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2 Commits

Author SHA1 Message Date
YoVinchen 85d29a73f1 fix(usage): correct cache token column order in request log table
- Swap cache read and cache creation columns to match data binding
- Add whitespace-nowrap to all table headers for better display
2025-12-09 16:52:07 +08:00
YoVinchen e6514ec759 feat(skill): add database migration and Gemini support for multi-app skills
- Refactor skills table from single key to (directory, app_type) composite primary key
- Add migration logic to convert existing skill records
- Support skill installation/uninstallation for Claude/Codex/Gemini independently
- Add new Tauri commands: get_skills_for_app, install_skill_for_app, uninstall_skill_for_app
- Update frontend API and components to support app-specific skill operations
2025-12-09 16:50:08 +08:00
229 changed files with 6082 additions and 21206 deletions
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22.12.0
v22.4.1
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@@ -5,158 +5,6 @@ All notable changes to CC Switch will be documented in this file.
The format is based on [Keep a Changelog](https://keepachangelog.com/en/1.0.0/),
and this project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0.html).
## [3.9.0-3] - 2025-12-29
### Beta Release
Third beta release with important bug fixes for Windows compatibility, UI improvements, and new features.
### Added
- **Universal Provider** - Support for universal provider configurations (#348)
- **Provider Search Filter** - Quick filter to find providers by name (#435)
- **Keyboard Shortcut** - Open settings with Command+comma / Ctrl+comma (#436)
- **Xiaomi MiMo Icon** - Added MiMo icon and Claude provider configuration (#470)
- **Usage Model Extraction** - Extract model info from usage statistics (#455)
- **Skip First-Run Confirmation** - Option to skip Claude Code first-run confirmation dialog
- **Exit Animations** - Added exit animation to FullScreenPanel dialogs
- **Fade Transitions** - Smooth fade transitions for app/view/panel switching
### Fixed
#### Windows
- Wrap npx/npm commands with `cmd /c` for MCP export
- Prevent terminal windows from appearing during version check
#### macOS
- Use .app bundle path for autostart to prevent terminal window popup
#### UI
- Resolve Dialog/Modal not opening on first click (#492)
- Improve dark mode text contrast for form labels
- Reduce header spacing and fix layout shift on view switch
- Prevent header layout shift when switching views
#### Database & Schema
- Add missing base columns migration for proxy_config
- Add backward compatibility check for proxy_config seed insert
#### Other
- Use local timezone and robust DST handling in usage stats (#500)
- Remove deprecated `sync_enabled_to_codex` call
- Gracefully handle invalid Codex config.toml during MCP sync
- Add missing translations for reasoning model and OpenRouter compat mode
### Improved
- **macOS Tray** - Use macOS tray template icon
- **Header Alignment** - Remove macOS titlebar tint, align custom header
- **Shadow Removal** - Cleaner UI by removing shadow styles
- **Code Inspector** - Added code-inspector-plugin for development
- **i18n** - Complete internationalization for usage panel and settings
- **Sponsor Logos** - Made sponsor logos clickable
### Stats
- 35 commits since v3.9.0-2
- 5 files changed in test/lint fixes
---
## [3.9.0-1] - 2025-12-18
### Beta Release
This beta release introduces the **Local API Proxy** feature, along with Skills multi-app support, UI improvements, and numerous bug fixes.
### Major Features
#### Local Proxy Server
- **Local HTTP Proxy** - High-performance proxy server built on Axum framework
- **Multi-app Support** - Unified proxy for Claude Code, Codex, and Gemini CLI API requests
- **Per-app Takeover** - Independent control over which apps route through the proxy
- **Live Config Takeover** - Automatically backs up and redirects CLI configurations to local proxy
#### Auto Failover
- **Circuit Breaker** - Automatically detects provider failures and triggers protection
- **Smart Failover** - Automatically switches to backup provider when current one is unavailable
- **Health Tracking** - Real-time monitoring of provider availability
- **Independent Failover Queues** - Each app maintains its own failover queue
#### Monitoring
- **Request Logging** - Detailed logging of all proxy requests
- **Usage Statistics** - Token consumption, latency, success rate metrics
- **Real-time Status** - Frontend displays proxy status and statistics
#### Skills Multi-App Support
- **Multi-app Support** - Skills now support both Claude and Codex (#365)
- **Multi-app Migration** - Existing Skills auto-migrate to multi-app structure (#378)
- **Installation Path Fix** - Use directory basename for skill installation path (#358)
### Added
- **Provider Icon Colors** - Customize provider icon colors (#385)
- **Deeplink Usage Config** - Import usage query config via deeplink (#400)
- **Error Request Logging** - Detailed logging for proxy requests (#401)
- **Closable Toast** - Added close button to switch notification toast (#350)
- **Icon Color Component** - ProviderIcon component supports color prop (#384)
### Fixed
#### Proxy Related
- Takeover Codex base_url via model_provider
- Harden crash recovery with fallback detection
- Sync UI when active provider differs from current setting
- Resolve circuit breaker race condition and error classification
- Stabilize live takeover and provider editing
- Reset health badges when proxy stops
- Retry failover for all HTTP errors including 4xx
- Fix HalfOpen counter underflow and config field inconsistencies
- Resolve circuit breaker state persistence and HalfOpen deadlock
- Auto-recover live config after abnormal exit
- Update live backup when hot-switching provider in proxy mode
- Wait for server shutdown before exiting app
- Disable auto-start on app launch by resetting enabled flag on stop
- Sync live config tokens to database before takeover
- Resolve 404 error and auto-setup proxy targets
#### MCP Related
- Skip sync when target CLI app is not installed
- Improve upsert and import robustness
- Use browser-compatible platform detection for MCP presets
#### UI Related
- Restore fade transition for Skills button
- Add close button to all success toasts
- Prevent card jitter when health badge appears
- Update SettingsPage tab styles (#342)
#### Other
- Fix Azure website link (#407)
- Add fallback to provider config for usage credentials (#360)
- Fix Windows black screen on startup (use system titlebar)
- Add fallback for crypto.randomUUID() on older WebViews
- Use correct npm package for Codex CLI version check
- Security fixes for JavaScript executor and usage script (#151)
### Improved
- **Proxy Active Theme** - Apply emerald theme when proxy takeover is active
- **Card Animation** - Improved provider card hover animation
- **Remove Restart Prompt** - No longer prompts restart when switching providers
### Technical
- Implement per-app takeover mode
- Proxy module contains 20+ Rust files with complete layered architecture
- Add 5 new database tables for proxy functionality
- Modularize handlers.rs to reduce code duplication
- Remove is_proxy_target in favor of failover_queue
### Stats
- 55 commits since v3.8.2
- 164 files changed
- +22,164 / -570 lines
---
## [3.8.0] - 2025-11-28
### Major Updates
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# All-in-One Assistant for Claude Code, Codex & Gemini CLI
[![Version](https://img.shields.io/badge/version-3.8.3-blue.svg)](https://github.com/farion1231/cc-switch/releases)
[![Version](https://img.shields.io/badge/version-3.8.2-blue.svg)](https://github.com/farion1231/cc-switch/releases)
[![Trending](https://img.shields.io/badge/🔥_TypeScript_Trending-Daily%20%7C%20Weekly%20%7C%20Monthly-ff6b6b.svg)](https://github.com/trending/typescript)
[![Platform](https://img.shields.io/badge/platform-Windows%20%7C%20macOS%20%7C%20Linux-lightgrey.svg)](https://github.com/farion1231/cc-switch/releases)
[![Built with Tauri](https://img.shields.io/badge/built%20with-Tauri%202-orange.svg)](https://tauri.app/)
[![Downloads](https://img.shields.io/endpoint?url=https://api.pinstudios.net/api/badges/downloads/farion1231/cc-switch/total)](https://github.com/farion1231/cc-switch/releases/latest)
@@ -11,30 +12,33 @@
English | [中文](README_ZH.md) | [日本語](README_JA.md) | [Changelog](CHANGELOG.md)
**From Provider Switcher to All-in-One AI CLI Management Platform**
Unified management for Claude Code, Codex & Gemini CLI provider configurations, MCP servers, Skills extensions, and system prompts.
</div>
## ❤️Sponsor
[![Zhipu GLM](assets/partners/banners/glm-en.jpg)](https://z.ai/subscribe?ic=8JVLJQFSKB)
![Zhipu GLM](assets/partners/banners/glm-en.jpg)
This project is sponsored by Z.ai, supporting us with their GLM CODING PLAN.GLM CODING PLAN is a subscription service designed for AI coding, starting at just $3/month. It provides access to their flagship GLM-4.6 model across 10+ popular AI coding tools (Claude Code, Cline, Roo Code, etc.), offering developers top-tier, fast, and stable coding experiences.Get 10% OFF the GLM CODING PLAN with [this link](https://z.ai/subscribe?ic=8JVLJQFSKB)!
This project is sponsored by Z.ai, supporting us with their GLM CODING PLAN.
GLM CODING PLAN is a subscription service designed for AI coding, starting at just $3/month. It provides access to their flagship GLM-4.6 model across 10+ popular AI coding tools (Claude Code, Cline, Roo Code, etc.), offering developers top-tier, fast, and stable coding experiences.
Get 10% OFF the GLM CODING PLAN with [this link](https://z.ai/subscribe?ic=8JVLJQFSKB)!
---
<table>
<tr>
<td width="180"><a href="https://www.packyapi.com/register?aff=cc-switch"><img src="assets/partners/logos/packycode.png" alt="PackyCode" width="150"></a></td>
<td width="180"><img src="assets/partners/logos/packycode.png" alt="PackyCode" width="150"></td>
<td>Thanks to PackyCode for sponsoring this project! PackyCode is a reliable and efficient API relay service provider, offering relay services for Claude Code, Codex, Gemini, and more. PackyCode provides special discounts for our software users: register using <a href="https://www.packyapi.com/register?aff=cc-switch">this link</a> and enter the "cc-switch" promo code during recharge to get 10% off.</td>
</tr>
<tr>
<td width="180"><a href="https://aigocode.com/invite/CC-SWITCH"><img src="assets/partners/logos/aigocode.png" alt="AIGoCode" width="150"></a></td>
<td>Thanks to AIGoCode for sponsoring this project! AIGoCode is an all-in-one platform that integrates Claude Code, Codex, and the latest Gemini models, providing you with stable, efficient, and highly cost-effective AI coding services. The platform offers flexible subscription plans, zero risk of account suspension, direct access with no VPN required, and lightning-fast responses. AIGoCode has prepared a special benefit for CC Switch users: if you register via <a href="https://aigocode.com/invite/CC-SWITCH">this link</a>, you'll receive an extra 10% bonus credit on your first top-up!</td>
</tr>
<tr>
<td width="180"><a href="https://www.dmxapi.cn/register?aff=bUHu"><img src="assets/partners/logos/dmx-en.jpg" alt="DMXAPI" width="150"></a></td>
<td>Thanks to DMXAPI for sponsoring this project! DMXAPI provides global large model API services to 200+ enterprise users. One API key for all global models. Features include: instant invoicing, unlimited concurrency, starting from $0.15, 24/7 technical support. GPT/Claude/Gemini all at 32% off, domestic models 20-50% off, Claude Code exclusive models at 66% off! <a href="https://www.dmxapi.cn/register?aff=bUHu">Register here</a></td>
<td width="180"><img src="assets/partners/logos/sds-en.png" alt="ShanDianShuo" width="150"></td>
<td>Thanks to ShanDianShuo for sponsoring this project! ShanDianShuo is a local-first AI voice input: Millisecond latency, data stays on device, 4x faster than typing, AI-powered correction, Privacy-first, completely free. Doubles your coding efficiency with Claude Code! <a href="https://www.shandianshuo.cn">Free download</a> for Mac/Win</td>
</tr>
</table>
@@ -47,7 +51,7 @@ This project is sponsored by Z.ai, supporting us with their GLM CODING PLAN.GLM
## Features
### Current Version: v3.8.3 | [Full Changelog](CHANGELOG.md) | [Release Notes](docs/release-note-v3.8.0-en.md)
### Current Version: v3.8.2 | [Full Changelog](CHANGELOG.md) | [Release Notes](docs/release-note-v3.8.0-en.md)
**v3.8.0 Major Update (2025-11-28)**
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@@ -2,7 +2,8 @@
# Claude Code / Codex / Gemini CLI オールインワン・アシスタント
[![Version](https://img.shields.io/badge/version-3.8.3-blue.svg)](https://github.com/farion1231/cc-switch/releases)
[![Version](https://img.shields.io/badge/version-3.8.2-blue.svg)](https://github.com/farion1231/cc-switch/releases)
[![Trending](https://img.shields.io/badge/🔥_TypeScript_Trending-Daily%20%7C%20Weekly%20%7C%20Monthly-ff6b6b.svg)](https://github.com/trending/typescript)
[![Platform](https://img.shields.io/badge/platform-Windows%20%7C%20macOS%20%7C%20Linux-lightgrey.svg)](https://github.com/farion1231/cc-switch/releases)
[![Built with Tauri](https://img.shields.io/badge/built%20with-Tauri%202-orange.svg)](https://tauri.app/)
[![Downloads](https://img.shields.io/endpoint?url=https://api.pinstudios.net/api/badges/downloads/farion1231/cc-switch/total)](https://github.com/farion1231/cc-switch/releases/latest)
@@ -11,30 +12,33 @@
[English](README.md) | [中文](README_ZH.md) | 日本語 | [Changelog](CHANGELOG.md) | [v3.8.0 リリースノート](docs/release-note-v3.8.0-en.md)
**プロバイダスイッチャーから AI CLI 一体型管理プラットフォームへ**
Claude Code・Codex・Gemini CLI のプロバイダ設定、MCP サーバー、Skills 拡張、システムプロンプトを統合管理。
</div>
## ❤️スポンサー
[![Zhipu GLM](assets/partners/banners/glm-en.jpg)](https://z.ai/subscribe?ic=8JVLJQFSKB)
![Zhipu GLM](assets/partners/banners/glm-en.jpg)
本プロジェクトは Z.ai の GLM CODING PLAN による支援を受けています。GLM CODING PLAN は AI コーディング向けのサブスクリプションで、月額わずか 3 ドルから。Claude Code、Cline、Roo Code など 10 以上の人気 AI コーディングツールでフラッグシップモデル GLM-4.6 を利用でき、速く安定した開発体験を提供します。[このリンク](https://z.ai/subscribe?ic=8JVLJQFSKB) から申し込むと 10% オフになります!
本プロジェクトは Z.ai の GLM CODING PLAN による支援を受けています。
GLM CODING PLAN は AI コーディング向けのサブスクリプションで、月額わずか 3 ドルから。Claude Code、Cline、Roo Code など 10 以上の人気 AI コーディングツールでフラッグシップモデル GLM-4.6 を利用でき、速く安定した開発体験を提供します。
[このリンク](https://z.ai/subscribe?ic=8JVLJQFSKB) から申し込むと 10% オフになります!
---
<table>
<tr>
<td width="180"><a href="https://www.packyapi.com/register?aff=cc-switch"><img src="assets/partners/logos/packycode.png" alt="PackyCode" width="150"></a></td>
<td width="180"><img src="assets/partners/logos/packycode.png" alt="PackyCode" width="150"></td>
<td>PackyCode のご支援に感謝します!PackyCode は Claude Code、Codex、Gemini などのリレーサービスを提供する信頼性の高い API 中継プラットフォームです。本ソフト利用者向けに特別割引があります:<a href="https://www.packyapi.com/register?aff=cc-switch">このリンク</a>で登録し、チャージ時に「cc-switch」クーポンを入力すると 10% オフになります。</td>
</tr>
<tr>
<td width="180"><a href="https://aigocode.com/invite/CC-SWITCH"><img src="assets/partners/logos/aigocode.png" alt="AIGoCode" width="150"></a></td>
<td>本プロジェクトは AIGoCode のスポンサー提供でお届けしています。AIGoCode は、Claude Code・Codex・最新の Gemini モデルを統合したオールインワンのAIコーディングプラットフォームで、安定性・高速性・コストパフォーマンスに優れた開発サービスを提供します。柔軟なサブスクリプションプランを備え、レスポンスも非常に高速です。さらに、CC Switch ユーザー向けの特典として、<a href="https://aigocode.com/invite/CC-SWITCH">このリンク</a>から登録すると、初回チャージ時に10%分のボーナスクレジットが付与されます!</td>
</tr>
<tr>
<td width="180"><a href="https://www.dmxapi.cn/register?aff=bUHu"><img src="assets/partners/logos/dmx-en.jpg" alt="DMXAPI" width="150"></a></td>
<td>DMXAPI のご支援に感謝します!DMXAPI は 200 社以上の企業ユーザーにグローバル大規模モデル API サービスを提供しています。1 つの API キーで全世界のモデルにアクセス可能。即時請求書発行、同時接続数無制限、最低 $0.15 から、24 時間年中無休のテクニカルサポート。GPT/Claude/Gemini が全て 32% オフ、国内モデルは 20〜50% オフ、Claude Code 専用モデルは 66% オフ実施中!<a href="https://www.dmxapi.cn/register?aff=bUHu">登録はこちら</a></td>
<td width="180"><img src="assets/partners/logos/sds-en.png" alt="ShanDianShuo" width="150"></td>
<td>ShanDianShuo のご支援に感謝します!ShanDianShuo はローカルファーストの音声入力ツールで、ミリ秒遅延・データは端末から外に出ず・キーボード入力の 4 倍の速度・AI 自動補正・プライバシー優先で完全無料。Claude Code と組み合わせればコーディング効率が倍増します。<a href="https://www.shandianshuo.cn">Mac/Win 版を無料ダウンロード</a></td>
</tr>
</table>
@@ -47,7 +51,7 @@
## 特長
### 現在のバージョン:v3.8.3 | [完全な更新履歴](CHANGELOG.md) | [リリースノート](docs/release-note-v3.8.0-en.md)
### 現在のバージョン:v3.8.2 | [完全な更新履歴](CHANGELOG.md) | [リリースノート](docs/release-note-v3.8.0-en.md)
**v3.8.0 メジャーアップデート (2025-11-28)**
+16 -12
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@@ -2,7 +2,8 @@
# Claude Code / Codex / Gemini CLI 全方位辅助工具
[![Version](https://img.shields.io/badge/version-3.8.3-blue.svg)](https://github.com/farion1231/cc-switch/releases)
[![Version](https://img.shields.io/badge/version-3.8.2-blue.svg)](https://github.com/farion1231/cc-switch/releases)
[![Trending](https://img.shields.io/badge/🔥_TypeScript_Trending-Daily%20%7C%20Weekly%20%7C%20Monthly-ff6b6b.svg)](https://github.com/trending/typescript)
[![Platform](https://img.shields.io/badge/platform-Windows%20%7C%20macOS%20%7C%20Linux-lightgrey.svg)](https://github.com/farion1231/cc-switch/releases)
[![Built with Tauri](https://img.shields.io/badge/built%20with-Tauri%202-orange.svg)](https://tauri.app/)
[![Downloads](https://img.shields.io/endpoint?url=https://api.pinstudios.net/api/badges/downloads/farion1231/cc-switch/total)](https://github.com/farion1231/cc-switch/releases/latest)
@@ -11,32 +12,35 @@
[English](README.md) | 中文 | [日本語](README_JA.md) | [更新日志](CHANGELOG.md) | [v3.8.0 发布说明](docs/release-note-v3.8.0-zh.md)
**从供应商切换器到 AI CLI 一体化管理平台**
统一管理 Claude Code、Codex 与 Gemini CLI 的供应商配置、MCP 服务器、Skills 扩展和系统提示词。
</div>
## ❤️赞助商
[![智谱 GLM](assets/partners/banners/glm-zh.jpg)](https://www.bigmodel.cn/claude-code?ic=RRVJPB5SII)
![智谱 GLM](assets/partners/banners/glm-zh.jpg)
感谢智谱AI的 GLM CODING PLAN 赞助了本项目!GLM CODING PLAN 是专为AI编码打造的订阅套餐,每月最低仅需20元,即可在十余款主流AI编码工具如 Claude Code、Cline 中畅享智谱旗舰模型 GLM-4.6,为开发者提供顶尖、高速、稳定的编码体验。CC Switch 已经预设了智谱GLM,只需要填写 key 即可一键导入编程工具。智谱AI为本软件的用户提供了特别优惠,使用[此链接](https://www.bigmodel.cn/claude-code?ic=RRVJPB5SII)购买可以享受九折优惠。
感谢智谱AI的 GLM CODING PLAN 赞助了本项目!
GLM CODING PLAN 是专为AI编码打造的订阅套餐,每月最低仅需20元,即可在十余款主流AI编码工具如 Claude Code、Cline 中畅享智谱旗舰模型 GLM-4.6,为开发者提供顶尖、高速、稳定的编码体验。
CC Switch 已经预设了智谱GLM,只需要填写 key 即可一键导入编程工具。智谱AI为本软件的用户提供了特别优惠,使用[此链接](https://www.bigmodel.cn/claude-code?ic=RRVJPB5SII)购买可以享受九折优惠。
---
<table>
<tr>
<td width="180"><a href="https://www.packyapi.com/register?aff=cc-switch"><img src="assets/partners/logos/packycode.png" alt="PackyCode" width="150"></a></td>
<td width="180"><img src="assets/partners/logos/packycode.png" alt="PackyCode" width="150"></td>
<td>感谢 PackyCode 赞助了本项目!PackyCode 是一家稳定、高效的API中转服务商,提供 Claude Code、Codex、Gemini 等多种中转服务。PackyCode 为本软件的用户提供了特别优惠,使用<a href="https://www.packyapi.com/register?aff=cc-switch">此链接</a>注册并在充值时填写"cc-switch"优惠码,可以享受9折优惠。</td>
</tr>
<tr>
<td width="180"><a href="https://aigocode.com/invite/CC-SWITCH"><img src="assets/partners/logos/aigocode.png" alt="AIGoCode" width="150"></a></td>
<td>感谢 AIGoCode 赞助了本项目!AIGoCode 是一个集成了 Claude Code、Codex 以及 Gemini 最新模型的一站式平台,为你提供稳定、高效且高性价比的AI编程服务。本站提供灵活的订阅计划,零封号风险,国内直连,无需魔法,极速响应。AIGoCode 为 CC Switch 的用户提供了特别福利,通过<a href="https://aigocode.com/invite/CC-SWITCH">此链接</a>注册的用户首次充值可以获得额外10%奖励额度!</td>
<td width="180"><img src="assets/partners/logos/sds-zh.png" alt="ShanDianShuo" width="150"></td>
<td>感谢闪电说赞助了本项目!闪电说是本地优先的 AI 语音输入法:毫秒级响应,数据不离设备;打字速度提升 4 倍,AI 智能纠错;绝对隐私安全,完全免费,配合 Claude Code 写代码效率翻倍!支持 Mac/Win 双平台,<a href="https://www.shandianshuo.cn">免费下载</a></td>
</tr>
<tr>
<td width="180"><a href="https://www.dmxapi.cn/register?aff=bUHu"><img src="assets/partners/logos/dmx-zh.jpeg" alt="DMXAPI" width="150"></a></td>
<td>感谢 DMXAPI(大模型API)赞助了本项目! DMXAPI,一个Key用全球大模型。
为200多家企业用户提供全球大模型API服务。· 充值即开票 ·当天开票 ·并发不限制 ·1元起充 · 7x24 在线技术辅导,GPT/Claude/Gemini全部6.8折,国内模型5~8折,Claude Code 专属模型3.4折进行中!<a href="https://www.dmxapi.cn/register?aff=bUHu">点击这里注册</a></td>
</tr>
</table>
## 界面预览
@@ -47,7 +51,7 @@
## 功能特性
### 当前版本:v3.8.3 | [完整更新日志](CHANGELOG.md)
### 当前版本:v3.8.2 | [完整更新日志](CHANGELOG.md)
**v3.8.0 重大更新(2025-11-28**
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@@ -4,7 +4,7 @@
"rsc": false,
"tsx": true,
"tailwind": {
"config": "tailwind.config.cjs",
"config": "tailwind.config.js",
"css": "src/index.css",
"baseColor": "neutral",
"cssVariables": true,
-165
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@@ -1,165 +0,0 @@
# CC Switch 代理功能使用指南
## 功能介绍
CC Switch 的代理功能是一个本地 HTTP 代理服务器,可以统一管理 Claude Code、Codex 和 Gemini CLI 的 API 请求。主要特性包括:
- **统一代理入口** - 所有 CLI 应用的请求通过本地代理转发
- **自动故障转移** - 当前供应商故障时自动切换到备用供应商
- **按应用控制** - 可独立控制每个应用是否启用代理
- **配置保护** - 自动备份原始配置,停止代理时安全恢复
## 快速开始
### 1. 启动代理
在 CC Switch 主界面,点击右上角的 **Proxy** 按钮,可以看到代理控制面板。
点击 **启动代理** 按钮启动本地代理服务器。代理默认监听 `127.0.0.1:15721`
### 2. 启用应用接管
代理启动后,你可以选择让哪些应用的请求通过代理:
- **Claude** - 接管 Claude Code 的 API 请求
- **Codex** - 接管 Codex CLI 的 API 请求
- **Gemini** - 接管 Gemini CLI 的 API 请求
点击对应应用的开关即可启用/禁用接管。
> **注意**:启用接管后,CC Switch 会自动修改对应应用的配置文件,将 API 端点指向本地代理。原始配置会被安全备份。
### 3. 正常使用 CLI
启用接管后,你可以正常使用各个 CLI 工具。所有请求都会经过 CC Switch 代理转发到配置的供应商。
### 4. 停止代理
当你不再需要代理时,点击 **停止代理** 按钮。CC Switch 会:
1. 安全关闭代理服务器
2. 自动恢复所有应用的原始配置
3. 清除代理状态
## 自动故障转移
### 工作原理
代理功能内置了智能故障转移机制:
1. **健康监控** - 实时监控每个供应商的响应状态
2. **熔断器** - 连续失败 5 次后触发熔断,暂停使用该供应商
3. **自动切换** - 熔断后自动切换到列表中的下一个供应商
4. **自动恢复** - 30 秒后尝试恢复熔断的供应商
### 配置故障转移
要使用故障转移功能,你需要:
1. 在对应应用下添加多个供应商(至少 2 个)
2. 启动代理并启用接管
3. 当主供应商故障时,代理会自动切换到备用供应商
### 健康状态指示
在供应商卡片上可以看到健康状态指示:
- **绿色** - 供应商正常
- **红色** - 供应商故障/熔断中
- **灰色** - 未使用代理或未检测
## 按应用接管
v3.9.0 新增了按应用分粒度控制功能:
- 你可以只接管 Claude,而让 Codex 使用原始配置
- 每个应用的接管状态独立管理
- 启用/禁用不会影响其他应用
### 接管状态检测
CC Switch 通过检测配置备份来判断接管状态:
- 存在备份 = 已接管
- 无备份 = 未接管
这确保了即使 CC Switch 异常退出,重新启动后也能正确识别状态。
## 代理配置
在代理面板中,你可以配置以下参数:
| 参数 | 默认值 | 说明 |
|------|--------|------|
| 监听地址 | 127.0.0.1 | 代理服务器绑定地址 |
| 监听端口 | 15721 | 代理服务器端口 |
| 最大重试 | 3 | 请求失败时的最大重试次数 |
| 请求超时 | 120 秒 | 单个请求的超时时间 |
| 启用日志 | 是 | 是否记录请求日志 |
## 常见问题
### Q: 代理启动失败,提示端口被占用?
A: 默认端口 15721 可能被其他程序占用。你可以:
- 关闭占用该端口的程序
- 在代理配置中修改端口号
### Q: 启用接管后 CLI 无法使用?
A: 请检查:
1. 代理服务器是否正常运行(查看代理面板状态)
2. 供应商配置是否正确(API Key 等)
3. 网络连接是否正常
### Q: 如何恢复原始配置?
A: 点击 **停止代理** 按钮,CC Switch 会自动恢复所有应用的原始配置。
如果 CC Switch 异常退出,重新启动后会检测到之前的备份,你可以:
- 点击停止代理来恢复配置
- 或继续使用代理功能
### Q: 故障转移没有生效?
A: 请确保:
1. 配置了至少 2 个供应商
2. 代理已启动且接管已启用
3. 故障转移只在代理模式下工作
### Q: 代理会影响性能吗?
A: 本地代理的延迟开销非常小(通常 < 1ms)。但如果启用了请求日志,在高频请求场景下可能会有少量性能影响。
## 技术细节
### 配置文件位置
启用接管后,CC Switch 会修改以下配置文件:
| 应用 | 配置文件 | 修改内容 |
|------|----------|----------|
| Claude | `~/.claude/settings.json` | `apiBaseUrl` 指向代理 |
| Codex | `~/.codex/config.toml` | `[api] baseUrl` 指向代理 |
| Gemini | `~/.gemini/.env` | `GEMINI_BASE_URL` 指向代理 |
原始配置备份在 CC Switch 数据库中,停止代理时自动恢复。
### 代理模式
代理服务器运行在接管模式下,会:
1. 接收来自 CLI 的 HTTPS 请求
2. 根据当前供应商配置转发到真实 API 端点
3. 返回响应给 CLI
4. 记录请求日志和健康状态
### 数据库表
代理功能使用以下数据库表:
- `proxy_config` - 代理配置
- `provider_health` - 供应商健康状态
- `proxy_request_logs` - 请求日志
- `circuit_breaker_config` - 熔断器配置
- `proxy_live_backup` - Live 配置备份
+3 -5
View File
@@ -1,8 +1,7 @@
{
"name": "cc-switch",
"version": "3.9.0-3",
"version": "3.8.2",
"description": "All-in-One Assistant for Claude Code, Codex & Gemini CLI",
"type": "module",
"scripts": {
"dev": "pnpm tauri dev",
"build": "pnpm tauri build",
@@ -28,7 +27,6 @@
"@types/react-dom": "^18.2.0",
"@vitejs/plugin-react": "^4.2.0",
"autoprefixer": "^10.4.20",
"code-inspector-plugin": "^1.3.3",
"cross-fetch": "^4.1.0",
"jsdom": "^25.0.0",
"msw": "^2.11.6",
@@ -36,7 +34,7 @@
"prettier": "^3.6.2",
"tailwindcss": "^3.4.17",
"typescript": "^5.3.0",
"vite": "^7.3.0",
"vite": "^5.0.0",
"vitest": "^2.0.5"
},
"dependencies": {
@@ -87,4 +85,4 @@
"zod": "^4.1.12"
},
"packageManager": "pnpm@10.10.0+sha512.d615db246fe70f25dcfea6d8d73dee782ce23e2245e3c4f6f888249fb568149318637dca73c2c5c8ef2a4ca0d5657fb9567188bfab47f566d1ee6ce987815c39"
}
}
+25 -517
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+5 -57
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@@ -586,12 +586,6 @@ version = "1.5.0"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "1fd0f2584146f6f2ef48085050886acf353beff7305ebd1ae69500e27c67f64b"
[[package]]
name = "byteorder-lite"
version = "0.1.0"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "8f1fe948ff07f4bd06c30984e69f5b4899c516a3ef74f34df92a2df2ab535495"
[[package]]
name = "bytes"
version = "1.10.1"
@@ -701,7 +695,7 @@ dependencies = [
[[package]]
name = "cc-switch"
version = "3.9.0-3"
version = "3.8.2"
dependencies = [
"anyhow",
"async-stream",
@@ -2220,7 +2214,7 @@ source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "cc50b891e4acf8fe0e71ef88ec43ad82ee07b3810ad09de10f1d01f072ed4b98"
dependencies = [
"byteorder",
"png 0.17.16",
"png",
]
[[package]]
@@ -2336,19 +2330,6 @@ dependencies = [
"icu_properties",
]
[[package]]
name = "image"
version = "0.25.8"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "529feb3e6769d234375c4cf1ee2ce713682b8e76538cb13f9fc23e1400a591e7"
dependencies = [
"bytemuck",
"byteorder-lite",
"moxcms",
"num-traits",
"png 0.18.0",
]
[[package]]
name = "indexmap"
version = "1.9.3"
@@ -2778,16 +2759,6 @@ dependencies = [
"windows-sys 0.59.0",
]
[[package]]
name = "moxcms"
version = "0.7.9"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "0fbdd3d7436f8b5e892b8b7ea114271ff0fa00bc5acae845d53b07d498616ef6"
dependencies = [
"num-traits",
"pxfm",
]
[[package]]
name = "muda"
version = "0.17.1"
@@ -2803,7 +2774,7 @@ dependencies = [
"objc2-core-foundation",
"objc2-foundation 0.3.1",
"once_cell",
"png 0.17.16",
"png",
"serde",
"thiserror 2.0.17",
"windows-sys 0.60.2",
@@ -3592,19 +3563,6 @@ dependencies = [
"miniz_oxide",
]
[[package]]
name = "png"
version = "0.18.0"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "97baced388464909d42d89643fe4361939af9b7ce7a31ee32a168f832a70f2a0"
dependencies = [
"bitflags 2.9.4",
"crc32fast",
"fdeflate",
"flate2",
"miniz_oxide",
]
[[package]]
name = "polling"
version = "3.11.0"
@@ -3736,15 +3694,6 @@ dependencies = [
"syn 1.0.109",
]
[[package]]
name = "pxfm"
version = "0.1.25"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "a3cbdf373972bf78df4d3b518d07003938e2c7d1fb5891e55f9cb6df57009d84"
dependencies = [
"num-traits",
]
[[package]]
name = "quick-xml"
version = "0.37.5"
@@ -5038,7 +4987,6 @@ dependencies = [
"heck 0.5.0",
"http",
"http-range",
"image",
"jni",
"libc",
"log",
@@ -5107,7 +5055,7 @@ dependencies = [
"ico",
"json-patch",
"plist",
"png 0.17.16",
"png",
"proc-macro2",
"quote",
"semver",
@@ -5862,7 +5810,7 @@ dependencies = [
"objc2-core-graphics",
"objc2-foundation 0.3.1",
"once_cell",
"png 0.17.16",
"png",
"serde",
"thiserror 2.0.17",
"windows-sys 0.59.0",
+2 -2
View File
@@ -1,6 +1,6 @@
[package]
name = "cc-switch"
version = "3.9.0-3"
version = "3.8.2"
description = "All-in-One Assistant for Claude Code, Codex & Gemini CLI"
authors = ["Jason Young"]
license = "MIT"
@@ -26,7 +26,7 @@ serde_json = "1.0"
serde = { version = "1.0", features = ["derive"] }
log = "0.4"
chrono = { version = "0.4", features = ["serde"] }
tauri = { version = "2.8.2", features = ["tray-icon", "protocol-asset", "image-png"] }
tauri = { version = "2.8.2", features = ["tray-icon", "protocol-asset"] }
tauri-plugin-log = "2"
tauri-plugin-opener = "2"
tauri-plugin-process = "2"
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-104
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@@ -55,110 +55,6 @@ impl McpApps {
}
}
/// Skill 应用启用状态(标记 Skill 应用到哪些客户端)
#[derive(Debug, Clone, Serialize, Deserialize, Default, PartialEq)]
pub struct SkillApps {
#[serde(default)]
pub claude: bool,
#[serde(default)]
pub codex: bool,
#[serde(default)]
pub gemini: bool,
}
impl SkillApps {
/// 检查指定应用是否启用
pub fn is_enabled_for(&self, app: &AppType) -> bool {
match app {
AppType::Claude => self.claude,
AppType::Codex => self.codex,
AppType::Gemini => self.gemini,
}
}
/// 设置指定应用的启用状态
pub fn set_enabled_for(&mut self, app: &AppType, enabled: bool) {
match app {
AppType::Claude => self.claude = enabled,
AppType::Codex => self.codex = enabled,
AppType::Gemini => self.gemini = enabled,
}
}
/// 获取所有启用的应用列表
pub fn enabled_apps(&self) -> Vec<AppType> {
let mut apps = Vec::new();
if self.claude {
apps.push(AppType::Claude);
}
if self.codex {
apps.push(AppType::Codex);
}
if self.gemini {
apps.push(AppType::Gemini);
}
apps
}
/// 检查是否所有应用都未启用
pub fn is_empty(&self) -> bool {
!self.claude && !self.codex && !self.gemini
}
/// 仅启用指定应用(其他应用设为禁用)
pub fn only(app: &AppType) -> Self {
let mut apps = Self::default();
apps.set_enabled_for(app, true);
apps
}
}
/// 已安装的 Skillv3.10.0+ 统一结构)
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct InstalledSkill {
/// 唯一标识符(格式:"owner/repo:directory" 或 "local:directory"
pub id: String,
/// 显示名称
pub name: String,
/// 描述
#[serde(skip_serializing_if = "Option::is_none")]
pub description: Option<String>,
/// 安装目录名(在 SSOT 目录中的子目录名)
pub directory: String,
/// 仓库所有者(GitHub 用户/组织)
#[serde(skip_serializing_if = "Option::is_none")]
pub repo_owner: Option<String>,
/// 仓库名称
#[serde(skip_serializing_if = "Option::is_none")]
pub repo_name: Option<String>,
/// 仓库分支
#[serde(skip_serializing_if = "Option::is_none")]
pub repo_branch: Option<String>,
/// README URL
#[serde(skip_serializing_if = "Option::is_none")]
pub readme_url: Option<String>,
/// 应用启用状态
pub apps: SkillApps,
/// 安装时间(Unix 时间戳)
pub installed_at: i64,
}
/// 未管理的 Skill(在应用目录中发现但未被 CC Switch 管理)
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct UnmanagedSkill {
/// 目录名
pub directory: String,
/// 显示名称(从 SKILL.md 解析)
pub name: String,
/// 描述
#[serde(skip_serializing_if = "Option::is_none")]
pub description: Option<String>,
/// 在哪些应用目录中发现(如 ["claude", "codex"]
pub found_in: Vec<String>,
}
/// MCP 服务器定义(v3.7.0 统一结构)
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct McpServer {
+4 -71
View File
@@ -1,36 +1,16 @@
use crate::error::AppError;
use auto_launch::{AutoLaunch, AutoLaunchBuilder};
/// 获取 macOS 上的 .app bundle 路径
/// 将 `/path/to/CC Switch.app/Contents/MacOS/CC Switch` 转换为 `/path/to/CC Switch.app`
#[cfg(target_os = "macos")]
fn get_macos_app_bundle_path(exe_path: &std::path::Path) -> Option<std::path::PathBuf> {
let path_str = exe_path.to_string_lossy();
// 查找 .app/Contents/MacOS/ 模式
if let Some(app_pos) = path_str.find(".app/Contents/MacOS/") {
let app_bundle_end = app_pos + 4; // ".app" 的结束位置
Some(std::path::PathBuf::from(&path_str[..app_bundle_end]))
} else {
None
}
}
/// 初始化 AutoLaunch 实例
fn get_auto_launch() -> Result<AutoLaunch, AppError> {
let app_name = "CC Switch";
let exe_path =
let app_path =
std::env::current_exe().map_err(|e| AppError::Message(format!("无法获取应用路径: {e}")))?;
// macOS 需要使用 .app bundle 路径,否则 AppleScript login item 会打开终端
#[cfg(target_os = "macos")]
let app_path = get_macos_app_bundle_path(&exe_path).unwrap_or(exe_path);
#[cfg(not(target_os = "macos"))]
let app_path = exe_path;
// 使用 AutoLaunchBuilder 消除平台差异
// macOS: 使用 AppleScript 方式(默认),需要 .app bundle 路径
// Windows/Linux: 使用注册表/XDG autostart
// Windows/Linux: new() 接受 3 参数
// macOS: new() 接受 4 参数(含 hidden 参数)
// Builder 模式自动处理这些差异
let auto_launch = AutoLaunchBuilder::new()
.set_app_name(app_name)
.set_app_path(&app_path.to_string_lossy())
@@ -67,50 +47,3 @@ pub fn is_auto_launch_enabled() -> Result<bool, AppError> {
.is_enabled()
.map_err(|e| AppError::Message(format!("检查开机自启状态失败: {e}")))
}
#[cfg(test)]
mod tests {
use super::*;
#[cfg(target_os = "macos")]
#[test]
fn test_get_macos_app_bundle_path_valid() {
let exe_path = std::path::Path::new("/Applications/CC Switch.app/Contents/MacOS/CC Switch");
let result = get_macos_app_bundle_path(exe_path);
assert_eq!(
result,
Some(std::path::PathBuf::from("/Applications/CC Switch.app"))
);
}
#[cfg(target_os = "macos")]
#[test]
fn test_get_macos_app_bundle_path_with_spaces() {
let exe_path =
std::path::Path::new("/Users/test/My Apps/CC Switch.app/Contents/MacOS/CC Switch");
let result = get_macos_app_bundle_path(exe_path);
assert_eq!(
result,
Some(std::path::PathBuf::from(
"/Users/test/My Apps/CC Switch.app"
))
);
}
#[cfg(target_os = "macos")]
#[test]
fn test_get_macos_app_bundle_path_not_in_bundle() {
let exe_path = std::path::Path::new("/usr/local/bin/cc-switch");
let result = get_macos_app_bundle_path(exe_path);
assert_eq!(result, None);
}
#[cfg(target_os = "macos")]
#[test]
fn test_get_macos_app_bundle_path_dev_build() {
// 开发环境下的路径通常不在 .app bundle 内
let exe_path = std::path::Path::new("/Users/dev/project/target/debug/cc-switch");
let result = get_macos_app_bundle_path(exe_path);
assert_eq!(result, None);
}
}
-243
View File
@@ -7,64 +7,6 @@ use std::path::{Path, PathBuf};
use crate::config::{atomic_write, get_claude_mcp_path, get_default_claude_mcp_path};
use crate::error::AppError;
/// 需要在 Windows 上用 cmd /c 包装的命令
/// 这些命令在 Windows 上实际是 .cmd 批处理文件,需要通过 cmd /c 来执行
#[cfg(windows)]
const WINDOWS_WRAP_COMMANDS: &[&str] = &["npx", "npm", "yarn", "pnpm", "node", "bun", "deno"];
/// Windows 平台:将 `npx args...` 转换为 `cmd /c npx args...`
/// 解决 Claude Code /doctor 报告的 "Windows requires 'cmd /c' wrapper to execute npx" 警告
#[cfg(windows)]
fn wrap_command_for_windows(obj: &mut Map<String, Value>) {
// 只处理 stdio 类型(默认或显式)
let server_type = obj.get("type").and_then(|v| v.as_str()).unwrap_or("stdio");
if server_type != "stdio" {
return;
}
let Some(cmd) = obj.get("command").and_then(|v| v.as_str()) else {
return;
};
// 已经是 cmd 的不重复包装
if cmd.eq_ignore_ascii_case("cmd") || cmd.eq_ignore_ascii_case("cmd.exe") {
return;
}
// 提取命令名(去掉 .cmd 后缀和路径)
let cmd_name = Path::new(cmd)
.file_stem()
.and_then(|s| s.to_str())
.unwrap_or(cmd);
let needs_wrap = WINDOWS_WRAP_COMMANDS
.iter()
.any(|&c| cmd_name.eq_ignore_ascii_case(c));
if !needs_wrap {
return;
}
// 构建新的 args: ["/c", "原命令", ...原args]
let original_args = obj
.get("args")
.and_then(|v| v.as_array())
.cloned()
.unwrap_or_default();
let mut new_args = vec![Value::String("/c".into()), Value::String(cmd.into())];
new_args.extend(original_args);
obj.insert("command".into(), Value::String("cmd".into()));
obj.insert("args".into(), Value::Array(new_args));
}
/// 非 Windows 平台无需处理
#[cfg(not(windows))]
fn wrap_command_for_windows(_obj: &mut Map<String, Value>) {
// 非 Windows 平台不做任何处理
}
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct McpStatus {
@@ -163,55 +105,6 @@ pub fn read_mcp_json() -> Result<Option<String>, AppError> {
Ok(Some(content))
}
/// 在 ~/.claude.json 根对象写入 hasCompletedOnboarding=true(用于跳过 Claude Code 初次安装确认)
/// 仅增量写入该字段,其他字段保持不变
pub fn set_has_completed_onboarding() -> Result<bool, AppError> {
let path = user_config_path();
let mut root = if path.exists() {
read_json_value(&path)?
} else {
serde_json::json!({})
};
let obj = root
.as_object_mut()
.ok_or_else(|| AppError::Config("~/.claude.json 根必须是对象".into()))?;
let already = obj
.get("hasCompletedOnboarding")
.and_then(|v| v.as_bool())
.unwrap_or(false);
if already {
return Ok(false);
}
obj.insert("hasCompletedOnboarding".into(), Value::Bool(true));
write_json_value(&path, &root)?;
Ok(true)
}
/// 删除 ~/.claude.json 根对象的 hasCompletedOnboarding 字段(恢复 Claude Code 初次安装确认)
/// 仅增量删除该字段,其他字段保持不变
pub fn clear_has_completed_onboarding() -> Result<bool, AppError> {
let path = user_config_path();
if !path.exists() {
return Ok(false);
}
let mut root = read_json_value(&path)?;
let obj = root
.as_object_mut()
.ok_or_else(|| AppError::Config("~/.claude.json 根必须是对象".into()))?;
let existed = obj.remove("hasCompletedOnboarding").is_some();
if !existed {
return Ok(false);
}
write_json_value(&path, &root)?;
Ok(true)
}
pub fn upsert_mcp_server(id: &str, spec: Value) -> Result<bool, AppError> {
if id.trim().is_empty() {
return Err(AppError::InvalidInput("MCP 服务器 ID 不能为空".into()));
@@ -397,9 +290,6 @@ pub fn set_mcp_servers_map(
obj.remove("homepage");
obj.remove("docs");
// Windows 平台自动包装 npx/npm 等命令为 cmd /c 格式
wrap_command_for_windows(&mut obj);
out.insert(id.clone(), Value::Object(obj));
}
@@ -413,136 +303,3 @@ pub fn set_mcp_servers_map(
write_json_value(&path, &root)?;
Ok(())
}
#[cfg(test)]
mod tests {
use super::*;
use serde_json::json;
/// 测试 Windows 命令包装功能
/// 由于使用条件编译,在非 Windows 平台上测试的是空函数
#[test]
fn test_wrap_command_for_windows_npx() {
let mut obj = json!({"command": "npx", "args": ["-y", "@upstash/context7-mcp"]})
.as_object()
.unwrap()
.clone();
wrap_command_for_windows(&mut obj);
#[cfg(windows)]
{
assert_eq!(obj["command"], "cmd");
assert_eq!(
obj["args"],
json!(["/c", "npx", "-y", "@upstash/context7-mcp"])
);
}
#[cfg(not(windows))]
{
// 非 Windows 平台不做任何处理
assert_eq!(obj["command"], "npx");
}
}
#[test]
fn test_wrap_command_for_windows_npm() {
let mut obj = json!({"command": "npm", "args": ["run", "start"]})
.as_object()
.unwrap()
.clone();
wrap_command_for_windows(&mut obj);
#[cfg(windows)]
{
assert_eq!(obj["command"], "cmd");
assert_eq!(obj["args"], json!(["/c", "npm", "run", "start"]));
}
}
#[test]
fn test_wrap_command_for_windows_already_cmd() {
// 已经是 cmd 的不应该重复包装
let mut obj = json!({"command": "cmd", "args": ["/c", "npx", "-y", "foo"]})
.as_object()
.unwrap()
.clone();
wrap_command_for_windows(&mut obj);
assert_eq!(obj["command"], "cmd");
// args 应该保持不变,不会变成 ["/c", "cmd", "/c", "npx", ...]
assert_eq!(obj["args"], json!(["/c", "npx", "-y", "foo"]));
}
#[test]
fn test_wrap_command_for_windows_http_type_skipped() {
// http 类型不应该被处理
let mut obj = json!({"type": "http", "url": "https://example.com/mcp"})
.as_object()
.unwrap()
.clone();
wrap_command_for_windows(&mut obj);
assert!(!obj.contains_key("command"));
assert_eq!(obj["url"], "https://example.com/mcp");
}
#[test]
fn test_wrap_command_for_windows_other_command_skipped() {
// 非目标命令(如 python)不应该被包装
let mut obj = json!({"command": "python", "args": ["server.py"]})
.as_object()
.unwrap()
.clone();
wrap_command_for_windows(&mut obj);
// python 不在 WINDOWS_WRAP_COMMANDS 列表中,不应该被包装
assert_eq!(obj["command"], "python");
assert_eq!(obj["args"], json!(["server.py"]));
}
#[test]
fn test_wrap_command_for_windows_no_args() {
// 没有 args 的情况
let mut obj = json!({"command": "npx"}).as_object().unwrap().clone();
wrap_command_for_windows(&mut obj);
#[cfg(windows)]
{
assert_eq!(obj["command"], "cmd");
assert_eq!(obj["args"], json!(["/c", "npx"]));
}
}
#[test]
fn test_wrap_command_for_windows_with_cmd_suffix() {
// 处理 npx.cmd 格式
let mut obj = json!({"command": "npx.cmd", "args": ["-y", "foo"]})
.as_object()
.unwrap()
.clone();
wrap_command_for_windows(&mut obj);
#[cfg(windows)]
{
assert_eq!(obj["command"], "cmd");
assert_eq!(obj["args"], json!(["/c", "npx.cmd", "-y", "foo"]));
}
}
#[test]
fn test_wrap_command_for_windows_case_insensitive() {
// 大小写不敏感
let mut obj = json!({"command": "NPX", "args": ["-y", "foo"]})
.as_object()
.unwrap()
.clone();
wrap_command_for_windows(&mut obj);
#[cfg(windows)]
{
assert_eq!(obj["command"], "cmd");
assert_eq!(obj["args"], json!(["/c", "NPX", "-y", "foo"]));
}
}
}
-102
View File
@@ -1,102 +0,0 @@
//! 故障转移队列命令
//!
//! 管理代理模式下的故障转移队列(基于 providers 表的 in_failover_queue 字段)
use crate::database::FailoverQueueItem;
use crate::provider::Provider;
use crate::store::AppState;
/// 获取故障转移队列
#[tauri::command]
pub async fn get_failover_queue(
state: tauri::State<'_, AppState>,
app_type: String,
) -> Result<Vec<FailoverQueueItem>, String> {
state
.db
.get_failover_queue(&app_type)
.map_err(|e| e.to_string())
}
/// 获取可添加到故障转移队列的供应商(不在队列中的)
#[tauri::command]
pub async fn get_available_providers_for_failover(
state: tauri::State<'_, AppState>,
app_type: String,
) -> Result<Vec<Provider>, String> {
state
.db
.get_available_providers_for_failover(&app_type)
.map_err(|e| e.to_string())
}
/// 添加供应商到故障转移队列
#[tauri::command]
pub async fn add_to_failover_queue(
state: tauri::State<'_, AppState>,
app_type: String,
provider_id: String,
) -> Result<(), String> {
state
.db
.add_to_failover_queue(&app_type, &provider_id)
.map_err(|e| e.to_string())
}
/// 从故障转移队列移除供应商
#[tauri::command]
pub async fn remove_from_failover_queue(
state: tauri::State<'_, AppState>,
app_type: String,
provider_id: String,
) -> Result<(), String> {
state
.db
.remove_from_failover_queue(&app_type, &provider_id)
.map_err(|e| e.to_string())
}
/// 获取指定应用的自动故障转移开关状态(从 proxy_config 表读取)
#[tauri::command]
pub async fn get_auto_failover_enabled(
state: tauri::State<'_, AppState>,
app_type: String,
) -> Result<bool, String> {
state
.db
.get_proxy_config_for_app(&app_type)
.await
.map(|config| config.auto_failover_enabled)
.map_err(|e| e.to_string())
}
/// 设置指定应用的自动故障转移开关状态(写入 proxy_config 表)
///
/// 注意:关闭故障转移时不会清除队列,队列内容会保留供下次开启时使用
#[tauri::command]
pub async fn set_auto_failover_enabled(
state: tauri::State<'_, AppState>,
app_type: String,
enabled: bool,
) -> Result<(), String> {
log::info!(
"[Failover] Setting auto_failover_enabled: app_type='{app_type}', enabled={enabled}"
);
// 读取当前配置
let mut config = state
.db
.get_proxy_config_for_app(&app_type)
.await
.map_err(|e| e.to_string())?;
// 更新 auto_failover_enabled 字段
config.auto_failover_enabled = enabled;
// 写回数据库
state
.db
.update_proxy_config_for_app(config)
.await
.map_err(|e| e.to_string())
}
-10
View File
@@ -192,13 +192,3 @@ pub async fn toggle_mcp_app(
let app_ty = AppType::from_str(&app).map_err(|e| e.to_string())?;
McpService::toggle_app(&state, &server_id, app_ty, enabled).map_err(|e| e.to_string())
}
/// 从所有应用导入 MCP 服务器(复用已有的导入逻辑)
#[tauri::command]
pub async fn import_mcp_from_apps(state: State<'_, AppState>) -> Result<usize, String> {
let mut total = 0;
total += McpService::import_from_claude(&state).unwrap_or(0);
total += McpService::import_from_codex(&state).unwrap_or(0);
total += McpService::import_from_gemini(&state).unwrap_or(0);
Ok(total)
}
+34 -176
View File
@@ -1,15 +1,9 @@
#![allow(non_snake_case)]
use crate::init_status::{InitErrorPayload, SkillsMigrationPayload};
use crate::init_status::InitErrorPayload;
use tauri::AppHandle;
use tauri_plugin_opener::OpenerExt;
#[cfg(target_os = "windows")]
use std::os::windows::process::CommandExt;
#[cfg(target_os = "windows")]
const CREATE_NO_WINDOW: u32 = 0x08000000;
/// 打开外部链接
#[tauri::command]
pub async fn open_external(app: AppHandle, url: String) -> Result<bool, String> {
@@ -65,13 +59,6 @@ pub async fn get_migration_result() -> Result<bool, String> {
Ok(crate::init_status::take_migration_success())
}
/// 获取 Skills 自动导入(SSOT)迁移结果(若有)。
/// 只返回一次 Some({count}),之后返回 None,用于前端显示一次性 Toast 通知。
#[tauri::command]
pub async fn get_skills_migration_result() -> Result<Option<SkillsMigrationPayload>, String> {
Ok(crate::init_status::take_skills_migration_result())
}
#[derive(serde::Serialize)]
pub struct ToolVersion {
name: String,
@@ -82,6 +69,8 @@ pub struct ToolVersion {
#[tauri::command]
pub async fn get_tool_versions() -> Result<Vec<ToolVersion>, String> {
use std::process::Command;
let tools = vec!["claude", "codex", "gemini"];
let mut results = Vec::new();
@@ -92,16 +81,39 @@ pub async fn get_tool_versions() -> Result<Vec<ToolVersion>, String> {
.map_err(|e| e.to_string())?;
for tool in tools {
// 1. 获取本地版本 - 先尝试直接执行,失败则扫描常见路径
// 1. 获取本地版本 (保持不变)
let (local_version, local_error) = {
// 先尝试直接执行
let direct_result = try_get_version(tool);
if direct_result.0.is_some() {
direct_result
let output = if cfg!(target_os = "windows") {
Command::new("cmd")
.args(["/C", &format!("{tool} --version")])
.output()
} else {
// 扫描常见的 npm 全局安装路径
scan_cli_version(tool)
Command::new("sh")
.arg("-c")
.arg(format!("{tool} --version"))
.output()
};
match output {
Ok(out) => {
if out.status.success() {
(
Some(String::from_utf8_lossy(&out.stdout).trim().to_string()),
None,
)
} else {
let err = String::from_utf8_lossy(&out.stderr).trim().to_string();
(
None,
Some(if err.is_empty() {
"未安装或无法执行".to_string()
} else {
err
}),
)
}
}
Err(e) => (None, Some(e.to_string())),
}
};
@@ -141,157 +153,3 @@ async fn fetch_npm_latest_version(client: &reqwest::Client, package: &str) -> Op
Err(_) => None,
}
}
/// 从版本输出中提取纯版本号
fn extract_version(raw: &str) -> String {
// 匹配 semver 格式: x.y.z 或 x.y.z-xxx
let re = regex::Regex::new(r"\d+\.\d+\.\d+(-[\w.]+)?").unwrap();
re.find(raw)
.map(|m| m.as_str().to_string())
.unwrap_or_else(|| raw.to_string())
}
/// 尝试直接执行命令获取版本
fn try_get_version(tool: &str) -> (Option<String>, Option<String>) {
use std::process::Command;
#[cfg(target_os = "windows")]
let output = {
Command::new("cmd")
.args(["/C", &format!("{tool} --version")])
.creation_flags(CREATE_NO_WINDOW)
.output()
};
#[cfg(not(target_os = "windows"))]
let output = {
Command::new("sh")
.arg("-c")
.arg(format!("{tool} --version"))
.output()
};
match output {
Ok(out) => {
let stdout = String::from_utf8_lossy(&out.stdout).trim().to_string();
let stderr = String::from_utf8_lossy(&out.stderr).trim().to_string();
if out.status.success() {
let raw = if stdout.is_empty() { &stderr } else { &stdout };
if raw.is_empty() {
(None, Some("未安装或无法执行".to_string()))
} else {
(Some(extract_version(raw)), None)
}
} else {
let err = if stderr.is_empty() { stdout } else { stderr };
(
None,
Some(if err.is_empty() {
"未安装或无法执行".to_string()
} else {
err
}),
)
}
}
Err(e) => (None, Some(e.to_string())),
}
}
/// 扫描常见路径查找 CLI
fn scan_cli_version(tool: &str) -> (Option<String>, Option<String>) {
use std::process::Command;
let home = dirs::home_dir().unwrap_or_default();
// 常见的 npm 全局安装路径
let mut search_paths: Vec<std::path::PathBuf> = vec![
home.join(".npm-global/bin"),
home.join(".local/bin"),
home.join("n/bin"), // n version manager
];
#[cfg(target_os = "macos")]
{
search_paths.push(std::path::PathBuf::from("/opt/homebrew/bin"));
search_paths.push(std::path::PathBuf::from("/usr/local/bin"));
}
#[cfg(target_os = "linux")]
{
search_paths.push(std::path::PathBuf::from("/usr/local/bin"));
search_paths.push(std::path::PathBuf::from("/usr/bin"));
}
#[cfg(target_os = "windows")]
{
if let Some(appdata) = dirs::data_dir() {
search_paths.push(appdata.join("npm"));
}
search_paths.push(std::path::PathBuf::from("C:\\Program Files\\nodejs"));
}
// 扫描 nvm 目录下的所有 node 版本
let nvm_base = home.join(".nvm/versions/node");
if nvm_base.exists() {
if let Ok(entries) = std::fs::read_dir(&nvm_base) {
for entry in entries.flatten() {
let bin_path = entry.path().join("bin");
if bin_path.exists() {
search_paths.push(bin_path);
}
}
}
}
// 在每个路径中查找工具
for path in &search_paths {
let tool_path = if cfg!(target_os = "windows") {
path.join(format!("{tool}.cmd"))
} else {
path.join(tool)
};
if tool_path.exists() {
// 构建 PATH 环境变量,确保 node 可被找到
let current_path = std::env::var("PATH").unwrap_or_default();
#[cfg(target_os = "windows")]
let new_path = format!("{};{}", path.display(), current_path);
#[cfg(not(target_os = "windows"))]
let new_path = format!("{}:{}", path.display(), current_path);
#[cfg(target_os = "windows")]
let output = {
// 使用 cmd /C 包装执行,确保子进程也在隐藏的控制台中运行
Command::new("cmd")
.args(["/C", &format!("\"{}\" --version", tool_path.display())])
.env("PATH", &new_path)
.creation_flags(CREATE_NO_WINDOW)
.output()
};
#[cfg(not(target_os = "windows"))]
let output = {
Command::new(&tool_path)
.arg("--version")
.env("PATH", &new_path)
.output()
};
if let Ok(out) = output {
let stdout = String::from_utf8_lossy(&out.stdout).trim().to_string();
let stderr = String::from_utf8_lossy(&out.stderr).trim().to_string();
if out.status.success() {
let raw = if stdout.is_empty() { &stderr } else { &stdout };
if !raw.is_empty() {
return (Some(extract_version(raw)), None);
}
}
}
}
}
(None, Some("未安装或无法执行".to_string()))
}
+2 -4
View File
@@ -3,31 +3,29 @@
mod config;
mod deeplink;
mod env;
mod failover;
mod import_export;
mod mcp;
mod misc;
mod model_test;
mod plugin;
mod prompt;
mod provider;
mod proxy;
mod settings;
pub mod skill;
mod stream_check;
mod usage;
pub use config::*;
pub use deeplink::*;
pub use env::*;
pub use failover::*;
pub use import_export::*;
pub use mcp::*;
pub use misc::*;
pub use model_test::*;
pub use plugin::*;
pub use prompt::*;
pub use provider::*;
pub use proxy::*;
pub use settings::*;
pub use skill::*;
pub use stream_check::*;
pub use usage::*;
+128
View File
@@ -0,0 +1,128 @@
//! 模型测试相关命令
use crate::app_config::AppType;
use crate::error::AppError;
use crate::services::model_test::{
ModelTestConfig, ModelTestLog, ModelTestResult, ModelTestService,
};
use crate::store::AppState;
use tauri::State;
/// 测试单个供应商的模型可用性
#[tauri::command]
pub async fn test_provider_model(
state: State<'_, AppState>,
app_type: AppType,
provider_id: String,
) -> Result<ModelTestResult, AppError> {
// 获取测试配置
let config = state.db.get_model_test_config()?;
// 获取供应商
let providers = state.db.get_all_providers(app_type.as_str())?;
let provider = providers
.get(&provider_id)
.ok_or_else(|| AppError::Message(format!("供应商 {provider_id} 不存在")))?;
// 执行测试
let result = ModelTestService::test_provider(&app_type, provider, &config).await?;
// 记录日志
let _ = state.db.save_model_test_log(
&provider_id,
&provider.name,
app_type.as_str(),
&result.model_used,
&config.test_prompt,
&result,
);
Ok(result)
}
/// 批量测试所有供应商
#[tauri::command]
pub async fn test_all_providers_model(
state: State<'_, AppState>,
app_type: AppType,
proxy_targets_only: bool,
) -> Result<Vec<(String, ModelTestResult)>, AppError> {
let config = state.db.get_model_test_config()?;
let providers = state.db.get_all_providers(app_type.as_str())?;
let mut results = Vec::new();
for (id, provider) in providers {
// 如果只测试代理目标,跳过非代理目标
if proxy_targets_only && !provider.is_proxy_target.unwrap_or(false) {
continue;
}
match ModelTestService::test_provider(&app_type, &provider, &config).await {
Ok(result) => {
// 记录日志
let _ = state.db.save_model_test_log(
&id,
&provider.name,
app_type.as_str(),
&result.model_used,
&config.test_prompt,
&result,
);
results.push((id, result));
}
Err(e) => {
let error_result = ModelTestResult {
success: false,
message: e.to_string(),
response_time_ms: None,
http_status: None,
model_used: String::new(),
tested_at: chrono::Utc::now().timestamp(),
};
results.push((id, error_result));
}
}
}
Ok(results)
}
/// 获取模型测试配置
#[tauri::command]
pub fn get_model_test_config(state: State<'_, AppState>) -> Result<ModelTestConfig, AppError> {
state.db.get_model_test_config()
}
/// 保存模型测试配置
#[tauri::command]
pub fn save_model_test_config(
state: State<'_, AppState>,
config: ModelTestConfig,
) -> Result<(), AppError> {
state.db.save_model_test_config(&config)
}
/// 获取模型测试日志
#[tauri::command]
pub fn get_model_test_logs(
state: State<'_, AppState>,
app_type: Option<String>,
provider_id: Option<String>,
limit: Option<u32>,
) -> Result<Vec<ModelTestLog>, AppError> {
state.db.get_model_test_logs(
app_type.as_deref(),
provider_id.as_deref(),
limit.unwrap_or(50),
)
}
/// 清理旧的测试日志
#[tauri::command]
pub fn cleanup_model_test_logs(
state: State<'_, AppState>,
keep_count: Option<u32>,
) -> Result<u64, AppError> {
state.db.cleanup_model_test_logs(keep_count.unwrap_or(100))
}
-12
View File
@@ -34,15 +34,3 @@ pub async fn apply_claude_plugin_config(official: bool) -> Result<bool, String>
pub async fn is_claude_plugin_applied() -> Result<bool, String> {
crate::claude_plugin::is_claude_config_applied().map_err(|e| e.to_string())
}
/// Claude Code:跳过初次安装确认(写入 ~/.claude.json 的 hasCompletedOnboarding=true
#[tauri::command]
pub async fn apply_claude_onboarding_skip() -> Result<bool, String> {
crate::claude_mcp::set_has_completed_onboarding().map_err(|e| e.to_string())
}
/// Claude Code:恢复初次安装确认(删除 ~/.claude.json 的 hasCompletedOnboarding 字段)
#[tauri::command]
pub async fn clear_claude_onboarding_skip() -> Result<bool, String> {
crate::claude_mcp::clear_has_completed_onboarding().map_err(|e| e.to_string())
}
+13 -94
View File
@@ -86,6 +86,19 @@ pub fn switch_provider(
.map_err(|e| e.to_string())
}
/// 设置代理目标供应商
#[tauri::command]
pub fn set_proxy_target_provider(
state: State<'_, AppState>,
app: String,
id: String,
) -> Result<bool, String> {
let app_type = AppType::from_str(&app).map_err(|e| e.to_string())?;
ProviderService::set_proxy_target(state.inner(), app_type, &id)
.map(|_| true)
.map_err(|e| e.to_string())
}
fn import_default_config_internal(state: &AppState, app_type: AppType) -> Result<bool, AppError> {
ProviderService::import_default_config(state, app_type)
}
@@ -229,97 +242,3 @@ pub fn update_providers_sort_order(
let app_type = AppType::from_str(&app).map_err(|e| e.to_string())?;
ProviderService::update_sort_order(state.inner(), app_type, updates).map_err(|e| e.to_string())
}
// ============================================================================
// 统一供应商(Universal Provider)命令
// ============================================================================
use crate::provider::UniversalProvider;
use std::collections::HashMap;
use tauri::{AppHandle, Emitter};
/// 统一供应商同步完成事件的 payload
#[derive(Clone, serde::Serialize)]
pub struct UniversalProviderSyncedEvent {
/// 操作类型: "upsert" | "delete" | "sync"
pub action: String,
/// 统一供应商 ID
pub id: String,
}
/// 发送统一供应商同步事件,通知前端刷新供应商列表
fn emit_universal_provider_synced(app: &AppHandle, action: &str, id: &str) {
let _ = app.emit(
"universal-provider-synced",
UniversalProviderSyncedEvent {
action: action.to_string(),
id: id.to_string(),
},
);
}
/// 获取所有统一供应商
#[tauri::command]
pub fn get_universal_providers(
state: State<'_, AppState>,
) -> Result<HashMap<String, UniversalProvider>, String> {
ProviderService::list_universal(state.inner()).map_err(|e| e.to_string())
}
/// 获取单个统一供应商
#[tauri::command]
pub fn get_universal_provider(
state: State<'_, AppState>,
id: String,
) -> Result<Option<UniversalProvider>, String> {
ProviderService::get_universal(state.inner(), &id).map_err(|e| e.to_string())
}
/// 添加或更新统一供应商
#[tauri::command]
pub fn upsert_universal_provider(
app: AppHandle,
state: State<'_, AppState>,
provider: UniversalProvider,
) -> Result<bool, String> {
let id = provider.id.clone();
let result =
ProviderService::upsert_universal(state.inner(), provider).map_err(|e| e.to_string())?;
// 发送事件通知前端刷新
emit_universal_provider_synced(&app, "upsert", &id);
Ok(result)
}
/// 删除统一供应商
#[tauri::command]
pub fn delete_universal_provider(
app: AppHandle,
state: State<'_, AppState>,
id: String,
) -> Result<bool, String> {
let result =
ProviderService::delete_universal(state.inner(), &id).map_err(|e| e.to_string())?;
// 发送事件通知前端刷新
emit_universal_provider_synced(&app, "delete", &id);
Ok(result)
}
/// 同步统一供应商到各应用(手动触发)
#[tauri::command]
pub fn sync_universal_provider(
app: AppHandle,
state: State<'_, AppState>,
id: String,
) -> Result<bool, String> {
let result =
ProviderService::sync_universal_to_apps(state.inner(), &id).map_err(|e| e.to_string())?;
// 发送事件通知前端刷新
emit_universal_provider_synced(&app, "sync", &id);
Ok(result)
}
+45 -178
View File
@@ -2,11 +2,12 @@
//!
//! 提供前端调用的 API 接口
use crate::provider::Provider;
use crate::proxy::types::*;
use crate::proxy::{CircuitBreakerConfig, CircuitBreakerStats};
use crate::store::AppState;
/// 启动代理服务器(仅启动服务,不接管 Live 配置)
/// 启动代理服务器
#[tauri::command]
pub async fn start_proxy_server(
state: tauri::State<'_, AppState>,
@@ -14,31 +15,10 @@ pub async fn start_proxy_server(
state.proxy_service.start().await
}
/// 停止代理服务器(恢复 Live 配置)
/// 停止代理服务器
#[tauri::command]
pub async fn stop_proxy_with_restore(state: tauri::State<'_, AppState>) -> Result<(), String> {
state.proxy_service.stop_with_restore().await
}
/// 获取各应用接管状态
#[tauri::command]
pub async fn get_proxy_takeover_status(
state: tauri::State<'_, AppState>,
) -> Result<ProxyTakeoverStatus, String> {
state.proxy_service.get_takeover_status().await
}
/// 为指定应用开启/关闭接管
#[tauri::command]
pub async fn set_proxy_takeover_for_app(
state: tauri::State<'_, AppState>,
app_type: String,
enabled: bool,
) -> Result<(), String> {
state
.proxy_service
.set_takeover_for_app(&app_type, enabled)
.await
pub async fn stop_proxy_server(state: tauri::State<'_, AppState>) -> Result<(), String> {
state.proxy_service.stop().await
}
/// 获取代理服务器状态
@@ -62,89 +42,54 @@ pub async fn update_proxy_config(
state.proxy_service.update_config(&config).await
}
// ==================== Global & Per-App Config ====================
/// 获取全局代理配置
///
/// 返回统一的全局配置字段(代理开关、监听地址、端口、日志开关)
#[tauri::command]
pub async fn get_global_proxy_config(
state: tauri::State<'_, AppState>,
) -> Result<GlobalProxyConfig, String> {
let db = &state.db;
db.get_global_proxy_config()
.await
.map_err(|e| e.to_string())
}
/// 更新全局代理配置
///
/// 更新统一的全局配置字段,会同时更新三行(claude/codex/gemini
#[tauri::command]
pub async fn update_global_proxy_config(
state: tauri::State<'_, AppState>,
config: GlobalProxyConfig,
) -> Result<(), String> {
let db = &state.db;
db.update_global_proxy_config(config)
.await
.map_err(|e| e.to_string())
}
/// 获取指定应用的代理配置
///
/// 返回应用级配置(enabled、auto_failover、超时、熔断器等)
#[tauri::command]
pub async fn get_proxy_config_for_app(
state: tauri::State<'_, AppState>,
app_type: String,
) -> Result<AppProxyConfig, String> {
let db = &state.db;
db.get_proxy_config_for_app(&app_type)
.await
.map_err(|e| e.to_string())
}
/// 更新指定应用的代理配置
///
/// 更新应用级配置(enabled、auto_failover、超时、熔断器等)
#[tauri::command]
pub async fn update_proxy_config_for_app(
state: tauri::State<'_, AppState>,
config: AppProxyConfig,
) -> Result<(), String> {
let db = &state.db;
db.update_proxy_config_for_app(config)
.await
.map_err(|e| e.to_string())
}
/// 检查代理服务器是否正在运行
#[tauri::command]
pub async fn is_proxy_running(state: tauri::State<'_, AppState>) -> Result<bool, String> {
Ok(state.proxy_service.is_running().await)
}
/// 检查是否处于 Live 接管模式
#[tauri::command]
pub async fn is_live_takeover_active(state: tauri::State<'_, AppState>) -> Result<bool, String> {
state.proxy_service.is_takeover_active().await
}
// ==================== 故障转移相关命令 ====================
/// 代理模式下切换供应商(热切换)
/// 获取代理目标列表
#[tauri::command]
pub async fn switch_proxy_provider(
pub async fn get_proxy_targets(
state: tauri::State<'_, AppState>,
app_type: String,
provider_id: String,
) -> Result<(), String> {
state
.proxy_service
.switch_proxy_target(&app_type, &provider_id)
) -> Result<Vec<Provider>, String> {
let db = &state.db;
db.get_proxy_targets(&app_type)
.await
.map_err(|e| e.to_string())
.map(|providers| providers.into_values().collect())
}
// ==================== 故障转移相关命令 ====================
/// 设置代理目标
#[tauri::command]
pub async fn set_proxy_target(
state: tauri::State<'_, AppState>,
provider_id: String,
app_type: String,
enabled: bool,
) -> Result<(), String> {
let db = &state.db;
// 设置代理目标状态
db.set_proxy_target(&provider_id, &app_type, enabled)
.await
.map_err(|e| e.to_string())?;
// 如果是禁用代理目标,重置健康状态
if !enabled {
log::info!(
"Resetting health status for provider {provider_id} (app: {app_type}) after disabling proxy target"
);
if let Err(e) = db.reset_provider_health(&provider_id, &app_type).await {
log::warn!("Failed to reset provider health: {e}");
}
}
Ok(())
}
/// 获取供应商健康状态
#[tauri::command]
@@ -160,89 +105,21 @@ pub async fn get_provider_health(
}
/// 重置熔断器
///
/// 重置后会检查是否应该切回队列中优先级更高的供应商:
/// 1. 检查自动故障转移是否开启
/// 2. 如果恢复的供应商在队列中优先级更高(queue_order 更小),则自动切换
#[tauri::command]
pub async fn reset_circuit_breaker(
app_handle: tauri::AppHandle,
state: tauri::State<'_, AppState>,
provider_id: String,
app_type: String,
) -> Result<(), String> {
// 1. 重置数据库健康状态
// 重置数据库健康状态
let db = &state.db;
db.update_provider_health(&provider_id, &app_type, true, None)
.await
.map_err(|e| e.to_string())?;
// 2. 如果代理正在运行,重置内存中的熔断器状态
state
.proxy_service
.reset_provider_circuit_breaker(&provider_id, &app_type)
.await?;
// 3. 检查是否应该切回优先级更高的供应商(从 proxy_config 表读取)
// 只有当该应用已被代理接管(enabled=true)且开启了自动故障转移时才执行
let (app_enabled, auto_failover_enabled) = match db.get_proxy_config_for_app(&app_type).await {
Ok(config) => (config.enabled, config.auto_failover_enabled),
Err(e) => {
log::error!("[{app_type}] Failed to read proxy_config: {e}, defaulting to disabled");
(false, false)
}
};
if app_enabled && auto_failover_enabled && state.proxy_service.is_running().await {
// 获取当前供应商 ID
let current_id = db
.get_current_provider(&app_type)
.map_err(|e| e.to_string())?;
if let Some(current_id) = current_id {
// 获取故障转移队列
let queue = db
.get_failover_queue(&app_type)
.map_err(|e| e.to_string())?;
// 找到恢复的供应商和当前供应商在队列中的位置(使用 sort_index
let restored_order = queue
.iter()
.find(|item| item.provider_id == provider_id)
.and_then(|item| item.sort_index);
let current_order = queue
.iter()
.find(|item| item.provider_id == current_id)
.and_then(|item| item.sort_index);
// 如果恢复的供应商优先级更高(sort_index 更小),则切换
if let (Some(restored), Some(current)) = (restored_order, current_order) {
if restored < current {
log::info!(
"[Recovery] 供应商 {provider_id} 已恢复且优先级更高 (P{restored} vs P{current}),自动切换"
);
// 获取供应商名称用于日志和事件
let provider_name = db
.get_all_providers(&app_type)
.ok()
.and_then(|providers| providers.get(&provider_id).map(|p| p.name.clone()))
.unwrap_or_else(|| provider_id.clone());
// 创建故障转移切换管理器并执行切换
let switch_manager =
crate::proxy::failover_switch::FailoverSwitchManager::new(db.clone());
if let Err(e) = switch_manager
.try_switch(Some(&app_handle), &app_type, &provider_id, &provider_name)
.await
{
log::error!("[Recovery] 自动切换失败: {e}");
}
}
}
}
}
// 注意:熔断器状态在内存中,重启代理服务器后会重置
// 如果代理服务器正在运行,需要通知它重置熔断器
// 目前先通过数据库重置健康状态,熔断器会在下次超时后自动尝试半开
Ok(())
}
@@ -265,19 +142,9 @@ pub async fn update_circuit_breaker_config(
config: CircuitBreakerConfig,
) -> Result<(), String> {
let db = &state.db;
// 1. 更新数据库配置
db.update_circuit_breaker_config(&config)
.await
.map_err(|e| e.to_string())?;
// 2. 如果代理正在运行,热更新内存中的熔断器配置
state
.proxy_service
.update_circuit_breaker_configs(config)
.await?;
Ok(())
.map_err(|e| e.to_string())
}
/// 获取熔断器统计信息(仅当代理服务器运行时)
+127 -142
View File
@@ -1,17 +1,12 @@
//! Skills 命令层
//!
//! v3.10.0+ 统一管理架构:
//! - 支持三应用开关(Claude/Codex/Gemini
//! - SSOT 存储在 ~/.cc-switch/skills/
use crate::app_config::{AppType, InstalledSkill, UnmanagedSkill};
use crate::app_config::AppType;
use crate::error::format_skill_error;
use crate::services::skill::{DiscoverableSkill, Skill, SkillRepo, SkillService};
use crate::services::skill::SkillState;
use crate::services::{Skill, SkillRepo, SkillService};
use crate::store::AppState;
use chrono::Utc;
use std::sync::Arc;
use tauri::State;
/// SkillService 状态包装
pub struct SkillServiceState(pub Arc<SkillService>);
/// 解析 app 参数为 AppType
@@ -24,117 +19,65 @@ fn parse_app_type(app: &str) -> Result<AppType, String> {
}
}
// ========== 统一管理命令 ==========
/// 获取所有已安装的 Skills
#[tauri::command]
pub fn get_installed_skills(app_state: State<'_, AppState>) -> Result<Vec<InstalledSkill>, String> {
SkillService::get_all_installed(&app_state.db).map_err(|e| e.to_string())
/// 根据 app_type 生成带前缀的 skill key
fn get_skill_key(app_type: &AppType, directory: &str) -> String {
let prefix = match app_type {
AppType::Claude => "claude",
AppType::Codex => "codex",
AppType::Gemini => "gemini",
};
format!("{prefix}:{directory}")
}
/// 安装 Skill(新版统一安装)
///
/// 参数:
/// - skill: 从发现列表获取的技能信息
/// - current_app: 当前选中的应用,安装后默认启用该应用
#[tauri::command]
pub async fn install_skill_unified(
skill: DiscoverableSkill,
current_app: String,
service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<InstalledSkill, String> {
let app_type = parse_app_type(&current_app)?;
service
.0
.install(&app_state.db, &skill, &app_type)
.await
.map_err(|e| e.to_string())
}
/// 卸载 Skill(新版统一卸载)
#[tauri::command]
pub fn uninstall_skill_unified(id: String, app_state: State<'_, AppState>) -> Result<bool, String> {
SkillService::uninstall(&app_state.db, &id).map_err(|e| e.to_string())?;
Ok(true)
}
/// 切换 Skill 的应用启用状态
#[tauri::command]
pub fn toggle_skill_app(
id: String,
app: String,
enabled: bool,
app_state: State<'_, AppState>,
) -> Result<bool, String> {
let app_type = parse_app_type(&app)?;
SkillService::toggle_app(&app_state.db, &id, &app_type, enabled).map_err(|e| e.to_string())?;
Ok(true)
}
/// 扫描未管理的 Skills
#[tauri::command]
pub fn scan_unmanaged_skills(
app_state: State<'_, AppState>,
) -> Result<Vec<UnmanagedSkill>, String> {
SkillService::scan_unmanaged(&app_state.db).map_err(|e| e.to_string())
}
/// 从应用目录导入 Skills
#[tauri::command]
pub fn import_skills_from_apps(
directories: Vec<String>,
app_state: State<'_, AppState>,
) -> Result<Vec<InstalledSkill>, String> {
SkillService::import_from_apps(&app_state.db, directories).map_err(|e| e.to_string())
}
// ========== 发现功能命令 ==========
/// 发现可安装的 Skills(从仓库获取)
#[tauri::command]
pub async fn discover_available_skills(
service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<Vec<DiscoverableSkill>, String> {
let repos = app_state.db.get_skill_repos().map_err(|e| e.to_string())?;
service
.0
.discover_available(repos)
.await
.map_err(|e| e.to_string())
}
// ========== 兼容旧 API 的命令 ==========
/// 获取技能列表(兼容旧 API)
#[tauri::command]
pub async fn get_skills(
service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<Vec<Skill>, String> {
let repos = app_state.db.get_skill_repos().map_err(|e| e.to_string())?;
service
.0
.list_skills(repos, &app_state.db)
.await
.map_err(|e| e.to_string())
get_skills_for_app("claude".to_string(), service, app_state).await
}
/// 获取指定应用的技能列表(兼容旧 API)
#[tauri::command]
pub async fn get_skills_for_app(
app: String,
service: State<'_, SkillServiceState>,
_service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<Vec<Skill>, String> {
// 新版本不再区分应用,统一返回所有技能
let _ = parse_app_type(&app)?; // 验证 app 参数有效
get_skills(service, app_state).await
let app_type = parse_app_type(&app)?;
let service = SkillService::new_for_app(app_type.clone()).map_err(|e| e.to_string())?;
let repos = app_state.db.get_skill_repos().map_err(|e| e.to_string())?;
let skills = service
.list_skills(repos)
.await
.map_err(|e| e.to_string())?;
// 自动同步本地已安装的 skills 到数据库
// 这样用户在首次运行时,已有的 skills 会被自动记录
let existing_states = app_state.db.get_skills().unwrap_or_default();
for skill in &skills {
if skill.installed {
let key = get_skill_key(&app_type, &skill.directory);
if !existing_states.contains_key(&key) {
// 本地有该 skill,但数据库中没有记录,自动添加
if let Err(e) = app_state.db.update_skill_state(
&key,
&SkillState {
installed: true,
installed_at: Utc::now(),
},
) {
log::warn!("同步本地 skill {key} 状态到数据库失败: {e}");
}
}
}
}
Ok(skills)
}
/// 安装技能(兼容旧 API
#[tauri::command]
pub async fn install_skill(
directory: String,
@@ -144,34 +87,27 @@ pub async fn install_skill(
install_skill_for_app("claude".to_string(), directory, service, app_state).await
}
/// 安装指定应用的技能(兼容旧 API)
#[tauri::command]
pub async fn install_skill_for_app(
app: String,
directory: String,
service: State<'_, SkillServiceState>,
_service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<bool, String> {
let app_type = parse_app_type(&app)?;
let service = SkillService::new_for_app(app_type.clone()).map_err(|e| e.to_string())?;
// 先获取技能信息
// 先在不持有写锁的情况下收集仓库与技能信息
let repos = app_state.db.get_skill_repos().map_err(|e| e.to_string())?;
let skills = service
.0
.discover_available(repos)
.list_skills(repos)
.await
.map_err(|e| e.to_string())?;
let skill = skills
.into_iter()
.find(|s| {
let install_name = std::path::Path::new(&s.directory)
.file_name()
.map(|n| n.to_string_lossy().to_string())
.unwrap_or_else(|| s.directory.clone());
install_name.eq_ignore_ascii_case(&directory)
|| s.directory.eq_ignore_ascii_case(&directory)
})
.iter()
.find(|s| s.directory.eq_ignore_ascii_case(&directory))
.ok_or_else(|| {
format_skill_error(
"SKILL_NOT_FOUND",
@@ -180,54 +116,103 @@ pub async fn install_skill_for_app(
)
})?;
service
.0
.install(&app_state.db, &skill, &app_type)
.await
if !skill.installed {
let repo = SkillRepo {
owner: skill.repo_owner.clone().ok_or_else(|| {
format_skill_error(
"MISSING_REPO_INFO",
&[("directory", &directory), ("field", "owner")],
None,
)
})?,
name: skill.repo_name.clone().ok_or_else(|| {
format_skill_error(
"MISSING_REPO_INFO",
&[("directory", &directory), ("field", "name")],
None,
)
})?,
branch: skill
.repo_branch
.clone()
.unwrap_or_else(|| "main".to_string()),
enabled: true,
};
service
.install_skill(directory.clone(), repo)
.await
.map_err(|e| e.to_string())?;
}
let key = get_skill_key(&app_type, &directory);
app_state
.db
.update_skill_state(
&key,
&SkillState {
installed: true,
installed_at: Utc::now(),
},
)
.map_err(|e| e.to_string())?;
Ok(true)
}
/// 卸载技能(兼容旧 API
#[tauri::command]
pub fn uninstall_skill(directory: String, app_state: State<'_, AppState>) -> Result<bool, String> {
uninstall_skill_for_app("claude".to_string(), directory, app_state)
pub fn uninstall_skill(
directory: String,
service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<bool, String> {
uninstall_skill_for_app("claude".to_string(), directory, service, app_state)
}
/// 卸载指定应用的技能(兼容旧 API)
#[tauri::command]
pub fn uninstall_skill_for_app(
app: String,
directory: String,
_service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<bool, String> {
let _ = parse_app_type(&app)?; // 验证参数
let app_type = parse_app_type(&app)?;
let service = SkillService::new_for_app(app_type.clone()).map_err(|e| e.to_string())?;
// 通过 directory 找到对应的 skill id
let skills = SkillService::get_all_installed(&app_state.db).map_err(|e| e.to_string())?;
service
.uninstall_skill(directory.clone())
.map_err(|e| e.to_string())?;
let skill = skills
.into_iter()
.find(|s| s.directory.eq_ignore_ascii_case(&directory))
.ok_or_else(|| format!("未找到已安装的 Skill: {directory}"))?;
SkillService::uninstall(&app_state.db, &skill.id).map_err(|e| e.to_string())?;
// Remove from database by setting installed = false
let key = get_skill_key(&app_type, &directory);
app_state
.db
.update_skill_state(
&key,
&SkillState {
installed: false,
installed_at: Utc::now(),
},
)
.map_err(|e| e.to_string())?;
Ok(true)
}
// ========== 仓库管理命令 ==========
/// 获取技能仓库列表
#[tauri::command]
pub fn get_skill_repos(app_state: State<'_, AppState>) -> Result<Vec<SkillRepo>, String> {
pub fn get_skill_repos(
_service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<Vec<SkillRepo>, String> {
app_state.db.get_skill_repos().map_err(|e| e.to_string())
}
/// 添加技能仓库
#[tauri::command]
pub fn add_skill_repo(repo: SkillRepo, app_state: State<'_, AppState>) -> Result<bool, String> {
pub fn add_skill_repo(
repo: SkillRepo,
_service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<bool, String> {
app_state
.db
.save_skill_repo(&repo)
@@ -235,11 +220,11 @@ pub fn add_skill_repo(repo: SkillRepo, app_state: State<'_, AppState>) -> Result
Ok(true)
}
/// 删除技能仓库
#[tauri::command]
pub fn remove_skill_repo(
owner: String,
name: String,
_service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<bool, String> {
app_state
-106
View File
@@ -1,106 +0,0 @@
//! 流式健康检查命令
use crate::app_config::AppType;
use crate::error::AppError;
use crate::services::stream_check::{
HealthStatus, StreamCheckConfig, StreamCheckResult, StreamCheckService,
};
use crate::store::AppState;
use std::collections::HashSet;
use tauri::State;
/// 流式健康检查(单个供应商)
#[tauri::command]
pub async fn stream_check_provider(
state: State<'_, AppState>,
app_type: AppType,
provider_id: String,
) -> Result<StreamCheckResult, AppError> {
let config = state.db.get_stream_check_config()?;
let providers = state.db.get_all_providers(app_type.as_str())?;
let provider = providers
.get(&provider_id)
.ok_or_else(|| AppError::Message(format!("供应商 {provider_id} 不存在")))?;
let result = StreamCheckService::check_with_retry(&app_type, provider, &config).await?;
// 记录日志
let _ =
state
.db
.save_stream_check_log(&provider_id, &provider.name, app_type.as_str(), &result);
Ok(result)
}
/// 批量流式健康检查
#[tauri::command]
pub async fn stream_check_all_providers(
state: State<'_, AppState>,
app_type: AppType,
proxy_targets_only: bool,
) -> Result<Vec<(String, StreamCheckResult)>, AppError> {
let config = state.db.get_stream_check_config()?;
let providers = state.db.get_all_providers(app_type.as_str())?;
let mut results = Vec::new();
let allowed_ids: Option<HashSet<String>> = if proxy_targets_only {
let mut ids = HashSet::new();
if let Ok(Some(current_id)) = state.db.get_current_provider(app_type.as_str()) {
ids.insert(current_id);
}
if let Ok(queue) = state.db.get_failover_queue(app_type.as_str()) {
for item in queue {
ids.insert(item.provider_id);
}
}
Some(ids)
} else {
None
};
for (id, provider) in providers {
if let Some(ids) = &allowed_ids {
if !ids.contains(&id) {
continue;
}
}
let result = StreamCheckService::check_with_retry(&app_type, &provider, &config)
.await
.unwrap_or_else(|e| StreamCheckResult {
status: HealthStatus::Failed,
success: false,
message: e.to_string(),
response_time_ms: None,
http_status: None,
model_used: String::new(),
tested_at: chrono::Utc::now().timestamp(),
retry_count: 0,
});
let _ = state
.db
.save_stream_check_log(&id, &provider.name, app_type.as_str(), &result);
results.push((id, result));
}
Ok(results)
}
/// 获取流式检查配置
#[tauri::command]
pub fn get_stream_check_config(state: State<'_, AppState>) -> Result<StreamCheckConfig, AppError> {
state.db.get_stream_check_config()
}
/// 保存流式检查配置
#[tauri::command]
pub fn save_stream_check_config(
state: State<'_, AppState>,
config: StreamCheckConfig,
) -> Result<(), AppError> {
state.db.save_stream_check_config(&config)
}
+2 -3
View File
@@ -19,10 +19,9 @@ pub fn get_usage_summary(
#[tauri::command]
pub fn get_usage_trends(
state: State<'_, AppState>,
start_date: Option<i64>,
end_date: Option<i64>,
days: u32,
) -> Result<Vec<DailyStats>, AppError> {
state.db.get_daily_trends(start_date, end_date)
state.db.get_daily_trends(days)
}
/// 获取 Provider 统计
+22 -23
View File
@@ -13,8 +13,6 @@ use std::fs;
use std::path::{Path, PathBuf};
use tempfile::NamedTempFile;
const CC_SWITCH_SQL_EXPORT_HEADER: &str = "-- CC Switch SQLite 导出";
impl Database {
/// 导出为 SQLite 兼容的 SQL 文本
pub fn export_sql(&self, target_path: &Path) -> Result<(), AppError> {
@@ -38,8 +36,7 @@ impl Database {
}
let sql_raw = fs::read_to_string(source_path).map_err(|e| AppError::io(source_path, e))?;
let sql_content = sql_raw.trim_start_matches('\u{feff}');
Self::validate_cc_switch_sql_export(sql_content)?;
let sql_content = Self::sanitize_import_sql(&sql_raw);
// 导入前备份现有数据库
let backup_path = self.backup_database_file()?;
@@ -54,7 +51,7 @@ impl Database {
Connection::open(&temp_path).map_err(|e| AppError::Database(e.to_string()))?;
temp_conn
.execute_batch(sql_content)
.execute_batch(&sql_content)
.map_err(|e| AppError::Database(format!("执行 SQL 导入失败: {e}")))?;
// 补齐缺失表/索引并进行基础校验
@@ -96,17 +93,26 @@ impl Database {
Ok(snapshot)
}
fn validate_cc_switch_sql_export(sql: &str) -> Result<(), AppError> {
let trimmed = sql.trim_start();
if trimmed.starts_with(CC_SWITCH_SQL_EXPORT_HEADER) {
return Ok(());
/// 移除 SQLite 保留对象相关语句(如 sqlite_sequence),避免导入报错
fn sanitize_import_sql(sql: &str) -> String {
let mut cleaned = String::new();
let lower_keyword = "sqlite_sequence";
for stmt in sql.split(';') {
let trimmed = stmt.trim();
if trimmed.is_empty() {
continue;
}
if trimmed.to_ascii_lowercase().contains(lower_keyword) {
continue;
}
cleaned.push_str(trimmed);
cleaned.push_str(";\n");
}
Err(AppError::localized(
"backup.sql.invalid_format",
"仅支持导入由 CC Switch 导出的 SQL 备份文件。",
"Only SQL backups exported by CC Switch are supported.",
))
cleaned
}
/// 生成一致性快照备份,返回备份文件路径(不存在主库时返回 None)
@@ -123,15 +129,8 @@ impl Database {
fs::create_dir_all(&backup_dir).map_err(|e| AppError::io(&backup_dir, e))?;
let base_id = format!("db_backup_{}", Utc::now().format("%Y%m%d_%H%M%S"));
let mut backup_id = base_id.clone();
let mut backup_path = backup_dir.join(format!("{backup_id}.db"));
let mut counter = 1;
while backup_path.exists() {
backup_id = format!("{base_id}_{counter}");
backup_path = backup_dir.join(format!("{backup_id}.db"));
counter += 1;
}
let backup_id = format!("db_backup_{}", Utc::now().format("%Y%m%d_%H%M%S"));
let backup_path = backup_dir.join(format!("{backup_id}.db"));
{
let conn = lock_conn!(self.conn);
-146
View File
@@ -1,146 +0,0 @@
//! 故障转移队列 DAO
//!
//! 管理代理模式下的故障转移队列(基于 providers 表的 in_failover_queue 字段)
use crate::database::{lock_conn, Database};
use crate::error::AppError;
use crate::provider::Provider;
use serde::{Deserialize, Serialize};
/// 故障转移队列条目(简化版,用于前端展示)
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct FailoverQueueItem {
pub provider_id: String,
pub provider_name: String,
pub sort_index: Option<usize>,
}
impl Database {
/// 获取故障转移队列(按 sort_index 排序)
pub fn get_failover_queue(&self, app_type: &str) -> Result<Vec<FailoverQueueItem>, AppError> {
let conn = lock_conn!(self.conn);
let mut stmt = conn
.prepare(
"SELECT id, name, sort_index
FROM providers
WHERE app_type = ?1 AND in_failover_queue = 1
ORDER BY COALESCE(sort_index, 999999), id ASC",
)
.map_err(|e| AppError::Database(e.to_string()))?;
let items = stmt
.query_map([app_type], |row| {
Ok(FailoverQueueItem {
provider_id: row.get(0)?,
provider_name: row.get(1)?,
sort_index: row.get(2)?,
})
})
.map_err(|e| AppError::Database(e.to_string()))?
.collect::<Result<Vec<_>, _>>()
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(items)
}
/// 获取故障转移队列中的供应商(完整 Provider 信息,按顺序)
pub fn get_failover_providers(&self, app_type: &str) -> Result<Vec<Provider>, AppError> {
let all_providers = self.get_all_providers(app_type)?;
let result: Vec<Provider> = all_providers
.into_values()
.filter(|p| p.in_failover_queue)
.collect();
Ok(result)
}
/// 添加供应商到故障转移队列
pub fn add_to_failover_queue(&self, app_type: &str, provider_id: &str) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
conn.execute(
"UPDATE providers SET in_failover_queue = 1 WHERE id = ?1 AND app_type = ?2",
rusqlite::params![provider_id, app_type],
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(())
}
/// 从故障转移队列中移除供应商
pub fn remove_from_failover_queue(
&self,
app_type: &str,
provider_id: &str,
) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
// 1. 从队列中移除
conn.execute(
"UPDATE providers SET in_failover_queue = 0 WHERE id = ?1 AND app_type = ?2",
rusqlite::params![provider_id, app_type],
)
.map_err(|e| AppError::Database(e.to_string()))?;
// 2. 清除该供应商的健康状态(退出队列后不再需要健康监控)
conn.execute(
"DELETE FROM provider_health WHERE provider_id = ?1 AND app_type = ?2",
rusqlite::params![provider_id, app_type],
)
.map_err(|e| AppError::Database(e.to_string()))?;
log::info!("已从故障转移队列移除供应商 {provider_id} ({app_type}), 并清除其健康状态");
Ok(())
}
/// 清空故障转移队列
pub fn clear_failover_queue(&self, app_type: &str) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
conn.execute(
"UPDATE providers SET in_failover_queue = 0 WHERE app_type = ?1",
[app_type],
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(())
}
/// 检查供应商是否在故障转移队列中
pub fn is_in_failover_queue(
&self,
app_type: &str,
provider_id: &str,
) -> Result<bool, AppError> {
let conn = lock_conn!(self.conn);
let in_queue: bool = conn
.query_row(
"SELECT in_failover_queue FROM providers WHERE id = ?1 AND app_type = ?2",
rusqlite::params![provider_id, app_type],
|row| row.get(0),
)
.unwrap_or(false);
Ok(in_queue)
}
/// 获取可添加到故障转移队列的供应商(不在队列中的)
pub fn get_available_providers_for_failover(
&self,
app_type: &str,
) -> Result<Vec<Provider>, AppError> {
let all_providers = self.get_all_providers(app_type)?;
let available: Vec<Provider> = all_providers
.into_values()
.filter(|p| !p.in_failover_queue)
.collect();
Ok(available)
}
}
-5
View File
@@ -2,16 +2,11 @@
//!
//! Database access operations for each domain
pub mod failover;
pub mod mcp;
pub mod prompts;
pub mod providers;
pub mod proxy;
pub mod settings;
pub mod skills;
pub mod stream_check;
pub mod universal_providers;
// 所有 DAO 方法都通过 Database impl 提供,无需单独导出
// 导出 FailoverQueueItem 供外部使用
pub use failover::FailoverQueueItem;
+174 -24
View File
@@ -17,7 +17,7 @@ impl Database {
) -> Result<IndexMap<String, Provider>, AppError> {
let conn = lock_conn!(self.conn);
let mut stmt = conn.prepare(
"SELECT id, name, settings_config, website_url, category, created_at, sort_index, notes, icon, icon_color, meta, in_failover_queue
"SELECT id, name, settings_config, website_url, category, created_at, sort_index, notes, icon, icon_color, meta, is_proxy_target
FROM providers WHERE app_type = ?1
ORDER BY COALESCE(sort_index, 999999), created_at ASC, id ASC"
).map_err(|e| AppError::Database(e.to_string()))?;
@@ -35,7 +35,7 @@ impl Database {
let icon: Option<String> = row.get(8)?;
let icon_color: Option<String> = row.get(9)?;
let meta_str: String = row.get(10)?;
let in_failover_queue: bool = row.get(11)?;
let is_proxy_target: bool = row.get(11)?;
let settings_config =
serde_json::from_str(&settings_config_str).unwrap_or(serde_json::Value::Null);
@@ -55,7 +55,7 @@ impl Database {
meta: Some(meta),
icon,
icon_color,
in_failover_queue,
is_proxy_target: Some(is_proxy_target),
},
))
})
@@ -131,7 +131,7 @@ impl Database {
) -> Result<Option<Provider>, AppError> {
let conn = lock_conn!(self.conn);
let result = conn.query_row(
"SELECT name, settings_config, website_url, category, created_at, sort_index, notes, icon, icon_color, meta, in_failover_queue
"SELECT name, settings_config, website_url, category, created_at, sort_index, notes, icon, icon_color, meta, is_proxy_target
FROM providers WHERE id = ?1 AND app_type = ?2",
params![id, app_type],
|row| {
@@ -145,7 +145,7 @@ impl Database {
let icon: Option<String> = row.get(7)?;
let icon_color: Option<String> = row.get(8)?;
let meta_str: String = row.get(9)?;
let in_failover_queue: bool = row.get(10)?;
let is_proxy_target: bool = row.get(10)?;
let settings_config = serde_json::from_str(&settings_config_str).unwrap_or(serde_json::Value::Null);
let meta: ProviderMeta = serde_json::from_str(&meta_str).unwrap_or_default();
@@ -162,7 +162,7 @@ impl Database {
meta: Some(meta),
icon,
icon_color,
in_failover_queue,
is_proxy_target: Some(is_proxy_target),
})
},
);
@@ -174,6 +174,26 @@ impl Database {
}
}
/// 获取代理目标供应商 ID
pub fn get_proxy_target_provider(&self, app_type: &str) -> Result<Option<String>, AppError> {
let conn = lock_conn!(self.conn);
let mut stmt = conn
.prepare("SELECT id FROM providers WHERE app_type = ?1 AND is_proxy_target = 1 LIMIT 1")
.map_err(|e| AppError::Database(e.to_string()))?;
let mut rows = stmt
.query(params![app_type])
.map_err(|e| AppError::Database(e.to_string()))?;
if let Some(row) = rows.next().map_err(|e| AppError::Database(e.to_string()))? {
Ok(Some(
row.get(0).map_err(|e| AppError::Database(e.to_string()))?,
))
} else {
Ok(None)
}
}
/// 保存供应商(新增或更新)
///
/// 注意:更新模式下不同步 endpoints,因为编辑模式下端点通过单独的 API 管理
@@ -188,18 +208,17 @@ impl Database {
let mut meta_clone = provider.meta.clone().unwrap_or_default();
let endpoints = std::mem::take(&mut meta_clone.custom_endpoints);
// 检查是否存在(用于判断新增/更新,以及保留 is_current 和 in_failover_queue
// 检查是否存在(用于判断新增/更新,以及保留 is_current 和 is_proxy_target
let existing: Option<(bool, bool)> = tx
.query_row(
"SELECT is_current, in_failover_queue FROM providers WHERE id = ?1 AND app_type = ?2",
"SELECT is_current, is_proxy_target FROM providers WHERE id = ?1 AND app_type = ?2",
params![provider.id, app_type],
|row| Ok((row.get(0)?, row.get(1)?)),
)
.ok();
let is_update = existing.is_some();
let (is_current, in_failover_queue) =
existing.unwrap_or((false, provider.in_failover_queue));
let (is_current, is_proxy_target) = existing.unwrap_or((false, false));
if is_update {
// 更新模式:使用 UPDATE 避免触发 ON DELETE CASCADE
@@ -216,7 +235,7 @@ impl Database {
icon_color = ?9,
meta = ?10,
is_current = ?11,
in_failover_queue = ?12
is_proxy_target = ?12
WHERE id = ?13 AND app_type = ?14",
params![
provider.name,
@@ -230,7 +249,7 @@ impl Database {
provider.icon_color,
serde_json::to_string(&meta_clone).unwrap(),
is_current,
in_failover_queue,
is_proxy_target,
provider.id,
app_type,
],
@@ -241,7 +260,7 @@ impl Database {
tx.execute(
"INSERT INTO providers (
id, app_type, name, settings_config, website_url, category,
created_at, sort_index, notes, icon, icon_color, meta, is_current, in_failover_queue
created_at, sort_index, notes, icon, icon_color, meta, is_current, is_proxy_target
) VALUES (?1, ?2, ?3, ?4, ?5, ?6, ?7, ?8, ?9, ?10, ?11, ?12, ?13, ?14)",
params![
provider.id,
@@ -257,7 +276,7 @@ impl Database {
provider.icon_color,
serde_json::to_string(&meta_clone).unwrap(),
is_current,
in_failover_queue,
is_proxy_target,
],
)
.map_err(|e| AppError::Database(e.to_string()))?;
@@ -313,26 +332,157 @@ impl Database {
Ok(())
}
/// 更新供应商的 settings_config(仅更新配置,不改变其他字段)
pub fn update_provider_settings_config(
/// 设置代理目标供应商
pub fn set_proxy_target_provider(&self, app_type: &str, id: &str) -> Result<(), AppError> {
let mut conn = lock_conn!(self.conn);
let tx = conn
.transaction()
.map_err(|e| AppError::Database(e.to_string()))?;
// 重置所有为 0
tx.execute(
"UPDATE providers SET is_proxy_target = 0 WHERE app_type = ?1",
params![app_type],
)
.map_err(|e| AppError::Database(e.to_string()))?;
// 设置新的代理目标供应商
tx.execute(
"UPDATE providers SET is_proxy_target = 1 WHERE id = ?1 AND app_type = ?2",
params![id, app_type],
)
.map_err(|e| AppError::Database(e.to_string()))?;
tx.commit().map_err(|e| AppError::Database(e.to_string()))?;
Ok(())
}
/// 设置单个供应商的代理目标状态(支持多个代理目标)
pub async fn set_proxy_target(
&self,
app_type: &str,
provider_id: &str,
settings_config: &serde_json::Value,
app_type: &str,
enabled: bool,
) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
conn.execute(
"UPDATE providers SET settings_config = ?1 WHERE id = ?2 AND app_type = ?3",
params![
serde_json::to_string(settings_config).unwrap(),
provider_id,
app_type
],
"UPDATE providers SET is_proxy_target = ?1
WHERE id = ?2 AND app_type = ?3",
params![if enabled { 1 } else { 0 }, provider_id, app_type],
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(())
}
/// 获取指定应用类型的所有代理目标供应商(按 sort_index 排序)
pub async fn get_proxy_targets(
&self,
app_type: &str,
) -> Result<IndexMap<String, Provider>, AppError> {
let conn = lock_conn!(self.conn);
let mut stmt = conn.prepare(
"SELECT id, name, settings_config, website_url, category, created_at, sort_index, notes, icon, icon_color, meta, is_proxy_target
FROM providers WHERE app_type = ?1 AND is_proxy_target = 1
ORDER BY COALESCE(sort_index, 999999), created_at ASC, id ASC"
).map_err(|e| AppError::Database(e.to_string()))?;
let provider_iter = stmt
.query_map(params![app_type], |row| {
let id: String = row.get(0)?;
let name: String = row.get(1)?;
let settings_config_str: String = row.get(2)?;
let website_url: Option<String> = row.get(3)?;
let category: Option<String> = row.get(4)?;
let created_at: Option<i64> = row.get(5)?;
let sort_index: Option<usize> = row.get(6)?;
let notes: Option<String> = row.get(7)?;
let icon: Option<String> = row.get(8)?;
let icon_color: Option<String> = row.get(9)?;
let meta_str: String = row.get(10)?;
let is_proxy_target: bool = row.get(11)?;
let settings_config =
serde_json::from_str(&settings_config_str).unwrap_or(serde_json::Value::Null);
let meta: ProviderMeta = serde_json::from_str(&meta_str).unwrap_or_default();
Ok((
id,
Provider {
id: "".to_string(),
name,
settings_config,
website_url,
category,
created_at,
sort_index,
notes,
meta: Some(meta),
icon,
icon_color,
is_proxy_target: Some(is_proxy_target),
},
))
})
.map_err(|e| AppError::Database(e.to_string()))?;
let mut providers = IndexMap::new();
for provider_res in provider_iter {
let (id, mut provider) = provider_res.map_err(|e| AppError::Database(e.to_string()))?;
provider.id = id.clone();
// 加载 endpoints
let mut stmt_endpoints = conn.prepare(
"SELECT url, added_at FROM provider_endpoints WHERE provider_id = ?1 AND app_type = ?2 ORDER BY added_at ASC, url ASC"
).map_err(|e| AppError::Database(e.to_string()))?;
let endpoints_iter = stmt_endpoints
.query_map(params![id, app_type], |row| {
let url: String = row.get(0)?;
let added_at: Option<i64> = row.get(1)?;
Ok((
url,
crate::settings::CustomEndpoint {
url: "".to_string(),
added_at: added_at.unwrap_or(0),
last_used: None,
},
))
})
.map_err(|e| AppError::Database(e.to_string()))?;
let mut custom_endpoints = HashMap::new();
for ep_res in endpoints_iter {
let (url, mut ep) = ep_res.map_err(|e| AppError::Database(e.to_string()))?;
ep.url = url.clone();
custom_endpoints.insert(url, ep);
}
if let Some(meta) = &mut provider.meta {
meta.custom_endpoints = custom_endpoints;
}
providers.insert(id, provider);
}
Ok(providers)
}
/// 获取所有活跃的代理目标
pub fn get_all_proxy_targets(&self) -> Result<Vec<(String, String, String)>, AppError> {
let conn = lock_conn!(self.conn);
let mut stmt = conn
.prepare("SELECT app_type, name, id FROM providers WHERE is_proxy_target = 1")
.map_err(|e| AppError::Database(e.to_string()))?;
let targets = stmt
.query_map([], |row| Ok((row.get(0)?, row.get(1)?, row.get(2)?)))
.map_err(|e| AppError::Database(e.to_string()))?
.collect::<Result<Vec<_>, _>>()
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(targets)
}
/// 添加自定义端点
pub fn add_custom_endpoint(
&self,
+134 -430
View File
@@ -8,254 +8,61 @@ use crate::proxy::types::*;
use super::super::{lock_conn, Database};
impl Database {
// ==================== Global Proxy Config ====================
// ==================== Proxy Config ====================
/// 获取全局代理配置(统一字段)
///
/// 从 claude 行读取(三行镜像一致)
pub async fn get_global_proxy_config(&self) -> Result<GlobalProxyConfig, AppError> {
// 使用 block 限制 conn 的作用域,避免跨 await 持有锁
let result = {
let conn = lock_conn!(self.conn);
conn.query_row(
"SELECT proxy_enabled, listen_address, listen_port, enable_logging
FROM proxy_config WHERE app_type = 'claude'",
[],
|row| {
Ok(GlobalProxyConfig {
proxy_enabled: row.get::<_, i32>(0)? != 0,
listen_address: row.get(1)?,
listen_port: row.get::<_, i32>(2)? as u16,
enable_logging: row.get::<_, i32>(3)? != 0,
})
},
)
};
// conn 已在 block 结束时释放
match result {
Ok(config) => Ok(config),
Err(rusqlite::Error::QueryReturnedNoRows) => {
// 如果不存在,创建默认配置
self.init_proxy_config_rows().await?;
Ok(GlobalProxyConfig {
proxy_enabled: false,
listen_address: "127.0.0.1".to_string(),
listen_port: 5000,
enable_logging: true,
})
}
Err(e) => Err(AppError::Database(e.to_string())),
}
}
/// 更新全局代理配置(镜像写三行)
pub async fn update_global_proxy_config(
&self,
config: GlobalProxyConfig,
) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
conn.execute(
"UPDATE proxy_config SET
proxy_enabled = ?1,
listen_address = ?2,
listen_port = ?3,
enable_logging = ?4,
updated_at = datetime('now')",
rusqlite::params![
if config.proxy_enabled { 1 } else { 0 },
config.listen_address,
config.listen_port as i32,
if config.enable_logging { 1 } else { 0 },
],
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(())
}
/// 获取应用级代理配置
pub async fn get_proxy_config_for_app(
&self,
app_type: &str,
) -> Result<AppProxyConfig, AppError> {
// 使用 block 限制 conn 的作用域,避免跨 await 持有锁
let app_type_owned = app_type.to_string();
let result = {
let conn = lock_conn!(self.conn);
conn.query_row(
"SELECT app_type, enabled, auto_failover_enabled,
max_retries, streaming_first_byte_timeout, streaming_idle_timeout, non_streaming_timeout,
circuit_failure_threshold, circuit_success_threshold, circuit_timeout_seconds,
circuit_error_rate_threshold, circuit_min_requests
FROM proxy_config WHERE app_type = ?1",
[app_type],
|row| {
Ok(AppProxyConfig {
app_type: row.get(0)?,
enabled: row.get::<_, i32>(1)? != 0,
auto_failover_enabled: row.get::<_, i32>(2)? != 0,
max_retries: row.get::<_, i32>(3)? as u32,
streaming_first_byte_timeout: row.get::<_, i32>(4)? as u32,
streaming_idle_timeout: row.get::<_, i32>(5)? as u32,
non_streaming_timeout: row.get::<_, i32>(6)? as u32,
circuit_failure_threshold: row.get::<_, i32>(7)? as u32,
circuit_success_threshold: row.get::<_, i32>(8)? as u32,
circuit_timeout_seconds: row.get::<_, i32>(9)? as u32,
circuit_error_rate_threshold: row.get(10)?,
circuit_min_requests: row.get::<_, i32>(11)? as u32,
})
},
)
};
// conn 已在 block 结束时释放
match result {
Ok(config) => Ok(config),
Err(rusqlite::Error::QueryReturnedNoRows) => {
// 如果不存在,创建默认配置
self.init_proxy_config_rows().await?;
Ok(AppProxyConfig {
app_type: app_type_owned,
enabled: false,
auto_failover_enabled: false,
max_retries: 3,
streaming_first_byte_timeout: 60,
streaming_idle_timeout: 120,
non_streaming_timeout: 600,
circuit_failure_threshold: 4,
circuit_success_threshold: 2,
circuit_timeout_seconds: 60,
circuit_error_rate_threshold: 0.6,
circuit_min_requests: 10,
})
}
Err(e) => Err(AppError::Database(e.to_string())),
}
}
/// 更新应用级代理配置
pub async fn update_proxy_config_for_app(
&self,
config: AppProxyConfig,
) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
conn.execute(
"UPDATE proxy_config SET
enabled = ?2,
auto_failover_enabled = ?3,
max_retries = ?4,
streaming_first_byte_timeout = ?5,
streaming_idle_timeout = ?6,
non_streaming_timeout = ?7,
circuit_failure_threshold = ?8,
circuit_success_threshold = ?9,
circuit_timeout_seconds = ?10,
circuit_error_rate_threshold = ?11,
circuit_min_requests = ?12,
updated_at = datetime('now')
WHERE app_type = ?1",
rusqlite::params![
config.app_type,
if config.enabled { 1 } else { 0 },
if config.auto_failover_enabled { 1 } else { 0 },
config.max_retries as i32,
config.streaming_first_byte_timeout as i32,
config.streaming_idle_timeout as i32,
config.non_streaming_timeout as i32,
config.circuit_failure_threshold as i32,
config.circuit_success_threshold as i32,
config.circuit_timeout_seconds as i32,
config.circuit_error_rate_threshold,
config.circuit_min_requests as i32,
],
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(())
}
/// 初始化 proxy_config 表的三行数据
async fn init_proxy_config_rows(&self) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
for app_type in &["claude", "codex", "gemini"] {
conn.execute(
"INSERT OR IGNORE INTO proxy_config (app_type) VALUES (?1)",
[app_type],
)
.map_err(|e| AppError::Database(e.to_string()))?;
}
Ok(())
}
// ==================== Legacy Proxy Config (兼容旧代码) ====================
/// 获取代理配置(兼容旧接口,返回 claude 行的配置)
/// 获取代理配置
pub async fn get_proxy_config(&self) -> Result<ProxyConfig, AppError> {
// 使用 block 限制 conn 的作用域,避免跨 await 持有锁
// 在一个作用域内获取锁并查询,确保锁在await之前释放
let result = {
let conn = lock_conn!(self.conn);
conn.query_row(
"SELECT listen_address, listen_port, max_retries,
enable_logging,
streaming_first_byte_timeout, streaming_idle_timeout, non_streaming_timeout
FROM proxy_config WHERE app_type = 'claude'",
"SELECT enabled, listen_address, listen_port, max_retries,
request_timeout, enable_logging
FROM proxy_config WHERE id = 1",
[],
|row| {
Ok(ProxyConfig {
listen_address: row.get(0)?,
listen_port: row.get::<_, i32>(1)? as u16,
max_retries: row.get::<_, i32>(2)? as u8,
request_timeout: 600, // 废弃字段,返回默认值
enable_logging: row.get::<_, i32>(3)? != 0,
live_takeover_active: false, // 废弃字段
streaming_first_byte_timeout: row.get::<_, i32>(4).unwrap_or(60) as u64,
streaming_idle_timeout: row.get::<_, i32>(5).unwrap_or(120) as u64,
non_streaming_timeout: row.get::<_, i32>(6).unwrap_or(600) as u64,
enabled: row.get::<_, i32>(0)? != 0,
listen_address: row.get(1)?,
listen_port: row.get::<_, i32>(2)? as u16,
max_retries: row.get::<_, i32>(3)? as u8,
request_timeout: row.get::<_, i32>(4)? as u64,
enable_logging: row.get::<_, i32>(5)? != 0,
})
},
)
};
// conn 已在 block 结束时释放
}; // conn锁在这里释放
match result {
Ok(config) => Ok(config),
Err(rusqlite::Error::QueryReturnedNoRows) => {
// 如果不存在,初始化默认配置
self.init_proxy_config_rows().await?;
Ok(ProxyConfig::default())
// 如果不存在,插入默认配置
let default_config = ProxyConfig::default();
self.update_proxy_config(default_config.clone()).await?;
Ok(default_config)
}
Err(e) => Err(AppError::Database(e.to_string())),
}
}
/// 更新代理配置(兼容旧接口,更新所有三行的公共字段)
/// 更新代理配置
pub async fn update_proxy_config(&self, config: ProxyConfig) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
// 更新所有三行的公共字段
conn.execute(
"UPDATE proxy_config SET
listen_address = ?1,
listen_port = ?2,
max_retries = ?3,
enable_logging = ?4,
streaming_first_byte_timeout = ?5,
streaming_idle_timeout = ?6,
non_streaming_timeout = ?7,
updated_at = datetime('now')",
"INSERT OR REPLACE INTO proxy_config
(id, enabled, listen_address, listen_port, max_retries, request_timeout, enable_logging, target_app, created_at, updated_at)
VALUES (1, ?1, ?2, ?3, ?4, ?5, ?6, ?7,
COALESCE((SELECT created_at FROM proxy_config WHERE id = 1), datetime('now')),
datetime('now'))",
rusqlite::params![
if config.enabled { 1 } else { 0 },
config.listen_address,
config.listen_port as i32,
config.max_retries as i32,
config.request_timeout as i32,
if config.enable_logging { 1 } else { 0 },
config.streaming_first_byte_timeout as i32,
config.streaming_idle_timeout as i32,
config.non_streaming_timeout as i32,
"claude", // 兼容旧字段,写入默认值
],
)
.map_err(|e| AppError::Database(e.to_string()))?;
@@ -263,28 +70,6 @@ impl Database {
Ok(())
}
/// 设置 Live 接管状态(兼容旧版本,更新 enabled 字段)
pub async fn set_live_takeover_active(&self, _active: bool) -> Result<(), AppError> {
// 不再使用此字段,由 enabled 字段替代
// 保留空实现以兼容旧代码
Ok(())
}
/// 检查是否处于 Live 接管模式
///
/// 检查是否有任一 app 的 enabled = true
pub async fn is_live_takeover_active(&self) -> Result<bool, AppError> {
let conn = lock_conn!(self.conn);
let count: i64 = conn
.query_row(
"SELECT COUNT(*) FROM proxy_config WHERE enabled = 1",
[],
|row| row.get(0),
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(count > 0)
}
// ==================== Provider Health ====================
/// 获取Provider健康状态
@@ -293,73 +78,37 @@ impl Database {
provider_id: &str,
app_type: &str,
) -> Result<ProviderHealth, AppError> {
let result = {
let conn = lock_conn!(self.conn);
let conn = lock_conn!(self.conn);
conn.query_row(
"SELECT provider_id, app_type, is_healthy, consecutive_failures,
last_success_at, last_failure_at, last_error, updated_at
FROM provider_health
WHERE provider_id = ?1 AND app_type = ?2",
rusqlite::params![provider_id, app_type],
|row| {
Ok(ProviderHealth {
provider_id: row.get(0)?,
app_type: row.get(1)?,
is_healthy: row.get::<_, i64>(2)? != 0,
consecutive_failures: row.get::<_, i64>(3)? as u32,
last_success_at: row.get(4)?,
last_failure_at: row.get(5)?,
last_error: row.get(6)?,
updated_at: row.get(7)?,
})
},
)
};
match result {
Ok(health) => Ok(health),
// 缺少记录时视为健康(关闭后清空状态,再次打开时默认正常)
Err(rusqlite::Error::QueryReturnedNoRows) => Ok(ProviderHealth {
provider_id: provider_id.to_string(),
app_type: app_type.to_string(),
is_healthy: true,
consecutive_failures: 0,
last_success_at: None,
last_failure_at: None,
last_error: None,
updated_at: chrono::Utc::now().to_rfc3339(),
}),
Err(e) => Err(AppError::Database(e.to_string())),
}
conn.query_row(
"SELECT provider_id, app_type, is_healthy, consecutive_failures,
last_success_at, last_failure_at, last_error, updated_at
FROM provider_health
WHERE provider_id = ?1 AND app_type = ?2",
rusqlite::params![provider_id, app_type],
|row| {
Ok(ProviderHealth {
provider_id: row.get(0)?,
app_type: row.get(1)?,
is_healthy: row.get::<_, i64>(2)? != 0,
consecutive_failures: row.get::<_, i64>(3)? as u32,
last_success_at: row.get(4)?,
last_failure_at: row.get(5)?,
last_error: row.get(6)?,
updated_at: row.get(7)?,
})
},
)
.map_err(|e| AppError::Database(e.to_string()))
}
/// 更新Provider健康状态
///
/// 使用默认阈值(5)判断是否健康,建议使用 `update_provider_health_with_threshold` 传入配置的阈值
pub async fn update_provider_health(
&self,
provider_id: &str,
app_type: &str,
success: bool,
error_msg: Option<String>,
) -> Result<(), AppError> {
// 默认阈值与 CircuitBreakerConfig::default() 保持一致
self.update_provider_health_with_threshold(provider_id, app_type, success, error_msg, 5)
.await
}
/// 更新Provider健康状态(带阈值参数)
///
/// # Arguments
/// * `failure_threshold` - 连续失败多少次后标记为不健康
pub async fn update_provider_health_with_threshold(
&self,
provider_id: &str,
app_type: &str,
success: bool,
error_msg: Option<String>,
failure_threshold: u32,
) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
@@ -367,7 +116,7 @@ impl Database {
// 先查询当前状态
let current = conn.query_row(
"SELECT consecutive_failures FROM provider_health
"SELECT consecutive_failures FROM provider_health
WHERE provider_id = ?1 AND app_type = ?2",
rusqlite::params![provider_id, app_type],
|row| Ok(row.get::<_, i64>(0)? as u32),
@@ -379,8 +128,7 @@ impl Database {
} else {
// 失败:增加失败计数
let failures = current.unwrap_or(0) + 1;
// 使用传入的阈值而非硬编码
let healthy = if failures >= failure_threshold { 0 } else { 1 };
let healthy = if failures >= 3 { 0 } else { 1 };
(healthy, failures)
};
@@ -395,10 +143,10 @@ impl Database {
"INSERT OR REPLACE INTO provider_health
(provider_id, app_type, is_healthy, consecutive_failures,
last_success_at, last_failure_at, last_error, updated_at)
VALUES (?1, ?2, ?3, ?4,
COALESCE(?5, (SELECT last_success_at FROM provider_health
VALUES (?1, ?2, ?3, ?4,
COALESCE(?5, (SELECT last_success_at FROM provider_health
WHERE provider_id = ?1 AND app_type = ?2)),
COALESCE(?6, (SELECT last_failure_at FROM provider_health
COALESCE(?6, (SELECT last_failure_at FROM provider_health
WHERE provider_id = ?1 AND app_type = ?2)),
?7, ?8)",
rusqlite::params![
@@ -436,47 +184,96 @@ impl Database {
Ok(())
}
/// 清空指定应用的健康状态(关闭单个代理时使用)
pub async fn clear_provider_health_for_app(&self, app_type: &str) -> Result<(), AppError> {
// ==================== Proxy Usage (可选) ====================
/// 记录代理使用统计
#[allow(dead_code)]
pub async fn record_proxy_usage(&self, record: &ProxyUsageRecord) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
conn.execute(
"DELETE FROM provider_health WHERE app_type = ?1",
[app_type],
"INSERT INTO proxy_usage
(provider_id, app_type, endpoint, request_tokens, response_tokens,
status_code, latency_ms, error, timestamp)
VALUES (?1, ?2, ?3, ?4, ?5, ?6, ?7, ?8, ?9)",
rusqlite::params![
&record.provider_id,
&record.app_type,
&record.endpoint,
record.request_tokens,
record.response_tokens,
record.status_code as i64,
record.latency_ms as i64,
&record.error,
&record.timestamp,
],
)
.map_err(|e| AppError::Database(e.to_string()))?;
log::debug!("Cleared provider health records for app {app_type}");
Ok(())
}
/// 清空所有Provider健康状态(代理停止时调用)
pub async fn clear_all_provider_health(&self) -> Result<(), AppError> {
/// 查询最近的使用统计
#[allow(dead_code)]
pub async fn get_recent_usage(
&self,
provider_id: &str,
app_type: &str,
limit: usize,
) -> Result<Vec<ProxyUsageRecord>, AppError> {
let conn = lock_conn!(self.conn);
conn.execute("DELETE FROM provider_health", [])
let mut stmt = conn
.prepare(
"SELECT provider_id, app_type, endpoint, request_tokens, response_tokens,
status_code, latency_ms, error, timestamp
FROM proxy_usage
WHERE provider_id = ?1 AND app_type = ?2
ORDER BY timestamp DESC
LIMIT ?3",
)
.map_err(|e| AppError::Database(e.to_string()))?;
log::debug!("Cleared all provider health records");
Ok(())
let rows = stmt
.query_map(
rusqlite::params![provider_id, app_type, limit as i64],
|row| {
Ok(ProxyUsageRecord {
provider_id: row.get(0)?,
app_type: row.get(1)?,
endpoint: row.get(2)?,
request_tokens: row.get(3)?,
response_tokens: row.get(4)?,
status_code: row.get::<_, i64>(5)? as u16,
latency_ms: row.get::<_, i64>(6)? as u64,
error: row.get(7)?,
timestamp: row.get(8)?,
})
},
)
.map_err(|e| AppError::Database(e.to_string()))?;
let mut records = Vec::new();
for row in rows {
records.push(row.map_err(|e| AppError::Database(e.to_string()))?);
}
Ok(records)
}
// ==================== Circuit Breaker Config (Legacy Compatibility) ====================
// ==================== Circuit Breaker Config ====================
/// 获取熔断器配置(兼容旧接口,从 claude 行读取)
///
/// 熔断器配置已合并到 proxy_config 表,每 app 独立
/// 此方法保留用于兼容旧代码,建议使用 get_proxy_config_for_app
/// 获取熔断器配置
pub async fn get_circuit_breaker_config(
&self,
) -> Result<crate::proxy::circuit_breaker::CircuitBreakerConfig, AppError> {
// 使用 block 限制 conn 的作用域,避免跨 await 持有锁
let result = {
let conn = lock_conn!(self.conn);
conn.query_row(
"SELECT circuit_failure_threshold, circuit_success_threshold, circuit_timeout_seconds,
circuit_error_rate_threshold, circuit_min_requests
FROM proxy_config WHERE app_type = 'claude'",
let conn = lock_conn!(self.conn);
let config = conn
.query_row(
"SELECT failure_threshold, success_threshold, timeout_seconds,
error_rate_threshold, min_requests
FROM circuit_breaker_config WHERE id = 1",
[],
|row| {
Ok(crate::proxy::circuit_breaker::CircuitBreakerConfig {
@@ -488,39 +285,27 @@ impl Database {
})
},
)
};
// conn 已在 block 结束时释放
.map_err(|e| AppError::Database(e.to_string()))?;
match result {
Ok(config) => Ok(config),
Err(rusqlite::Error::QueryReturnedNoRows) => {
// 如果不存在,初始化默认配置
self.init_proxy_config_rows().await?;
Ok(crate::proxy::circuit_breaker::CircuitBreakerConfig::default())
}
Err(e) => Err(AppError::Database(e.to_string())),
}
Ok(config)
}
/// 更新熔断器配置(兼容旧接口,更新所有三行)
///
/// 熔断器配置已合并到 proxy_config 表
/// 此方法保留用于兼容旧代码,建议使用 update_proxy_config_for_app
/// 更新熔断器配置
pub async fn update_circuit_breaker_config(
&self,
config: &crate::proxy::circuit_breaker::CircuitBreakerConfig,
) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
// 更新所有三行的熔断器配置
conn.execute(
"UPDATE proxy_config SET
circuit_failure_threshold = ?1,
circuit_success_threshold = ?2,
circuit_timeout_seconds = ?3,
circuit_error_rate_threshold = ?4,
circuit_min_requests = ?5,
updated_at = datetime('now')",
"UPDATE circuit_breaker_config
SET failure_threshold = ?1,
success_threshold = ?2,
timeout_seconds = ?3,
error_rate_threshold = ?4,
min_requests = ?5,
updated_at = CURRENT_TIMESTAMP
WHERE id = 1",
rusqlite::params![
config.failure_threshold as i32,
config.success_threshold as i32,
@@ -533,85 +318,4 @@ impl Database {
Ok(())
}
// ==================== Live Backup ====================
/// 保存 Live 配置备份
pub async fn save_live_backup(
&self,
app_type: &str,
config_json: &str,
) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
let now = chrono::Utc::now().to_rfc3339();
conn.execute(
"INSERT OR REPLACE INTO proxy_live_backup (app_type, original_config, backed_up_at)
VALUES (?1, ?2, ?3)",
rusqlite::params![app_type, config_json, now],
)
.map_err(|e| AppError::Database(e.to_string()))?;
log::info!("已备份 {app_type} Live 配置");
Ok(())
}
/// 检查是否存在任意 Live 配置备份
pub async fn has_any_live_backup(&self) -> Result<bool, AppError> {
let conn = lock_conn!(self.conn);
let count: i64 = conn
.query_row("SELECT COUNT(*) FROM proxy_live_backup", [], |row| {
row.get(0)
})
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(count > 0)
}
/// 获取 Live 配置备份
pub async fn get_live_backup(&self, app_type: &str) -> Result<Option<LiveBackup>, AppError> {
let conn = lock_conn!(self.conn);
let result = conn.query_row(
"SELECT app_type, original_config, backed_up_at FROM proxy_live_backup WHERE app_type = ?1",
rusqlite::params![app_type],
|row| {
Ok(LiveBackup {
app_type: row.get(0)?,
original_config: row.get(1)?,
backed_up_at: row.get(2)?,
})
},
);
match result {
Ok(backup) => Ok(Some(backup)),
Err(rusqlite::Error::QueryReturnedNoRows) => Ok(None),
Err(e) => Err(AppError::Database(e.to_string())),
}
}
/// 删除 Live 配置备份
pub async fn delete_live_backup(&self, app_type: &str) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
conn.execute(
"DELETE FROM proxy_live_backup WHERE app_type = ?1",
rusqlite::params![app_type],
)
.map_err(|e| AppError::Database(e.to_string()))?;
log::info!("已删除 {app_type} Live 配置备份");
Ok(())
}
/// 删除所有 Live 配置备份
pub async fn delete_all_live_backups(&self) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
conn.execute("DELETE FROM proxy_live_backup", [])
.map_err(|e| AppError::Database(e.to_string()))?;
log::info!("已删除所有 Live 配置备份");
Ok(())
}
}
-66
View File
@@ -62,70 +62,4 @@ impl Database {
Ok(())
}
}
// --- 代理接管状态管理(已废弃,使用 proxy_config.enabled 替代)---
/// 获取指定应用的代理接管状态
///
/// **已废弃**: 请使用 `proxy_config.enabled` 字段替代
/// 此方法仅用于数据库迁移时读取旧数据
#[deprecated(since = "3.9.0", note = "使用 get_proxy_config_for_app().enabled 替代")]
pub fn get_proxy_takeover_enabled(&self, app_type: &str) -> Result<bool, AppError> {
let key = format!("proxy_takeover_{app_type}");
match self.get_setting(&key)? {
Some(value) => Ok(value == "true"),
None => Ok(false),
}
}
/// 设置指定应用的代理接管状态
///
/// **已废弃**: 请使用 `proxy_config.enabled` 字段替代
#[deprecated(
since = "3.9.0",
note = "使用 update_proxy_config_for_app() 修改 enabled 字段"
)]
pub fn set_proxy_takeover_enabled(
&self,
app_type: &str,
enabled: bool,
) -> Result<(), AppError> {
let key = format!("proxy_takeover_{app_type}");
let value = if enabled { "true" } else { "false" };
self.set_setting(&key, value)
}
/// 检查是否有任一应用开启了代理接管
///
/// **已废弃**: 请使用 `is_live_takeover_active()` 替代
#[deprecated(since = "3.9.0", note = "使用 is_live_takeover_active() 替代")]
pub fn has_any_proxy_takeover(&self) -> Result<bool, AppError> {
let conn = lock_conn!(self.conn);
let count: i64 = conn
.query_row(
"SELECT COUNT(*) FROM settings WHERE key LIKE 'proxy_takeover_%' AND value = 'true'",
[],
|row| row.get(0),
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(count > 0)
}
/// 清除所有代理接管状态(将所有 proxy_takeover_* 设置为 false
///
/// **已废弃**: settings 表不再用于存储代理状态
#[deprecated(
since = "3.9.0",
note = "使用 update_proxy_config_for_app() 清除各应用的 enabled 字段"
)]
pub fn clear_all_proxy_takeover(&self) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
conn.execute(
"UPDATE settings SET value = 'false' WHERE key LIKE 'proxy_takeover_%'",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
log::info!("已清除所有代理接管状态");
Ok(())
}
}
+37 -121
View File
@@ -1,156 +1,73 @@
//! Skills 数据访问对象
//!
//! 提供 Skills 和 Skill Repos 的 CRUD 操作。
//!
//! v3.10.0+ 统一管理架构:
//! - Skills 使用统一的 id 主键,支持三应用启用标志
//! - 实际文件存储在 ~/.cc-switch/skills/,同步到各应用目录
use crate::app_config::{InstalledSkill, SkillApps};
use crate::database::{lock_conn, Database};
use crate::error::AppError;
use crate::services::skill::SkillRepo;
use crate::services::skill::{SkillRepo, SkillState};
use indexmap::IndexMap;
use rusqlite::params;
impl Database {
// ========== InstalledSkill CRUD ==========
/// 获取所有已安装的 Skills
pub fn get_all_installed_skills(&self) -> Result<IndexMap<String, InstalledSkill>, AppError> {
/// 获取所有 Skills 状态
pub fn get_skills(&self) -> Result<IndexMap<String, SkillState>, AppError> {
let conn = lock_conn!(self.conn);
let mut stmt = conn
.prepare(
"SELECT id, name, description, directory, repo_owner, repo_name, repo_branch,
readme_url, enabled_claude, enabled_codex, enabled_gemini, installed_at
FROM skills ORDER BY name ASC",
)
.prepare("SELECT directory, app_type, installed, installed_at FROM skills ORDER BY directory ASC, app_type ASC")
.map_err(|e| AppError::Database(e.to_string()))?;
let skill_iter = stmt
.query_map([], |row| {
Ok(InstalledSkill {
id: row.get(0)?,
name: row.get(1)?,
description: row.get(2)?,
directory: row.get(3)?,
repo_owner: row.get(4)?,
repo_name: row.get(5)?,
repo_branch: row.get(6)?,
readme_url: row.get(7)?,
apps: SkillApps {
claude: row.get(8)?,
codex: row.get(9)?,
gemini: row.get(10)?,
let directory: String = row.get(0)?;
let app_type: String = row.get(1)?;
let installed: bool = row.get(2)?;
let installed_at_ts: i64 = row.get(3)?;
let installed_at =
chrono::DateTime::from_timestamp(installed_at_ts, 0).unwrap_or_default();
// 构建复合 key"app_type:directory"
let key = format!("{app_type}:{directory}");
Ok((
key,
SkillState {
installed,
installed_at,
},
installed_at: row.get(11)?,
})
))
})
.map_err(|e| AppError::Database(e.to_string()))?;
let mut skills = IndexMap::new();
for skill_res in skill_iter {
let skill = skill_res.map_err(|e| AppError::Database(e.to_string()))?;
skills.insert(skill.id.clone(), skill);
let (key, skill) = skill_res.map_err(|e| AppError::Database(e.to_string()))?;
skills.insert(key, skill);
}
Ok(skills)
}
/// 获取单个已安装的 Skill
pub fn get_installed_skill(&self, id: &str) -> Result<Option<InstalledSkill>, AppError> {
let conn = lock_conn!(self.conn);
let mut stmt = conn
.prepare(
"SELECT id, name, description, directory, repo_owner, repo_name, repo_branch,
readme_url, enabled_claude, enabled_codex, enabled_gemini, installed_at
FROM skills WHERE id = ?1",
)
.map_err(|e| AppError::Database(e.to_string()))?;
/// 更新 Skill 状态
/// key 格式为 "app_type:directory"
pub fn update_skill_state(&self, key: &str, state: &SkillState) -> Result<(), AppError> {
// 解析 key
let (app_type, directory) = if let Some(idx) = key.find(':') {
let (app, dir) = key.split_at(idx);
(app, &dir[1..]) // 跳过冒号
} else {
// 向后兼容:如果没有前缀,默认为 claude
("claude", key)
};
let result = stmt.query_row([id], |row| {
Ok(InstalledSkill {
id: row.get(0)?,
name: row.get(1)?,
description: row.get(2)?,
directory: row.get(3)?,
repo_owner: row.get(4)?,
repo_name: row.get(5)?,
repo_branch: row.get(6)?,
readme_url: row.get(7)?,
apps: SkillApps {
claude: row.get(8)?,
codex: row.get(9)?,
gemini: row.get(10)?,
},
installed_at: row.get(11)?,
})
});
match result {
Ok(skill) => Ok(Some(skill)),
Err(rusqlite::Error::QueryReturnedNoRows) => Ok(None),
Err(e) => Err(AppError::Database(e.to_string())),
}
}
/// 保存 Skill(添加或更新)
pub fn save_skill(&self, skill: &InstalledSkill) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
conn.execute(
"INSERT OR REPLACE INTO skills
(id, name, description, directory, repo_owner, repo_name, repo_branch,
readme_url, enabled_claude, enabled_codex, enabled_gemini, installed_at)
VALUES (?1, ?2, ?3, ?4, ?5, ?6, ?7, ?8, ?9, ?10, ?11, ?12)",
params![
skill.id,
skill.name,
skill.description,
skill.directory,
skill.repo_owner,
skill.repo_name,
skill.repo_branch,
skill.readme_url,
skill.apps.claude,
skill.apps.codex,
skill.apps.gemini,
skill.installed_at,
],
"INSERT OR REPLACE INTO skills (directory, app_type, installed, installed_at) VALUES (?1, ?2, ?3, ?4)",
params![directory, app_type, state.installed, state.installed_at.timestamp()],
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(())
}
/// 删除 Skill
pub fn delete_skill(&self, id: &str) -> Result<bool, AppError> {
let conn = lock_conn!(self.conn);
let affected = conn
.execute("DELETE FROM skills WHERE id = ?1", params![id])
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(affected > 0)
}
/// 清空所有 Skills(用于迁移)
pub fn clear_skills(&self) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
conn.execute("DELETE FROM skills", [])
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(())
}
/// 更新 Skill 的应用启用状态
pub fn update_skill_apps(&self, id: &str, apps: &SkillApps) -> Result<bool, AppError> {
let conn = lock_conn!(self.conn);
let affected = conn
.execute(
"UPDATE skills SET enabled_claude = ?1, enabled_codex = ?2, enabled_gemini = ?3 WHERE id = ?4",
params![apps.claude, apps.codex, apps.gemini, id],
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(affected > 0)
}
// ========== SkillRepo CRUD(保持原有) ==========
/// 获取所有 Skill 仓库
pub fn get_skill_repos(&self) -> Result<Vec<SkillRepo>, AppError> {
let conn = lock_conn!(self.conn);
@@ -184,8 +101,7 @@ impl Database {
conn.execute(
"INSERT OR REPLACE INTO skill_repos (owner, name, branch, enabled) VALUES (?1, ?2, ?3, ?4)",
params![repo.owner, repo.name, repo.branch, repo.enabled],
)
.map_err(|e| AppError::Database(e.to_string()))?;
).map_err(|e| AppError::Database(e.to_string()))?;
Ok(())
}
@@ -1,57 +0,0 @@
//! 流式健康检查日志 DAO
use crate::database::{lock_conn, Database};
use crate::error::AppError;
use crate::services::stream_check::{StreamCheckConfig, StreamCheckResult};
impl Database {
/// 保存流式检查日志
pub fn save_stream_check_log(
&self,
provider_id: &str,
provider_name: &str,
app_type: &str,
result: &StreamCheckResult,
) -> Result<i64, AppError> {
let conn = lock_conn!(self.conn);
conn.execute(
"INSERT INTO stream_check_logs
(provider_id, provider_name, app_type, status, success, message,
response_time_ms, http_status, model_used, retry_count, tested_at)
VALUES (?1, ?2, ?3, ?4, ?5, ?6, ?7, ?8, ?9, ?10, ?11)",
rusqlite::params![
provider_id,
provider_name,
app_type,
format!("{:?}", result.status).to_lowercase(),
result.success,
result.message,
result.response_time_ms.map(|t| t as i64),
result.http_status.map(|s| s as i64),
result.model_used,
result.retry_count as i64,
result.tested_at,
],
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(conn.last_insert_rowid())
}
/// 获取流式检查配置
pub fn get_stream_check_config(&self) -> Result<StreamCheckConfig, AppError> {
match self.get_setting("stream_check_config")? {
Some(json) => serde_json::from_str(&json)
.map_err(|e| AppError::Message(format!("解析配置失败: {e}"))),
None => Ok(StreamCheckConfig::default()),
}
}
/// 保存流式检查配置
pub fn save_stream_check_config(&self, config: &StreamCheckConfig) -> Result<(), AppError> {
let json = serde_json::to_string(config)
.map_err(|e| AppError::Message(format!("序列化配置失败: {e}")))?;
self.set_setting("stream_check_config", &json)
}
}
@@ -1,74 +0,0 @@
//! 统一供应商 (Universal Provider) DAO
//!
//! 提供统一供应商的 CRUD 操作。
use crate::database::{lock_conn, to_json_string, Database};
use crate::error::AppError;
use crate::provider::UniversalProvider;
use std::collections::HashMap;
/// 统一供应商的 Settings Key
const UNIVERSAL_PROVIDERS_KEY: &str = "universal_providers";
impl Database {
/// 获取所有统一供应商
pub fn get_all_universal_providers(
&self,
) -> Result<HashMap<String, UniversalProvider>, AppError> {
let conn = lock_conn!(self.conn);
let mut stmt = conn
.prepare("SELECT value FROM settings WHERE key = ?")
.map_err(|e| AppError::Database(e.to_string()))?;
let result: Option<String> = stmt
.query_row([UNIVERSAL_PROVIDERS_KEY], |row| row.get(0))
.ok();
match result {
Some(json) => serde_json::from_str(&json)
.map_err(|e| AppError::Database(format!("解析统一供应商数据失败: {e}"))),
None => Ok(HashMap::new()),
}
}
/// 获取单个统一供应商
pub fn get_universal_provider(&self, id: &str) -> Result<Option<UniversalProvider>, AppError> {
let providers = self.get_all_universal_providers()?;
Ok(providers.get(id).cloned())
}
/// 保存统一供应商(添加或更新)
pub fn save_universal_provider(&self, provider: &UniversalProvider) -> Result<(), AppError> {
let mut providers = self.get_all_universal_providers()?;
providers.insert(provider.id.clone(), provider.clone());
self.save_all_universal_providers(&providers)
}
/// 删除统一供应商
pub fn delete_universal_provider(&self, id: &str) -> Result<bool, AppError> {
let mut providers = self.get_all_universal_providers()?;
let existed = providers.remove(id).is_some();
if existed {
self.save_all_universal_providers(&providers)?;
}
Ok(existed)
}
/// 保存所有统一供应商(内部方法)
fn save_all_universal_providers(
&self,
providers: &HashMap<String, UniversalProvider>,
) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
let json = to_json_string(providers)?;
conn.execute(
"INSERT OR REPLACE INTO settings (key, value) VALUES (?, ?)",
[UNIVERSAL_PROVIDERS_KEY, &json],
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(())
}
}
+7 -10
View File
@@ -192,16 +192,13 @@ impl Database {
tx: &rusqlite::Transaction<'_>,
config: &MultiAppConfig,
) -> Result<(), AppError> {
// v3.10.0+Skills 的 SSOT 已迁移到文件系统(~/.cc-switch/skills/+ 数据库统一结构。
//
// 旧版 config.json 里的 `skills.skills` 仅记录“安装状态”,但不包含完整元数据,
// 且无法保证 SSOT 目录中一定存在对应的 skill 文件。
//
// 因此这里不再直接把旧的安装状态写入新 skills 表,避免产生“数据库显示已安装但文件缺失”的不一致。
// 迁移后可通过:
// - 前端「导入已有」(扫描各应用的 skills 目录并复制到 SSOT)
// - 或后续启动时的自动扫描逻辑
// 来重建已安装技能记录。
for (key, state) in &config.skills.skills {
tx.execute(
"INSERT OR REPLACE INTO skills (key, installed, installed_at) VALUES (?1, ?2, ?3)",
params![key, state.installed, state.installed_at.timestamp()],
)
.map_err(|e| AppError::Database(format!("Migrate skill failed: {e}")))?;
}
for repo in &config.skills.repos {
tx.execute(
+1 -4
View File
@@ -31,9 +31,6 @@ mod schema;
#[cfg(test)]
mod tests;
// DAO 类型导出供外部使用
pub use dao::FailoverQueueItem;
use crate::config::get_app_config_dir;
use crate::error::AppError;
use rusqlite::Connection;
@@ -47,7 +44,7 @@ const DB_BACKUP_RETAIN: usize = 10;
/// 当前 Schema 版本号
/// 每次修改表结构时递增,并在 schema.rs 中添加相应的迁移逻辑
pub(crate) const SCHEMA_VERSION: i32 = 3;
pub(crate) const SCHEMA_VERSION: i32 = 2;
/// 安全地序列化 JSON,避免 unwrap panic
pub(crate) fn to_json_string<T: Serialize>(value: &T) -> Result<String, AppError> {
File diff suppressed because it is too large Load Diff
+8 -54
View File
@@ -53,6 +53,7 @@ const LEGACY_SCHEMA_SQL: &str = r#"
#[derive(Debug)]
struct ColumnInfo {
name: String,
r#type: String,
notnull: i64,
default: Option<String>,
@@ -64,9 +65,10 @@ fn get_column_info(conn: &Connection, table: &str, column: &str) -> ColumnInfo {
.expect("prepare pragma");
let mut rows = stmt.query([]).expect("query pragma");
while let Some(row) = rows.next().expect("read row") {
let column_name: String = row.get(1).expect("name");
if column_name.eq_ignore_ascii_case(column) {
let name: String = row.get(1).expect("name");
if name.eq_ignore_ascii_case(column) {
return ColumnInfo {
name,
r#type: row.get::<_, String>(2).expect("type"),
notnull: row.get::<_, i64>(3).expect("notnull"),
default: row.get::<_, Option<String>>(4).ok().flatten(),
@@ -199,53 +201,6 @@ fn migration_aligns_column_defaults_and_types() {
);
}
#[test]
fn create_tables_repairs_legacy_proxy_config_singleton_to_per_app() {
let conn = Connection::open_in_memory().expect("open memory db");
// 模拟测试版 v2user_version=2,但 proxy_config 仍是单例结构(无 app_type
Database::set_user_version(&conn, 2).expect("set user_version");
conn.execute_batch(
r#"
CREATE TABLE proxy_config (
id INTEGER PRIMARY KEY,
enabled INTEGER NOT NULL DEFAULT 0,
listen_address TEXT NOT NULL DEFAULT '127.0.0.1',
listen_port INTEGER NOT NULL DEFAULT 5000,
max_retries INTEGER NOT NULL DEFAULT 3,
request_timeout INTEGER NOT NULL DEFAULT 300,
enable_logging INTEGER NOT NULL DEFAULT 1,
target_app TEXT NOT NULL DEFAULT 'claude',
created_at TEXT NOT NULL DEFAULT (datetime('now')),
updated_at TEXT NOT NULL DEFAULT (datetime('now'))
);
INSERT INTO proxy_config (id, enabled) VALUES (1, 1);
"#,
)
.expect("seed legacy proxy_config");
Database::create_tables_on_conn(&conn).expect("create tables should repair proxy_config");
assert!(
Database::has_column(&conn, "proxy_config", "app_type").expect("check app_type"),
"proxy_config should be migrated to per-app structure"
);
let count: i32 = conn
.query_row("SELECT COUNT(*) FROM proxy_config", [], |r| r.get(0))
.expect("count rows");
assert_eq!(count, 3, "per-app proxy_config should have 3 rows");
// 新结构下应能按 app_type 查询
let _: i32 = conn
.query_row(
"SELECT COUNT(*) FROM proxy_config WHERE app_type = 'claude'",
[],
|r| r.get(0),
)
.expect("query by app_type");
}
#[test]
fn dry_run_does_not_write_to_disk() {
// Create minimal valid config for migration
@@ -290,14 +245,13 @@ fn dry_run_validates_schema_compatibility() {
meta: None,
icon: None,
icon_color: None,
in_failover_queue: false,
is_proxy_target: Some(false),
},
);
let manager = ProviderManager {
providers,
current: "test-provider".to_string(),
};
let mut manager = ProviderManager::default();
manager.providers = providers;
manager.current = "test-provider".to_string();
let mut apps = HashMap::new();
apps.insert("claude".to_string(), manager);
-23
View File
@@ -113,27 +113,4 @@ pub struct DeepLinkImportRequest {
/// Remote config URL
#[serde(skip_serializing_if = "Option::is_none")]
pub config_url: Option<String>,
// ============ Usage script fields (v3.9+) ============
/// Whether to enable usage query (default: true if usage_script is provided)
#[serde(skip_serializing_if = "Option::is_none")]
pub usage_enabled: Option<bool>,
/// Base64 encoded usage query script code
#[serde(skip_serializing_if = "Option::is_none")]
pub usage_script: Option<String>,
/// Usage query API key (if different from provider API key)
#[serde(skip_serializing_if = "Option::is_none")]
pub usage_api_key: Option<String>,
/// Usage query base URL (if different from provider endpoint)
#[serde(skip_serializing_if = "Option::is_none")]
pub usage_base_url: Option<String>,
/// Usage query access token (for NewAPI template)
#[serde(skip_serializing_if = "Option::is_none")]
pub usage_access_token: Option<String>,
/// Usage query user ID (for NewAPI template)
#[serde(skip_serializing_if = "Option::is_none")]
pub usage_user_id: Option<String>,
/// Auto query interval in minutes (0 to disable)
#[serde(skip_serializing_if = "Option::is_none")]
pub usage_auto_interval: Option<u64>,
}
-41
View File
@@ -122,19 +122,6 @@ fn parse_provider_deeplink(
let config_url = params.get("configUrl").cloned();
let enabled = params.get("enabled").and_then(|v| v.parse::<bool>().ok());
// Extract usage script fields (v3.9+)
let usage_enabled = params
.get("usageEnabled")
.and_then(|v| v.parse::<bool>().ok());
let usage_script = params.get("usageScript").cloned();
let usage_api_key = params.get("usageApiKey").cloned();
let usage_base_url = params.get("usageBaseUrl").cloned();
let usage_access_token = params.get("usageAccessToken").cloned();
let usage_user_id = params.get("usageUserId").cloned();
let usage_auto_interval = params
.get("usageAutoInterval")
.and_then(|v| v.parse::<u64>().ok());
Ok(DeepLinkImportRequest {
version,
resource,
@@ -159,13 +146,6 @@ fn parse_provider_deeplink(
config,
config_format,
config_url,
usage_enabled,
usage_script,
usage_api_key,
usage_base_url,
usage_access_token,
usage_user_id,
usage_auto_interval,
})
}
@@ -226,13 +206,6 @@ fn parse_prompt_deeplink(
config: None,
config_format: None,
config_url: None,
usage_enabled: None,
usage_script: None,
usage_api_key: None,
usage_base_url: None,
usage_access_token: None,
usage_user_id: None,
usage_auto_interval: None,
})
}
@@ -288,13 +261,6 @@ fn parse_mcp_deeplink(
directory: None,
branch: None,
config_url: None,
usage_enabled: None,
usage_script: None,
usage_api_key: None,
usage_base_url: None,
usage_access_token: None,
usage_user_id: None,
usage_auto_interval: None,
})
}
@@ -343,12 +309,5 @@ fn parse_skill_deeplink(
config: None,
config_format: None,
config_url: None,
usage_enabled: None,
usage_script: None,
usage_api_key: None,
usage_base_url: None,
usage_access_token: None,
usage_user_id: None,
usage_auto_interval: None,
})
}
+3 -57
View File
@@ -5,7 +5,7 @@
use super::utils::{decode_base64_param, infer_homepage_from_endpoint};
use super::DeepLinkImportRequest;
use crate::error::AppError;
use crate::provider::{Provider, ProviderMeta, UsageScript};
use crate::provider::Provider;
use crate::services::ProviderService;
use crate::store::AppState;
use crate::AppType;
@@ -117,9 +117,6 @@ pub(crate) fn build_provider_from_request(
AppType::Gemini => build_gemini_settings(request),
};
// Build usage script configuration if provided
let meta = build_provider_meta(request)?;
let provider = Provider {
id: String::new(), // Will be generated by caller
name: request.name.clone().unwrap_or_default(),
@@ -129,66 +126,15 @@ pub(crate) fn build_provider_from_request(
created_at: None,
sort_index: None,
notes: request.notes.clone(),
meta,
meta: None,
icon: request.icon.clone(),
icon_color: None,
in_failover_queue: false,
is_proxy_target: None,
};
Ok(provider)
}
/// Build provider meta with usage script configuration
fn build_provider_meta(request: &DeepLinkImportRequest) -> Result<Option<ProviderMeta>, AppError> {
// Check if any usage script fields are provided
if request.usage_script.is_none()
&& request.usage_enabled.is_none()
&& request.usage_api_key.is_none()
&& request.usage_base_url.is_none()
&& request.usage_access_token.is_none()
&& request.usage_user_id.is_none()
&& request.usage_auto_interval.is_none()
{
return Ok(None);
}
// Decode usage script code if provided
let code = if let Some(script_b64) = &request.usage_script {
let decoded = decode_base64_param("usage_script", script_b64)?;
String::from_utf8(decoded)
.map_err(|e| AppError::InvalidInput(format!("Invalid UTF-8 in usage_script: {e}")))?
} else {
String::new()
};
// Determine enabled state: explicit param > has code > false
let enabled = request.usage_enabled.unwrap_or(!code.is_empty());
// Build UsageScript - use provider's API key and endpoint as defaults
let usage_script = UsageScript {
enabled,
language: "javascript".to_string(),
code,
timeout: Some(10),
api_key: request
.usage_api_key
.clone()
.or_else(|| request.api_key.clone()),
base_url: request
.usage_base_url
.clone()
.or_else(|| request.endpoint.clone()),
access_token: request.usage_access_token.clone(),
user_id: request.usage_user_id.clone(),
auto_query_interval: request.usage_auto_interval,
};
Ok(Some(ProviderMeta {
usage_script: Some(usage_script),
..Default::default()
}))
}
/// Build Claude settings configuration
fn build_claude_settings(request: &DeepLinkImportRequest) -> serde_json::Value {
let mut env = serde_json::Map::new();
+3 -31
View File
@@ -145,13 +145,6 @@ fn test_build_gemini_provider_with_model() {
content: None,
description: None,
enabled: None,
usage_enabled: None,
usage_script: None,
usage_api_key: None,
usage_base_url: None,
usage_access_token: None,
usage_user_id: None,
usage_auto_interval: None,
};
let provider = build_provider_from_request(&AppType::Gemini, &request).unwrap();
@@ -198,13 +191,6 @@ fn test_build_gemini_provider_without_model() {
content: None,
description: None,
enabled: None,
usage_enabled: None,
usage_script: None,
usage_api_key: None,
usage_base_url: None,
usage_access_token: None,
usage_user_id: None,
usage_auto_interval: None,
};
let provider = build_provider_from_request(&AppType::Gemini, &request).unwrap();
@@ -246,13 +232,6 @@ fn test_parse_and_merge_config_claude() {
content: None,
description: None,
enabled: None,
usage_enabled: None,
usage_script: None,
usage_api_key: None,
usage_base_url: None,
usage_access_token: None,
usage_user_id: None,
usage_auto_interval: None,
};
let merged = parse_and_merge_config(&request).unwrap();
@@ -296,13 +275,6 @@ fn test_parse_and_merge_config_url_override() {
content: None,
description: None,
enabled: None,
usage_enabled: None,
usage_script: None,
usage_api_key: None,
usage_base_url: None,
usage_access_token: None,
usage_user_id: None,
usage_auto_interval: None,
};
let merged = parse_and_merge_config(&request).unwrap();
@@ -375,7 +347,7 @@ fn test_parse_prompt_deeplink() {
assert_eq!(request.name.unwrap(), "test");
assert_eq!(request.content.unwrap(), content_b64);
assert_eq!(request.description.unwrap(), "desc");
assert!(request.enabled.unwrap());
assert_eq!(request.enabled.unwrap(), true);
}
#[test]
@@ -391,13 +363,13 @@ fn test_parse_mcp_deeplink() {
assert_eq!(request.resource, "mcp");
assert_eq!(request.apps.unwrap(), "claude,codex");
assert_eq!(request.config.unwrap(), config_b64);
assert!(request.enabled.unwrap());
assert_eq!(request.enabled.unwrap(), true);
}
#[test]
fn test_parse_skill_deeplink() {
let url = "ccswitch://v1/import?resource=skill&repo=owner/repo&directory=skills&branch=dev";
let request = parse_deeplink_url(url).unwrap();
let request = parse_deeplink_url(&url).unwrap();
assert_eq!(request.resource, "skill");
assert_eq!(request.repo.unwrap(), "owner/repo");
-4
View File
@@ -52,10 +52,6 @@ pub enum AppError {
},
#[error("数据库错误: {0}")]
Database(String),
#[error("所有供应商已熔断,无可用渠道")]
AllProvidersCircuitOpen,
#[error("未配置供应商")]
NoProvidersConfigured,
}
impl AppError {
+4 -11
View File
@@ -42,8 +42,8 @@ fn write_json_value(path: &Path, value: &Value) -> Result<(), AppError> {
///
/// 执行反向格式转换以保持与统一 MCP 结构的兼容性:
/// - httpUrl → url + type: "http"
/// - 仅有 url 字段 → 补齐 type: "sse"Gemini 以字段名推断传输类型)
/// - 仅有 command 字段 → 补齐 type: "stdio"
/// - 仅有 url 字段 → 保持不变(SSE 类型)
/// - 仅有 command 字段 → 保持不变(stdio 类型)
pub fn read_mcp_servers_map() -> Result<std::collections::HashMap<String, Value>, AppError> {
let path = user_config_path();
if !path.exists() {
@@ -65,15 +65,8 @@ pub fn read_mcp_servers_map() -> Result<std::collections::HashMap<String, Value>
obj.insert("url".to_string(), http_url);
obj.insert("type".to_string(), Value::String("http".to_string()));
}
// Gemini CLI 不使用 type 字段:这里补齐成统一结构,便于校验与导入
if obj.get("type").is_none() {
if obj.contains_key("command") {
obj.insert("type".to_string(), Value::String("stdio".to_string()));
} else if obj.contains_key("url") {
obj.insert("type".to_string(), Value::String("sse".to_string()));
}
}
// 如果有 url 但没有 type,不添加 type(默认为 SSE
// 如果有 command 但没有 type,不添加 type(默认为 stdio
}
}
-41
View File
@@ -52,47 +52,6 @@ pub fn take_migration_success() -> bool {
}
}
// ============================================================
// Skills SSOT 迁移结果状态
// ============================================================
#[derive(Debug, Clone, Serialize)]
pub struct SkillsMigrationPayload {
pub count: usize,
#[serde(skip_serializing_if = "Option::is_none")]
pub error: Option<String>,
}
static SKILLS_MIGRATION_RESULT: OnceLock<RwLock<Option<SkillsMigrationPayload>>> = OnceLock::new();
fn skills_migration_cell() -> &'static RwLock<Option<SkillsMigrationPayload>> {
SKILLS_MIGRATION_RESULT.get_or_init(|| RwLock::new(None))
}
pub fn set_skills_migration_result(count: usize) {
if let Ok(mut guard) = skills_migration_cell().write() {
*guard = Some(SkillsMigrationPayload { count, error: None });
}
}
pub fn set_skills_migration_error(error: String) {
if let Ok(mut guard) = skills_migration_cell().write() {
*guard = Some(SkillsMigrationPayload {
count: 0,
error: Some(error),
});
}
}
/// 获取并消费 Skills 迁移结果(只返回一次 Some,之后返回 None)
pub fn take_skills_migration_result() -> Option<SkillsMigrationPayload> {
if let Ok(mut guard) = skills_migration_cell().write() {
guard.take()
} else {
None
}
}
#[cfg(test)]
mod tests {
use super::*;
+82 -264
View File
@@ -39,8 +39,8 @@ pub use mcp::{
};
pub use provider::{Provider, ProviderMeta};
pub use services::{
ConfigService, EndpointLatency, McpService, PromptService, ProviderService, ProxyService,
SkillService, SpeedtestService,
ConfigService, EndpointLatency, McpService, PromptService, ProviderService, SkillService,
SpeedtestService,
};
pub use settings::{update_settings, AppSettings};
pub use store::AppState;
@@ -48,9 +48,8 @@ use tauri_plugin_deep_link::DeepLinkExt;
use tauri_plugin_dialog::{DialogExt, MessageDialogButtons, MessageDialogKind};
use std::sync::Arc;
#[cfg(target_os = "macos")]
use tauri::image::Image;
use tauri::tray::{TrayIconBuilder, TrayIconEvent};
#[cfg(target_os = "macos")]
use tauri::RunEvent;
use tauri::{Emitter, Manager};
@@ -135,19 +134,6 @@ async fn update_tray_menu(
}
}
#[cfg(target_os = "macos")]
fn macos_tray_icon() -> Option<Image<'static>> {
const ICON_BYTES: &[u8] = include_bytes!("../icons/tray/macos/statusbar_template_3x.png");
match Image::from_bytes(ICON_BYTES) {
Ok(icon) => Some(icon),
Err(err) => {
log::warn!("Failed to load macOS tray icon: {err}");
None
}
}
}
#[cfg_attr(mobile, tauri::mobile_entry_point)]
pub fn run() {
let mut builder = tauri::Builder::default();
@@ -223,6 +209,44 @@ pub fn run() {
log::warn!("初始化 Updater 插件失败,已跳过:{e}");
}
}
#[cfg(target_os = "macos")]
{
// 设置 macOS 标题栏背景色为主界面蓝色
if let Some(window) = app.get_webview_window("main") {
use objc2::rc::Retained;
use objc2::runtime::AnyObject;
use objc2_app_kit::NSColor;
match window.ns_window() {
Ok(ns_window_ptr) => {
if let Some(ns_window) =
unsafe { Retained::retain(ns_window_ptr as *mut AnyObject) }
{
// 使用与主界面 banner 相同的蓝色 #3498db
// #3498db = RGB(52, 152, 219)
let bg_color = unsafe {
NSColor::colorWithRed_green_blue_alpha(
52.0 / 255.0, // R: 52
152.0 / 255.0, // G: 152
219.0 / 255.0, // B: 219
1.0, // Alpha: 1.0
)
};
unsafe {
use objc2::msg_send;
let _: () =
msg_send![&*ns_window, setBackgroundColor: &*bg_color];
}
} else {
log::warn!("Failed to retain NSWindow reference");
}
}
Err(e) => log::warn!("Failed to get NSWindow pointer: {e}"),
}
}
}
// 初始化日志
if cfg!(debug_assertions) {
app.handle().plugin(
@@ -308,9 +332,6 @@ pub fn run() {
let app_state = AppState::new(db);
// 设置 AppHandle 用于代理故障转移时的 UI 更新
app_state.proxy_service.set_app_handle(app.handle().clone());
// ============================================================
// 按表独立判断的导入逻辑(各类数据独立检查,互不影响)
// ============================================================
@@ -324,47 +345,6 @@ pub fn run() {
Err(e) => log::warn!("✗ Failed to initialize default skill repos: {e}"),
}
// 1.1. Skills 统一管理迁移:当数据库迁移到 v3 结构后,自动从各应用目录导入到 SSOT
// 触发条件由 schema 迁移设置 settings.skills_ssot_migration_pending = true 控制。
match app_state.db.get_setting("skills_ssot_migration_pending") {
Ok(Some(flag)) if flag == "true" || flag == "1" => {
// 安全保护:如果用户已经有 v3 结构的 Skills 数据,就不要自动清空重建。
let has_existing = app_state
.db
.get_all_installed_skills()
.map(|skills| !skills.is_empty())
.unwrap_or(false);
if has_existing {
log::info!(
"Detected skills_ssot_migration_pending but skills table not empty; skipping auto import."
);
let _ = app_state
.db
.set_setting("skills_ssot_migration_pending", "false");
} else {
match crate::services::skill::migrate_skills_to_ssot(&app_state.db) {
Ok(count) => {
log::info!("✓ Auto imported {count} skill(s) into SSOT");
if count > 0 {
crate::init_status::set_skills_migration_result(count);
}
let _ = app_state
.db
.set_setting("skills_ssot_migration_pending", "false");
}
Err(e) => {
log::warn!("✗ Failed to auto import legacy skills to SSOT: {e}");
crate::init_status::set_skills_migration_error(e.to_string());
// 保留 pending 标志,方便下次启动重试
}
}
}
}
Ok(_) => {} // 未开启迁移标志,静默跳过
Err(e) => log::warn!("✗ Failed to read skills migration flag: {e}"),
}
// 2. 导入供应商配置(已有内置检查:该应用已有供应商则跳过)
for app in [
crate::app_config::AppType::Claude,
@@ -521,26 +501,11 @@ pub fn run() {
})
.show_menu_on_left_click(true);
// 使用平台对应的托盘图标(macOS 使用模板图标适配深浅色)
#[cfg(target_os = "macos")]
{
if let Some(icon) = macos_tray_icon() {
tray_builder = tray_builder.icon(icon).icon_as_template(true);
} else if let Some(icon) = app.default_window_icon() {
log::warn!("Falling back to default window icon for tray");
tray_builder = tray_builder.icon(icon.clone());
} else {
log::warn!("Failed to load macOS tray icon for tray");
}
}
#[cfg(not(target_os = "macos"))]
{
if let Some(icon) = app.default_window_icon() {
tray_builder = tray_builder.icon(icon.clone());
} else {
log::warn!("Failed to get default window icon for tray");
}
// 统一使用应用默认图标;待托盘模板图标就绪后再启用
if let Some(icon) = app.default_window_icon() {
tray_builder = tray_builder.icon(icon.clone());
} else {
log::warn!("Failed to get default window icon for tray");
}
let _tray = tray_builder.build(app)?;
@@ -548,36 +513,35 @@ pub fn run() {
app.manage(app_state);
// 初始化 SkillService
let skill_service = SkillService::new();
app.manage(commands::skill::SkillServiceState(Arc::new(skill_service)));
match SkillService::new() {
Ok(skill_service) => {
app.manage(commands::skill::SkillServiceState(Arc::new(skill_service)));
}
Err(e) => {
log::warn!("初始化 SkillService 失败: {e}");
}
}
// 异常退出恢复 + 代理状态自动恢复
// 自动启动代理服务器
let app_handle = app.handle().clone();
tauri::async_runtime::spawn(async move {
let state = app_handle.state::<AppState>();
// 检查是否有 Live 备份(表示上次异常退出时可能处于接管状态)
let has_backups = match state.db.has_any_live_backup().await {
Ok(v) => v,
Err(e) => {
log::error!("检查 Live 备份失败: {e}");
false
}
};
// 检查 Live 配置是否仍处于被接管状态(包含占位符)
let live_taken_over = state.proxy_service.detect_takeover_in_live_configs();
if has_backups || live_taken_over {
log::warn!("检测到上次异常退出(存在接管残留),正在恢复 Live 配置...");
if let Err(e) = state.proxy_service.recover_from_crash().await {
log::error!("恢复 Live 配置失败: {e}");
} else {
log::info!("Live 配置已恢复");
match state.db.get_proxy_config().await {
Ok(config) => {
if config.enabled {
log::info!("代理服务配置为启用,正在启动...");
match state.proxy_service.start().await {
Ok(info) => log::info!(
"代理服务器自动启动成功: {}:{}",
info.address,
info.port
),
Err(e) => log::error!("代理服务器自动启动失败: {e}"),
}
}
}
Err(e) => log::error!("启动时获取代理配置失败: {e}"),
}
// 检查 settings 表中的代理状态,自动恢复代理服务
restore_proxy_state_on_startup(&state).await;
});
Ok(())
@@ -589,6 +553,7 @@ pub fn run() {
commands::update_provider,
commands::delete_provider,
commands::switch_provider,
commands::set_proxy_target_provider,
commands::import_default_config,
commands::get_claude_config_status,
commands::get_config_status,
@@ -599,7 +564,6 @@ pub fn run() {
commands::open_external,
commands::get_init_error,
commands::get_migration_result,
commands::get_skills_migration_result,
commands::get_app_config_path,
commands::open_app_config_folder,
commands::get_claude_common_config_snippet,
@@ -616,8 +580,6 @@ pub fn run() {
commands::read_claude_plugin_config,
commands::apply_claude_plugin_config,
commands::is_claude_plugin_applied,
commands::apply_claude_onboarding_skip,
commands::clear_claude_onboarding_skip,
// Claude MCP management
commands::get_claude_mcp_status,
commands::read_claude_mcp_config,
@@ -632,12 +594,11 @@ pub fn run() {
commands::upsert_mcp_server_in_config,
commands::delete_mcp_server_in_config,
commands::set_mcp_enabled,
// Unified MCP management
// v3.7.0: Unified MCP management
commands::get_mcp_servers,
commands::upsert_mcp_server,
commands::delete_mcp_server,
commands::toggle_mcp_app,
commands::import_mcp_from_apps,
// Prompt management
commands::get_prompts,
commands::upsert_prompt,
@@ -672,15 +633,7 @@ pub fn run() {
commands::check_env_conflicts,
commands::delete_env_vars,
commands::restore_env_backup,
// Skill management (v3.10.0+ unified)
commands::get_installed_skills,
commands::install_skill_unified,
commands::uninstall_skill_unified,
commands::toggle_skill_app,
commands::scan_unmanaged_skills,
commands::import_skills_from_apps,
commands::discover_available_skills,
// Skill management (legacy API compatibility)
// Skill management
commands::get_skills,
commands::get_skills_for_app,
commands::install_skill,
@@ -695,33 +648,19 @@ pub fn run() {
commands::get_auto_launch_status,
// Proxy server management
commands::start_proxy_server,
commands::stop_proxy_with_restore,
commands::get_proxy_takeover_status,
commands::set_proxy_takeover_for_app,
commands::stop_proxy_server,
commands::get_proxy_status,
commands::get_proxy_config,
commands::update_proxy_config,
// Global & Per-App Config
commands::get_global_proxy_config,
commands::update_global_proxy_config,
commands::get_proxy_config_for_app,
commands::update_proxy_config_for_app,
commands::is_proxy_running,
commands::is_live_takeover_active,
commands::switch_proxy_provider,
// Proxy failover commands
commands::get_proxy_targets,
commands::set_proxy_target,
commands::get_provider_health,
commands::reset_circuit_breaker,
commands::get_circuit_breaker_config,
commands::update_circuit_breaker_config,
commands::get_circuit_breaker_stats,
// Failover queue management
commands::get_failover_queue,
commands::get_available_providers_for_failover,
commands::add_to_failover_queue,
commands::remove_from_failover_queue,
commands::get_auto_failover_enabled,
commands::set_auto_failover_enabled,
// Usage statistics
commands::get_usage_summary,
commands::get_usage_trends,
@@ -733,18 +672,14 @@ pub fn run() {
commands::update_model_pricing,
commands::delete_model_pricing,
commands::check_provider_limits,
// Stream health check
commands::stream_check_provider,
commands::stream_check_all_providers,
commands::get_stream_check_config,
commands::save_stream_check_config,
// Model testing
commands::test_provider_model,
commands::test_all_providers_model,
commands::get_model_test_config,
commands::save_model_test_config,
commands::get_model_test_logs,
commands::cleanup_model_test_logs,
commands::get_tool_versions,
// Universal Provider management
commands::get_universal_providers,
commands::get_universal_provider,
commands::upsert_universal_provider,
commands::delete_universal_provider,
commands::sync_universal_provider,
]);
let app = builder
@@ -752,26 +687,6 @@ pub fn run() {
.expect("error while running tauri application");
app.run(|app_handle, event| {
// 处理退出请求(所有平台)
if let RunEvent::ExitRequested { api, .. } = &event {
log::info!("收到退出请求,开始清理...");
// 阻止立即退出,执行清理
api.prevent_exit();
let app_handle = app_handle.clone();
tauri::async_runtime::spawn(async move {
cleanup_before_exit(&app_handle).await;
log::info!("清理完成,退出应用");
// 短暂等待确保所有 I/O 操作(如数据库写入)刷新到磁盘
tokio::time::sleep(std::time::Duration::from_millis(100)).await;
// 使用 std::process::exit 避免再次触发 ExitRequested
std::process::exit(0);
});
return;
}
#[cfg(target_os = "macos")]
{
match event {
@@ -851,103 +766,6 @@ pub fn run() {
});
}
// ============================================================
// 应用退出清理
// ============================================================
/// 应用退出前的清理工作
///
/// 在应用退出前检查代理服务器状态,如果正在运行则停止代理并恢复 Live 配置。
/// 确保 Claude Code/Codex/Gemini 的配置不会处于损坏状态。
/// 使用 stop_with_restore_keep_state 保留 settings 表中的代理状态,下次启动时自动恢复。
pub async fn cleanup_before_exit(app_handle: &tauri::AppHandle) {
if let Some(state) = app_handle.try_state::<store::AppState>() {
let proxy_service = &state.proxy_service;
// 退出时也需要兜底:代理可能已崩溃/未运行,但 Live 接管残留仍在(占位符/备份)。
let has_backups = match state.db.has_any_live_backup().await {
Ok(v) => v,
Err(e) => {
log::error!("退出时检查 Live 备份失败: {e}");
false
}
};
let live_taken_over = proxy_service.detect_takeover_in_live_configs();
let needs_restore = has_backups || live_taken_over;
if needs_restore {
log::info!("检测到接管残留,开始恢复 Live 配置(保留代理状态)...");
// 使用 keep_state 版本,保留 settings 表中的代理状态
if let Err(e) = proxy_service.stop_with_restore_keep_state().await {
log::error!("退出时恢复 Live 配置失败: {e}");
} else {
log::info!("已恢复 Live 配置(代理状态已保留,下次启动将自动恢复)");
}
return;
}
// 非接管模式:代理在运行则仅停止代理
if proxy_service.is_running().await {
log::info!("检测到代理服务器正在运行,开始停止...");
if let Err(e) = proxy_service.stop().await {
log::error!("退出时停止代理失败: {e}");
}
log::info!("代理服务器清理完成");
}
}
}
// ============================================================
// 启动时恢复代理状态
// ============================================================
/// 启动时根据 proxy_config 表中的代理状态自动恢复代理服务
///
/// 检查 `proxy_config.enabled` 字段,如果有任一应用的状态为 `true`,
/// 则自动启动代理服务并接管对应应用的 Live 配置。
async fn restore_proxy_state_on_startup(state: &store::AppState) {
// 收集需要恢复接管的应用列表(从 proxy_config.enabled 读取)
let mut apps_to_restore = Vec::new();
for app_type in ["claude", "codex", "gemini"] {
if let Ok(config) = state.db.get_proxy_config_for_app(app_type).await {
if config.enabled {
apps_to_restore.push(app_type);
}
}
}
if apps_to_restore.is_empty() {
log::debug!("启动时无需恢复代理状态");
return;
}
log::info!("检测到上次代理状态需要恢复,应用列表: {apps_to_restore:?}");
// 逐个恢复接管状态
for app_type in apps_to_restore {
match state
.proxy_service
.set_takeover_for_app(app_type, true)
.await
{
Ok(()) => {
log::info!("✓ 已恢复 {app_type} 的代理接管状态");
}
Err(e) => {
log::error!("✗ 恢复 {app_type} 的代理接管状态失败: {e}");
// 失败时清除该应用的状态,避免下次启动再次尝试
if let Err(clear_err) = state
.proxy_service
.set_takeover_for_app(app_type, false)
.await
{
log::error!("清除 {app_type} 代理状态失败: {clear_err}");
}
}
}
}
}
// ============================================================
// 迁移错误对话框辅助函数
// ============================================================
-15
View File
@@ -8,12 +8,6 @@ use crate::error::AppError;
use super::validation::{extract_server_spec, validate_server_spec};
fn should_sync_claude_mcp() -> bool {
// Claude 未安装/未初始化时:通常 ~/.claude 目录与 ~/.claude.json 都不存在。
// 按用户偏好:此时跳过写入/删除,不创建任何文件或目录。
crate::config::get_claude_config_dir().exists() || crate::config::get_claude_mcp_path().exists()
}
/// 返回已启用的 MCP 服务器(过滤 enabled==true
fn collect_enabled_servers(cfg: &McpConfig) -> HashMap<String, Value> {
let mut out = HashMap::new();
@@ -39,9 +33,6 @@ fn collect_enabled_servers(cfg: &McpConfig) -> HashMap<String, Value> {
/// 将 config.json 中 enabled==true 的项投影写入 ~/.claude.json
pub fn sync_enabled_to_claude(config: &MultiAppConfig) -> Result<(), AppError> {
if !should_sync_claude_mcp() {
return Ok(());
}
let enabled = collect_enabled_servers(&config.mcp.claude);
crate::claude_mcp::set_mcp_servers_map(&enabled)
}
@@ -116,9 +107,6 @@ pub fn sync_single_server_to_claude(
id: &str,
server_spec: &Value,
) -> Result<(), AppError> {
if !should_sync_claude_mcp() {
return Ok(());
}
// 读取现有的 MCP 配置
let current = crate::claude_mcp::read_mcp_servers_map()?;
@@ -132,9 +120,6 @@ pub fn sync_single_server_to_claude(
/// 从 Claude live 配置中移除单个 MCP 服务器
pub fn remove_server_from_claude(id: &str) -> Result<(), AppError> {
if !should_sync_claude_mcp() {
return Ok(());
}
// 读取现有的 MCP 配置
let mut current = crate::claude_mcp::read_mcp_servers_map()?;
+8 -35
View File
@@ -13,12 +13,6 @@ use crate::error::AppError;
use super::validation::{extract_server_spec, validate_server_spec};
fn should_sync_codex_mcp() -> bool {
// Codex 未安装/未初始化时:~/.codex 目录不存在。
// 按用户偏好:目录缺失时跳过写入/删除,不创建任何文件或目录。
crate::codex_config::get_codex_config_dir().exists()
}
/// 返回已启用的 MCP 服务器(过滤 enabled==true
fn collect_enabled_servers(cfg: &McpConfig) -> HashMap<String, Value> {
let mut out = HashMap::new();
@@ -279,9 +273,6 @@ pub fn import_from_codex(config: &mut MultiAppConfig) -> Result<usize, AppError>
/// - 仅更新 `mcp_servers` 表,保留其它键
/// - 仅写入启用项;无启用项时清理 mcp_servers 表
pub fn sync_enabled_to_codex(config: &MultiAppConfig) -> Result<(), AppError> {
if !should_sync_codex_mcp() {
return Ok(());
}
use toml_edit::{Item, Table};
// 1) 收集启用项(Codex 维度)
@@ -348,9 +339,6 @@ pub fn sync_single_server_to_codex(
id: &str,
server_spec: &Value,
) -> Result<(), AppError> {
if !should_sync_codex_mcp() {
return Ok(());
}
use toml_edit::Item;
// 读取现有的 config.toml
@@ -359,14 +347,9 @@ pub fn sync_single_server_to_codex(
let mut doc = if config_path.exists() {
let content =
std::fs::read_to_string(&config_path).map_err(|e| AppError::io(&config_path, e))?;
// 尝试解析现有配置,如果失败则创建新文档(容错处理)
match content.parse::<toml_edit::DocumentMut>() {
Ok(doc) => doc,
Err(e) => {
log::warn!("解析 Codex config.toml 失败: {e},将创建新配置");
toml_edit::DocumentMut::new()
}
}
content
.parse::<toml_edit::DocumentMut>()
.map_err(|e| AppError::McpValidation(format!("解析 Codex config.toml 失败: {e}")))?
} else {
toml_edit::DocumentMut::new()
};
@@ -393,8 +376,7 @@ pub fn sync_single_server_to_codex(
doc["mcp_servers"][id] = Item::Table(toml_table);
// 写回文件
let new_text = doc.to_string();
crate::config::write_text_file(&config_path, &new_text)?;
std::fs::write(&config_path, doc.to_string()).map_err(|e| AppError::io(&config_path, e))?;
Ok(())
}
@@ -402,9 +384,6 @@ pub fn sync_single_server_to_codex(
/// 从 Codex live 配置中移除单个 MCP 服务器
/// 从正确的 [mcp_servers] 表中删除,同时清理可能存在于错误位置 [mcp.servers] 的数据
pub fn remove_server_from_codex(id: &str) -> Result<(), AppError> {
if !should_sync_codex_mcp() {
return Ok(());
}
let config_path = crate::codex_config::get_codex_config_path();
if !config_path.exists() {
@@ -414,14 +393,9 @@ pub fn remove_server_from_codex(id: &str) -> Result<(), AppError> {
let content =
std::fs::read_to_string(&config_path).map_err(|e| AppError::io(&config_path, e))?;
// 尝试解析现有配置,如果失败则直接返回(无法删除不存在的内容)
let mut doc = match content.parse::<toml_edit::DocumentMut>() {
Ok(doc) => doc,
Err(e) => {
log::warn!("解析 Codex config.toml 失败: {e},跳过删除操作");
return Ok(());
}
};
let mut doc = content
.parse::<toml_edit::DocumentMut>()
.map_err(|e| AppError::McpValidation(format!("解析 Codex config.toml 失败: {e}")))?;
// 从正确的位置删除:[mcp_servers]
if let Some(mcp_servers) = doc.get_mut("mcp_servers").and_then(|s| s.as_table_mut()) {
@@ -438,8 +412,7 @@ pub fn remove_server_from_codex(id: &str) -> Result<(), AppError> {
}
// 写回文件
let new_text = doc.to_string();
crate::config::write_text_file(&config_path, &new_text)?;
std::fs::write(&config_path, doc.to_string()).map_err(|e| AppError::io(&config_path, e))?;
Ok(())
}
-15
View File
@@ -8,12 +8,6 @@ use crate::error::AppError;
use super::validation::{extract_server_spec, validate_server_spec};
fn should_sync_gemini_mcp() -> bool {
// Gemini 未安装/未初始化时:~/.gemini 目录不存在。
// 按用户偏好:目录缺失时跳过写入/删除,不创建任何文件或目录。
crate::gemini_config::get_gemini_dir().exists()
}
/// 返回已启用的 MCP 服务器(过滤 enabled==true
fn collect_enabled_servers(cfg: &McpConfig) -> HashMap<String, Value> {
let mut out = HashMap::new();
@@ -39,9 +33,6 @@ fn collect_enabled_servers(cfg: &McpConfig) -> HashMap<String, Value> {
/// 将 config.json 中 Gemini 的 enabled==true 项写入 Gemini MCP 配置
pub fn sync_enabled_to_gemini(config: &MultiAppConfig) -> Result<(), AppError> {
if !should_sync_gemini_mcp() {
return Ok(());
}
let enabled = collect_enabled_servers(&config.mcp.gemini);
crate::gemini_mcp::set_mcp_servers_map(&enabled)
}
@@ -112,9 +103,6 @@ pub fn sync_single_server_to_gemini(
id: &str,
server_spec: &Value,
) -> Result<(), AppError> {
if !should_sync_gemini_mcp() {
return Ok(());
}
// 读取现有的 MCP 配置
let mut current = crate::gemini_mcp::read_mcp_servers_map()?;
@@ -127,9 +115,6 @@ pub fn sync_single_server_to_gemini(
/// 从 Gemini live 配置中移除单个 MCP 服务器
pub fn remove_server_from_gemini(id: &str) -> Result<(), AppError> {
if !should_sync_gemini_mcp() {
return Ok(());
}
// 读取现有的 MCP 配置
let mut current = crate::gemini_mcp::read_mcp_servers_map()?;
+5 -287
View File
@@ -36,10 +36,10 @@ pub struct Provider {
#[serde(skip_serializing_if = "Option::is_none")]
#[serde(rename = "iconColor")]
pub icon_color: Option<String>,
/// 是否加入故障转移队列
#[serde(default)]
#[serde(rename = "inFailoverQueue")]
pub in_failover_queue: bool,
/// 是否为代理目标(数据库专用字段,不写入配置文件)
#[serde(skip_serializing_if = "Option::is_none")]
#[serde(rename = "isProxyTarget")]
pub is_proxy_target: Option<bool>,
}
impl Provider {
@@ -62,7 +62,7 @@ impl Provider {
meta: None,
icon: None,
icon_color: None,
in_failover_queue: false,
is_proxy_target: None,
}
}
}
@@ -173,285 +173,3 @@ impl ProviderManager {
&self.providers
}
}
// ============================================================================
// 统一供应商(Universal Provider- 跨应用共享配置
// ============================================================================
/// 统一供应商的应用启用状态
#[derive(Debug, Clone, Serialize, Deserialize, Default)]
pub struct UniversalProviderApps {
#[serde(default)]
pub claude: bool,
#[serde(default)]
pub codex: bool,
#[serde(default)]
pub gemini: bool,
}
/// Claude 模型配置
#[derive(Debug, Clone, Serialize, Deserialize, Default)]
pub struct ClaudeModelConfig {
/// 主模型
#[serde(skip_serializing_if = "Option::is_none")]
pub model: Option<String>,
/// Haiku 默认模型
#[serde(skip_serializing_if = "Option::is_none")]
#[serde(rename = "haikuModel")]
pub haiku_model: Option<String>,
/// Sonnet 默认模型
#[serde(skip_serializing_if = "Option::is_none")]
#[serde(rename = "sonnetModel")]
pub sonnet_model: Option<String>,
/// Opus 默认模型
#[serde(skip_serializing_if = "Option::is_none")]
#[serde(rename = "opusModel")]
pub opus_model: Option<String>,
}
/// Codex 模型配置
#[derive(Debug, Clone, Serialize, Deserialize, Default)]
pub struct CodexModelConfig {
/// 模型名称
#[serde(skip_serializing_if = "Option::is_none")]
pub model: Option<String>,
/// 推理强度
#[serde(skip_serializing_if = "Option::is_none")]
#[serde(rename = "reasoningEffort")]
pub reasoning_effort: Option<String>,
}
/// Gemini 模型配置
#[derive(Debug, Clone, Serialize, Deserialize, Default)]
pub struct GeminiModelConfig {
/// 模型名称
#[serde(skip_serializing_if = "Option::is_none")]
pub model: Option<String>,
}
/// 各应用的模型配置
#[derive(Debug, Clone, Serialize, Deserialize, Default)]
pub struct UniversalProviderModels {
#[serde(skip_serializing_if = "Option::is_none")]
pub claude: Option<ClaudeModelConfig>,
#[serde(skip_serializing_if = "Option::is_none")]
pub codex: Option<CodexModelConfig>,
#[serde(skip_serializing_if = "Option::is_none")]
pub gemini: Option<GeminiModelConfig>,
}
/// 统一供应商(跨应用共享配置)
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct UniversalProvider {
/// 唯一标识
pub id: String,
/// 供应商名称
pub name: String,
/// 供应商类型(如 "newapi", "custom"
#[serde(rename = "providerType")]
pub provider_type: String,
/// 应用启用状态
pub apps: UniversalProviderApps,
/// API 基础地址
#[serde(rename = "baseUrl")]
pub base_url: String,
/// API 密钥
#[serde(rename = "apiKey")]
pub api_key: String,
/// 各应用的模型配置
#[serde(default)]
pub models: UniversalProviderModels,
/// 网站链接
#[serde(skip_serializing_if = "Option::is_none")]
#[serde(rename = "websiteUrl")]
pub website_url: Option<String>,
/// 备注信息
#[serde(skip_serializing_if = "Option::is_none")]
pub notes: Option<String>,
/// 图标名称
#[serde(skip_serializing_if = "Option::is_none")]
pub icon: Option<String>,
/// 图标颜色
#[serde(skip_serializing_if = "Option::is_none")]
#[serde(rename = "iconColor")]
pub icon_color: Option<String>,
/// 元数据
#[serde(skip_serializing_if = "Option::is_none")]
pub meta: Option<ProviderMeta>,
/// 创建时间戳
#[serde(skip_serializing_if = "Option::is_none")]
#[serde(rename = "createdAt")]
pub created_at: Option<i64>,
/// 排序索引
#[serde(skip_serializing_if = "Option::is_none")]
#[serde(rename = "sortIndex")]
pub sort_index: Option<usize>,
}
impl UniversalProvider {
/// 创建新的统一供应商
pub fn new(
id: String,
name: String,
provider_type: String,
base_url: String,
api_key: String,
) -> Self {
Self {
id,
name,
provider_type,
apps: UniversalProviderApps::default(),
base_url,
api_key,
models: UniversalProviderModels::default(),
website_url: None,
notes: None,
icon: None,
icon_color: None,
meta: None,
created_at: Some(chrono::Utc::now().timestamp_millis()),
sort_index: None,
}
}
/// 生成 Claude 供应商配置
pub fn to_claude_provider(&self) -> Option<Provider> {
if !self.apps.claude {
return None;
}
let models = self.models.claude.as_ref();
let model = models
.and_then(|m| m.model.clone())
.unwrap_or_else(|| "claude-sonnet-4-20250514".to_string());
let haiku = models
.and_then(|m| m.haiku_model.clone())
.unwrap_or_else(|| model.clone());
let sonnet = models
.and_then(|m| m.sonnet_model.clone())
.unwrap_or_else(|| model.clone());
let opus = models
.and_then(|m| m.opus_model.clone())
.unwrap_or_else(|| model.clone());
let settings_config = serde_json::json!({
"env": {
"ANTHROPIC_BASE_URL": self.base_url,
"ANTHROPIC_AUTH_TOKEN": self.api_key,
"ANTHROPIC_MODEL": model,
"ANTHROPIC_DEFAULT_HAIKU_MODEL": haiku,
"ANTHROPIC_DEFAULT_SONNET_MODEL": sonnet,
"ANTHROPIC_DEFAULT_OPUS_MODEL": opus,
}
});
Some(Provider {
id: format!("universal-claude-{}", self.id),
name: self.name.clone(),
settings_config,
website_url: self.website_url.clone(),
category: Some("aggregator".to_string()),
created_at: self.created_at,
sort_index: self.sort_index,
notes: self.notes.clone(),
meta: self.meta.clone(),
icon: self.icon.clone(),
icon_color: self.icon_color.clone(),
in_failover_queue: false,
})
}
/// 生成 Codex 供应商配置
pub fn to_codex_provider(&self) -> Option<Provider> {
if !self.apps.codex {
return None;
}
let models = self.models.codex.as_ref();
let model = models
.and_then(|m| m.model.clone())
.unwrap_or_else(|| "gpt-4o".to_string());
let reasoning_effort = models
.and_then(|m| m.reasoning_effort.clone())
.unwrap_or_else(|| "high".to_string());
// 确保 base_url 以 /v1 结尾(Codex 使用 OpenAI 兼容 API
let codex_base_url = if self.base_url.ends_with("/v1") {
self.base_url.clone()
} else {
format!("{}/v1", self.base_url.trim_end_matches('/'))
};
// 生成 Codex 的 config.toml 内容
let config_toml = format!(
r#"model_provider = "newapi"
model = "{model}"
model_reasoning_effort = "{reasoning_effort}"
disable_response_storage = true
[model_providers.newapi]
name = "NewAPI"
base_url = "{codex_base_url}"
wire_api = "responses"
requires_openai_auth = true"#
);
let settings_config = serde_json::json!({
"auth": {
"OPENAI_API_KEY": self.api_key
},
"config": config_toml
});
Some(Provider {
id: format!("universal-codex-{}", self.id),
name: self.name.clone(),
settings_config,
website_url: self.website_url.clone(),
category: Some("aggregator".to_string()),
created_at: self.created_at,
sort_index: self.sort_index,
notes: self.notes.clone(),
meta: self.meta.clone(),
icon: self.icon.clone(),
icon_color: self.icon_color.clone(),
in_failover_queue: false,
})
}
/// 生成 Gemini 供应商配置
pub fn to_gemini_provider(&self) -> Option<Provider> {
if !self.apps.gemini {
return None;
}
let models = self.models.gemini.as_ref();
let model = models
.and_then(|m| m.model.clone())
.unwrap_or_else(|| "gemini-2.5-pro".to_string());
let settings_config = serde_json::json!({
"env": {
"GOOGLE_GEMINI_BASE_URL": self.base_url,
"GEMINI_API_KEY": self.api_key,
"GEMINI_MODEL": model,
}
});
Some(Provider {
id: format!("universal-gemini-{}", self.id),
name: self.name.clone(),
settings_config,
website_url: self.website_url.clone(),
category: Some("aggregator".to_string()),
created_at: self.created_at,
sort_index: self.sort_index,
notes: self.notes.clone(),
meta: self.meta.clone(),
icon: self.icon.clone(),
icon_color: self.icon_color.clone(),
in_failover_queue: false,
})
}
}
-303
View File
@@ -1,303 +0,0 @@
//! 请求体过滤模块
//!
//! 过滤不应透传到上游的私有参数,防止内部信息泄露。
//!
//! ## 过滤规则
//! - 以 `_` 开头的字段被视为私有参数,会被递归过滤
//! - 支持白名单机制,允许透传特定的 `_` 前缀字段
//! - 支持嵌套对象和数组的深度过滤
//!
//! ## 使用场景
//! - `_internal_id`: 内部追踪 ID
//! - `_debug_mode`: 调试标记
//! - `_session_token`: 会话令牌
//! - `_client_version`: 客户端版本
use serde_json::Value;
use std::collections::HashSet;
/// 过滤私有参数(以 `_` 开头的字段)
///
/// 递归遍历 JSON 结构,移除所有以下划线开头的字段。
///
/// # Arguments
/// * `body` - 原始请求体
///
/// # Returns
/// 过滤后的请求体
///
/// # Example
/// ```ignore
/// let input = json!({
/// "model": "claude-3",
/// "_internal_id": "abc123",
/// "messages": [{"role": "user", "content": "hello", "_token": "secret"}]
/// });
/// let output = filter_private_params(input);
/// // output 中不包含 _internal_id 和 _token
/// ```
#[cfg(test)]
pub fn filter_private_params(body: Value) -> Value {
filter_private_params_with_whitelist(body, &[])
}
/// 过滤私有参数(支持白名单)
///
/// 递归遍历 JSON 结构,移除所有以下划线开头的字段,
/// 但保留白名单中指定的字段。
///
/// # Arguments
/// * `body` - 原始请求体
/// * `whitelist` - 白名单字段列表(不过滤这些字段)
///
/// # Returns
/// 过滤后的请求体
///
/// # Example
/// ```ignore
/// let input = json!({
/// "model": "claude-3",
/// "_metadata": {"key": "value"}, // 白名单中,保留
/// "_internal_id": "abc123" // 不在白名单中,过滤
/// });
/// let output = filter_private_params_with_whitelist(input, &["_metadata"]);
/// // output 包含 _metadata,不包含 _internal_id
/// ```
pub fn filter_private_params_with_whitelist(body: Value, whitelist: &[String]) -> Value {
let whitelist_set: HashSet<&str> = whitelist.iter().map(|s| s.as_str()).collect();
filter_recursive_with_whitelist(body, &mut Vec::new(), &whitelist_set)
}
/// 递归过滤实现
#[cfg(test)]
fn filter_recursive(value: Value, removed_keys: &mut Vec<String>) -> Value {
filter_recursive_with_whitelist(value, removed_keys, &HashSet::new())
}
/// 递归过滤实现(支持白名单)
fn filter_recursive_with_whitelist(
value: Value,
removed_keys: &mut Vec<String>,
whitelist: &HashSet<&str>,
) -> Value {
match value {
Value::Object(map) => {
let filtered: serde_json::Map<String, Value> = map
.into_iter()
.filter_map(|(key, val)| {
// 以 _ 开头且不在白名单中的字段被过滤
if key.starts_with('_') && !whitelist.contains(key.as_str()) {
removed_keys.push(key);
None
} else {
Some((
key,
filter_recursive_with_whitelist(val, removed_keys, whitelist),
))
}
})
.collect();
// 仅在有过滤时记录日志(避免每次请求都打印)
if !removed_keys.is_empty() {
log::debug!("[BodyFilter] 过滤私有参数: {removed_keys:?}");
removed_keys.clear();
}
Value::Object(filtered)
}
Value::Array(arr) => Value::Array(
arr.into_iter()
.map(|v| filter_recursive_with_whitelist(v, removed_keys, whitelist))
.collect(),
),
other => other,
}
}
#[cfg(test)]
mod tests {
use super::*;
use serde_json::json;
#[test]
fn test_filter_top_level_private_params() {
let input = json!({
"model": "claude-3",
"_internal_id": "abc123",
"_debug": true,
"max_tokens": 1024
});
let output = filter_private_params(input);
assert!(output.get("model").is_some());
assert!(output.get("max_tokens").is_some());
assert!(output.get("_internal_id").is_none());
assert!(output.get("_debug").is_none());
}
#[test]
fn test_filter_nested_private_params() {
let input = json!({
"model": "claude-3",
"messages": [
{
"role": "user",
"content": "hello",
"_session_token": "secret"
}
],
"metadata": {
"user_id": "user-1",
"_tracking_id": "track-1"
}
});
let output = filter_private_params(input);
// 顶级字段保留
assert!(output.get("model").is_some());
assert!(output.get("messages").is_some());
assert!(output.get("metadata").is_some());
// messages 数组中的私有参数被过滤
let messages = output.get("messages").unwrap().as_array().unwrap();
assert!(messages[0].get("role").is_some());
assert!(messages[0].get("content").is_some());
assert!(messages[0].get("_session_token").is_none());
// metadata 对象中的私有参数被过滤
let metadata = output.get("metadata").unwrap();
assert!(metadata.get("user_id").is_some());
assert!(metadata.get("_tracking_id").is_none());
}
#[test]
fn test_filter_deeply_nested() {
let input = json!({
"level1": {
"level2": {
"level3": {
"keep": "value",
"_remove": "secret"
}
}
}
});
let output = filter_private_params(input);
let level3 = output
.get("level1")
.unwrap()
.get("level2")
.unwrap()
.get("level3")
.unwrap();
assert!(level3.get("keep").is_some());
assert!(level3.get("_remove").is_none());
}
#[test]
fn test_filter_array_of_objects() {
let input = json!({
"items": [
{"id": 1, "_secret": "a"},
{"id": 2, "_secret": "b"},
{"id": 3, "_secret": "c"}
]
});
let output = filter_private_params(input);
let items = output.get("items").unwrap().as_array().unwrap();
for item in items {
assert!(item.get("id").is_some());
assert!(item.get("_secret").is_none());
}
}
#[test]
fn test_no_private_params() {
let input = json!({
"model": "claude-3",
"messages": [{"role": "user", "content": "hello"}]
});
let output = filter_private_params(input.clone());
// 无私有参数时,输出应与输入相同
assert_eq!(input, output);
}
#[test]
fn test_empty_object() {
let input = json!({});
let output = filter_private_params(input);
assert_eq!(output, json!({}));
}
#[test]
fn test_primitive_values() {
// 原始值不应被修改
assert_eq!(filter_private_params(json!(42)), json!(42));
assert_eq!(filter_private_params(json!("string")), json!("string"));
assert_eq!(filter_private_params(json!(true)), json!(true));
assert_eq!(filter_private_params(json!(null)), json!(null));
}
#[test]
fn test_whitelist_preserves_private_params() {
let input = json!({
"model": "claude-3",
"_metadata": {"key": "value"},
"_internal_id": "abc123",
"_stream_options": {"include_usage": true}
});
let whitelist = vec!["_metadata".to_string(), "_stream_options".to_string()];
let output = filter_private_params_with_whitelist(input, &whitelist);
// 白名单中的字段保留
assert!(output.get("_metadata").is_some());
assert!(output.get("_stream_options").is_some());
// 不在白名单中的私有字段被过滤
assert!(output.get("_internal_id").is_none());
// 普通字段保留
assert!(output.get("model").is_some());
}
#[test]
fn test_whitelist_nested() {
let input = json!({
"data": {
"_allowed": "keep",
"_forbidden": "remove",
"normal": "value"
}
});
let whitelist = vec!["_allowed".to_string()];
let output = filter_private_params_with_whitelist(input, &whitelist);
let data = output.get("data").unwrap();
assert!(data.get("_allowed").is_some());
assert!(data.get("_forbidden").is_none());
assert!(data.get("normal").is_some());
}
#[test]
fn test_empty_whitelist_same_as_default() {
let input = json!({
"model": "claude-3",
"_internal_id": "abc123"
});
let output1 = filter_private_params(input.clone());
let output2 = filter_private_params_with_whitelist(input, &[]);
assert_eq!(output1, output2);
}
}
+33 -205
View File
@@ -49,10 +49,10 @@ pub struct CircuitBreakerConfig {
impl Default for CircuitBreakerConfig {
fn default() -> Self {
Self {
failure_threshold: 4,
failure_threshold: 5,
success_threshold: 2,
timeout_seconds: 60,
error_rate_threshold: 0.6,
error_rate_threshold: 0.5,
min_requests: 10,
}
}
@@ -72,20 +72,8 @@ pub struct CircuitBreaker {
failed_requests: Arc<AtomicU32>,
/// 上次打开时间
last_opened_at: Arc<RwLock<Option<Instant>>>,
/// 配置(支持热更新)
config: Arc<RwLock<CircuitBreakerConfig>>,
/// 半开状态已放行的请求数(用于限流)
half_open_requests: Arc<AtomicU32>,
}
/// 熔断器放行结果
///
/// `used_half_open_permit` 表示本次放行是否占用了 HalfOpen 探测名额。
/// 调用方应在请求结束后把该值传回 `record_success` / `record_failure` 用于正确释放名额。
#[derive(Debug, Clone, Copy)]
pub struct AllowResult {
pub allowed: bool,
pub used_half_open_permit: bool,
/// 配置
config: CircuitBreakerConfig,
}
impl CircuitBreaker {
@@ -98,35 +86,20 @@ impl CircuitBreaker {
total_requests: Arc::new(AtomicU32::new(0)),
failed_requests: Arc::new(AtomicU32::new(0)),
last_opened_at: Arc::new(RwLock::new(None)),
config: Arc::new(RwLock::new(config)),
half_open_requests: Arc::new(AtomicU32::new(0)),
config,
}
}
/// 更新熔断器配置(热更新,不重置状态)
pub async fn update_config(&self, new_config: CircuitBreakerConfig) {
*self.config.write().await = new_config;
log::debug!("Circuit breaker config updated");
}
/// 判断当前 Provider 是否“可被纳入候选链路”
///
/// 这个方法不会占用 HalfOpen 探测名额,仅用于路由选择阶段的“可用性判断”:
/// - Closed / HalfOpen:可用(返回 true
/// - Open:若超时到达则切到 HalfOpen 并返回 true,否则返回 false
///
/// 注意:真正发起请求前仍需调用 `allow_request()` 来获取 HalfOpen 探测名额,
/// 并在请求结束后通过 `record_success()` / `record_failure()` 释放。
pub async fn is_available(&self) -> bool {
/// 检查是否允许请求通过
pub async fn allow_request(&self) -> bool {
let state = *self.state.read().await;
let config = self.config.read().await;
match state {
CircuitState::Closed | CircuitState::HalfOpen => true,
CircuitState::Closed => true,
CircuitState::Open => {
// 检查是否应该尝试半开
if let Some(opened_at) = *self.last_opened_at.read().await {
if opened_at.elapsed().as_secs() >= config.timeout_seconds {
drop(config); // 释放读锁再转换状态
if opened_at.elapsed().as_secs() >= self.config.timeout_seconds {
log::info!(
"Circuit breaker transitioning from Open to HalfOpen (timeout reached)"
);
@@ -136,62 +109,13 @@ impl CircuitBreaker {
}
false
}
}
}
/// 检查是否允许请求通过
pub async fn allow_request(&self) -> AllowResult {
let state = *self.state.read().await;
match state {
CircuitState::Closed => AllowResult {
allowed: true,
used_half_open_permit: false,
},
CircuitState::Open => {
let config = self.config.read().await;
// 检查是否应该尝试半开
if let Some(opened_at) = *self.last_opened_at.read().await {
if opened_at.elapsed().as_secs() >= config.timeout_seconds {
drop(config); // 释放读锁再转换状态
log::info!(
"Circuit breaker transitioning from Open to HalfOpen (timeout reached)"
);
self.transition_to_half_open().await;
// 转换后按当前状态决定是否需要获取 HalfOpen 探测名额
let current_state = *self.state.read().await;
return match current_state {
CircuitState::Closed => AllowResult {
allowed: true,
used_half_open_permit: false,
},
CircuitState::HalfOpen => self.allow_half_open_probe(),
CircuitState::Open => AllowResult {
allowed: false,
used_half_open_permit: false,
},
};
}
}
AllowResult {
allowed: false,
used_half_open_permit: false,
}
}
CircuitState::HalfOpen => self.allow_half_open_probe(),
CircuitState::HalfOpen => true,
}
}
/// 记录成功
pub async fn record_success(&self, used_half_open_permit: bool) {
pub async fn record_success(&self) {
let state = *self.state.read().await;
let config = self.config.read().await;
if used_half_open_permit {
self.release_half_open_permit();
}
// 重置失败计数
self.consecutive_failures.store(0, Ordering::SeqCst);
@@ -203,11 +127,10 @@ impl CircuitBreaker {
log::debug!(
"Circuit breaker HalfOpen: {} consecutive successes (threshold: {})",
successes,
config.success_threshold
self.config.success_threshold
);
if successes >= config.success_threshold {
drop(config); // 释放读锁再转换状态
if successes >= self.config.success_threshold {
log::info!("Circuit breaker transitioning from HalfOpen to Closed (success threshold reached)");
self.transition_to_closed().await;
}
@@ -220,13 +143,8 @@ impl CircuitBreaker {
}
/// 记录失败
pub async fn record_failure(&self, used_half_open_permit: bool) {
pub async fn record_failure(&self) {
let state = *self.state.read().await;
let config = self.config.read().await;
if used_half_open_permit {
self.release_half_open_permit();
}
// 更新计数器
let failures = self.consecutive_failures.fetch_add(1, Ordering::SeqCst) + 1;
@@ -240,33 +158,26 @@ impl CircuitBreaker {
"Circuit breaker {:?}: {} consecutive failures (threshold: {})",
state,
failures,
config.failure_threshold
self.config.failure_threshold
);
// 检查是否应该打开熔断器
match state {
CircuitState::HalfOpen => {
// HalfOpen 状态下失败,立即转为 Open
log::warn!("Circuit breaker HalfOpen probe failed, transitioning to Open");
drop(config);
self.transition_to_open().await;
}
CircuitState::Closed => {
CircuitState::Closed | CircuitState::HalfOpen => {
// 检查连续失败次数
if failures >= config.failure_threshold {
if failures >= self.config.failure_threshold {
log::warn!(
"Circuit breaker opening due to {} consecutive failures (threshold: {})",
failures,
config.failure_threshold
self.config.failure_threshold
);
drop(config); // 释放读锁再转换状态
self.transition_to_open().await;
} else {
// 检查错误率
let total = self.total_requests.load(Ordering::SeqCst);
let failed = self.failed_requests.load(Ordering::SeqCst);
if total >= config.min_requests {
if total >= self.config.min_requests {
let error_rate = failed as f64 / total as f64;
log::debug!(
"Circuit breaker error rate: {:.2}% ({}/{} requests)",
@@ -275,13 +186,12 @@ impl CircuitBreaker {
total
);
if error_rate >= config.error_rate_threshold {
if error_rate >= self.config.error_rate_threshold {
log::warn!(
"Circuit breaker opening due to high error rate: {:.2}% (threshold: {:.2}%)",
error_rate * 100.0,
config.error_rate_threshold * 100.0
self.config.error_rate_threshold * 100.0
);
drop(config); // 释放读锁再转换状态
self.transition_to_open().await;
}
}
@@ -292,7 +202,6 @@ impl CircuitBreaker {
}
/// 获取当前状态
#[allow(dead_code)]
pub async fn get_state(&self) -> CircuitState {
*self.state.read().await
}
@@ -316,56 +225,6 @@ impl CircuitBreaker {
self.transition_to_closed().await;
}
fn allow_half_open_probe(&self) -> AllowResult {
// 半开状态限流:只允许有限请求通过进行探测
// 默认最多允许 1 个请求(可在配置中扩展)
let max_half_open_requests = 1u32;
let current = self.half_open_requests.fetch_add(1, Ordering::SeqCst);
if current < max_half_open_requests {
log::debug!(
"Circuit breaker HalfOpen: allowing probe request ({}/{})",
current + 1,
max_half_open_requests
);
AllowResult {
allowed: true,
used_half_open_permit: true,
}
} else {
// 超过限额,回退计数,拒绝请求
self.half_open_requests.fetch_sub(1, Ordering::SeqCst);
log::debug!(
"Circuit breaker HalfOpen: rejecting request (limit reached: {max_half_open_requests})"
);
AllowResult {
allowed: false,
used_half_open_permit: false,
}
}
}
fn release_half_open_permit(&self) {
let mut current = self.half_open_requests.load(Ordering::SeqCst);
loop {
if current == 0 {
// 理论上不应该发生:说明调用方传入的 used_half_open_permit 与实际占用不一致
log::debug!("Circuit breaker HalfOpen permit already released (counter=0)");
return;
}
match self.half_open_requests.compare_exchange(
current,
current - 1,
Ordering::SeqCst,
Ordering::SeqCst,
) {
Ok(_) => return,
Err(actual) => current = actual,
}
}
}
/// 转换到打开状态
async fn transition_to_open(&self) {
*self.state.write().await = CircuitState::Open;
@@ -376,15 +235,8 @@ impl CircuitBreaker {
/// 转换到半开状态
async fn transition_to_half_open(&self) {
let mut state = self.state.write().await;
if *state != CircuitState::Open {
return;
}
*state = CircuitState::HalfOpen;
*self.state.write().await = CircuitState::HalfOpen;
self.consecutive_successes.store(0, Ordering::SeqCst);
// 重置半开状态的请求限流计数
self.half_open_requests.store(0, Ordering::SeqCst);
}
/// 转换到关闭状态
@@ -423,16 +275,16 @@ mod tests {
// 初始状态应该是关闭
assert_eq!(breaker.get_state().await, CircuitState::Closed);
assert!(breaker.allow_request().await.allowed);
assert!(breaker.allow_request().await);
// 记录 3 次失败
for _ in 0..3 {
breaker.record_failure(false).await;
breaker.record_failure().await;
}
// 应该转换到打开状态
assert_eq!(breaker.get_state().await, CircuitState::Open);
assert!(!breaker.allow_request().await.allowed);
assert!(!breaker.allow_request().await);
}
#[tokio::test]
@@ -445,8 +297,8 @@ mod tests {
let breaker = CircuitBreaker::new(config);
// 打开熔断器
breaker.record_failure(false).await;
breaker.record_failure(false).await;
breaker.record_failure().await;
breaker.record_failure().await;
assert_eq!(breaker.get_state().await, CircuitState::Open);
// 手动转换到半开状态
@@ -454,37 +306,13 @@ mod tests {
assert_eq!(breaker.get_state().await, CircuitState::HalfOpen);
// 记录 2 次成功
breaker.record_success(false).await;
breaker.record_success(false).await;
breaker.record_success().await;
breaker.record_success().await;
// 应该转换到关闭状态
assert_eq!(breaker.get_state().await, CircuitState::Closed);
}
#[tokio::test]
async fn test_half_open_transition_does_not_reset_inflight_permit() {
let config = CircuitBreakerConfig {
timeout_seconds: 0,
..Default::default()
};
let breaker = CircuitBreaker::new(config);
// 进入 Open,然后由于 timeout_seconds=0allow_request 会立即切换到 HalfOpen 并占用探测名额
breaker.transition_to_open().await;
let first = breaker.allow_request().await;
assert!(first.allowed);
assert!(first.used_half_open_permit);
assert_eq!(breaker.get_state().await, CircuitState::HalfOpen);
// 模拟并发下的“重复 HalfOpen 转换调用”,不应重置 in-flight 计数
breaker.transition_to_half_open().await;
// 由于名额仍被占用,第二次请求应被拒绝
let second = breaker.allow_request().await;
assert!(!second.allowed);
assert!(!second.used_half_open_permit);
}
#[tokio::test]
async fn test_circuit_breaker_reset() {
let config = CircuitBreakerConfig {
@@ -494,13 +322,13 @@ mod tests {
let breaker = CircuitBreaker::new(config);
// 打开熔断器
breaker.record_failure(false).await;
breaker.record_failure(false).await;
breaker.record_failure().await;
breaker.record_failure().await;
assert_eq!(breaker.get_state().await, CircuitState::Open);
// 重置
breaker.reset().await;
assert_eq!(breaker.get_state().await, CircuitState::Closed);
assert!(breaker.allow_request().await.allowed);
assert!(breaker.allow_request().await);
}
}
-12
View File
@@ -23,12 +23,6 @@ pub enum ProxyError {
#[error("无可用的Provider")]
NoAvailableProvider,
#[error("所有供应商已熔断,无可用渠道")]
AllProvidersCircuitOpen,
#[error("未配置供应商")]
NoProvidersConfigured,
#[allow(dead_code)]
#[error("Provider不健康: {0}")]
ProviderUnhealthy(String),
@@ -117,12 +111,6 @@ impl IntoResponse for ProxyError {
ProxyError::NoAvailableProvider => {
(StatusCode::SERVICE_UNAVAILABLE, self.to_string())
}
ProxyError::AllProvidersCircuitOpen => {
(StatusCode::SERVICE_UNAVAILABLE, self.to_string())
}
ProxyError::NoProvidersConfigured => {
(StatusCode::SERVICE_UNAVAILABLE, self.to_string())
}
ProxyError::ProviderUnhealthy(_) => {
(StatusCode::SERVICE_UNAVAILABLE, self.to_string())
}
-118
View File
@@ -1,118 +0,0 @@
//! 错误类型到 HTTP 状态码的映射
//!
//! 将 ProxyError 映射到合适的 HTTP 状态码,用于日志记录
use super::ProxyError;
/// 将 ProxyError 映射到 HTTP 状态码
///
/// 映射规则:
/// - 上游错误:直接使用上游返回的状态码
/// - 超时:504 Gateway Timeout
/// - 连接失败:502 Bad Gateway
/// - 无可用 Provider503 Service Unavailable
/// - 重试耗尽:503 Service Unavailable
/// - 其他错误:500 Internal Server Error
pub fn map_proxy_error_to_status(error: &ProxyError) -> u16 {
match error {
// 上游错误:使用实际状态码
ProxyError::UpstreamError { status, .. } => *status,
// 超时错误:504 Gateway Timeout
ProxyError::Timeout(_) => 504,
// 转发失败/连接失败:502 Bad Gateway
ProxyError::ForwardFailed(_) => 502,
// 无可用 Provider503 Service Unavailable
ProxyError::NoAvailableProvider => 503,
// 所有供应商已熔断:503 Service Unavailable
ProxyError::AllProvidersCircuitOpen => 503,
// 未配置供应商:503 Service Unavailable
ProxyError::NoProvidersConfigured => 503,
// 重试耗尽:503 Service Unavailable
ProxyError::MaxRetriesExceeded => 503,
// Provider 不健康:503 Service Unavailable
ProxyError::ProviderUnhealthy(_) => 503,
// 数据库错误:500 Internal Server Error
ProxyError::DatabaseError(_) => 500,
// 转换错误:500 Internal Server Error
ProxyError::TransformError(_) => 500,
// 其他未知错误:500 Internal Server Error
_ => 500,
}
}
/// 将 ProxyError 转换为用户友好的错误消息
pub fn get_error_message(error: &ProxyError) -> String {
match error {
ProxyError::UpstreamError { status, body } => {
if let Some(body) = body {
format!("上游错误 ({status}): {body}")
} else {
format!("上游错误 ({status})")
}
}
ProxyError::Timeout(msg) => format!("请求超时: {msg}"),
ProxyError::ForwardFailed(msg) => format!("转发失败: {msg}"),
ProxyError::NoAvailableProvider => "无可用 Provider".to_string(),
ProxyError::AllProvidersCircuitOpen => "所有供应商已熔断,无可用渠道".to_string(),
ProxyError::NoProvidersConfigured => "未配置供应商".to_string(),
ProxyError::MaxRetriesExceeded => "所有 Provider 都失败,重试耗尽".to_string(),
ProxyError::ProviderUnhealthy(msg) => format!("Provider 不健康: {msg}"),
ProxyError::DatabaseError(msg) => format!("数据库错误: {msg}"),
ProxyError::TransformError(msg) => format!("请求/响应转换错误: {msg}"),
_ => error.to_string(),
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_map_upstream_error() {
let error = ProxyError::UpstreamError {
status: 401,
body: Some("Unauthorized".to_string()),
};
assert_eq!(map_proxy_error_to_status(&error), 401);
}
#[test]
fn test_map_timeout_error() {
let error = ProxyError::Timeout("Request timeout".to_string());
assert_eq!(map_proxy_error_to_status(&error), 504);
}
#[test]
fn test_map_connection_error() {
let error = ProxyError::ForwardFailed("Connection refused".to_string());
assert_eq!(map_proxy_error_to_status(&error), 502);
}
#[test]
fn test_map_no_provider_error() {
let error = ProxyError::NoAvailableProvider;
assert_eq!(map_proxy_error_to_status(&error), 503);
}
#[test]
fn test_get_error_message() {
let error = ProxyError::UpstreamError {
status: 500,
body: Some("Internal Server Error".to_string()),
};
let msg = get_error_message(&error);
assert!(msg.contains("上游错误"));
assert!(msg.contains("500"));
assert!(msg.contains("Internal Server Error"));
}
}
-149
View File
@@ -1,149 +0,0 @@
//! 故障转移切换模块
//!
//! 处理故障转移成功后的供应商切换逻辑,包括:
//! - 去重控制(避免多个请求同时触发)
//! - 数据库更新
//! - 托盘菜单更新
//! - 前端事件发射
//! - Live 备份更新
use crate::database::Database;
use crate::error::AppError;
use std::collections::HashSet;
use std::str::FromStr;
use std::sync::Arc;
use tauri::{Emitter, Manager};
use tokio::sync::RwLock;
/// 故障转移切换管理器
///
/// 负责处理故障转移成功后的供应商切换,确保 UI 能够直观反映当前使用的供应商。
#[derive(Clone)]
pub struct FailoverSwitchManager {
/// 正在处理中的切换(key = "app_type:provider_id"
pending_switches: Arc<RwLock<HashSet<String>>>,
db: Arc<Database>,
}
impl FailoverSwitchManager {
pub fn new(db: Arc<Database>) -> Self {
Self {
pending_switches: Arc::new(RwLock::new(HashSet::new())),
db,
}
}
/// 尝试执行故障转移切换
///
/// 如果相同的切换已在进行中,则跳过;否则执行切换逻辑。
///
/// # Returns
/// - `Ok(true)` - 切换成功执行
/// - `Ok(false)` - 切换已在进行中,跳过
/// - `Err(e)` - 切换过程中发生错误
pub async fn try_switch(
&self,
app_handle: Option<&tauri::AppHandle>,
app_type: &str,
provider_id: &str,
provider_name: &str,
) -> Result<bool, AppError> {
let switch_key = format!("{app_type}:{provider_id}");
// 去重检查:如果相同切换已在进行中,跳过
{
let mut pending = self.pending_switches.write().await;
if pending.contains(&switch_key) {
log::debug!("[Failover] 切换已在进行中,跳过: {app_type} -> {provider_id}");
return Ok(false);
}
pending.insert(switch_key.clone());
}
// 执行切换(确保最后清理 pending 标记)
let result = self
.do_switch(app_handle, app_type, provider_id, provider_name)
.await;
// 清理 pending 标记
{
let mut pending = self.pending_switches.write().await;
pending.remove(&switch_key);
}
result
}
async fn do_switch(
&self,
app_handle: Option<&tauri::AppHandle>,
app_type: &str,
provider_id: &str,
provider_name: &str,
) -> Result<bool, AppError> {
// 检查该应用是否已被代理接管(enabled=true
// 只有被接管的应用才允许执行故障转移切换
let app_enabled = match self.db.get_proxy_config_for_app(app_type).await {
Ok(config) => config.enabled,
Err(e) => {
log::warn!("[Failover] 无法读取 {app_type} 配置: {e},跳过切换");
return Ok(false);
}
};
if !app_enabled {
log::info!("[Failover] {app_type} 未被代理接管(enabled=false),跳过切换");
return Ok(false);
}
log::info!("[Failover] 开始切换供应商: {app_type} -> {provider_name} ({provider_id})");
// 1. 更新数据库 is_current
self.db.set_current_provider(app_type, provider_id)?;
// 2. 更新本地 settings(设备级)
let app_type_enum = crate::app_config::AppType::from_str(app_type)
.map_err(|_| AppError::Message(format!("无效的应用类型: {app_type}")))?;
crate::settings::set_current_provider(&app_type_enum, Some(provider_id))?;
// 3. 更新托盘菜单和发射事件
if let Some(app) = app_handle {
// 更新托盘菜单
if let Some(app_state) = app.try_state::<crate::store::AppState>() {
// 更新 Live 备份(确保代理停止时恢复正确配置)
if let Ok(Some(provider)) = self.db.get_provider_by_id(provider_id, app_type) {
if let Err(e) = app_state
.proxy_service
.update_live_backup_from_provider(app_type, &provider)
.await
{
log::warn!("[Failover] 更新 Live 备份失败: {e}");
}
}
// 重建托盘菜单
if let Ok(new_menu) = crate::tray::create_tray_menu(app, app_state.inner()) {
if let Some(tray) = app.tray_by_id("main") {
if let Err(e) = tray.set_menu(Some(new_menu)) {
log::error!("[Failover] 更新托盘菜单失败: {e}");
}
}
}
}
// 发射事件到前端
let event_data = serde_json::json!({
"appType": app_type,
"providerId": provider_id,
"source": "failover" // 标识来源是故障转移
});
if let Err(e) = app.emit("provider-switched", event_data) {
log::error!("[Failover] 发射供应商切换事件失败: {e}");
}
}
log::info!("[Failover] 供应商切换完成: {app_type} -> {provider_name} ({provider_id})");
Ok(true)
}
}
+68 -371
View File
@@ -1,136 +1,41 @@
//! 请求转发器
//!
//! 负责将请求转发到上游Provider,支持故障转移
//! 负责将请求转发到上游Provider,支持重试和故障转移
use super::{
body_filter::filter_private_params_with_whitelist,
error::*,
failover_switch::FailoverSwitchManager,
provider_router::ProviderRouter,
provider_router::ProviderRouter as NewProviderRouter,
providers::{get_adapter, ProviderAdapter},
types::ProxyStatus,
ProxyError,
};
use crate::{app_config::AppType, provider::Provider};
use crate::{app_config::AppType, database::Database, provider::Provider};
use reqwest::{Client, Response};
use serde_json::Value;
use std::sync::Arc;
use std::time::{Duration, Instant};
use tokio::sync::RwLock;
/// Headers 黑名单 - 不透传到上游的 Headers
///
/// 参考 Claude Code Hub 设计,过滤以下类别:
/// 1. 认证类(会被覆盖)
/// 2. 连接类(由 HTTP 客户端管理)
/// 3. 代理转发类
/// 4. CDN/云服务商特定头
/// 5. 请求追踪类
/// 6. 浏览器特定头(可能被上游检测)
///
/// 注意:客户端 IP 类(x-forwarded-for, x-real-ip)默认透传
const HEADER_BLACKLIST: &[&str] = &[
// 认证类(会被覆盖)
"authorization",
"x-api-key",
// 连接类
"host",
"content-length",
"connection",
"transfer-encoding",
// 编码类(会被覆盖为 identity)
"accept-encoding",
// 代理转发类(保留 x-forwarded-for 和 x-real-ip
"x-forwarded-host",
"x-forwarded-port",
"x-forwarded-proto",
"forwarded",
// CDN/云服务商特定头
"cf-connecting-ip",
"cf-ipcountry",
"cf-ray",
"cf-visitor",
"true-client-ip",
"fastly-client-ip",
"x-azure-clientip",
"x-azure-fdid",
"x-azure-ref",
"akamai-origin-hop",
"x-akamai-config-log-detail",
// 请求追踪类
"x-request-id",
"x-correlation-id",
"x-trace-id",
"x-amzn-trace-id",
"x-b3-traceid",
"x-b3-spanid",
"x-b3-parentspanid",
"x-b3-sampled",
"traceparent",
"tracestate",
// 浏览器特定头(可能被上游检测为非 CLI 请求)
"sec-fetch-mode",
"sec-fetch-site",
"sec-fetch-dest",
"sec-ch-ua",
"sec-ch-ua-mobile",
"sec-ch-ua-platform",
"accept-language",
// anthropic-beta 单独处理,避免重复
"anthropic-beta",
// 客户端 IP 单独处理(默认透传)
"x-forwarded-for",
"x-real-ip",
];
pub struct ForwardResult {
pub response: Response,
pub provider: Provider,
}
pub struct ForwardError {
pub error: ProxyError,
pub provider: Option<Provider>,
}
pub struct RequestForwarder {
client: Client,
/// 共享的 ProviderRouter(持有熔断器状态)
router: Arc<ProviderRouter>,
router: Arc<NewProviderRouter>,
#[allow(dead_code)]
max_retries: u8,
status: Arc<RwLock<ProxyStatus>>,
current_providers: Arc<RwLock<std::collections::HashMap<String, (String, String)>>>,
/// 故障转移切换管理器
failover_manager: Arc<FailoverSwitchManager>,
/// AppHandle,用于发射事件和更新托盘
app_handle: Option<tauri::AppHandle>,
/// 请求开始时的"当前供应商 ID"(用于判断是否需要同步 UI/托盘)
current_provider_id_at_start: String,
}
impl RequestForwarder {
#[allow(clippy::too_many_arguments)]
pub fn new(
router: Arc<ProviderRouter>,
non_streaming_timeout: u64,
db: Arc<Database>,
timeout_secs: u64,
max_retries: u8,
status: Arc<RwLock<ProxyStatus>>,
current_providers: Arc<RwLock<std::collections::HashMap<String, (String, String)>>>,
failover_manager: Arc<FailoverSwitchManager>,
app_handle: Option<tauri::AppHandle>,
current_provider_id_at_start: String,
_streaming_first_byte_timeout: u64,
_streaming_idle_timeout: u64,
) -> Self {
// 全局超时设置为 1800 秒(30 分钟),确保业务层超时配置能正常工作
// 参考 Claude Code Hub 的 undici 全局超时设计
const GLOBAL_TIMEOUT_SECS: u64 = 1800;
let mut client_builder = Client::builder();
if non_streaming_timeout > 0 {
// 使用配置的非流式超时
client_builder = client_builder.timeout(Duration::from_secs(non_streaming_timeout));
} else {
// 禁用超时时使用全局超时作为保底
client_builder = client_builder.timeout(Duration::from_secs(GLOBAL_TIMEOUT_SECS));
if timeout_secs > 0 {
client_builder = client_builder.timeout(Duration::from_secs(timeout_secs));
}
let client = client_builder
@@ -139,40 +44,34 @@ impl RequestForwarder {
Self {
client,
router,
router: Arc::new(NewProviderRouter::new(db)),
max_retries,
status,
current_providers,
failover_manager,
app_handle,
current_provider_id_at_start,
}
}
/// 转发请求(带故障转移)
///
/// # Arguments
/// * `app_type` - 应用类型
/// * `endpoint` - API 端点
/// * `body` - 请求体
/// * `headers` - 请求头
/// * `providers` - 已选择的 Provider 列表(由 RequestContext 提供,避免重复调用 select_providers
pub async fn forward_with_retry(
&self,
app_type: &AppType,
endpoint: &str,
body: Value,
headers: axum::http::HeaderMap,
providers: Vec<Provider>,
) -> Result<ForwardResult, ForwardError> {
) -> Result<Response, ProxyError> {
// 获取适配器
let adapter = get_adapter(app_type);
let app_type_str = app_type.as_str();
// 使用新的 ProviderRouter 选择所有可用供应商
let providers = self
.router
.select_providers(app_type_str)
.await
.map_err(|e| ProxyError::DatabaseError(e.to_string()))?;
if providers.is_empty() {
return Err(ForwardError {
error: ProxyError::NoAvailableProvider,
provider: None,
});
return Err(ProxyError::NoAvailableProvider);
}
log::info!(
@@ -182,41 +81,14 @@ impl RequestForwarder {
);
let mut last_error = None;
let mut last_provider = None;
let mut attempted_providers = 0usize;
// 单 Provider 场景下跳过熔断器检查(故障转移关闭时)
let bypass_circuit_breaker = providers.len() == 1;
let mut failover_happened = false;
// 依次尝试每个供应商
for provider in providers.iter() {
// 发起请求前先获取熔断器放行许可(HalfOpen 会占用探测名额)
// 单 Provider 场景下跳过此检查,避免熔断器阻塞所有请求
let (allowed, used_half_open_permit) = if bypass_circuit_breaker {
(true, false)
} else {
let permit = self
.router
.allow_provider_request(&provider.id, app_type_str)
.await;
(permit.allowed, permit.used_half_open_permit)
};
if !allowed {
log::debug!(
"[{}] Provider {} 熔断器拒绝本次请求,跳过",
app_type_str,
provider.name
);
continue;
}
attempted_providers += 1;
for (attempt, provider) in providers.iter().enumerate() {
log::info!(
"[{}] 尝试 {}/{} - 使用Provider: {} (sort_index: {})",
app_type_str,
attempted_providers,
attempt + 1,
providers.len(),
provider.name,
provider.sort_index.unwrap_or(999999)
@@ -229,11 +101,14 @@ impl RequestForwarder {
status.current_provider_id = Some(provider.id.clone());
status.total_requests += 1;
status.last_request_at = Some(chrono::Utc::now().to_rfc3339());
if attempt > 0 {
failover_happened = true;
}
}
let start = Instant::now();
// 转发请求(每个 Provider 只尝试一次,重试由客户端控制)
// 转发请求
match self
.forward(provider, endpoint, &body, &headers, adapter.as_ref())
.await
@@ -244,13 +119,7 @@ impl RequestForwarder {
// 成功:记录成功并更新熔断器
if let Err(e) = self
.router
.record_result(
&provider.id,
app_type_str,
used_half_open_permit,
true,
None,
)
.record_result(&provider.id, app_type_str, true, None)
.await
{
log::warn!("Failed to record success: {e}");
@@ -270,30 +139,14 @@ impl RequestForwarder {
let mut status = self.status.write().await;
status.success_requests += 1;
status.last_error = None;
let should_switch =
self.current_provider_id_at_start.as_str() != provider.id.as_str();
if should_switch {
if failover_happened {
status.failover_count += 1;
log::info!(
"[{}] 代理目标已切换到 Provider: {} (耗时: {}ms)",
"[{}] 故障转移成功!切换到 Provider: {} (耗时: {}ms)",
app_type_str,
provider.name,
latency
);
// 异步触发供应商切换,更新 UI/托盘,并把“当前供应商”同步为实际使用的 provider
let fm = self.failover_manager.clone();
let ah = self.app_handle.clone();
let pid = provider.id.clone();
let pname = provider.name.clone();
let at = app_type_str.to_string();
tokio::spawn(async move {
if let Err(e) = fm.try_switch(ah.as_ref(), &at, &pid, &pname).await
{
log::error!("[Failover] 切换供应商失败: {e}");
}
});
}
// 重新计算成功率
if status.total_requests > 0 {
@@ -310,10 +163,7 @@ impl RequestForwarder {
latency
);
return Ok(ForwardResult {
response,
provider: provider.clone(),
});
return Ok(response);
}
Err(e) => {
let latency = start.elapsed().as_millis() as u64;
@@ -321,13 +171,7 @@ impl RequestForwarder {
// 失败:记录失败并更新熔断器
if let Err(record_err) = self
.router
.record_result(
&provider.id,
app_type_str,
used_half_open_permit,
false,
Some(e.to_string()),
)
.record_result(&provider.id, app_type_str, false, Some(e.to_string()))
.await
{
log::warn!("Failed to record failure: {record_err}");
@@ -354,7 +198,6 @@ impl RequestForwarder {
);
last_error = Some(e);
last_provider = Some(provider.clone());
// 继续尝试下一个供应商
continue;
}
@@ -376,33 +219,13 @@ impl RequestForwarder {
provider.name,
e
);
return Err(ForwardError {
error: e,
provider: Some(provider.clone()),
});
return Err(e);
}
}
}
}
}
if attempted_providers == 0 {
// providers 列表非空,但全部被熔断器拒绝(典型:HalfOpen 探测名额被占用)
{
let mut status = self.status.write().await;
status.failed_requests += 1;
status.last_error = Some("所有供应商暂时不可用(熔断器限制)".to_string());
if status.total_requests > 0 {
status.success_rate =
(status.success_requests as f32 / status.total_requests as f32) * 100.0;
}
}
return Err(ForwardError {
error: ProxyError::NoAvailableProvider,
provider: None,
});
}
// 所有供应商都失败了
{
let mut status = self.status.write().await;
@@ -420,10 +243,7 @@ impl RequestForwarder {
providers.len()
);
Err(ForwardError {
error: last_error.unwrap_or(ProxyError::MaxRetriesExceeded),
provider: last_provider,
})
Err(last_error.unwrap_or(ProxyError::MaxRetriesExceeded))
}
/// 转发单个请求(使用适配器)
@@ -439,19 +259,12 @@ impl RequestForwarder {
let base_url = adapter.extract_base_url(provider)?;
log::info!("[{}] base_url: {}", adapter.name(), base_url);
// 使用适配器构建 URL
let url = adapter.build_url(&base_url, endpoint);
// 检查是否需要格式转换
let needs_transform = adapter.needs_transform(provider);
let effective_endpoint =
if needs_transform && adapter.name() == "Claude" && endpoint == "/v1/messages" {
"/v1/chat/completions"
} else {
endpoint
};
// 使用适配器构建 URL
let url = adapter.build_url(&base_url, effective_endpoint);
// 记录原始请求 JSON
log::info!(
"[{}] ====== 请求开始 ======\n>>> 原始请求 JSON:\n{}",
@@ -459,23 +272,10 @@ impl RequestForwarder {
serde_json::to_string_pretty(body).unwrap_or_else(|_| body.to_string())
);
// 应用模型映射(独立于格式转换)
let (mapped_body, _original_model, mapped_model) =
super::model_mapper::apply_model_mapping(body.clone(), provider);
if let Some(ref mapped) = mapped_model {
log::info!(
"[{}] >>> 模型映射后的请求 JSON:\n{}",
adapter.name(),
serde_json::to_string_pretty(&mapped_body).unwrap_or_default()
);
log::info!("[{}] 模型已映射到: {}", adapter.name(), mapped);
}
// 转换请求体(如果需要)
let request_body = if needs_transform {
log::info!("[{}] 转换请求格式 (Anthropic → OpenAI)", adapter.name());
let transformed = adapter.transform_request(mapped_body, provider)?;
let transformed = adapter.transform_request(body.clone(), provider)?;
log::info!(
"[{}] >>> 转换后的请求 JSON:\n{}",
adapter.name(),
@@ -483,31 +283,9 @@ impl RequestForwarder {
);
transformed
} else {
mapped_body
body.clone()
};
// 过滤私有参数(以 `_` 开头的字段),防止内部信息泄露到上游
// 默认使用空白名单,过滤所有 _ 前缀字段
let filtered_body = filter_private_params_with_whitelist(request_body, &[]);
// ========== 请求体日志(截断显示) ==========
let body_str = serde_json::to_string_pretty(&filtered_body)
.unwrap_or_else(|_| filtered_body.to_string());
let body_preview = if body_str.len() > 2000 {
format!(
"{}...\n[截断,总长度: {} 字符]",
&body_str[..2000],
body_str.len()
)
} else {
body_str
};
log::info!(
"[{}] ====== 最终请求体 ======\n{}",
adapter.name(),
body_preview
);
log::info!(
"[{}] 转发请求: {} -> {}",
adapter.name(),
@@ -518,73 +296,28 @@ impl RequestForwarder {
// 构建请求
let mut request = self.client.post(&url);
// ========== 详细 Headers 日志 ==========
log::info!("[{}] ====== 客户端原始 Headers ======", adapter.name());
for (key, value) in headers {
log::info!(
"[{}] {}: {:?}",
adapter.name(),
key.as_str(),
value.to_str().unwrap_or("<binary>")
);
}
// 过滤黑名单 Headers,保护隐私并避免冲突
let mut filtered_headers: Vec<String> = Vec::new();
let mut passed_headers: Vec<(String, String)> = Vec::new();
// 只透传必要的 Headers(白名单模式)
let allowed_headers = [
"accept",
"user-agent",
"x-request-id",
"x-stainless-arch",
"x-stainless-lang",
"x-stainless-os",
"x-stainless-package-version",
"x-stainless-runtime",
"x-stainless-runtime-version",
];
for (key, value) in headers {
let key_str = key.as_str().to_lowercase();
if HEADER_BLACKLIST.contains(&key_str.as_str()) {
filtered_headers.push(key_str);
continue;
}
let value_str = value.to_str().unwrap_or("<binary>").to_string();
passed_headers.push((key.as_str().to_string(), value_str.clone()));
request = request.header(key, value);
}
if !filtered_headers.is_empty() {
log::info!(
"[{}] ====== 被过滤的 Headers ({}) ======",
adapter.name(),
filtered_headers.len()
);
for h in &filtered_headers {
log::info!("[{}] - {}", adapter.name(), h);
if allowed_headers.contains(&key_str.as_str()) {
request = request.header(key, value);
}
}
// 处理 anthropic-beta Header(透传)
// 参考 Claude Code Hub 的实现,直接透传客户端的 beta 标记
if let Some(beta) = headers.get("anthropic-beta") {
if let Ok(beta_str) = beta.to_str() {
request = request.header("anthropic-beta", beta_str);
passed_headers.push(("anthropic-beta".to_string(), beta_str.to_string()));
log::info!("[{}] 透传 anthropic-beta: {}", adapter.name(), beta_str);
}
}
// 客户端 IP 透传(默认开启)
if let Some(xff) = headers.get("x-forwarded-for") {
if let Ok(xff_str) = xff.to_str() {
request = request.header("x-forwarded-for", xff_str);
passed_headers.push(("x-forwarded-for".to_string(), xff_str.to_string()));
log::debug!("[{}] 透传 x-forwarded-for: {}", adapter.name(), xff_str);
}
}
if let Some(real_ip) = headers.get("x-real-ip") {
if let Ok(real_ip_str) = real_ip.to_str() {
request = request.header("x-real-ip", real_ip_str);
passed_headers.push(("x-real-ip".to_string(), real_ip_str.to_string()));
log::debug!("[{}] 透传 x-real-ip: {}", adapter.name(), real_ip_str);
}
}
// 禁用压缩,避免 gzip 流式响应解析错误
// 参考 CCH: undici 在连接提前关闭时会对不完整的 gzip 流抛出错误
request = request.header("accept-encoding", "identity");
passed_headers.push(("accept-encoding".to_string(), "identity".to_string()));
// 确保 Content-Type 是 json
request = request.header("Content-Type", "application/json");
// 使用适配器添加认证头
if let Some(auth) = adapter.extract_auth(provider) {
@@ -595,15 +328,6 @@ impl RequestForwarder {
auth.masked_key()
);
request = adapter.add_auth_headers(request, &auth);
// 记录认证头(脱敏)
passed_headers.push((
"authorization".to_string(),
format!("Bearer {}...", &auth.api_key[..8.min(auth.api_key.len())]),
));
passed_headers.push((
"x-api-key".to_string(),
format!("{}...", &auth.api_key[..8.min(auth.api_key.len())]),
));
} else {
log::error!(
"[{}] 未找到 API KeyProvider: {}",
@@ -612,34 +336,9 @@ impl RequestForwarder {
);
}
// anthropic-version 透传:优先使用客户端的版本号
// 参考 Claude Code Hub:透传客户端值而非固定版本
if let Some(version) = headers.get("anthropic-version") {
if let Ok(version_str) = version.to_str() {
// 覆盖适配器设置的默认版本
request = request.header("anthropic-version", version_str);
passed_headers.push(("anthropic-version".to_string(), version_str.to_string()));
log::info!(
"[{}] 透传 anthropic-version: {}",
adapter.name(),
version_str
);
}
}
// ========== 最终发送的 Headers 日志 ==========
log::info!(
"[{}] ====== 最终发送的 Headers ({}) ======",
adapter.name(),
passed_headers.len()
);
for (k, v) in &passed_headers {
log::info!("[{}] {}: {}", adapter.name(), k, v);
}
// 发送请求
log::info!("[{}] 发送请求到: {}", adapter.name(), url);
let response = request.json(&filtered_body).send().await.map_err(|e| {
let response = request.json(&request_body).send().await.map_err(|e| {
log::error!("[{}] 请求失败: {}", adapter.name(), e);
if e.is_timeout() {
ProxyError::Timeout(format!("请求超时: {e}"))
@@ -673,24 +372,22 @@ impl RequestForwarder {
}
}
/// 分类ProxyError
fn categorize_proxy_error(&self, error: &ProxyError) -> ErrorCategory {
match error {
// 网络和上游错误:都应该尝试下一个供应商
ProxyError::Timeout(_) => ErrorCategory::Retryable,
ProxyError::ForwardFailed(_) => ErrorCategory::Retryable,
ProxyError::UpstreamError { status, .. } => {
if *status >= 500 {
ErrorCategory::Retryable
} else if *status >= 400 && *status < 500 {
ErrorCategory::NonRetryable
} else {
ErrorCategory::Retryable
}
}
ProxyError::ProviderUnhealthy(_) => ErrorCategory::Retryable,
// 上游 HTTP 错误:无论状态码如何,都尝试下一个供应商
// 原因:不同供应商有不同的限制和认证,一个供应商的 4xx 错误
// 不代表其他供应商也会失败
ProxyError::UpstreamError { .. } => ErrorCategory::Retryable,
// Provider 级配置/转换问题:换一个 Provider 可能就能成功
ProxyError::ConfigError(_) => ErrorCategory::Retryable,
ProxyError::TransformError(_) => ErrorCategory::Retryable,
ProxyError::AuthError(_) => ErrorCategory::Retryable,
ProxyError::StreamIdleTimeout(_) => ErrorCategory::Retryable,
// 无可用供应商:所有供应商都试过了,无法重试
ProxyError::NoAvailableProvider => ErrorCategory::NonRetryable,
// 其他错误(数据库/内部错误等):不是换供应商能解决的问题
_ => ErrorCategory::NonRetryable,
}
}
-188
View File
@@ -1,188 +0,0 @@
//! Handler 配置模块
//!
//! 定义各 API 处理器的配置结构和使用量解析器
use crate::app_config::AppType;
use crate::proxy::usage::parser::TokenUsage;
use serde_json::Value;
/// 使用量解析器类型别名
pub type StreamUsageParser = fn(&[Value]) -> Option<TokenUsage>;
pub type ResponseUsageParser = fn(&Value) -> Option<TokenUsage>;
/// 模型提取器类型别名
/// 参数: (流式事件列表, 请求中的模型名称) -> 最终使用的模型名称
pub type StreamModelExtractor = fn(&[Value], &str) -> String;
/// 各 API 的使用量解析配置
#[derive(Clone, Copy)]
pub struct UsageParserConfig {
/// 流式响应解析器
pub stream_parser: StreamUsageParser,
/// 非流式响应解析器
pub response_parser: ResponseUsageParser,
/// 流式响应中的模型提取器
pub model_extractor: StreamModelExtractor,
/// 应用类型字符串(用于日志记录)
pub app_type_str: &'static str,
}
// ============================================================================
// 模型提取器实现
// ============================================================================
/// Claude 流式响应模型提取(优先使用 usage.model
fn claude_model_extractor(events: &[Value], request_model: &str) -> String {
// 首先尝试从解析的 usage 中获取模型
if let Some(usage) = TokenUsage::from_claude_stream_events(events) {
if let Some(model) = usage.model {
return model;
}
}
request_model.to_string()
}
/// OpenAI Chat Completions 流式响应模型提取(优先使用 usage.model
fn openai_model_extractor(events: &[Value], request_model: &str) -> String {
// 首先尝试从解析的 usage 中获取模型
if let Some(usage) = TokenUsage::from_openai_stream_events(events) {
if let Some(model) = usage.model {
return model;
}
}
// 回退:从事件中直接提取
events
.iter()
.find_map(|e| e.get("model")?.as_str())
.unwrap_or(request_model)
.to_string()
}
/// Codex 智能流式响应模型提取(自动检测格式)
fn codex_auto_model_extractor(events: &[Value], request_model: &str) -> String {
// 首先尝试从解析的 usage 中获取模型
if let Some(usage) = TokenUsage::from_codex_stream_events_auto(events) {
if let Some(model) = usage.model {
return model;
}
}
// 回退:从 response.completed 事件中提取
events
.iter()
.find_map(|e| {
if e.get("type")?.as_str()? == "response.completed" {
e.get("response")?.get("model")?.as_str()
} else {
None
}
})
.or_else(|| {
// 再回退:从 OpenAI 格式事件中提取
events.iter().find_map(|e| e.get("model")?.as_str())
})
.unwrap_or(request_model)
.to_string()
}
/// Gemini 流式响应模型提取(优先使用 usage.model
fn gemini_model_extractor(events: &[Value], request_model: &str) -> String {
// 首先尝试从解析的 usage 中获取模型
if let Some(usage) = TokenUsage::from_gemini_stream_chunks(events) {
if let Some(model) = usage.model {
return model;
}
}
request_model.to_string()
}
// ============================================================================
// 预定义配置
// ============================================================================
/// Claude API 解析配置
pub const CLAUDE_PARSER_CONFIG: UsageParserConfig = UsageParserConfig {
stream_parser: TokenUsage::from_claude_stream_events,
response_parser: TokenUsage::from_claude_response,
model_extractor: claude_model_extractor,
app_type_str: "claude",
};
/// OpenAI Chat Completions API 解析配置(用于 Codex /v1/chat/completions
pub const OPENAI_PARSER_CONFIG: UsageParserConfig = UsageParserConfig {
stream_parser: TokenUsage::from_openai_stream_events,
response_parser: TokenUsage::from_openai_response,
model_extractor: openai_model_extractor,
app_type_str: "codex",
};
/// Codex 智能解析配置(自动检测 OpenAI 或 Codex 格式)
pub const CODEX_PARSER_CONFIG: UsageParserConfig = UsageParserConfig {
stream_parser: TokenUsage::from_codex_stream_events_auto,
response_parser: TokenUsage::from_codex_response_auto,
model_extractor: codex_auto_model_extractor,
app_type_str: "codex",
};
/// Gemini API 解析配置
pub const GEMINI_PARSER_CONFIG: UsageParserConfig = UsageParserConfig {
stream_parser: TokenUsage::from_gemini_stream_chunks,
response_parser: TokenUsage::from_gemini_response,
model_extractor: gemini_model_extractor,
app_type_str: "gemini",
};
// ============================================================================
// Handler 配置(预留,用于进一步简化)
// ============================================================================
/// Handler 基础配置
///
/// 预留结构,可用于进一步统一各 handler 的配置
#[allow(dead_code)]
#[derive(Clone)]
pub struct HandlerConfig {
/// 应用类型
pub app_type: AppType,
/// 日志标签
pub tag: &'static str,
/// 应用类型字符串
pub app_type_str: &'static str,
/// 使用量解析配置
pub parser_config: &'static UsageParserConfig,
}
/// Claude Handler 配置
#[allow(dead_code)]
pub const CLAUDE_HANDLER_CONFIG: HandlerConfig = HandlerConfig {
app_type: AppType::Claude,
tag: "Claude",
app_type_str: "claude",
parser_config: &CLAUDE_PARSER_CONFIG,
};
/// Codex Chat Completions Handler 配置
#[allow(dead_code)]
pub const CODEX_CHAT_HANDLER_CONFIG: HandlerConfig = HandlerConfig {
app_type: AppType::Codex,
tag: "Codex",
app_type_str: "codex",
parser_config: &OPENAI_PARSER_CONFIG,
};
/// Codex Responses Handler 配置
#[allow(dead_code)]
pub const CODEX_RESPONSES_HANDLER_CONFIG: HandlerConfig = HandlerConfig {
app_type: AppType::Codex,
tag: "Codex",
app_type_str: "codex",
parser_config: &CODEX_PARSER_CONFIG,
};
/// Gemini Handler 配置
#[allow(dead_code)]
pub const GEMINI_HANDLER_CONFIG: HandlerConfig = HandlerConfig {
app_type: AppType::Gemini,
tag: "Gemini",
app_type_str: "gemini",
parser_config: &GEMINI_PARSER_CONFIG,
};
-247
View File
@@ -1,247 +0,0 @@
//! 请求上下文模块
//!
//! 提供请求生命周期的上下文管理,封装通用初始化逻辑
use crate::app_config::AppType;
use crate::provider::Provider;
use crate::proxy::{
extract_session_id, forwarder::RequestForwarder, server::ProxyState, types::AppProxyConfig,
ProxyError,
};
use axum::http::HeaderMap;
use std::time::Instant;
/// 流式超时配置
#[derive(Debug, Clone, Copy)]
pub struct StreamingTimeoutConfig {
/// 首字节超时(秒),0 表示禁用
pub first_byte_timeout: u64,
/// 静默期超时(秒),0 表示禁用
pub idle_timeout: u64,
}
/// 请求上下文
///
/// 贯穿整个请求生命周期,包含:
/// - 计时信息
/// - 应用级代理配置(per-app
/// - 选中的 Provider 列表(用于故障转移)
/// - 请求模型名称
/// - 日志标签
/// - Session ID(用于日志关联)
pub struct RequestContext {
/// 请求开始时间
pub start_time: Instant,
/// 应用级代理配置(per-app,包含重试次数和超时配置)
pub app_config: AppProxyConfig,
/// 选中的 Provider(故障转移链的第一个)
pub provider: Provider,
/// 完整的 Provider 列表(用于故障转移)
providers: Vec<Provider>,
/// 请求开始时的"当前供应商"(用于判断是否需要同步 UI/托盘)
///
/// 这里使用本地 settings 的设备级 current provider。
/// 代理模式下如果实际使用的 provider 与此不一致,会触发切换以确保 UI 始终准确。
pub current_provider_id: String,
/// 请求中的模型名称
pub request_model: String,
/// 日志标签(如 "Claude"、"Codex"、"Gemini"
pub tag: &'static str,
/// 应用类型字符串(如 "claude"、"codex"、"gemini"
pub app_type_str: &'static str,
/// 应用类型(预留,目前通过 app_type_str 使用)
#[allow(dead_code)]
pub app_type: AppType,
/// Session ID(从客户端请求提取或新生成)
pub session_id: String,
}
impl RequestContext {
/// 创建请求上下文
///
/// # Arguments
/// * `state` - 代理服务器状态
/// * `body` - 请求体 JSON
/// * `headers` - 请求头(用于提取 Session ID
/// * `app_type` - 应用类型
/// * `tag` - 日志标签
/// * `app_type_str` - 应用类型字符串
///
/// # Errors
/// 返回 `ProxyError` 如果 Provider 选择失败
pub async fn new(
state: &ProxyState,
body: &serde_json::Value,
headers: &HeaderMap,
app_type: AppType,
tag: &'static str,
app_type_str: &'static str,
) -> Result<Self, ProxyError> {
let start_time = Instant::now();
// 从数据库读取应用级代理配置(per-app)
let app_config = state
.db
.get_proxy_config_for_app(app_type_str)
.await
.map_err(|e| ProxyError::DatabaseError(e.to_string()))?;
let current_provider_id =
crate::settings::get_current_provider(&app_type).unwrap_or_default();
// 从请求体提取模型名称
let request_model = body
.get("model")
.and_then(|m| m.as_str())
.unwrap_or("unknown")
.to_string();
// 提取 Session ID
let session_result = extract_session_id(headers, body, app_type_str);
let session_id = session_result.session_id.clone();
log::debug!(
"[{}] Session ID: {} (from {:?}, client_provided: {})",
tag,
session_id,
session_result.source,
session_result.client_provided
);
// 使用共享的 ProviderRouter 选择 Provider(熔断器状态跨请求保持)
// 注意:只在这里调用一次,结果传递给 forwarder,避免重复消耗 HalfOpen 名额
let providers = state
.provider_router
.select_providers(app_type_str)
.await
.map_err(|e| match e {
crate::error::AppError::AllProvidersCircuitOpen => {
ProxyError::AllProvidersCircuitOpen
}
crate::error::AppError::NoProvidersConfigured => ProxyError::NoProvidersConfigured,
_ => ProxyError::DatabaseError(e.to_string()),
})?;
let provider = providers
.first()
.cloned()
.ok_or(ProxyError::NoAvailableProvider)?;
log::info!(
"[{}] Provider: {}, model: {}, failover chain: {} providers, session: {}",
tag,
provider.name,
request_model,
providers.len(),
session_id
);
Ok(Self {
start_time,
app_config,
provider,
providers,
current_provider_id,
request_model,
tag,
app_type_str,
app_type,
session_id,
})
}
/// 从 URI 提取模型名称(Gemini 专用)
///
/// Gemini API 的模型名称在 URI 中,格式如:
/// `/v1beta/models/gemini-pro:generateContent`
pub fn with_model_from_uri(mut self, uri: &axum::http::Uri) -> Self {
let endpoint = uri
.path_and_query()
.map(|pq| pq.as_str())
.unwrap_or(uri.path());
self.request_model = endpoint
.split('/')
.find(|s| s.starts_with("models/"))
.and_then(|s| s.strip_prefix("models/"))
.map(|s| s.split(':').next().unwrap_or(s))
.unwrap_or("unknown")
.to_string();
log::info!("[{}] 从 URI 提取模型: {}", self.tag, self.request_model);
self
}
/// 创建 RequestForwarder
///
/// 使用共享的 ProviderRouter,确保熔断器状态跨请求保持
///
/// 配置生效规则:
/// - 故障转移开启:超时配置正常生效(0 表示禁用超时)
/// - 故障转移关闭:超时配置不生效(全部传入 0)
pub fn create_forwarder(&self, state: &ProxyState) -> RequestForwarder {
let (non_streaming_timeout, first_byte_timeout, idle_timeout) =
if self.app_config.auto_failover_enabled {
// 故障转移开启:使用配置的值(0 = 禁用超时)
(
self.app_config.non_streaming_timeout as u64,
self.app_config.streaming_first_byte_timeout as u64,
self.app_config.streaming_idle_timeout as u64,
)
} else {
// 故障转移关闭:不启用超时配置
log::info!(
"[{}] Failover disabled, timeout configs are bypassed",
self.tag
);
(0, 0, 0)
};
RequestForwarder::new(
state.provider_router.clone(),
non_streaming_timeout,
state.status.clone(),
state.current_providers.clone(),
state.failover_manager.clone(),
state.app_handle.clone(),
self.current_provider_id.clone(),
first_byte_timeout,
idle_timeout,
)
}
/// 获取 Provider 列表(用于故障转移)
///
/// 返回在创建上下文时已选择的 providers,避免重复调用 select_providers()
pub fn get_providers(&self) -> Vec<Provider> {
self.providers.clone()
}
/// 计算请求延迟(毫秒)
#[inline]
pub fn latency_ms(&self) -> u64 {
self.start_time.elapsed().as_millis() as u64
}
/// 获取流式超时配置
///
/// 配置生效规则:
/// - 故障转移开启:返回配置的值(0 表示禁用超时检查)
/// - 故障转移关闭:返回 0(禁用超时检查)
#[inline]
pub fn streaming_timeout_config(&self) -> StreamingTimeoutConfig {
if self.app_config.auto_failover_enabled {
// 故障转移开启:使用配置的值(0 = 禁用超时)
StreamingTimeoutConfig {
first_byte_timeout: self.app_config.streaming_first_byte_timeout as u64,
idle_timeout: self.app_config.streaming_idle_timeout as u64,
}
} else {
// 故障转移关闭:禁用流式超时检查
StreamingTimeoutConfig {
first_byte_timeout: 0,
idle_timeout: 0,
}
}
}
}
File diff suppressed because it is too large Load Diff
+2 -10
View File
@@ -2,21 +2,15 @@
//!
//! 提供本地HTTP代理服务,支持多Provider故障转移和请求透传
pub mod body_filter;
pub mod circuit_breaker;
pub mod error;
pub mod error_mapper;
pub(crate) mod failover_switch;
mod forwarder;
pub mod handler_config;
pub mod handler_context;
mod handlers;
mod health;
pub mod model_mapper;
pub mod provider_router;
pub mod providers;
pub mod response_handler;
pub mod response_processor;
mod router;
pub(crate) mod server;
pub mod session;
pub(crate) mod types;
@@ -34,9 +28,7 @@ pub use provider_router::ProviderRouter;
#[allow(unused_imports)]
pub use response_handler::{NonStreamHandler, ResponseType, StreamHandler};
#[allow(unused_imports)]
pub use session::{
extract_session_id, ClientFormat, ProxySession, SessionIdResult, SessionIdSource,
};
pub use session::{ClientFormat, ProxySession};
#[allow(unused_imports)]
pub use types::{ProxyConfig, ProxyServerInfo, ProxyStatus};
-264
View File
@@ -1,264 +0,0 @@
//! 模型映射模块
//!
//! 在请求转发前,根据 Provider 配置替换请求中的模型名称
use crate::provider::Provider;
use serde_json::Value;
/// 模型映射配置
pub struct ModelMapping {
pub haiku_model: Option<String>,
pub sonnet_model: Option<String>,
pub opus_model: Option<String>,
pub default_model: Option<String>,
pub reasoning_model: Option<String>,
}
impl ModelMapping {
/// 从 Provider 配置中提取模型映射
pub fn from_provider(provider: &Provider) -> Self {
let env = provider.settings_config.get("env");
Self {
haiku_model: env
.and_then(|e| e.get("ANTHROPIC_DEFAULT_HAIKU_MODEL"))
.and_then(|v| v.as_str())
.filter(|s| !s.is_empty())
.map(String::from),
sonnet_model: env
.and_then(|e| e.get("ANTHROPIC_DEFAULT_SONNET_MODEL"))
.and_then(|v| v.as_str())
.filter(|s| !s.is_empty())
.map(String::from),
opus_model: env
.and_then(|e| e.get("ANTHROPIC_DEFAULT_OPUS_MODEL"))
.and_then(|v| v.as_str())
.filter(|s| !s.is_empty())
.map(String::from),
default_model: env
.and_then(|e| e.get("ANTHROPIC_MODEL"))
.and_then(|v| v.as_str())
.filter(|s| !s.is_empty())
.map(String::from),
reasoning_model: env
.and_then(|e| e.get("ANTHROPIC_REASONING_MODEL"))
.and_then(|v| v.as_str())
.filter(|s| !s.is_empty())
.map(String::from),
}
}
/// 检查是否配置了任何模型映射
pub fn has_mapping(&self) -> bool {
self.haiku_model.is_some()
|| self.sonnet_model.is_some()
|| self.opus_model.is_some()
|| self.default_model.is_some()
}
/// 根据原始模型名称获取映射后的模型
pub fn map_model(&self, original_model: &str, has_thinking: bool) -> String {
let model_lower = original_model.to_lowercase();
// 1. thinking 模式优先使用推理模型
if has_thinking {
if let Some(ref m) = self.reasoning_model {
return m.clone();
}
}
// 2. 按模型类型匹配
if model_lower.contains("haiku") {
if let Some(ref m) = self.haiku_model {
return m.clone();
}
}
if model_lower.contains("opus") {
if let Some(ref m) = self.opus_model {
return m.clone();
}
}
if model_lower.contains("sonnet") {
if let Some(ref m) = self.sonnet_model {
return m.clone();
}
}
// 3. 默认模型
if let Some(ref m) = self.default_model {
return m.clone();
}
// 4. 无映射,保持原样
original_model.to_string()
}
}
/// 检测请求是否启用了 thinking 模式
pub fn has_thinking_enabled(body: &Value) -> bool {
body.get("thinking")
.and_then(|v| v.as_object())
.and_then(|o| o.get("type"))
.and_then(|t| t.as_str())
== Some("enabled")
}
/// 对请求体应用模型映射
///
/// 返回 (映射后的请求体, 原始模型名, 映射后模型名)
pub fn apply_model_mapping(
mut body: Value,
provider: &Provider,
) -> (Value, Option<String>, Option<String>) {
let mapping = ModelMapping::from_provider(provider);
// 如果没有配置映射,直接返回
if !mapping.has_mapping() {
let original = body.get("model").and_then(|m| m.as_str()).map(String::from);
return (body, original, None);
}
// 提取原始模型名
let original_model = body.get("model").and_then(|m| m.as_str()).map(String::from);
if let Some(ref original) = original_model {
let has_thinking = has_thinking_enabled(&body);
let mapped = mapping.map_model(original, has_thinking);
if mapped != *original {
log::info!("[ModelMapper] 模型映射: {original} → {mapped}");
body["model"] = serde_json::json!(mapped);
return (body, Some(original.clone()), Some(mapped));
}
}
(body, original_model, None)
}
#[cfg(test)]
mod tests {
use super::*;
use serde_json::json;
fn create_provider_with_mapping() -> Provider {
Provider {
id: "test".to_string(),
name: "Test".to_string(),
settings_config: json!({
"env": {
"ANTHROPIC_MODEL": "default-model",
"ANTHROPIC_DEFAULT_HAIKU_MODEL": "haiku-mapped",
"ANTHROPIC_DEFAULT_SONNET_MODEL": "sonnet-mapped",
"ANTHROPIC_DEFAULT_OPUS_MODEL": "opus-mapped",
"ANTHROPIC_REASONING_MODEL": "reasoning-model"
}
}),
website_url: None,
category: None,
created_at: None,
sort_index: None,
notes: None,
meta: None,
icon: None,
icon_color: None,
in_failover_queue: false,
}
}
fn create_provider_without_mapping() -> Provider {
Provider {
id: "test".to_string(),
name: "Test".to_string(),
settings_config: json!({}),
website_url: None,
category: None,
created_at: None,
sort_index: None,
notes: None,
meta: None,
icon: None,
icon_color: None,
in_failover_queue: false,
}
}
#[test]
fn test_sonnet_mapping() {
let provider = create_provider_with_mapping();
let body = json!({"model": "claude-sonnet-4-5-20250929"});
let (result, original, mapped) = apply_model_mapping(body, &provider);
assert_eq!(result["model"], "sonnet-mapped");
assert_eq!(original, Some("claude-sonnet-4-5-20250929".to_string()));
assert_eq!(mapped, Some("sonnet-mapped".to_string()));
}
#[test]
fn test_haiku_mapping() {
let provider = create_provider_with_mapping();
let body = json!({"model": "claude-haiku-4-5"});
let (result, _, mapped) = apply_model_mapping(body, &provider);
assert_eq!(result["model"], "haiku-mapped");
assert_eq!(mapped, Some("haiku-mapped".to_string()));
}
#[test]
fn test_opus_mapping() {
let provider = create_provider_with_mapping();
let body = json!({"model": "claude-opus-4-5"});
let (result, _, mapped) = apply_model_mapping(body, &provider);
assert_eq!(result["model"], "opus-mapped");
assert_eq!(mapped, Some("opus-mapped".to_string()));
}
#[test]
fn test_thinking_mode() {
let provider = create_provider_with_mapping();
let body = json!({
"model": "claude-sonnet-4-5",
"thinking": {"type": "enabled"}
});
let (result, _, mapped) = apply_model_mapping(body, &provider);
assert_eq!(result["model"], "reasoning-model");
assert_eq!(mapped, Some("reasoning-model".to_string()));
}
#[test]
fn test_thinking_disabled() {
let provider = create_provider_with_mapping();
let body = json!({
"model": "claude-sonnet-4-5",
"thinking": {"type": "disabled"}
});
let (result, _, mapped) = apply_model_mapping(body, &provider);
assert_eq!(result["model"], "sonnet-mapped");
assert_eq!(mapped, Some("sonnet-mapped".to_string()));
}
#[test]
fn test_unknown_model_uses_default() {
let provider = create_provider_with_mapping();
let body = json!({"model": "some-unknown-model"});
let (result, _, mapped) = apply_model_mapping(body, &provider);
assert_eq!(result["model"], "default-model");
assert_eq!(mapped, Some("default-model".to_string()));
}
#[test]
fn test_no_mapping_configured() {
let provider = create_provider_without_mapping();
let body = json!({"model": "claude-sonnet-4-5"});
let (result, original, mapped) = apply_model_mapping(body, &provider);
assert_eq!(result["model"], "claude-sonnet-4-5");
assert_eq!(original, Some("claude-sonnet-4-5".to_string()));
assert!(mapped.is_none());
}
#[test]
fn test_case_insensitive() {
let provider = create_provider_with_mapping();
let body = json!({"model": "Claude-SONNET-4-5"});
let (result, _, mapped) = apply_model_mapping(body, &provider);
assert_eq!(result["model"], "sonnet-mapped");
assert_eq!(mapped, Some("sonnet-mapped".to_string()));
}
}
+80 -281
View File
@@ -5,7 +5,7 @@
use crate::database::Database;
use crate::error::AppError;
use crate::provider::Provider;
use crate::proxy::circuit_breaker::{AllowResult, CircuitBreaker, CircuitBreakerConfig};
use crate::proxy::circuit_breaker::CircuitBreaker;
use std::collections::HashMap;
use std::sync::Arc;
use tokio::sync::RwLock;
@@ -28,128 +28,60 @@ impl ProviderRouter {
}
/// 选择可用的供应商(支持故障转移)
///
/// 返回按优先级排序的可用供应商列表:
/// - 故障转移关闭时:仅返回当前供应商
/// - 故障转移开启时:完全按照故障转移队列顺序返回,忽略当前供应商设置
/// 返回按优先级排序的可用供应商列表
pub async fn select_providers(&self, app_type: &str) -> Result<Vec<Provider>, AppError> {
let mut result = Vec::new();
let mut total_providers = 0usize;
let mut circuit_open_count = 0usize;
// 1. 获取所有启用代理的供应商
let providers = self.db.get_proxy_targets(app_type).await?;
// 检查该应用的自动故障转移开关是否开启(从 proxy_config 表读取)
let auto_failover_enabled = match self.db.get_proxy_config_for_app(app_type).await {
Ok(config) => {
let enabled = config.auto_failover_enabled;
log::info!("[{app_type}] Failover enabled from proxy_config: {enabled}");
enabled
}
Err(e) => {
log::error!(
"[{app_type}] Failed to read proxy_config for auto_failover_enabled: {e}, defaulting to disabled"
if providers.is_empty() {
return Err(AppError::Config(
"No proxy target providers configured".to_string(),
));
}
log::debug!(
"Found {} proxy target providers for app_type: {}",
providers.len(),
app_type
);
// 2. 按 sort_index 排序(已经在数据库查询中排序了)
let sorted_providers: Vec<_> = providers.into_values().collect();
// 3. 过滤可用的供应商(检查熔断器状态)
let mut available_providers = Vec::new();
for provider in sorted_providers {
let circuit_key = format!("{}:{}", app_type, provider.id);
let breaker = self.get_or_create_circuit_breaker(&circuit_key).await;
if breaker.allow_request().await {
log::debug!(
"Provider {} is available (circuit state: {:?})",
provider.id,
breaker.get_state().await
);
false
}
};
if auto_failover_enabled {
// 故障转移开启:使用 in_failover_queue 标记的供应商,按 sort_index 排序
let failover_providers = self.db.get_failover_providers(app_type)?;
total_providers = failover_providers.len();
log::debug!("[{app_type}] Found {total_providers} failover queue provider(s)");
log::info!(
"[{app_type}] Failover enabled, using queue order ({total_providers} items)"
);
for provider in failover_providers {
// 检查熔断器状态
let circuit_key = format!("{}:{}", app_type, provider.id);
let breaker = self.get_or_create_circuit_breaker(&circuit_key).await;
let state = breaker.get_state().await;
if breaker.is_available().await {
log::debug!(
"[{}] Queue provider available: {} ({}) (state: {:?})",
app_type,
provider.name,
provider.id,
state
);
log::info!(
"[{}] Queue provider available: {} ({}) at sort_index {:?}",
app_type,
provider.name,
provider.id,
provider.sort_index
);
result.push(provider);
} else {
circuit_open_count += 1;
log::debug!(
"[{}] Queue provider {} circuit breaker open (state: {:?}), skipping",
app_type,
provider.name,
state
);
}
}
} else {
// 故障转移关闭:仅使用当前供应商,跳过熔断器检查
// 原因:单 Provider 场景下,熔断器打开会导致所有请求失败,用户体验差
log::info!("[{app_type}] Failover disabled, using current provider only (circuit breaker bypassed)");
if let Some(current_id) = self.db.get_current_provider(app_type)? {
if let Some(current) = self.db.get_provider_by_id(&current_id, app_type)? {
log::info!(
"[{}] Current provider: {} ({})",
app_type,
current.name,
current.id
);
total_providers = 1;
result.push(current);
} else {
log::debug!(
"[{app_type}] Current provider id {current_id} not found in database"
);
}
available_providers.push(provider);
} else {
log::debug!("[{app_type}] No current provider configured");
log::warn!(
"Provider {} is unavailable (circuit breaker open)",
provider.id
);
}
}
if result.is_empty() {
// 区分两种情况:全部熔断 vs 未配置供应商
if total_providers > 0 && circuit_open_count == total_providers {
log::warn!("[{app_type}] 所有 {total_providers} 个供应商均已熔断,无可用渠道");
return Err(AppError::AllProvidersCircuitOpen);
} else {
log::warn!("[{app_type}] 未配置供应商或故障转移队列为空");
return Err(AppError::NoProvidersConfigured);
}
if available_providers.is_empty() {
return Err(AppError::Config(
"All proxy target providers are unavailable (circuit breakers open)".to_string(),
));
}
log::info!(
"[{}] Provider chain: {} provider(s) available",
app_type,
result.len()
"Selected {} available providers for failover chain",
available_providers.len()
);
Ok(result)
}
/// 请求执行前获取熔断器“放行许可”
///
/// - Closed:直接放行
/// - Open:超时到达后切到 HalfOpen 并放行一次探测
/// - HalfOpen:按限流规则放行探测
///
/// 注意:调用方必须在请求结束后通过 `record_result()` 释放 HalfOpen 名额,
/// 否则会导致该 Provider 长时间无法进入探测状态。
pub async fn allow_provider_request(&self, provider_id: &str, app_type: &str) -> AllowResult {
let circuit_key = format!("{app_type}:{provider_id}");
let breaker = self.get_or_create_circuit_breaker(&circuit_key).await;
breaker.allow_request().await
Ok(available_providers)
}
/// 记录供应商请求结果
@@ -157,30 +89,18 @@ impl ProviderRouter {
&self,
provider_id: &str,
app_type: &str,
used_half_open_permit: bool,
success: bool,
error_msg: Option<String>,
) -> Result<(), AppError> {
// 1. 按应用独立获取熔断器配置(用于更新健康状态和判断是否禁用)
let failure_threshold = match self.db.get_proxy_config_for_app(app_type).await {
Ok(app_config) => app_config.circuit_failure_threshold,
Err(e) => {
log::warn!(
"Failed to load circuit config for {app_type}, using default threshold: {e}"
);
5 // 默认值
}
};
// 2. 更新熔断器状态
// 1. 更新熔断器状态
let circuit_key = format!("{app_type}:{provider_id}");
let breaker = self.get_or_create_circuit_breaker(&circuit_key).await;
if success {
breaker.record_success(used_half_open_permit).await;
breaker.record_success().await;
log::debug!("Provider {provider_id} request succeeded");
} else {
breaker.record_failure(used_half_open_permit).await;
breaker.record_failure().await;
log::warn!(
"Provider {} request failed: {}",
provider_id,
@@ -188,21 +108,38 @@ impl ProviderRouter {
);
}
// 3. 更新数据库健康状态(使用配置的阈值)
// 2. 更新数据库健康状态
self.db
.update_provider_health_with_threshold(
provider_id,
app_type,
success,
error_msg.clone(),
failure_threshold,
)
.update_provider_health(provider_id, app_type, success, error_msg.clone())
.await?;
// 3. 如果连续失败达到熔断阈值,自动禁用代理目标
if !success {
let health = self.db.get_provider_health(provider_id, app_type).await?;
// 获取熔断器配置
let config = self.db.get_circuit_breaker_config().await.ok();
let failure_threshold = config.map(|c| c.failure_threshold).unwrap_or(5);
// 如果连续失败达到阈值,自动关闭该供应商的代理开关
if health.consecutive_failures >= failure_threshold {
log::warn!(
"Provider {} has failed {} times (threshold: {}), auto-disabling proxy target",
provider_id,
health.consecutive_failures,
failure_threshold
);
self.db
.set_proxy_target(provider_id, app_type, false)
.await?;
}
}
Ok(())
}
/// 重置熔断器(手动恢复)
#[allow(dead_code)]
pub async fn reset_circuit_breaker(&self, circuit_key: &str) {
let breakers = self.circuit_breakers.read().await;
if let Some(breaker) = breakers.get(circuit_key) {
@@ -211,27 +148,6 @@ impl ProviderRouter {
}
}
/// 重置指定供应商的熔断器
pub async fn reset_provider_breaker(&self, provider_id: &str, app_type: &str) {
let circuit_key = format!("{app_type}:{provider_id}");
self.reset_circuit_breaker(&circuit_key).await;
}
/// 更新所有熔断器的配置(热更新)
///
/// 当用户在 UI 中修改熔断器配置后调用此方法,
/// 所有现有的熔断器会立即使用新配置
pub async fn update_all_configs(&self, config: CircuitBreakerConfig) {
let breakers = self.circuit_breakers.read().await;
let count = breakers.len();
for breaker in breakers.values() {
breaker.update_config(config.clone()).await;
}
log::info!("已更新 {count} 个熔断器的配置");
}
/// 获取熔断器状态
#[allow(dead_code)]
pub async fn get_circuit_breaker_stats(
@@ -267,34 +183,12 @@ impl ProviderRouter {
return breaker.clone();
}
// 从 key 中提取 app_type (格式: "app_type:provider_id")
let app_type = key.split(':').next().unwrap_or("claude");
// 按应用独立读取熔断器配置
let config = match self.db.get_proxy_config_for_app(app_type).await {
Ok(app_config) => {
log::debug!(
"Loading circuit breaker config for {key} (app={app_type}): \
failure_threshold={}, success_threshold={}, timeout={}s",
app_config.circuit_failure_threshold,
app_config.circuit_success_threshold,
app_config.circuit_timeout_seconds
);
crate::proxy::circuit_breaker::CircuitBreakerConfig {
failure_threshold: app_config.circuit_failure_threshold,
success_threshold: app_config.circuit_success_threshold,
timeout_seconds: app_config.circuit_timeout_seconds as u64,
error_rate_threshold: app_config.circuit_error_rate_threshold,
min_requests: app_config.circuit_min_requests,
}
}
Err(e) => {
log::warn!(
"Failed to load circuit breaker config for {key} (app={app_type}): {e}, using default"
);
crate::proxy::circuit_breaker::CircuitBreakerConfig::default()
}
};
// 从数据库加载配置
let config = self
.db
.get_circuit_breaker_config()
.await
.unwrap_or_default();
log::debug!("Creating new circuit breaker for {key} with config: {config:?}");
@@ -309,109 +203,14 @@ impl ProviderRouter {
mod tests {
use super::*;
use crate::database::Database;
use serde_json::json;
#[tokio::test]
async fn test_provider_router_creation() {
let db = Arc::new(Database::memory().unwrap());
let db = Arc::new(Database::new_in_memory().unwrap());
let router = ProviderRouter::new(db);
// 测试创建熔断器
let breaker = router.get_or_create_circuit_breaker("claude:test").await;
assert!(breaker.allow_request().await.allowed);
}
#[tokio::test]
async fn test_failover_disabled_uses_current_provider() {
let db = Arc::new(Database::memory().unwrap());
let provider_a =
Provider::with_id("a".to_string(), "Provider A".to_string(), json!({}), None);
let provider_b =
Provider::with_id("b".to_string(), "Provider B".to_string(), json!({}), None);
db.save_provider("claude", &provider_a).unwrap();
db.save_provider("claude", &provider_b).unwrap();
db.set_current_provider("claude", "a").unwrap();
db.add_to_failover_queue("claude", "b").unwrap();
let router = ProviderRouter::new(db.clone());
let providers = router.select_providers("claude").await.unwrap();
assert_eq!(providers.len(), 1);
assert_eq!(providers[0].id, "a");
}
#[tokio::test]
async fn test_failover_enabled_uses_queue_order() {
let db = Arc::new(Database::memory().unwrap());
// 设置 sort_index 来控制顺序:b=1, a=2
let mut provider_a =
Provider::with_id("a".to_string(), "Provider A".to_string(), json!({}), None);
provider_a.sort_index = Some(2);
let mut provider_b =
Provider::with_id("b".to_string(), "Provider B".to_string(), json!({}), None);
provider_b.sort_index = Some(1);
db.save_provider("claude", &provider_a).unwrap();
db.save_provider("claude", &provider_b).unwrap();
db.set_current_provider("claude", "a").unwrap();
db.add_to_failover_queue("claude", "b").unwrap();
db.add_to_failover_queue("claude", "a").unwrap();
// 启用自动故障转移(使用新的 proxy_config API
let mut config = db.get_proxy_config_for_app("claude").await.unwrap();
config.auto_failover_enabled = true;
db.update_proxy_config_for_app(config).await.unwrap();
let router = ProviderRouter::new(db.clone());
let providers = router.select_providers("claude").await.unwrap();
assert_eq!(providers.len(), 2);
// 按 sort_index 排序:b(1) 在前,a(2) 在后
assert_eq!(providers[0].id, "b");
assert_eq!(providers[1].id, "a");
}
#[tokio::test]
async fn test_select_providers_does_not_consume_half_open_permit() {
let db = Arc::new(Database::memory().unwrap());
db.update_circuit_breaker_config(&CircuitBreakerConfig {
failure_threshold: 1,
timeout_seconds: 0,
..Default::default()
})
.await
.unwrap();
let provider_a =
Provider::with_id("a".to_string(), "Provider A".to_string(), json!({}), None);
let provider_b =
Provider::with_id("b".to_string(), "Provider B".to_string(), json!({}), None);
db.save_provider("claude", &provider_a).unwrap();
db.save_provider("claude", &provider_b).unwrap();
db.add_to_failover_queue("claude", "a").unwrap();
db.add_to_failover_queue("claude", "b").unwrap();
// 启用自动故障转移(使用新的 proxy_config API
let mut config = db.get_proxy_config_for_app("claude").await.unwrap();
config.auto_failover_enabled = true;
db.update_proxy_config_for_app(config).await.unwrap();
let router = ProviderRouter::new(db.clone());
router
.record_result("b", "claude", false, false, Some("fail".to_string()))
.await
.unwrap();
let providers = router.select_providers("claude").await.unwrap();
assert_eq!(providers.len(), 2);
assert!(router.allow_provider_request("b", "claude").await.allowed);
assert!(breaker.allow_request().await);
}
}
+1 -1
View File
@@ -87,7 +87,7 @@ pub trait ProviderAdapter: Send + Sync {
/// 是否需要格式转换
///
/// 默认返回 `false`(透传模式)。
/// 仅当供应商需要格式转换时(如 Claude + OpenRouter 旧 OpenAI 兼容接口)才返回 `true`。
/// 仅当供应商需要格式转换时(如 Claude + OpenRouter)才返回 `true`。
///
/// # Arguments
/// * `provider` - Provider 配置
+20 -73
View File
@@ -5,7 +5,7 @@
//! ## 认证模式
//! - **Claude**: Anthropic 官方 API (x-api-key + anthropic-version)
//! - **ClaudeAuth**: 中转服务 (仅 Bearer 认证,无 x-api-key)
//! - **OpenRouter**: 已支持 Claude Code 兼容接口,默认透传(保留旧转换逻辑备用)
//! - **OpenRouter**: 需要 Anthropic ↔ OpenAI 格式转换
use super::{AuthInfo, AuthStrategy, ProviderAdapter, ProviderType};
use crate::provider::Provider;
@@ -28,8 +28,10 @@ impl ClaudeAdapter {
/// - Claude: 默认 Anthropic 官方
pub fn provider_type(&self, provider: &Provider) -> ProviderType {
// 检测 OpenRouter
if self.is_openrouter(provider) {
return ProviderType::OpenRouter;
if let Ok(base_url) = self.extract_base_url(provider) {
if base_url.contains("openrouter.ai") {
return ProviderType::OpenRouter;
}
}
// 检测 ClaudeAuth (仅 Bearer 认证)
@@ -48,24 +50,6 @@ impl ClaudeAdapter {
false
}
/// 检测 OpenRouter 是否启用兼容模式
fn is_openrouter_compat_enabled(&self, provider: &Provider) -> bool {
if !self.is_openrouter(provider) {
return false;
}
let raw = provider.settings_config.get("openrouter_compat_mode");
match raw {
Some(serde_json::Value::Bool(enabled)) => *enabled,
Some(serde_json::Value::Number(num)) => num.as_i64().unwrap_or(0) != 0,
Some(serde_json::Value::String(value)) => {
let normalized = value.trim().to_lowercase();
normalized == "true" || normalized == "1"
}
_ => true,
}
}
/// 检测是否为仅 Bearer 认证模式
fn is_bearer_only_mode(&self, provider: &Provider) -> bool {
// 检查 settings_config 中的 auth_mode
@@ -103,14 +87,6 @@ impl ClaudeAdapter {
log::debug!("[Claude] 使用 ANTHROPIC_AUTH_TOKEN");
return Some(key.to_string());
}
if let Some(key) = env
.get("ANTHROPIC_API_KEY")
.and_then(|v| v.as_str())
.filter(|s| !s.is_empty())
{
log::debug!("[Claude] 使用 ANTHROPIC_API_KEY");
return Some(key.to_string());
}
// OpenRouter key
if let Some(key) = env
.get("OPENROUTER_API_KEY")
@@ -210,13 +186,12 @@ impl ProviderAdapter for ClaudeAdapter {
}
fn build_url(&self, base_url: &str, endpoint: &str) -> String {
// NOTE:
// 过去 OpenRouter 只有 OpenAI Chat Completions 兼容接口,需要把 Claude 的 `/v1/messages`
// 映射到 `/v1/chat/completions`,并做 Anthropic ↔ OpenAI 的格式转换。
//
// 现在 OpenRouter 已推出 Claude Code 兼容接口,因此默认直接透传 endpoint。
// 如需回退旧逻辑,可在 forwarder 中根据 needs_transform 改写 endpoint。
// OpenRouter 使用 /v1/chat/completions
if base_url.contains("openrouter.ai") {
return format!("{}/v1/chat/completions", base_url.trim_end_matches('/'));
}
// Anthropic 直连
format!(
"{}/{}",
base_url.trim_end_matches('/'),
@@ -232,24 +207,19 @@ impl ProviderAdapter for ClaudeAdapter {
.header("x-api-key", &auth.api_key)
.header("anthropic-version", "2023-06-01"),
// ClaudeAuth 中转服务: 仅 Bearer,无 x-api-key
AuthStrategy::ClaudeAuth => request
.header("Authorization", format!("Bearer {}", auth.api_key))
.header("anthropic-version", "2023-06-01"),
AuthStrategy::ClaudeAuth => {
request.header("Authorization", format!("Bearer {}", auth.api_key))
}
// OpenRouter: Bearer
AuthStrategy::Bearer => request
.header("Authorization", format!("Bearer {}", auth.api_key))
.header("anthropic-version", "2023-06-01"),
AuthStrategy::Bearer => {
request.header("Authorization", format!("Bearer {}", auth.api_key))
}
_ => request,
}
}
fn needs_transform(&self, _provider: &Provider) -> bool {
// NOTE:
// OpenRouter 已推出 Claude Code 兼容接口(可直接处理 `/v1/messages`),默认不再启用
// Anthropic ↔ OpenAI 的格式转换。
//
// 如果未来需要回退到旧的 OpenAI Chat Completions 方案,可恢复下面这行:
self.is_openrouter_compat_enabled(_provider)
fn needs_transform(&self, provider: &Provider) -> bool {
self.is_openrouter(provider)
}
fn transform_request(
@@ -283,7 +253,7 @@ mod tests {
meta: None,
icon: None,
icon_color: None,
in_failover_queue: false,
is_proxy_target: None,
}
}
@@ -315,21 +285,6 @@ mod tests {
assert_eq!(auth.strategy, AuthStrategy::Anthropic);
}
#[test]
fn test_extract_auth_anthropic_api_key() {
let adapter = ClaudeAdapter::new();
let provider = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://api.anthropic.com",
"ANTHROPIC_API_KEY": "sk-ant-test-key"
}
}));
let auth = adapter.extract_auth(&provider).unwrap();
assert_eq!(auth.api_key, "sk-ant-test-key");
assert_eq!(auth.strategy, AuthStrategy::Anthropic);
}
#[test]
fn test_extract_auth_openrouter() {
let adapter = ClaudeAdapter::new();
@@ -424,7 +379,7 @@ mod tests {
fn test_build_url_openrouter() {
let adapter = ClaudeAdapter::new();
let url = adapter.build_url("https://openrouter.ai/api", "/v1/messages");
assert_eq!(url, "https://openrouter.ai/api/v1/messages");
assert_eq!(url, "https://openrouter.ai/api/v1/chat/completions");
}
#[test]
@@ -444,13 +399,5 @@ mod tests {
}
}));
assert!(adapter.needs_transform(&openrouter_provider));
let openrouter_disabled = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://openrouter.ai/api"
},
"openrouter_compat_mode": false
}));
assert!(!adapter.needs_transform(&openrouter_disabled));
}
}
+1 -1
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@@ -174,7 +174,7 @@ mod tests {
meta: None,
icon: None,
icon_color: None,
in_failover_queue: false,
is_proxy_target: None,
}
}
+12 -8
View File
@@ -120,7 +120,11 @@ impl GeminiAdapter {
/// 从 Provider 配置中提取原始 API Key
fn extract_key_raw(&self, provider: &Provider) -> Option<String> {
if let Some(env) = provider.settings_config.get("env") {
// 使用 GEMINI_API_KEY
// 优先使用 GOOGLE_GEMINI_API_KEY
if let Some(key) = env.get("GOOGLE_GEMINI_API_KEY").and_then(|v| v.as_str()) {
return Some(key.to_string());
}
// 备选 GEMINI_API_KEY
if let Some(key) = env.get("GEMINI_API_KEY").and_then(|v| v.as_str()) {
return Some(key.to_string());
}
@@ -250,7 +254,7 @@ mod tests {
meta: None,
icon: None,
icon_color: None,
in_failover_queue: false,
is_proxy_target: None,
}
}
@@ -272,7 +276,7 @@ mod tests {
let adapter = GeminiAdapter::new();
let provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "AIza-test-key-12345678"
"GOOGLE_GEMINI_API_KEY": "AIza-test-key-12345678"
}
}));
@@ -287,7 +291,7 @@ mod tests {
let adapter = GeminiAdapter::new();
let provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "ya29.test-access-token-12345"
"GOOGLE_GEMINI_API_KEY": "ya29.test-access-token-12345"
}
}));
@@ -304,7 +308,7 @@ mod tests {
let adapter = GeminiAdapter::new();
let provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "{\"access_token\":\"ya29.test-token\",\"refresh_token\":\"1//refresh\"}"
"GOOGLE_GEMINI_API_KEY": "{\"access_token\":\"ya29.test-token\",\"refresh_token\":\"1//refresh\"}"
}
}));
@@ -320,7 +324,7 @@ mod tests {
// API Key
let api_key_provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "AIza-test-key"
"GOOGLE_GEMINI_API_KEY": "AIza-test-key"
}
}));
assert_eq!(
@@ -331,7 +335,7 @@ mod tests {
// OAuth access_token
let oauth_provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "ya29.test-token"
"GOOGLE_GEMINI_API_KEY": "ya29.test-token"
}
}));
assert_eq!(
@@ -342,7 +346,7 @@ mod tests {
// OAuth JSON
let oauth_json_provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "{\"access_token\":\"ya29.test\"}"
"GOOGLE_GEMINI_API_KEY": "{\"access_token\":\"ya29.test\"}"
}
}));
assert_eq!(
+8 -12
View File
@@ -48,21 +48,17 @@ pub enum ProviderType {
Gemini,
/// Google Gemini CLI (OAuth Bearer)
GeminiCli,
/// OpenRouter(已支持 Claude Code 兼容接口,默认透传;保留旧转换逻辑备用)
/// OpenRouter (需要 Anthropic ↔ OpenAI 格式转换)
OpenRouter,
}
impl ProviderType {
/// 是否需要格式转换
///
/// 过去 OpenRouter 需要将 Anthropic 格式转换为 OpenAI 格式
/// 现在默认关闭转换(因为 OpenRouter 已支持 Claude Code 兼容接口)。
/// OpenRouter 需要将 Anthropic 格式转换为 OpenAI 格式
#[allow(dead_code)]
pub fn needs_transform(&self) -> bool {
match self {
ProviderType::OpenRouter => false,
_ => false,
}
matches!(self, ProviderType::OpenRouter)
}
/// 获取默认端点
@@ -209,7 +205,7 @@ mod tests {
meta: None,
icon: None,
icon_color: None,
in_failover_queue: false,
is_proxy_target: None,
}
}
@@ -220,7 +216,7 @@ mod tests {
assert!(!ProviderType::Codex.needs_transform());
assert!(!ProviderType::Gemini.needs_transform());
assert!(!ProviderType::GeminiCli.needs_transform());
assert!(!ProviderType::OpenRouter.needs_transform());
assert!(ProviderType::OpenRouter.needs_transform());
}
#[test]
@@ -373,7 +369,7 @@ mod tests {
fn test_from_app_type_gemini_api_key() {
let provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "AIza-test-key"
"GOOGLE_GEMINI_API_KEY": "AIza-test-key"
}
}));
@@ -385,7 +381,7 @@ mod tests {
fn test_from_app_type_gemini_cli_oauth() {
let provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "ya29.test-access-token"
"GOOGLE_GEMINI_API_KEY": "ya29.test-access-token"
}
}));
@@ -397,7 +393,7 @@ mod tests {
fn test_from_app_type_gemini_cli_json() {
let provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "{\"access_token\":\"ya29.test\",\"refresh_token\":\"1//test\"}"
"GOOGLE_GEMINI_API_KEY": "{\"access_token\":\"ya29.test\",\"refresh_token\":\"1//test\"}"
}
}));
+1 -1
View File
@@ -394,7 +394,7 @@ mod tests {
meta: None,
icon: None,
icon_color: None,
in_failover_queue: false,
is_proxy_target: None,
}
}
-523
View File
@@ -1,523 +0,0 @@
//! 响应处理器模块
//!
//! 统一处理流式和非流式 API 响应
use super::{
handler_config::UsageParserConfig,
handler_context::{RequestContext, StreamingTimeoutConfig},
server::ProxyState,
usage::parser::TokenUsage,
ProxyError,
};
use axum::response::Response;
use bytes::Bytes;
use futures::stream::{Stream, StreamExt};
use rust_decimal::Decimal;
use serde_json::Value;
use std::{
str::FromStr,
sync::{
atomic::{AtomicBool, Ordering},
Arc,
},
time::Duration,
};
use tokio::sync::Mutex;
// ============================================================================
// 公共接口
// ============================================================================
/// 检测响应是否为 SSE 流式响应
#[inline]
pub fn is_sse_response(response: &reqwest::Response) -> bool {
response
.headers()
.get("content-type")
.and_then(|v| v.to_str().ok())
.map(|ct| ct.contains("text/event-stream"))
.unwrap_or(false)
}
/// 处理流式响应
pub async fn handle_streaming(
response: reqwest::Response,
ctx: &RequestContext,
state: &ProxyState,
parser_config: &UsageParserConfig,
) -> Response {
log::info!("[{}] 流式透传响应 (SSE)", ctx.tag);
let status = response.status();
let mut builder = axum::response::Response::builder().status(status);
// 复制响应头
for (key, value) in response.headers() {
builder = builder.header(key, value);
}
// 创建字节流
let stream = response
.bytes_stream()
.map(|chunk| chunk.map_err(|e| std::io::Error::other(e.to_string())));
// 创建使用量收集器
let usage_collector = create_usage_collector(ctx, state, status.as_u16(), parser_config);
// 获取流式超时配置
let timeout_config = ctx.streaming_timeout_config();
// 创建带日志和超时的透传流
let logged_stream =
create_logged_passthrough_stream(stream, ctx.tag, Some(usage_collector), timeout_config);
let body = axum::body::Body::from_stream(logged_stream);
builder.body(body).unwrap()
}
/// 处理非流式响应
pub async fn handle_non_streaming(
response: reqwest::Response,
ctx: &RequestContext,
state: &ProxyState,
parser_config: &UsageParserConfig,
) -> Result<Response, ProxyError> {
let response_headers = response.headers().clone();
let status = response.status();
// 读取响应体
let body_bytes = response.bytes().await.map_err(|e| {
log::error!("[{}] 读取响应失败: {e}", ctx.tag);
ProxyError::ForwardFailed(format!("Failed to read response body: {e}"))
})?;
// 解析并记录使用量
if let Ok(json_value) = serde_json::from_slice::<Value>(&body_bytes) {
log::info!(
"[{}] <<< 响应 JSON:\n{}",
ctx.tag,
serde_json::to_string_pretty(&json_value).unwrap_or_default()
);
// 解析使用量
if let Some(usage) = (parser_config.response_parser)(&json_value) {
// 优先使用 usage 中解析出的模型名称,其次使用响应中的 model 字段,最后回退到请求模型
let model = if let Some(ref m) = usage.model {
m.clone()
} else if let Some(m) = json_value.get("model").and_then(|m| m.as_str()) {
m.to_string()
} else {
ctx.request_model.clone()
};
spawn_log_usage(state, ctx, usage, &model, status.as_u16(), false);
} else {
let model = json_value
.get("model")
.and_then(|m| m.as_str())
.unwrap_or(&ctx.request_model)
.to_string();
spawn_log_usage(
state,
ctx,
TokenUsage::default(),
&model,
status.as_u16(),
false,
);
log::debug!(
"[{}] 未能解析 usage 信息,跳过记录",
parser_config.app_type_str
);
}
} else {
log::info!(
"[{}] <<< 响应 (非 JSON): {} bytes",
ctx.tag,
body_bytes.len()
);
spawn_log_usage(
state,
ctx,
TokenUsage::default(),
&ctx.request_model,
status.as_u16(),
false,
);
}
log::info!("[{}] ====== 请求结束 ======", ctx.tag);
// 构建响应
let mut builder = axum::response::Response::builder().status(status);
for (key, value) in response_headers.iter() {
builder = builder.header(key, value);
}
let body = axum::body::Body::from(body_bytes);
Ok(builder.body(body).unwrap())
}
/// 通用响应处理入口
///
/// 根据响应类型自动选择流式或非流式处理
pub async fn process_response(
response: reqwest::Response,
ctx: &RequestContext,
state: &ProxyState,
parser_config: &UsageParserConfig,
) -> Result<Response, ProxyError> {
if is_sse_response(&response) {
Ok(handle_streaming(response, ctx, state, parser_config).await)
} else {
handle_non_streaming(response, ctx, state, parser_config).await
}
}
// ============================================================================
// SSE 使用量收集器
// ============================================================================
type UsageCallbackWithTiming = Arc<dyn Fn(Vec<Value>, Option<u64>) + Send + Sync + 'static>;
/// SSE 使用量收集器
#[derive(Clone)]
pub struct SseUsageCollector {
inner: Arc<SseUsageCollectorInner>,
}
struct SseUsageCollectorInner {
events: Mutex<Vec<Value>>,
first_event_time: Mutex<Option<std::time::Instant>>,
start_time: std::time::Instant,
on_complete: UsageCallbackWithTiming,
finished: AtomicBool,
}
impl SseUsageCollector {
/// 创建新的使用量收集器
pub fn new(
start_time: std::time::Instant,
callback: impl Fn(Vec<Value>, Option<u64>) + Send + Sync + 'static,
) -> Self {
let on_complete: UsageCallbackWithTiming = Arc::new(callback);
Self {
inner: Arc::new(SseUsageCollectorInner {
events: Mutex::new(Vec::new()),
first_event_time: Mutex::new(None),
start_time,
on_complete,
finished: AtomicBool::new(false),
}),
}
}
/// 推送 SSE 事件
pub async fn push(&self, event: Value) {
// 记录首个事件时间
{
let mut first_time = self.inner.first_event_time.lock().await;
if first_time.is_none() {
*first_time = Some(std::time::Instant::now());
}
}
let mut events = self.inner.events.lock().await;
events.push(event);
}
/// 完成收集并触发回调
pub async fn finish(&self) {
if self.inner.finished.swap(true, Ordering::SeqCst) {
return;
}
let events = {
let mut guard = self.inner.events.lock().await;
std::mem::take(&mut *guard)
};
let first_token_ms = {
let first_time = self.inner.first_event_time.lock().await;
first_time.map(|t| (t - self.inner.start_time).as_millis() as u64)
};
(self.inner.on_complete)(events, first_token_ms);
}
}
// ============================================================================
// 内部辅助函数
// ============================================================================
/// 创建使用量收集器
fn create_usage_collector(
ctx: &RequestContext,
state: &ProxyState,
status_code: u16,
parser_config: &UsageParserConfig,
) -> SseUsageCollector {
let state = state.clone();
let provider_id = ctx.provider.id.clone();
let request_model = ctx.request_model.clone();
let app_type_str = parser_config.app_type_str;
let tag = ctx.tag;
let start_time = ctx.start_time;
let stream_parser = parser_config.stream_parser;
let model_extractor = parser_config.model_extractor;
let session_id = ctx.session_id.clone();
SseUsageCollector::new(start_time, move |events, first_token_ms| {
if let Some(usage) = stream_parser(&events) {
let model = model_extractor(&events, &request_model);
let latency_ms = start_time.elapsed().as_millis() as u64;
let state = state.clone();
let provider_id = provider_id.clone();
let session_id = session_id.clone();
tokio::spawn(async move {
log_usage_internal(
&state,
&provider_id,
app_type_str,
&model,
usage,
latency_ms,
first_token_ms,
true, // is_streaming
status_code,
Some(session_id),
)
.await;
});
} else {
let model = model_extractor(&events, &request_model);
let latency_ms = start_time.elapsed().as_millis() as u64;
let state = state.clone();
let provider_id = provider_id.clone();
let session_id = session_id.clone();
tokio::spawn(async move {
log_usage_internal(
&state,
&provider_id,
app_type_str,
&model,
TokenUsage::default(),
latency_ms,
first_token_ms,
true, // is_streaming
status_code,
Some(session_id),
)
.await;
});
log::debug!("[{tag}] 流式响应缺少 usage 统计,跳过消费记录");
}
})
}
/// 异步记录使用量
fn spawn_log_usage(
state: &ProxyState,
ctx: &RequestContext,
usage: TokenUsage,
model: &str,
status_code: u16,
is_streaming: bool,
) {
let state = state.clone();
let provider_id = ctx.provider.id.clone();
let app_type_str = ctx.app_type_str.to_string();
let model = model.to_string();
let latency_ms = ctx.latency_ms();
let session_id = ctx.session_id.clone();
tokio::spawn(async move {
log_usage_internal(
&state,
&provider_id,
&app_type_str,
&model,
usage,
latency_ms,
None,
is_streaming,
status_code,
Some(session_id),
)
.await;
});
}
/// 内部使用量记录函数
#[allow(clippy::too_many_arguments)]
async fn log_usage_internal(
state: &ProxyState,
provider_id: &str,
app_type: &str,
model: &str,
usage: TokenUsage,
latency_ms: u64,
first_token_ms: Option<u64>,
is_streaming: bool,
status_code: u16,
session_id: Option<String>,
) {
use super::usage::logger::UsageLogger;
let logger = UsageLogger::new(&state.db);
// 获取 provider 的 cost_multiplier
let multiplier = match state.db.get_provider_by_id(provider_id, app_type) {
Ok(Some(p)) => {
if let Some(meta) = p.meta {
if let Some(cm) = meta.cost_multiplier {
Decimal::from_str(&cm).unwrap_or(Decimal::from(1))
} else {
Decimal::from(1)
}
} else {
Decimal::from(1)
}
}
_ => Decimal::from(1),
};
let request_id = uuid::Uuid::new_v4().to_string();
log::debug!(
"[{app_type}] 记录请求日志: id={request_id}, provider={provider_id}, model={model}, streaming={is_streaming}, status={status_code}, latency_ms={latency_ms}, first_token_ms={first_token_ms:?}, session={}, input={}, output={}, cache_read={}, cache_creation={}",
session_id.as_deref().unwrap_or("none"),
usage.input_tokens,
usage.output_tokens,
usage.cache_read_tokens,
usage.cache_creation_tokens
);
if let Err(e) = logger.log_with_calculation(
request_id,
provider_id.to_string(),
app_type.to_string(),
model.to_string(),
usage,
multiplier,
latency_ms,
first_token_ms,
status_code,
session_id,
None, // provider_type
is_streaming,
) {
log::warn!("记录使用量失败: {e}");
}
}
/// 创建带日志记录和超时控制的透传流
pub fn create_logged_passthrough_stream(
stream: impl Stream<Item = Result<Bytes, std::io::Error>> + Send + 'static,
tag: &'static str,
usage_collector: Option<SseUsageCollector>,
timeout_config: StreamingTimeoutConfig,
) -> impl Stream<Item = Result<Bytes, std::io::Error>> + Send {
async_stream::stream! {
let mut buffer = String::new();
let mut collector = usage_collector;
let mut is_first_chunk = true;
// 超时配置
let first_byte_timeout = if timeout_config.first_byte_timeout > 0 {
Some(Duration::from_secs(timeout_config.first_byte_timeout))
} else {
None
};
let idle_timeout = if timeout_config.idle_timeout > 0 {
Some(Duration::from_secs(timeout_config.idle_timeout))
} else {
None
};
tokio::pin!(stream);
loop {
// 选择超时时间:首字节超时或静默期超时
let timeout_duration = if is_first_chunk {
first_byte_timeout
} else {
idle_timeout
};
let chunk_result = match timeout_duration {
Some(duration) => {
match tokio::time::timeout(duration, stream.next()).await {
Ok(Some(chunk)) => Some(chunk),
Ok(None) => None, // 流结束
Err(_) => {
// 超时
let timeout_type = if is_first_chunk { "首字节" } else { "静默期" };
log::error!("[{tag}] 流式响应{}超时 ({}秒)", timeout_type, duration.as_secs());
yield Err(std::io::Error::other(format!("流式响应{timeout_type}超时")));
break;
}
}
}
None => stream.next().await, // 无超时限制
};
match chunk_result {
Some(Ok(bytes)) => {
is_first_chunk = false;
let text = String::from_utf8_lossy(&bytes);
buffer.push_str(&text);
// 尝试解析并记录完整的 SSE 事件
while let Some(pos) = buffer.find("\n\n") {
let event_text = buffer[..pos].to_string();
buffer = buffer[pos + 2..].to_string();
if !event_text.trim().is_empty() {
// 提取 data 部分并尝试解析为 JSON
for line in event_text.lines() {
if let Some(data) = line.strip_prefix("data: ") {
if data.trim() != "[DONE]" {
if let Ok(json_value) = serde_json::from_str::<Value>(data) {
if let Some(c) = &collector {
c.push(json_value.clone()).await;
}
log::info!(
"[{}] <<< SSE 事件:\n{}",
tag,
serde_json::to_string_pretty(&json_value).unwrap_or_else(|_| data.to_string())
);
} else {
log::info!("[{tag}] <<< SSE 数据: {data}");
}
} else {
log::info!("[{tag}] <<< SSE: [DONE]");
}
}
}
}
}
yield Ok(bytes);
}
Some(Err(e)) => {
log::error!("[{tag}] 流错误: {e}");
yield Err(std::io::Error::other(e.to_string()));
break;
}
None => {
// 流正常结束
break;
}
}
}
log::info!("[{}] ====== 流结束 ======", tag);
if let Some(c) = collector.take() {
c.finish().await;
}
}
}
+70
View File
@@ -0,0 +1,70 @@
//! Provider路由器
//!
//! 负责选择合适的Provider进行请求转发
use super::ProxyError;
use crate::{app_config::AppType, database::Database, provider::Provider};
use std::sync::Arc;
pub struct ProviderRouter {
db: Arc<Database>,
}
impl ProviderRouter {
pub fn new(db: Arc<Database>) -> Self {
Self { db }
}
/// 选择Provider(只使用标记为代理目标的 Provider)
pub async fn select_provider(
&self,
app_type: &AppType,
_failed_ids: &[String],
) -> Result<Provider, ProxyError> {
// 1. 获取 Proxy Target Provider ID
let proxy_target_id = self
.db
.get_proxy_target_provider(app_type.as_str())
.map_err(|e| ProxyError::DatabaseError(e.to_string()))?;
let target_id = proxy_target_id.ok_or_else(|| {
log::warn!("[{}] 未设置代理目标 Provider", app_type.as_str());
ProxyError::NoAvailableProvider
})?;
// 2. 获取所有 Provider
let providers = self
.db
.get_all_providers(app_type.as_str())
.map_err(|e| ProxyError::DatabaseError(e.to_string()))?;
// 3. 找到目标 Provider
let target = providers.get(&target_id).ok_or_else(|| {
log::warn!(
"[{}] 代理目标 Provider 不存在: {}",
app_type.as_str(),
target_id
);
ProxyError::NoAvailableProvider
})?;
log::info!(
"[{}] 使用代理目标 Provider: {}",
app_type.as_str(),
target.name
);
Ok(target.clone())
}
/// 更新Provider健康状态(保留接口但不影响选择)
#[allow(dead_code)]
pub async fn update_health(
&self,
_provider: &Provider,
_app_type: &AppType,
_success: bool,
_error_msg: Option<String>,
) {
// 不再记录健康状态
}
}
+9 -80
View File
@@ -2,10 +2,7 @@
//!
//! 基于Axum的HTTP服务器,处理代理请求
use super::{
failover_switch::FailoverSwitchManager, handlers, provider_router::ProviderRouter, types::*,
ProxyError,
};
use super::{handlers, types::*, ProxyError};
use crate::database::Database;
use axum::{
routing::{get, post},
@@ -14,7 +11,6 @@ use axum::{
use std::net::SocketAddr;
use std::sync::Arc;
use tokio::sync::{oneshot, RwLock};
use tokio::task::JoinHandle;
use tower_http::cors::{Any, CorsLayer};
/// 代理服务器状态(共享)
@@ -26,12 +22,6 @@ pub struct ProxyState {
pub start_time: Arc<RwLock<Option<std::time::Instant>>>,
/// 每个应用类型当前使用的 provider (app_type -> (provider_id, provider_name))
pub current_providers: Arc<RwLock<std::collections::HashMap<String, (String, String)>>>,
/// 共享的 ProviderRouter(持有熔断器状态,跨请求保持)
pub provider_router: Arc<ProviderRouter>,
/// AppHandle,用于发射事件和更新托盘菜单
pub app_handle: Option<tauri::AppHandle>,
/// 故障转移切换管理器
pub failover_manager: Arc<FailoverSwitchManager>,
}
/// 代理HTTP服务器
@@ -39,37 +29,22 @@ pub struct ProxyServer {
config: ProxyConfig,
state: ProxyState,
shutdown_tx: Arc<RwLock<Option<oneshot::Sender<()>>>>,
/// 服务器任务句柄,用于等待服务器实际关闭
server_handle: Arc<RwLock<Option<JoinHandle<()>>>>,
}
impl ProxyServer {
pub fn new(
config: ProxyConfig,
db: Arc<Database>,
app_handle: Option<tauri::AppHandle>,
) -> Self {
// 创建共享的 ProviderRouter(熔断器状态将跨所有请求保持)
let provider_router = Arc::new(ProviderRouter::new(db.clone()));
// 创建故障转移切换管理器
let failover_manager = Arc::new(FailoverSwitchManager::new(db.clone()));
pub fn new(config: ProxyConfig, db: Arc<Database>) -> Self {
let state = ProxyState {
db,
config: Arc::new(RwLock::new(config.clone())),
status: Arc::new(RwLock::new(ProxyStatus::default())),
start_time: Arc::new(RwLock::new(None)),
current_providers: Arc::new(RwLock::new(std::collections::HashMap::new())),
provider_router,
app_handle,
failover_manager,
};
Self {
config,
state,
shutdown_tx: Arc::new(RwLock::new(None)),
server_handle: Arc::new(RwLock::new(None)),
}
}
@@ -112,7 +87,7 @@ impl ProxyServer {
// 启动服务器
let state = self.state.clone();
let handle = tokio::spawn(async move {
tokio::spawn(async move {
axum::serve(listener, app)
.with_graceful_shutdown(async {
shutdown_rx.await.ok();
@@ -125,9 +100,6 @@ impl ProxyServer {
*state.start_time.write().await = None;
});
// 保存服务器任务句柄
*self.server_handle.write().await = Some(handle);
Ok(ProxyServerInfo {
address: self.config.listen_address.clone(),
port: self.config.listen_port,
@@ -136,23 +108,12 @@ impl ProxyServer {
}
pub async fn stop(&self) -> Result<(), ProxyError> {
// 1. 发送关闭信号
if let Some(tx) = self.shutdown_tx.write().await.take() {
let _ = tx.send(());
Ok(())
} else {
return Err(ProxyError::NotRunning);
Err(ProxyError::NotRunning)
}
// 2. 等待服务器任务结束(带 5 秒超时保护)
if let Some(handle) = self.server_handle.write().await.take() {
match tokio::time::timeout(std::time::Duration::from_secs(5), handle).await {
Ok(Ok(())) => log::info!("代理服务器已完全停止"),
Ok(Err(e)) => log::warn!("代理服务器任务异常终止: {e}"),
Err(_) => log::warn!("代理服务器停止超时(5秒),强制继续"),
}
}
Ok(())
}
pub async fn get_status(&self) -> ProxyStatus {
@@ -187,31 +148,17 @@ impl ProxyServer {
// 健康检查
.route("/health", get(handlers::health_check))
.route("/status", get(handlers::get_status))
// Claude API (支持带前缀和不带前缀两种格式)
// Claude API
.route("/v1/messages", post(handlers::handle_messages))
.route("/claude/v1/messages", post(handlers::handle_messages))
// OpenAI Chat Completions API (Codex CLI,支持带前缀和不带前缀)
.route("/chat/completions", post(handlers::handle_chat_completions))
// OpenAI Chat Completions API (Codex CLI)
.route(
"/v1/chat/completions",
post(handlers::handle_chat_completions),
)
.route(
"/v1/v1/chat/completions",
post(handlers::handle_chat_completions),
)
.route(
"/codex/v1/chat/completions",
post(handlers::handle_chat_completions),
)
// OpenAI Responses API (Codex CLI,支持带前缀和不带前缀)
.route("/responses", post(handlers::handle_responses))
// OpenAI Responses API (Codex CLI)
.route("/v1/responses", post(handlers::handle_responses))
.route("/v1/v1/responses", post(handlers::handle_responses))
.route("/codex/v1/responses", post(handlers::handle_responses))
// Gemini API (支持带前缀和不带前缀)
// Gemini API
.route("/v1beta/*path", post(handlers::handle_gemini))
.route("/gemini/v1beta/*path", post(handlers::handle_gemini))
.layer(cors)
.with_state(self.state.clone())
}
@@ -220,22 +167,4 @@ impl ProxyServer {
pub async fn apply_runtime_config(&self, config: &ProxyConfig) {
*self.state.config.write().await = config.clone();
}
/// 热更新熔断器配置
///
/// 将新配置应用到所有已创建的熔断器实例
pub async fn update_circuit_breaker_configs(
&self,
config: super::circuit_breaker::CircuitBreakerConfig,
) {
self.state.provider_router.update_all_configs(config).await;
}
/// 重置指定 Provider 的熔断器
pub async fn reset_provider_circuit_breaker(&self, provider_id: &str, app_type: &str) {
self.state
.provider_router
.reset_provider_breaker(provider_id, app_type)
.await;
}
}
-269
View File
@@ -1,15 +1,7 @@
//! Proxy Session - 请求会话管理
//!
//! 为每个代理请求创建会话上下文,在整个请求生命周期中跟踪状态和元数据。
//!
//! ## Session ID 提取
//!
//! 支持从客户端请求中提取 Session ID,用于关联同一对话的多个请求:
//! - Claude: 从 `metadata.user_id` (格式: `user_xxx_session_yyy`) 或 `metadata.session_id` 提取
//! - Codex: 从 `previous_response_id` 或 headers 中的 `session_id` 提取
//! - 其他: 生成新的 UUID
use axum::http::HeaderMap;
use std::time::Instant;
use uuid::Uuid;
@@ -184,179 +176,6 @@ impl ProxySession {
}
}
// ============================================================================
// Session ID 提取器
// ============================================================================
/// Session ID 来源
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub enum SessionIdSource {
/// 从 metadata.user_id 提取 (Claude)
MetadataUserId,
/// 从 metadata.session_id 提取
MetadataSessionId,
/// 从 headers 提取 (Codex)
Header,
/// 从 previous_response_id 提取 (Codex)
PreviousResponseId,
/// 新生成
Generated,
}
/// Session ID 提取结果
#[derive(Debug, Clone)]
pub struct SessionIdResult {
/// 提取或生成的 Session ID
pub session_id: String,
/// Session ID 来源
pub source: SessionIdSource,
/// 是否为客户端提供的 ID(非新生成)
pub client_provided: bool,
}
/// 从请求中提取或生成 Session ID
///
/// 轻量化实现,仅提取 session_id 用于日志记录,不做复杂的 Session 管理。
///
/// ## 提取优先级
///
/// ### Claude 请求
/// 1. `metadata.user_id` (格式: `user_xxx_session_yyy`) → 提取 `yyy` 部分
/// 2. `metadata.session_id` → 直接使用
/// 3. 生成新 UUID
///
/// ### Codex 请求
/// 1. Headers: `session_id` 或 `x-session-id`
/// 2. `metadata.session_id`
/// 3. `previous_response_id` (对话延续)
/// 4. 生成新 UUID
///
/// ## 示例
///
/// ```ignore
/// let result = extract_session_id(&headers, &body, "claude");
/// println!("Session ID: {} (from {:?})", result.session_id, result.source);
/// ```
pub fn extract_session_id(
headers: &HeaderMap,
body: &serde_json::Value,
client_format: &str,
) -> SessionIdResult {
// Codex 请求特殊处理
if client_format == "codex" || client_format == "openai" {
if let Some(result) = extract_codex_session(headers, body) {
return result;
}
}
// Claude 请求:从 metadata 提取
if let Some(result) = extract_from_metadata(body) {
return result;
}
// 兜底:生成新 Session ID
generate_new_session_id()
}
/// 提取 Codex Session ID
fn extract_codex_session(headers: &HeaderMap, body: &serde_json::Value) -> Option<SessionIdResult> {
// 1. 从 headers 提取
for header_name in &["session_id", "x-session-id"] {
if let Some(value) = headers.get(*header_name) {
if let Ok(session_id) = value.to_str() {
// Codex Session ID 通常较长(UUID 格式)
if session_id.len() > 20 {
return Some(SessionIdResult {
session_id: format!("codex_{session_id}"),
source: SessionIdSource::Header,
client_provided: true,
});
}
}
}
}
// 2. 从 body.metadata.session_id 提取
if let Some(session_id) = body
.get("metadata")
.and_then(|m| m.get("session_id"))
.and_then(|v| v.as_str())
{
if session_id.len() > 10 {
return Some(SessionIdResult {
session_id: format!("codex_{session_id}"),
source: SessionIdSource::MetadataSessionId,
client_provided: true,
});
}
}
// 3. 从 previous_response_id 提取(对话延续)
if let Some(prev_id) = body.get("previous_response_id").and_then(|v| v.as_str()) {
if prev_id.len() > 10 {
return Some(SessionIdResult {
session_id: format!("codex_{prev_id}"),
source: SessionIdSource::PreviousResponseId,
client_provided: true,
});
}
}
None
}
/// 从 metadata 提取 Session ID (Claude)
fn extract_from_metadata(body: &serde_json::Value) -> Option<SessionIdResult> {
let metadata = body.get("metadata")?;
// 1. 从 metadata.user_id 提取(格式: user_xxx_session_yyy
if let Some(user_id) = metadata.get("user_id").and_then(|v| v.as_str()) {
if let Some(session_id) = parse_session_from_user_id(user_id) {
return Some(SessionIdResult {
session_id,
source: SessionIdSource::MetadataUserId,
client_provided: true,
});
}
}
// 2. 直接从 metadata.session_id 提取
if let Some(session_id) = metadata.get("session_id").and_then(|v| v.as_str()) {
if !session_id.is_empty() {
return Some(SessionIdResult {
session_id: session_id.to_string(),
source: SessionIdSource::MetadataSessionId,
client_provided: true,
});
}
}
None
}
/// 从 user_id 解析 session_id
///
/// 格式: `user_identifier_session_actual_session_id`
fn parse_session_from_user_id(user_id: &str) -> Option<String> {
// 查找 "_session_" 分隔符
if let Some(pos) = user_id.find("_session_") {
let session_id = &user_id[pos + 9..]; // "_session_" 长度为 9
if !session_id.is_empty() {
return Some(session_id.to_string());
}
}
None
}
/// 生成新的 Session ID
fn generate_new_session_id() -> SessionIdResult {
SessionIdResult {
session_id: Uuid::new_v4().to_string(),
source: SessionIdSource::Generated,
client_provided: false,
}
}
#[cfg(test)]
mod tests {
use super::*;
@@ -476,92 +295,4 @@ mod tests {
assert_eq!(ClientFormat::GeminiCli.as_str(), "gemini_cli");
assert_eq!(ClientFormat::Unknown.as_str(), "unknown");
}
// ========== Session ID 提取测试 ==========
#[test]
fn test_extract_session_from_claude_metadata_user_id() {
let headers = HeaderMap::new();
let body = json!({
"model": "claude-3-5-sonnet",
"messages": [{"role": "user", "content": "Hello"}],
"metadata": {
"user_id": "user_john_doe_session_abc123def456"
}
});
let result = extract_session_id(&headers, &body, "claude");
assert_eq!(result.session_id, "abc123def456");
assert_eq!(result.source, SessionIdSource::MetadataUserId);
assert!(result.client_provided);
}
#[test]
fn test_extract_session_from_claude_metadata_session_id() {
let headers = HeaderMap::new();
let body = json!({
"model": "claude-3-5-sonnet",
"messages": [{"role": "user", "content": "Hello"}],
"metadata": {
"session_id": "my-session-123"
}
});
let result = extract_session_id(&headers, &body, "claude");
assert_eq!(result.session_id, "my-session-123");
assert_eq!(result.source, SessionIdSource::MetadataSessionId);
assert!(result.client_provided);
}
#[test]
fn test_extract_session_from_codex_previous_response_id() {
let headers = HeaderMap::new();
let body = json!({
"input": "Write a function",
"previous_response_id": "resp_abc123def456789"
});
let result = extract_session_id(&headers, &body, "codex");
assert_eq!(result.session_id, "codex_resp_abc123def456789");
assert_eq!(result.source, SessionIdSource::PreviousResponseId);
assert!(result.client_provided);
}
#[test]
fn test_extract_session_generates_new_when_not_found() {
let headers = HeaderMap::new();
let body = json!({
"model": "claude-3-5-sonnet",
"messages": [{"role": "user", "content": "Hello"}]
});
let result = extract_session_id(&headers, &body, "claude");
assert!(!result.session_id.is_empty());
assert_eq!(result.source, SessionIdSource::Generated);
assert!(!result.client_provided);
}
#[test]
fn test_parse_session_from_user_id() {
assert_eq!(
parse_session_from_user_id("user_john_session_abc123"),
Some("abc123".to_string())
);
assert_eq!(
parse_session_from_user_id("my_app_session_xyz789"),
Some("xyz789".to_string())
);
// 注意: "_session_" 是分隔符,所以下面的字符串会匹配
assert_eq!(
parse_session_from_user_id("no_session_marker"),
Some("marker".to_string())
);
// 没有 "_session_" 分隔符的情况
assert_eq!(parse_session_from_user_id("user_john_abc123"), None);
assert_eq!(parse_session_from_user_id("_session_"), None);
}
}
+15 -89
View File
@@ -3,54 +3,29 @@ use serde::{Deserialize, Serialize};
/// 代理服务器配置
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct ProxyConfig {
/// 是否启用代理服务
pub enabled: bool,
/// 监听地址
pub listen_address: String,
/// 监听端口
pub listen_port: u16,
/// 最大重试次数
pub max_retries: u8,
/// 请求超时时间(秒)- 已废弃,保留兼容
/// 请求超时时间(秒)
pub request_timeout: u64,
/// 是否启用日志
pub enable_logging: bool,
/// 是否正在接管 Live 配置
#[serde(default)]
pub live_takeover_active: bool,
/// 流式首字超时(秒)- 等待首个数据块的最大时间
#[serde(default = "default_streaming_first_byte_timeout")]
pub streaming_first_byte_timeout: u64,
/// 流式静默超时(秒)- 两个数据块之间的最大间隔
#[serde(default = "default_streaming_idle_timeout")]
pub streaming_idle_timeout: u64,
/// 非流式总超时(秒)- 非流式请求的总超时时间
#[serde(default = "default_non_streaming_timeout")]
pub non_streaming_timeout: u64,
}
fn default_streaming_first_byte_timeout() -> u64 {
60
}
fn default_streaming_idle_timeout() -> u64 {
120
}
fn default_non_streaming_timeout() -> u64 {
600
}
impl Default for ProxyConfig {
fn default() -> Self {
Self {
enabled: false,
listen_address: "127.0.0.1".to_string(),
listen_port: 15721, // 使用较少占用的高位端口
max_retries: 3,
request_timeout: 600,
request_timeout: 300,
enable_logging: true,
live_takeover_active: false,
streaming_first_byte_timeout: 60,
streaming_idle_timeout: 120,
non_streaming_timeout: 600,
}
}
}
@@ -107,14 +82,6 @@ pub struct ProxyServerInfo {
pub started_at: String,
}
/// 各应用的接管状态(是否改写该应用的 Live 配置指向本地代理)
#[derive(Debug, Clone, Serialize, Deserialize, Default)]
pub struct ProxyTakeoverStatus {
pub claude: bool,
pub codex: bool,
pub gemini: bool,
}
/// API 格式类型(预留,当前不需要格式转换)
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
#[allow(dead_code)]
@@ -137,57 +104,16 @@ pub struct ProviderHealth {
pub updated_at: String,
}
/// Live 配置备份记录
/// 使用统计记录
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct LiveBackup {
/// 应用类型 (claude/codex/gemini)
pub struct ProxyUsageRecord {
pub provider_id: String,
pub app_type: String,
/// 原始配置 JSON
pub original_config: String,
/// 备份时间
pub backed_up_at: String,
}
/// 全局代理配置(统一字段,三行镜像)
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct GlobalProxyConfig {
/// 代理总开关
pub proxy_enabled: bool,
/// 监听地址
pub listen_address: String,
/// 监听端口
pub listen_port: u16,
/// 是否启用日志
pub enable_logging: bool,
}
/// 应用级代理配置(每个 app 独立)
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct AppProxyConfig {
/// 应用类型 (claude/codex/gemini)
pub app_type: String,
/// 该 app 代理启用开关
pub enabled: bool,
/// 该 app 自动故障转移开关
pub auto_failover_enabled: bool,
/// 最大重试次数
pub max_retries: u32,
/// 流式首字超时(秒)
pub streaming_first_byte_timeout: u32,
/// 流式静默超时(秒)
pub streaming_idle_timeout: u32,
/// 非流式总超时(秒)
pub non_streaming_timeout: u32,
/// 熔断失败阈值
pub circuit_failure_threshold: u32,
/// 熔断恢复阈值
pub circuit_success_threshold: u32,
/// 熔断恢复等待时间(秒)
pub circuit_timeout_seconds: u32,
/// 错误率阈值
pub circuit_error_rate_threshold: f64,
/// 计算错误率的最小请求数
pub circuit_min_requests: u32,
pub endpoint: String,
pub request_tokens: Option<i32>,
pub response_tokens: Option<i32>,
pub status_code: u16,
pub latency_ms: u64,
pub error: Option<String>,
pub timestamp: String,
}
+5 -13
View File
@@ -35,11 +35,6 @@ impl CostCalculator {
/// - `usage`: Token 使用量
/// - `pricing`: 模型定价
/// - `cost_multiplier`: 成本倍数 (provider 自定义)
///
/// # 计算逻辑
/// - input_cost: (input_tokens - cache_read_tokens) × 输入价格
/// - cache_read_cost: cache_read_tokens × 缓存读取价格
/// - 这样避免缓存部分被重复计费
pub fn calculate(
usage: &TokenUsage,
pricing: &ModelPricing,
@@ -47,10 +42,7 @@ impl CostCalculator {
) -> CostBreakdown {
let million = Decimal::from(1_000_000);
// 计算实际需要按输入价格计费的 token 数(减去缓存命中部分)
let billable_input_tokens = usage.input_tokens.saturating_sub(usage.cache_read_tokens);
let input_cost = Decimal::from(billable_input_tokens) * pricing.input_cost_per_million
let input_cost = Decimal::from(usage.input_tokens) * pricing.input_cost_per_million
/ million
* cost_multiplier;
let output_cost = Decimal::from(usage.output_tokens) * pricing.output_cost_per_million
@@ -121,8 +113,8 @@ mod tests {
let cost = CostCalculator::calculate(&usage, &pricing, multiplier);
// input: (1000 - 200) * 3.0 / 1M = 0.0024 (只计算非缓存部分)
assert_eq!(cost.input_cost, Decimal::from_str("0.0024").unwrap());
// input: 1000 * 3.0 / 1M = 0.003
assert_eq!(cost.input_cost, Decimal::from_str("0.003").unwrap());
// output: 500 * 15.0 / 1M = 0.0075
assert_eq!(cost.output_cost, Decimal::from_str("0.0075").unwrap());
// cache_read: 200 * 0.3 / 1M = 0.00006
@@ -132,8 +124,8 @@ mod tests {
cost.cache_creation_cost,
Decimal::from_str("0.000375").unwrap()
);
// total: 0.0024 + 0.0075 + 0.00006 + 0.000375 = 0.010335
assert_eq!(cost.total_cost, Decimal::from_str("0.010335").unwrap());
// total: 0.003 + 0.0075 + 0.00006 + 0.000375 = 0.010935
assert_eq!(cost.total_cost, Decimal::from_str("0.010935").unwrap());
}
#[test]
-39
View File
@@ -107,8 +107,6 @@ impl<'a> UsageLogger<'a> {
}
/// 记录失败的请求
///
/// 用于记录无法从上游获取 usage 信息的失败请求
#[allow(dead_code, clippy::too_many_arguments)]
pub fn log_error(
&self,
@@ -140,43 +138,6 @@ impl<'a> UsageLogger<'a> {
self.log_request(&log)
}
/// 记录失败的请求(带更多上下文信息)
///
/// 相比 log_error,这个方法接受更多参数以提供完整的请求上下文
#[allow(clippy::too_many_arguments)]
pub fn log_error_with_context(
&self,
request_id: String,
provider_id: String,
app_type: String,
model: String,
status_code: u16,
error_message: String,
latency_ms: u64,
is_streaming: bool,
session_id: Option<String>,
provider_type: Option<String>,
) -> Result<(), AppError> {
let log = RequestLog {
request_id,
provider_id,
app_type,
model,
usage: TokenUsage::default(),
cost: None,
latency_ms,
first_token_ms: None,
status_code,
error_message: Some(error_message),
session_id,
provider_type,
is_streaming,
cost_multiplier: "1.0".to_string(),
};
self.log_request(&log)
}
/// 获取模型定价
pub fn get_model_pricing(&self, model_id: &str) -> Result<Option<ModelPricing>, AppError> {
let conn = crate::database::lock_conn!(self.db.conn);
+21 -368
View File
@@ -34,12 +34,6 @@ impl TokenUsage {
/// 从 Claude API 非流式响应解析
pub fn from_claude_response(body: &Value) -> Option<Self> {
let usage = body.get("usage")?;
// 提取响应中的模型名称
let model = body
.get("model")
.and_then(|v| v.as_str())
.map(|s| s.to_string());
Some(Self {
input_tokens: usage.get("input_tokens")?.as_u64()? as u32,
output_tokens: usage.get("output_tokens")?.as_u64()? as u32,
@@ -51,7 +45,7 @@ impl TokenUsage {
.get("cache_creation_input_tokens")
.and_then(|v| v.as_u64())
.unwrap_or(0) as u32,
model,
model: None,
})
}
@@ -59,20 +53,11 @@ impl TokenUsage {
#[allow(dead_code)]
pub fn from_claude_stream_events(events: &[Value]) -> Option<Self> {
let mut usage = Self::default();
let mut model: Option<String> = None;
for event in events {
if let Some(event_type) = event.get("type").and_then(|v| v.as_str()) {
match event_type {
"message_start" => {
// 从 message_start 提取模型名称
if model.is_none() {
if let Some(message) = event.get("message") {
if let Some(m) = message.get("model").and_then(|v| v.as_str()) {
model = Some(m.to_string());
}
}
}
if let Some(msg_usage) = event.get("message").and_then(|m| m.get("usage")) {
// 从 message_start 获取 input_tokens(原生 Claude API
if let Some(input) =
@@ -117,7 +102,6 @@ impl TokenUsage {
}
if usage.input_tokens > 0 || usage.output_tokens > 0 {
usage.model = model;
Some(usage)
} else {
None
@@ -157,32 +141,18 @@ impl TokenUsage {
return None;
}
// 提取响应中的模型名称
let model = body
.get("model")
.and_then(|v| v.as_str())
.map(|s| s.to_string());
let cached_tokens = usage
.get("cache_read_input_tokens")
.and_then(|v| v.as_u64())
.or_else(|| {
usage
.get("input_tokens_details")
.and_then(|d| d.get("cached_tokens"))
.and_then(|v| v.as_u64())
})
.unwrap_or(0) as u32;
Some(Self {
input_tokens: input_tokens? as u32,
output_tokens: output_tokens? as u32,
cache_read_tokens: cached_tokens,
cache_read_tokens: usage
.get("cache_read_input_tokens")
.and_then(|v| v.as_u64())
.unwrap_or(0) as u32,
cache_creation_tokens: usage
.get("cache_creation_input_tokens")
.and_then(|v| v.as_u64())
.unwrap_or(0) as u32,
model,
model: None,
})
}
@@ -196,27 +166,16 @@ impl TokenUsage {
let input_tokens = usage.get("input_tokens")?.as_u64()? as u32;
let output_tokens = usage.get("output_tokens")?.as_u64()? as u32;
// 获取 cached_tokens (可能在 cache_read_input_tokens 或 input_tokens_details 中)
// 获取 cached_tokens (可能在 input_tokens_details 中)
let cached_tokens = usage
.get("cache_read_input_tokens")
.get("input_tokens_details")
.and_then(|d| d.get("cached_tokens"))
.and_then(|v| v.as_u64())
.or_else(|| {
usage
.get("input_tokens_details")
.and_then(|d| d.get("cached_tokens"))
.and_then(|v| v.as_u64())
})
.unwrap_or(0) as u32;
// 调整 input_tokens: 减去 cached_tokens
let adjusted_input = input_tokens.saturating_sub(cached_tokens);
// 提取响应中的模型名称
let model = body
.get("model")
.and_then(|v| v.as_str())
.map(|s| s.to_string());
Some(Self {
input_tokens: adjusted_input,
output_tokens,
@@ -225,7 +184,7 @@ impl TokenUsage {
.get("cache_creation_input_tokens")
.and_then(|v| v.as_u64())
.unwrap_or(0) as u32,
model,
model: None,
})
}
@@ -239,7 +198,7 @@ impl TokenUsage {
if event_type == "response.completed" {
if let Some(response) = event.get("response") {
log::debug!("[Codex] 找到 response.completed 事件,解析 usage");
return Self::from_codex_response_adjusted(response);
return Self::from_codex_response(response);
}
}
}
@@ -248,51 +207,6 @@ impl TokenUsage {
None
}
/// 智能 Codex 响应解析 - 自动检测 OpenAI 或 Codex 格式
///
/// Codex 支持两种 API 格式:
/// - `/v1/responses`: 使用 input_tokens/output_tokens
/// - `/v1/chat/completions`: 使用 prompt_tokens/completion_tokens (OpenAI 格式)
///
/// 注意:记录原始 input_tokens,费用计算时再减去 cached_tokens
pub fn from_codex_response_auto(body: &Value) -> Option<Self> {
let usage = body.get("usage")?;
// 检测格式:OpenAI 使用 prompt_tokensCodex 使用 input_tokens
if usage.get("prompt_tokens").is_some() {
log::debug!("[Codex] 检测到 OpenAI 格式 (prompt_tokens)");
Self::from_openai_response(body)
} else if usage.get("input_tokens").is_some() {
log::debug!("[Codex] 检测到 Codex 格式 (input_tokens)");
// 使用非调整版本,记录原始 input_tokens
Self::from_codex_response(body)
} else {
log::debug!("[Codex] 无法识别响应格式,usage: {usage:?}");
None
}
}
/// 智能 Codex 流式响应解析 - 自动检测 OpenAI 或 Codex 格式
pub fn from_codex_stream_events_auto(events: &[Value]) -> Option<Self> {
log::debug!("[Codex] 智能解析流式事件,共 {} 个事件", events.len());
// 先尝试 Codex Responses API 格式 (response.completed 事件)
for event in events {
if let Some(event_type) = event.get("type").and_then(|v| v.as_str()) {
if event_type == "response.completed" {
if let Some(response) = event.get("response") {
log::debug!("[Codex] 找到 response.completed 事件");
return Self::from_codex_response_auto(response);
}
}
}
}
// 回退到 OpenAI Chat Completions 格式 (最后一个 chunk 包含 usage)
log::debug!("[Codex] 尝试 OpenAI 流式格式");
Self::from_openai_stream_events(events)
}
/// 从 OpenAI Chat Completions API 响应解析 (prompt_tokens, completion_tokens)
pub fn from_openai_response(body: &Value) -> Option<Self> {
let usage = body.get("usage")?;
@@ -308,18 +222,12 @@ impl TokenUsage {
.and_then(|v| v.as_u64())
.unwrap_or(0) as u32;
// 提取响应中的模型名称
let model = body
.get("model")
.and_then(|v| v.as_str())
.map(|s| s.to_string());
Some(Self {
input_tokens: prompt_tokens as u32,
output_tokens: completion_tokens as u32,
cache_read_tokens: cached_tokens,
cache_creation_tokens: 0,
model,
model: None,
})
}
@@ -348,16 +256,9 @@ impl TokenUsage {
.and_then(|v| v.as_str())
.map(|s| s.to_string());
let prompt_tokens = usage.get("promptTokenCount")?.as_u64()? as u32;
let total_tokens = usage.get("totalTokenCount")?.as_u64()? as u32;
// 输出 tokens = 总 tokens - 输入 tokens
// 这包含了 candidatesTokenCount + thoughtsTokenCount
let output_tokens = total_tokens.saturating_sub(prompt_tokens);
Some(Self {
input_tokens: prompt_tokens,
output_tokens,
input_tokens: usage.get("promptTokenCount")?.as_u64()? as u32,
output_tokens: usage.get("candidatesTokenCount")?.as_u64()? as u32,
cache_read_tokens: usage
.get("cachedContentTokenCount")
.and_then(|v| v.as_u64())
@@ -371,25 +272,20 @@ impl TokenUsage {
#[allow(dead_code)]
pub fn from_gemini_stream_chunks(chunks: &[Value]) -> Option<Self> {
let mut total_input = 0u32;
let mut total_tokens = 0u32;
let mut total_output = 0u32;
let mut total_cache_read = 0u32;
let mut model: Option<String> = None;
for chunk in chunks {
if let Some(usage) = chunk.get("usageMetadata") {
// 输入 tokens (通常在所有 chunk 中保持不变)
total_input = usage
.get("promptTokenCount")
.and_then(|v| v.as_u64())
.unwrap_or(0) as u32;
// 总 tokens (包含输入 + 输出 + 思考)
total_tokens = usage
.get("totalTokenCount")
total_output += usage
.get("candidatesTokenCount")
.and_then(|v| v.as_u64())
.unwrap_or(0) as u32;
// 缓存读取 tokens
total_cache_read = usage
.get("cachedContentTokenCount")
.and_then(|v| v.as_u64())
@@ -404,9 +300,6 @@ impl TokenUsage {
}
}
// 输出 tokens = 总 tokens - 输入 tokens
let total_output = total_tokens.saturating_sub(total_input);
if total_input > 0 || total_output > 0 {
Some(Self {
input_tokens: total_input,
@@ -429,7 +322,6 @@ mod tests {
#[test]
fn test_claude_response_parsing() {
let response = json!({
"model": "claude-sonnet-4-20250514",
"usage": {
"input_tokens": 100,
"output_tokens": 50,
@@ -443,26 +335,6 @@ mod tests {
assert_eq!(usage.output_tokens, 50);
assert_eq!(usage.cache_read_tokens, 20);
assert_eq!(usage.cache_creation_tokens, 10);
assert_eq!(usage.model, Some("claude-sonnet-4-20250514".to_string()));
}
#[test]
fn test_claude_response_parsing_no_model() {
let response = json!({
"usage": {
"input_tokens": 100,
"output_tokens": 50,
"cache_read_input_tokens": 20,
"cache_creation_input_tokens": 10
}
});
let usage = TokenUsage::from_claude_response(&response).unwrap();
assert_eq!(usage.input_tokens, 100);
assert_eq!(usage.output_tokens, 50);
assert_eq!(usage.cache_read_tokens, 20);
assert_eq!(usage.cache_creation_tokens, 10);
assert_eq!(usage.model, None);
}
#[test]
@@ -471,7 +343,6 @@ mod tests {
json!({
"type": "message_start",
"message": {
"model": "claude-sonnet-4-20250514",
"usage": {
"input_tokens": 100,
"cache_read_input_tokens": 20,
@@ -492,36 +363,6 @@ mod tests {
assert_eq!(usage.output_tokens, 50);
assert_eq!(usage.cache_read_tokens, 20);
assert_eq!(usage.cache_creation_tokens, 10);
assert_eq!(usage.model, Some("claude-sonnet-4-20250514".to_string()));
}
#[test]
fn test_claude_stream_parsing_no_model() {
let events = vec![
json!({
"type": "message_start",
"message": {
"usage": {
"input_tokens": 100,
"cache_read_input_tokens": 20,
"cache_creation_input_tokens": 10
}
}
}),
json!({
"type": "message_delta",
"usage": {
"output_tokens": 50
}
}),
];
let usage = TokenUsage::from_claude_stream_events(&events).unwrap();
assert_eq!(usage.input_tokens, 100);
assert_eq!(usage.output_tokens, 50);
assert_eq!(usage.cache_read_tokens, 20);
assert_eq!(usage.cache_creation_tokens, 10);
assert_eq!(usage.model, None);
}
#[test]
@@ -545,18 +386,15 @@ mod tests {
let response = json!({
"modelVersion": "gemini-3-pro-high",
"usageMetadata": {
"promptTokenCount": 8383,
"promptTokenCount": 100,
"candidatesTokenCount": 50,
"thoughtsTokenCount": 114,
"totalTokenCount": 8547,
"cachedContentTokenCount": 20
}
});
let usage = TokenUsage::from_gemini_response(&response).unwrap();
assert_eq!(usage.input_tokens, 8383);
// output_tokens = totalTokenCount - promptTokenCount = 8547 - 8383 = 164
assert_eq!(usage.output_tokens, 164);
assert_eq!(usage.input_tokens, 100);
assert_eq!(usage.output_tokens, 50);
assert_eq!(usage.cache_read_tokens, 20);
assert_eq!(usage.cache_creation_tokens, 0);
assert_eq!(usage.model, Some("gemini-3-pro-high".to_string()));
@@ -568,78 +406,19 @@ mod tests {
let response = json!({
"usageMetadata": {
"promptTokenCount": 100,
"totalTokenCount": 150,
"candidatesTokenCount": 50,
"cachedContentTokenCount": 20
}
});
let usage = TokenUsage::from_gemini_response(&response).unwrap();
assert_eq!(usage.input_tokens, 100);
// output_tokens = totalTokenCount - promptTokenCount = 150 - 100 = 50
assert_eq!(usage.output_tokens, 50);
assert_eq!(usage.cache_read_tokens, 20);
assert_eq!(usage.cache_creation_tokens, 0);
assert_eq!(usage.model, None);
}
#[test]
fn test_gemini_response_with_thoughts() {
// 测试包含 thoughtsTokenCount 的实际响应
// 这是用户报告的真实场景
let response = json!({
"candidates": [
{
"content": {
"parts": [
{
"text": "",
"thoughtSignature": "EvcECvQE..."
}
],
"role": "model"
},
"finishReason": "STOP"
}
],
"modelVersion": "gemini-3-pro-high",
"responseId": "yupTafqLDu-PjMcPhrOx4QQ",
"usageMetadata": {
"candidatesTokenCount": 50,
"promptTokenCount": 8383,
"thoughtsTokenCount": 114,
"totalTokenCount": 8547
}
});
let usage = TokenUsage::from_gemini_response(&response).unwrap();
assert_eq!(usage.input_tokens, 8383);
// output_tokens = totalTokenCount - promptTokenCount
// = 8547 - 8383 = 164 (包含 candidatesTokenCount 50 + thoughtsTokenCount 114)
assert_eq!(usage.output_tokens, 164);
assert_eq!(usage.cache_read_tokens, 0);
assert_eq!(usage.cache_creation_tokens, 0);
assert_eq!(usage.model, Some("gemini-3-pro-high".to_string()));
}
#[test]
fn test_codex_response_parsing_cached_tokens_in_details() {
let response = json!({
"usage": {
"input_tokens": 1000,
"output_tokens": 500,
"input_tokens_details": {
"cached_tokens": 300
}
}
});
let usage = TokenUsage::from_codex_response(&response).unwrap();
// 非调整模式:input_tokens 保持原值,但应记录缓存命中
assert_eq!(usage.input_tokens, 1000);
assert_eq!(usage.output_tokens, 500);
assert_eq!(usage.cache_read_tokens, 300);
}
#[test]
fn test_codex_response_adjusted() {
let response = json!({
@@ -675,22 +454,6 @@ mod tests {
assert_eq!(usage.cache_read_tokens, 0);
}
#[test]
fn test_codex_response_adjusted_cache_read_input_tokens() {
let response = json!({
"usage": {
"input_tokens": 1000,
"output_tokens": 500,
"cache_read_input_tokens": 200
}
});
let usage = TokenUsage::from_codex_response_adjusted(&response).unwrap();
assert_eq!(usage.input_tokens, 800);
assert_eq!(usage.output_tokens, 500);
assert_eq!(usage.cache_read_tokens, 200);
}
#[test]
fn test_codex_response_adjusted_saturating_sub() {
// 测试 cached_tokens > input_tokens 的边界情况
@@ -718,7 +481,6 @@ mod tests {
json!({
"type": "message_start",
"message": {
"model": "claude-sonnet-4-20250514",
"usage": {
"input_tokens": 0,
"output_tokens": 0
@@ -740,7 +502,6 @@ mod tests {
let usage = TokenUsage::from_claude_stream_events(&events).unwrap();
assert_eq!(usage.input_tokens, 150);
assert_eq!(usage.output_tokens, 75);
assert_eq!(usage.model, Some("claude-sonnet-4-20250514".to_string()));
}
#[test]
@@ -751,7 +512,6 @@ mod tests {
json!({
"type": "message_start",
"message": {
"model": "claude-sonnet-4-20250514",
"usage": {
"input_tokens": 200,
"cache_read_input_tokens": 50
@@ -770,112 +530,5 @@ mod tests {
assert_eq!(usage.input_tokens, 200);
assert_eq!(usage.output_tokens, 100);
assert_eq!(usage.cache_read_tokens, 50);
assert_eq!(usage.model, Some("claude-sonnet-4-20250514".to_string()));
}
// ============================================================================
// 智能 Codex 解析测试
// ============================================================================
#[test]
fn test_codex_response_auto_openai_format() {
// OpenAI 格式 (prompt_tokens/completion_tokens)
let response = json!({
"model": "gpt-4o",
"usage": {
"prompt_tokens": 1000,
"completion_tokens": 500,
"prompt_tokens_details": {
"cached_tokens": 200
}
}
});
let usage = TokenUsage::from_codex_response_auto(&response).unwrap();
assert_eq!(usage.input_tokens, 1000);
assert_eq!(usage.output_tokens, 500);
assert_eq!(usage.cache_read_tokens, 200);
assert_eq!(usage.model, Some("gpt-4o".to_string()));
}
#[test]
fn test_codex_response_auto_codex_format() {
// Codex 格式 (input_tokens/output_tokens)
let response = json!({
"model": "o3",
"usage": {
"input_tokens": 1000,
"output_tokens": 500,
"input_tokens_details": {
"cached_tokens": 300
}
}
});
let usage = TokenUsage::from_codex_response_auto(&response).unwrap();
// 记录原始 input_tokens,不调整
assert_eq!(usage.input_tokens, 1000);
assert_eq!(usage.output_tokens, 500);
assert_eq!(usage.cache_read_tokens, 300);
assert_eq!(usage.model, Some("o3".to_string()));
}
#[test]
fn test_codex_stream_events_auto_codex_format() {
// Codex Responses API 流式格式 (response.completed 事件)
let events = vec![
json!({
"type": "response.created",
"response": {
"id": "resp_123"
}
}),
json!({
"type": "response.completed",
"response": {
"model": "o3",
"usage": {
"input_tokens": 1000,
"output_tokens": 500,
"input_tokens_details": {
"cached_tokens": 200
}
}
}
}),
];
let usage = TokenUsage::from_codex_stream_events_auto(&events).unwrap();
// 记录原始 input_tokens,不调整
assert_eq!(usage.input_tokens, 1000);
assert_eq!(usage.output_tokens, 500);
assert_eq!(usage.cache_read_tokens, 200);
assert_eq!(usage.model, Some("o3".to_string()));
}
#[test]
fn test_codex_stream_events_auto_openai_format() {
// OpenAI Chat Completions 流式格式 (最后一个 chunk 包含 usage)
let events = vec![
json!({
"id": "chatcmpl-123",
"model": "gpt-4o",
"choices": [{"delta": {"content": "Hello"}}]
}),
json!({
"id": "chatcmpl-123",
"model": "gpt-4o",
"choices": [{"delta": {}}],
"usage": {
"prompt_tokens": 100,
"completion_tokens": 50
}
}),
];
let usage = TokenUsage::from_codex_stream_events_auto(&events).unwrap();
assert_eq!(usage.input_tokens, 100);
assert_eq!(usage.output_tokens, 50);
assert_eq!(usage.model, Some("gpt-4o".to_string()));
}
}
+1 -3
View File
@@ -146,9 +146,7 @@ impl ConfigService {
let cfg_text = settings.get("config").and_then(Value::as_str);
crate::codex_config::write_codex_live_atomic(auth, cfg_text)?;
// 注意:MCP 同步在 v3.7.0 中已通过 McpService 进行,不再在此调用
// sync_enabled_to_codex 使用旧的 config.mcp.codex 结构,在新架构中为空
// MCP 的启用/禁用应通过 McpService::toggle_app 进行
crate::mcp::sync_enabled_to_codex(config)?;
let cfg_text_after = crate::codex_config::read_and_validate_codex_config_text()?;
if let Some(manager) = config.get_manager_mut(&AppType::Codex) {
+12 -79
View File
@@ -17,27 +17,8 @@ impl McpService {
/// 添加或更新 MCP 服务器
pub fn upsert_server(state: &AppState, server: McpServer) -> Result<(), AppError> {
// 读取旧状态:用于处理“编辑时取消勾选某个应用”的场景(需要从对应 live 配置中移除)
let prev_apps = state
.db
.get_all_mcp_servers()?
.get(&server.id)
.map(|s| s.apps.clone())
.unwrap_or_default();
state.db.save_mcp_server(&server)?;
// 处理禁用:若旧版本启用但新版本取消,则需要从该应用的 live 配置移除
if prev_apps.claude && !server.apps.claude {
Self::remove_server_from_app(state, &server.id, &AppType::Claude)?;
}
if prev_apps.codex && !server.apps.codex {
Self::remove_server_from_app(state, &server.id, &AppType::Codex)?;
}
if prev_apps.gemini && !server.apps.gemini {
Self::remove_server_from_app(state, &server.id, &AppType::Gemini)?;
}
// 同步到各个启用的应用
Self::sync_server_to_apps(state, &server)?;
@@ -206,34 +187,18 @@ impl McpService {
// 调用原有的导入逻辑(从 mcp.rs)
let count = crate::mcp::import_from_claude(&mut temp_config)?;
let mut new_count = 0;
// 如果有导入的服务器,保存到数据库
if count > 0 {
if let Some(servers) = &temp_config.mcp.servers {
let mut existing = state.db.get_all_mcp_servers()?;
for server in servers.values() {
// 已存在:仅启用 Claude,不覆盖其他字段(与导入模块语义保持一致)
let to_save = if let Some(existing_server) = existing.get(&server.id) {
let mut merged = existing_server.clone();
merged.apps.claude = true;
merged
} else {
// 真正的新服务器
new_count += 1;
server.clone()
};
state.db.save_mcp_server(&to_save)?;
existing.insert(to_save.id.clone(), to_save.clone());
// 同步到对应应用 live 配置
Self::sync_server_to_apps(state, &to_save)?;
state.db.save_mcp_server(server)?;
// 同步到 Claude live 配置
Self::sync_server_to_apps(state, server)?;
}
}
}
Ok(new_count)
Ok(count)
}
/// 从 Codex 导入 MCPv3.7.0 已更新为统一结构)
@@ -244,34 +209,18 @@ impl McpService {
// 调用原有的导入逻辑(从 mcp.rs)
let count = crate::mcp::import_from_codex(&mut temp_config)?;
let mut new_count = 0;
// 如果有导入的服务器,保存到数据库
if count > 0 {
if let Some(servers) = &temp_config.mcp.servers {
let mut existing = state.db.get_all_mcp_servers()?;
for server in servers.values() {
// 已存在:仅启用 Codex,不覆盖其他字段(与导入模块语义保持一致)
let to_save = if let Some(existing_server) = existing.get(&server.id) {
let mut merged = existing_server.clone();
merged.apps.codex = true;
merged
} else {
// 真正的新服务器
new_count += 1;
server.clone()
};
state.db.save_mcp_server(&to_save)?;
existing.insert(to_save.id.clone(), to_save.clone());
// 同步到对应应用 live 配置
Self::sync_server_to_apps(state, &to_save)?;
state.db.save_mcp_server(server)?;
// 同步到 Codex live 配置
Self::sync_server_to_apps(state, server)?;
}
}
}
Ok(new_count)
Ok(count)
}
/// 从 Gemini 导入 MCPv3.7.0 已更新为统一结构)
@@ -282,33 +231,17 @@ impl McpService {
// 调用原有的导入逻辑(从 mcp.rs)
let count = crate::mcp::import_from_gemini(&mut temp_config)?;
let mut new_count = 0;
// 如果有导入的服务器,保存到数据库
if count > 0 {
if let Some(servers) = &temp_config.mcp.servers {
let mut existing = state.db.get_all_mcp_servers()?;
for server in servers.values() {
// 已存在:仅启用 Gemini,不覆盖其他字段(与导入模块语义保持一致)
let to_save = if let Some(existing_server) = existing.get(&server.id) {
let mut merged = existing_server.clone();
merged.apps.gemini = true;
merged
} else {
// 真正的新服务器
new_count += 1;
server.clone()
};
state.db.save_mcp_server(&to_save)?;
existing.insert(to_save.id.clone(), to_save.clone());
// 同步到对应应用 live 配置
Self::sync_server_to_apps(state, &to_save)?;
state.db.save_mcp_server(server)?;
// 同步到 Gemini live 配置
Self::sync_server_to_apps(state, server)?;
}
}
}
Ok(new_count)
Ok(count)
}
}
+4 -3
View File
@@ -2,21 +2,22 @@ pub mod config;
pub mod env_checker;
pub mod env_manager;
pub mod mcp;
pub mod model_test;
pub mod prompt;
pub mod provider;
pub mod proxy;
pub mod skill;
pub mod speedtest;
pub mod stream_check;
pub mod usage_stats;
pub use config::ConfigService;
pub use mcp::McpService;
#[allow(unused_imports)]
pub use model_test::{ModelTestConfig, ModelTestLog, ModelTestResult, ModelTestService};
pub use prompt::PromptService;
pub use provider::{ProviderService, ProviderSortUpdate};
pub use proxy::ProxyService;
#[allow(unused_imports)]
pub use skill::{DiscoverableSkill, Skill, SkillRepo, SkillService};
pub use skill::{Skill, SkillRepo, SkillService};
pub use speedtest::{EndpointLatency, SpeedtestService};
#[allow(unused_imports)]
pub use usage_stats::{
+510
View File
@@ -0,0 +1,510 @@
//! 模型测试服务
//!
//! 提供独立的模型可用性测试功能,复用现有 Provider 适配器逻辑,
//! 但不影响正常代理数据流程。测试结果记录到独立的日志表。
use crate::app_config::AppType;
use crate::database::Database;
use crate::error::AppError;
use crate::provider::Provider;
use crate::proxy::providers::{get_adapter, AuthInfo, ProviderAdapter};
use reqwest::Client;
use serde::{Deserialize, Serialize};
use serde_json::{json, Value};
use std::time::{Duration, Instant};
/// 模型测试配置
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct ModelTestConfig {
/// 默认测试模型(Claude
pub claude_model: String,
/// 默认测试模型(Codex/OpenAI
pub codex_model: String,
/// 默认测试模型(Gemini
pub gemini_model: String,
/// 测试提示词
pub test_prompt: String,
/// 超时时间(秒)
pub timeout_secs: u64,
}
impl Default for ModelTestConfig {
fn default() -> Self {
Self {
claude_model: "claude-haiku-4-5-20251001".to_string(),
codex_model: "gpt-5.1-low".to_string(),
gemini_model: "gemini-3-pro-low".to_string(),
test_prompt: "ping".to_string(),
timeout_secs: 15,
}
}
}
/// 模型测试结果
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct ModelTestResult {
pub success: bool,
pub message: String,
pub response_time_ms: Option<u64>,
pub http_status: Option<u16>,
pub model_used: String,
pub tested_at: i64,
}
/// 模型测试日志记录
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct ModelTestLog {
pub id: i64,
pub provider_id: String,
pub provider_name: String,
pub app_type: String,
pub model: String,
pub prompt: String,
pub success: bool,
pub message: String,
pub response_time_ms: Option<i64>,
pub http_status: Option<i64>,
pub tested_at: i64,
}
/// 模型测试服务
pub struct ModelTestService;
impl ModelTestService {
/// 测试单个供应商的模型可用性
pub async fn test_provider(
app_type: &AppType,
provider: &Provider,
config: &ModelTestConfig,
) -> Result<ModelTestResult, AppError> {
let start = Instant::now();
let adapter = get_adapter(app_type);
// 构建 HTTP 客户端(独立于代理服务)
let client = Client::builder()
.timeout(Duration::from_secs(config.timeout_secs))
.build()
.map_err(|e| AppError::Message(format!("创建 HTTP 客户端失败: {e}")))?;
// 根据 AppType 选择测试模型
let model = match app_type {
AppType::Claude => &config.claude_model,
AppType::Codex => &config.codex_model,
AppType::Gemini => &config.gemini_model,
};
let result = match app_type {
AppType::Claude => {
Self::test_claude(
&client,
provider,
adapter.as_ref(),
model,
&config.test_prompt,
)
.await
}
AppType::Codex => {
Self::test_codex(
&client,
provider,
adapter.as_ref(),
model,
&config.test_prompt,
)
.await
}
AppType::Gemini => {
Self::test_gemini(
&client,
provider,
adapter.as_ref(),
model,
&config.test_prompt,
)
.await
}
};
let response_time = start.elapsed().as_millis() as u64;
let tested_at = chrono::Utc::now().timestamp();
match result {
Ok((status, msg)) => Ok(ModelTestResult {
success: true,
message: msg,
response_time_ms: Some(response_time),
http_status: Some(status),
model_used: model.clone(),
tested_at,
}),
Err(e) => Ok(ModelTestResult {
success: false,
message: e.to_string(),
response_time_ms: Some(response_time),
http_status: None,
model_used: model.clone(),
tested_at,
}),
}
}
/// 测试 Claude (Anthropic Messages API)
async fn test_claude(
client: &Client,
provider: &Provider,
adapter: &dyn ProviderAdapter,
model: &str,
prompt: &str,
) -> Result<(u16, String), AppError> {
let base_url = adapter
.extract_base_url(provider)
.map_err(|e| AppError::Message(format!("提取 base_url 失败: {e}")))?;
let auth = adapter
.extract_auth(provider)
.ok_or_else(|| AppError::Message("未找到 API Key".to_string()))?;
// 智能拼接 URL,避免重复 /v1
let base = base_url.trim_end_matches('/');
let url = if base.ends_with("/v1") {
format!("{base}/messages")
} else {
format!("{base}/v1/messages")
};
let body = json!({
"model": model,
"max_tokens": 1,
"messages": [{
"role": "user",
"content": prompt
}]
});
let mut request = client.post(&url).json(&body);
request = Self::add_claude_auth(request, &auth);
let response = request.send().await.map_err(|e| {
if e.is_timeout() {
AppError::Message("请求超时".to_string())
} else if e.is_connect() {
AppError::Message(format!("连接失败: {e}"))
} else {
AppError::Message(e.to_string())
}
})?;
let status = response.status().as_u16();
if response.status().is_success() {
// 先获取文本,再尝试解析 JSON(兼容流式响应)
let text = response.text().await.unwrap_or_default();
// 尝试解析 JSON
if let Ok(data) = serde_json::from_str::<Value>(&text) {
if data.get("type").is_some()
|| data.get("content").is_some()
|| data.get("id").is_some()
{
return Ok((status, "模型测试成功".to_string()));
}
}
// 即使无法解析 JSON,只要状态码是 200 就认为成功
Ok((status, "模型测试成功".to_string()))
} else {
let error_text = response.text().await.unwrap_or_default();
Err(AppError::Message(format!("HTTP {status}: {error_text}")))
}
}
/// 测试 Codex (OpenAI Chat Completions API)
async fn test_codex(
client: &Client,
provider: &Provider,
adapter: &dyn ProviderAdapter,
model: &str,
prompt: &str,
) -> Result<(u16, String), AppError> {
let base_url = adapter
.extract_base_url(provider)
.map_err(|e| AppError::Message(format!("提取 base_url 失败: {e}")))?;
let auth = adapter
.extract_auth(provider)
.ok_or_else(|| AppError::Message("未找到 API Key".to_string()))?;
// 智能拼接 URL,避免重复 /v1
let base = base_url.trim_end_matches('/');
let url = if base.ends_with("/v1") {
format!("{base}/chat/completions")
} else {
format!("{base}/v1/chat/completions")
};
let body = json!({
"model": model,
"messages": [{
"role": "user",
"content": prompt
}],
"max_tokens": 1,
"stream": false
});
let request = client
.post(&url)
.header("Authorization", format!("Bearer {}", auth.api_key))
.header("Content-Type", "application/json")
.json(&body);
let response = request.send().await.map_err(|e| {
if e.is_timeout() {
AppError::Message("请求超时".to_string())
} else if e.is_connect() {
AppError::Message(format!("连接失败: {e}"))
} else {
AppError::Message(e.to_string())
}
})?;
let status = response.status().as_u16();
if response.status().is_success() {
// 先获取文本,再尝试解析 JSON
let text = response.text().await.unwrap_or_default();
if let Ok(data) = serde_json::from_str::<Value>(&text) {
if data.get("choices").is_some() || data.get("id").is_some() {
return Ok((status, "模型测试成功".to_string()));
}
}
// 即使无法解析 JSON,只要状态码是 200 就认为成功
Ok((status, "模型测试成功".to_string()))
} else {
let error_text = response.text().await.unwrap_or_default();
Err(AppError::Message(format!("HTTP {status}: {error_text}")))
}
}
/// 测试 Gemini (Google Generative AI API)
async fn test_gemini(
client: &Client,
provider: &Provider,
adapter: &dyn ProviderAdapter,
model: &str,
prompt: &str,
) -> Result<(u16, String), AppError> {
let base_url = adapter
.extract_base_url(provider)
.map_err(|e| AppError::Message(format!("提取 base_url 失败: {e}")))?;
let auth = adapter
.extract_auth(provider)
.ok_or_else(|| AppError::Message("未找到 API Key".to_string()))?;
let url = format!(
"{}/v1beta/models/{}:generateContent?key={}",
base_url.trim_end_matches('/'),
model,
auth.api_key
);
let body = json!({
"contents": [{
"parts": [{
"text": prompt
}]
}],
"generationConfig": {
"maxOutputTokens": 1
}
});
let request = client
.post(&url)
.header("Content-Type", "application/json")
.json(&body);
let response = request.send().await.map_err(|e| {
if e.is_timeout() {
AppError::Message("请求超时".to_string())
} else if e.is_connect() {
AppError::Message(format!("连接失败: {e}"))
} else {
AppError::Message(e.to_string())
}
})?;
let status = response.status().as_u16();
if response.status().is_success() {
let data: Value = response
.json()
.await
.map_err(|e| AppError::Message(format!("解析响应失败: {e}")))?;
if data.get("candidates").is_some() {
Ok((status, "模型测试成功".to_string()))
} else {
Err(AppError::Message("响应格式异常".to_string()))
}
} else {
let error_text = response.text().await.unwrap_or_default();
Err(AppError::Message(format!("HTTP {status}: {error_text}")))
}
}
/// 添加 Claude 认证头
fn add_claude_auth(
request: reqwest::RequestBuilder,
auth: &AuthInfo,
) -> reqwest::RequestBuilder {
request
.header("x-api-key", &auth.api_key)
.header("anthropic-version", "2023-06-01")
.header("Content-Type", "application/json")
}
}
// ===== 数据库操作 =====
impl Database {
/// 保存模型测试日志
pub fn save_model_test_log(
&self,
provider_id: &str,
provider_name: &str,
app_type: &str,
model: &str,
prompt: &str,
result: &ModelTestResult,
) -> Result<i64, AppError> {
let conn = self
.conn
.lock()
.map_err(|e| AppError::Database(format!("获取数据库连接失败: {e}")))?;
conn.execute(
"INSERT INTO model_test_logs
(provider_id, provider_name, app_type, model, prompt, success, message, response_time_ms, http_status, tested_at)
VALUES (?1, ?2, ?3, ?4, ?5, ?6, ?7, ?8, ?9, ?10)",
rusqlite::params![
provider_id,
provider_name,
app_type,
model,
prompt,
result.success,
result.message,
result.response_time_ms.map(|t| t as i64),
result.http_status.map(|s| s as i64),
result.tested_at,
],
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(conn.last_insert_rowid())
}
/// 获取模型测试日志
pub fn get_model_test_logs(
&self,
app_type: Option<&str>,
provider_id: Option<&str>,
limit: u32,
) -> Result<Vec<ModelTestLog>, AppError> {
let conn = self
.conn
.lock()
.map_err(|e| AppError::Database(format!("获取数据库连接失败: {e}")))?;
let mut sql = String::from(
"SELECT id, provider_id, provider_name, app_type, model, prompt, success, message, response_time_ms, http_status, tested_at
FROM model_test_logs WHERE 1=1"
);
let mut params: Vec<Box<dyn rusqlite::ToSql>> = Vec::new();
if let Some(at) = app_type {
sql.push_str(" AND app_type = ?");
params.push(Box::new(at.to_string()));
}
if let Some(pid) = provider_id {
sql.push_str(" AND provider_id = ?");
params.push(Box::new(pid.to_string()));
}
sql.push_str(" ORDER BY tested_at DESC LIMIT ?");
params.push(Box::new(limit as i64));
let params_refs: Vec<&dyn rusqlite::ToSql> = params.iter().map(|p| p.as_ref()).collect();
let mut stmt = conn
.prepare(&sql)
.map_err(|e| AppError::Database(e.to_string()))?;
let logs = stmt
.query_map(params_refs.as_slice(), |row| {
Ok(ModelTestLog {
id: row.get(0)?,
provider_id: row.get(1)?,
provider_name: row.get(2)?,
app_type: row.get(3)?,
model: row.get(4)?,
prompt: row.get(5)?,
success: row.get(6)?,
message: row.get(7)?,
response_time_ms: row.get(8)?,
http_status: row.get(9)?,
tested_at: row.get(10)?,
})
})
.map_err(|e| AppError::Database(e.to_string()))?
.collect::<Result<Vec<_>, _>>()
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(logs)
}
/// 获取模型测试配置
pub fn get_model_test_config(&self) -> Result<ModelTestConfig, AppError> {
match self.get_setting("model_test_config")? {
Some(json) => serde_json::from_str(&json)
.map_err(|e| AppError::Message(format!("解析模型测试配置失败: {e}"))),
None => Ok(ModelTestConfig::default()),
}
}
/// 保存模型测试配置
pub fn save_model_test_config(&self, config: &ModelTestConfig) -> Result<(), AppError> {
let json = serde_json::to_string(config)
.map_err(|e| AppError::Message(format!("序列化模型测试配置失败: {e}")))?;
self.set_setting("model_test_config", &json)
}
/// 清理旧的测试日志(保留最近 N 条)
pub fn cleanup_model_test_logs(&self, keep_count: u32) -> Result<u64, AppError> {
let conn = self
.conn
.lock()
.map_err(|e| AppError::Database(format!("获取数据库连接失败: {e}")))?;
let deleted = conn
.execute(
"DELETE FROM model_test_logs WHERE id NOT IN (
SELECT id FROM model_test_logs ORDER BY tested_at DESC LIMIT ?
)",
rusqlite::params![keep_count as i64],
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(deleted as u64)
}
}
+20 -231
View File
@@ -144,29 +144,9 @@ impl ProviderService {
state.db.save_provider(app_type.as_str(), &provider)?;
if is_current {
// 如果代理接管模式处于激活状态,并且代理服务正在运行:
// - 不写 Live 配置(否则会破坏接管)
// - 仅更新 Live 备份(保证关闭代理时能恢复到最新配置)
let is_app_taken_over =
futures::executor::block_on(state.db.get_live_backup(app_type.as_str()))
.ok()
.flatten()
.is_some();
let is_proxy_running = futures::executor::block_on(state.proxy_service.is_running());
let should_skip_live_write = is_app_taken_over && is_proxy_running;
if should_skip_live_write {
futures::executor::block_on(
state
.proxy_service
.update_live_backup_from_provider(app_type.as_str(), &provider),
)
.map_err(|e| AppError::Message(format!("更新 Live 备份失败: {e}")))?;
} else {
write_live_snapshot(&app_type, &provider)?;
// Sync MCP
McpService::sync_all_enabled(state)?;
}
write_live_snapshot(&app_type, &provider)?;
// Sync MCP
McpService::sync_all_enabled(state)?;
}
Ok(true)
@@ -193,80 +173,14 @@ impl ProviderService {
///
/// Switch flow:
/// 1. Validate target provider exists
/// 2. Check if proxy takeover mode is active AND proxy server is running
/// 3. If takeover mode active: hot-switch proxy target only (no Live config write)
/// 4. If normal mode:
/// a. **Backfill mechanism**: Backfill current live config to current provider
/// b. Update local settings current_provider_xxx (device-level)
/// c. Update database is_current (as default for new devices)
/// d. Write target provider config to live files
/// e. Sync MCP configuration
/// 2. **Backfill mechanism**: Backfill current live config to current provider, protect user manual modifications
/// 3. Update local settings current_provider_xxx (device-level)
/// 4. Update database is_current (as default for new devices)
/// 5. Write target provider config to live files
/// 6. Sync MCP configuration
pub fn switch(state: &AppState, app_type: AppType, id: &str) -> Result<(), AppError> {
// Check if provider exists
let providers = state.db.get_all_providers(app_type.as_str())?;
let _provider = providers
.get(id)
.ok_or_else(|| AppError::Message(format!("供应商 {id} 不存在")))?;
// Check if proxy takeover mode is active AND proxy server is actually running
// Both conditions must be true to use hot-switch mode
// Use blocking wait since this is a sync function
let is_app_taken_over =
futures::executor::block_on(state.db.get_live_backup(app_type.as_str()))
.ok()
.flatten()
.is_some();
let is_proxy_running = futures::executor::block_on(state.proxy_service.is_running());
let live_taken_over = state
.proxy_service
.detect_takeover_in_live_config_for_app(&app_type);
// Hot-switch only when BOTH: this app is taken over AND proxy server is actually running
let should_hot_switch = (is_app_taken_over || live_taken_over) && is_proxy_running;
if should_hot_switch {
// Proxy takeover mode: hot-switch only, don't write Live config
log::info!(
"代理接管模式:热切换 {} 的目标供应商为 {}",
app_type.as_str(),
id
);
// 获取新供应商的完整配置(用于更新备份)
let provider = providers
.get(id)
.ok_or_else(|| AppError::Message(format!("供应商 {id} 不存在")))?;
// Update database is_current
state.db.set_current_provider(app_type.as_str(), id)?;
// Update local settings for consistency
crate::settings::set_current_provider(&app_type, Some(id))?;
// 更新 Live 备份(确保代理关闭时恢复正确的供应商配置)
futures::executor::block_on(
state
.proxy_service
.update_live_backup_from_provider(app_type.as_str(), provider),
)
.map_err(|e| AppError::Message(format!("更新 Live 备份失败: {e}")))?;
// Note: No Live config write, no MCP sync
// The proxy server will route requests to the new provider via is_current
return Ok(());
}
// Normal mode: full switch with Live config write
Self::switch_normal(state, app_type, id, &providers)
}
/// Normal switch flow (non-proxy mode)
fn switch_normal(
state: &AppState,
app_type: AppType,
id: &str,
providers: &indexmap::IndexMap<String, Provider>,
) -> Result<(), AppError> {
let provider = providers
.get(id)
.ok_or_else(|| AppError::Message(format!("供应商 {id} 不存在")))?;
@@ -303,6 +217,18 @@ impl ProviderService {
Ok(())
}
/// Set proxy target provider
pub fn set_proxy_target(state: &AppState, app_type: AppType, id: &str) -> Result<(), AppError> {
// Check if provider exists
let providers = state.db.get_all_providers(app_type.as_str())?;
if !providers.contains_key(id) {
return Err(AppError::Message(format!("供应商 {id} 不存在")));
}
state.db.set_proxy_target_provider(app_type.as_str(), id)?;
Ok(())
}
/// Sync current provider to live configuration (re-export)
pub fn sync_current_to_live(state: &AppState) -> Result<(), AppError> {
sync_current_to_live(state)
@@ -693,140 +619,3 @@ pub struct ProviderSortUpdate {
#[serde(rename = "sortIndex")]
pub sort_index: usize,
}
// ============================================================================
// 统一供应商(Universal Provider)服务方法
// ============================================================================
use crate::provider::UniversalProvider;
use std::collections::HashMap;
impl ProviderService {
/// 获取所有统一供应商
pub fn list_universal(
state: &AppState,
) -> Result<HashMap<String, UniversalProvider>, AppError> {
state.db.get_all_universal_providers()
}
/// 获取单个统一供应商
pub fn get_universal(
state: &AppState,
id: &str,
) -> Result<Option<UniversalProvider>, AppError> {
state.db.get_universal_provider(id)
}
/// 添加或更新统一供应商(不自动同步,需手动调用 sync_universal_to_apps
pub fn upsert_universal(
state: &AppState,
provider: UniversalProvider,
) -> Result<bool, AppError> {
// 保存统一供应商
state.db.save_universal_provider(&provider)?;
Ok(true)
}
/// 删除统一供应商
pub fn delete_universal(state: &AppState, id: &str) -> Result<bool, AppError> {
// 获取统一供应商(用于删除生成的子供应商)
let provider = state.db.get_universal_provider(id)?;
// 删除统一供应商
state.db.delete_universal_provider(id)?;
// 删除生成的子供应商
if let Some(p) = provider {
if p.apps.claude {
let claude_id = format!("universal-claude-{id}");
let _ = state.db.delete_provider("claude", &claude_id);
}
if p.apps.codex {
let codex_id = format!("universal-codex-{id}");
let _ = state.db.delete_provider("codex", &codex_id);
}
if p.apps.gemini {
let gemini_id = format!("universal-gemini-{id}");
let _ = state.db.delete_provider("gemini", &gemini_id);
}
}
Ok(true)
}
/// 同步统一供应商到各应用
pub fn sync_universal_to_apps(state: &AppState, id: &str) -> Result<bool, AppError> {
let provider = state
.db
.get_universal_provider(id)?
.ok_or_else(|| AppError::Message(format!("统一供应商 {id} 不存在")))?;
// 同步到 Claude
if let Some(mut claude_provider) = provider.to_claude_provider() {
// 合并已有配置
if let Some(existing) = state.db.get_provider_by_id(&claude_provider.id, "claude")? {
let mut merged = existing.settings_config.clone();
Self::merge_json(&mut merged, &claude_provider.settings_config);
claude_provider.settings_config = merged;
}
state.db.save_provider("claude", &claude_provider)?;
} else {
// 如果禁用了 Claude,删除对应的子供应商
let claude_id = format!("universal-claude-{id}");
let _ = state.db.delete_provider("claude", &claude_id);
}
// 同步到 Codex
if let Some(mut codex_provider) = provider.to_codex_provider() {
// 合并已有配置
if let Some(existing) = state.db.get_provider_by_id(&codex_provider.id, "codex")? {
let mut merged = existing.settings_config.clone();
Self::merge_json(&mut merged, &codex_provider.settings_config);
codex_provider.settings_config = merged;
}
state.db.save_provider("codex", &codex_provider)?;
} else {
let codex_id = format!("universal-codex-{id}");
let _ = state.db.delete_provider("codex", &codex_id);
}
// 同步到 Gemini
if let Some(mut gemini_provider) = provider.to_gemini_provider() {
// 合并已有配置
if let Some(existing) = state.db.get_provider_by_id(&gemini_provider.id, "gemini")? {
let mut merged = existing.settings_config.clone();
Self::merge_json(&mut merged, &gemini_provider.settings_config);
gemini_provider.settings_config = merged;
}
state.db.save_provider("gemini", &gemini_provider)?;
} else {
let gemini_id = format!("universal-gemini-{id}");
let _ = state.db.delete_provider("gemini", &gemini_id);
}
Ok(true)
}
/// 递归合并 JSONbase 为底,patch 覆盖同名字段
fn merge_json(base: &mut serde_json::Value, patch: &serde_json::Value) {
use serde_json::Value;
match (base, patch) {
(Value::Object(base_map), Value::Object(patch_map)) => {
for (k, v_patch) in patch_map {
match base_map.get_mut(k) {
Some(v_base) => Self::merge_json(v_base, v_patch),
None => {
base_map.insert(k.clone(), v_patch.clone());
}
}
}
}
// 其它类型:直接覆盖
(base_val, patch_val) => {
*base_val = patch_val.clone();
}
}
}
}
+3 -45
View File
@@ -79,34 +79,6 @@ pub(crate) async fn execute_and_format_usage_result(
}
}
/// Extract API key from provider configuration
fn extract_api_key_from_provider(provider: &crate::provider::Provider) -> Option<String> {
if let Some(env) = provider.settings_config.get("env") {
// Try multiple possible API key fields
env.get("ANTHROPIC_AUTH_TOKEN")
.or_else(|| env.get("ANTHROPIC_API_KEY"))
.or_else(|| env.get("OPENROUTER_API_KEY"))
.or_else(|| env.get("GOOGLE_API_KEY"))
.and_then(|v| v.as_str())
.map(|s| s.to_string())
} else {
None
}
}
/// Extract base URL from provider configuration
fn extract_base_url_from_provider(provider: &crate::provider::Provider) -> Option<String> {
if let Some(env) = provider.settings_config.get("env") {
// Try multiple possible base URL fields
env.get("ANTHROPIC_BASE_URL")
.or_else(|| env.get("GOOGLE_GEMINI_BASE_URL"))
.and_then(|v| v.as_str())
.map(|s| s.trim_end_matches('/').to_string())
} else {
None
}
}
/// Query provider usage (using saved script configuration)
pub async fn query_usage(
state: &AppState,
@@ -142,26 +114,12 @@ pub async fn query_usage(
));
}
// Get credentials: prioritize UsageScript values, fallback to provider config
let api_key = usage_script
.api_key
.clone()
.filter(|k| !k.is_empty())
.or_else(|| extract_api_key_from_provider(provider))
.unwrap_or_default();
let base_url = usage_script
.base_url
.clone()
.filter(|u| !u.is_empty())
.or_else(|| extract_base_url_from_provider(provider))
.unwrap_or_default();
// Get credentials directly from UsageScript, no longer extract from provider config
(
usage_script.code.clone(),
usage_script.timeout.unwrap_or(10),
api_key,
base_url,
usage_script.api_key.clone().unwrap_or_default(),
usage_script.base_url.clone().unwrap_or_default(),
usage_script.access_token.clone(),
usage_script.user_id.clone(),
)
File diff suppressed because it is too large Load Diff
File diff suppressed because it is too large Load Diff
+26 -43
View File
@@ -31,51 +31,40 @@ impl SpeedtestService {
return Ok(vec![]);
}
let mut results: Vec<Option<EndpointLatency>> = vec![None; urls.len()];
let mut valid_targets = Vec::new();
for (idx, raw_url) in urls.into_iter().enumerate() {
let trimmed = raw_url.trim().to_string();
if trimmed.is_empty() {
results[idx] = Some(EndpointLatency {
url: raw_url,
latency: None,
status: None,
error: Some("URL 不能为空".to_string()),
});
continue;
}
match Url::parse(&trimmed) {
Ok(parsed_url) => valid_targets.push((idx, trimmed, parsed_url)),
Err(err) => {
results[idx] = Some(EndpointLatency {
url: trimmed,
latency: None,
status: None,
error: Some(format!("URL 无效: {err}")),
});
}
}
}
if valid_targets.is_empty() {
return Ok(results.into_iter().flatten().collect::<Vec<_>>());
}
let timeout = Self::sanitize_timeout(timeout_secs);
let client = Self::build_client(timeout)?;
let tasks = valid_targets.into_iter().map(|(idx, trimmed, parsed_url)| {
let tasks = urls.into_iter().map(|raw_url| {
let client = client.clone();
async move {
let trimmed = raw_url.trim().to_string();
if trimmed.is_empty() {
return EndpointLatency {
url: raw_url,
latency: None,
status: None,
error: Some("URL 不能为空".to_string()),
};
}
let parsed_url = match Url::parse(&trimmed) {
Ok(url) => url,
Err(err) => {
return EndpointLatency {
url: trimmed,
latency: None,
status: None,
error: Some(format!("URL 无效: {err}")),
};
}
};
// 先进行一次热身请求,忽略结果,仅用于复用连接/绕过首包惩罚。
let _ = client.get(parsed_url.clone()).send().await;
// 第二次请求开始计时,并将其作为结果返回。
let start = Instant::now();
let latency = match client.get(parsed_url).send().await {
match client.get(parsed_url).send().await {
Ok(resp) => EndpointLatency {
url: trimmed,
latency: Some(start.elapsed().as_millis()),
@@ -99,17 +88,11 @@ impl SpeedtestService {
error: Some(error_message),
}
}
};
(idx, latency)
}
}
});
for (idx, latency) in join_all(tasks).await {
results[idx] = Some(latency);
}
Ok(results.into_iter().flatten().collect::<Vec<_>>())
Ok(join_all(tasks).await)
}
fn build_client(timeout_secs: u64) -> Result<Client, AppError> {
-481
View File
@@ -1,481 +0,0 @@
//! 流式健康检查服务
//!
//! 使用流式 API 进行快速健康检查,只需接收首个 chunk 即判定成功。
use futures::StreamExt;
use regex::Regex;
use reqwest::Client;
use serde::{Deserialize, Serialize};
use serde_json::json;
use std::time::{Duration, Instant};
use crate::app_config::AppType;
use crate::error::AppError;
use crate::provider::Provider;
use crate::proxy::providers::{get_adapter, AuthInfo};
/// 健康状态枚举
#[derive(Debug, Clone, Serialize, Deserialize, PartialEq)]
#[serde(rename_all = "lowercase")]
pub enum HealthStatus {
Operational,
Degraded,
Failed,
}
/// 流式检查配置
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct StreamCheckConfig {
pub timeout_secs: u64,
pub max_retries: u32,
pub degraded_threshold_ms: u64,
/// Claude 测试模型
pub claude_model: String,
/// Codex 测试模型
pub codex_model: String,
/// Gemini 测试模型
pub gemini_model: String,
}
impl Default for StreamCheckConfig {
fn default() -> Self {
Self {
timeout_secs: 45,
max_retries: 2,
degraded_threshold_ms: 6000,
claude_model: "claude-haiku-4-5-20251001".to_string(),
codex_model: "gpt-5.1-codex@low".to_string(),
gemini_model: "gemini-3-pro-preview".to_string(),
}
}
}
/// 流式检查结果
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct StreamCheckResult {
pub status: HealthStatus,
pub success: bool,
pub message: String,
pub response_time_ms: Option<u64>,
pub http_status: Option<u16>,
pub model_used: String,
pub tested_at: i64,
pub retry_count: u32,
}
/// 流式健康检查服务
pub struct StreamCheckService;
impl StreamCheckService {
/// 执行流式健康检查(带重试)
pub async fn check_with_retry(
app_type: &AppType,
provider: &Provider,
config: &StreamCheckConfig,
) -> Result<StreamCheckResult, AppError> {
let mut last_result = None;
for attempt in 0..=config.max_retries {
let result = Self::check_once(app_type, provider, config).await;
match &result {
Ok(r) if r.success => {
return Ok(StreamCheckResult {
retry_count: attempt,
..r.clone()
});
}
Ok(r) => {
// 失败但非异常,判断是否重试
if Self::should_retry(&r.message) && attempt < config.max_retries {
last_result = Some(r.clone());
continue;
}
return Ok(StreamCheckResult {
retry_count: attempt,
..r.clone()
});
}
Err(e) => {
if Self::should_retry(&e.to_string()) && attempt < config.max_retries {
continue;
}
return Err(AppError::Message(e.to_string()));
}
}
}
Ok(last_result.unwrap_or_else(|| StreamCheckResult {
status: HealthStatus::Failed,
success: false,
message: "检查失败".to_string(),
response_time_ms: None,
http_status: None,
model_used: String::new(),
tested_at: chrono::Utc::now().timestamp(),
retry_count: config.max_retries,
}))
}
/// 单次流式检查
async fn check_once(
app_type: &AppType,
provider: &Provider,
config: &StreamCheckConfig,
) -> Result<StreamCheckResult, AppError> {
let start = Instant::now();
let adapter = get_adapter(app_type);
let base_url = adapter
.extract_base_url(provider)
.map_err(|e| AppError::Message(format!("提取 base_url 失败: {e}")))?;
let auth = adapter
.extract_auth(provider)
.ok_or_else(|| AppError::Message("未找到 API Key".to_string()))?;
let client = Client::builder()
.timeout(Duration::from_secs(config.timeout_secs))
.user_agent("cc-switch/1.0")
.build()
.map_err(|e| AppError::Message(format!("创建客户端失败: {e}")))?;
let model_to_test = Self::resolve_test_model(app_type, provider, config);
let result = match app_type {
AppType::Claude => {
Self::check_claude_stream(&client, &base_url, &auth, &model_to_test).await
}
AppType::Codex => {
Self::check_codex_stream(&client, &base_url, &auth, &model_to_test).await
}
AppType::Gemini => {
Self::check_gemini_stream(&client, &base_url, &auth, &model_to_test).await
}
};
let response_time = start.elapsed().as_millis() as u64;
let tested_at = chrono::Utc::now().timestamp();
match result {
Ok((status_code, model)) => {
let health_status =
Self::determine_status(response_time, config.degraded_threshold_ms);
Ok(StreamCheckResult {
status: health_status,
success: true,
message: "检查成功".to_string(),
response_time_ms: Some(response_time),
http_status: Some(status_code),
model_used: model,
tested_at,
retry_count: 0,
})
}
Err(e) => Ok(StreamCheckResult {
status: HealthStatus::Failed,
success: false,
message: e.to_string(),
response_time_ms: Some(response_time),
http_status: None,
model_used: String::new(),
tested_at,
retry_count: 0,
}),
}
}
/// Claude 流式检查
async fn check_claude_stream(
client: &Client,
base_url: &str,
auth: &AuthInfo,
model: &str,
) -> Result<(u16, String), AppError> {
let base = base_url.trim_end_matches('/');
let url = if base.ends_with("/v1") {
format!("{base}/messages")
} else {
format!("{base}/v1/messages")
};
let body = json!({
"model": model,
"max_tokens": 1,
"messages": [{ "role": "user", "content": "hi" }],
"stream": true
});
let response = client
.post(&url)
.header("x-api-key", &auth.api_key)
.header("anthropic-version", "2023-06-01")
.header("Content-Type", "application/json")
.json(&body)
.send()
.await
.map_err(Self::map_request_error)?;
let status = response.status().as_u16();
if !response.status().is_success() {
let error_text = response.text().await.unwrap_or_default();
return Err(AppError::Message(format!("HTTP {status}: {error_text}")));
}
// 流式读取:只需首个 chunk
let mut stream = response.bytes_stream();
if let Some(chunk) = stream.next().await {
match chunk {
Ok(_) => Ok((status, model.to_string())),
Err(e) => Err(AppError::Message(format!("读取流失败: {e}"))),
}
} else {
Err(AppError::Message("未收到响应数据".to_string()))
}
}
/// Codex 流式检查
async fn check_codex_stream(
client: &Client,
base_url: &str,
auth: &AuthInfo,
model: &str,
) -> Result<(u16, String), AppError> {
let base = base_url.trim_end_matches('/');
let url = if base.ends_with("/v1") {
format!("{base}/chat/completions")
} else {
format!("{base}/v1/chat/completions")
};
// 解析模型名和推理等级 (支持 model@level 或 model#level 格式)
let (actual_model, reasoning_effort) = Self::parse_model_with_effort(model);
let mut body = json!({
"model": actual_model,
"messages": [
{ "role": "system", "content": "" },
{ "role": "assistant", "content": "" },
{ "role": "user", "content": "hi" }
],
"max_tokens": 1,
"temperature": 0,
"stream": true
});
// 如果是推理模型,添加 reasoning_effort
if let Some(effort) = reasoning_effort {
body["reasoning_effort"] = json!(effort);
}
let response = client
.post(&url)
.header("Authorization", format!("Bearer {}", auth.api_key))
.header("Content-Type", "application/json")
.json(&body)
.send()
.await
.map_err(Self::map_request_error)?;
let status = response.status().as_u16();
if !response.status().is_success() {
let error_text = response.text().await.unwrap_or_default();
return Err(AppError::Message(format!("HTTP {status}: {error_text}")));
}
let mut stream = response.bytes_stream();
if let Some(chunk) = stream.next().await {
match chunk {
Ok(_) => Ok((status, model.to_string())),
Err(e) => Err(AppError::Message(format!("读取流失败: {e}"))),
}
} else {
Err(AppError::Message("未收到响应数据".to_string()))
}
}
/// Gemini 流式检查
async fn check_gemini_stream(
client: &Client,
base_url: &str,
auth: &AuthInfo,
model: &str,
) -> Result<(u16, String), AppError> {
let base = base_url.trim_end_matches('/');
let url = format!("{base}/v1/chat/completions");
let body = json!({
"model": model,
"messages": [{ "role": "user", "content": "hi" }],
"max_tokens": 1,
"temperature": 0,
"stream": true
});
let response = client
.post(&url)
.header("Authorization", format!("Bearer {}", auth.api_key))
.header("Content-Type", "application/json")
.json(&body)
.send()
.await
.map_err(Self::map_request_error)?;
let status = response.status().as_u16();
if !response.status().is_success() {
let error_text = response.text().await.unwrap_or_default();
return Err(AppError::Message(format!("HTTP {status}: {error_text}")));
}
let mut stream = response.bytes_stream();
if let Some(chunk) = stream.next().await {
match chunk {
Ok(_) => Ok((status, model.to_string())),
Err(e) => Err(AppError::Message(format!("读取流失败: {e}"))),
}
} else {
Err(AppError::Message("未收到响应数据".to_string()))
}
}
fn determine_status(latency_ms: u64, threshold: u64) -> HealthStatus {
if latency_ms <= threshold {
HealthStatus::Operational
} else {
HealthStatus::Degraded
}
}
/// 解析模型名和推理等级 (支持 model@level 或 model#level 格式)
/// 返回 (实际模型名, Option<推理等级>)
fn parse_model_with_effort(model: &str) -> (String, Option<String>) {
// 查找 @ 或 # 分隔符
if let Some(pos) = model.find('@').or_else(|| model.find('#')) {
let actual_model = model[..pos].to_string();
let effort = model[pos + 1..].to_string();
if !effort.is_empty() {
return (actual_model, Some(effort));
}
}
(model.to_string(), None)
}
fn should_retry(msg: &str) -> bool {
let lower = msg.to_lowercase();
lower.contains("timeout")
|| lower.contains("abort")
|| lower.contains("中断")
|| lower.contains("超时")
}
fn map_request_error(e: reqwest::Error) -> AppError {
if e.is_timeout() {
AppError::Message("请求超时".to_string())
} else if e.is_connect() {
AppError::Message(format!("连接失败: {e}"))
} else {
AppError::Message(e.to_string())
}
}
fn resolve_test_model(
app_type: &AppType,
provider: &Provider,
config: &StreamCheckConfig,
) -> String {
match app_type {
AppType::Claude => Self::extract_env_model(provider, "ANTHROPIC_MODEL")
.unwrap_or_else(|| config.claude_model.clone()),
AppType::Codex => {
Self::extract_codex_model(provider).unwrap_or_else(|| config.codex_model.clone())
}
AppType::Gemini => Self::extract_env_model(provider, "GEMINI_MODEL")
.unwrap_or_else(|| config.gemini_model.clone()),
}
}
fn extract_env_model(provider: &Provider, key: &str) -> Option<String> {
provider
.settings_config
.get("env")
.and_then(|env| env.get(key))
.and_then(|value| value.as_str())
.map(|value| value.trim().to_string())
.filter(|value| !value.is_empty())
}
fn extract_codex_model(provider: &Provider) -> Option<String> {
let config_text = provider
.settings_config
.get("config")
.and_then(|value| value.as_str())?;
if config_text.trim().is_empty() {
return None;
}
let re = Regex::new(r#"^model\s*=\s*["']([^"']+)["']"#).ok()?;
re.captures(config_text)
.and_then(|caps| caps.get(1))
.map(|m| m.as_str().trim().to_string())
.filter(|value| !value.is_empty())
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_determine_status() {
assert_eq!(
StreamCheckService::determine_status(3000, 6000),
HealthStatus::Operational
);
assert_eq!(
StreamCheckService::determine_status(6000, 6000),
HealthStatus::Operational
);
assert_eq!(
StreamCheckService::determine_status(6001, 6000),
HealthStatus::Degraded
);
}
#[test]
fn test_should_retry() {
assert!(StreamCheckService::should_retry("请求超时"));
assert!(StreamCheckService::should_retry("request timeout"));
assert!(!StreamCheckService::should_retry("API Key 无效"));
}
#[test]
fn test_default_config() {
let config = StreamCheckConfig::default();
assert_eq!(config.timeout_secs, 45);
assert_eq!(config.max_retries, 2);
assert_eq!(config.degraded_threshold_ms, 6000);
}
#[test]
fn test_parse_model_with_effort() {
// 带 @ 分隔符
let (model, effort) = StreamCheckService::parse_model_with_effort("gpt-5.1-codex@low");
assert_eq!(model, "gpt-5.1-codex");
assert_eq!(effort, Some("low".to_string()));
// 带 # 分隔符
let (model, effort) = StreamCheckService::parse_model_with_effort("o1-preview#high");
assert_eq!(model, "o1-preview");
assert_eq!(effort, Some("high".to_string()));
// 无分隔符
let (model, effort) = StreamCheckService::parse_model_with_effort("gpt-4o-mini");
assert_eq!(model, "gpt-4o-mini");
assert_eq!(effort, None);
}
}
+278 -155
View File
@@ -4,7 +4,7 @@
use crate::database::{lock_conn, Database};
use crate::error::AppError;
use chrono::{Local, TimeZone};
use chrono::{Duration, Utc};
use rusqlite::{params, Connection, OptionalExtension};
use serde::{Deserialize, Serialize};
use serde_json::Value;
@@ -181,63 +181,29 @@ impl Database {
Ok(result)
}
/// 获取每日趋势(滑动窗口,<=24h 按小时,>24h 按天,窗口与汇总一致)
pub fn get_daily_trends(
&self,
start_date: Option<i64>,
end_date: Option<i64>,
) -> Result<Vec<DailyStats>, AppError> {
/// 获取每日趋势
pub fn get_daily_trends(&self, days: u32) -> Result<Vec<DailyStats>, AppError> {
let conn = lock_conn!(self.conn);
let end_ts = end_date.unwrap_or_else(|| Local::now().timestamp());
let mut start_ts = start_date.unwrap_or_else(|| end_ts - 24 * 60 * 60);
if days <= 1 {
let sql = "SELECT
strftime('%Y-%m-%dT%H:00:00Z', datetime(created_at, 'unixepoch')) as bucket,
COUNT(*) as request_count,
COALESCE(SUM(CAST(total_cost_usd AS REAL)), 0) as total_cost,
COALESCE(SUM(input_tokens + output_tokens), 0) as total_tokens,
COALESCE(SUM(input_tokens), 0) as total_input_tokens,
COALESCE(SUM(output_tokens), 0) as total_output_tokens,
COALESCE(SUM(cache_creation_tokens), 0) as total_cache_creation_tokens,
COALESCE(SUM(cache_read_tokens), 0) as total_cache_read_tokens
FROM proxy_request_logs
WHERE created_at >= strftime('%s', 'now', '-1 day')
GROUP BY bucket
ORDER BY bucket ASC";
if start_ts >= end_ts {
start_ts = end_ts - 24 * 60 * 60;
}
let duration = end_ts - start_ts;
let bucket_seconds: i64 = if duration <= 24 * 60 * 60 {
60 * 60
} else {
24 * 60 * 60
};
let mut bucket_count: i64 = if duration <= 0 {
1
} else {
((duration as f64) / bucket_seconds as f64).ceil() as i64
};
// 固定 24 小时窗口为 24 个小时桶,避免浮点误差
if bucket_seconds == 60 * 60 {
bucket_count = 24;
}
if bucket_count < 1 {
bucket_count = 1;
}
let sql = "
SELECT
CAST((created_at - ?1) / ?3 AS INTEGER) as bucket_idx,
COUNT(*) as request_count,
COALESCE(SUM(CAST(total_cost_usd AS REAL)), 0) as total_cost,
COALESCE(SUM(input_tokens + output_tokens), 0) as total_tokens,
COALESCE(SUM(input_tokens), 0) as total_input_tokens,
COALESCE(SUM(output_tokens), 0) as total_output_tokens,
COALESCE(SUM(cache_creation_tokens), 0) as total_cache_creation_tokens,
COALESCE(SUM(cache_read_tokens), 0) as total_cache_read_tokens
FROM proxy_request_logs
WHERE created_at >= ?1 AND created_at <= ?2
GROUP BY bucket_idx
ORDER BY bucket_idx ASC";
let mut stmt = conn.prepare(sql)?;
let rows = stmt.query_map(params![start_ts, end_ts, bucket_seconds], |row| {
Ok((
row.get::<_, i64>(0)?,
DailyStats {
date: String::new(),
let mut stmt = conn.prepare(sql)?;
let rows = stmt.query_map([], |row| {
Ok(DailyStats {
date: row.get(0)?,
request_count: row.get::<_, i64>(1)? as u64,
total_cost: format!("{:.6}", row.get::<_, f64>(2)?),
total_tokens: row.get::<_, i64>(3)? as u64,
@@ -245,50 +211,99 @@ impl Database {
total_output_tokens: row.get::<_, i64>(5)? as u64,
total_cache_creation_tokens: row.get::<_, i64>(6)? as u64,
total_cache_read_tokens: row.get::<_, i64>(7)? as u64,
},
))
})?;
})
})?;
let mut map: HashMap<i64, DailyStats> = HashMap::new();
for row in rows {
let (mut bucket_idx, stat) = row?;
if bucket_idx < 0 {
continue;
let mut buckets: HashMap<String, DailyStats> = HashMap::new();
for row in rows {
let stat = row?;
buckets.insert(stat.date.clone(), stat);
}
if bucket_idx >= bucket_count {
bucket_idx = bucket_count - 1;
let mut stats = Vec::new();
let today = Utc::now().date_naive();
for hour in 0..24 {
let bucket = today
.and_hms_opt(hour, 0, 0)
.unwrap()
.format("%Y-%m-%dT%H:00:00Z")
.to_string();
if let Some(stat) = buckets.remove(&bucket) {
stats.push(stat);
} else {
stats.push(DailyStats {
date: bucket,
request_count: 0,
total_cost: "0.000000".to_string(),
total_tokens: 0,
total_input_tokens: 0,
total_output_tokens: 0,
total_cache_creation_tokens: 0,
total_cache_read_tokens: 0,
});
}
}
map.insert(bucket_idx, stat);
Ok(stats)
} else {
let sql = "SELECT
date(created_at, 'unixepoch') as bucket,
COUNT(*) as request_count,
COALESCE(SUM(CAST(total_cost_usd AS REAL)), 0) as total_cost,
COALESCE(SUM(input_tokens + output_tokens), 0) as total_tokens,
COALESCE(SUM(input_tokens), 0) as total_input_tokens,
COALESCE(SUM(output_tokens), 0) as total_output_tokens,
COALESCE(SUM(cache_creation_tokens), 0) as total_cache_creation_tokens,
COALESCE(SUM(cache_read_tokens), 0) as total_cache_read_tokens
FROM proxy_request_logs
WHERE created_at >= strftime('%s', 'now', ?)
GROUP BY bucket
ORDER BY bucket ASC";
let mut stmt = conn.prepare(sql)?;
let rows = stmt.query_map([format!("-{days} days")], |row| {
Ok(DailyStats {
date: row.get(0)?,
request_count: row.get::<_, i64>(1)? as u64,
total_cost: format!("{:.6}", row.get::<_, f64>(2)?),
total_tokens: row.get::<_, i64>(3)? as u64,
total_input_tokens: row.get::<_, i64>(4)? as u64,
total_output_tokens: row.get::<_, i64>(5)? as u64,
total_cache_creation_tokens: row.get::<_, i64>(6)? as u64,
total_cache_read_tokens: row.get::<_, i64>(7)? as u64,
})
})?;
let mut map = HashMap::new();
for row in rows {
let stat = row?;
map.insert(stat.date.clone(), stat);
}
let mut stats = Vec::new();
let start_day =
Utc::now().date_naive() - Duration::days((days.saturating_sub(1)) as i64);
for i in 0..days {
let day = start_day + Duration::days(i as i64);
let key = day.format("%Y-%m-%d").to_string();
if let Some(stat) = map.remove(&key) {
stats.push(stat);
} else {
stats.push(DailyStats {
date: key,
request_count: 0,
total_cost: "0.000000".to_string(),
total_tokens: 0,
total_input_tokens: 0,
total_output_tokens: 0,
total_cache_creation_tokens: 0,
total_cache_read_tokens: 0,
});
}
}
Ok(stats)
}
let mut stats = Vec::with_capacity(bucket_count as usize);
for i in 0..bucket_count {
let bucket_start_ts = start_ts + i * bucket_seconds;
let bucket_start = Local
.timestamp_opt(bucket_start_ts, 0)
.single()
.unwrap_or_else(Local::now);
let date = bucket_start.format("%Y-%m-%dT%H:%M:%S").to_string();
if let Some(mut stat) = map.remove(&i) {
stat.date = date;
stats.push(stat);
} else {
stats.push(DailyStats {
date,
request_count: 0,
total_cost: "0.000000".to_string(),
total_tokens: 0,
total_input_tokens: 0,
total_output_tokens: 0,
total_cache_creation_tokens: 0,
total_cache_read_tokens: 0,
});
}
}
Ok(stats)
}
/// 获取 Provider 统计
@@ -602,7 +617,7 @@ impl Database {
"SELECT COALESCE(SUM(CAST(total_cost_usd AS REAL)), 0)
FROM proxy_request_logs
WHERE provider_id = ? AND app_type = ?
AND date(datetime(created_at, 'unixepoch', 'localtime')) = date('now', 'localtime')",
AND date(created_at, 'unixepoch') = date('now')",
params![provider_id, app_type],
|row| row.get(0),
)
@@ -614,7 +629,7 @@ impl Database {
"SELECT COALESCE(SUM(CAST(total_cost_usd AS REAL)), 0)
FROM proxy_request_logs
WHERE provider_id = ? AND app_type = ?
AND strftime('%Y-%m', datetime(created_at, 'unixepoch', 'localtime')) = strftime('%Y-%m', 'now', 'localtime')",
AND strftime('%Y-%m', created_at, 'unixepoch') = strftime('%Y-%m', 'now')",
params![provider_id, app_type],
|row| row.get(0),
)
@@ -637,6 +652,56 @@ impl Database {
monthly_exceeded,
})
}
/// 更新每日统计聚合
///
/// 在请求完成后调用,更新 usage_daily_stats 表
#[allow(clippy::too_many_arguments)]
pub fn update_daily_stats(
&self,
provider_id: &str,
app_type: &str,
model: &str,
input_tokens: u32,
output_tokens: u32,
total_cost: &str,
is_success: bool,
) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
let date = Utc::now().format("%Y-%m-%d").to_string();
// 使用 UPSERT 更新或插入统计
conn.execute(
"INSERT INTO usage_daily_stats (
date, provider_id, app_type, model,
request_count, total_input_tokens, total_output_tokens,
total_cost_usd, success_count, error_count
) VALUES (?1, ?2, ?3, ?4, 1, ?5, ?6, ?7, ?8, ?9)
ON CONFLICT(date, provider_id, app_type, model) DO UPDATE SET
request_count = request_count + 1,
total_input_tokens = total_input_tokens + ?5,
total_output_tokens = total_output_tokens + ?6,
total_cost_usd = CAST(
CAST(total_cost_usd AS REAL) + CAST(?7 AS REAL) AS TEXT
),
success_count = success_count + ?8,
error_count = error_count + ?9",
params![
date,
provider_id,
app_type,
model,
input_tokens,
output_tokens,
total_cost,
if is_success { 1 } else { 0 },
if is_success { 0 } else { 1 },
],
)
.map_err(|e| AppError::Database(format!("更新每日统计失败: {e}")))?;
Ok(())
}
}
/// Provider 限额状态
@@ -798,46 +863,89 @@ impl Database {
}
}
/// 标准化模型名称:去除供应商前缀并将点号替换为短横线
/// 例如:anthropic/claude-haiku-4.5 → claude-haiku-4-5
fn normalize_model_id(model_id: &str) -> String {
// 1. 去除供应商前缀(如 anthropic/、openai/
let stripped = if let Some(pos) = model_id.find('/') {
&model_id[pos + 1..]
} else {
model_id
};
// 2. 将点号替换为短横线(如 claude-haiku-4.5 → claude-haiku-4-5
stripped.replace('.', "-")
}
pub(crate) fn find_model_pricing_row(
conn: &Connection,
model_id: &str,
) -> Result<Option<(String, String, String, String)>, AppError> {
// 1) 去除供应商前缀(/ 之前)与冒号后缀(: 之后),例如 moonshotai/kimi-k2-0905:exa → kimi-k2-0905
let without_prefix = model_id
.rsplit_once('/')
.map(|(_, rest)| rest)
.unwrap_or(model_id);
let cleaned = without_prefix
.split(':')
.next()
.map(str::trim)
.unwrap_or(without_prefix);
// 0. 标准化模型名称(去除前缀 + 点号转短横线)
// 例如:anthropic/claude-haiku-4.5 → claude-haiku-4-5
let normalized = normalize_model_id(model_id);
// 2) 精确匹配清洗后的名称
let exact = conn
.query_row(
"SELECT input_cost_per_million, output_cost_per_million,
cache_read_cost_per_million, cache_creation_cost_per_million
FROM model_pricing
WHERE model_id = ?1",
[cleaned],
|row| {
Ok((
row.get::<_, String>(0)?,
row.get::<_, String>(1)?,
row.get::<_, String>(2)?,
row.get::<_, String>(3)?,
))
},
)
.optional()
.map_err(|e| AppError::Database(format!("查询模型定价失败: {e}")))?;
// 1. 精确匹配(先尝试原始名称,再尝试标准化后的名称
for id in [model_id, normalized.as_str()] {
let exact = conn
.query_row(
"SELECT input_cost_per_million, output_cost_per_million,
cache_read_cost_per_million, cache_creation_cost_per_million
FROM model_pricing
WHERE model_id = ?1",
[id],
|row| {
Ok((
row.get::<_, String>(0)?,
row.get::<_, String>(1)?,
row.get::<_, String>(2)?,
row.get::<_, String>(3)?,
))
},
)
.optional()
.map_err(|e| AppError::Database(format!("查询模型定价失败: {e}")))?;
if exact.is_none() {
log::warn!("模型 {model_id}(清洗后: {cleaned})未找到定价信息,成本将记录为 0");
if exact.is_some() {
if id != model_id {
log::info!("模型 {model_id} 标准化后精确匹配到: {id}");
}
return Ok(exact);
}
}
Ok(exact)
// 2. 逐步删除后缀匹配(claude-haiku-4-5-20250929 → claude-haiku-4-5 → claude-haiku-4 → claude-haiku
// 使用标准化后的名称进行后缀匹配
let mut current = normalized;
while let Some(pos) = current.rfind('-') {
current = current[..pos].to_string();
let result = conn
.query_row(
"SELECT input_cost_per_million, output_cost_per_million,
cache_read_cost_per_million, cache_creation_cost_per_million
FROM model_pricing
WHERE model_id = ?1",
[&current],
|row| {
Ok((
row.get::<_, String>(0)?,
row.get::<_, String>(1)?,
row.get::<_, String>(2)?,
row.get::<_, String>(3)?,
))
},
)
.optional()
.map_err(|e| AppError::Database(format!("查询模型定价失败: {e}")))?;
if result.is_some() {
log::info!("模型 {model_id} 通过删除后缀匹配到: {current}");
return Ok(result);
}
}
log::warn!("模型 {model_id} 未找到定价信息,成本将记录为 0");
Ok(None)
}
#[cfg(test)]
@@ -917,39 +1025,54 @@ mod tests {
let db = Database::memory()?;
let conn = lock_conn!(db.conn);
// 准备额外定价数据,覆盖前缀/后缀清洗场景
conn.execute(
"INSERT OR REPLACE INTO model_pricing (
model_id, display_name, input_cost_per_million, output_cost_per_million,
cache_read_cost_per_million, cache_creation_cost_per_million
) VALUES (?, ?, ?, ?, ?, ?)",
params![
"claude-haiku-4.5",
"Claude Haiku 4.5",
"1.0",
"2.0",
"0.0",
"0.0"
],
)?;
// 测试精确匹配
let result = find_model_pricing_row(&conn, "claude-sonnet-4-5")?;
assert!(result.is_some(), "应该能精确匹配 claude-sonnet-4-5");
// 测试精确匹配(seed_model_pricing 已预置 claude-sonnet-4-5-20250929
let result = find_model_pricing_row(&conn, "claude-sonnet-4-5-20250929")?;
assert!(
result.is_some(),
"应该能精确匹配 claude-sonnet-4-5-20250929"
);
// 清洗:去除前缀和冒号后缀
// 测试带供应商前缀的模型名称(anthropic/claude-haiku-4.5 → claude-haiku-4-5
let result = find_model_pricing_row(&conn, "anthropic/claude-haiku-4.5")?;
assert!(
result.is_some(),
"带前缀的模型 anthropic/claude-haiku-4.5 应能匹配到 claude-haiku-4.5"
"应该能匹配带前缀的模型 anthropic/claude-haiku-4.5"
);
let result = find_model_pricing_row(&conn, "moonshotai/kimi-k2-0905:exa")?;
// 测试带供应商前缀 + 点号的模型名称
let result = find_model_pricing_row(&conn, "anthropic/claude-sonnet-4.5")?;
assert!(
result.is_some(),
"带前缀+冒号后缀的模型应清洗后匹配到 kimi-k2-0905"
"应该能匹配带前缀的模型 anthropic/claude-sonnet-4.5"
);
// 测试逐步删除后缀匹配 - 日期后缀
let result = find_model_pricing_row(&conn, "claude-sonnet-4-5-20241022")?;
assert!(
result.is_some(),
"应该能通过删除后缀匹配 claude-sonnet-4-5-20241022"
);
// 测试逐步删除后缀匹配 - 多个后缀
let result = find_model_pricing_row(&conn, "claude-haiku-4-5-20240229-preview")?;
assert!(
result.is_some(),
"应该能通过删除后缀匹配 claude-haiku-4-5-20240229-preview"
);
// 测试 GPT 模型
let result = find_model_pricing_row(&conn, "gpt-5-2024-11-20")?;
assert!(result.is_some(), "应该能通过删除后缀匹配 gpt-5-2024-11-20");
// 测试 Gemini 模型
let result = find_model_pricing_row(&conn, "gemini-2.5-flash-exp")?;
assert!(
result.is_some(),
"应该能通过删除后缀匹配 gemini-2.5-flash-exp"
);
// 测试 claude-sonnet-4-5 命名格式
let result = find_model_pricing_row(&conn, "claude-sonnet-4-5-20250929")?;
assert!(
result.is_some(),
"应该能通过删除后缀匹配 claude-sonnet-4-5-20250929"
);
// 测试不存在的模型
-8
View File
@@ -31,9 +31,6 @@ pub struct AppSettings {
/// 是否启用 Claude 插件联动
#[serde(default)]
pub enable_claude_plugin_integration: bool,
/// 是否跳过 Claude Code 初次安装确认
#[serde(default = "default_true")]
pub skip_claude_onboarding: bool,
/// 是否开机自启
#[serde(default)]
pub launch_on_startup: bool,
@@ -68,17 +65,12 @@ fn default_minimize_to_tray_on_close() -> bool {
true
}
fn default_true() -> bool {
true
}
impl Default for AppSettings {
fn default() -> Self {
Self {
show_in_tray: true,
minimize_to_tray_on_close: true,
enable_claude_plugin_integration: false,
skip_claude_onboarding: true,
launch_on_startup: false,
language: None,
claude_config_dir: None,
+18 -492
View File
@@ -3,7 +3,6 @@ use rquickjs::{Context, Function, Runtime};
use serde_json::Value;
use std::collections::HashMap;
use std::time::Duration;
use url::{Host, Url};
use crate::error::AppError;
@@ -16,14 +15,20 @@ pub async fn execute_usage_script(
access_token: Option<&str>,
user_id: Option<&str>,
) -> Result<Value, AppError> {
// 1. 替换模板变量,避免泄露敏感信息
let script_with_vars =
build_script_with_vars(script_code, api_key, base_url, access_token, user_id);
// 1. 替换变量
let mut replaced = script_code
.replace("{{apiKey}}", api_key)
.replace("{{baseUrl}}", base_url);
// 2. 验证 base_url 的安全性
validate_base_url(base_url)?;
// 替换 accessToken 和 userId
if let Some(token) = access_token {
replaced = replaced.replace("{{accessToken}}", token);
}
if let Some(uid) = user_id {
replaced = replaced.replace("{{userId}}", uid);
}
// 3. 在独立作用域中提取 request 配置(确保 Runtime/Context 在 await 前释放)
// 2. 在独立作用域中提取 request 配置(确保 Runtime/Context 在 await 前释放)
let request_config = {
let runtime = Runtime::new().map_err(|e| {
AppError::localized(
@@ -42,7 +47,7 @@ pub async fn execute_usage_script(
context.with(|ctx| {
// 执行用户代码,获取配置对象
let config: rquickjs::Object = ctx.eval(script_with_vars.clone()).map_err(|e| {
let config: rquickjs::Object = ctx.eval(replaced.clone()).map_err(|e| {
AppError::localized(
"usage_script.config_parse_failed",
format!("解析配置失败: {e}"),
@@ -89,7 +94,7 @@ pub async fn execute_usage_script(
})?
}; // Runtime 和 Context 在这里被 drop
// 4. 解析 request 配置
// 3. 解析 request 配置
let request: RequestConfig = serde_json::from_str(&request_config).map_err(|e| {
AppError::localized(
"usage_script.request_format_invalid",
@@ -98,13 +103,10 @@ pub async fn execute_usage_script(
)
})?;
// 5. 验证请求 URL 是否安全(防止 SSRF)
validate_request_url(&request.url, base_url)?;
// 6. 发送 HTTP 请求
// 4. 发送 HTTP 请求
let response_data = send_http_request(&request, timeout_secs).await?;
// 7. 在独立作用域中执行 extractor(确保 Runtime/Context 在函数结束前释放)
// 5. 在独立作用域中执行 extractor(确保 Runtime/Context 在函数结束前释放)
let result: Value = {
let runtime = Runtime::new().map_err(|e| {
AppError::localized(
@@ -123,7 +125,7 @@ pub async fn execute_usage_script(
context.with(|ctx| {
// 重新 eval 获取配置对象
let config: rquickjs::Object = ctx.eval(script_with_vars.clone()).map_err(|e| {
let config: rquickjs::Object = ctx.eval(replaced.clone()).map_err(|e| {
AppError::localized(
"usage_script.config_reparse_failed",
format!("重新解析配置失败: {e}"),
@@ -196,7 +198,7 @@ pub async fn execute_usage_script(
})?
}; // Runtime 和 Context 在这里被 drop
// 8. 验证返回值格式
// 6. 验证返回值格式
validate_result(&result)?;
Ok(result)
@@ -392,479 +394,3 @@ fn validate_single_usage(result: &Value) -> Result<(), AppError> {
Ok(())
}
/// 构建替换变量后的脚本,保持与旧版脚本的兼容性
fn build_script_with_vars(
script_code: &str,
api_key: &str,
base_url: &str,
access_token: Option<&str>,
user_id: Option<&str>,
) -> String {
let mut replaced = script_code
.replace("{{apiKey}}", api_key)
.replace("{{baseUrl}}", base_url);
if let Some(token) = access_token {
replaced = replaced.replace("{{accessToken}}", token);
}
if let Some(uid) = user_id {
replaced = replaced.replace("{{userId}}", uid);
}
replaced
}
/// 验证 base_url 的基本安全性
fn validate_base_url(base_url: &str) -> Result<(), AppError> {
if base_url.is_empty() {
return Err(AppError::localized(
"usage_script.base_url_empty",
"base_url 不能为空",
"base_url cannot be empty",
));
}
// 解析 URL
let parsed_url = Url::parse(base_url).map_err(|e| {
AppError::localized(
"usage_script.base_url_invalid",
format!("无效的 base_url: {e}"),
format!("Invalid base_url: {e}"),
)
})?;
let is_loopback = is_loopback_host(&parsed_url);
// 必须是 HTTPS(允许 localhost 用于开发)
if parsed_url.scheme() != "https" && !is_loopback {
return Err(AppError::localized(
"usage_script.base_url_https_required",
"base_url 必须使用 HTTPS 协议(localhost 除外)",
"base_url must use HTTPS (localhost allowed)",
));
}
// 检查主机名格式有效性
let hostname = parsed_url.host_str().ok_or_else(|| {
AppError::localized(
"usage_script.base_url_hostname_missing",
"base_url 必须包含有效的主机名",
"base_url must include a valid hostname",
)
})?;
// 基本的主机名格式检查
if hostname.is_empty() {
return Err(AppError::localized(
"usage_script.base_url_hostname_empty",
"base_url 主机名不能为空",
"base_url hostname cannot be empty",
));
}
// 检查是否为明显的私有IP(但在 base_url 阶段不过于严格,主要在 request_url 阶段检查)
if is_suspicious_hostname(hostname) {
return Err(AppError::localized(
"usage_script.base_url_suspicious",
"base_url 包含可疑的主机名",
"base_url contains a suspicious hostname",
));
}
Ok(())
}
/// 验证请求 URL 是否安全(防止 SSRF)
fn validate_request_url(request_url: &str, base_url: &str) -> Result<(), AppError> {
// 解析请求 URL
let parsed_request = Url::parse(request_url).map_err(|e| {
AppError::localized(
"usage_script.request_url_invalid",
format!("无效的请求 URL: {e}"),
format!("Invalid request URL: {e}"),
)
})?;
// 解析 base URL
let parsed_base = Url::parse(base_url).map_err(|e| {
AppError::localized(
"usage_script.base_url_invalid",
format!("无效的 base_url: {e}"),
format!("Invalid base_url: {e}"),
)
})?;
let is_request_loopback = is_loopback_host(&parsed_request);
// 必须使用 HTTPS(允许 localhost 用于开发)
if parsed_request.scheme() != "https" && !is_request_loopback {
return Err(AppError::localized(
"usage_script.request_https_required",
"请求 URL 必须使用 HTTPS 协议(localhost 除外)",
"Request URL must use HTTPS (localhost allowed)",
));
}
// 核心安全检查:必须与 base_url 同源(相同域名和端口)
if parsed_request.host_str() != parsed_base.host_str() {
return Err(AppError::localized(
"usage_script.request_host_mismatch",
format!(
"请求域名 {} 与 base_url 域名 {} 不匹配(必须是同源请求)",
parsed_request.host_str().unwrap_or("unknown"),
parsed_base.host_str().unwrap_or("unknown")
),
format!(
"Request host {} must match base_url host {} (same-origin required)",
parsed_request.host_str().unwrap_or("unknown"),
parsed_base.host_str().unwrap_or("unknown")
),
));
}
// 检查端口是否匹配(考虑默认端口)
// 使用 port_or_known_default() 会自动处理默认端口(http->80, https->443
match (
parsed_request.port_or_known_default(),
parsed_base.port_or_known_default(),
) {
(Some(request_port), Some(base_port)) if request_port == base_port => {
// 端口匹配,继续执行
}
(Some(request_port), Some(base_port)) => {
return Err(AppError::localized(
"usage_script.request_port_mismatch",
format!("请求端口 {request_port} 必须与 base_url 端口 {base_port} 匹配"),
format!("Request port {request_port} must match base_url port {base_port}"),
));
}
_ => {
// 理论上不会发生,因为 port_or_known_default() 应该总是返回 Some
return Err(AppError::localized(
"usage_script.request_port_unknown",
"无法确定端口号",
"Unable to determine port number",
));
}
}
// 禁止私有 IP 地址访问(除非 base_url 本身就是私有地址,用于开发环境)
if let Some(host) = parsed_request.host_str() {
let base_host = parsed_base.host_str().unwrap_or("");
// 如果 base_url 不是私有地址,则禁止访问私有IP
if !is_private_ip(base_host) && is_private_ip(host) {
return Err(AppError::localized(
"usage_script.private_ip_blocked",
"禁止访问私有 IP 地址",
"Access to private IP addresses is blocked",
));
}
}
Ok(())
}
/// 检查是否为私有 IP 地址
fn is_private_ip(host: &str) -> bool {
// localhost 检查
if host.eq_ignore_ascii_case("localhost") {
return true;
}
// 尝试解析为IP地址
if let Ok(ip_addr) = host.parse::<std::net::IpAddr>() {
return is_private_ip_addr(ip_addr);
}
// 如果不是IP地址,不是私有IP
false
}
/// 使用标准库API检查IP地址是否为私有地址
fn is_private_ip_addr(ip: std::net::IpAddr) -> bool {
match ip {
std::net::IpAddr::V4(ipv4) => {
let octets = ipv4.octets();
// 0.0.0.0/8 (包括未指定地址)
if octets[0] == 0 {
return true;
}
// RFC1918 私有地址范围
// 10.0.0.0/8
if octets[0] == 10 {
return true;
}
// 172.16.0.0/12 (172.16.0.0 - 172.31.255.255)
if octets[0] == 172 && octets[1] >= 16 && octets[1] <= 31 {
return true;
}
// 192.168.0.0/16
if octets[0] == 192 && octets[1] == 168 {
return true;
}
// 其他特殊地址
// 169.254.0.0/16 (链路本地地址)
if octets[0] == 169 && octets[1] == 254 {
return true;
}
// 127.0.0.0/8 (环回地址)
if octets[0] == 127 {
return true;
}
false
}
std::net::IpAddr::V6(ipv6) => {
// IPv6 私有地址检查 - 使用标准库方法
// ::1 (环回地址)
if ipv6.is_loopback() {
return true;
}
// 唯一本地地址 (fc00::/7)
// Rust 1.70+ 可以使用 ipv6.is_unique_local()
// 但为了兼容性,我们手动检查
let first_segment = ipv6.segments()[0];
if (first_segment & 0xfe00) == 0xfc00 {
return true;
}
// 链路本地地址 (fe80::/10)
if (first_segment & 0xffc0) == 0xfe80 {
return true;
}
// 未指定地址 ::
if ipv6.is_unspecified() {
return true;
}
false
}
}
}
/// 检查是否为可疑的主机名(只检查明显不安全的模式)
fn is_suspicious_hostname(hostname: &str) -> bool {
// 空主机名
if hostname.is_empty() {
return true;
}
// 检查明显的主机名格式问题
if hostname.contains("..") || hostname.starts_with(".") || hostname.ends_with(".") {
return true;
}
// 检查是否为纯IP地址但没有合理格式(过于宽松的检查在这里可能不够,但主要依赖后续的同源检查)
if hostname.parse::<std::net::IpAddr>().is_ok() {
// IP地址格式的,在这里不直接拒绝,让同源检查来处理
return false;
}
// 检查是否包含明显不当的字符
let suspicious_chars = ['<', '>', '"', '\'', '\n', '\r', '\t', '\0'];
if hostname.chars().any(|c| suspicious_chars.contains(&c)) {
return true;
}
false
}
/// 判断 URL 是否指向本机(localhost / loopback
fn is_loopback_host(url: &Url) -> bool {
match url.host() {
Some(Host::Domain(d)) => d.eq_ignore_ascii_case("localhost"),
Some(Host::Ipv4(ip)) => ip.is_loopback(),
Some(Host::Ipv6(ip)) => ip.is_loopback(),
_ => false,
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_private_ip_validation() {
// 测试IPv4私网地址
// RFC1918私网地址 - 应该返回true
assert!(is_private_ip("10.0.0.1"));
assert!(is_private_ip("10.255.255.254"));
assert!(is_private_ip("172.16.0.1"));
assert!(is_private_ip("172.31.255.255"));
assert!(is_private_ip("192.168.0.1"));
assert!(is_private_ip("192.168.255.255"));
// 链路本地地址 - 应该返回true
assert!(is_private_ip("169.254.0.1"));
assert!(is_private_ip("169.254.255.255"));
// 环回地址 - 应该返回true
assert!(is_private_ip("127.0.0.1"));
assert!(is_private_ip("localhost"));
// 公网172.x.x.x地址 - 应该返回false(这是修复的重点)
assert!(!is_private_ip("172.0.0.1"));
assert!(!is_private_ip("172.15.255.255"));
assert!(!is_private_ip("172.32.0.1"));
assert!(!is_private_ip("172.64.0.1"));
assert!(!is_private_ip("172.67.0.1")); // Cloudflare CDN
assert!(!is_private_ip("172.68.0.1"));
assert!(!is_private_ip("172.100.50.25"));
assert!(!is_private_ip("172.255.255.255"));
// 其他公网地址 - 应该返回false
assert!(!is_private_ip("8.8.8.8")); // Google DNS
assert!(!is_private_ip("1.1.1.1")); // Cloudflare DNS
assert!(!is_private_ip("208.67.222.222")); // OpenDNS
assert!(!is_private_ip("180.76.76.76")); // Baidu DNS
// 域名 - 应该返回false
assert!(!is_private_ip("api.example.com"));
assert!(!is_private_ip("www.google.com"));
}
#[test]
fn test_ipv6_private_validation() {
// IPv6私网地址
assert!(is_private_ip("::1")); // 环回地址
assert!(is_private_ip("fc00::1")); // 唯一本地地址
assert!(is_private_ip("fd00::1")); // 唯一本地地址
assert!(is_private_ip("fe80::1")); // 链路本地地址
assert!(is_private_ip("::")); // 未指定地址
// IPv6公网地址 - 应该返回false(修复的重点)
assert!(!is_private_ip("2001:4860:4860::8888")); // Google DNS IPv6
assert!(!is_private_ip("2606:4700:4700::1111")); // Cloudflare DNS IPv6
assert!(!is_private_ip("2404:6800:4001:c01::67")); // Google DNS IPv6 (其他格式)
assert!(!is_private_ip("2001:db8::1")); // 文档地址(非私网)
// 测试包含 ::1 子串但不是环回地址的公网地址
assert!(!is_private_ip("2001:db8::1abc")); // 包含 ::1abc 但不是环回
assert!(!is_private_ip("2606:4700::1")); // 包含 ::1 但不是环回
}
#[test]
fn test_hostname_bypass_prevention() {
// 看起来像本地,但实际是域名
assert!(!is_private_ip("127.0.0.1.evil.com"));
assert!(!is_private_ip("localhost.evil.com"));
// 0.0.0.0 应该被视为本地/阻断
assert!(is_private_ip("0.0.0.0"));
}
#[test]
fn test_https_bypass_prevention() {
// 非本地域名的 HTTP 应该被拒绝
let result = validate_base_url("http://127.0.0.1.evil.com/api");
assert!(
result.is_err(),
"Should reject HTTP for non-localhost domains"
);
}
#[test]
fn test_edge_cases() {
// 边界情况测试
assert!(is_private_ip("172.16.0.0")); // RFC1918起始
assert!(is_private_ip("172.31.255.255")); // RFC1918结束
assert!(is_private_ip("10.0.0.0")); // 10.0.0.0/8起始
assert!(is_private_ip("10.255.255.255")); // 10.0.0.0/8结束
assert!(is_private_ip("192.168.0.0")); // 192.168.0.0/16起始
assert!(is_private_ip("192.168.255.255")); // 192.168.0.0/16结束
// 紧邻RFC1918的公网地址 - 应该返回false
assert!(!is_private_ip("172.15.255.255")); // 172.16.0.0的前一个
assert!(!is_private_ip("172.32.0.0")); // 172.31.255.255的后一个
}
#[test]
fn test_ip_addr_parsing() {
// 测试IP地址解析功能
let ipv4_private = "10.0.0.1".parse::<std::net::IpAddr>().unwrap();
assert!(is_private_ip_addr(ipv4_private));
let ipv4_public = "172.67.0.1".parse::<std::net::IpAddr>().unwrap();
assert!(!is_private_ip_addr(ipv4_public));
let ipv6_private = "fc00::1".parse::<std::net::IpAddr>().unwrap();
assert!(is_private_ip_addr(ipv6_private));
let ipv6_public = "2001:4860:4860::8888".parse::<std::net::IpAddr>().unwrap();
assert!(!is_private_ip_addr(ipv6_public));
}
#[test]
fn test_port_comparison() {
// 测试端口比较逻辑是否正确处理默认端口和显式端口
// 测试用例:(base_url, request_url, should_match)
let test_cases = vec![
// HTTPS默认端口测试
(
"https://api.example.com",
"https://api.example.com/v1/test",
true,
),
(
"https://api.example.com",
"https://api.example.com:443/v1/test",
true,
),
(
"https://api.example.com:443",
"https://api.example.com/v1/test",
true,
),
(
"https://api.example.com:443",
"https://api.example.com:443/v1/test",
true,
),
// 端口不匹配测试
(
"https://api.example.com",
"https://api.example.com:8443/v1/test",
false,
),
(
"https://api.example.com:443",
"https://api.example.com:8443/v1/test",
false,
),
];
for (base_url, request_url, should_match) in test_cases {
let result = validate_request_url(request_url, base_url);
if should_match {
assert!(
result.is_ok(),
"应该匹配的URL被拒绝: base_url={}, request_url={}, error={}",
base_url,
request_url,
result.unwrap_err()
);
} else {
assert!(
result.is_err(),
"应该不匹配的URL被允许: base_url={}, request_url={}",
base_url,
request_url
);
}
}
}
}
+1 -1
View File
@@ -1,7 +1,7 @@
{
"$schema": "https://schema.tauri.app/config/2",
"productName": "CC Switch",
"version": "3.9.0-3",
"version": "3.8.2",
"identifier": "com.ccswitch.desktop",
"build": {
"frontendDist": "../dist",
+1 -3
View File
@@ -4,9 +4,7 @@
"windows": [
{
"label": "main",
"titleBarStyle": "Visible",
"minWidth": 900,
"minHeight": 600
"titleBarStyle": "Visible"
}
]
}
+5 -13
View File
@@ -1,8 +1,6 @@
use std::sync::Arc;
use cc_switch_lib::{
import_provider_from_deeplink, parse_deeplink_url, AppState, Database, ProxyService,
};
use cc_switch_lib::{import_provider_from_deeplink, parse_deeplink_url, AppState, Database};
#[path = "support.rs"]
mod support;
@@ -18,11 +16,8 @@ fn deeplink_import_claude_provider_persists_to_db() {
let request = parse_deeplink_url(url).expect("parse deeplink url");
let db = Arc::new(Database::memory().expect("create memory db"));
let proxy_service = ProxyService::new(db.clone());
let state = AppState {
db: db.clone(),
proxy_service,
};
let state = AppState { db: db.clone() };
let provider_id = import_provider_from_deeplink(&state, request.clone())
.expect("import provider from deeplink");
@@ -58,11 +53,8 @@ fn deeplink_import_codex_provider_builds_auth_and_config() {
let request = parse_deeplink_url(url).expect("parse deeplink url");
let db = Arc::new(Database::memory().expect("create memory db"));
let proxy_service = ProxyService::new(db.clone());
let state = AppState {
db: db.clone(),
proxy_service,
};
let state = AppState { db: db.clone() };
let provider_id = import_provider_from_deeplink(&state, request.clone())
.expect("import provider from deeplink");
+16 -89
View File
@@ -76,8 +76,19 @@ fn sync_codex_provider_writes_auth_and_config() {
let mut config = MultiAppConfig::default();
// 注意:v3.7.0 后 MCP 同步由 McpService 独立处理,不再通过 provider 切换触发
// 此测试仅验证 auth.json 和 config.toml 基础配置的写入
// 添加入测 MCP 启用项,确保 sync_enabled_to_codex 会写入 TOML
config.mcp.codex.servers.insert(
"echo-server".into(),
json!({
"id": "echo-server",
"enabled": true,
"server": {
"type": "stdio",
"command": "echo",
"args": ["hello"]
}
}),
);
let provider_config = json!({
"auth": {
@@ -122,10 +133,9 @@ fn sync_codex_provider_writes_auth_and_config() {
);
let toml_text = fs::read_to_string(&config_path).expect("read config.toml");
// 验证基础配置正确写入
assert!(
toml_text.contains("base_url"),
"config.toml should contain base_url from provider config"
toml_text.contains("command = \"echo\""),
"config.toml should contain serialized enabled MCP server"
);
// 当前供应商应同步最新 config 文本
@@ -144,12 +154,6 @@ fn sync_enabled_to_codex_writes_enabled_servers() {
let _guard = test_mutex().lock().expect("acquire test mutex");
reset_test_fs();
// 模拟 Codex 已安装/已初始化:存在 ~/.codex 目录
let path = cc_switch_lib::get_codex_config_path();
if let Some(parent) = path.parent() {
fs::create_dir_all(parent).expect("create codex dir");
}
let mut config = MultiAppConfig::default();
config.mcp.codex.servers.insert(
"stdio-enabled".into(),
@@ -166,6 +170,7 @@ fn sync_enabled_to_codex_writes_enabled_servers() {
cc_switch_lib::sync_enabled_to_codex(&config).expect("sync codex");
let path = cc_switch_lib::get_codex_config_path();
assert!(path.exists(), "config.toml should be created");
let text = fs::read_to_string(&path).expect("read config.toml");
assert!(
@@ -589,11 +594,6 @@ command = "echo"
fn sync_claude_enabled_mcp_projects_to_user_config() {
let _guard = test_mutex().lock().expect("acquire test mutex");
reset_test_fs();
let home = ensure_test_home();
// 模拟 Claude 已安装/已初始化:存在 ~/.claude 目录
fs::create_dir_all(home.join(".claude")).expect("create claude dir");
let mut config = MultiAppConfig::default();
config.mcp.claude.servers.insert(
@@ -993,76 +993,3 @@ fn export_sql_returns_error_for_invalid_path() {
other => panic!("expected IoContext or Io error, got {other:?}"),
}
}
#[test]
fn import_sql_rejects_non_cc_switch_backup() {
let _guard = test_mutex().lock().expect("acquire test mutex");
reset_test_fs();
let home = ensure_test_home();
let state = create_test_state().expect("create test state");
let import_path = home.join("not-cc-switch.sql");
fs::write(&import_path, "CREATE TABLE x (id INTEGER);").expect("write import sql");
let err = state
.db
.import_sql(&import_path)
.expect_err("non-cc-switch sql should be rejected");
match err {
AppError::Localized { key, .. } => {
assert_eq!(key, "backup.sql.invalid_format");
}
other => panic!("expected Localized error, got {other:?}"),
}
}
#[test]
fn import_sql_accepts_cc_switch_exported_backup() {
let _guard = test_mutex().lock().expect("acquire test mutex");
reset_test_fs();
let home = ensure_test_home();
// Create a database with some data and export it.
let mut config = MultiAppConfig::default();
{
let manager = config
.get_manager_mut(&AppType::Claude)
.expect("claude manager");
manager.current = "test-provider".to_string();
manager.providers.insert(
"test-provider".to_string(),
Provider::with_id(
"test-provider".to_string(),
"Test Provider".to_string(),
json!({"env": {"ANTHROPIC_API_KEY": "test-key"}}),
None,
),
);
}
let state = create_test_state_with_config(&config).expect("create test state");
let export_path = home.join("cc-switch-export.sql");
state
.db
.export_sql(&export_path)
.expect("export should succeed");
// Reset database, then import into a fresh one.
reset_test_fs();
let state = create_test_state().expect("create test state");
state
.db
.import_sql(&export_path)
.expect("import should succeed");
let providers = state
.db
.get_all_providers(AppType::Claude.as_str())
.expect("load providers");
assert!(
providers.contains_key("test-provider"),
"imported providers should contain test-provider"
);
}

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