225 lines
8.9 KiB
Python
225 lines
8.9 KiB
Python
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"""
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This file contains various validation functions to be used throughout the
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package.
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Author(s): David Marchant
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"""
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from inspect import signature
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from os.path import sep, exists, isfile, isdir, dirname
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from typing import Any, _SpecialForm, Union, Type, Dict, List, \
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get_origin, get_args
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from core.correctness.vars import VALID_PATH_CHARS, get_not_imp_msg
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def check_type(variable:Any, expected_type:Type, alt_types:List[Type]=[],
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or_none:bool=False, hint:str="")->None:
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"""Checks if a given variable is of the expected type. Raises TypeError or
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ValueError as appropriate if any issues are encountered."""
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# Get a list of all allowed types
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type_list = [expected_type]
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if get_origin(expected_type) is Union:
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type_list = list(get_args(expected_type))
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type_list = type_list + alt_types
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# Only accept None if explicitly allowed
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if variable is None:
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if or_none == False:
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if hint:
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msg = f"Not allowed None for {hint}. Expected {expected_type}."
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else:
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msg = f"Not allowed None. Expected {expected_type}."
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raise TypeError(msg)
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else:
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return
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# If any type is allowed, then we can stop checking
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if expected_type == Any:
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return
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# Check that variable type is within the accepted type list
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if not isinstance(variable, tuple(type_list)):
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if hint:
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msg = f"Expected type(s) for {hint} are '{type_list}', " \
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f"got {type(variable)}"
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else:
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msg = f"Expected type(s) are '{type_list}', got {type(variable)}"
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raise TypeError(msg)
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def check_callable(call:Any)->None:
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"""Checks if a given variable is a callable function. Raises TypeError if
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not."""
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if not callable(call):
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raise TypeError(f"Given object '{call}' is not a callable function")
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def check_implementation(child_func, parent_class):
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"""Checks if the given function has been overridden from the one inherited
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from the parent class. Raises a NotImplementedError if this is the case."""
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# Check parent first implements func to measure against
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if not hasattr(parent_class, child_func.__name__):
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raise AttributeError(
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f"Parent class {parent_class} does not implement base function "
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f"{child_func.__name__} for children to override.")
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parent_func = getattr(parent_class, child_func.__name__)
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# Check child implements function with correct name
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if (child_func == parent_func):
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msg = get_not_imp_msg(parent_class, parent_func)
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raise NotImplementedError(msg)
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# Check that child implements function with correct signature
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child_sig = signature(child_func).parameters
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parent_sig = signature(parent_func).parameters
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if child_sig.keys() != parent_sig.keys():
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msg = get_not_imp_msg(parent_class, parent_func)
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raise NotImplementedError(msg)
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def check_script(script:Any):
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"""Checks if a given variable is a valid script. Raises TypeError if
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not."""
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# TODO investigate more robust check here
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check_type(script, list)
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for line in script:
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check_type(line, str)
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def valid_string(variable:str, valid_chars:str, min_length:int=1)->None:
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"""Checks that all characters in a given string are present in a provided
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list of characters. Will raise an ValueError if unexpected character is
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encountered."""
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check_type(variable, str)
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check_type(valid_chars, str)
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# Check string is long enough
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if len(variable) < min_length:
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raise ValueError (
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f"String '{variable}' is too short. Minimum length is {min_length}"
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)
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# Check each char is acceptable
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for char in variable:
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if char not in valid_chars:
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raise ValueError(
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"Invalid character '%s'. Only valid characters are: "
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"%s" % (char, valid_chars)
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)
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def valid_dict(variable:Dict[Any, Any], key_type:Type, value_type:Type,
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required_keys:List[Any]=[], optional_keys:List[Any]=[],
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strict:bool=True, min_length:int=1)->None:
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"""Checks that a given dictionary is valid. Key and Value types are
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enforced, as are required and optional keys. Will raise ValueError,
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TypeError or KeyError depending on the problem encountered."""
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# Validate inputs
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check_type(variable, Dict)
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check_type(key_type, Type, alt_types=[_SpecialForm])
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check_type(value_type, Type, alt_types=[_SpecialForm])
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check_type(required_keys, list)
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check_type(optional_keys, list)
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check_type(strict, bool)
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# Check dict meets minimum length
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if len(variable) < min_length:
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raise ValueError(f"Dictionary '{variable}' is below minimum length of "
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f"{min_length}")
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# Check key and value types
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for k, v in variable.items():
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if key_type != Any and not isinstance(k, key_type):
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raise TypeError(f"Key {k} had unexpected type '{type(k)}' "
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f"rather than expected '{key_type}' in dict '{variable}'")
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if value_type != Any and not isinstance(v, value_type):
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raise TypeError(f"Value {v} had unexpected type '{type(v)}' "
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f"rather than expected '{value_type}' in dict '{variable}'")
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# Check all required keys present
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for rk in required_keys:
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if rk not in variable.keys():
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raise KeyError(f"Missing required key '{rk}' from dict "
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f"'{variable}'")
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# If strict checking, enforce that only required and optional keys are
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# present
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if strict:
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for k in variable.keys():
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if k not in required_keys and k not in optional_keys:
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raise ValueError(f"Unexpected key '{k}' should not be present "
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f"in dict '{variable}'")
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def valid_list(variable:List[Any], entry_type:Type,
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alt_types:List[Type]=[], min_length:int=1, hint:str="")->None:
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"""Checks that a given list is valid. Value types are checked and a
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ValueError or TypeError is raised if a problem is encountered."""
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check_type(variable, List, hint=hint)
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# Check length meets minimum
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if len(variable) < min_length:
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raise ValueError(f"List '{variable}' is too short. Should be at least "
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f"of length {min_length}")
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# Check type of each value
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for n, entry in enumerate(variable):
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if hint:
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check_type(entry, entry_type, alt_types=alt_types,
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hint=f"{hint}[{n}]")
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else:
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check_type(entry, entry_type, alt_types=alt_types)
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def valid_path(variable:str, allow_base:bool=False, extension:str="",
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min_length:int=1):
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"""Check that a given string expresses a valid path."""
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valid_string(variable, VALID_PATH_CHARS, min_length=min_length)
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# Check we aren't given a root path
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if not allow_base and variable.startswith(sep):
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raise ValueError(f"Cannot accept path '{variable}'. Must be relative.")
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# Check path contains a valid extension
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if extension and not variable.endswith(extension):
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raise ValueError(f"Path '{variable}' does not have required "
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f"extension '{extension}'.")
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def valid_existing_file_path(variable:str, allow_base:bool=False,
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extension:str=""):
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"""Check the given string is a path to an existing file."""
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# Check that the string is a path
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valid_path(variable, allow_base=allow_base, extension=extension)
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# Check the path exists
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if not exists(variable):
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raise FileNotFoundError(
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f"Requested file path '{variable}' does not exist.")
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# Check it is a file
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if not isfile(variable):
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raise ValueError(
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f"Requested file '{variable}' is not a file.")
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def valid_dir_path(variable:str, must_exist:bool=False, allow_base:bool=False
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)->None:
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"""Check the given string is a valid directory path, either to an existing
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one or a location that could contain one."""
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# Check that the string is a path
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valid_path(variable, allow_base=allow_base, extension="")
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# Check the path exists
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does_exist = exists(variable)
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if must_exist and not does_exist:
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raise FileNotFoundError(
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f"Requested dir path '{variable}' does not exist.")
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# Check it is a directory
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if does_exist and not isdir(variable):
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raise ValueError(
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f"Requested dir '{variable}' is not a directory.")
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def valid_non_existing_path(variable:str, allow_base:bool=False):
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"""Check the given string is a path to something that does not exist."""
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# Check that the string is a path
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valid_path(variable, allow_base=allow_base, extension="")
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# Check the path does not exist
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if exists(variable):
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raise ValueError(f"Requested path '{variable}' already exists.")
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# Check that any intermediate directories exist
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if dirname(variable) and not exists(dirname(variable)):
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raise ValueError(
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f"Route to requested path '{variable}' does not exist.")
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# TODO add validation for requirement functions |