390 lines
12 KiB
Markdown
390 lines
12 KiB
Markdown
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# 架构设计
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## 项目概述
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CamTalk 是一款**多模态实时 AI 视觉对话助手**。用户通过摄像头和麦克风与 AI 交互,AI 理解视觉场景和语音输入后,以文字和语音形式给出自然回应。
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核心挑战在于三个维度之间的张力:
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| 维度 | 关键问题 |
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|------|---------|
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| 视觉理解 | 如何准确理解摄像头画面中的人物、物体、场景? |
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| 语音交互 | 如何让对话像真人交流一样自然、低延迟? |
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| 成本控制 | 实时视频流 + LLM 推理,如何避免账单爆炸? |
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## 系统架构
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三层架构:**前端做轻量预处理,后端做智能编排,云端 AI 服务按需调用**。
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```mermaid
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graph TB
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subgraph Browser["浏览器客户端"]
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UI["UI 渲染层<br/>React 18 + TypeScript"]
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Edge["边缘预处理层<br/>VAD / 关键帧检测"]
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Media["媒体采集层<br/>Camera / Microphone"]
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end
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subgraph Gateway["Go 网关"]
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WS["WebSocket Handler<br/>连接管理 / 消息分发"]
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Session["Session Manager<br/>会话状态 / 对话历史"]
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Orch["AI Orchestrator<br/>STT→LLM→TTS 流式并行"]
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Auth["Auth 模块<br/>JWT / bcrypt"]
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REST["REST API<br/>健康检查 / 对话管理"]
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Store["Store 层<br/>Repository 接口"]
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end
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subgraph AI["云端 AI 服务"]
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STT["STT<br/>Deepgram / MiMo ASR"]
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LLM["LLM<br/>GPT-4o / 通义千问"]
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TTS["TTS<br/>OpenAI TTS / MiMo TTS"]
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end
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subgraph Storage["存储层"]
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Mem["Memory<br/>进程内缓存"]
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Redis["Redis<br/>会话状态"]
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PG["PostgreSQL<br/>持久化存储"]
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end
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Media --> Edge
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Edge -->|"query (image+audio)"| WS
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UI <-->|"WebSocket"| WS
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WS --> Session
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WS --> Orch
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Orch --> STT
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Orch --> LLM
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Orch --> TTS
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Session --> Store
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Store --> Mem
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Store --> Redis
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Store --> PG
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REST --> Session
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WS --> Auth
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```
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> 为什么单独加一层 Go 网关,而不是让前端直连 AI API?1)API Key 安全性;2)统一的速率限制和成本管控;3)多模型路由逻辑集中在一处便于维护。
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## 核心交互流程
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一次完整的"用户提问 → AI 回答"流程:
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```mermaid
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sequenceDiagram
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participant B as 浏览器
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participant G as Go 网关
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participant S as STT
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participant L as LLM
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participant T as TTS
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B->>B: VAD 检测到语音结束
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B->>G: query {image, audio}
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G->>S: 音频流
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S-->>G: 流式文本
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G-->>B: stt_result {text}
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G->>L: [图像 + 文本 + 上下文]
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loop LLM 流式输出
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L-->>G: token delta
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G-->>B: llm_chunk {delta}
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end
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G-->>B: llm_done {full_text, tokens}
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par LLM 输出的同时
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G->>G: 句子切分器检测到完整句子
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G->>T: 句子文本
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T-->>G: 音频 chunk
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G-->>B: tts_audio {audio}
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end
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G-->>B: tts_audio {final: true}
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```
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**关键优化**:LLM 文本流和 TTS 音频流**并行推送**——客户端先逐 token 展示文字,同时 TTS 逐句子合成并推送音频,用户感知延迟大幅降低。
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## 技术栈
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### 前端
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| 技术 | 选型 | 选择理由 |
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|------|------|---------|
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| 框架 | React 18 + TypeScript | 组件化开发,类型安全,生态成熟 |
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| 构建 | Vite | 开发热更新快,构建产物小 |
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| 实时通信 | WebSocket(原生 API) + 自封装连接管理 | 浏览器原生支持,封装心跳/重连/消息分发 |
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| 语音检测 | @ricky0123/vad-web | 基于 WebRTC VAD,纯前端零延迟 |
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| 媒体采集 | MediaDevices API | 浏览器原生摄像头/麦克风访问 |
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### 后端
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| 技术 | 选型 | 选择理由 |
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|------|------|---------|
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| 语言 | Go | 高并发 goroutine 模型,适合长连接管理 |
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| HTTP 框架 | Gin | 高性能 HTTP 路由,中间件生态成熟 |
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| WebSocket | gorilla/websocket | Go 生态最成熟的 WebSocket 库 |
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| 会话存储 | Memory(默认) / Redis | 进程内存零依赖,Redis 支持多实例部署 |
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| 持久化存储 | PostgreSQL | 对话历史、用户数据、会话元数据 |
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| 配置管理 | Viper + godotenv | 支持 YAML + .env + 环境变量覆盖 |
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| 日志 | Zap | 高性能结构化日志 |
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### AI 服务
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| 能力 | 默认方案 | 备选方案 |
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|------|---------|---------|
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| 多模态 LLM | GPT-4o | 通义千问等 OpenAI 兼容模型 |
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| 语音识别 STT | Deepgram | MiMo ASR(小米) |
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| 语音合成 TTS | OpenAI TTS | MiMo TTS(小米) |
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> Go 网关的 AI 服务层统一封装不同服务商的调用接口,通过配置切换 provider。
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## 后端模块
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```mermaid
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graph LR
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subgraph Entry["入口层"]
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Main["main.go<br/>依赖注入 / 启动"]
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end
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subgraph Transport["传输层"]
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WSH["WebSocket Handler<br/>连接管理 / 认证"]
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APH["REST API Handlers<br/>Auth / Conversation / Health"]
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end
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subgraph Business["业务层"]
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SM["Session Manager<br/>会话生命周期"]
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ORCH["Orchestrator<br/>STT→LLM→TTS 编排"]
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AS["Auth Service<br/>注册/登录/刷新/登出"]
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end
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subgraph AI_Layer["AI 服务层"]
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STT_S["STT Service<br/>Deepgram / MiMo"]
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LLM_S["LLM Service<br/>OpenAI 兼容"]
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TTS_S["TTS Service<br/>OpenAI / MiMo"]
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end
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subgraph Data["数据层"]
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UR["UserRepository"]
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MR["MessageRepository"]
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SR["SessionRepository"]
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end
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Main --> WSH
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Main --> APH
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Main --> SM
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Main --> ORCH
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Main --> AS
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WSH --> SM
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WSH --> ORCH
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APH --> SM
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APH --> AS
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ORCH --> STT_S
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ORCH --> LLM_S
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ORCH --> TTS_S
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SM --> MR
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SM --> SR
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AS --> UR
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```
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| 模块 | 职责 |
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|------|------|
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| WebSocket Handler | 管理客户端连接生命周期,JWT 认证,conversation_id 恢复,单播消息推送 |
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| Session Manager | 维护用户会话状态、对话历史。Memory(默认)/ Redis(可切换),30 分钟 TTL,Write-Through 到 PG |
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| AI Orchestrator | 编排 STT→LLM→TTS 流式并行管道,context 取消 + 超时控制 + 句子切分 |
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| AI Service Layer | AI 服务抽象层,多 provider 支持(Deepgram/MiMo/OpenAI 等) |
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| Auth | 用户认证与授权。JWT (HS256) 双 token 轮转,bcrypt 密码哈希,Gin 中间件 |
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| Store | 持久化存储层。UserRepository / MessageRepository / SessionRepository,内存 + PostgreSQL 双实现 |
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| REST API | 健康检查、认证、对话管理端点 |
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| Logger | Zap 结构化日志 |
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| Models | 数据模型定义 |
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| Migrations | 数据库版本化迁移,嵌入式 SQL 文件自动执行 |
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| Model Router | 根据请求类型选择 AI 模型(待实现) |
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| Rate Limiter | 令牌桶限流(待实现) |
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## 前端组件
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| 组件 | 职责 |
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|------|------|
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| AuthPage | 登录/注册表单 |
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| CameraManager | 摄像头流采集 |
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| MicManager | 麦克风音频采集 |
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| EdgeProcessor | VAD + 关键帧检测(Canvas 像素比较) |
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| WebSocketManager | WS 连接生命周期管理 |
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| ChatPanel | 消息展示、流式回复、文本输入、场景选择 |
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| VideoPreview | 摄像头画面预览 |
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| SessionSidebar | 左侧抽屉式对话列表(搜索、重命名、删除) |
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| ConfigPanel | 右侧抽屉式配置面板(主题、TTS 开关、detail level、语言、场景、账户) |
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| Toast | 轻量通知提示(3 秒自动消失) |
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核心 Hook:`useVisionSession()` 封装一次完整的视觉对话会话(摄像头、VAD、WebSocket、消息状态、认证、场景模式)。
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## 数据库设计
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### ER 关系
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```mermaid
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erDiagram
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users ||--o{ sessions : "1:N"
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users ||--o{ refresh_tokens : "1:N"
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sessions ||--o{ messages : "1:N"
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users {
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uuid id PK
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varchar username UK
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varchar password_hash
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timestamptz created_at
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timestamptz updated_at
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}
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sessions {
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uuid id PK
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uuid user_id FK
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varchar title
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jsonb config
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timestamptz created_at
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timestamptz updated_at
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}
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messages {
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bigserial id PK
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uuid session_id FK
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varchar role
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text content
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integer tokens_used
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timestamptz created_at
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}
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refresh_tokens {
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bigserial id PK
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uuid user_id FK
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varchar token_hash UK
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timestamptz expires_at
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timestamptz created_at
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}
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```
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### 表结构
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```sql
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-- 用户表
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CREATE TABLE users (
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id UUID PRIMARY KEY DEFAULT gen_random_uuid(),
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username VARCHAR(64) NOT NULL UNIQUE,
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password_hash VARCHAR(256) NOT NULL,
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created_at TIMESTAMPTZ DEFAULT now(),
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updated_at TIMESTAMPTZ DEFAULT now()
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);
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-- 会话表
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CREATE TABLE sessions (
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id UUID PRIMARY KEY DEFAULT gen_random_uuid(),
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user_id UUID NOT NULL REFERENCES users(id) ON DELETE CASCADE,
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title VARCHAR(128) DEFAULT '新对话',
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config JSONB DEFAULT '{}',
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created_at TIMESTAMPTZ DEFAULT now(),
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updated_at TIMESTAMPTZ DEFAULT now()
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);
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-- 消息表
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CREATE TABLE messages (
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id BIGSERIAL PRIMARY KEY,
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session_id UUID NOT NULL REFERENCES sessions(id) ON DELETE CASCADE,
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role VARCHAR(16) NOT NULL,
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content TEXT NOT NULL,
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tokens_used INTEGER DEFAULT 0,
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created_at TIMESTAMPTZ DEFAULT now()
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);
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-- 刷新令牌表
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CREATE TABLE refresh_tokens (
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id BIGSERIAL PRIMARY KEY,
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user_id UUID NOT NULL REFERENCES users(id) ON DELETE CASCADE,
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token_hash VARCHAR(256) NOT NULL UNIQUE,
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expires_at TIMESTAMPTZ NOT NULL,
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created_at TIMESTAMPTZ DEFAULT now()
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);
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```
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### 存储策略
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| 场景 | 存储方案 | 说明 |
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|------|---------|------|
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| 默认 | Memory(进程内) | 零依赖,快速启动。MemoryManager 支持 Write-Through 到 PG |
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| 持久化 | Memory + PostgreSQL | 通过 `storage.driver: postgres` 启用,MemoryManager 注入 PG Repository |
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| 多实例 | Redis(独立) | 通过配置切换到 RedisManager,适合多实例部署 |
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|||
|
|
冷热分离:Redis/Memory 存"热数据"(当前对话上下文,微秒级读写),PostgreSQL 存"冷数据"(历史记录)。MemoryManager 的 Write-Through 机制确保每次 AppendMessage 同时写入 PG,重启后可从 PG 恢复会话。
|
|||
|
|
|
|||
|
|
## 认证设计
|
|||
|
|
|
|||
|
|
```mermaid
|
|||
|
|
sequenceDiagram
|
|||
|
|
participant C as 客户端
|
|||
|
|
participant G as Go 网关
|
|||
|
|
participant DB as PostgreSQL
|
|||
|
|
|
|||
|
|
Note over C,DB: 注册流程
|
|||
|
|
C->>G: POST /api/auth/register {username, password}
|
|||
|
|
G->>G: bcrypt hash 密码
|
|||
|
|
G->>DB: INSERT users
|
|||
|
|
G->>G: 生成 access_token + refresh_token
|
|||
|
|
G->>DB: 存 SHA256(refresh_token)
|
|||
|
|
G-->>C: {user, access_token, refresh_token}
|
|||
|
|
|
|||
|
|
Note over C,DB: 登录流程
|
|||
|
|
C->>G: POST /api/auth/login {username, password}
|
|||
|
|
G->>DB: 查 users by username
|
|||
|
|
G->>G: bcrypt.CompareHashAndPassword
|
|||
|
|
G->>G: 生成 token pair
|
|||
|
|
G->>DB: 存 SHA256(refresh_token)
|
|||
|
|
G-->>C: {user, access_token, refresh_token}
|
|||
|
|
|
|||
|
|
Note over C,DB: Token 刷新(轮转)
|
|||
|
|
C->>G: POST /api/auth/refresh {refresh_token}
|
|||
|
|
G->>G: 校验签名和过期
|
|||
|
|
G->>DB: 验证 hash 存在
|
|||
|
|
G->>DB: 撤销旧 refresh_token
|
|||
|
|
G->>G: 生成新 token pair
|
|||
|
|
G->>DB: 存新 refresh_token hash
|
|||
|
|
G-->>C: {access_token, refresh_token}
|
|||
|
|
```
|
|||
|
|
|
|||
|
|
**Token 策略**:access_token 15 分钟有效,refresh_token 7 天有效。refresh 时旧 token 失效(轮转),防止重放攻击。
|
|||
|
|
|
|||
|
|
**WebSocket 认证**:连接地址 `ws://host/ws?token=<access_token>&conversation_id=<uuid>`。HTTP Upgrade 前校验 token,失败返回 401。
|
|||
|
|
|
|||
|
|
## 部署架构
|
|||
|
|
|
|||
|
|
```mermaid
|
|||
|
|
graph TB
|
|||
|
|
User["用户浏览器"] --> Nginx
|
|||
|
|
|
|||
|
|
subgraph Nginx["Nginx 反向代理"]
|
|||
|
|
Static["/ → 前端静态资源"]
|
|||
|
|
API["/api/* → Go Gateway"]
|
|||
|
|
WS_Proxy["/ws → Go Gateway"]
|
|||
|
|
end
|
|||
|
|
|
|||
|
|
subgraph Gateway_Pool["Go Gateway 实例"]
|
|||
|
|
G1["Gateway-1"]
|
|||
|
|
G2["Gateway-2"]
|
|||
|
|
GN["Gateway-N"]
|
|||
|
|
end
|
|||
|
|
|
|||
|
|
Nginx --> G1
|
|||
|
|
Nginx --> G2
|
|||
|
|
Nginx --> GN
|
|||
|
|
|
|||
|
|
G1 --> Redis
|
|||
|
|
G2 --> Redis
|
|||
|
|
GN --> Redis
|
|||
|
|
|
|||
|
|
G1 --> PG_DB["PostgreSQL"]
|
|||
|
|
G2 --> PG_DB
|
|||
|
|
GN --> PG_DB
|
|||
|
|
|
|||
|
|
G1 --> AI_Services["AI Services(外部 API)"]
|
|||
|
|
G2 --> AI_Services
|
|||
|
|
GN --> AI_Services
|
|||
|
|
```
|
|||
|
|
|
|||
|
|
**跨域策略**:Nginx 将前端(`/`)、REST API(`/api/*`)、WebSocket(`/ws`)统一反代到同一域名,浏览器无跨域问题。
|
|||
|
|
|
|||
|
|
**开发环境**:前端 Vite :5173 通过 `server.proxy` 转发 `/ws` 和 `/api` 到后端 :8080,无需硬编码端口。
|