mirror of
https://github.com/explosion/spaCy.git
synced 2024-12-28 02:46:35 +03:00
268ddf8a06
* added new field * added exception for IOb strings * minor refinement to schema * removed field * fixed typo * imported numeriacla val * changed the code bit * cosmetics * added test for matcher * set ents of moc docs * added invalid pattern * minor update to documentation * blacked matcher * added pattern validation * add IOB vals to schema * changed into test * mypy compat * cleaned left over * added compat import * changed type * added compat import * changed literal a bit * went back to old * made explicit type * Update spacy/schemas.py Co-authored-by: Adriane Boyd <adrianeboyd@gmail.com> * Update spacy/schemas.py Co-authored-by: Adriane Boyd <adrianeboyd@gmail.com> * Update spacy/schemas.py Co-authored-by: Adriane Boyd <adrianeboyd@gmail.com> Co-authored-by: Adriane Boyd <adrianeboyd@gmail.com>
488 lines
20 KiB
Python
488 lines
20 KiB
Python
from typing import Dict, List, Union, Optional, Any, Callable, Type, Tuple
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from typing import Iterable, TypeVar, TYPE_CHECKING
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from .compat import Literal
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from enum import Enum
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from pydantic import BaseModel, Field, ValidationError, validator, create_model
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from pydantic import StrictStr, StrictInt, StrictFloat, StrictBool
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from pydantic.main import ModelMetaclass
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from thinc.api import Optimizer, ConfigValidationError, Model
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from thinc.config import Promise
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from collections import defaultdict
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import inspect
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from .attrs import NAMES
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from .lookups import Lookups
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from .util import is_cython_func
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if TYPE_CHECKING:
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# This lets us add type hints for mypy etc. without causing circular imports
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from .language import Language # noqa: F401
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from .training import Example # noqa: F401
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from .vocab import Vocab # noqa: F401
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# fmt: off
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ItemT = TypeVar("ItemT")
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Batcher = Union[Callable[[Iterable[ItemT]], Iterable[List[ItemT]]], Promise]
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Reader = Union[Callable[["Language", str], Iterable["Example"]], Promise]
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Logger = Union[Callable[["Language"], Tuple[Callable[[Dict[str, Any]], None], Callable]], Promise]
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# fmt: on
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def validate(schema: Type[BaseModel], obj: Dict[str, Any]) -> List[str]:
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"""Validate data against a given pydantic schema.
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obj (Dict[str, Any]): JSON-serializable data to validate.
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schema (pydantic.BaseModel): The schema to validate against.
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RETURNS (List[str]): A list of error messages, if available.
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"""
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try:
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schema(**obj)
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return []
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except ValidationError as e:
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errors = e.errors()
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data = defaultdict(list)
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for error in errors:
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err_loc = " -> ".join([str(p) for p in error.get("loc", [])])
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data[err_loc].append(error.get("msg"))
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return [f"[{loc}] {', '.join(msg)}" for loc, msg in data.items()] # type: ignore[arg-type]
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# Initialization
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class ArgSchemaConfig:
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extra = "forbid"
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arbitrary_types_allowed = True
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class ArgSchemaConfigExtra:
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extra = "forbid"
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arbitrary_types_allowed = True
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def get_arg_model(
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func: Callable,
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*,
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exclude: Iterable[str] = tuple(),
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name: str = "ArgModel",
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strict: bool = True,
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) -> ModelMetaclass:
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"""Generate a pydantic model for function arguments.
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func (Callable): The function to generate the schema for.
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exclude (Iterable[str]): Parameter names to ignore.
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name (str): Name of created model class.
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strict (bool): Don't allow extra arguments if no variable keyword arguments
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are allowed on the function.
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RETURNS (ModelMetaclass): A pydantic model.
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"""
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sig_args = {}
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try:
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sig = inspect.signature(func)
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except ValueError:
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# Typically happens if the method is part of a Cython module without
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# binding=True. Here we just use an empty model that allows everything.
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return create_model(name, __config__=ArgSchemaConfigExtra) # type: ignore[arg-type, return-value]
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has_variable = False
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for param in sig.parameters.values():
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if param.name in exclude:
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continue
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if param.kind == param.VAR_KEYWORD:
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# The function allows variable keyword arguments so we shouldn't
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# include **kwargs etc. in the schema and switch to non-strict
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# mode and pass through all other values
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has_variable = True
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continue
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# If no annotation is specified assume it's anything
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annotation = param.annotation if param.annotation != param.empty else Any
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# If no default value is specified assume that it's required. Cython
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# functions/methods will have param.empty for default value None so we
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# need to treat them differently
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default_empty = None if is_cython_func(func) else ...
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default = param.default if param.default != param.empty else default_empty
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sig_args[param.name] = (annotation, default)
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is_strict = strict and not has_variable
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sig_args["__config__"] = ArgSchemaConfig if is_strict else ArgSchemaConfigExtra # type: ignore[assignment]
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return create_model(name, **sig_args) # type: ignore[arg-type, return-value]
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def validate_init_settings(
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func: Callable,
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settings: Dict[str, Any],
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*,
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section: Optional[str] = None,
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name: str = "",
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exclude: Iterable[str] = ("get_examples", "nlp"),
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) -> Dict[str, Any]:
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"""Validate initialization settings against the expected arguments in
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the method signature. Will parse values if possible (e.g. int to string)
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and return the updated settings dict. Will raise a ConfigValidationError
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if types don't match or required values are missing.
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func (Callable): The initialize method of a given component etc.
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settings (Dict[str, Any]): The settings from the respective [initialize] block.
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section (str): Initialize section, for error message.
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name (str): Name of the block in the section.
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exclude (Iterable[str]): Parameter names to exclude from schema.
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RETURNS (Dict[str, Any]): The validated settings.
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"""
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schema = get_arg_model(func, exclude=exclude, name="InitArgModel")
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try:
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return schema(**settings).dict()
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except ValidationError as e:
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block = "initialize" if not section else f"initialize.{section}"
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title = f"Error validating initialization settings in [{block}]"
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raise ConfigValidationError(
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title=title, errors=e.errors(), config=settings, parent=name
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) from None
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# Matcher token patterns
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def validate_token_pattern(obj: list) -> List[str]:
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# Try to convert non-string keys (e.g. {ORTH: "foo"} -> {"ORTH": "foo"})
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get_key = lambda k: NAMES[k] if isinstance(k, int) and k < len(NAMES) else k
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if isinstance(obj, list):
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converted = []
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for pattern in obj:
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if isinstance(pattern, dict):
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pattern = {get_key(k): v for k, v in pattern.items()}
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converted.append(pattern)
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obj = converted
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return validate(TokenPatternSchema, {"pattern": obj})
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class TokenPatternString(BaseModel):
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REGEX: Optional[StrictStr] = Field(None, alias="regex")
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IN: Optional[List[StrictStr]] = Field(None, alias="in")
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NOT_IN: Optional[List[StrictStr]] = Field(None, alias="not_in")
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IS_SUBSET: Optional[List[StrictStr]] = Field(None, alias="is_subset")
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IS_SUPERSET: Optional[List[StrictStr]] = Field(None, alias="is_superset")
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INTERSECTS: Optional[List[StrictStr]] = Field(None, alias="intersects")
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class Config:
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extra = "forbid"
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allow_population_by_field_name = True # allow alias and field name
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@validator("*", pre=True, each_item=True, allow_reuse=True)
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def raise_for_none(cls, v):
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if v is None:
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raise ValueError("None / null is not allowed")
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return v
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class TokenPatternNumber(BaseModel):
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REGEX: Optional[StrictStr] = Field(None, alias="regex")
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IN: Optional[List[StrictInt]] = Field(None, alias="in")
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NOT_IN: Optional[List[StrictInt]] = Field(None, alias="not_in")
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IS_SUBSET: Optional[List[StrictInt]] = Field(None, alias="is_subset")
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IS_SUPERSET: Optional[List[StrictInt]] = Field(None, alias="is_superset")
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INTERSECTS: Optional[List[StrictInt]] = Field(None, alias="intersects")
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EQ: Union[StrictInt, StrictFloat] = Field(None, alias="==")
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NEQ: Union[StrictInt, StrictFloat] = Field(None, alias="!=")
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GEQ: Union[StrictInt, StrictFloat] = Field(None, alias=">=")
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LEQ: Union[StrictInt, StrictFloat] = Field(None, alias="<=")
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GT: Union[StrictInt, StrictFloat] = Field(None, alias=">")
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LT: Union[StrictInt, StrictFloat] = Field(None, alias="<")
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class Config:
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extra = "forbid"
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allow_population_by_field_name = True # allow alias and field name
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@validator("*", pre=True, each_item=True, allow_reuse=True)
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def raise_for_none(cls, v):
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if v is None:
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raise ValueError("None / null is not allowed")
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return v
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class TokenPatternOperator(str, Enum):
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plus: StrictStr = StrictStr("+")
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start: StrictStr = StrictStr("*")
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question: StrictStr = StrictStr("?")
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exclamation: StrictStr = StrictStr("!")
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StringValue = Union[TokenPatternString, StrictStr]
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NumberValue = Union[TokenPatternNumber, StrictInt, StrictFloat]
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UnderscoreValue = Union[
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TokenPatternString, TokenPatternNumber, str, int, float, list, bool
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]
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IobValue = Literal["", "I", "O", "B", 0, 1, 2, 3]
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class TokenPattern(BaseModel):
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orth: Optional[StringValue] = None
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text: Optional[StringValue] = None
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lower: Optional[StringValue] = None
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pos: Optional[StringValue] = None
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tag: Optional[StringValue] = None
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morph: Optional[StringValue] = None
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dep: Optional[StringValue] = None
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lemma: Optional[StringValue] = None
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shape: Optional[StringValue] = None
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ent_type: Optional[StringValue] = None
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ent_iob: Optional[IobValue] = None
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ent_id: Optional[StringValue] = None
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ent_kb_id: Optional[StringValue] = None
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norm: Optional[StringValue] = None
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length: Optional[NumberValue] = None
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spacy: Optional[StrictBool] = None
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is_alpha: Optional[StrictBool] = None
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is_ascii: Optional[StrictBool] = None
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is_digit: Optional[StrictBool] = None
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is_lower: Optional[StrictBool] = None
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is_upper: Optional[StrictBool] = None
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is_title: Optional[StrictBool] = None
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is_punct: Optional[StrictBool] = None
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is_space: Optional[StrictBool] = None
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is_bracket: Optional[StrictBool] = None
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is_quote: Optional[StrictBool] = None
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is_left_punct: Optional[StrictBool] = None
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is_right_punct: Optional[StrictBool] = None
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is_currency: Optional[StrictBool] = None
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is_stop: Optional[StrictBool] = None
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is_sent_start: Optional[StrictBool] = None
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sent_start: Optional[StrictBool] = None
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like_num: Optional[StrictBool] = None
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like_url: Optional[StrictBool] = None
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like_email: Optional[StrictBool] = None
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op: Optional[TokenPatternOperator] = None
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underscore: Optional[Dict[StrictStr, UnderscoreValue]] = Field(None, alias="_")
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class Config:
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extra = "forbid"
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allow_population_by_field_name = True
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alias_generator = lambda value: value.upper()
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@validator("*", pre=True, allow_reuse=True)
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def raise_for_none(cls, v):
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if v is None:
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raise ValueError("None / null is not allowed")
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return v
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class TokenPatternSchema(BaseModel):
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pattern: List[TokenPattern] = Field(..., min_items=1)
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class Config:
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extra = "forbid"
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# Model meta
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class ModelMetaSchema(BaseModel):
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# fmt: off
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lang: StrictStr = Field(..., title="Two-letter language code, e.g. 'en'")
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name: StrictStr = Field(..., title="Model name")
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version: StrictStr = Field(..., title="Model version")
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spacy_version: StrictStr = Field("", title="Compatible spaCy version identifier")
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parent_package: StrictStr = Field("spacy", title="Name of parent spaCy package, e.g. spacy or spacy-nightly")
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requirements: List[StrictStr] = Field([], title="Additional Python package dependencies, used for the Python package setup")
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pipeline: List[StrictStr] = Field([], title="Names of pipeline components")
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description: StrictStr = Field("", title="Model description")
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license: StrictStr = Field("", title="Model license")
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author: StrictStr = Field("", title="Model author name")
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email: StrictStr = Field("", title="Model author email")
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url: StrictStr = Field("", title="Model author URL")
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sources: Optional[Union[List[StrictStr], List[Dict[str, str]]]] = Field(None, title="Training data sources")
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vectors: Dict[str, Any] = Field({}, title="Included word vectors")
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labels: Dict[str, List[str]] = Field({}, title="Component labels, keyed by component name")
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performance: Dict[str, Any] = Field({}, title="Accuracy and speed numbers")
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spacy_git_version: StrictStr = Field("", title="Commit of spaCy version used")
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# fmt: on
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# Config schema
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# We're not setting any defaults here (which is too messy) and are making all
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# fields required, so we can raise validation errors for missing values. To
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# provide a default, we include a separate .cfg file with all values and
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# check that against this schema in the test suite to make sure it's always
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# up to date.
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class ConfigSchemaTraining(BaseModel):
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# fmt: off
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dev_corpus: StrictStr = Field(..., title="Path in the config to the dev data")
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train_corpus: StrictStr = Field(..., title="Path in the config to the training data")
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batcher: Batcher = Field(..., title="Batcher for the training data")
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dropout: StrictFloat = Field(..., title="Dropout rate")
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patience: StrictInt = Field(..., title="How many steps to continue without improvement in evaluation score")
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max_epochs: StrictInt = Field(..., title="Maximum number of epochs to train for")
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max_steps: StrictInt = Field(..., title="Maximum number of update steps to train for")
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eval_frequency: StrictInt = Field(..., title="How often to evaluate during training (steps)")
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seed: Optional[StrictInt] = Field(..., title="Random seed")
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gpu_allocator: Optional[StrictStr] = Field(..., title="Memory allocator when running on GPU")
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accumulate_gradient: StrictInt = Field(..., title="Whether to divide the batch up into substeps")
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score_weights: Dict[StrictStr, Optional[Union[StrictFloat, StrictInt]]] = Field(..., title="Scores to report and their weights for selecting final model")
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optimizer: Optimizer = Field(..., title="The optimizer to use")
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logger: Logger = Field(..., title="The logger to track training progress")
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frozen_components: List[str] = Field(..., title="Pipeline components that shouldn't be updated during training")
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annotating_components: List[str] = Field(..., title="Pipeline components that should set annotations during training")
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before_to_disk: Optional[Callable[["Language"], "Language"]] = Field(..., title="Optional callback to modify nlp object after training, before it's saved to disk")
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# fmt: on
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class Config:
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extra = "forbid"
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arbitrary_types_allowed = True
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class ConfigSchemaNlp(BaseModel):
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# fmt: off
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lang: StrictStr = Field(..., title="The base language to use")
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pipeline: List[StrictStr] = Field(..., title="The pipeline component names in order")
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disabled: List[StrictStr] = Field(..., title="Pipeline components to disable by default")
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tokenizer: Callable = Field(..., title="The tokenizer to use")
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before_creation: Optional[Callable[[Type["Language"]], Type["Language"]]] = Field(..., title="Optional callback to modify Language class before initialization")
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after_creation: Optional[Callable[["Language"], "Language"]] = Field(..., title="Optional callback to modify nlp object after creation and before the pipeline is constructed")
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after_pipeline_creation: Optional[Callable[["Language"], "Language"]] = Field(..., title="Optional callback to modify nlp object after the pipeline is constructed")
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batch_size: Optional[int] = Field(..., title="Default batch size")
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# fmt: on
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class Config:
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extra = "forbid"
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arbitrary_types_allowed = True
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class ConfigSchemaPretrainEmpty(BaseModel):
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class Config:
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extra = "forbid"
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class ConfigSchemaPretrain(BaseModel):
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# fmt: off
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max_epochs: StrictInt = Field(..., title="Maximum number of epochs to train for")
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dropout: StrictFloat = Field(..., title="Dropout rate")
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n_save_every: Optional[StrictInt] = Field(..., title="Saving additional temporary model after n batches within an epoch")
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n_save_epoch: Optional[StrictInt] = Field(..., title="Saving model after every n epoch")
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optimizer: Optimizer = Field(..., title="The optimizer to use")
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corpus: StrictStr = Field(..., title="Path in the config to the training data")
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batcher: Batcher = Field(..., title="Batcher for the training data")
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component: str = Field(..., title="Component to find the layer to pretrain")
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layer: str = Field(..., title="Layer to pretrain. Whole model if empty.")
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objective: Callable[["Vocab", Model], Model] = Field(..., title="A function that creates the pretraining objective.")
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# fmt: on
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class Config:
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extra = "forbid"
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arbitrary_types_allowed = True
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class ConfigSchemaInit(BaseModel):
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# fmt: off
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vocab_data: Optional[StrictStr] = Field(..., title="Path to JSON-formatted vocabulary file")
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lookups: Optional[Lookups] = Field(..., title="Vocabulary lookups, e.g. lexeme normalization")
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vectors: Optional[StrictStr] = Field(..., title="Path to vectors")
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init_tok2vec: Optional[StrictStr] = Field(..., title="Path to pretrained tok2vec weights")
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tokenizer: Dict[StrictStr, Any] = Field(..., help="Arguments to be passed into Tokenizer.initialize")
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components: Dict[StrictStr, Dict[StrictStr, Any]] = Field(..., help="Arguments for TrainablePipe.initialize methods of pipeline components, keyed by component")
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before_init: Optional[Callable[["Language"], "Language"]] = Field(..., title="Optional callback to modify nlp object before initialization")
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after_init: Optional[Callable[["Language"], "Language"]] = Field(..., title="Optional callback to modify nlp object after initialization")
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# fmt: on
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class Config:
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extra = "forbid"
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arbitrary_types_allowed = True
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class ConfigSchema(BaseModel):
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training: ConfigSchemaTraining
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nlp: ConfigSchemaNlp
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pretraining: Union[ConfigSchemaPretrain, ConfigSchemaPretrainEmpty] = {} # type: ignore[assignment]
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components: Dict[str, Dict[str, Any]]
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corpora: Dict[str, Reader]
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initialize: ConfigSchemaInit
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class Config:
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extra = "allow"
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arbitrary_types_allowed = True
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CONFIG_SCHEMAS = {
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"nlp": ConfigSchemaNlp,
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"training": ConfigSchemaTraining,
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"pretraining": ConfigSchemaPretrain,
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"initialize": ConfigSchemaInit,
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}
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# Project config Schema
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class ProjectConfigAssetGitItem(BaseModel):
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# fmt: off
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repo: StrictStr = Field(..., title="URL of Git repo to download from")
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path: StrictStr = Field(..., title="File path or sub-directory to download (used for sparse checkout)")
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branch: StrictStr = Field("master", title="Branch to clone from")
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# fmt: on
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class ProjectConfigAssetURL(BaseModel):
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# fmt: off
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dest: StrictStr = Field(..., title="Destination of downloaded asset")
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url: Optional[StrictStr] = Field(None, title="URL of asset")
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checksum: str = Field(None, title="MD5 hash of file", regex=r"([a-fA-F\d]{32})")
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description: StrictStr = Field("", title="Description of asset")
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# fmt: on
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class ProjectConfigAssetGit(BaseModel):
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# fmt: off
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git: ProjectConfigAssetGitItem = Field(..., title="Git repo information")
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checksum: str = Field(None, title="MD5 hash of file", regex=r"([a-fA-F\d]{32})")
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description: Optional[StrictStr] = Field(None, title="Description of asset")
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# fmt: on
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class ProjectConfigCommand(BaseModel):
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# fmt: off
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name: StrictStr = Field(..., title="Name of command")
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help: Optional[StrictStr] = Field(None, title="Command description")
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script: List[StrictStr] = Field([], title="List of CLI commands to run, in order")
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deps: List[StrictStr] = Field([], title="File dependencies required by this command")
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outputs: List[StrictStr] = Field([], title="Outputs produced by this command")
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outputs_no_cache: List[StrictStr] = Field([], title="Outputs not tracked by DVC (DVC only)")
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no_skip: bool = Field(False, title="Never skip this command, even if nothing changed")
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# fmt: on
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class Config:
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title = "A single named command specified in a project config"
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extra = "forbid"
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class ProjectConfigSchema(BaseModel):
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# fmt: off
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vars: Dict[StrictStr, Any] = Field({}, title="Optional variables to substitute in commands")
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env: Dict[StrictStr, Any] = Field({}, title="Optional variable names to substitute in commands, mapped to environment variable names")
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assets: List[Union[ProjectConfigAssetURL, ProjectConfigAssetGit]] = Field([], title="Data assets")
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workflows: Dict[StrictStr, List[StrictStr]] = Field({}, title="Named workflows, mapped to list of project commands to run in order")
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commands: List[ProjectConfigCommand] = Field([], title="Project command shortucts")
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title: Optional[str] = Field(None, title="Project title")
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spacy_version: Optional[StrictStr] = Field(None, title="spaCy version range that the project is compatible with")
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# fmt: on
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class Config:
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title = "Schema for project configuration file"
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# Recommendations for init config workflows
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class RecommendationTrfItem(BaseModel):
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|
name: str
|
|
size_factor: int
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class RecommendationTrf(BaseModel):
|
|
efficiency: RecommendationTrfItem
|
|
accuracy: RecommendationTrfItem
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class RecommendationSchema(BaseModel):
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word_vectors: Optional[str] = None
|
|
transformer: Optional[RecommendationTrf] = None
|
|
has_letters: bool = True
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