02_MemoryTool_Architecture.py 9.4 KB

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  1. #!/usr/bin/env python3
  2. # -*- coding: utf-8 -*-
  3. """
  4. 代码示例 02: MemoryTool架构设计
  5. 展示MemoryTool和MemoryManager的分层架构
  6. """
  7. from typing import List, Optional, Dict, Any
  8. from datetime import datetime
  9. from hello_agents.tools import MemoryTool
  10. from hello_agents.memory import MemoryConfig
  11. class MemoryToolArchitectureDemo:
  12. """MemoryTool架构演示类"""
  13. def __init__(self):
  14. self.memory_config = MemoryConfig()
  15. self.memory_types = ["working", "episodic", "semantic", "perceptual"]
  16. def demonstrate_memory_tool_init(self):
  17. """演示MemoryTool初始化过程"""
  18. print("🏗️ MemoryTool架构设计演示")
  19. print("=" * 50)
  20. print("📋 MemoryTool初始化过程:")
  21. print("1. 创建MemoryConfig配置对象")
  22. print("2. 指定启用的记忆类型")
  23. print("3. 初始化MemoryManager管理器")
  24. print("4. 根据配置启用不同记忆模块")
  25. # 演示MemoryTool的初始化
  26. memory_tool = MemoryTool(
  27. user_id="architecture_demo_user",
  28. memory_config=self.memory_config,
  29. memory_types=self.memory_types
  30. )
  31. print(f"\n✅ MemoryTool初始化完成")
  32. print(f"👤 用户ID: {self.user_id}")
  33. print(f"🧠 启用的记忆类型: {memory_tool.memory_types}")
  34. print(f"⚙️ 配置对象: {type(memory_tool.memory_config).__name__}")
  35. return memory_tool
  36. def demonstrate_memory_manager_architecture(self, memory_tool):
  37. """演示MemoryManager的组合模式架构"""
  38. print("\n🔧 MemoryManager架构设计")
  39. print("-" * 40)
  40. print("MemoryManager采用组合模式设计:")
  41. print("- 统一的记忆操作接口")
  42. print("- 独立的记忆类型组件")
  43. print("- 灵活的配置和扩展能力")
  44. # 获取MemoryManager实例
  45. memory_manager = memory_tool.memory_manager
  46. print(f"\n📊 MemoryManager状态:")
  47. print(f"用户ID: {memory_manager.user_id}")
  48. print(f"配置类型: {type(memory_manager.config).__name__}")
  49. print(f"记忆类型数量: {len(memory_manager.memory_types)}")
  50. # 显示各记忆类型的状态
  51. print(f"\n🧠 记忆类型组件:")
  52. for memory_type, memory_instance in memory_manager.memory_types.items():
  53. print(f" • {memory_type}: {type(memory_instance).__name__}")
  54. def demonstrate_memory_types_specialization(self, memory_tool):
  55. """演示四种记忆类型的专业化特点"""
  56. print("\n🎯 四种记忆类型的专业化设计")
  57. print("-" * 40)
  58. memory_types_info = {
  59. "working": {
  60. "name": "工作记忆",
  61. "features": ["容量有限", "访问速度快", "自动清理", "临时存储"],
  62. "storage": "纯内存存储",
  63. "ttl": "60分钟TTL机制"
  64. },
  65. "episodic": {
  66. "name": "情景记忆",
  67. "features": ["事件序列", "时间序列", "上下文丰富", "会话关联"],
  68. "storage": "SQLite + Qdrant混合存储",
  69. "ttl": "持久化存储"
  70. },
  71. "semantic": {
  72. "name": "语义记忆",
  73. "features": ["概念知识", "实体关系", "知识图谱", "语义推理"],
  74. "storage": "Neo4j + Qdrant混合存储",
  75. "ttl": "长期存储"
  76. },
  77. "perceptual": {
  78. "name": "感知记忆",
  79. "features": ["多模态", "跨模态检索", "感知数据", "内容生成"],
  80. "storage": "分模态向量存储",
  81. "ttl": "按重要性管理"
  82. }
  83. }
  84. for memory_type, info in memory_types_info.items():
  85. print(f"\n📚 {info['name']} ({memory_type}):")
  86. print(f" 特点: {', '.join(info['features'])}")
  87. print(f" 存储: {info['storage']}")
  88. print(f" 生命周期: {info['ttl']}")
  89. # 添加示例记忆来演示特点
  90. if memory_type == "working":
  91. memory_tool.execute("add",
  92. content=f"演示{info['name']}的临时存储特性",
  93. memory_type=memory_type,
  94. importance=0.6,
  95. demo_feature="temporary_storage"
  96. )
  97. elif memory_type == "episodic":
  98. memory_tool.execute("add",
  99. content=f"演示{info['name']}的事件记录特性",
  100. memory_type=memory_type,
  101. importance=0.7,
  102. event_type="demonstration",
  103. session_context="architecture_demo"
  104. )
  105. elif memory_type == "semantic":
  106. memory_tool.execute("add",
  107. content=f"{info['name']}用于存储概念性知识和实体关系",
  108. memory_type=memory_type,
  109. importance=0.8,
  110. concept="memory_architecture",
  111. domain="cognitive_computing"
  112. )
  113. elif memory_type == "perceptual":
  114. memory_tool.execute("add",
  115. content=f"演示{info['name']}的多模态数据处理",
  116. memory_type=memory_type,
  117. importance=0.6,
  118. modality="text",
  119. data_type="demonstration"
  120. )
  121. def demonstrate_unified_interface(self, memory_tool):
  122. """演示统一接口的设计优势"""
  123. print("\n🔗 统一接口设计优势")
  124. print("-" * 40)
  125. print("统一的execute方法提供:")
  126. print("• 一致的调用方式")
  127. print("• 灵活的参数传递")
  128. print("• 统一的错误处理")
  129. print("• 简化的用户体验")
  130. # 演示统一接口的使用
  131. operations = [
  132. ("search", {"query": "演示", "limit": 2}),
  133. ("summary", {"limit": 3}),
  134. ("stats", {}),
  135. ]
  136. print(f"\n🔧 统一接口操作演示:")
  137. for operation, params in operations:
  138. print(f"\n操作: {operation}")
  139. print(f"参数: {params}")
  140. result = memory_tool.execute(operation, **params)
  141. print(f"结果: {result[:100]}..." if len(str(result)) > 100 else f"结果: {result}")
  142. def demonstrate_extensibility(self):
  143. """演示系统的扩展性设计"""
  144. print("\n🚀 系统扩展性设计")
  145. print("-" * 40)
  146. print("扩展性特点:")
  147. print("• 插件化的记忆类型")
  148. print("• 可配置的存储后端")
  149. print("• 灵活的记忆策略")
  150. print("• 模块化的组件设计")
  151. # 演示自定义配置
  152. custom_config = MemoryConfig()
  153. custom_config.working_memory_capacity = 100
  154. custom_config.working_memory_ttl = 120
  155. print(f"\n⚙️ 自定义配置示例:")
  156. print(f"工作记忆容量: {custom_config.working_memory_capacity}")
  157. print(f"工作记忆TTL: {custom_config.working_memory_ttl}分钟")
  158. # 演示选择性启用记忆类型
  159. selective_memory_tool = MemoryTool(
  160. user_id="selective_user",
  161. memory_config=custom_config,
  162. memory_types=["working", "semantic"] # 只启用部分类型
  163. )
  164. print(f"\n🎯 选择性启用示例:")
  165. print(f"启用的记忆类型: {selective_memory_tool.memory_types}")
  166. print("✅ 系统支持根据需求灵活配置")
  167. def main():
  168. """主函数"""
  169. print("🏗️ MemoryTool架构设计完整演示")
  170. print("展示记忆系统的分层架构和设计模式")
  171. print("=" * 60)
  172. try:
  173. demo = MemoryToolArchitectureDemo()
  174. # 1. MemoryTool初始化演示
  175. memory_tool = demo.demonstrate_memory_tool_init()
  176. # 2. MemoryManager架构演示
  177. demo.demonstrate_memory_manager_architecture(memory_tool)
  178. # 3. 记忆类型专业化演示
  179. demo.demonstrate_memory_types_specialization(memory_tool)
  180. # 4. 统一接口演示
  181. demo.demonstrate_unified_interface(memory_tool)
  182. # 5. 扩展性演示
  183. demo.demonstrate_extensibility()
  184. print("\n" + "=" * 60)
  185. print("🎉 MemoryTool架构演示完成!")
  186. print("=" * 60)
  187. print("\n✨ 架构设计亮点:")
  188. print("1. 🏗️ 分层架构 - 关注点分离,职责清晰")
  189. print("2. 🔧 组合模式 - 灵活组合,独立管理")
  190. print("3. 🎯 专业化设计 - 各记忆类型特点鲜明")
  191. print("4. 🔗 统一接口 - 简化使用,一致体验")
  192. print("5. 🚀 高扩展性 - 插件化设计,灵活配置")
  193. print("\n🎯 设计原则:")
  194. print("• 单一职责原则 - 每个组件专注特定功能")
  195. print("• 开闭原则 - 对扩展开放,对修改封闭")
  196. print("• 依赖倒置原则 - 依赖抽象,不依赖具体")
  197. print("• 组合优于继承 - 灵活组合,避免复杂继承")
  198. except Exception as e:
  199. print(f"\n❌ 演示过程中发生错误: {e}")
  200. import traceback
  201. traceback.print_exc()
  202. if __name__ == "__main__":
  203. main()