get ability estimation from source
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23
app/lib/irt/models/rasch.py
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23
app/lib/irt/models/rasch.py
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@ -0,0 +1,23 @@
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import numpy as np
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from girth import ability_mle
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class Rasch:
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def __init__(self, model_params, kwargs):
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self.model_params = model_params
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self.b_param = kwargs['b_param']
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self.e = 2.71828
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self.theta = kwargs['theta']
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def result(self):
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return 0.0
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@classmethod
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def ability_estimate(self, items) -> float:
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# we'll likely have to change this to something more robust
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# when we get into more complex response types
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responses = np.array([[int(item.response)] for item in items])
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difficulty = np.array([item.b_param for item in items])
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discrimination = np.linspace(1, 1, len(difficulty))
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return ability_mle(responses, difficulty, discrimination)
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@ -16,3 +16,7 @@ class ThreeParameterLogistic:
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c = self.model_params.c_param
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c = self.model_params.c_param
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return c + (1 - c) * (1 / (1 + self.e**(-a *
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return c + (1 - c) * (1 / (1 + self.e**(-a *
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(self.theta - self.b_param))))
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(self.theta - self.b_param))))
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@classmethod
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def ability_estimate(self) -> float:
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return 0.0
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23
app/models/ability_estimation.py
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app/models/ability_estimation.py
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from pydantic import BaseModel
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from typing import ClassVar, List
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from models.item import Item
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from lib.irt.models.three_parameter_logistic import ThreeParameterLogistic
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from lib.irt.models.rasch import Rasch
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class AbilityEstimation(BaseModel):
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exam_id: int
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items: List[Item] = []
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irt_model: str
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min_theta: float = -3.0
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max_theta: float = 3.0
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IRT_MODELS: ClassVar[dict] = {
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'rasch': Rasch,
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# not supported
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# '3pl': ThreeParameterLogistic
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}
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def calculate(self) -> float:
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model = self.IRT_MODELS[self.irt_model]
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return model.ability_estimate(self.items)
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@ -11,8 +11,9 @@ class Item(BaseModel):
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position: Optional[int] = None
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position: Optional[int] = None
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passage_id: Optional[int] = None
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passage_id: Optional[int] = None
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workflow_state: Optional[str] = None
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workflow_state: Optional[str] = None
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attributes: List[Attribute]
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attributes: List[Attribute] = None
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b_param: float = 0.00
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b_param: float = 0.00
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response: Optional[str] = None
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def iif(self, solver_run, theta):
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def iif(self, solver_run, theta):
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return ItemInformationFunction(solver_run.irt_model).calculate(b_param=self.b_param, theta=theta)
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return ItemInformationFunction(solver_run.irt_model).calculate(b_param=self.b_param, theta=theta)
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import logging
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from services.base import Base
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from services.base import Base
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from models.ability_estimation import AbilityEstimation
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class AbilityEstimationService(Base):
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class AbilityEstimationService(Base):
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ACTION = 'abilityEstimation'
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ACTION = 'abilityEstimation'
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def process(self):
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def process(self):
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logging.info('Ability Estimation Service to be implemented...')
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attributes = self.service_attributes()
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ability_estimation = AbilityEstimation.parse_obj(attributes)
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results = ability_estimation.calculate()
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return None
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@ -1,5 +1,25 @@
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import logging, json, re
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from helpers import aws_helper, tar_helper
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class Base:
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class Base:
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def __init__(self, source, ingest_type='message'):
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def __init__(self, source, ingest_type='message'):
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self.ingest_type = ingest_type
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self.ingest_type = ingest_type
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self.source = source
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self.source = source
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def service_attributes(self):
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logging.info('Retrieving attributes from message...')
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# get s3 object
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self.key = aws_helper.get_key_from_message(self.source)
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s3_object = aws_helper.get_object(
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self.key, aws_helper.get_bucket_from_message(self.source))
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# convert to tar
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self.tar = tar_helper.raw_to_tar(s3_object)
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# get attributes file and convert to dict
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action_snake = re.sub(r'(?<!^)(?=[A-Z])', '_', self.ACTION).lower()
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attributes = json.loads(
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tar_helper.extract_file_from_tar(
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self.tar, f'{action_snake}_attributes.json').read())
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