178 lines
6.2 KiB
Python
178 lines
6.2 KiB
Python
import os
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import sys
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import asyncio
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from typing import TypedDict, List, Dict
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from dotenv import load_dotenv
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from langchain_openai import ChatOpenAI
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from langchain_core.messages import HumanMessage
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from langchain.tools import tool
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from deepagents import create_deep_agent
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from deepagents.backends import FilesystemBackend, LocalShellBackend, CompositeBackend
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from langgraph.graph import StateGraph, START, END
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from langchain_core.output_parsers import PydanticOutputParser
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from pydantic import BaseModel, Field
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from tavily import TavilyClient
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# ---------- Load environment variables ----------
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load_dotenv()
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# ---------- LLM ----------
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llm = ChatOpenAI(
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model="openai/gpt-oss-20b:free",
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base_url="https://openrouter.ai/api/v1",
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api_key=os.getenv("OPENAI_API_KEY"),
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temperature=0.0,
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)
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# ---------- State definition ----------
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class CompareState(TypedDict):
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entities: List[str] # 3 имени для сравнения
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criteria: List[str] # 3–5 критериев
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findings: Dict[str, List[str]] # entity -> список заметок по критериям
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final_table: str | None
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verdict: str | None
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# ---------- Pydantic parser for criteria ----------
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class CriteriaOutput(BaseModel):
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criteria: List[str] = Field(..., description="List of comparison criteria")
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criteria_parser = PydanticOutputParser(pydantic_object=CriteriaOutput)
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# ---------- Tavily client ----------
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TAVILY_API_KEY = os.getenv("TAVILY_API_KEY")
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if not TAVILY_API_KEY:
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raise RuntimeError("TAVILY_API_KEY not set in environment")
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client = TavilyClient(api_key=TAVILY_API_KEY)
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# ---------- Graph nodes ----------
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async def plan_criteria(state: CompareState) -> CompareState:
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entities = ", ".join(state["entities"])
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prompt = (
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f"You are a comparison helper. Given the following entities: {entities}.\n"
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"Generate 3-5 concise criteria for comparing these entities.\n"
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"Return a JSON object with a field 'criteria' that is a list of strings."
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)
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result = await llm.ainvoke(prompt)
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parsed = criteria_parser.parse(result.content)
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state["criteria"] = parsed.criteria
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# initialize findings dict
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state["findings"] = {e: [] for e in state["entities"]}
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return state
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async def research_entity(state: CompareState) -> CompareState:
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# Find next unprocessed entity
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for entity in state["entities"]:
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processed = len(state["findings"][entity])
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if processed < len(state["criteria"]):
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criterion = state["criteria"][processed]
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query = f"{entity} {criterion}"
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# Perform Tavily search
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results = client.search(query, max_results=3)
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# Take first result content, truncate to 200 chars
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content = results[0]["content"][:200] if results else "No data found."
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note = f"{criterion}: {content}"
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state["findings"][entity].append(note)
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break
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return state
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async def build_table(state: CompareState) -> CompareState:
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headers = ["Criterion"] + state["entities"]
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table = "| " + " | ".join(headers) + " |\n"
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table += "| " + " | ".join(["---" for _ in headers]) + " |\n"
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for idx, criterion in enumerate(state["criteria"]):
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row = [criterion]
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for entity in state["entities"]:
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notes = state["findings"][entity]
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note = notes[idx] if idx < len(notes) else ""
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row.append(note)
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table += "| " + " | ".join(row) + " |\n"
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state["final_table"] = table
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return state
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async def verdict(state: CompareState) -> CompareState:
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prompt = (
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"You are an expert advisor. Based on the following comparison table,\n"
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"provide a concise verdict of 2–4 sentences recommending which entity\n"
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"is best for each possible use case.\n"
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f"Comparison Table:\n{state['final_table']}"
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)
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result = await llm.ainvoke(prompt)
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state["verdict"] = result.content.strip()
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return state
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# ---------- Graph construction ----------
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def create_compare_graph() -> StateGraph[CompareState]:
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graph = StateGraph(CompareState)
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graph.add_node("plan_criteria", plan_criteria)
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graph.add_node("research_entity", research_entity)
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graph.add_node("build_table", build_table)
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graph.add_node("verdict", verdict)
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graph.set_entry_point("plan_criteria")
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graph.add_edge("plan_criteria", "research_entity")
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def is_done(state: CompareState) -> str:
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return "build_table" if all(
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len(state["findings"][e]) >= len(state["criteria"]) for e in state["entities"]
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) else "research_entity"
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graph.add_conditional_edges("research_entity", is_done)
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graph.add_edge("build_table", "verdict")
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graph.add_edge("verdict", END)
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return graph
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# ---------- DeepAgent tool ----------
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@tool
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def compare_entities(entities: List[str]) -> str:
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"""Compare three entities and return a markdown table with verdict."""
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if len(entities) != 3:
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return "Error: Please provide exactly three entities to compare."
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# Initialize state
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state: CompareState = {
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"entities": entities,
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"criteria": [],
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"findings": {},
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"final_table": None,
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"verdict": None,
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}
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graph = create_compare_graph()
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# Run graph synchronously
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final_state = graph.invoke(state)
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table = final_state["final_table"] or "No table generated."
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verdict = final_state["verdict"] or "No verdict generated."
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return f"{table}\n\nVerdict:\n{verdict}"
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# ---------- DeepAgent setup ----------
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backend = CompositeBackend([
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LocalShellBackend(workspace_dir="./workspace"),
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FilesystemBackend(),
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])
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agent = create_deep_agent(
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model=llm,
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tools=[compare_entities],
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backend=backend,
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system_prompt="You are a helpful comparison assistant. Use the provided tool to compare entities.",
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)
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# ---------- CLI ----------
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async def main():
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if len(sys.argv) >= 4:
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entities = sys.argv[1:4]
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else:
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entities = ["Chroma", "FAISS", "Qdrant"]
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user_msg = f"Compare these entities: {', '.join(entities)}"
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result = await agent.ainvoke(
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{"messages": [HumanMessage(content=user_msg)]},
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{"configurable": {"thread_id": "session-1"}},
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)
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print(result["messages"][-1].content)
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if __name__ == "__main__":
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asyncio.run(main())
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