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"""Overview:
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This code implements the evaluation of agents on the GPQA Benchmark with Open Book setting.
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- The benchmark consists of 448 high-quality and extremely difficult multiple-choice questions in the domains of biology, physics, and chemistry. The questions are intentionally designed to be "Google-proof," meaning that even highly skilled non-expert validators achieve only 34% accuracy despite unrestricted access to the web.
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- Even experts in the corresponding domains achieve only 65% accuracy.
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- State-of-the-art AI systems achieve only 39% accuracy on this challenging dataset.
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Accurate solving of above graduate level questions would require both tool use (e.g., python for calculations) and web-search for finding related facts as information required for the questions might not be part of the LLM knowledge / training data.
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Further references:
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- https://arxiv.org/pdf/2311.12022
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- https://paperswithcode.com/dataset/gpqa
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- https://github.com/idavidrein/gpqa
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TODOs:
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- Add evaluation on other Agent classes
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- Batch inference and evaluation of agents on the GPQA Benchmark.
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"""
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import asyncio
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import os
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import random
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import re
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from typing import Callable
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import pandas as pd
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from datasets import load_dataset
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from evaluation.utils.shared import (
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EvalMetadata,
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EvalOutput,
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compatibility_for_eval_history_pairs,
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make_metadata,
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prepare_dataset,
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reset_logger_for_multiprocessing,
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run_evaluation,
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)
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from openhands.controller.state.state import State
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from openhands.core.config import (
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AppConfig,
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SandboxConfig,
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get_llm_config_arg,
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get_parser,
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)
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from openhands.core.logger import openhands_logger as logger
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from openhands.core.main import create_runtime, run_controller
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from openhands.events.action import (
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Action,
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AgentFinishAction,
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MessageAction,
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)
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from openhands.events.observation import Observation
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from openhands.utils.async_utils import call_async_from_sync
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ACTION_FORMAT = """
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<<FINAL_ANSWER||
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<insert correct answer here, must be one of A, B, C, D> (Please dont use any additional characters. Just the letter of the correct answer (A/B/C/D).)
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||FINAL_ANSWER>>
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""".strip()
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def get_config(
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metadata: EvalMetadata,
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) -> AppConfig:
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config = AppConfig(
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default_agent=metadata.agent_class,
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run_as_openhands=False,
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runtime='docker',
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max_iterations=metadata.max_iterations,
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sandbox=SandboxConfig(
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base_container_image='python:3.12-bookworm',
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enable_auto_lint=True,
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use_host_network=False,
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),
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workspace_base=None,
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workspace_mount_path=None,
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)
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config.set_llm_config(metadata.llm_config)
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agent_config = config.get_agent_config(metadata.agent_class)
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agent_config.enable_prompt_extensions = False
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return config
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def gpqa_codeact_user_response(
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state: State,
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encapsulate_solution: bool = False,
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try_parse: Callable[[Action], str] | None = None,
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) -> str:
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msg = (
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'Please continue working on the task on whatever approach you think is suitable.\n'
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'Feel free to use all tools for calculations and solving the problem, and web-search for finding relevant facts during the process if needed\n'
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'If you have finished reporting the answer in the expected format, (and only once that is done), please use the "finish" tool to finish the interaction.\n'
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'Again you are being told a million times to first report the answer in the requested format (see again below for reference) before exiting. DO NOT EXIT WITHOUT REPORTING THE ANSWER FIRST.\n'
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'That is, when you have decided on the answer report in the following format:\n'
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f'{ACTION_FORMAT}\n'
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'IMPORTANT: YOU SHOULD NEVER ASK FOR HUMAN HELP TO SOLVE THIS TASK.\n'
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)
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return msg
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AGENT_CLS_TO_FAKE_USER_RESPONSE_FN = {'CodeActAgent': gpqa_codeact_user_response}
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AGENT_CLS_TO_INST_SUFFIX = {
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'CodeActAgent': '\n\n SUPER IMPORTANT: When you think you have solved the question, first report it back to the user in the requested format. Only once that is done, in the next turn, please finish the interaction using the "finish" tool.\n'
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}
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def parse_final_answer(final_answer: str | None) -> str | None:
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"""Parse the final answer from the final message generated by the agent
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to extract the final answer. The final answer is usually enclosed in the format:
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<<FINAL_ANSWER||
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<insert correct answer here>
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||FINAL_ANSWER>>
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"""
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pattern = re.compile(r'<<FINAL_ANSWER\|\|(.*?)\|\|FINAL_ANSWER>>', re.DOTALL)
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match = pattern.search(final_answer)
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answer = match.group(1).strip()
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answer = answer.upper()
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for letter in ['A', 'B', 'C', 'D']:
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if letter in answer:
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return letter
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def compare_answers(model_output: str | None, ground_truth: str):
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"""Compare the predicted answer with the ground truth answer"""
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try:
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predicted_answer = parse_final_answer(model_output)
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except Exception as e:
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logger.error(f'An error occurred: {e}\n defaulting to random guess ...')
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predicted_answer = random.choice(['A', 'B', 'C', 'D'])
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logger.info('#############################################')
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logger.info(f'Predicted answer: {predicted_answer}')
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logger.info(f'Ground truth answer: {ground_truth}')
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logger.info('#############################################')
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return predicted_answer == ground_truth
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def convert_instance_dict(instance):
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"""Used for preprocessing the hf dataset into a format that can be used by the agent.
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Reads and extracts relevant information from the dataset instance.
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"""
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out_instance_dict = {}
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out_instance_dict['question'] = instance['Question']
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correct_answer = instance['Correct Answer']
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out_instance_dict['choices'] = [
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correct_answer,
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instance['Incorrect Answer 1'],
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instance['Incorrect Answer 2'],
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instance['Incorrect Answer 3'],
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]
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random.shuffle(out_instance_dict['choices'])
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correct_index = out_instance_dict['choices'].index(correct_answer)
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correct_letter = chr(
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65 + correct_index
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)
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out_instance_dict['correct_solution'] = correct_letter
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return out_instance_dict
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def process_instance(
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instance: pd.Series,
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metadata: EvalMetadata,
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reset_logger: bool = True,
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):
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config = get_config(metadata)
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if reset_logger:
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log_dir = os.path.join(metadata.eval_output_dir, 'infer_logs')
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reset_logger_for_multiprocessing(logger, instance['instance_id'], log_dir)
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else:
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logger.info(f'Starting evaluation for instance {instance["instance_id"]}.')
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instruction = f"""
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What is the correct answer to this question:\n
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{instance['question']}\n
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Choices:\n
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(A) {instance['choices'][0]}\n
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(B) {instance['choices'][1]}\n
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(C) {instance['choices'][2]}\n
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(D) {instance['choices'][3]}\n
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\n\n
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MOST IMPORTANT: Format your response as follows:
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{ACTION_FORMAT}
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Additional Instructions:
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- Do not try to solve the question in a single step. Break it down into smaller steps.
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- You should ONLY interact with the environment provided to you AND NEVER ASK FOR HUMAN HELP.
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- SUPER IMPORTANT: When you have reported the answer to the user in the requested format, (and only once that is done) in the next turn, please finish the interaction using the "finish" tool.
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- Again you are being told a million times to first report the answer in the requested format (see again below for reference) before exiting. DO NOT EXIT WITHOUT REPORTING THE ANSWER FIRST.
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That is, when you have decided on the answer report in the following format:
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{ACTION_FORMAT}
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Again do not quit without reporting the answer first.
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Ok now its time to start solving the question. Good luck!
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"""
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runtime = create_runtime(config)
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call_async_from_sync(runtime.connect)
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state: State | None = asyncio.run(
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run_controller(
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config=config,
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initial_user_action=MessageAction(content=instruction),
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runtime=runtime,
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fake_user_response_fn=AGENT_CLS_TO_FAKE_USER_RESPONSE_FN.get(
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metadata.agent_class
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),
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)
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)
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assert state is not None, 'State should not be None.'
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question_choices = {
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'A': instance['choices'][0],
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'B': instance['choices'][1],
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'C': instance['choices'][2],
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'D': instance['choices'][3],
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}
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found_answers = {
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'A': False,
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'B': False,
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'C': False,
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'D': False,
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}
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for event in reversed(state.history):
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if (
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isinstance(event, AgentFinishAction)
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and event.source != 'user'
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and '<<FINAL_ANSWER||' in event.thought
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):
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final_message = event.thought
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break
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elif (
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isinstance(event, MessageAction)
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and event.source != 'user'
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and '<<FINAL_ANSWER||' in event.content
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):
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final_message = event.content
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break
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elif isinstance(event, Observation):
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for option, option_text in question_choices.items():
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if option_text in event.content:
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found_answers[option] = True
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else:
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final_message = None
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found_options = [option for option, found in found_answers.items() if found]
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logger.info('#############################################')
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logger.info(f'Final message generated by the agent: {final_message}')
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logger.info('#############################################')
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test_result = compare_answers(final_message, instance.correct_solution)
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if final_message is None and len(found_options) > 0:
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_selected = random.choice(found_options)
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test_result = _selected == instance.correct_solution
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logger.info('#############################################')
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logger.info('Agent did not report the answer in the correct format.')
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logger.info(f'Found options: {found_options}')
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logger.info(f'Selected option: {_selected}')
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logger.info('#############################################')
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logger.info('#############################################')
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logger.info(f'Test result: {test_result}')
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logger.info('#############################################')
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if state is None:
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raise ValueError('State should not be None.')
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metrics = state.metrics.get() if state.metrics else None
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output = EvalOutput(
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instance_id=str(instance.instance_id),
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instruction=instruction,
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metadata=metadata,
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history=compatibility_for_eval_history_pairs(state.history),
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metrics=metrics,
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error=state.last_error if state and state.last_error else None,
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test_result={
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'result': test_result,
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'found_answers': found_answers,
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'last_message': final_message,
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},
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)
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return output
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if __name__ == '__main__':
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parser = get_parser()
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parser.add_argument(
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'--data-split',
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type=str,
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choices=['gpqa_main', 'gpqa_diamond', 'gpqa_experts', 'gpqa_extended'],
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default='gpqa_diamond',
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help='data split to evaluate, eg. gpqa_diamond',
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)
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args, _ = parser.parse_known_args()
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llm_config = None
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if args.llm_config:
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llm_config = get_llm_config_arg(args.llm_config)
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llm_config.modify_params = False
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if llm_config is None:
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raise ValueError(f'Could not find LLM config: --llm_config {args.llm_config}')
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dataset = load_dataset('Idavidrein/gpqa', args.data_split)
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gpqa_dataset = dataset['train']
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gpqa_dataset = gpqa_dataset.map(convert_instance_dict)
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gpqa_dataset = gpqa_dataset.to_pandas()
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gpqa_dataset['instance_id'] = gpqa_dataset.index
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if args.agent_cls != 'CodeActAgent':
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raise ValueError(
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f'Agent class {args.agent_cls} not supported for GPQA evaluation.'
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)
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metadata = make_metadata(
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llm_config=llm_config,
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dataset_name=args.data_split,
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agent_class=args.agent_cls,
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max_iterations=args.max_iterations,
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eval_note=args.eval_note,
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eval_output_dir=args.eval_output_dir,
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data_split=args.data_split,
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)
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output_file = os.path.join(metadata.eval_output_dir, 'output.jsonl')
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prepared_dataset = prepare_dataset(gpqa_dataset, output_file, args.eval_n_limit)
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run_evaluation(
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dataset=prepared_dataset,
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metadata=metadata,
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output_file=output_file,
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num_workers=args.eval_num_workers,
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process_instance_func=process_instance,
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)
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