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Prompt Engineering & LLM Optimization for Developers · Leçon

Créer des agents LLM simples

Créez des agents autonomes de base capables de raisonner, de planifier et d’exécuter des tâches en plusieurs étapes à l’aide de LLM et d’outils externes.

Créer des agents LLM simples est une leçon Prompt Engineering & LLM Optimization for Developers gratuite sur CoddyKit. Ceci est la leçon 3 sur 4. Tu peux lire la leçon complète ci-dessous gratuitement — puis la pratiquer en direct dans le navigateur avec un éditeur de code intégré et un tuteur IA 24/7. Elle fait partie du parcours d'apprentissage Prompt Engineering & LLM Optimization for Developers, et ta progression se synchronise sur le web et l'application CoddyKit. Le cours Prompt Engineering & LLM Optimization for Developers comprend 4 leçons au total.

Certaines parties de cette leçon n'ont pas encore été traduites et s'affichent en anglais.

What are LLM Agents?

Welcome! In this lesson, we'll dive into LLM agents. An agent is an LLM that can make decisions, take actions, and achieve goals by interacting with its environment.

Think of it as an LLM with a brain and hands. The "brain" is the LLM for reasoning, and the "hands" are tools it can use to perform tasks.

Agent's Core Components

Every LLM agent has key parts working together to enable its autonomous behavior:

  • LLM (The Brain): The core language model for reasoning, understanding, and decision-making.
  • Memory (State): Where the agent stores past interactions, observations, or thoughts to maintain context.
  • Tools (Actions): External functions or APIs the agent can call to perform specific tasks.
  • Planner (Reasoning): The LLM's ability to break down a complex goal into smaller, manageable steps.

How Agents Work: The Loop

Agents operate in a continuous cycle, often called the Agentic Loop. This loop allows them to adapt and progress towards a goal:

  1. Observe: The agent receives new input (e.g., user query) or checks its environment.
  2. Think: The LLM processes observations, plans next steps, decides if a tool is needed, and what to do.
  3. Act: The agent executes a chosen tool (if applicable) or generates a direct response.

This loop repeats until the goal is achieved or no further action is required.

Tools: Extending Capabilities

You've learned about Function Calling and Tool Use. For an agent, tools are absolutely crucial!

They allow the LLM to go beyond just generating text. Tools give agents the ability to *do* things in the real world, such as:

  • Search the web for up-to-date information.
  • Access databases or read files.
  • Perform calculations or data analysis.
  • Send emails, interact with APIs, or control other software.

Agent Decides to Use a Tool

Imagine an agent needs to find the current weather. It doesn't know this directly, but it's aware it has a 'get_weather' tool.

Here's a simplified view of its internal thought process, demonstrating the 'Think' step leading to an 'Act' step:

User input: "What's the weather in London?"

Agent thought process:
1.  Observe: User wants current weather info.
2.  Think: My knowledge is limited to my training data. I have a 'get_weather' tool that can provide this.
    I need to use 'get_weather' with the location "London".
3.  Act: Call get_weather("London").
    (Tool executes and returns result: "Sunny, 20°C")
4.  Think: I have the weather data. Now, I should present it clearly to the user.
5.  Act: "The weather in London is Sunny, 20°C."

Putting it Together: A Simple Agent

To build a simple agent, you primarily instruct the LLM to:

  • Understand its Role: Define its persona (e.g., "You are a helpful assistant").
  • Know Available Tools: Provide a clear list of tools it can use, including their names, descriptions, and how to call them.
  • Decide & Act: Empower it to decide when and how to use those tools based on the user's request.

The LLM's inherent reasoning capability drives the entire process, using tools when its internal knowledge isn't sufficient.

Prompting Your Agent

The prompt is absolutely key to an agent's behavior. It acts as the agent's initial programming. You need to clearly define:

  • Its Persona: "You are a friendly travel agent helping users plan trips."
  • Its Goal: "Your main goal is to assist users in finding flights, hotels, and local attractions."
  • Available Tools: Describe each tool, its purpose, and the exact syntax for calling it (e.g., search_flights(destination, date)).
  • Decision Process: "Always think step-by-step before deciding on an action or generating a response."

This comprehensive prompt guides the LLM to act as an effective agent.

Agent Scenario: Trip Planner

Let's consider a simple "Trip Planner" agent. This agent has access to tools like get_flights(destination, date), get_hotels(city, dates), and get_attractions(city).

User: "Plan a weekend trip to Paris next month."

The agent would follow its loop:

  1. Think: The user wants a trip plan. I need flights, hotels, and attractions for Paris.
  2. Act (Tool): Call get_flights("Paris", "next month").
  3. Act (Tool): Call get_hotels("Paris", "next month").
  4. Act (Tool): Call get_attractions("Paris").
  5. Think & Act (Response): Combine all results into a coherent trip plan for the user.

Simple Agent Challenges

While powerful, simple agents, especially with minimal prompting, have limitations:

  • Hallucinations: They might invent tool calls, parameters, or facts.
  • Poor Planning: Can struggle with highly complex, multi-step reasoning or recovery from errors.
  • Cost & Latency: Each "think" and "act" step typically involves an LLM API call, increasing cost and response time.
  • Prompt Sensitivity: Small changes in instructions can sometimes drastically alter agent behavior.

These are common challenges that more advanced agentic patterns and frameworks aim to address.

Agent Components Check

An LLM agent combines several elements to achieve its goals. Which of the following are essential components of an LLM agent?

Recap: Building Simple Agents

Great job! You've learned the fundamentals of building simple LLM agents.

  • Agents are LLMs that can reason, plan, and act autonomously.
  • They are composed of an LLM, memory, and tools.
  • Agents operate in a continuous Observe-Think-Act loop.
  • Effective prompting is crucial for defining an agent's persona, goals, and available tools.

While powerful, simple agents have limitations. In future lessons, we'll explore more advanced agentic patterns and frameworks to build even more capable applications.

Questions Fréquemment Posées

La leçon « Créer des agents LLM simples » est-elle gratuite ?

Oui — le texte complet de « Créer des agents LLM simples » est gratuit à lire ici sur le web. Pour la pratiquer de manière interactive (un éditeur de code intégré et un tuteur IA 24/7) et déverrouiller le reste du cours Prompt Engineering & LLM Optimization for Developers, passe à CoddyKit PRO. Le cours Prompt Engineering & LLM Optimization for Developers comprend 4 leçons au total.

Qu'est-ce que j'apprendrai dans « Créer des agents LLM simples » ?

Créez des agents autonomes de base capables de raisonner, de planifier et d’exécuter des tâches en plusieurs étapes à l’aide de LLM et d’outils externes. Tu pratiques Prompt Engineering & LLM Optimization for Developers avec du code pratique que tu exécutes directement dans le navigateur, et un tuteur IA 24/7 répond à tes questions au fur et à mesure que tu avances dans la leçon.

Dois-je avoir de l'expérience pour commencer Prompt Engineering & LLM Optimization for Developers ?

Aucune expérience préalable n'est requise. Prompt Engineering & LLM Optimization for Developers sur CoddyKit est structuré pour les débutants jusqu'aux apprenants avancés, donc tu peux commencer ici ou depuis le début et avancer à ton rythme. Ceci est la leçon 3 sur 4.

Combien de temps prend la leçon « Créer des agents LLM simples » ?

La plupart des leçons CoddyKit prennent environ 5–10 minutes. Chacune est courte et interactive, tu progresses régulièrement et tu repiques exactement où tu t'es arrêté sur le web et l'app.

Peux-tu écrire et exécuter du code dans cette leçon Prompt Engineering & LLM Optimization for Developers ?

Oui. Chaque leçon Prompt Engineering & LLM Optimization for Developers inclut un éditeur de code intégré, tu écris et exécutes du vrai code directement dans ton navigateur et tu reçois des retours IA instantanés — aucune configuration locale requise.

Toutes les leçons de ce cours

  1. Génération augmentée par récupération (RAG)
  2. Appel de fonctions et utilisation d’outils
  3. Créer des agents LLM simples
  4. Diffuser les réponses des LLM aux utilisateurs
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