to_string(item))
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else:
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result.append(str(item))
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return "_".join(result)
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if __name__ == "__main__":
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# Define test cases
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test_cases = [
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("example1", ["example", "1"]),
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("exampleOne", ["example", "One"]),
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("123example456", ["123", "example", "456"]),
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("happyDay", ["happy", "Day"]),
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("thisIsATest", ["this", "Is", "A", "Test"]),
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("TestAI2023", ["Test", "AI", "2023"]),
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("stringWith1Number", ["string", "With", "1", "Number"]),
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("camelCaseExample", ["camel", "Case", "Example"]),
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("snake_case_example", ["snake", "case", "example"]),
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("snake_case2example3", ["snake", "case", "2", "example", "3"]),
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("kebab-case-example", ["kebab", "case", "example"]),
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("kebab-case2example3", ["kebab", "case", "2", "example", "3"]),
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("PascalCaseExample", ["Pascal", "Case", "Example"]),
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("Title Case Example", ["Title", "Case", "Example"]),
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("Mixed1Example_case", ["Mixed", "1", "Example", "case"]),
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("Mixed2Example-case", ["Mixed", "2", "Example", "case"]),
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("Mixed3_Example-case", ["Mixed", "3", "Example", "case"]),
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("UPPERCASEEXAMPLE", ["UPPERCASEEXAMPLE"]),
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("lowercaseexample", ["lowercaseexample"]),
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("mixedUPanddown", ["mixed", "U", "Panddown"]),
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]
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# Loop through test cases
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for i, (input_string, expected_output) in enumerate(test_cases, 1):
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# Apply function and check result
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if split_words(input_string) != expected_output:
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print(f"Failed on example {i}: {input_string}")
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print(f"Expected: {expected_output}, but got: {split_words(input_string)}\n")
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is_camel_case_test_cases = [
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("isCamelCase", False),
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("notCamelCase", False),
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("camelCase", False),
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("Notcamelcase", True),
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("camel_Case", False),
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("camelCase123", False),
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("camelcase", False),
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("CAMELCASE", True),
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("camel-case", False),
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("HFLoader", True),
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]
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for input_string, expected_output in is_camel_case_test_cases:
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if is_camel_case(input_string) != expected_output:
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print(f"Failed on is_camel_case: {input_string}")
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print(f"Expected: {expected_output}, but got: {is_camel_case(input_string)}\n")
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is_snake_case_test_cases = [
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("is_snake_case", True),
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("Not_snake_case", False),
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("snake_case", True),
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("snake_Case", False),
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("Snakecase", False),
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("snake-case", False),
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("snake_case123", True),
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("123snake_case", True),
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("snakecase", True),
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]
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for input_string, expected_output in is_snake_case_test_cases:
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if is_snake_case(input_string) != expected_output:
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print(f"Failed on is_snake_case: {input_string}")
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print(f"Expected: {expected_output}, but got: {is_snake_case(input_string)}\n")
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camel_to_snake_case_test_cases = [
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("camelToSnake", "camel_to_snake"),
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("CamelToSnake", "camel_to_snake"),
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("CamelToSnakeCase", "camel_to_snake_case"),
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("camelToSnakeCase123", "camel_to_snake_case123"),
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("123CamelToSnakeCase", "123_camel_to_snake_case"),
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("camelTo_Snake_Case", "camel_to__snake__case"),
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("camelTo-Snake-Case", "camel_to-_snake-_case"),
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("camelToSnakeCASE", "camel_to_snake_case"),
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("CAMELToSnakeCase", "camel_to_snake_case"),
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("camelToSNAKECase", "camel_to_snake_case"),
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("HFLoader", "hf_loader"),
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]
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for input_string, expected_output in camel_to_snake_case_test_cases:
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if camel_to_snake_case(input_string) != expected_output:
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print(f"Failed on camel_to_snake_case: {input_string}")
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print(f"Expected: {expected_output}, but got: {camel_to_snake_case(input_string)}\n")
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