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9b5b26a c19d193 6aae614 8fe992b 9b5b26a 5df72d6 9b5b26a 508e380 9b5b26a 508e380 9b5b26a 508e380 9b5b26a 8c01ffb 6aae614 ae7a494 e121372 bf6d34c 29ec968 fe328e0 13d500a 8c01ffb 9b5b26a 8c01ffb 861422e 9b5b26a 8c01ffb 8fe992b 508e380 8c01ffb 861422e 8fe992b 9b5b26a 8c01ffb | 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 | from smolagents import CodeAgent,DuckDuckGoSearchTool, HfApiModel,load_tool,tool
import datetime
import requests
import pytz
import yaml
from tools.final_answer import FinalAnswerTool
from Gradio_UI import GradioUI
# Below is an example of a tool that does nothing. Amaze us with your creativity !
@tool
def calculate_investment_return(
initial_capital: float,
final_capital: float,
years: float
) -> str:
"""Calculates the total return and annualized return of an investment.
Args:
initial_capital: The initial amount of money invested.
final_capital: The final value of the investment.
years: The number of years the investment was held.
"""
if initial_capital <= 0:
return "Error: initial_capital must be greater than zero."
if final_capital < 0:
return "Error: final_capital cannot be negative."
if years <= 0:
return "Error: years must be greater than zero."
total_return = (final_capital / initial_capital) - 1
annualized_return = (final_capital / initial_capital) ** (1 / years) - 1
return (
f"Total return: {total_return:.2%}\n"
f"Annualized return (CAGR): {annualized_return:.2%}"
)
@tool
def calculate_sharpe_ratio(
mean_return: float,
risk_free_rate: float,
volatility: float
) -> str:
"""Calculates the annualized Sharpe ratio of an investment strategy.
Args:
mean_return: The annualized mean return of the strategy as a decimal.
risk_free_rate: The annualized risk-free rate as a decimal.
volatility: The annualized standard deviation of returns as a decimal.
"""
if volatility <= 0:
return "Error: volatility must be greater than zero."
sharpe_ratio = (mean_return - risk_free_rate) / volatility
return f"Sharpe ratio: {sharpe_ratio:.3f}"
@tool
def get_current_time_in_timezone(timezone: str) -> str:
"""A tool that fetches the current local time in a specified timezone.
Args:
timezone: A string representing a valid timezone (e.g., 'America/New_York').
"""
try:
# Create timezone object
tz = pytz.timezone(timezone)
# Get current time in that timezone
local_time = datetime.datetime.now(tz).strftime("%Y-%m-%d %H:%M:%S")
return f"The current local time in {timezone} is: {local_time}"
except Exception as e:
return f"Error fetching time for timezone '{timezone}': {str(e)}"
final_answer = FinalAnswerTool()
# If the agent does not answer, the model is overloaded, please use another model or the following Hugging Face Endpoint that also contains qwen2.5 coder:
# model_id='https://pflgm2locj2t89co.us-east-1.aws.endpoints.huggingface.cloud'
model = HfApiModel(
max_tokens=2096,
temperature=0.5,
model_id='Qwen/Qwen2.5-Coder-32B-Instruct',# it is possible that this model may be overloaded
custom_role_conversions=None,
)
# Import tool from Hub
image_generation_tool = load_tool("agents-course/text-to-image", trust_remote_code=True)
with open("prompts.yaml", 'r') as stream:
prompt_templates = yaml.safe_load(stream)
agent = CodeAgent(
model=model,
tools=[final_answer,calculate_investment_return,calculate_sharpe_ratio], ## add your tools here (don't remove final answer)
max_steps=6,
verbosity_level=1,
grammar=None,
planning_interval=None,
name=None,
description=None,
prompt_templates=prompt_templates
)
GradioUI(agent).launch() |