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1 Commits

Author SHA1 Message Date
YoVinchen d9a4c7cb86 refactor(skill): remove skillsPath configuration
Remove the skillsPath field from SkillRepo and Skill structs since
recursive scanning now automatically discovers skills in all directories.
Simplify the UI by removing the path input field.
2025-11-28 16:23:06 +08:00
253 changed files with 2228 additions and 34063 deletions
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@@ -17,4 +17,3 @@ GEMINI.md
/.idea
/.vscode
vitest-report.json
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22.12.0
v22.4.1
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@@ -5,198 +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
- **Persistence architecture upgrade** - Moved from single JSON storage to SQLite + JSON dual-layer; added schema versioning, transactions, and SQL import/export; first launch auto-migrates `config.json` to SQLite while keeping originals safe.
- **Brand new UI** - Full layout redesign, unified component/ConfirmDialog styles, smoother animations, overscroll disabled; Tailwind CSS downgraded to v3.4 for compatibility.
- **Japanese language support** - UI now localized in Chinese/English/Japanese.
### Added
- **Skills recursive scanning** - Discovers nested `SKILL.md` files across multi-level directories; same-name skills allowed by full-path dedup.
- **Provider icons** - Presets ship with default icons; custom icon colors; icons retained when duplicating providers.
- **Auto launch on startup** - One-click enable/disable using Registry/LaunchAgent/XDG autostart.
- **Provider preset** - Added MiniMax partner preset.
- **Form validation** - Required fields get real-time validation and unified toast messaging.
### Fixed
- **Custom endpoints loss** - Switched provider updates to `UPDATE` to avoid cascade deletes from `INSERT OR REPLACE`.
- **Gemini config writing** - Correctly writes custom env vars to `.env` and keeps auth configs isolated.
- **Provider validation** - Handles missing current provider IDs and preserves icon fields on duplicate.
- **Linux rendering** - Fixed WebKitGTK DMA-BUF rendering and preserved user `.desktop` customizations.
- **Misc** - Removed redundant usage queries; corrected DMXAPI auth token field; restored missing deeplink translations; fixed usage script template init.
### Technical
- **Database modules** - Added `schema`, `backup`, `migration`, and DAO layers for providers/MCP/prompts/skills/settings.
- **Service modularization** - Split provider service into live/auth/endpoints/usage modules; deeplink parsing/import logic modularized.
- **Code cleanup** - Removed legacy JSON-era import/export, unused MCP types; unified error handling; tests migrated to SQLite backend and MSW handlers updated.
### Migration Notes
- First launch auto-migrates data from `config.json` to SQLite and device settings to `settings.json`; originals kept; error dialog on failure; dry-run supported.
### Stats
- 51 commits since v3.7.1; 207 files changed; +17,297 / -6,870 lines. See [release-note-v3.8.0](docs/release-note-v3.8.0-en.md) for details.
---
## [3.7.1] - 2025-11-22
### Fixed
+24 -54
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@@ -2,39 +2,43 @@
# 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-3.7.1-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)
<a href="https://trendshift.io/repositories/15372" target="_blank"><img src="https://trendshift.io/api/badge/repositories/15372" alt="farion1231%2Fcc-switch | Trendshift" style="width: 250px; height: 55px;" width="250" height="55"/></a>
English | [中文](README_ZH.md) | [日本語](README_JA.md) | [Changelog](CHANGELOG.md)
English | [中文](README_ZH.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>
@@ -47,42 +51,9 @@ 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: v3.7.0 | [Full Changelog](CHANGELOG.md) | [📋 Release Notes](docs/release-note-v3.7.0-en.md)
**v3.8.0 Major Update (2025-11-28)**
**Persistence Architecture Upgrade & Brand New UI**
- **SQLite + JSON Dual-layer Architecture**
- Migrated from JSON file storage to SQLite + JSON dual-layer structure
- Syncable data (providers, MCP, Prompts, Skills) stored in SQLite
- Device-level data (window state, local paths) stored in JSON
- Lays the foundation for future cloud sync functionality
- Schema version management for database migrations
- **Brand New User Interface**
- Completely redesigned interface layout
- Unified component styles and smoother animations
- Optimized visual hierarchy
- Tailwind CSS downgraded from v4 to v3.4 for better browser compatibility
- **Japanese Language Support**
- Added Japanese interface support (now supports Chinese/English/Japanese)
- **Auto Launch on Startup**
- One-click enable/disable in settings
- Platform-native APIs (Registry/LaunchAgent/XDG autostart)
- **Skills Recursive Scanning**
- Support for multi-level directory structures
- Allow same-named skills from different repositories
- **Critical Bug Fixes**
- Fixed custom endpoints lost when updating providers
- Fixed Gemini configuration write issues
- Fixed Linux WebKitGTK rendering issues
**v3.7.0 Highlights**
**v3.7.0 Major Update (2025-11-19)**
**Six Core Features, 18,000+ Lines of New Code**
@@ -255,10 +226,10 @@ Download the latest `CC-Switch-v{version}-Linux.deb` package or `CC-Switch-v{ver
- MCP servers: `~/.gemini/settings.json``mcpServers`
- Tray quick switch: Each provider switch rewrites `~/.gemini/.env`, no need to restart Gemini CLI
**CC Switch Storage (v3.8.0 New Architecture)**
**CC Switch Storage**
- Database (SSOT): `~/.cc-switch/cc-switch.db` (SQLite, stores providers, MCP, Prompts, Skills)
- Local settings: `~/.cc-switch/settings.json` (device-level settings)
- Main config (SSOT): `~/.cc-switch/config.json` (includes providers, MCP, Prompts presets, etc.)
- Settings: `~/.cc-switch/settings.json`
- Backups: `~/.cc-switch/backups/` (auto-rotate, keep 10)
### Cloud Sync Setup
@@ -294,12 +265,11 @@ Download the latest `CC-Switch-v{version}-Linux.deb` package or `CC-Switch-v{ver
**Core Design Patterns**
- **SSOT** (Single Source of Truth): All data stored in `~/.cc-switch/cc-switch.db` (SQLite)
- **Dual-layer Storage**: SQLite for syncable data, JSON for device-level settings
- **SSOT** (Single Source of Truth): All provider configs stored in `~/.cc-switch/config.json`
- **Dual-way Sync**: Write to live files on switch, backfill from live when editing active provider
- **Atomic Writes**: Temp file + rename pattern prevents config corruption
- **Concurrency Safe**: Mutex-protected database connection avoids race conditions
- **Layered Architecture**: Clear separation (Commands → Services → DAO → Database)
- **Concurrency Safe**: RwLock with scoped guards avoids deadlocks
- **Layered Architecture**: Clear separation (Commands → Services → Models)
**Key Components**
-472
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@@ -1,472 +0,0 @@
<div align="center">
# 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)
[![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)
<a href="https://trendshift.io/repositories/15372" target="_blank"><img src="https://trendshift.io/api/badge/repositories/15372" alt="farion1231%2Fcc-switch | Trendshift" style="width: 250px; height: 55px;" width="250" height="55"/></a>
[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)
</div>
## ❤️スポンサー
[![Zhipu GLM](assets/partners/banners/glm-en.jpg)](https://z.ai/subscribe?ic=8JVLJQFSKB)
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>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>
</tr>
</table>
## スクリーンショット
| メイン画面 | プロバイダ追加 |
| :-------------------------------------------: | :----------------------------------------------: |
| ![メイン画面](assets/screenshots/main-ja.png) | ![プロバイダ追加](assets/screenshots/add-ja.png) |
## 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)
**v3.8.0 メジャーアップデート (2025-11-28)**
**永続化アーキテクチャ刷新 & 新 UI**
- **SQLite + JSON 二層構造**
- JSON 単独保存から SQLite + JSON の二層構造へ移行
- 同期対象データ(プロバイダ、MCP、Prompts、Skills)は SQLite に保存
- デバイス固有データ(ウィンドウ状態、ローカルパス)は JSON に保存
- 将来のクラウド同期の土台を用意
- DB マイグレーション用にスキーマバージョンを管理
- **新しいユーザーインターフェース**
- レイアウトを全面再設計
- コンポーネントスタイルとアニメーションを統一
- 視覚的な階層を最適化
- ブラウザ互換性向上のため Tailwind CSS を v4 から v3.4 にダウングレード
- **日本語対応**
- UI が中国語/英語/日本語の 3 言語対応に
- **自動起動**
- 設定画面でワンクリック ON/OFF
- プラットフォームネイティブ APIRegistry/LaunchAgent/XDG autostart)を使用
- **Skills 再帰スキャン**
- 多階層ディレクトリをサポート
- リポジトリが異なる同名スキルを許可
- **重要なバグ修正**
- プロバイダ更新時にカスタムエンドポイントが失われる問題を修正
- Gemini 設定の書き込み問題を修正
- Linux WebKitGTK の描画問題を修正
**v3.7.0 ハイライト**
**6 つのコア機能、18,000 行超の新コード**
- **Gemini CLI 統合**
- Claude Code / Codex / Gemini の 3 番目のサポート AI CLI
- 2 つの設定ファイル(`.env` + `settings.json`)に対応
- MCP サーバー管理を完備
- プリセット:Google 公式(OAuth/ PackyCode / カスタム
- **Claude Skills 管理システム**
- GitHub リポジトリを自動スキャン(3 つのキュレーション済みリポジトリを同梱)
- `~/.claude/skills/` へワンクリックでインストール/アンインストール
- カスタムリポジトリ + サブディレクトリスキャンをサポート
- ライフサイクル管理(検出/インストール/更新)を完備
- **Prompts 管理システム**
- 無制限のシステムプロンプトプリセットを作成
- Markdown エディタ(CodeMirror 6 + リアルタイムプレビュー)付き
- スマートなバックフィル保護で手動変更を保持
- 複数アプリに同時対応(Claude: `CLAUDE.md` / Codex: `AGENTS.md` / Gemini: `GEMINI.md`
- **MCP v3.7.0 統合アーキテクチャ**
- 1 つのパネルで 3 アプリの MCP を管理
- 新たに SSEServer-Sent Events)トランスポートを追加
- スマート JSON パーサー + Codex TOML 自動修正
- 双方向のインポート/エクスポート + 双方向同期
- **ディープリンクプロトコル**
- `ccswitch://` を全プラットフォームで登録
- 共有リンクからプロバイダ設定をワンクリックでインポート
- セキュリティ検証 + ライフサイクル統合
- **環境変数の競合検知**
- Claude/Codex/Gemini/MCP 間の設定競合を自動検出
- 競合表示 + 解決ガイド
- 上書き前の警告 + バックアップ
**コア機能**
- **プロバイダ管理**Claude Code、Codex、Gemini の API 設定をワンクリックで切り替え
- **速度テスト**:エンドポイント遅延を計測し、品質を可視化
- **インポート/エクスポート**:設定をバックアップ・復元(最新 10 件を自動ローテーション)
- **多言語対応**:UI/エラー/トレイを含む中国語・英語・日本語ローカライズ
- **Claude プラグイン同期**:Claude プラグイン設定をワンクリックで適用/復元
**v3.6 ハイライト**
- プロバイダの複製とドラッグ&ドロップ並び替え
- 複数エンドポイント管理とカスタム設定ディレクトリ(クラウド同期準備済み)
- 4 階層のモデル設定(Haiku/Sonnet/Opus/Custom
- WSL 環境をサポートし、ディレクトリ変更時に自動同期
- Hooks テスト 100% カバレッジ + アーキテクチャ全面リファクタ
**システム機能**
- クイックスイッチ付きシステムトレイ
- シングルインスタンス常駐
- ビルトイン自動アップデータ
- ロールバック保護付きのアトミック書き込み
## ダウンロード & インストール
### システム要件
- **Windows**: Windows 10 以上
- **macOS**: macOS 10.15 (Catalina) 以上
- **Linux**: Ubuntu 22.04+ / Debian 11+ / Fedora 34+ など主要ディストリビューション
### Windows ユーザー
[Releases](../../releases) ページから最新版の `CC-Switch-v{version}-Windows.msi` インストーラー、またはポータブル版 `CC-Switch-v{version}-Windows-Portable.zip` をダウンロード。
### macOS ユーザー
**方法 1: Homebrew でインストール(推奨)**
```bash
brew tap farion1231/ccswitch
brew install --cask cc-switch
```
アップデート:
```bash
brew upgrade --cask cc-switch
```
**方法 2: 手動ダウンロード**
[Releases](../../releases) から `CC-Switch-v{version}-macOS.zip` をダウンロードして展開。
> **注意**: 開発者アカウント未登録のため、初回起動時に「開発元を確認できません」と表示される場合があります。一度閉じてから「システム設定」→「プライバシーとセキュリティ」→「このまま開く」をクリックしてください。以降は通常通り起動できます。
### ArchLinux ユーザー
**paru でインストール(推奨)**
```bash
paru -S cc-switch-bin
```
### Linux ユーザー
[Releases](../../releases) から最新版の `CC-Switch-v{version}-Linux.deb` または `CC-Switch-v{version}-Linux.AppImage` をダウンロード。
## クイックスタート
### 基本的な使い方
1. **プロバイダ追加**:「Add Provider」をクリック → プリセットを選ぶかカスタム設定を作成
2. **プロバイダ切り替え**:
- メイン UI: プロバイダを選択 → 「Enable」をクリック
- システムトレイ: プロバイダ名をクリック(即時反映)
3. **反映**: ターミナルや Claude Code / Codex / Gemini クライアントを再起動して適用
4. **公式設定に戻す**: 「Official Login」プリセット(Claude/Codex)または「Google Official」プリセット(Gemini)を選び、対応クライアントを再起動してログイン/OAuth を実行
### MCP 管理
- **入口**: 右上の「MCP」ボタンをクリック
- **サーバー追加**:
- 組み込みテンプレート(mcp-fetch、mcp-filesystem など)を使用
- stdio / http / sse の各トランスポートをサポート
- アプリごとに独立した MCP を設定可能
- **有効/無効**: トグルでライブ設定への同期を切り替え
- **同期**: 有効なサーバーは各アプリのライブファイルへ自動同期
- **インポート/エクスポート**: Claude/Codex/Gemini の設定ファイルから既存 MCP を取り込み
### Skills 管理 (v3.7.0 新機能)
- **入口**: 右上の「Skills」ボタンをクリック
- **スキル探索**:
- 事前設定済みの GitHub リポジトリを自動スキャン(Anthropic 公式、ComposioHQ、コミュニティなど)
- カスタムリポジトリを追加(サブディレクトリスキャン対応)
- **インストール**: 「Install」を押すだけで `~/.claude/skills/` に配置
- **アンインストール**: 「Uninstall」で安全に削除と状態クリーンアップ
- **リポジトリ管理**: カスタム GitHub リポジトリを追加/削除
### Prompts 管理 (v3.7.0 新機能)
- **入口**: 右上の「Prompts」ボタンをクリック
- **プリセット作成**:
- 無制限のシステムプロンプトプリセットを作成
- Markdown エディタで記述(シンタックスハイライト + リアルタイムプレビュー)
- **プリセット切り替え**: プリセットを選択 → 「Activate」で即適用
- **同期先**:
- Claude: `~/.claude/CLAUDE.md`
- Codex: `~/.codex/AGENTS.md`
- Gemini: `~/.gemini/GEMINI.md`
- **保護機構**: 切り替え前に現在の内容を自動保存し、手動変更を保持
### 設定ファイルパス
**Claude Code**
- ライブ設定: `~/.claude/settings.json`(または `claude.json`
- API キーフィールド: `env.ANTHROPIC_AUTH_TOKEN` または `env.ANTHROPIC_API_KEY`
- MCP サーバー: `~/.claude.json``mcpServers`
**Codex**
- ライブ設定: `~/.codex/auth.json`(必須)+ `config.toml`(任意)
- API キーフィールド: `auth.json` 内の `OPENAI_API_KEY`
- MCP サーバー: `~/.codex/config.toml``[mcp_servers]` テーブル
**Gemini**
- ライブ設定: `~/.gemini/.env`API キー)+ `~/.gemini/settings.json`(認証モード)
- API キーフィールド: `.env` 内の `GEMINI_API_KEY` または `GOOGLE_GEMINI_API_KEY`
- 環境変数: `GOOGLE_GEMINI_BASE_URL``GEMINI_MODEL` などをサポート
- MCP サーバー: `~/.gemini/settings.json``mcpServers`
- トレイでのクイックスイッチ: プロバイダ切り替えごとに `~/.gemini/.env` を書き換えるため Gemini CLI の再起動は不要
**CC Switch 保存先 (v3.8.0 新アーキテクチャ)**
- データベース (SSOT): `~/.cc-switch/cc-switch.db`SQLite。プロバイダ、MCP、Prompts、Skills を保存)
- ローカル設定: `~/.cc-switch/settings.json`(デバイスレベル設定)
- バックアップ: `~/.cc-switch/backups/`(自動ローテーション、最新 10 件を保持)
### クラウド同期の設定
1. 設定 → 「Custom Configuration Directory」へ進む
2. クラウド同期フォルダ(Dropbox、OneDrive、iCloud など)を選択
3. アプリを再起動して反映
4. 他のデバイスでも同じフォルダを指定すればクロスデバイス同期が有効に
> **補足**: 初回起動時に既存の Claude/Codex 設定をデフォルトプロバイダとして自動インポートします。
## アーキテクチャ概要
### 設計原則
```
┌─────────────────────────────────────────────────────────────┐
│ Frontend (React + TS) │
│ ┌─────────────┐ ┌──────────────┐ ┌──────────────────┐ │
│ │ Components │ │ Hooks │ │ TanStack Query │ │
│ │ (UI) │──│ (Bus. Logic) │──│ (Cache/Sync) │ │
│ └─────────────┘ └──────────────┘ └──────────────────┘ │
└────────────────────────┬────────────────────────────────────┘
│ Tauri IPC
┌────────────────────────▼────────────────────────────────────┐
│ Backend (Tauri + Rust) │
│ ┌─────────────┐ ┌──────────────┐ ┌──────────────────┐ │
│ │ Commands │ │ Services │ │ Models/Config │ │
│ │ (API Layer) │──│ (Bus. Layer) │──│ (Data) │ │
│ └─────────────┘ └──────────────┘ └──────────────────┘ │
└─────────────────────────────────────────────────────────────┘
```
**コア設計パターン**
- **SSOT** (Single Source of Truth): すべてのデータを `~/.cc-switch/cc-switch.db`SQLite)に集約
- **二層ストレージ**: 同期データは SQLite、デバイスデータは JSON
- **双方向同期**: 切り替え時はライブファイルへ書き込み、編集時はアクティブプロバイダから逆同期
- **アトミック書き込み**: 一時ファイル + rename パターンで設定破損を防止
- **並行安全**: Mutex で保護された DB 接続でレースを防ぐ
- **レイヤードアーキテクチャ**: Commands → Services → DAO → Database を明確に分離
**主要コンポーネント**
- **ProviderService**: プロバイダの CRUD、切り替え、バックフィル、ソート
- **McpService**: MCP サーバー管理、インポート/エクスポート、ライブファイル同期
- **ConfigService**: 設定のインポート/エクスポート、バックアップローテーション
- **SpeedtestService**: API エンドポイントの遅延計測
**v3.6 リファクタリング**
- バックエンド: エラーハンドリング → コマンド分割 → テスト → サービス層 → 並行性の 5 フェーズ
- フロントエンド: テスト基盤 → hooks → コンポーネント → クリーンアップの 4 ステージ
- テスト: hooks 100% カバレッジ + 統合テスト(vitest + MSW
## 開発
### 開発環境
- Node.js 18+
- pnpm 8+
- Rust 1.85+
- Tauri CLI 2.8+
### 開発コマンド
```bash
# 依存関係をインストール
pnpm install
# ホットリロード付き開発モード
pnpm dev
# 型チェック
pnpm typecheck
# コード整形
pnpm format
# フォーマット検証
pnpm format:check
# フロントエンド単体テスト
pnpm test:unit
# ウォッチモード(開発に推奨)
pnpm test:unit:watch
# アプリをビルド
pnpm build
# デバッグビルド
pnpm tauri build --debug
```
### Rust バックエンド開発
```bash
cd src-tauri
# Rust コード整形
cargo fmt
# clippy チェック
cargo clippy
# バックエンドテスト
cargo test
# 特定テストのみ実行
cargo test test_name
# test-hooks フィーチャー付きでテスト
cargo test --features test-hooks
```
### テストガイド (v3.6)
**フロントエンドテスト**:
- テストフレームワークに **vitest** を使用
- **MSW (Mock Service Worker)** で Tauri API 呼び出しをモック
- コンポーネントテストに **@testing-library/react** を採用
**テストカバレッジ**:
- Hooks の単体テスト(100% カバレッジ)
- `useProviderActions` - プロバイダ操作
- `useMcpActions` - MCP 管理
- `useSettings` 系 - 設定管理
- `useImportExport` - インポート/エクスポート
- 統合テスト
- アプリのメインフロー
- SettingsDialog の一連操作
- MCP パネルの機能
**テスト実行**:
```bash
# 全テストを実行
pnpm test:unit
# ウォッチモード(自動再実行)
pnpm test:unit:watch
# カバレッジレポート付き
pnpm test:unit --coverage
```
## 技術スタック
**フロントエンド**: React 18 · TypeScript · Vite · TailwindCSS 4 · TanStack Query v5 · react-i18next · react-hook-form · zod · shadcn/ui · @dnd-kit
**バックエンド**: Tauri 2.8 · Rust · serde · tokio · thiserror · tauri-plugin-updater/process/dialog/store/log
**テスト**: vitest · MSW · @testing-library/react
## プロジェクト構成
```
├── src/ # フロントエンド (React + TypeScript)
│ ├── components/ # UI コンポーネント (providers/settings/mcp/ui)
│ ├── hooks/ # ビジネスロジック用カスタムフック
│ ├── lib/
│ │ ├── api/ # Tauri API ラッパー (型安全)
│ │ └── query/ # TanStack Query 設定
│ ├── i18n/locales/ # 翻訳 (zh/en)
│ ├── config/ # プリセット (providers/mcp)
│ └── types/ # TypeScript 型定義
├── src-tauri/ # バックエンド (Rust)
│ └── src/
│ ├── commands/ # Tauri コマンド層 (ドメイン別)
│ ├── services/ # ビジネスロジック層
│ ├── app_config.rs # 設定モデル
│ ├── provider.rs # プロバイダドメインモデル
│ ├── mcp.rs # MCP 同期 & 検証
│ └── lib.rs # アプリエントリ & トレイメニュー
├── tests/ # フロントエンドテスト
│ ├── hooks/ # 単体テスト
│ └── components/ # 統合テスト
└── assets/ # スクリーンショット & スポンサーリソース
```
## 更新履歴
詳細は [CHANGELOG.md](CHANGELOG.md) をご覧ください。
## 旧 Electron 版
[Releases](../../releases) に v2.0.3 の Electron 旧版を残しています。
旧版コードが必要な場合は `electron-legacy` ブランチを取得してください。
## 貢献
Issue や提案を歓迎します!
PR を送る前に以下をご確認ください:
- 型チェック: `pnpm typecheck`
- フォーマットチェック: `pnpm format:check`
- 単体テスト: `pnpm test:unit`
- 💡 新機能の場合は、事前に Issue でディスカッションしていただけると助かります
## Star History
[![Star History Chart](https://api.star-history.com/svg?repos=farion1231/cc-switch&type=Date)](https://www.star-history.com/#farion1231/cc-switch&Date)
## ライセンス
MIT © Jason Young
+24 -54
View File
@@ -2,41 +2,45 @@
# 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-3.7.1-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)
<a href="https://trendshift.io/repositories/15372" target="_blank"><img src="https://trendshift.io/api/badge/repositories/15372" alt="farion1231%2Fcc-switch | Trendshift" style="width: 250px; height: 55px;" width="250" height="55"/></a>
[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)
[English](README.md) | 中文 | [更新日志](CHANGELOG.md) | [📋 v3.7.0 发布说明](docs/release-note-v3.7.0-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
@@ -47,42 +51,9 @@
## 功能特性
### 当前版本:v3.8.3 | [完整更新日志](CHANGELOG.md)
### 当前版本:v3.7.0 | [完整更新日志](CHANGELOG.md)
**v3.8.0 重大更新(2025-11-28**
**持久化架构升级 & 全新用户界面**
- **SQLite + JSON 双层架构**
- 从 JSON 文件存储迁移到 SQLite + JSON 双层结构
- 可同步数据(供应商、MCP、Prompts、Skills)存入 SQLite
- 设备级数据(窗口状态、本地路径)保留在 JSON
- 为未来云同步功能奠定基础
- Schema 版本管理支持数据库迁移
- **全新用户界面**
- 完全重新设计的界面布局
- 统一的组件样式和更流畅的动画
- 优化的视觉层次
- Tailwind CSS 从 v4 降级到 v3.4 以提升浏览器兼容性
- **日语支持**
- 新增日语界面支持(现支持中文/英文/日语)
- **开机自启**
- 在设置中一键开启/关闭
- 使用平台原生 API(注册表/LaunchAgent/XDG autostart
- **Skills 递归扫描**
- 支持多层目录结构
- 允许不同仓库的同名技能
- **关键 Bug 修复**
- 修复更新供应商时自定义端点丢失问题
- 修复 Gemini 配置写入问题
- 修复 Linux WebKitGTK 渲染问题
**v3.7.0 亮点**
**v3.7.0 重大更新(2025-11-19**
**六大核心功能,18,000+ 行新增代码**
@@ -255,10 +226,10 @@ paru -S cc-switch-bin
- MCP 服务器:`~/.gemini/settings.json``mcpServers`
- 托盘快速切换:每次切换供应商都会重写 `~/.gemini/.env`,无需重启 Gemini CLI 即可生效
**CC Switch 存储v3.8.0 新架构)**
**CC Switch 存储**
- 数据库SSOT):`~/.cc-switch/cc-switch.db`SQLite,存储供应商、MCP、Prompts、Skills
- 本地设置:`~/.cc-switch/settings.json`(设备级设置)
- 主配置SSOT):`~/.cc-switch/config.json`(包含供应商、MCP、Prompts 预设等
- 设置:`~/.cc-switch/settings.json`
- 备份:`~/.cc-switch/backups/`(自动轮换,保留 10 个)
### 云同步设置
@@ -294,12 +265,11 @@ paru -S cc-switch-bin
**核心设计模式**
- **SSOT**(单一事实源):所有数据存储在 `~/.cc-switch/cc-switch.db`SQLite
- **双层存储**SQLite 存储可同步数据,JSON 存储设备级设置
- **SSOT**(单一事实源):所有供应商配置存储在 `~/.cc-switch/config.json`
- **双向同步**:切换时写入 live 文件,编辑当前供应商时从 live 回填
- **原子写入**:临时文件 + 重命名模式防止配置损坏
- **并发安全**Mutex 保护的数据库连接避免竞态条件
- **分层架构**:清晰分离(Commands → Services → DAO → Database
- **并发安全**RwLock 与作用域守卫避免死锁
- **分层架构**:清晰分离(Commands → Services → Models
**核心组件**
+77
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@@ -0,0 +1,77 @@
# CC Switch 国际化功能说明
## 已完成的工作
1. **安装依赖**:添加了 `react-i18next``i18next`
2. **配置国际化**:在 `src/i18n/` 目录下创建了配置文件
3. **翻译文件**:创建了英文、中文、日文翻译文件
4. **组件更新**:替换了主要组件中的硬编码文案
5. **语言切换器**:添加了语言切换按钮
## 文件结构
```
src/
├── i18n/
│ ├── index.ts # 国际化配置文件
│ └── locales/
│ ├── en.json # 英文翻译
│ ├── ja.json # 日文翻译
│ └── zh.json # 中文翻译
├── components/
│ └── LanguageSwitcher.tsx # 语言切换组件
└── main.tsx # 导入国际化配置
```
## 默认语言设置
- **默认语言**:中文 (zh)(无首选时根据浏览器/系统语言选择 zh/en/ja)
- **回退语言**:英文 (en)
## 使用方式
1. 在组件中导入 `useTranslation`
```tsx
import { useTranslation } from 'react-i18next';
function MyComponent() {
const { t } = useTranslation();
return <div>{t('common.save')}</div>;
}
```
2. 切换语言:
```tsx
const { i18n } = useTranslation();
i18n.changeLanguage('zh'); // 切换到中文
```
## 翻译键结构
- `common.*` - 通用文案(保存、取消、设置等)
- `header.*` - 头部相关文案
- `provider.*` - 供应商相关文案
- `notifications.*` - 通知消息
- `settings.*` - 设置页面文案
- `apps.*` - 应用名称
- `console.*` - 控制台日志信息
## 测试功能
应用已添加了语言切换按钮,支持中文、英文、日文三种语言切换,验证国际化功能是否正常工作。
## 已更新的组件
- ✅ App.tsx - 主应用组件
- ✅ ConfirmDialog.tsx - 确认对话框
- ✅ AddProviderModal.tsx - 添加供应商弹窗
- ✅ EditProviderModal.tsx - 编辑供应商弹窗
- ✅ ProviderList.tsx - 供应商列表
- ✅ LanguageSwitcher.tsx - 语言切换器
- ✅ settings/SettingsDialog.tsx - 设置对话框
## 注意事项
1. 所有新的文案都应该添加到翻译文件中,而不是硬编码
2. 翻译键名应该有意义且结构化
3. 可以通过修改 `src/i18n/index.ts` 中的 `lng` 配置来更改默认语言
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"rsc": false,
"tsx": true,
"tailwind": {
"config": "tailwind.config.cjs",
"config": "tailwind.config.js",
"css": "src/index.css",
"baseColor": "neutral",
"cssVariables": true,
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# 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
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# CC Switch v3.8.0
> Persistence Architecture Upgrade, Laying the Foundation for Cloud Sync
**[中文版 →](release-note-v3.8.0-zh.md) | [日本語版 →](release-note-v3.8.0-ja.md)**
---
## Overview
CC Switch v3.8.0 is a major architectural upgrade that restructures the data persistence layer and user interface, laying the foundation for future cloud sync and local proxy features.
**Release Date**: 2025-11-28
**Commits**: 51 commits since v3.7.1
**Code Changes**: 207 files, +17,297 / -6,870 lines
---
## Major Updates
### Persistence Architecture Upgrade
Migrated from single JSON file storage to SQLite + JSON dual-layer architecture for hierarchical data management.
**Architecture Changes**:
```
v3.7.x (Old) v3.8.0 (New)
┌─────────────────┐ ┌─────────────────────────────────┐
│ config.json │ │ SQLite (Syncable Data) │
│ ┌───────────┐ │ │ ├─ providers Provider cfg │
│ │ providers │ │ │ ├─ mcp_servers MCP servers │
│ │ mcp │ │ ──> │ ├─ prompts Prompts │
│ │ prompts │ │ │ ├─ skills Skills │
│ │ settings │ │ │ └─ settings General cfg │
│ └───────────┘ │ ├─────────────────────────────────┤
└─────────────────┘ │ JSON (Device-level Data) │
│ └─ settings.json Local settings│
│ ├─ Window position │
│ ├─ Path overrides │
│ └─ Current provider ID │
└─────────────────────────────────┘
```
**Dual-layer Structure Design**:
| Layer | Storage | Data Types | Sync Strategy |
| ---------- | ------- | ------------------------------- | --------------- |
| Cloud Sync | SQLite | Providers, MCP, Prompts, Skills | Future syncable |
| Device | JSON | Window state, local paths | Stays local |
**Technical Implementation**:
- **Schema Version Management** - Supports database structure upgrade migrations
- **SQL Import/Export** - `backup.rs` supports SQL dump for cloud storage
- **Transaction Support** - SQLite native transactions ensure data consistency
- **Auto Migration** - Automatically migrates from `config.json` on first launch
**Modular Refactoring**:
```
database/
├── mod.rs Core Database struct and initialization
├── schema.rs Table definitions, schema version migrations
├── backup.rs SQL import/export, binary snapshot backup
├── migration.rs JSON → SQLite data migration engine
└── dao/ Data Access Object layer
├── providers.rs Provider CRUD
├── mcp.rs MCP server CRUD
├── prompts.rs Prompts CRUD
├── skills.rs Skills CRUD
└── settings.rs Key-value settings storage
```
---
### Brand New User Interface
Completely redesigned UI providing a more modern visual experience.
**Visual Improvements**:
- Redesigned interface layout
- Unified component styles
- Smoother transition animations
- Optimized visual hierarchy
**Interaction Enhancements**:
- Redesigned header toolbar
- Unified ConfirmDialog styling
- Disabled overscroll bounce effect on main view
- Improved form validation feedback
**Compatibility Adjustments**:
- Downgraded Tailwind CSS from v4 to v3.4 for better browser compatibility
---
### Japanese Language Support
Added Japanese interface support, expanding internationalization to three languages.
**Supported Languages**:
- Simplified Chinese
- English
- Japanese (New)
---
## New Features
### Skills Recursive Scanning
Skills management system now supports recursive scanning of repository directories, automatically discovering nested skill files.
**Improvements**:
- Support for multi-level directory structures
- Automatic discovery of all `SKILL.md` files
- Allow same-named skills from different repositories (using full path for deduplication)
---
### Provider Icon Configuration
Provider presets now support custom icon configuration.
**Features**:
- Preset providers include default icons
- Icon settings preserved when duplicating providers
- Custom icon colors
---
### Enhanced Form Validation
Provider forms now include required field validation with friendlier error messages.
**Improvements**:
- Real-time validation for required fields
- Unified Toast notifications for validation errors
- Clearer error messages
---
### Auto Launch on Startup
Added auto-launch functionality supporting Windows, macOS, and Linux platforms.
**Features**:
- One-click enable/disable in settings
- Implemented using platform-native APIs
- Windows uses Registry, macOS uses LaunchAgent, Linux uses XDG autostart
---
### New Provider Presets
- **MiniMax** - Official partner
---
## Bug Fixes
### Critical Fixes
**Custom Endpoints Lost Issue**
Fixed an issue where custom request URLs were unexpectedly lost when updating providers.
- Root Cause: `INSERT OR REPLACE` executes `DELETE + INSERT` under the hood in SQLite, triggering foreign key cascade deletion
- Fix: Changed to use `UPDATE` statement for existing providers
**Gemini Configuration Issues**
- Fixed custom provider environment variables not correctly written to `.env` file
- Fixed security auth config incorrectly written to other config files
**Provider Validation Issues**
- Fixed validation error when current provider ID doesn't exist
- Fixed icon fields lost when duplicating providers
### Platform Compatibility
**Linux**
- Resolved WebKitGTK DMA-BUF rendering issue
- Preserve user `.desktop` file customizations
### Other Fixes
- Fixed redundant usage queries when switching apps
- Fixed DMXAPI preset using wrong auth token field
- Fixed missing translation keys in deeplink components
- Fixed usage script template initialization logic
---
## Technical Improvements
### Architecture Refactoring
**Provider Service Modularization**:
```
services/provider/
├── mod.rs Core service - add/update/delete/switch/validate
├── live.rs Live config file operations
├── gemini_auth.rs Gemini auth type detection
├── endpoints.rs Custom endpoint management
└── usage.rs Usage script execution
```
**Deeplink Modularization**:
```
deeplink/
├── mod.rs Module exports
├── parser.rs URL parsing
├── provider.rs Provider import logic
├── mcp.rs MCP import logic
├── prompt.rs Prompt import
├── skill.rs Skills import
└── utils.rs Utility functions
```
### Code Quality
**Cleanup**:
- Removed legacy JSON-era import/export dead code
- Removed unused MCP type exports
- Unified error handling approach
**Test Updates**:
- Migrated tests to SQLite database architecture
- Updated component tests to match current implementation
- Fixed MSW handlers to adapt to new API
---
## Technical Statistics
```
Overall Changes:
- Commits: 51
- Files: 207 files changed
- Additions: +17,297 lines
- Deletions: -6,870 lines
- Net: +10,427 lines
Commit Type Distribution:
- fix: 25 (Bug fixes)
- refactor: 11 (Code refactoring)
- feat: 9 (New features)
- test: 1 (Testing)
- other: 5
Change Area Distribution:
- Frontend source: 112 files
- Rust backend: 63 files
- Test files: 20 files
- i18n files: 3 files
```
---
## Migration Guide
### Upgrading from v3.7.x
**Auto Migration** - Executes automatically on first launch:
1. Detects if `config.json` exists
2. Migrates all data to SQLite within a transaction
3. Migrates device-level settings to `settings.json`
4. Shows migration success notification
**Data Safety**:
- Original `config.json` file is preserved (not deleted)
- Error dialog displayed on migration failure, `config.json` preserved
- Supports Dry-run mode to verify migration logic
---
## Download & Installation
### System Requirements
- **Windows**: Windows 10+
- **macOS**: macOS 10.15 (Catalina)+
- **Linux**: Ubuntu 22.04+ / Debian 11+ / Fedora 34+
### Download Links
Visit [Releases](https://github.com/farion1231/cc-switch/releases/latest) to download:
- **Windows**: `CC-Switch-v3.8.0-Windows.msi` or `-Portable.zip`
- **macOS**: `CC-Switch-v3.8.0-macOS.tar.gz` or `.zip`
- **Linux**: `CC-Switch-v3.8.0-Linux.AppImage` or `.deb`
### Homebrew (macOS)
```bash
brew tap farion1231/ccswitch
brew install --cask cc-switch
```
Update:
```bash
brew upgrade --cask cc-switch
```
## Acknowledgments
### Contributors
Thanks to all contributors who made this release possible:
- [@YoVinchen](https://github.com/YoVinchen) - UI and database refactoring
- [@farion1231](https://github.com/farion1231) - Bug fixes and feature enhancements
- Community members for testing and feedback
### Sponsors
**Zhipu AI** - GLM CODING PLAN Sponsor
[Get 10% off with this link](https://z.ai/subscribe?ic=8JVLJQFSKB)
**PackyCode** - API Relay Service Partner
[Use code "cc-switch" for 10% off registration](https://www.packyapi.com/register?aff=cc-switch)
**ShandianShuo** - Local-first AI Voice Input
[Free download](https://shandianshuo.cn) for Mac/Windows
**MiniMax** - MiniMax M2 CODING PLAN Sponsor
[Black Friday sale, plans starting at $2](https://platform.minimax.io/subscribe/coding-plan)
---
## Feedback & Support
- **Issue Reports**: [GitHub Issues](https://github.com/farion1231/cc-switch/issues)
- **Discussions**: [GitHub Discussions](https://github.com/farion1231/cc-switch/discussions)
- **Documentation**: [README](../README.md)
- **Changelog**: [CHANGELOG.md](../CHANGELOG.md)
---
## Future Roadmap
**v3.9.0 Preview** (Tentative):
- Local proxy feature
Stay tuned for more updates!
---
**Happy Coding!**
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@@ -1,315 +0,0 @@
# CC Switch v3.8.0
> 永続化アーキテクチャを刷新し、クラウド同期の土台を構築
**[English →](release-note-v3.8.0-en.md) | [中文版 →](release-note-v3.8.0-zh.md)**
---
## 概要
CC Switch v3.8.0 はデータ永続化レイヤーと UI を大幅に作り替え、今後のクラウド同期やローカルプロキシ機能に向けた基盤を整えたメジャーアップデートです。
**リリース日**: 2025-11-28
**コミット数**: v3.7.1 以降 51 commits
**変更量**: 207 files, +17,297 / -6,870 lines
---
## 主要アップデート
### 永続化アーキテクチャの刷新
単一の JSON 保存から、階層化された SQLite + JSON の二層構造へ移行。
**アーキテクチャ変更**:
```
v3.7.x (旧) v3.8.0 (新)
┌─────────────────┐ ┌─────────────────────────────────┐
│ config.json │ │ SQLite (同期対象データ) │
│ ┌───────────┐ │ │ ├─ providers プロバイダ設定 │
│ │ providers │ │ │ ├─ mcp_servers MCP サーバー │
│ │ mcp │ │ ──> │ ├─ prompts プロンプト │
│ │ prompts │ │ │ ├─ skills Skills │
│ │ settings │ │ │ └─ settings 汎用設定 │
│ └───────────┘ │ ├─────────────────────────────────┤
└─────────────────┘ │ JSON (デバイス固有データ) │
│ └─ settings.json ローカル設定 │
│ ├─ ウィンドウ位置 │
│ ├─ パスの上書き │
│ └─ 現在のプロバイダ ID │
└─────────────────────────────────┘
```
**二層構造の設計**:
| レイヤー | ストレージ | データ種別 | 同期戦略 |
| -------- | ---------- | ----------------------------------- | ---------------- |
| クラウド | SQLite | Providers, MCP, Prompts, Skills | 将来同期対象 |
| デバイス | JSON | ウィンドウ状態、ローカルパス | ローカル保持 |
**実装ポイント**:
- **スキーマバージョン管理**: DB 構造のマイグレーションに対応
- **SQL インポート/エクスポート**: `backup.rs` が SQL ダンプをサポート
- **トランザクション対応**: SQLite ネイティブで整合性を確保
- **自動マイグレーション**: 初回起動で `config.json` から自動移行
**モジュール分割**:
```
database/
├── mod.rs Database 構造体と初期化
├── schema.rs テーブル定義とスキーマ移行
├── backup.rs SQL インポート/エクスポートとスナップショット
├── migration.rs JSON → SQLite 変換エンジン
└── dao/ DAO レイヤー
├── providers.rs プロバイダ CRUD
├── mcp.rs MCP CRUD
├── prompts.rs プロンプト CRUD
├── skills.rs Skills CRUD
└── settings.rs 設定 Key-Value 保存
```
---
### 新しいユーザーインターフェース
よりモダンな見た目と操作感に再設計。
- レイアウト全面刷新、コンポーネントスタイルを統一
- トランジションを滑らかにし、視覚的階層を最適化
- メインビューのオーバースクロールバウンスを無効化
- ブラウザ互換性向上のため Tailwind CSS を v4→v3.4 にダウングレード
---
### 日語化
UI が日本語に対応し、国際化が 3 言語(中/英/日)へ拡大。
---
## 新機能
### Skills 递帰スキャン
Skills 管理がリポジトリを再帰的に走査し、ネストされた `SKILL.md` を自動検出。
- 複数階層のディレクトリに対応
- すべての `SKILL.md` を自動発見
- パスをキーにした重複排除で同名スキルを許容
### プロバイダアイコン設定
プリセットがデフォルトアイコンを持ち、複製してもアイコンを保持。カスタム色も設定可能。
### フォームバリデーション強化
必須項目にリアルタイム検証と分かりやすいエラーメッセージを追加し、トースト通知を統一。
### 自動起動
Windows/macOS/Linux で自動起動をサポート。
- 設定画面からワンクリックで ON/OFF
- Registry / LaunchAgent / XDG autostart を使用
### 新プロバイダプリセット
- **MiniMax** - 公式パートナー
---
## バグ修正
### 重要修正
**カスタムエンドポイント消失**
- 原因: SQLite の `INSERT OR REPLACE` が内部で `DELETE + INSERT` を実行し、外部キーのカスケード削除が発生
- 対応: 既存プロバイダ更新を `UPDATE` に変更
**Gemini 設定**
- カスタム環境変数が `.env` に正しく書き込まれない問題を修正
- 認証設定が他ファイルに誤って書き込まれる問題を修正
**プロバイダ検証**
- 現在プロバイダ ID が欠落している場合のバリデーションエラーを修正
- 複製時にアイコンフィールドが失われる問題を修正
### プラットフォーム互換性
**Linux**
- WebKitGTK の DMA-BUF 描画問題を解消
- ユーザーの `.desktop` カスタマイズを保持
### その他修正
- アプリ切り替え時の不要な使用量クエリを削減
- DMXAPI プリセットの誤ったトークンフィールドを修正
- Deeplink コンポーネントの欠損翻訳キーを補完
- 使用量スクリプトテンプレート初期化を修正
---
## 技術的改善
### アーキテクチャ再編
**Provider Service のモジュール化**:
```
services/provider/
├── mod.rs 追加/更新/削除/切替/検証の中核
├── live.rs ライブ設定ファイル操作
├── gemini_auth.rs Gemini 認証タイプ検出
├── endpoints.rs カスタムエンドポイント管理
└── usage.rs 使用量スクリプト実行
```
**Deeplink のモジュール化**:
```
deeplink/
├── mod.rs エクスポート
├── parser.rs URL パース
├── provider.rs プロバイダ取り込み
├── mcp.rs MCP 取り込み
├── prompt.rs プロンプト取り込み
├── skill.rs Skills 取り込み
└── utils.rs ユーティリティ
```
### コード品質
- レガシーな JSON 時代のインポート/エクスポート死蔵コードを削除
- 使われていない MCP 型を削除し、エラーハンドリングを統一
- テストを SQLite バックエンドに移行し、MSW ハンドラを最新 API に合わせて更新
---
## 技術統計
```
全体変更:
- コミット: 51
- 変更ファイル: 207
- 追加: +17,297 行
- 削除: -6,870 行
- 純増: +10,427 行
コミット種別:
- fix: 25
- refactor: 11
- feat: 9
- test: 1
- other: 5
変更箇所:
- フロントエンド: 112 files
- Rust バックエンド: 63 files
- テスト: 20 files
- i18n: 3 files
```
---
## マイグレーションガイド
### v3.7.x からのアップグレード
**自動マイグレーション**(初回起動時):
1. `config.json` の存在を検出
2. 全データをトランザクションで SQLite に移行
3. デバイス設定を `settings.json` へ移行
4. 移行成功の通知を表示
**データ保護**:
- 元の `config.json` は保持(削除しない)
- 失敗時はエラーダイアログを表示し、`config.json` を温存
- Dry-run モードで検証可能
---
## ダウンロード & インストール
### システム要件
- **Windows**: Windows 10+
- **macOS**: macOS 10.15 (Catalina)+
- **Linux**: Ubuntu 22.04+ / Debian 11+ / Fedora 34+
### ダウンロード
[Releases](https://github.com/farion1231/cc-switch/releases/latest) から入手:
- **Windows**: `CC-Switch-v3.8.0-Windows.msi` または `-Portable.zip`
- **macOS**: `CC-Switch-v3.8.0-macOS.tar.gz` または `.zip`
- **Linux**: `CC-Switch-v3.8.0-Linux.AppImage` または `.deb`
### Homebrew (macOS)
```bash
brew tap farion1231/ccswitch
brew install --cask cc-switch
```
アップデート:
```bash
brew upgrade --cask cc-switch
```
---
## 謝辞
### コントリビューター
- [@YoVinchen](https://github.com/YoVinchen) - UI とデータベースリファクタ
- [@farion1231](https://github.com/farion1231) - バグ修正と機能拡張
- コミュニティの皆さん - テストとフィードバック
### スポンサー
**Zhipu AI** - GLM CODING PLAN スポンサー
[10% オフリンク](https://z.ai/subscribe?ic=8JVLJQFSKB)
**PackyCode** - API リレーサービスパートナー
[登録時に「cc-switch」で 10% オフ](https://www.packyapi.com/register?aff=cc-switch)
**ShandianShuo** - ローカルファースト音声入力
[Mac/Windows 無料ダウンロード](https://shandianshuo.cn)
**MiniMax** - MiniMax M2 CODING PLAN スポンサー
[ブラックフライデーセール中、$2 から](https://platform.minimax.io/subscribe/coding-plan)
---
## フィードバック & サポート
- **Issue**: [GitHub Issues](https://github.com/farion1231/cc-switch/issues)
- **Discussions**: [GitHub Discussions](https://github.com/farion1231/cc-switch/discussions)
- **ドキュメント**: [README](../README.md)
- **更新履歴**: [CHANGELOG.md](../CHANGELOG.md)
---
## 今後のロードマップ
**v3.9.0 予告(予定)**:
- ローカルプロキシ機能
続報にご期待ください!
---
**Happy Coding!**
-369
View File
@@ -1,369 +0,0 @@
# CC Switch v3.8.0
> 持久化架构升级,为云同步奠定基础
**[English Version →](release-note-v3.8.0-en.md)**
---
## 概览
CC Switch v3.8.0 是一次重大的架构升级版本,重构了数据持久化层和用户界面,为未来的云同步和本地代理功能奠定基础。
**发布日期**2025-11-28
**提交数量**:从 v3.7.1 开始 51 个提交
**代码变更**207 个文件,+17,297 / -6,870 行
---
## 重大更新
### 持久化架构升级
从单一 JSON 文件存储迁移到 SQLite + JSON 双层架构,实现数据分层管理。
**架构变更**
```
v3.7.x (旧) v3.8.0 (新)
┌─────────────────┐ ┌─────────────────────────────────┐
│ config.json │ │ SQLite (可同步数据) │
│ ┌───────────┐ │ │ ├─ providers 供应商配置 │
│ │ providers │ │ │ ├─ mcp_servers MCP 服务器 │
│ │ mcp │ │ ──> │ ├─ prompts 提示词 │
│ │ prompts │ │ │ ├─ skills 技能 │
│ │ settings │ │ │ └─ settings 通用设置 │
│ └───────────┘ │ ├─────────────────────────────────┤
└─────────────────┘ │ JSON (设备级数据) │
│ └─ settings.json 本地设置 │
│ ├─ 窗口位置 │
│ ├─ 路径覆盖 │
│ └─ 当前选中供应商 ID │
└─────────────────────────────────┘
```
**双层结构设计**
| 层级 | 存储方式 | 数据类型 | 同步策略 |
| -------- | -------- | ---------------------------- | ---------- |
| 云同步层 | SQLite | 供应商、MCP、Prompts、Skills | 未来可同步 |
| 设备层 | JSON | 窗口状态、本地路径、当前选择 | 保持本地 |
**技术实现**
- **Schema 版本管理** - 支持数据库结构升级迁移
- **SQL 导入导出** - `backup.rs` 支持 SQL dump,便于云端存储
- **事务支持** - SQLite 原生事务保证数据一致性
- **自动迁移** - 首次启动自动从 `config.json` 迁移数据
**模块化重构**
```
database/
├── mod.rs 核心 Database 结构体和初始化
├── schema.rs 表结构定义、Schema 版本迁移
├── backup.rs SQL 导入导出、二进制快照备份
├── migration.rs JSON → SQLite 数据迁移引擎
└── dao/ 数据访问对象层
├── providers.rs 供应商 CRUD
├── mcp.rs MCP 服务器 CRUD
├── prompts.rs 提示词 CRUD
├── skills.rs Skills CRUD
└── settings.rs 键值对设置存储
```
---
### 全新用户界面
完整重构的 UI 设计,提供更现代化的视觉体验。
**视觉改进**
- 重新设计的界面布局
- 统一的组件样式
- 更流畅的过渡动画
- 优化的视觉层次
**交互优化**
- Header toolbar 重新设计
- ConfirmDialog 样式统一
- 禁用主视图 overscroll 弹跳效果
- 改进的表单验证反馈
**兼容性调整**
- Tailwind CSS 从 v4 降级到 v3.4,提升浏览器兼容性
---
### 日语支持
新增日语(日本語)界面支持,国际化语言扩展到三种。
**支持语言**
- 简体中文
- English
- 日本語(新增)
---
## 新增功能
### Skills 递归扫描
Skills 管理系统支持递归扫描仓库目录,自动发现嵌套的技能文件。
**改进内容**
- 支持多层目录结构
- 自动发现所有 `SKILL.md` 文件
- 允许不同仓库的同名技能(使用完整路径去重)
---
### 供应商图标配置
供应商预设支持自定义图标配置。
**功能特性**
- 预设供应商包含默认图标
- 复制供应商时保留图标设置
- 图标颜色自定义
---
### 表单验证增强
供应商表单新增必填字段验证,提供更友好的错误提示。
**改进内容**
- 必填字段实时校验
- 统一使用 Toast 通知显示验证错误
- 更清晰的错误信息
---
### 开机自启
新增开机自动启动功能,支持 Windows、macOS 和 Linux 三个平台。
**功能特性**
- 在设置中一键开启/关闭
- 使用平台原生 API 实现
- Windows 使用注册表、macOS 使用 LaunchAgent、Linux 使用 XDG autostart
---
### 新增供应商预设
- **MiniMax** - 官方合作伙伴
---
## Bug 修复
### 关键修复
**自定义端点丢失问题**
修复更新供应商时自定义请求地址意外丢失的问题。
- 根因:`INSERT OR REPLACE` 在 SQLite 底层执行 `DELETE + INSERT`,触发外键级联删除
- 修复:改用 `UPDATE` 语句更新已存在的供应商
**Gemini 配置问题**
- 修复自定义供应商环境变量未正确写入 `.env` 文件
- 修复安全认证配置错误写入到其他配置文件
**供应商验证问题**
- 修复当前供应商 ID 不存在时的验证错误
- 修复供应商复制时图标字段丢失
### 平台兼容性
**Linux**
- 解决 WebKitGTK DMA-BUF 渲染问题
- 保留用户 `.desktop` 文件自定义
### 其他修复
- 修复切换应用时的冗余用量查询
- 修复 DMXAPI 预设使用错误的认证令牌字段
- 修复深链接组件缺少翻译键
- 修复用量脚本模板初始化逻辑
---
## 技术改进
### 架构重构
**供应商服务模块化**
```
services/provider/
├── mod.rs 核心服务 - add/update/delete/switch/validate
├── live.rs Live 配置文件操作
├── gemini_auth.rs Gemini 认证类型检测
├── endpoints.rs 自定义端点管理
└── usage.rs 用量脚本执行
```
**深链接模块化**
```
deeplink/
├── mod.rs 模块导出
├── parser.rs URL 解析
├── provider.rs 供应商导入逻辑
├── mcp.rs MCP 导入逻辑
├── prompt.rs 提示词导入
├── skill.rs Skills 导入
└── utils.rs 工具函数
```
### 代码质量
**清理工作**
- 移除 JSON 时代遗留的导入导出死代码
- 移除未使用的 MCP 类型导出
- 统一错误处理方式
**测试更新**
- 迁移测试到 SQLite 数据库架构
- 更新组件测试匹配当前实现
- 修复 MSW handlers 适配新 API
---
## 技术统计
```
总体变更:
- 提交数:51
- 文件数:207 个文件变更
- 新增:+17,297 行
- 删除:-6,870 行
- 净增:+10,427 行
提交类型分布:
- fix25 个(Bug 修复)
- refactor11 个(代码重构)
- feat9 个(新功能)
- test1 个(测试)
- 其他:5 个
改动区域分布:
- 前端源码:112 个文件
- Rust 后端:63 个文件
- 测试文件:20 个文件
- 国际化文件:3 个文件
```
---
## 迁移说明
### 从 v3.7.x 升级
**自动迁移** - 首次启动时自动执行:
1. 检测 `config.json` 是否存在
2. 在事务中迁移所有数据到 SQLite
3. 设备级设置迁移到 `settings.json`
4. 显示迁移成功通知
**数据安全**
-`config.json` 文件保留不删除
- 迁移失败时显示错误对话框,保留`config.json`
- 支持 Dry-run 模式验证迁移逻辑
---
## 下载与安装
### 系统要求
- **Windows**Windows 10+
- **macOS**macOS 10.15Catalina+
- **Linux**Ubuntu 22.04+ / Debian 11+ / Fedora 34+
### 下载链接
访问 [Releases](https://github.com/farion1231/cc-switch/releases/latest) 下载:
- **Windows**`CC-Switch-v3.8.0-Windows.msi``-Portable.zip`
- **macOS**`CC-Switch-v3.8.0-macOS.tar.gz``.zip`
- **Linux**`CC-Switch-v3.8.0-Linux.AppImage``.deb`
### HomebrewmacOS
```bash
brew tap farion1231/ccswitch
brew install --cask cc-switch
```
更新:
```bash
brew upgrade --cask cc-switch
```
## 致谢
### 贡献者
感谢所有让这个版本成为可能的贡献者:
- [@YoVinchen](https://github.com/YoVinchen) - UI 和数据库重构
- [@farion1231](https://github.com/farion1231) - BUG 修复和功能增强
- 社区成员的测试和反馈
### 赞助商
**智谱AI** - GLM CODING PLAN 赞助商
[使用此链接购买可享九折优惠](https://www.bigmodel.cn/claude-code?ic=RRVJPB5SII)
**PackyCode** - API 中转服务合作伙伴
[使用 "cc-switch" 优惠码注册享 9 折优惠](https://www.packyapi.com/register?aff=cc-switch)
**闪电说** - 本地优先的 AI 语音输入法
[免费下载](https://shandianshuo.cn) Mac/Win 双平台
**MiniMax** - MiniMax M2 CODING PLAN 赞助商
[黑五优惠进行中,套餐9.9元起](https://platform.minimaxi.com/subscribe/coding-plan)
---
## 反馈与支持
- **问题反馈**[GitHub Issues](https://github.com/farion1231/cc-switch/issues)
- **讨论**[GitHub Discussions](https://github.com/farion1231/cc-switch/discussions)
- **文档**[README](../README_ZH.md)
- **更新日志**[CHANGELOG.md](../CHANGELOG.md)
---
## 未来展望
**v3.9.0 预览**(暂定):
- 本地代理功能
敬请期待更多更新!
---
**Happy Coding!**
+7 -13
View File
@@ -1,8 +1,7 @@
{
"name": "cc-switch",
"version": "3.9.0-3",
"version": "3.7.1",
"description": "All-in-One Assistant for Claude Code, Codex & Gemini CLI",
"type": "module",
"scripts": {
"dev": "pnpm tauri dev",
"build": "pnpm tauri build",
@@ -27,17 +26,16 @@
"@types/react": "^18.2.0",
"@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",
"postcss": "^8.4.49",
"prettier": "^3.6.2",
"tailwindcss": "^3.4.17",
"typescript": "^5.3.0",
"vite": "^7.3.0",
"vitest": "^2.0.5"
"vite": "^5.0.0",
"vitest": "^2.0.5",
"autoprefixer": "^10.4.20",
"postcss": "^8.4.49",
"tailwindcss": "^3.4.17"
},
"dependencies": {
"@codemirror/lang-javascript": "^6.2.4",
@@ -52,7 +50,6 @@
"@dnd-kit/utilities": "^3.2.2",
"@hookform/resolvers": "^5.2.2",
"@lobehub/icons-static-svg": "^1.73.0",
"@radix-ui/react-accordion": "^1.2.12",
"@radix-ui/react-checkbox": "^1.3.3",
"@radix-ui/react-dialog": "^1.1.15",
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+25 -940
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File diff suppressed because it is too large Load Diff
+15 -407
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"http-body",
"http-body-util",
"pin-project-lite",
"tower-layer",
"tower-service",
]
[[package]]
@@ -5797,7 +5406,7 @@ dependencies = [
"http-body",
"iri-string",
"pin-project-lite",
"tower 0.5.2",
"tower",
"tower-layer",
"tower-service",
]
@@ -5820,7 +5429,6 @@ version = "0.1.41"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "784e0ac535deb450455cbfa28a6f0df145ea1bb7ae51b821cf5e7927fdcfbdd0"
dependencies = [
"log",
"pin-project-lite",
"tracing-attributes",
"tracing-core",
@@ -5862,7 +5470,7 @@ 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",
+5 -13
View File
@@ -1,6 +1,6 @@
[package]
name = "cc-switch"
version = "3.9.0-3"
version = "3.7.1"
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"
@@ -37,18 +37,12 @@ tauri-plugin-deep-link = "2"
dirs = "5.0"
toml = "0.8"
toml_edit = "0.22"
reqwest = { version = "0.12", features = ["rustls-tls", "json", "stream"] }
tokio = { version = "1", features = ["macros", "rt-multi-thread", "time", "sync"] }
reqwest = { version = "0.12", default-features = false, features = ["rustls-tls", "json"] }
tokio = { version = "1", features = ["macros", "rt-multi-thread", "time"] }
futures = "0.3"
async-stream = "0.3"
bytes = "1.5"
axum = "0.7"
tower = "0.4"
tower-http = { version = "0.5", features = ["cors"] }
hyper = { version = "1.0", features = ["full"] }
regex = "1.10"
rquickjs = { version = "0.8", features = ["array-buffer", "classes"] }
thiserror = "2.0"
thiserror = "1.0"
anyhow = "1.0"
zip = "2.2"
serde_yaml = "0.9"
@@ -59,8 +53,6 @@ once_cell = "1.21.3"
base64 = "0.22"
rusqlite = { version = "0.31", features = ["bundled", "backup"] }
indexmap = { version = "2", features = ["serde"] }
rust_decimal = "1.33"
uuid = { version = "1.11", features = ["v4"] }
[target.'cfg(any(target_os = "macos", target_os = "windows", target_os = "linux"))'.dependencies]
tauri-plugin-single-instance = "2"
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+8 -77
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@@ -1,41 +1,19 @@
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
}
}
use auto_launch::AutoLaunch;
/// 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);
// Windows 平台的 AutoLaunch::new 只接受 3 个参数
// Linux/macOS 平台需要 4 个参数(包含 hidden 参数)
#[cfg(target_os = "windows")]
let auto_launch = AutoLaunch::new(app_name, &app_path.to_string_lossy(), &[] as &[&str]);
#[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
let auto_launch = AutoLaunchBuilder::new()
.set_app_name(app_name)
.set_app_path(&app_path.to_string_lossy())
.build()
.map_err(|e| AppError::Message(format!("创建 AutoLaunch 失败: {e}")))?;
#[cfg(not(target_os = "windows"))]
let auto_launch = AutoLaunch::new(app_name, &app_path.to_string_lossy(), false, &[] as &[&str]);
Ok(auto_launch)
}
@@ -67,50 +45,3 @@ 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())
}
-230
View File
@@ -4,12 +4,6 @@ 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> {
@@ -64,227 +58,3 @@ pub async fn get_init_error() -> Result<Option<InitErrorPayload>, String> {
pub async fn get_migration_result() -> Result<bool, String> {
Ok(crate::init_status::take_migration_success())
}
#[derive(serde::Serialize)]
pub struct ToolVersion {
name: String,
version: Option<String>,
latest_version: Option<String>, // 新增字段:最新版本
error: Option<String>,
}
#[tauri::command]
pub async fn get_tool_versions() -> Result<Vec<ToolVersion>, String> {
let tools = vec!["claude", "codex", "gemini"];
let mut results = Vec::new();
// 用于获取远程版本的 client
let client = reqwest::Client::builder()
.user_agent("cc-switch/1.0")
.build()
.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
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
} else {
// 扫描常见的 npm 全局安装路径
scan_cli_version(tool)
}
};
// 2. 获取远程最新版本
let latest_version = match tool {
"claude" => fetch_npm_latest_version(&client, "@anthropic-ai/claude-code").await,
"codex" => fetch_npm_latest_version(&client, "@openai/codex").await,
"gemini" => fetch_npm_latest_version(&client, "@google/gemini-cli").await,
_ => None,
};
results.push(ToolVersion {
name: tool.to_string(),
version: local_version,
latest_version,
error: local_error,
});
}
Ok(results)
}
/// Helper function to fetch latest version from npm registry
async fn fetch_npm_latest_version(client: &reqwest::Client, package: &str) -> Option<String> {
let url = format!("https://registry.npmjs.org/{package}");
match client.get(&url).send().await {
Ok(resp) => {
if let Ok(json) = resp.json::<serde_json::Value>().await {
json.get("dist-tags")
.and_then(|tags| tags.get("latest"))
.and_then(|v| v.as_str())
.map(|s| s.to_string())
} else {
None
}
}
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()))
}
-8
View File
@@ -3,31 +3,23 @@
mod config;
mod deeplink;
mod env;
mod failover;
mod import_export;
mod mcp;
mod misc;
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 plugin::*;
pub use prompt::*;
pub use provider::*;
pub use proxy::*;
pub use settings::*;
pub use skill::*;
pub use stream_check::*;
pub use usage::*;
-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())
}
-94
View File
@@ -229,97 +229,3 @@ 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)
}
-294
View File
@@ -1,294 +0,0 @@
//! 代理服务相关的 Tauri 命令
//!
//! 提供前端调用的 API 接口
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)
#[tauri::command]
pub async fn start_proxy_server(
state: tauri::State<'_, AppState>,
) -> Result<ProxyServerInfo, String> {
state.proxy_service.start().await
}
/// 停止代理服务器(恢复 Live 配置)
#[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
}
/// 获取代理服务器状态
#[tauri::command]
pub async fn get_proxy_status(state: tauri::State<'_, AppState>) -> Result<ProxyStatus, String> {
state.proxy_service.get_status().await
}
/// 获取代理配置
#[tauri::command]
pub async fn get_proxy_config(state: tauri::State<'_, AppState>) -> Result<ProxyConfig, String> {
state.proxy_service.get_config().await
}
/// 更新代理配置
#[tauri::command]
pub async fn update_proxy_config(
state: tauri::State<'_, AppState>,
config: ProxyConfig,
) -> Result<(), String> {
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
}
/// 代理模式下切换供应商(热切换)
#[tauri::command]
pub async fn switch_proxy_provider(
state: tauri::State<'_, AppState>,
app_type: String,
provider_id: String,
) -> Result<(), String> {
state
.proxy_service
.switch_proxy_target(&app_type, &provider_id)
.await
}
// ==================== 故障转移相关命令 ====================
/// 获取供应商健康状态
#[tauri::command]
pub async fn get_provider_health(
state: tauri::State<'_, AppState>,
provider_id: String,
app_type: String,
) -> Result<ProviderHealth, String> {
let db = &state.db;
db.get_provider_health(&provider_id, &app_type)
.await
.map_err(|e| e.to_string())
}
/// 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
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}");
}
}
}
}
}
Ok(())
}
/// 获取熔断器配置
#[tauri::command]
pub async fn get_circuit_breaker_config(
state: tauri::State<'_, AppState>,
) -> Result<CircuitBreakerConfig, String> {
let db = &state.db;
db.get_circuit_breaker_config()
.await
.map_err(|e| e.to_string())
}
/// 更新熔断器配置
#[tauri::command]
pub async fn update_circuit_breaker_config(
state: tauri::State<'_, AppState>,
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(())
}
/// 获取熔断器统计信息(仅当代理服务器运行时)
#[tauri::command]
pub async fn get_circuit_breaker_stats(
state: tauri::State<'_, AppState>,
provider_id: String,
app_type: String,
) -> Result<Option<CircuitBreakerStats>, String> {
// 这个功能需要访问运行中的代理服务器的内存状态
// 目前先返回 None,后续可以通过 ProxyService 暴露接口来实现
let _ = (state, provider_id, app_type);
Ok(None)
}
+16 -76
View File
@@ -1,4 +1,3 @@
use crate::app_config::AppType;
use crate::error::format_skill_error;
use crate::services::skill::SkillState;
use crate::services::{Skill, SkillRepo, SkillService};
@@ -9,46 +8,15 @@ use tauri::State;
pub struct SkillServiceState(pub Arc<SkillService>);
/// 解析 app 参数为 AppType
fn parse_app_type(app: &str) -> Result<AppType, String> {
match app.to_lowercase().as_str() {
"claude" => Ok(AppType::Claude),
"codex" => Ok(AppType::Codex),
"gemini" => Ok(AppType::Gemini),
_ => Err(format!("不支持的 app 类型: {app}")),
}
}
/// 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}")
}
#[tauri::command]
pub async fn get_skills(
service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<Vec<Skill>, String> {
get_skills_for_app("claude".to_string(), service, app_state).await
}
#[tauri::command]
pub async fn get_skills_for_app(
app: String,
_service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<Vec<Skill>, String> {
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
.0
.list_skills(repos)
.await
.map_err(|e| e.to_string())?;
@@ -58,19 +26,16 @@ pub async fn get_skills_for_app(
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}");
}
if skill.installed && !existing_states.contains_key(&skill.directory) {
// 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(
&skill.directory,
&SkillState {
installed: true,
installed_at: Utc::now(),
},
) {
log::warn!("同步本地 skill {} 状态到数据库失败: {}", skill.directory, e);
}
}
}
@@ -84,23 +49,11 @@ pub async fn install_skill(
service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<bool, String> {
install_skill_for_app("claude".to_string(), directory, service, app_state).await
}
#[tauri::command]
pub async fn install_skill_for_app(
app: String,
directory: String,
_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
.list_skills(repos)
.await
.map_err(|e| e.to_string())?;
@@ -140,16 +93,16 @@ pub async fn install_skill_for_app(
};
service
.0
.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,
&directory,
&SkillState {
installed: true,
installed_at: Utc::now(),
@@ -166,29 +119,16 @@ pub fn uninstall_skill(
service: State<'_, SkillServiceState>,
app_state: State<'_, AppState>,
) -> Result<bool, String> {
uninstall_skill_for_app("claude".to_string(), directory, service, app_state)
}
#[tauri::command]
pub fn uninstall_skill_for_app(
app: String,
directory: String,
_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())?;
service
.0
.uninstall_skill(directory.clone())
.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,
&directory,
&SkillState {
installed: false,
installed_at: Utc::now(),
-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)
}
-179
View File
@@ -1,179 +0,0 @@
//! 使用统计相关命令
use crate::error::AppError;
use crate::services::usage_stats::*;
use crate::store::AppState;
use tauri::State;
/// 获取使用量汇总
#[tauri::command]
pub fn get_usage_summary(
state: State<'_, AppState>,
start_date: Option<i64>,
end_date: Option<i64>,
) -> Result<UsageSummary, AppError> {
state.db.get_usage_summary(start_date, end_date)
}
/// 获取每日趋势
#[tauri::command]
pub fn get_usage_trends(
state: State<'_, AppState>,
start_date: Option<i64>,
end_date: Option<i64>,
) -> Result<Vec<DailyStats>, AppError> {
state.db.get_daily_trends(start_date, end_date)
}
/// 获取 Provider 统计
#[tauri::command]
pub fn get_provider_stats(state: State<'_, AppState>) -> Result<Vec<ProviderStats>, AppError> {
state.db.get_provider_stats()
}
/// 获取模型统计
#[tauri::command]
pub fn get_model_stats(state: State<'_, AppState>) -> Result<Vec<ModelStats>, AppError> {
state.db.get_model_stats()
}
/// 获取请求日志列表
#[tauri::command]
pub fn get_request_logs(
state: State<'_, AppState>,
filters: LogFilters,
page: u32,
page_size: u32,
) -> Result<PaginatedLogs, AppError> {
state.db.get_request_logs(&filters, page, page_size)
}
/// 获取单个请求详情
#[tauri::command]
pub fn get_request_detail(
state: State<'_, AppState>,
request_id: String,
) -> Result<Option<RequestLogDetail>, AppError> {
state.db.get_request_detail(&request_id)
}
/// 获取模型定价列表
#[tauri::command]
pub fn get_model_pricing(state: State<'_, AppState>) -> Result<Vec<ModelPricingInfo>, AppError> {
log::info!("获取模型定价列表");
state.db.ensure_model_pricing_seeded()?;
let db = state.db.clone();
let conn = crate::database::lock_conn!(db.conn);
// 检查表是否存在
let table_exists: bool = conn
.query_row(
"SELECT COUNT(*) FROM sqlite_master WHERE type='table' AND name='model_pricing'",
[],
|row| row.get::<_, i64>(0).map(|count| count > 0),
)
.unwrap_or(false);
if !table_exists {
log::error!("model_pricing 表不存在,可能需要重启应用以触发数据库迁移");
return Ok(Vec::new());
}
let mut stmt = conn.prepare(
"SELECT model_id, display_name, input_cost_per_million, output_cost_per_million,
cache_read_cost_per_million, cache_creation_cost_per_million
FROM model_pricing
ORDER BY display_name",
)?;
let rows = stmt.query_map([], |row| {
Ok(ModelPricingInfo {
model_id: row.get(0)?,
display_name: row.get(1)?,
input_cost_per_million: row.get(2)?,
output_cost_per_million: row.get(3)?,
cache_read_cost_per_million: row.get(4)?,
cache_creation_cost_per_million: row.get(5)?,
})
})?;
let mut pricing = Vec::new();
for row in rows {
pricing.push(row?);
}
log::info!("成功获取 {} 条模型定价数据", pricing.len());
Ok(pricing)
}
/// 更新模型定价
#[tauri::command]
pub fn update_model_pricing(
state: State<'_, AppState>,
model_id: String,
display_name: String,
input_cost: String,
output_cost: String,
cache_read_cost: String,
cache_creation_cost: String,
) -> Result<(), AppError> {
let db = state.db.clone();
let conn = crate::database::lock_conn!(db.conn);
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 (?1, ?2, ?3, ?4, ?5, ?6)",
rusqlite::params![
model_id,
display_name,
input_cost,
output_cost,
cache_read_cost,
cache_creation_cost
],
)
.map_err(|e| AppError::Database(format!("更新模型定价失败: {e}")))?;
Ok(())
}
/// 检查 Provider 使用限额
#[tauri::command]
pub fn check_provider_limits(
state: State<'_, AppState>,
provider_id: String,
app_type: String,
) -> Result<crate::services::usage_stats::ProviderLimitStatus, AppError> {
state.db.check_provider_limits(&provider_id, &app_type)
}
/// 删除模型定价
#[tauri::command]
pub fn delete_model_pricing(state: State<'_, AppState>, model_id: String) -> Result<(), AppError> {
let db = state.db.clone();
let conn = crate::database::lock_conn!(db.conn);
conn.execute(
"DELETE FROM model_pricing WHERE model_id = ?1",
rusqlite::params![model_id],
)
.map_err(|e| AppError::Database(format!("删除模型定价失败: {e}")))?;
log::info!("已删除模型定价: {model_id}");
Ok(())
}
/// 模型定价信息
#[derive(Debug, Clone, serde::Serialize, serde::Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct ModelPricingInfo {
pub model_id: String,
pub display_name: String,
pub input_cost_per_million: String,
pub output_cost_per_million: String,
pub cache_read_cost_per_million: String,
pub cache_creation_cost_per_million: String,
}
+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)
}
}
+7 -13
View File
@@ -1,17 +1,11 @@
//! Data Access Object layer
//! 数据访问对象 (DAO) 模块
//!
//! Database access operations for each domain
//! 提供各类数据的 CRUD 操作。
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;
mod mcp;
mod prompts;
mod providers;
mod settings;
mod skills;
// 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;
+10 -87
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
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 +35,6 @@ 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 settings_config =
serde_json::from_str(&settings_config_str).unwrap_or(serde_json::Value::Null);
@@ -55,7 +54,6 @@ impl Database {
meta: Some(meta),
icon,
icon_color,
in_failover_queue,
},
))
})
@@ -123,57 +121,6 @@ impl Database {
}
}
/// 根据 ID 获取单个供应商
pub fn get_provider_by_id(
&self,
id: &str,
app_type: &str,
) -> 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
FROM providers WHERE id = ?1 AND app_type = ?2",
params![id, app_type],
|row| {
let name: String = row.get(0)?;
let settings_config_str: String = row.get(1)?;
let website_url: Option<String> = row.get(2)?;
let category: Option<String> = row.get(3)?;
let created_at: Option<i64> = row.get(4)?;
let sort_index: Option<usize> = row.get(5)?;
let notes: Option<String> = row.get(6)?;
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 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(Provider {
id: id.to_string(),
name,
settings_config,
website_url,
category,
created_at,
sort_index,
notes,
meta: Some(meta),
icon,
icon_color,
in_failover_queue,
})
},
);
match result {
Ok(provider) => Ok(Some(provider)),
Err(rusqlite::Error::QueryReturnedNoRows) => Ok(None),
Err(e) => Err(AppError::Database(e.to_string())),
}
}
/// 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 +135,17 @@ 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
let existing: Option<(bool, bool)> = tx
// 检查是否存在(用于判断新增/更新,以及保留 is_current
let existing: Option<bool> = tx
.query_row(
"SELECT is_current, in_failover_queue FROM providers WHERE id = ?1 AND app_type = ?2",
"SELECT is_current FROM providers WHERE id = ?1 AND app_type = ?2",
params![provider.id, app_type],
|row| Ok((row.get(0)?, row.get(1)?)),
|row| row.get(0),
)
.ok();
let is_update = existing.is_some();
let (is_current, in_failover_queue) =
existing.unwrap_or((false, provider.in_failover_queue));
let is_current = existing.unwrap_or(false);
if is_update {
// 更新模式:使用 UPDATE 避免触发 ON DELETE CASCADE
@@ -215,9 +161,8 @@ impl Database {
icon = ?8,
icon_color = ?9,
meta = ?10,
is_current = ?11,
in_failover_queue = ?12
WHERE id = ?13 AND app_type = ?14",
is_current = ?11
WHERE id = ?12 AND app_type = ?13",
params![
provider.name,
serde_json::to_string(&provider.settings_config).unwrap(),
@@ -230,7 +175,6 @@ impl Database {
provider.icon_color,
serde_json::to_string(&meta_clone).unwrap(),
is_current,
in_failover_queue,
provider.id,
app_type,
],
@@ -241,8 +185,8 @@ 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
) VALUES (?1, ?2, ?3, ?4, ?5, ?6, ?7, ?8, ?9, ?10, ?11, ?12, ?13, ?14)",
created_at, sort_index, notes, icon, icon_color, meta, is_current
) VALUES (?1, ?2, ?3, ?4, ?5, ?6, ?7, ?8, ?9, ?10, ?11, ?12, ?13)",
params![
provider.id,
app_type,
@@ -257,7 +201,6 @@ impl Database {
provider.icon_color,
serde_json::to_string(&meta_clone).unwrap(),
is_current,
in_failover_queue,
],
)
.map_err(|e| AppError::Database(e.to_string()))?;
@@ -313,26 +256,6 @@ 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(
&self,
app_type: &str,
provider_id: &str,
settings_config: &serde_json::Value,
) -> 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
],
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(())
}
/// 添加自定义端点
pub fn add_custom_endpoint(
&self,
-617
View File
@@ -1,617 +0,0 @@
//! 代理功能数据访问层
//!
//! 处理代理配置、Provider健康状态和使用统计的数据库操作
use crate::error::AppError;
use crate::proxy::types::*;
use super::super::{lock_conn, Database};
impl Database {
// ==================== Global 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: 30,
streaming_idle_timeout: 60,
non_streaming_timeout: 300,
circuit_failure_threshold: 5,
circuit_success_threshold: 2,
circuit_timeout_seconds: 60,
circuit_error_rate_threshold: 0.5,
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)
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
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'",
[],
|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: 300, // 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(30) as u64,
streaming_idle_timeout: row.get::<_, i32>(5).unwrap_or(60) as u64,
non_streaming_timeout: row.get::<_, i32>(6).unwrap_or(300) as u64,
})
},
)
};
// conn 已在 block 结束时释放
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())
}
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)
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')",
rusqlite::params![
config.listen_address,
config.listen_port as i32,
config.max_retries 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,
],
)
.map_err(|e| AppError::Database(e.to_string()))?;
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
pub async fn get_provider_health(
&self,
provider_id: &str,
app_type: &str,
) -> Result<ProviderHealth, AppError> {
let result = {
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())),
}
}
/// 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);
let now = chrono::Utc::now().to_rfc3339();
// 先查询当前状态
let current = conn.query_row(
"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),
);
let (is_healthy, consecutive_failures) = if success {
// 成功:重置失败计数
(1, 0)
} 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 };
(healthy, failures)
};
let (last_success_at, last_failure_at) = if success {
(Some(now.clone()), None)
} else {
(None, Some(now.clone()))
};
// UPSERT
conn.execute(
"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
WHERE provider_id = ?1 AND app_type = ?2)),
COALESCE(?6, (SELECT last_failure_at FROM provider_health
WHERE provider_id = ?1 AND app_type = ?2)),
?7, ?8)",
rusqlite::params![
provider_id,
app_type,
is_healthy,
consecutive_failures as i64,
last_success_at,
last_failure_at,
error_msg,
&now,
],
)
.map_err(|e| AppError::Database(e.to_string()))?;
Ok(())
}
/// 重置Provider健康状态
pub async fn reset_provider_health(
&self,
provider_id: &str,
app_type: &str,
) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
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::debug!("Reset health status for provider {provider_id} (app: {app_type})");
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> {
let conn = lock_conn!(self.conn);
conn.execute(
"DELETE FROM provider_health WHERE app_type = ?1",
[app_type],
)
.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> {
let conn = lock_conn!(self.conn);
conn.execute("DELETE FROM provider_health", [])
.map_err(|e| AppError::Database(e.to_string()))?;
log::debug!("Cleared all provider health records");
Ok(())
}
// ==================== Circuit Breaker Config (Legacy Compatibility) ====================
/// 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
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'",
[],
|row| {
Ok(crate::proxy::circuit_breaker::CircuitBreakerConfig {
failure_threshold: row.get::<_, i32>(0)? as u32,
success_threshold: row.get::<_, i32>(1)? as u32,
timeout_seconds: row.get::<_, i64>(2)? as u64,
error_rate_threshold: row.get(3)?,
min_requests: row.get::<_, i32>(4)? 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,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())),
}
}
/// 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
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')",
rusqlite::params![
config.failure_threshold as i32,
config.success_threshold as i32,
config.timeout_seconds as i64,
config.error_rate_threshold,
config.min_requests as i32,
],
)
.map_err(|e| AppError::Database(e.to_string()))?;
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(())
}
}
+6 -20
View File
@@ -13,22 +13,18 @@ impl Database {
pub fn get_skills(&self) -> Result<IndexMap<String, SkillState>, AppError> {
let conn = lock_conn!(self.conn);
let mut stmt = conn
.prepare("SELECT directory, app_type, installed, installed_at FROM skills ORDER BY directory ASC, app_type ASC")
.prepare("SELECT key, installed, installed_at FROM skills ORDER BY key ASC")
.map_err(|e| AppError::Database(e.to_string()))?;
let skill_iter = stmt
.query_map([], |row| {
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 key: String = row.get(0)?;
let installed: bool = row.get(1)?;
let installed_at_ts: i64 = row.get(2)?;
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 {
@@ -48,21 +44,11 @@ impl Database {
}
/// 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 conn = lock_conn!(self.conn);
conn.execute(
"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()],
"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(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(())
}
}
+1 -6
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 = 2;
pub(crate) const SCHEMA_VERSION: i32 = 1;
/// 安全地序列化 JSON,避免 unwrap panic
pub(crate) fn to_json_string<T: Serialize>(value: &T) -> Result<String, AppError> {
@@ -98,7 +95,6 @@ impl Database {
};
db.create_tables()?;
db.apply_schema_migrations()?;
db.ensure_model_pricing_seeded()?;
Ok(db)
}
@@ -115,7 +111,6 @@ impl Database {
conn: Mutex::new(conn),
};
db.create_tables()?;
db.ensure_model_pricing_seeded()?;
Ok(db)
}
+42 -900
View File
@@ -31,7 +31,6 @@ impl Database {
icon_color TEXT,
meta TEXT NOT NULL DEFAULT '{}',
is_current BOOLEAN NOT NULL DEFAULT 0,
in_failover_queue BOOLEAN NOT NULL DEFAULT 0,
PRIMARY KEY (id, app_type)
)",
[],
@@ -55,28 +54,45 @@ impl Database {
// 3. MCP Servers 表
conn.execute(
"CREATE TABLE IF NOT EXISTS mcp_servers (
id TEXT PRIMARY KEY, name TEXT NOT NULL, server_config TEXT NOT NULL,
description TEXT, homepage TEXT, docs TEXT, tags TEXT NOT NULL DEFAULT '[]',
enabled_claude BOOLEAN NOT NULL DEFAULT 0, enabled_codex BOOLEAN NOT NULL DEFAULT 0,
enabled_gemini BOOLEAN NOT NULL DEFAULT 0
)",
id TEXT PRIMARY KEY,
name TEXT NOT NULL,
server_config TEXT NOT NULL,
description TEXT,
homepage TEXT,
docs TEXT,
tags TEXT NOT NULL DEFAULT '[]',
enabled_claude BOOLEAN NOT NULL DEFAULT 0,
enabled_codex BOOLEAN NOT NULL DEFAULT 0,
enabled_gemini BOOLEAN NOT NULL DEFAULT 0
)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
// 4. Prompts 表
conn.execute("CREATE TABLE IF NOT EXISTS prompts (
id TEXT NOT NULL, app_type TEXT NOT NULL, name TEXT NOT NULL, content TEXT NOT NULL,
description TEXT, enabled BOOLEAN NOT NULL DEFAULT 1, created_at INTEGER, updated_at INTEGER,
PRIMARY KEY (id, app_type)
)", []).map_err(|e| AppError::Database(e.to_string()))?;
conn.execute(
"CREATE TABLE IF NOT EXISTS prompts (
id TEXT NOT NULL,
app_type TEXT NOT NULL,
name TEXT NOT NULL,
content TEXT NOT NULL,
description TEXT,
enabled BOOLEAN NOT NULL DEFAULT 1,
created_at INTEGER,
updated_at INTEGER,
PRIMARY KEY (id, app_type)
)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
// 5. Skills 表
conn.execute(
"CREATE TABLE IF NOT EXISTS skills (
directory TEXT NOT NULL, app_type TEXT NOT NULL, installed BOOLEAN NOT NULL DEFAULT 0,
installed_at INTEGER NOT NULL DEFAULT 0, PRIMARY KEY (directory, app_type)
)",
key TEXT PRIMARY KEY,
installed BOOLEAN NOT NULL DEFAULT 0,
installed_at INTEGER NOT NULL DEFAULT 0
)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
@@ -84,214 +100,26 @@ impl Database {
// 6. Skill Repos 表
conn.execute(
"CREATE TABLE IF NOT EXISTS skill_repos (
owner TEXT NOT NULL, name TEXT NOT NULL, branch TEXT NOT NULL DEFAULT 'main',
enabled BOOLEAN NOT NULL DEFAULT 1, PRIMARY KEY (owner, name)
)",
owner TEXT NOT NULL,
name TEXT NOT NULL,
branch TEXT NOT NULL DEFAULT 'main',
enabled BOOLEAN NOT NULL DEFAULT 1,
PRIMARY KEY (owner, name)
)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
// 7. Settings 表
// 7. Settings 表 (通用配置)
conn.execute(
"CREATE TABLE IF NOT EXISTS settings (key TEXT PRIMARY KEY, value TEXT)",
"CREATE TABLE IF NOT EXISTS settings (
key TEXT PRIMARY KEY,
value TEXT
)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
// 8. Proxy Config 表(三行结构,app_type 主键)
conn.execute("CREATE TABLE IF NOT EXISTS proxy_config (
app_type TEXT PRIMARY KEY CHECK (app_type IN ('claude','codex','gemini')),
proxy_enabled INTEGER NOT NULL DEFAULT 0, listen_address TEXT NOT NULL DEFAULT '127.0.0.1',
listen_port INTEGER NOT NULL DEFAULT 5000, enable_logging INTEGER NOT NULL DEFAULT 1,
enabled INTEGER NOT NULL DEFAULT 0, auto_failover_enabled INTEGER NOT NULL DEFAULT 0,
max_retries INTEGER NOT NULL DEFAULT 3, streaming_first_byte_timeout INTEGER NOT NULL DEFAULT 30,
streaming_idle_timeout INTEGER NOT NULL DEFAULT 60, non_streaming_timeout INTEGER NOT NULL DEFAULT 300,
circuit_failure_threshold INTEGER NOT NULL DEFAULT 5, circuit_success_threshold INTEGER NOT NULL DEFAULT 2,
circuit_timeout_seconds INTEGER NOT NULL DEFAULT 60, circuit_error_rate_threshold REAL NOT NULL DEFAULT 0.5,
circuit_min_requests INTEGER NOT NULL DEFAULT 10,
created_at TEXT NOT NULL DEFAULT (datetime('now')), updated_at TEXT NOT NULL DEFAULT (datetime('now'))
)", []).map_err(|e| AppError::Database(e.to_string()))?;
// 初始化三行数据(每应用不同默认值)
//
// 兼容旧数据库:
// - 老版本 proxy_config 是单例表(没有 app_type 列),此时不能执行三行 seed insert
// - 旧表会在 apply_schema_migrations() 中迁移为三行结构后再插入。
if Self::has_column(conn, "proxy_config", "app_type")? {
conn.execute(
"INSERT OR IGNORE INTO proxy_config (app_type, 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)
VALUES ('claude', 6, 45, 90, 300, 8, 3, 90, 0.6, 15)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
conn.execute(
"INSERT OR IGNORE INTO proxy_config (app_type, 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)
VALUES ('codex', 3, 30, 60, 300, 5, 2, 60, 0.5, 10)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
conn.execute(
"INSERT OR IGNORE INTO proxy_config (app_type, 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)
VALUES ('gemini', 5, 30, 60, 300, 5, 2, 60, 0.5, 10)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
}
// 9. Provider Health 表
conn.execute("CREATE TABLE IF NOT EXISTS provider_health (
provider_id TEXT NOT NULL, app_type TEXT NOT NULL, is_healthy INTEGER NOT NULL DEFAULT 1,
consecutive_failures INTEGER NOT NULL DEFAULT 0, last_success_at TEXT, last_failure_at TEXT,
last_error TEXT, updated_at TEXT NOT NULL,
PRIMARY KEY (provider_id, app_type),
FOREIGN KEY (provider_id, app_type) REFERENCES providers(id, app_type) ON DELETE CASCADE
)", []).map_err(|e| AppError::Database(e.to_string()))?;
// 10. Proxy Request Logs 表
conn.execute("CREATE TABLE IF NOT EXISTS proxy_request_logs (
request_id TEXT PRIMARY KEY, provider_id TEXT NOT NULL, app_type TEXT NOT NULL, model TEXT NOT NULL,
input_tokens INTEGER NOT NULL DEFAULT 0, output_tokens INTEGER NOT NULL DEFAULT 0,
cache_read_tokens INTEGER NOT NULL DEFAULT 0, cache_creation_tokens INTEGER NOT NULL DEFAULT 0,
input_cost_usd TEXT NOT NULL DEFAULT '0', output_cost_usd TEXT NOT NULL DEFAULT '0',
cache_read_cost_usd TEXT NOT NULL DEFAULT '0', cache_creation_cost_usd TEXT NOT NULL DEFAULT '0',
total_cost_usd TEXT NOT NULL DEFAULT '0', latency_ms INTEGER NOT NULL, first_token_ms INTEGER,
duration_ms INTEGER, status_code INTEGER NOT NULL, error_message TEXT, session_id TEXT,
provider_type TEXT, is_streaming INTEGER NOT NULL DEFAULT 0,
cost_multiplier TEXT NOT NULL DEFAULT '1.0', created_at INTEGER NOT NULL
)", []).map_err(|e| AppError::Database(e.to_string()))?;
conn.execute("CREATE INDEX IF NOT EXISTS idx_request_logs_provider ON proxy_request_logs(provider_id, app_type)", [])
.map_err(|e| AppError::Database(e.to_string()))?;
conn.execute("CREATE INDEX IF NOT EXISTS idx_request_logs_created_at ON proxy_request_logs(created_at)", [])
.map_err(|e| AppError::Database(e.to_string()))?;
conn.execute(
"CREATE INDEX IF NOT EXISTS idx_request_logs_model ON proxy_request_logs(model)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
conn.execute(
"CREATE INDEX IF NOT EXISTS idx_request_logs_session ON proxy_request_logs(session_id)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
conn.execute(
"CREATE INDEX IF NOT EXISTS idx_request_logs_status ON proxy_request_logs(status_code)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
// 11. Model Pricing 表
conn.execute(
"CREATE TABLE IF NOT EXISTS model_pricing (
model_id TEXT PRIMARY KEY, display_name TEXT NOT NULL,
input_cost_per_million TEXT NOT NULL, output_cost_per_million TEXT NOT NULL,
cache_read_cost_per_million TEXT NOT NULL DEFAULT '0',
cache_creation_cost_per_million TEXT NOT NULL DEFAULT '0'
)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
// 12. Stream Check Logs 表
conn.execute("CREATE TABLE IF NOT EXISTS stream_check_logs (
id INTEGER PRIMARY KEY AUTOINCREMENT, provider_id TEXT NOT NULL, provider_name TEXT NOT NULL,
app_type TEXT NOT NULL, status TEXT NOT NULL, success INTEGER NOT NULL, message TEXT NOT NULL,
response_time_ms INTEGER, http_status INTEGER, model_used TEXT,
retry_count INTEGER DEFAULT 0, tested_at INTEGER NOT NULL
)", []).map_err(|e| AppError::Database(e.to_string()))?;
conn.execute(
"CREATE INDEX IF NOT EXISTS idx_stream_check_logs_provider
ON stream_check_logs(app_type, provider_id, tested_at DESC)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
// 注意:circuit_breaker_config 已合并到 proxy_config 表中
// 16. Proxy Live Backup 表 (Live 配置备份)
conn.execute(
"CREATE TABLE IF NOT EXISTS proxy_live_backup (
app_type TEXT PRIMARY KEY, original_config TEXT NOT NULL, backed_up_at TEXT NOT NULL
)",
[],
)
.map_err(|e| AppError::Database(e.to_string()))?;
// 尝试添加 live_takeover_active 列到 proxy_config 表
let _ = conn.execute(
"ALTER TABLE proxy_config ADD COLUMN live_takeover_active INTEGER NOT NULL DEFAULT 0",
[],
);
// 尝试添加基础配置列到 proxy_config 表(兼容 v3.9.0-2 升级)
let _ = conn.execute(
"ALTER TABLE proxy_config ADD COLUMN proxy_enabled INTEGER NOT NULL DEFAULT 0",
[],
);
let _ = conn.execute(
"ALTER TABLE proxy_config ADD COLUMN listen_address TEXT NOT NULL DEFAULT '127.0.0.1'",
[],
);
let _ = conn.execute(
"ALTER TABLE proxy_config ADD COLUMN listen_port INTEGER NOT NULL DEFAULT 5000",
[],
);
let _ = conn.execute(
"ALTER TABLE proxy_config ADD COLUMN enable_logging INTEGER NOT NULL DEFAULT 1",
[],
);
// 尝试添加超时配置列到 proxy_config 表
let _ = conn.execute(
"ALTER TABLE proxy_config ADD COLUMN streaming_first_byte_timeout INTEGER NOT NULL DEFAULT 30",
[],
);
let _ = conn.execute(
"ALTER TABLE proxy_config ADD COLUMN streaming_idle_timeout INTEGER NOT NULL DEFAULT 60",
[],
);
let _ = conn.execute(
"ALTER TABLE proxy_config ADD COLUMN non_streaming_timeout INTEGER NOT NULL DEFAULT 300",
[],
);
// 兼容:若旧版 proxy_config 仍为单例结构(无 app_type),则在启动时直接转换为三行结构
// 说明:user_version=2 时不会再触发 v1->v2 迁移,但新代码查询依赖 app_type 列。
if Self::table_exists(conn, "proxy_config")?
&& !Self::has_column(conn, "proxy_config", "app_type")?
{
Self::migrate_proxy_config_to_per_app(conn)?;
}
// 确保 in_failover_queue 列存在(对于已存在的 v2 数据库)
Self::add_column_if_missing(
conn,
"providers",
"in_failover_queue",
"BOOLEAN NOT NULL DEFAULT 0",
)?;
// 删除旧的 failover_queue 表(如果存在)
let _ = conn.execute("DROP INDEX IF EXISTS idx_failover_queue_order", []);
let _ = conn.execute("DROP TABLE IF EXISTS failover_queue", []);
// 为故障转移队列创建索引(基于 providers 表)
let _ = conn.execute(
"CREATE INDEX IF NOT EXISTS idx_providers_failover
ON providers(app_type, in_failover_queue, sort_index)",
[],
);
Ok(())
}
@@ -322,14 +150,7 @@ impl Database {
0 => {
log::info!("检测到 user_version=0,迁移到 1(补齐缺失列并设置版本)");
Self::migrate_v0_to_v1(conn)?;
Self::set_user_version(conn, 1)?;
}
1 => {
log::info!(
"迁移数据库从 v1 到 v2(添加使用统计表和完整字段,重构 skills 表)"
);
Self::migrate_v1_to_v2(conn)?;
Self::set_user_version(conn, 2)?;
Self::set_user_version(conn, SCHEMA_VERSION)?;
}
_ => {
return Err(AppError::Database(format!(
@@ -416,685 +237,6 @@ impl Database {
Ok(())
}
/// v1 -> v2 迁移:添加使用统计表和完整字段,重构 skills 表
fn migrate_v1_to_v2(conn: &Connection) -> Result<(), AppError> {
// providers 表字段
Self::add_column_if_missing(
conn,
"providers",
"cost_multiplier",
"TEXT NOT NULL DEFAULT '1.0'",
)?;
Self::add_column_if_missing(conn, "providers", "limit_daily_usd", "TEXT")?;
Self::add_column_if_missing(conn, "providers", "limit_monthly_usd", "TEXT")?;
Self::add_column_if_missing(conn, "providers", "provider_type", "TEXT")?;
Self::add_column_if_missing(
conn,
"providers",
"in_failover_queue",
"BOOLEAN NOT NULL DEFAULT 0",
)?;
// 添加代理超时配置字段
if Self::table_exists(conn, "proxy_config")? {
// 兼容旧版本缺失的基础字段
Self::add_column_if_missing(
conn,
"proxy_config",
"proxy_enabled",
"INTEGER NOT NULL DEFAULT 0",
)?;
Self::add_column_if_missing(
conn,
"proxy_config",
"listen_address",
"TEXT NOT NULL DEFAULT '127.0.0.1'",
)?;
Self::add_column_if_missing(
conn,
"proxy_config",
"listen_port",
"INTEGER NOT NULL DEFAULT 5000",
)?;
Self::add_column_if_missing(
conn,
"proxy_config",
"enable_logging",
"INTEGER NOT NULL DEFAULT 1",
)?;
Self::add_column_if_missing(
conn,
"proxy_config",
"streaming_first_byte_timeout",
"INTEGER NOT NULL DEFAULT 30",
)?;
Self::add_column_if_missing(
conn,
"proxy_config",
"streaming_idle_timeout",
"INTEGER NOT NULL DEFAULT 60",
)?;
Self::add_column_if_missing(
conn,
"proxy_config",
"non_streaming_timeout",
"INTEGER NOT NULL DEFAULT 300",
)?;
}
// 删除旧的 failover_queue 表(如果存在)
conn.execute("DROP INDEX IF EXISTS idx_failover_queue_order", [])
.map_err(|e| AppError::Database(format!("删除 failover_queue 索引失败: {e}")))?;
conn.execute("DROP TABLE IF EXISTS failover_queue", [])
.map_err(|e| AppError::Database(format!("删除 failover_queue 表失败: {e}")))?;
// 创建 failover 索引
conn.execute(
"CREATE INDEX IF NOT EXISTS idx_providers_failover
ON providers(app_type, in_failover_queue, sort_index)",
[],
)
.map_err(|e| AppError::Database(format!("创建 failover 索引失败: {e}")))?;
// proxy_request_logs 表
conn.execute("CREATE TABLE IF NOT EXISTS proxy_request_logs (
request_id TEXT PRIMARY KEY, provider_id TEXT NOT NULL, app_type TEXT NOT NULL, model TEXT NOT NULL,
input_tokens INTEGER NOT NULL DEFAULT 0, output_tokens INTEGER NOT NULL DEFAULT 0,
cache_read_tokens INTEGER NOT NULL DEFAULT 0, cache_creation_tokens INTEGER NOT NULL DEFAULT 0,
input_cost_usd TEXT NOT NULL DEFAULT '0', output_cost_usd TEXT NOT NULL DEFAULT '0',
cache_read_cost_usd TEXT NOT NULL DEFAULT '0', cache_creation_cost_usd TEXT NOT NULL DEFAULT '0',
total_cost_usd TEXT NOT NULL DEFAULT '0', latency_ms INTEGER NOT NULL, first_token_ms INTEGER,
duration_ms INTEGER, status_code INTEGER NOT NULL, error_message TEXT, session_id TEXT,
provider_type TEXT, is_streaming INTEGER NOT NULL DEFAULT 0,
cost_multiplier TEXT NOT NULL DEFAULT '1.0', created_at INTEGER NOT NULL
)", [])?;
// 为已存在的表添加新字段
Self::add_column_if_missing(conn, "proxy_request_logs", "provider_type", "TEXT")?;
Self::add_column_if_missing(
conn,
"proxy_request_logs",
"is_streaming",
"INTEGER NOT NULL DEFAULT 0",
)?;
Self::add_column_if_missing(
conn,
"proxy_request_logs",
"cost_multiplier",
"TEXT NOT NULL DEFAULT '1.0'",
)?;
Self::add_column_if_missing(conn, "proxy_request_logs", "first_token_ms", "INTEGER")?;
Self::add_column_if_missing(conn, "proxy_request_logs", "duration_ms", "INTEGER")?;
// model_pricing 表
conn.execute(
"CREATE TABLE IF NOT EXISTS model_pricing (
model_id TEXT PRIMARY KEY, display_name TEXT NOT NULL,
input_cost_per_million TEXT NOT NULL, output_cost_per_million TEXT NOT NULL,
cache_read_cost_per_million TEXT NOT NULL DEFAULT '0',
cache_creation_cost_per_million TEXT NOT NULL DEFAULT '0'
)",
[],
)?;
// 清空并重新插入模型定价
conn.execute("DELETE FROM model_pricing", [])
.map_err(|e| AppError::Database(format!("清空模型定价失败: {e}")))?;
Self::seed_model_pricing(conn)?;
// 重构 skills 表(添加 app_type 字段)
Self::migrate_skills_table(conn)?;
// 重构 proxy_config 为三行结构(每应用独立配置)
Self::migrate_proxy_config_to_per_app(conn)?;
Ok(())
}
/// 将 proxy_config 迁移为三行结构(每应用独立配置)
fn migrate_proxy_config_to_per_app(conn: &Connection) -> Result<(), AppError> {
// 检查是否已经是新表结构(幂等性)
if !Self::table_exists(conn, "proxy_config")? {
// 表不存在,跳过迁移(新安装)
return Ok(());
}
if Self::has_column(conn, "proxy_config", "app_type")? {
// 已经是三行结构,跳过迁移
log::info!("proxy_config 已经是三行结构,跳过迁移");
return Ok(());
}
// 读取旧配置
let old_config = 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 id = 1",
[],
|row| {
Ok((
row.get::<_, String>(0)?,
row.get::<_, i32>(1)?,
row.get::<_, i32>(2)?,
row.get::<_, i32>(3)?,
row.get::<_, i32>(4).unwrap_or(30),
row.get::<_, i32>(5).unwrap_or(60),
row.get::<_, i32>(6).unwrap_or(300),
))
},
)
.unwrap_or_else(|_| ("127.0.0.1".to_string(), 5000, 3, 1, 30, 60, 300));
let old_cb = conn.query_row(
"SELECT failure_threshold, success_threshold, timeout_seconds, error_rate_threshold, min_requests
FROM circuit_breaker_config WHERE id = 1", [],
|row| Ok((row.get::<_, i32>(0)?, row.get::<_, i32>(1)?, row.get::<_, i64>(2)?,
row.get::<_, f64>(3)?, row.get::<_, i32>(4)?))
).unwrap_or((5, 2, 60, 0.5, 10));
let get_bool = |key: &str| -> bool {
conn.query_row("SELECT value FROM settings WHERE key = ?", [key], |r| {
r.get::<_, String>(0)
})
.map(|v| v == "true" || v == "1")
.unwrap_or(false)
};
let apps = [
(
"claude",
get_bool("proxy_takeover_claude"),
get_bool("auto_failover_enabled_claude"),
6,
45,
90,
8,
3,
90,
0.6,
15,
),
(
"codex",
get_bool("proxy_takeover_codex"),
get_bool("auto_failover_enabled_codex"),
3,
old_config.4,
old_config.5,
old_cb.0,
old_cb.1,
old_cb.2,
old_cb.3,
old_cb.4,
),
(
"gemini",
get_bool("proxy_takeover_gemini"),
get_bool("auto_failover_enabled_gemini"),
5,
old_config.4,
old_config.5,
old_cb.0,
old_cb.1,
old_cb.2,
old_cb.3,
old_cb.4,
),
];
// 创建新表
conn.execute("DROP TABLE IF EXISTS proxy_config_new", [])?;
conn.execute("CREATE TABLE proxy_config_new (
app_type TEXT PRIMARY KEY CHECK (app_type IN ('claude','codex','gemini')),
proxy_enabled INTEGER NOT NULL DEFAULT 0, listen_address TEXT NOT NULL DEFAULT '127.0.0.1',
listen_port INTEGER NOT NULL DEFAULT 5000, enable_logging INTEGER NOT NULL DEFAULT 1,
enabled INTEGER NOT NULL DEFAULT 0, auto_failover_enabled INTEGER NOT NULL DEFAULT 0,
max_retries INTEGER NOT NULL DEFAULT 3, streaming_first_byte_timeout INTEGER NOT NULL DEFAULT 30,
streaming_idle_timeout INTEGER NOT NULL DEFAULT 60, non_streaming_timeout INTEGER NOT NULL DEFAULT 300,
circuit_failure_threshold INTEGER NOT NULL DEFAULT 5, circuit_success_threshold INTEGER NOT NULL DEFAULT 2,
circuit_timeout_seconds INTEGER NOT NULL DEFAULT 60, circuit_error_rate_threshold REAL NOT NULL DEFAULT 0.5,
circuit_min_requests INTEGER NOT NULL DEFAULT 10,
created_at TEXT NOT NULL DEFAULT (datetime('now')), updated_at TEXT NOT NULL DEFAULT (datetime('now'))
)", [])?;
// 插入三行配置
for (app, takeover, failover, retries, fb, idle, cb_f, cb_s, cb_t, cb_r, cb_m) in apps {
conn.execute(
"INSERT INTO proxy_config_new (app_type, proxy_enabled, listen_address, listen_port, enable_logging,
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)
VALUES (?1, 0, ?2, ?3, ?4, ?5, ?6, ?7, ?8, ?9, ?10, ?11, ?12, ?13, ?14, ?15)",
rusqlite::params![app, old_config.0, old_config.1, old_config.3,
if takeover { 1 } else { 0 }, if failover { 1 } else { 0 },
retries, fb, idle, old_config.6, cb_f, cb_s, cb_t, cb_r, cb_m]
).map_err(|e| AppError::Database(format!("插入 {app} 配置失败: {e}")))?;
}
// 替换表并清理
conn.execute("DROP TABLE IF EXISTS proxy_config", [])?;
conn.execute("ALTER TABLE proxy_config_new RENAME TO proxy_config", [])?;
conn.execute("DROP TABLE IF EXISTS circuit_breaker_config", [])?;
conn.execute("DELETE FROM settings WHERE key LIKE 'proxy_takeover_%'", [])?;
conn.execute(
"DELETE FROM settings WHERE key LIKE 'auto_failover_enabled_%'",
[],
)?;
log::info!("proxy_config 已迁移为三行结构");
Ok(())
}
/// 迁移 skills 表:从单 key 主键改为 (directory, app_type) 复合主键
fn migrate_skills_table(conn: &Connection) -> Result<(), AppError> {
// 检查是否已经是新表结构
if Self::has_column(conn, "skills", "app_type")? {
log::info!("skills 表已经包含 app_type 字段,跳过迁移");
return Ok(());
}
log::info!("开始迁移 skills 表...");
// 1. 重命名旧表
conn.execute("ALTER TABLE skills RENAME TO skills_old", [])
.map_err(|e| AppError::Database(format!("重命名旧 skills 表失败: {e}")))?;
// 2. 创建新表
conn.execute(
"CREATE TABLE skills (
directory TEXT NOT NULL,
app_type TEXT NOT NULL,
installed BOOLEAN NOT NULL DEFAULT 0,
installed_at INTEGER NOT NULL DEFAULT 0,
PRIMARY KEY (directory, app_type)
)",
[],
)
.map_err(|e| AppError::Database(format!("创建新 skills 表失败: {e}")))?;
// 3. 迁移数据:解析 key 格式(如 "claude:my-skill" 或 "codex:foo"
// 旧数据如果没有前缀,默认为 claude
let mut stmt = conn
.prepare("SELECT key, installed, installed_at FROM skills_old")
.map_err(|e| AppError::Database(format!("查询旧 skills 数据失败: {e}")))?;
let old_skills: Vec<(String, bool, i64)> = stmt
.query_map([], |row| {
Ok((
row.get::<_, String>(0)?,
row.get::<_, bool>(1)?,
row.get::<_, i64>(2)?,
))
})
.map_err(|e| AppError::Database(format!("读取旧 skills 数据失败: {e}")))?
.collect::<Result<Vec<_>, _>>()
.map_err(|e| AppError::Database(format!("解析旧 skills 数据失败: {e}")))?;
let count = old_skills.len();
for (key, installed, installed_at) in old_skills {
// 解析 key: "app:directory" 或 "directory"(默认 claude
let (app_type, directory) = if let Some(idx) = key.find(':') {
let (app, dir) = key.split_at(idx);
(app.to_string(), dir[1..].to_string()) // 跳过冒号
} else {
("claude".to_string(), key.clone())
};
conn.execute(
"INSERT INTO skills (directory, app_type, installed, installed_at) VALUES (?1, ?2, ?3, ?4)",
rusqlite::params![directory, app_type, installed, installed_at],
)
.map_err(|e| {
AppError::Database(format!("迁移 skill {key} 到新表失败: {e}"))
})?;
}
// 4. 删除旧表
conn.execute("DROP TABLE skills_old", [])
.map_err(|e| AppError::Database(format!("删除旧 skills 表失败: {e}")))?;
log::info!("skills 表迁移完成,共迁移 {count} 条记录");
Ok(())
}
/// 插入默认模型定价数据
/// 格式: (model_id, display_name, input, output, cache_read, cache_creation)
/// 注意: model_id 使用短横线格式(如 claude-haiku-4-5),与 API 返回的模型名称标准化后一致
fn seed_model_pricing(conn: &Connection) -> Result<(), AppError> {
let pricing_data = [
// Claude 4.5 系列 (Latest Models)
(
"claude-opus-4-5-20251101",
"Claude Opus 4.5",
"5",
"25",
"0.50",
"6.25",
),
(
"claude-sonnet-4-5-20250929",
"Claude Sonnet 4.5",
"3",
"15",
"0.30",
"3.75",
),
(
"claude-haiku-4-5-20251001",
"Claude Haiku 4.5",
"1",
"5",
"0.10",
"1.25",
),
// Claude 4 系列 (Legacy Models)
(
"claude-opus-4-20250514",
"Claude Opus 4",
"15",
"75",
"1.50",
"18.75",
),
(
"claude-opus-4-1-20250805",
"Claude Opus 4.1",
"15",
"75",
"1.50",
"18.75",
),
(
"claude-sonnet-4-20250514",
"Claude Sonnet 4",
"3",
"15",
"0.30",
"3.75",
),
// Claude 3.5 系列
(
"claude-3-5-haiku-20241022",
"Claude 3.5 Haiku",
"0.80",
"4",
"0.08",
"1",
),
(
"claude-3-5-sonnet-20241022",
"Claude 3.5 Sonnet",
"3",
"15",
"0.30",
"3.75",
),
// GPT-5.2 系列
("gpt-5.2", "GPT-5.2", "1.75", "14", "0.175", "0"),
("gpt-5.2-low", "GPT-5.2", "1.75", "14", "0.175", "0"),
("gpt-5.2-medium", "GPT-5.2", "1.75", "14", "0.175", "0"),
("gpt-5.2-high", "GPT-5.2", "1.75", "14", "0.175", "0"),
("gpt-5.2-xhigh", "GPT-5.2", "1.75", "14", "0.175", "0"),
("gpt-5.2-codex", "GPT-5.2 Codex", "1.75", "14", "0.175", "0"),
(
"gpt-5.2-codex-low",
"GPT-5.2 Codex",
"1.75",
"14",
"0.175",
"0",
),
(
"gpt-5.2-codex-medium",
"GPT-5.2 Codex",
"1.75",
"14",
"0.175",
"0",
),
(
"gpt-5.2-codex-high",
"GPT-5.2 Codex",
"1.75",
"14",
"0.175",
"0",
),
(
"gpt-5.2-codex-xhigh",
"GPT-5.2 Codex",
"1.75",
"14",
"0.175",
"0",
),
// GPT-5.1 系列
("gpt-5.1", "GPT-5.1", "1.25", "10", "0.125", "0"),
("gpt-5.1-low", "GPT-5.1", "1.25", "10", "0.125", "0"),
("gpt-5.1-medium", "GPT-5.1", "1.25", "10", "0.125", "0"),
("gpt-5.1-high", "GPT-5.1", "1.25", "10", "0.125", "0"),
("gpt-5.1-minimal", "GPT-5.1", "1.25", "10", "0.125", "0"),
("gpt-5.1-codex", "GPT-5.1 Codex", "1.25", "10", "0.125", "0"),
(
"gpt-5.1-codex-mini",
"GPT-5.1 Codex",
"1.25",
"10",
"0.125",
"0",
),
(
"gpt-5.1-codex-max",
"GPT-5.1 Codex",
"1.25",
"10",
"0.125",
"0",
),
(
"gpt-5.1-codex-max-high",
"GPT-5.1 Codex",
"1.25",
"10",
"0.125",
"0",
),
(
"gpt-5.1-codex-max-xhigh",
"GPT-5.1 Codex",
"1.25",
"10",
"0.125",
"0",
),
// GPT-5 系列
("gpt-5", "GPT-5", "1.25", "10", "0.125", "0"),
("gpt-5-low", "GPT-5", "1.25", "10", "0.125", "0"),
("gpt-5-medium", "GPT-5", "1.25", "10", "0.125", "0"),
("gpt-5-high", "GPT-5", "1.25", "10", "0.125", "0"),
("gpt-5-minimal", "GPT-5", "1.25", "10", "0.125", "0"),
("gpt-5-codex", "GPT-5 Codex", "1.25", "10", "0.125", "0"),
("gpt-5-codex-low", "GPT-5 Codex", "1.25", "10", "0.125", "0"),
(
"gpt-5-codex-medium",
"GPT-5 Codex",
"1.25",
"10",
"0.125",
"0",
),
(
"gpt-5-codex-high",
"GPT-5 Codex",
"1.25",
"10",
"0.125",
"0",
),
(
"gpt-5-codex-mini",
"GPT-5 Codex",
"1.25",
"10",
"0.125",
"0",
),
(
"gpt-5-codex-mini-medium",
"GPT-5 Codex",
"1.25",
"10",
"0.125",
"0",
),
(
"gpt-5-codex-mini-high",
"GPT-5 Codex",
"1.25",
"10",
"0.125",
"0",
),
// Gemini 3 系列
(
"gemini-3-pro-preview",
"Gemini 3 Pro Preview",
"2",
"12",
"0.2",
"0",
),
(
"gemini-3-flash-preview",
"Gemini 3 Flash Preview",
"0.5",
"3",
"0.05",
"0",
),
// Gemini 2.5 系列
(
"gemini-2.5-pro",
"Gemini 2.5 Pro",
"1.25",
"10",
"0.125",
"0",
),
(
"gemini-2.5-flash",
"Gemini 2.5 Flash",
"0.3",
"2.5",
"0.03",
"0",
),
// ====== 国产模型 (CNY/1M tokens) ======
// Doubao (字节跳动)
(
"doubao-seed-code",
"Doubao Seed Code",
"1.20",
"8.00",
"0.24",
"0",
),
// DeepSeek 系列
(
"deepseek-v3.2",
"DeepSeek V3.2",
"2.00",
"3.00",
"0.40",
"0",
),
(
"deepseek-v3.1",
"DeepSeek V3.1",
"4.00",
"12.00",
"0.80",
"0",
),
("deepseek-v3", "DeepSeek V3", "2.00", "8.00", "0.40", "0"),
// Kimi (月之暗面)
(
"kimi-k2-thinking",
"Kimi K2 Thinking",
"4.00",
"16.00",
"1.00",
"0",
),
("kimi-k2-0905", "Kimi K2", "4.00", "16.00", "1.00", "0"),
(
"kimi-k2-turbo",
"Kimi K2 Turbo",
"8.00",
"58.00",
"1.00",
"0",
),
// MiniMax 系列
("minimax-m2.1", "MiniMax M2.1", "2.10", "8.40", "0.21", "0"),
(
"minimax-m2.1-lightning",
"MiniMax M2.1 Lightning",
"2.10",
"16.80",
"0.21",
"0",
),
("minimax-m2", "MiniMax M2", "2.10", "8.40", "0.21", "0"),
// GLM (智谱)
("glm-4.7", "GLM-4.7", "2.00", "8.00", "0.40", "0"),
("glm-4.6", "GLM-4.6", "2.00", "8.00", "0.40", "0"),
// Mimo (小米)
("mimo-v2-flash", "Mimo V2 Flash", "0", "0", "0", "0"),
];
for (model_id, display_name, input, output, cache_read, cache_creation) in pricing_data {
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 (?1, ?2, ?3, ?4, ?5, ?6)",
rusqlite::params![
model_id,
display_name,
input,
output,
cache_read,
cache_creation
],
)
.map_err(|e| AppError::Database(format!("插入模型定价失败: {e}")))?;
}
log::info!("已插入 {} 条默认模型定价数据", pricing_data.len());
Ok(())
}
/// 确保模型定价表具备默认数据
pub fn ensure_model_pricing_seeded(&self) -> Result<(), AppError> {
let conn = lock_conn!(self.conn);
Self::ensure_model_pricing_seeded_on_conn(&conn)
}
fn ensure_model_pricing_seeded_on_conn(conn: &Connection) -> Result<(), AppError> {
let count: i64 = conn
.query_row("SELECT COUNT(*) FROM model_pricing", [], |row| row.get(0))
.map_err(|e| AppError::Database(format!("统计模型定价数据失败: {e}")))?;
if count == 0 {
Self::seed_model_pricing(conn)?;
}
Ok(())
}
// --- 辅助方法 ---
pub(crate) fn get_user_version(conn: &Connection) -> Result<i32, AppError> {
+7 -113
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 +245,12 @@ fn dry_run_validates_schema_compatibility() {
meta: None,
icon: None,
icon_color: None,
in_failover_queue: 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);
@@ -319,62 +272,3 @@ fn dry_run_validates_schema_compatibility() {
"Dry-run should succeed with provider data: {result:?}"
);
}
#[test]
fn model_pricing_is_seeded_on_init() {
let db = Database::memory().expect("create memory db");
let conn = db.conn.lock().expect("lock conn");
let count: i64 = conn
.query_row("SELECT COUNT(*) FROM model_pricing", [], |row| row.get(0))
.expect("count pricing");
assert!(
count > 0,
"模型定价数据应该在初始化时自动填充,实际数量: {}",
count
);
// 验证包含 Claude 模型
let claude_count: i64 = conn
.query_row(
"SELECT COUNT(*) FROM model_pricing WHERE model_id LIKE 'claude-%'",
[],
|row| row.get(0),
)
.expect("check claude");
assert!(
claude_count > 0,
"应该包含 Claude 模型定价,实际数量: {}",
claude_count
);
// 验证包含 GPT 模型
let gpt_count: i64 = conn
.query_row(
"SELECT COUNT(*) FROM model_pricing WHERE model_id LIKE 'gpt-%'",
[],
|row| row.get(0),
)
.expect("check gpt");
assert!(
gpt_count > 0,
"应该包含 GPT 模型定价,实际数量: {}",
gpt_count
);
// 验证包含 Gemini 模型
let gemini_count: i64 = conn
.query_row(
"SELECT COUNT(*) FROM model_pricing WHERE model_id LIKE 'gemini-%'",
[],
|row| row.get(0),
)
.expect("check gemini");
assert!(
gemini_count > 0,
"应该包含 Gemini 模型定价,实际数量: {}",
gemini_count
);
}
-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,
})
}
+2 -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 +126,14 @@ 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,
};
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");
-19
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 {
@@ -95,27 +91,12 @@ impl<T> From<PoisonError<T>> for AppError {
}
}
impl From<rusqlite::Error> for AppError {
fn from(err: rusqlite::Error) -> Self {
Self::Database(err.to_string())
}
}
impl From<AppError> for String {
fn from(err: AppError) -> Self {
err.to_string()
}
}
impl serde::Serialize for AppError {
fn serialize<S>(&self, serializer: S) -> Result<S::Ok, S::Error>
where
S: serde::Serializer,
{
serializer.serialize_str(&self.to_string())
}
}
/// 格式化为 JSON 错误字符串,前端可解析为结构化错误
pub fn format_skill_error(
code: &str,
+14 -11
View File
@@ -38,12 +38,22 @@ fn write_json_value(path: &Path, value: &Value) -> Result<(), AppError> {
atomic_write(path, json.as_bytes())
}
/// 读取 Gemini MCP 配置文件的完整 JSON 文本
pub fn read_mcp_json() -> Result<Option<String>, AppError> {
let path = user_config_path();
if !path.exists() {
return Ok(None);
}
let content = fs::read_to_string(&path).map_err(|e| AppError::io(&path, e))?;
Ok(Some(content))
}
/// 读取 Gemini settings.json 中的 mcpServers 映射
///
/// 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 +75,8 @@ 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
}
}
+341 -253
View File
@@ -9,7 +9,7 @@ mod config;
mod database;
mod deeplink;
mod error;
mod gemini_config;
mod gemini_config; // 新增
mod gemini_mcp;
mod init_status;
mod mcp;
@@ -17,11 +17,9 @@ mod prompt;
mod prompt_files;
mod provider;
mod provider_defaults;
mod proxy;
mod services;
mod settings;
mod store;
mod tray;
mod usage_script;
pub use app_config::{AppType, McpApps, McpServer, MultiAppConfig};
@@ -39,8 +37,8 @@ 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;
@@ -48,12 +46,262 @@ use tauri_plugin_deep_link::DeepLinkExt;
use tauri_plugin_dialog::{DialogExt, MessageDialogButtons, MessageDialogKind};
use std::sync::Arc;
use tauri::{
menu::{CheckMenuItem, Menu, MenuBuilder, MenuItem},
tray::{TrayIconBuilder, TrayIconEvent},
};
#[cfg(target_os = "macos")]
use tauri::image::Image;
use tauri::tray::{TrayIconBuilder, TrayIconEvent};
use tauri::RunEvent;
use tauri::{ActivationPolicy, RunEvent};
use tauri::{Emitter, Manager};
#[derive(Clone, Copy)]
struct TrayTexts {
show_main: &'static str,
no_provider_hint: &'static str,
quit: &'static str,
}
impl TrayTexts {
fn from_language(language: &str) -> Self {
match language {
"en" => Self {
show_main: "Open main window",
no_provider_hint: " (No providers yet, please add them from the main window)",
quit: "Quit",
},
"ja" => Self {
show_main: "メインウィンドウを開く",
no_provider_hint: " (プロバイダーがまだありません。メイン画面から追加してください)",
quit: "終了",
},
_ => Self {
show_main: "打开主界面",
no_provider_hint: " (无供应商,请在主界面添加)",
quit: "退出",
},
}
}
}
struct TrayAppSection {
app_type: AppType,
prefix: &'static str,
header_id: &'static str,
empty_id: &'static str,
header_label: &'static str,
log_name: &'static str,
}
const TRAY_SECTIONS: [TrayAppSection; 3] = [
TrayAppSection {
app_type: AppType::Claude,
prefix: "claude_",
header_id: "claude_header",
empty_id: "claude_empty",
header_label: "─── Claude ───",
log_name: "Claude",
},
TrayAppSection {
app_type: AppType::Codex,
prefix: "codex_",
header_id: "codex_header",
empty_id: "codex_empty",
header_label: "─── Codex ───",
log_name: "Codex",
},
TrayAppSection {
app_type: AppType::Gemini,
prefix: "gemini_",
header_id: "gemini_header",
empty_id: "gemini_empty",
header_label: "─── Gemini ───",
log_name: "Gemini",
},
];
fn append_provider_section<'a>(
app: &'a tauri::AppHandle,
mut menu_builder: MenuBuilder<'a, tauri::Wry, tauri::AppHandle<tauri::Wry>>,
manager: Option<&crate::provider::ProviderManager>,
section: &TrayAppSection,
tray_texts: &TrayTexts,
) -> Result<MenuBuilder<'a, tauri::Wry, tauri::AppHandle<tauri::Wry>>, AppError> {
let Some(manager) = manager else {
return Ok(menu_builder);
};
let header = MenuItem::with_id(
app,
section.header_id,
section.header_label,
false,
None::<&str>,
)
.map_err(|e| AppError::Message(format!("创建{}标题失败: {e}", section.log_name)))?;
menu_builder = menu_builder.item(&header);
if manager.providers.is_empty() {
let empty_hint = MenuItem::with_id(
app,
section.empty_id,
tray_texts.no_provider_hint,
false,
None::<&str>,
)
.map_err(|e| AppError::Message(format!("创建{}空提示失败: {e}", section.log_name)))?;
return Ok(menu_builder.item(&empty_hint));
}
let mut sorted_providers: Vec<_> = manager.providers.iter().collect();
sorted_providers.sort_by(|(_, a), (_, b)| {
match (a.sort_index, b.sort_index) {
(Some(idx_a), Some(idx_b)) => return idx_a.cmp(&idx_b),
(Some(_), None) => return std::cmp::Ordering::Less,
(None, Some(_)) => return std::cmp::Ordering::Greater,
_ => {}
}
match (a.created_at, b.created_at) {
(Some(time_a), Some(time_b)) => return time_a.cmp(&time_b),
(Some(_), None) => return std::cmp::Ordering::Greater,
(None, Some(_)) => return std::cmp::Ordering::Less,
_ => {}
}
a.name.cmp(&b.name)
});
for (id, provider) in sorted_providers {
let is_current = manager.current == *id;
let item = CheckMenuItem::with_id(
app,
format!("{}{}", section.prefix, id),
&provider.name,
true,
is_current,
None::<&str>,
)
.map_err(|e| AppError::Message(format!("创建{}菜单项失败: {e}", section.log_name)))?;
menu_builder = menu_builder.item(&item);
}
Ok(menu_builder)
}
fn handle_provider_tray_event(app: &tauri::AppHandle, event_id: &str) -> bool {
for section in TRAY_SECTIONS.iter() {
if let Some(provider_id) = event_id.strip_prefix(section.prefix) {
log::info!("切换到{}供应商: {provider_id}", section.log_name);
let app_handle = app.clone();
let provider_id = provider_id.to_string();
let app_type = section.app_type.clone();
tauri::async_runtime::spawn_blocking(move || {
if let Err(e) = switch_provider_internal(&app_handle, app_type, provider_id) {
log::error!("切换{}供应商失败: {e}", section.log_name);
}
});
return true;
}
}
false
}
/// 创建动态托盘菜单
fn create_tray_menu(
app: &tauri::AppHandle,
app_state: &AppState,
) -> Result<Menu<tauri::Wry>, AppError> {
let app_settings = crate::settings::get_settings();
let tray_texts = TrayTexts::from_language(app_settings.language.as_deref().unwrap_or("zh"));
let mut menu_builder = MenuBuilder::new(app);
// 顶部:打开主界面
let show_main_item =
MenuItem::with_id(app, "show_main", tray_texts.show_main, true, None::<&str>)
.map_err(|e| AppError::Message(format!("创建打开主界面菜单失败: {e}")))?;
menu_builder = menu_builder.item(&show_main_item).separator();
// 直接添加所有供应商到主菜单(扁平化结构,更简单可靠)
for section in TRAY_SECTIONS.iter() {
let app_type_str = section.app_type.as_str();
let providers = app_state.db.get_all_providers(app_type_str)?;
// 使用有效的当前供应商 ID(验证存在性,自动清理失效 ID)
let current_id =
crate::settings::get_effective_current_provider(&app_state.db, &section.app_type)?
.unwrap_or_default();
let manager = crate::provider::ProviderManager {
providers,
current: current_id,
};
menu_builder =
append_provider_section(app, menu_builder, Some(&manager), section, &tray_texts)?;
}
// 分隔符和退出菜单
let quit_item = MenuItem::with_id(app, "quit", tray_texts.quit, true, None::<&str>)
.map_err(|e| AppError::Message(format!("创建退出菜单失败: {e}")))?;
menu_builder = menu_builder.separator().item(&quit_item);
menu_builder
.build()
.map_err(|e| AppError::Message(format!("构建菜单失败: {e}")))
}
#[cfg(target_os = "macos")]
fn apply_tray_policy(app: &tauri::AppHandle, dock_visible: bool) {
let desired_policy = if dock_visible {
ActivationPolicy::Regular
} else {
ActivationPolicy::Accessory
};
if let Err(err) = app.set_dock_visibility(dock_visible) {
log::warn!("设置 Dock 显示状态失败: {err}");
}
if let Err(err) = app.set_activation_policy(desired_policy) {
log::warn!("设置激活策略失败: {err}");
}
}
/// 处理托盘菜单事件
fn handle_tray_menu_event(app: &tauri::AppHandle, event_id: &str) {
log::info!("处理托盘菜单事件: {event_id}");
match event_id {
"show_main" => {
if let Some(window) = app.get_webview_window("main") {
#[cfg(target_os = "windows")]
{
let _ = window.set_skip_taskbar(false);
}
let _ = window.unminimize();
let _ = window.show();
let _ = window.set_focus();
#[cfg(target_os = "macos")]
{
apply_tray_policy(app, true);
}
}
}
"quit" => {
log::info!("退出应用");
app.exit(0);
}
_ => {
if handle_provider_tray_event(app, event_id) {
return;
}
log::warn!("未处理的菜单事件: {event_id}");
}
}
}
/// 统一处理 ccswitch:// 深链接 URL
///
/// - 解析 URL
@@ -113,13 +361,50 @@ fn handle_deeplink_url(
true
}
//
/// 内部切换供应商函数
fn switch_provider_internal(
app: &tauri::AppHandle,
app_type: crate::app_config::AppType,
provider_id: String,
) -> Result<(), AppError> {
if let Some(app_state) = app.try_state::<AppState>() {
// 在使用前先保存需要的值
let app_type_str = app_type.as_str().to_string();
let provider_id_clone = provider_id.clone();
crate::commands::switch_provider(app_state.clone(), app_type_str.clone(), provider_id)
.map_err(AppError::Message)?;
// 切换成功后重新创建托盘菜单
if let Ok(new_menu) = 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!("更新托盘菜单失败: {e}");
}
}
}
// 发射事件到前端,通知供应商已切换
let event_data = serde_json::json!({
"appType": app_type_str,
"providerId": provider_id_clone
});
if let Err(e) = app.emit("provider-switched", event_data) {
log::error!("发射供应商切换事件失败: {e}");
}
}
Ok(())
}
/// 更新托盘菜单的Tauri命令
#[tauri::command]
async fn update_tray_menu(
app: tauri::AppHandle,
state: tauri::State<'_, AppState>,
) -> Result<bool, String> {
match tray::create_tray_menu(&app, state.inner()) {
match create_tray_menu(&app, state.inner()) {
Ok(new_menu) => {
if let Some(tray) = app.tray_by_id("main") {
tray.set_menu(Some(new_menu))
@@ -135,19 +420,6 @@ 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();
@@ -200,7 +472,7 @@ pub fn run() {
}
#[cfg(target_os = "macos")]
{
tray::apply_tray_policy(window.app_handle(), false);
apply_tray_policy(window.app_handle(), false);
}
} else {
window.app_handle().exit(0);
@@ -223,6 +495,43 @@ 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 +617,6 @@ 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)
// ============================================================
@@ -465,7 +771,7 @@ pub fn run() {
log::info!("✓ Deep-link URL handler registered");
// 创建动态托盘菜单
let menu = tray::create_tray_menu(app.handle(), &app_state)?;
let menu = create_tray_menu(app.handle(), &app_state)?;
// 构建托盘
let mut tray_builder = TrayIconBuilder::with_id("main")
@@ -476,30 +782,15 @@ pub fn run() {
})
.menu(&menu)
.on_menu_event(|app, event| {
tray::handle_tray_menu_event(app, &event.id.0);
handle_tray_menu_event(app, &event.id.0);
})
.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)?;
@@ -516,35 +807,6 @@ pub fn run() {
}
}
// 异常退出恢复 + 代理状态自动恢复
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");
}
}
// 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(())
})
.invoke_handler(tauri::generate_handler![
@@ -580,8 +842,6 @@ 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,
@@ -596,7 +856,7 @@ 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,
@@ -637,69 +897,14 @@ pub fn run() {
commands::restore_env_backup,
// Skill management
commands::get_skills,
commands::get_skills_for_app,
commands::install_skill,
commands::install_skill_for_app,
commands::uninstall_skill,
commands::uninstall_skill_for_app,
commands::get_skill_repos,
commands::add_skill_repo,
commands::remove_skill_repo,
// Auto launch
commands::set_auto_launch,
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::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_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,
commands::get_provider_stats,
commands::get_model_stats,
commands::get_request_logs,
commands::get_request_detail,
commands::get_model_pricing,
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,
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
@@ -707,26 +912,6 @@ 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 {
@@ -740,7 +925,7 @@ pub fn run() {
let _ = window.unminimize();
let _ = window.show();
let _ = window.set_focus();
tray::apply_tray_policy(app_handle, true);
apply_tray_policy(app_handle, true);
}
}
// 处理通过自定义 URL 协议触发的打开事件(例如 ccswitch://...
@@ -806,103 +991,6 @@ 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
// ============================================================
@@ -1,22 +1,200 @@
//! Codex MCP 同步和导入模块
//!
//! 包含 Codex 的 MCP 配置管理:
//! - 从 ~/.codex/config.toml 导入
//! - 同步到 ~/.codex/config.toml
//! - JSON 到 TOML 的转换逻辑
use serde_json::{json, Value};
use std::collections::HashMap;
use crate::app_config::{McpApps, McpConfig, McpServer, MultiAppConfig};
use crate::app_config::{AppType, McpConfig, MultiAppConfig};
use crate::error::AppError;
use super::validation::{extract_server_spec, validate_server_spec};
/// 基础校验:允许 stdio/http/sse;或省略 type(视为 stdio)。对应必填字段存在
fn validate_server_spec(spec: &Value) -> Result<(), AppError> {
if !spec.is_object() {
return Err(AppError::McpValidation(
"MCP 服务器连接定义必须为 JSON 对象".into(),
));
}
let t_opt = spec.get("type").and_then(|x| x.as_str());
// 支持三种:stdio/http/sse;若缺省 type 则按 stdio 处理(与社区常见 .mcp.json 一致)
let is_stdio = t_opt.map(|t| t == "stdio").unwrap_or(true);
let is_http = t_opt.map(|t| t == "http").unwrap_or(false);
let is_sse = t_opt.map(|t| t == "sse").unwrap_or(false);
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()
if !(is_stdio || is_http || is_sse) {
return Err(AppError::McpValidation(
"MCP 服务器 type 必须是 'stdio'、'http' 或 'sse'(或省略表示 stdio".into(),
));
}
if is_stdio {
let cmd = spec.get("command").and_then(|x| x.as_str()).unwrap_or("");
if cmd.trim().is_empty() {
return Err(AppError::McpValidation(
"stdio 类型的 MCP 服务器缺少 command 字段".into(),
));
}
}
if is_http {
let url = spec.get("url").and_then(|x| x.as_str()).unwrap_or("");
if url.trim().is_empty() {
return Err(AppError::McpValidation(
"http 类型的 MCP 服务器缺少 url 字段".into(),
));
}
}
if is_sse {
let url = spec.get("url").and_then(|x| x.as_str()).unwrap_or("");
if url.trim().is_empty() {
return Err(AppError::McpValidation(
"sse 类型的 MCP 服务器缺少 url 字段".into(),
));
}
}
Ok(())
}
#[allow(dead_code)] // v3.7.0: 旧的验证逻辑,保留用于未来可能的迁移
fn validate_mcp_entry(entry: &Value) -> Result<(), AppError> {
let obj = entry
.as_object()
.ok_or_else(|| AppError::McpValidation("MCP 服务器条目必须为 JSON 对象".into()))?;
let server = obj
.get("server")
.ok_or_else(|| AppError::McpValidation("MCP 服务器条目缺少 server 字段".into()))?;
validate_server_spec(server)?;
for key in ["name", "description", "homepage", "docs"] {
if let Some(val) = obj.get(key) {
if !val.is_string() {
return Err(AppError::McpValidation(format!(
"MCP 服务器 {key} 必须为字符串"
)));
}
}
}
if let Some(tags) = obj.get("tags") {
let arr = tags
.as_array()
.ok_or_else(|| AppError::McpValidation("MCP 服务器 tags 必须为字符串数组".into()))?;
if !arr.iter().all(|item| item.is_string()) {
return Err(AppError::McpValidation(
"MCP 服务器 tags 必须为字符串数组".into(),
));
}
}
if let Some(enabled) = obj.get("enabled") {
if !enabled.is_boolean() {
return Err(AppError::McpValidation(
"MCP 服务器 enabled 必须为布尔值".into(),
));
}
}
Ok(())
}
fn normalize_server_keys(map: &mut HashMap<String, Value>) -> usize {
let mut change_count = 0usize;
let mut renames: Vec<(String, String)> = Vec::new();
for (key_ref, value) in map.iter_mut() {
let key = key_ref.clone();
let Some(obj) = value.as_object_mut() else {
continue;
};
let id_value = obj.get("id").cloned();
let target_id: String;
match id_value {
Some(id_val) => match id_val.as_str() {
Some(id_str) => {
let trimmed = id_str.trim();
if trimmed.is_empty() {
obj.insert("id".into(), json!(key.clone()));
change_count += 1;
target_id = key.clone();
} else {
if trimmed != id_str {
obj.insert("id".into(), json!(trimmed));
change_count += 1;
}
target_id = trimmed.to_string();
}
}
None => {
obj.insert("id".into(), json!(key.clone()));
change_count += 1;
target_id = key.clone();
}
},
None => {
obj.insert("id".into(), json!(key.clone()));
change_count += 1;
target_id = key.clone();
}
}
if target_id != key {
renames.push((key, target_id));
}
}
for (old_key, new_key) in renames {
if old_key == new_key {
continue;
}
if map.contains_key(&new_key) {
log::warn!("MCP 条目 '{old_key}' 的内部 id '{new_key}' 与现有键冲突,回退为原键");
if let Some(value) = map.get_mut(&old_key) {
if let Some(obj) = value.as_object_mut() {
if obj
.get("id")
.and_then(|v| v.as_str())
.map(|s| s != old_key)
.unwrap_or(true)
{
obj.insert("id".into(), json!(old_key.clone()));
change_count += 1;
}
}
}
continue;
}
if let Some(mut value) = map.remove(&old_key) {
if let Some(obj) = value.as_object_mut() {
obj.insert("id".into(), json!(new_key.clone()));
}
log::info!("MCP 条目键名已自动修复: '{old_key}' -> '{new_key}'");
map.insert(new_key, value);
change_count += 1;
}
}
change_count
}
pub fn normalize_servers_for(config: &mut MultiAppConfig, app: &AppType) -> usize {
let servers = &mut config.mcp_for_mut(app).servers;
normalize_server_keys(servers)
}
fn extract_server_spec(entry: &Value) -> Result<Value, AppError> {
let obj = entry
.as_object()
.ok_or_else(|| AppError::McpValidation("MCP 服务器条目必须为 JSON 对象".into()))?;
let server = obj
.get("server")
.ok_or_else(|| AppError::McpValidation("MCP 服务器条目缺少 server 字段".into()))?;
if !server.is_object() {
return Err(AppError::McpValidation(
"MCP 服务器 server 字段必须为 JSON 对象".into(),
));
}
Ok(server.clone())
}
/// 返回已启用的 MCP 服务器(过滤 enabled==true
@@ -42,6 +220,185 @@ fn collect_enabled_servers(cfg: &McpConfig) -> HashMap<String, Value> {
out
}
#[allow(dead_code)] // v3.7.0: 旧的分应用 API,保留用于未来可能的迁移
pub fn get_servers_snapshot_for(
config: &mut MultiAppConfig,
app: &AppType,
) -> (HashMap<String, Value>, usize) {
let normalized = normalize_servers_for(config, app);
let mut snapshot = config.mcp_for(app).servers.clone();
snapshot.retain(|id, value| {
let Some(obj) = value.as_object_mut() else {
log::warn!("跳过无效的 MCP 条目 '{id}': 必须为 JSON 对象");
return false;
};
obj.entry(String::from("id")).or_insert(json!(id));
match validate_mcp_entry(value) {
Ok(()) => true,
Err(err) => {
log::error!("config.json 中存在无效的 MCP 条目 '{id}': {err}");
false
}
}
});
(snapshot, normalized)
}
#[allow(dead_code)] // v3.7.0: 旧的分应用 API,保留用于未来可能的迁移
pub fn upsert_in_config_for(
config: &mut MultiAppConfig,
app: &AppType,
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()));
}
normalize_servers_for(config, app);
validate_mcp_entry(&spec)?;
let mut entry_obj = spec
.as_object()
.cloned()
.ok_or_else(|| AppError::McpValidation("MCP 服务器条目必须为 JSON 对象".into()))?;
if let Some(existing_id) = entry_obj.get("id") {
let Some(existing_id_str) = existing_id.as_str() else {
return Err(AppError::McpValidation("MCP 服务器 id 必须为字符串".into()));
};
if existing_id_str != id {
return Err(AppError::McpValidation(format!(
"MCP 服务器条目中的 id '{existing_id_str}' 与参数 id '{id}' 不一致"
)));
}
} else {
entry_obj.insert(String::from("id"), json!(id));
}
let value = Value::Object(entry_obj);
let servers = &mut config.mcp_for_mut(app).servers;
let before = servers.get(id).cloned();
servers.insert(id.to_string(), value);
Ok(before.is_none())
}
#[allow(dead_code)] // v3.7.0: 旧的分应用 API,保留用于未来可能的迁移
pub fn delete_in_config_for(
config: &mut MultiAppConfig,
app: &AppType,
id: &str,
) -> Result<bool, AppError> {
if id.trim().is_empty() {
return Err(AppError::InvalidInput("MCP 服务器 ID 不能为空".into()));
}
normalize_servers_for(config, app);
let existed = config.mcp_for_mut(app).servers.remove(id).is_some();
Ok(existed)
}
#[allow(dead_code)] // v3.7.0: 旧的分应用 API,保留用于未来可能的迁移
/// 设置启用状态(不执行落盘或文件同步)
pub fn set_enabled_flag_for(
config: &mut MultiAppConfig,
app: &AppType,
id: &str,
enabled: bool,
) -> Result<bool, AppError> {
if id.trim().is_empty() {
return Err(AppError::InvalidInput("MCP 服务器 ID 不能为空".into()));
}
normalize_servers_for(config, app);
if let Some(spec) = config.mcp_for_mut(app).servers.get_mut(id) {
// 写入 enabled 字段
let mut obj = spec
.as_object()
.cloned()
.ok_or_else(|| AppError::McpValidation("MCP 服务器定义必须为 JSON 对象".into()))?;
obj.insert("enabled".into(), json!(enabled));
*spec = Value::Object(obj);
} else {
// 若不存在则直接返回 false
return Ok(false);
}
Ok(true)
}
/// 将 config.json 中 enabled==true 的项投影写入 ~/.claude.json
pub fn sync_enabled_to_claude(config: &MultiAppConfig) -> Result<(), AppError> {
let enabled = collect_enabled_servers(&config.mcp.claude);
crate::claude_mcp::set_mcp_servers_map(&enabled)
}
/// 从 ~/.claude.json 导入 mcpServers 到统一结构(v3.7.0+
/// 已存在的服务器将启用 Claude 应用,不覆盖其他字段和应用状态
pub fn import_from_claude(config: &mut MultiAppConfig) -> Result<usize, AppError> {
use crate::app_config::{McpApps, McpServer};
let text_opt = crate::claude_mcp::read_mcp_json()?;
let Some(text) = text_opt else { return Ok(0) };
let v: Value = serde_json::from_str(&text)
.map_err(|e| AppError::McpValidation(format!("解析 ~/.claude.json 失败: {e}")))?;
let Some(map) = v.get("mcpServers").and_then(|x| x.as_object()) else {
return Ok(0);
};
// 确保新结构存在
let servers = config.mcp.servers.get_or_insert_with(HashMap::new);
let mut changed = 0;
let mut errors = Vec::new();
for (id, spec) in map.iter() {
// 校验:单项失败不中止,收集错误继续处理
if let Err(e) = validate_server_spec(spec) {
log::warn!("跳过无效 MCP 服务器 '{id}': {e}");
errors.push(format!("{id}: {e}"));
continue;
}
if let Some(existing) = servers.get_mut(id) {
// 已存在:仅启用 Claude 应用
if !existing.apps.claude {
existing.apps.claude = true;
changed += 1;
log::info!("MCP 服务器 '{id}' 已启用 Claude 应用");
}
} else {
// 新建服务器:默认仅启用 Claude
servers.insert(
id.clone(),
McpServer {
id: id.clone(),
name: id.clone(),
server: spec.clone(),
apps: McpApps {
claude: true,
codex: false,
gemini: false,
},
description: None,
homepage: None,
docs: None,
tags: Vec::new(),
},
);
changed += 1;
log::info!("导入新 MCP 服务器 '{id}'");
}
}
if !errors.is_empty() {
log::warn!("导入完成,但有 {} 项失败: {:?}", errors.len(), errors);
}
Ok(changed)
}
/// 从 ~/.codex/config.toml 导入 MCP 到统一结构(v3.7.0+
///
/// 格式支持:
@@ -50,6 +407,8 @@ fn collect_enabled_servers(cfg: &McpConfig) -> HashMap<String, Value> {
///
/// 已存在的服务器将启用 Codex 应用,不覆盖其他字段和应用状态
pub fn import_from_codex(config: &mut MultiAppConfig) -> Result<usize, AppError> {
use crate::app_config::{McpApps, McpServer};
let text = crate::codex_config::read_and_validate_codex_config_text()?;
if text.trim().is_empty() {
return Ok(0);
@@ -279,9 +638,6 @@ 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)
@@ -341,113 +697,111 @@ pub fn sync_enabled_to_codex(config: &MultiAppConfig) -> Result<(), AppError> {
Ok(())
}
/// 将单个 MCP 服务器同步到 Codex live 配置
/// 始终使用 Codex 官方格式 [mcp_servers],并清理可能存在的错误格式 [mcp.servers]
pub fn sync_single_server_to_codex(
/// 将 config.json 中 enabled==true 的项投影写入 ~/.gemini/settings.json
pub fn sync_enabled_to_gemini(config: &MultiAppConfig) -> Result<(), AppError> {
let enabled = collect_enabled_servers(&config.mcp.gemini);
crate::gemini_mcp::set_mcp_servers_map(&enabled)
}
/// 从 ~/.gemini/settings.json 导入 mcpServers 到统一结构(v3.7.0+
/// 已存在的服务器将启用 Gemini 应用,不覆盖其他字段和应用状态
pub fn import_from_gemini(config: &mut MultiAppConfig) -> Result<usize, AppError> {
use crate::app_config::{McpApps, McpServer};
let text_opt = crate::gemini_mcp::read_mcp_json()?;
let Some(text) = text_opt else { return Ok(0) };
let v: Value = serde_json::from_str(&text)
.map_err(|e| AppError::McpValidation(format!("解析 ~/.gemini/settings.json 失败: {e}")))?;
let Some(map) = v.get("mcpServers").and_then(|x| x.as_object()) else {
return Ok(0);
};
// 确保新结构存在
let servers = config.mcp.servers.get_or_insert_with(HashMap::new);
let mut changed = 0;
let mut errors = Vec::new();
for (id, spec) in map.iter() {
// 校验:单项失败不中止,收集错误继续处理
if let Err(e) = validate_server_spec(spec) {
log::warn!("跳过无效 MCP 服务器 '{id}': {e}");
errors.push(format!("{id}: {e}"));
continue;
}
if let Some(existing) = servers.get_mut(id) {
// 已存在:仅启用 Gemini 应用
if !existing.apps.gemini {
existing.apps.gemini = true;
changed += 1;
log::info!("MCP 服务器 '{id}' 已启用 Gemini 应用");
}
} else {
// 新建服务器:默认仅启用 Gemini
servers.insert(
id.clone(),
McpServer {
id: id.clone(),
name: id.clone(),
server: spec.clone(),
apps: McpApps {
claude: false,
codex: false,
gemini: true,
},
description: None,
homepage: None,
docs: None,
tags: Vec::new(),
},
);
changed += 1;
log::info!("导入新 MCP 服务器 '{id}'");
}
}
if !errors.is_empty() {
log::warn!("导入完成,但有 {} 项失败: {:?}", errors.len(), errors);
}
Ok(changed)
}
// ============================================================================
// v3.7.0 新增:单个服务器同步和删除函数
// ============================================================================
/// 将单个 MCP 服务器同步到 Claude live 配置
pub fn sync_single_server_to_claude(
_config: &MultiAppConfig,
id: &str,
server_spec: &Value,
) -> Result<(), AppError> {
if !should_sync_codex_mcp() {
return Ok(());
}
use toml_edit::Item;
// 读取现有的 MCP 配置
let current = crate::claude_mcp::read_mcp_servers_map()?;
// 读取现有的 config.toml
let config_path = crate::codex_config::get_codex_config_path();
// 创建新的 HashMap,包含现有的所有服务器 + 当前要同步的服务器
let mut updated = current;
updated.insert(id.to_string(), server_spec.clone());
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()
}
}
} else {
toml_edit::DocumentMut::new()
};
// 清理可能存在的错误格式 [mcp.servers]
if let Some(mcp_item) = doc.get_mut("mcp") {
if let Some(tbl) = mcp_item.as_table_like_mut() {
if tbl.contains_key("servers") {
log::warn!("检测到错误的 MCP 格式 [mcp.servers],正在清理并迁移到 [mcp_servers]");
tbl.remove("servers");
}
}
}
// 确保 [mcp_servers] 表存在
if !doc.contains_key("mcp_servers") {
doc["mcp_servers"] = toml_edit::table();
}
// 将 JSON 服务器规范转换为 TOML 表
let toml_table = json_server_to_toml_table(server_spec)?;
// 使用唯一正确的格式:[mcp_servers]
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)?;
Ok(())
// 写回
crate::claude_mcp::set_mcp_servers_map(&updated)
}
/// 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();
/// 从 Claude live 配置中移除单个 MCP 服务器
pub fn remove_server_from_claude(id: &str) -> Result<(), AppError> {
// 读取现有的 MCP 配置
let mut current = crate::claude_mcp::read_mcp_servers_map()?;
if !config_path.exists() {
return Ok(()); // 文件不存在,无需删除
}
// 移除指定服务器
current.remove(id);
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(());
}
};
// 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()) {
mcp_servers.remove(id);
}
// 同时清理可能存在于错误位置的数据:[mcp.servers](如果存在)
if let Some(mcp_table) = doc.get_mut("mcp").and_then(|t| t.as_table_mut()) {
if let Some(servers) = mcp_table.get_mut("servers").and_then(|s| s.as_table_mut()) {
if servers.remove(id).is_some() {
log::warn!("从错误的 MCP 格式 [mcp.servers] 中清理了服务器 '{id}'");
}
}
}
// 写回文件
let new_text = doc.to_string();
crate::config::write_text_file(&config_path, &new_text)?;
Ok(())
// 写回
crate::claude_mcp::set_mcp_servers_map(&current)
}
// ============================================================================
// TOML 转换辅助函数
// ============================================================================
/// 通用 JSON 值到 TOML 值转换器(支持简单类型和浅层嵌套)
///
/// 支持的类型转换:
@@ -676,3 +1030,117 @@ fn json_server_to_toml_table(spec: &Value) -> Result<toml_edit::Table, AppError>
Ok(t)
}
/// 将单个 MCP 服务器同步到 Codex live 配置
/// 始终使用 Codex 官方格式 [mcp_servers],并清理可能存在的错误格式 [mcp.servers]
pub fn sync_single_server_to_codex(
_config: &MultiAppConfig,
id: &str,
server_spec: &Value,
) -> Result<(), AppError> {
use toml_edit::Item;
// 读取现有的 config.toml
let config_path = crate::codex_config::get_codex_config_path();
let mut doc = if config_path.exists() {
let content =
std::fs::read_to_string(&config_path).map_err(|e| AppError::io(&config_path, e))?;
content
.parse::<toml_edit::DocumentMut>()
.map_err(|e| AppError::McpValidation(format!("解析 Codex config.toml 失败: {e}")))?
} else {
toml_edit::DocumentMut::new()
};
// 清理可能存在的错误格式 [mcp.servers]
if let Some(mcp_item) = doc.get_mut("mcp") {
if let Some(tbl) = mcp_item.as_table_like_mut() {
if tbl.contains_key("servers") {
log::warn!("检测到错误的 MCP 格式 [mcp.servers],正在清理并迁移到 [mcp_servers]");
tbl.remove("servers");
}
}
}
// 确保 [mcp_servers] 表存在
if !doc.contains_key("mcp_servers") {
doc["mcp_servers"] = toml_edit::table();
}
// 将 JSON 服务器规范转换为 TOML 表
let toml_table = json_server_to_toml_table(server_spec)?;
// 使用唯一正确的格式:[mcp_servers]
doc["mcp_servers"][id] = Item::Table(toml_table);
// 写回文件
std::fs::write(&config_path, doc.to_string()).map_err(|e| AppError::io(&config_path, e))?;
Ok(())
}
/// 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> {
let config_path = crate::codex_config::get_codex_config_path();
if !config_path.exists() {
return Ok(()); // 文件不存在,无需删除
}
let content =
std::fs::read_to_string(&config_path).map_err(|e| AppError::io(&config_path, e))?;
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()) {
mcp_servers.remove(id);
}
// 同时清理可能存在于错误位置的数据:[mcp.servers](如果存在)
if let Some(mcp_table) = doc.get_mut("mcp").and_then(|t| t.as_table_mut()) {
if let Some(servers) = mcp_table.get_mut("servers").and_then(|s| s.as_table_mut()) {
if servers.remove(id).is_some() {
log::warn!("从错误的 MCP 格式 [mcp.servers] 中清理了服务器 '{id}'");
}
}
}
// 写回文件
std::fs::write(&config_path, doc.to_string()).map_err(|e| AppError::io(&config_path, e))?;
Ok(())
}
/// 将单个 MCP 服务器同步到 Gemini live 配置
pub fn sync_single_server_to_gemini(
_config: &MultiAppConfig,
id: &str,
server_spec: &Value,
) -> Result<(), AppError> {
// 读取现有的 MCP 配置
let current = crate::gemini_mcp::read_mcp_servers_map()?;
// 创建新的 HashMap,包含现有的所有服务器 + 当前要同步的服务器
let mut updated = current;
updated.insert(id.to_string(), server_spec.clone());
// 写回
crate::gemini_mcp::set_mcp_servers_map(&updated)
}
/// 从 Gemini live 配置中移除单个 MCP 服务器
pub fn remove_server_from_gemini(id: &str) -> Result<(), AppError> {
// 读取现有的 MCP 配置
let mut current = crate::gemini_mcp::read_mcp_servers_map()?;
// 移除指定服务器
current.remove(id);
// 写回
crate::gemini_mcp::set_mcp_servers_map(&current)
}
-146
View File
@@ -1,146 +0,0 @@
//! Claude MCP 同步和导入模块
use serde_json::Value;
use std::collections::HashMap;
use crate::app_config::{McpApps, McpConfig, McpServer, MultiAppConfig};
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();
for (id, entry) in cfg.servers.iter() {
let enabled = entry
.get("enabled")
.and_then(|v| v.as_bool())
.unwrap_or(false);
if !enabled {
continue;
}
match extract_server_spec(entry) {
Ok(spec) => {
out.insert(id.clone(), spec);
}
Err(err) => {
log::warn!("跳过无效的 MCP 条目 '{id}': {err}");
}
}
}
out
}
/// 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)
}
/// 从 ~/.claude.json 导入 mcpServers 到统一结构(v3.7.0+
/// 已存在的服务器将启用 Claude 应用,不覆盖其他字段和应用状态
pub fn import_from_claude(config: &mut MultiAppConfig) -> Result<usize, AppError> {
let text_opt = crate::claude_mcp::read_mcp_json()?;
let Some(text) = text_opt else { return Ok(0) };
let v: Value = serde_json::from_str(&text)
.map_err(|e| AppError::McpValidation(format!("解析 ~/.claude.json 失败: {e}")))?;
let Some(map) = v.get("mcpServers").and_then(|x| x.as_object()) else {
return Ok(0);
};
// 确保新结构存在
let servers = config.mcp.servers.get_or_insert_with(HashMap::new);
let mut changed = 0;
let mut errors = Vec::new();
for (id, spec) in map.iter() {
// 校验:单项失败不中止,收集错误继续处理
if let Err(e) = validate_server_spec(spec) {
log::warn!("跳过无效 MCP 服务器 '{id}': {e}");
errors.push(format!("{id}: {e}"));
continue;
}
if let Some(existing) = servers.get_mut(id) {
// 已存在:仅启用 Claude 应用
if !existing.apps.claude {
existing.apps.claude = true;
changed += 1;
log::info!("MCP 服务器 '{id}' 已启用 Claude 应用");
}
} else {
// 新建服务器:默认仅启用 Claude
servers.insert(
id.clone(),
McpServer {
id: id.clone(),
name: id.clone(),
server: spec.clone(),
apps: McpApps {
claude: true,
codex: false,
gemini: false,
},
description: None,
homepage: None,
docs: None,
tags: Vec::new(),
},
);
changed += 1;
log::info!("导入新 MCP 服务器 '{id}'");
}
}
if !errors.is_empty() {
log::warn!("导入完成,但有 {} 项失败: {:?}", errors.len(), errors);
}
Ok(changed)
}
/// 将单个 MCP 服务器同步到 Claude live 配置
pub fn sync_single_server_to_claude(
_config: &MultiAppConfig,
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()?;
// 创建新的 HashMap,包含现有的所有服务器 + 当前要同步的服务器
let mut updated = current;
updated.insert(id.to_string(), server_spec.clone());
// 写回
crate::claude_mcp::set_mcp_servers_map(&updated)
}
/// 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()?;
// 移除指定服务器
current.remove(id);
// 写回
crate::claude_mcp::set_mcp_servers_map(&current)
}
-141
View File
@@ -1,141 +0,0 @@
//! Gemini MCP 同步和导入模块
use serde_json::Value;
use std::collections::HashMap;
use crate::app_config::{McpApps, McpConfig, McpServer, MultiAppConfig};
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();
for (id, entry) in cfg.servers.iter() {
let enabled = entry
.get("enabled")
.and_then(|v| v.as_bool())
.unwrap_or(false);
if !enabled {
continue;
}
match extract_server_spec(entry) {
Ok(spec) => {
out.insert(id.clone(), spec);
}
Err(err) => {
log::warn!("跳过无效的 MCP 条目 '{id}': {err}");
}
}
}
out
}
/// 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)
}
/// 从 Gemini MCP 配置导入到统一结构(v3.7.0+)
/// 已存在的服务器将启用 Gemini 应用,不覆盖其他字段和应用状态
pub fn import_from_gemini(config: &mut MultiAppConfig) -> Result<usize, AppError> {
let map = crate::gemini_mcp::read_mcp_servers_map()?;
if map.is_empty() {
return Ok(0);
}
// 确保新结构存在
let servers = config.mcp.servers.get_or_insert_with(HashMap::new);
let mut changed = 0;
let mut errors = Vec::new();
for (id, spec) in map.iter() {
// 校验:单项失败不中止,收集错误继续处理
if let Err(e) = validate_server_spec(spec) {
log::warn!("跳过无效 MCP 服务器 '{id}': {e}");
errors.push(format!("{id}: {e}"));
continue;
}
if let Some(existing) = servers.get_mut(id) {
// 已存在:仅启用 Gemini 应用
if !existing.apps.gemini {
existing.apps.gemini = true;
changed += 1;
log::info!("MCP 服务器 '{id}' 已启用 Gemini 应用");
}
} else {
// 新建服务器:默认仅启用 Gemini
servers.insert(
id.clone(),
McpServer {
id: id.clone(),
name: id.clone(),
server: spec.clone(),
apps: McpApps {
claude: false,
codex: false,
gemini: true,
},
description: None,
homepage: None,
docs: None,
tags: Vec::new(),
},
);
changed += 1;
log::info!("导入新 MCP 服务器 '{id}'");
}
}
if !errors.is_empty() {
log::warn!("导入完成,但有 {} 项失败: {:?}", errors.len(), errors);
}
Ok(changed)
}
/// 将单个 MCP 服务器同步到 Gemini live 配置
pub fn sync_single_server_to_gemini(
_config: &MultiAppConfig,
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()?;
// 添加/更新当前服务器
current.insert(id.to_string(), server_spec.clone());
// 写回
crate::gemini_mcp::set_mcp_servers_map(&current)
}
/// 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()?;
// 移除指定服务器
current.remove(id);
// 写回
crate::gemini_mcp::set_mcp_servers_map(&current)
}
-28
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@@ -1,28 +0,0 @@
//! MCP (Model Context Protocol) 服务器管理模块
//!
//! 本模块负责 MCP 服务器配置的验证、同步和导入导出。
//!
//! ## 模块结构
//!
//! - `validation` - 服务器配置验证
//! - `claude` - Claude MCP 同步和导入
//! - `codex` - Codex MCP 同步和导入(含 TOML 转换)
//! - `gemini` - Gemini MCP 同步和导入
mod claude;
mod codex;
mod gemini;
mod validation;
// 重新导出公共 API
pub use claude::{
import_from_claude, remove_server_from_claude, sync_enabled_to_claude,
sync_single_server_to_claude,
};
pub use codex::{
import_from_codex, remove_server_from_codex, sync_enabled_to_codex, sync_single_server_to_codex,
};
pub use gemini::{
import_from_gemini, remove_server_from_gemini, sync_enabled_to_gemini,
sync_single_server_to_gemini,
};
-69
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@@ -1,69 +0,0 @@
//! MCP 服务器配置验证模块
use serde_json::Value;
use crate::error::AppError;
/// 基础校验:允许 stdio/http/sse;或省略 type(视为 stdio)。对应必填字段存在
pub fn validate_server_spec(spec: &Value) -> Result<(), AppError> {
if !spec.is_object() {
return Err(AppError::McpValidation(
"MCP 服务器连接定义必须为 JSON 对象".into(),
));
}
let t_opt = spec.get("type").and_then(|x| x.as_str());
// 支持三种:stdio/http/sse;若缺省 type 则按 stdio 处理(与社区常见 .mcp.json 一致)
let is_stdio = t_opt.map(|t| t == "stdio").unwrap_or(true);
let is_http = t_opt.map(|t| t == "http").unwrap_or(false);
let is_sse = t_opt.map(|t| t == "sse").unwrap_or(false);
if !(is_stdio || is_http || is_sse) {
return Err(AppError::McpValidation(
"MCP 服务器 type 必须是 'stdio'、'http' 或 'sse'(或省略表示 stdio".into(),
));
}
if is_stdio {
let cmd = spec.get("command").and_then(|x| x.as_str()).unwrap_or("");
if cmd.trim().is_empty() {
return Err(AppError::McpValidation(
"stdio 类型的 MCP 服务器缺少 command 字段".into(),
));
}
}
if is_http {
let url = spec.get("url").and_then(|x| x.as_str()).unwrap_or("");
if url.trim().is_empty() {
return Err(AppError::McpValidation(
"http 类型的 MCP 服务器缺少 url 字段".into(),
));
}
}
if is_sse {
let url = spec.get("url").and_then(|x| x.as_str()).unwrap_or("");
if url.trim().is_empty() {
return Err(AppError::McpValidation(
"sse 类型的 MCP 服务器缺少 url 字段".into(),
));
}
}
Ok(())
}
/// 从 MCP 条目中提取服务器规范
pub fn extract_server_spec(entry: &Value) -> Result<Value, AppError> {
let obj = entry
.as_object()
.ok_or_else(|| AppError::McpValidation("MCP 服务器条目必须为 JSON 对象".into()))?;
let server = obj
.get("server")
.ok_or_else(|| AppError::McpValidation("MCP 服务器条目缺少 server 字段".into()))?;
if !server.is_object() {
return Err(AppError::McpValidation(
"MCP 服务器 server 字段必须为 JSON 对象".into(),
));
}
Ok(server.clone())
}
-296
View File
@@ -36,10 +36,6 @@ 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,
}
impl Provider {
@@ -62,7 +58,6 @@ impl Provider {
meta: None,
icon: None,
icon_color: None,
in_failover_queue: false,
}
}
}
@@ -156,15 +151,6 @@ pub struct ProviderMeta {
skip_serializing_if = "Option::is_none"
)]
pub partner_promotion_key: Option<String>,
/// 成本倍数(用于计算实际成本)
#[serde(rename = "costMultiplier", skip_serializing_if = "Option::is_none")]
pub cost_multiplier: Option<String>,
/// 每日消费限额(USD
#[serde(rename = "limitDailyUsd", skip_serializing_if = "Option::is_none")]
pub limit_daily_usd: Option<String>,
/// 每月消费限额(USD
#[serde(rename = "limitMonthlyUsd", skip_serializing_if = "Option::is_none")]
pub limit_monthly_usd: Option<String>,
}
impl ProviderManager {
@@ -173,285 +159,3 @@ 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);
}
}
-506
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@@ -1,506 +0,0 @@
//! 熔断器模块
//!
//! 实现熔断器模式,用于防止向不健康的供应商发送请求
use serde::{Deserialize, Serialize};
use std::sync::atomic::{AtomicU32, Ordering};
use std::sync::Arc;
use std::time::Instant;
use tokio::sync::RwLock;
/// 熔断器状态
#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
#[serde(rename_all = "snake_case")]
pub enum CircuitState {
/// 关闭状态 - 正常工作
Closed,
/// 打开状态 - 熔断激活,拒绝请求
Open,
/// 半开状态 - 尝试恢复,允许部分请求通过
HalfOpen,
}
impl std::fmt::Display for CircuitState {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
match self {
CircuitState::Closed => write!(f, "closed"),
CircuitState::Open => write!(f, "open"),
CircuitState::HalfOpen => write!(f, "half_open"),
}
}
}
/// 熔断器配置
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct CircuitBreakerConfig {
/// 失败阈值 - 连续失败多少次后打开熔断器
pub failure_threshold: u32,
/// 成功阈值 - 半开状态下成功多少次后关闭熔断器
pub success_threshold: u32,
/// 超时时间 - 熔断器打开后多久尝试半开(秒)
pub timeout_seconds: u64,
/// 错误率阈值 - 错误率超过此值时打开熔断器 (0.0-1.0)
pub error_rate_threshold: f64,
/// 最小请求数 - 计算错误率前的最小请求数
pub min_requests: u32,
}
impl Default for CircuitBreakerConfig {
fn default() -> Self {
Self {
failure_threshold: 5,
success_threshold: 2,
timeout_seconds: 60,
error_rate_threshold: 0.5,
min_requests: 10,
}
}
}
/// 熔断器实例
pub struct CircuitBreaker {
/// 当前状态
state: Arc<RwLock<CircuitState>>,
/// 连续失败计数
consecutive_failures: Arc<AtomicU32>,
/// 连续成功计数(半开状态)
consecutive_successes: Arc<AtomicU32>,
/// 总请求计数
total_requests: Arc<AtomicU32>,
/// 失败请求计数
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,
}
impl CircuitBreaker {
/// 创建新的熔断器
pub fn new(config: CircuitBreakerConfig) -> Self {
Self {
state: Arc::new(RwLock::new(CircuitState::Closed)),
consecutive_failures: Arc::new(AtomicU32::new(0)),
consecutive_successes: Arc::new(AtomicU32::new(0)),
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)),
}
}
/// 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 {
let state = *self.state.read().await;
let config = self.config.read().await;
match state {
CircuitState::Closed | CircuitState::HalfOpen => true,
CircuitState::Open => {
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;
return true;
}
}
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(),
}
}
/// 记录成功
pub async fn record_success(&self, used_half_open_permit: bool) {
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);
self.total_requests.fetch_add(1, Ordering::SeqCst);
match state {
CircuitState::HalfOpen => {
let successes = self.consecutive_successes.fetch_add(1, Ordering::SeqCst) + 1;
log::debug!(
"Circuit breaker HalfOpen: {} consecutive successes (threshold: {})",
successes,
config.success_threshold
);
if successes >= config.success_threshold {
drop(config); // 释放读锁再转换状态
log::info!("Circuit breaker transitioning from HalfOpen to Closed (success threshold reached)");
self.transition_to_closed().await;
}
}
CircuitState::Closed => {
log::debug!("Circuit breaker Closed: request succeeded");
}
_ => {}
}
}
/// 记录失败
pub async fn record_failure(&self, used_half_open_permit: bool) {
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;
self.total_requests.fetch_add(1, Ordering::SeqCst);
self.failed_requests.fetch_add(1, Ordering::SeqCst);
// 重置成功计数
self.consecutive_successes.store(0, Ordering::SeqCst);
log::debug!(
"Circuit breaker {:?}: {} consecutive failures (threshold: {})",
state,
failures,
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 => {
// 检查连续失败次数
if failures >= config.failure_threshold {
log::warn!(
"Circuit breaker opening due to {} consecutive failures (threshold: {})",
failures,
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 {
let error_rate = failed as f64 / total as f64;
log::debug!(
"Circuit breaker error rate: {:.2}% ({}/{} requests)",
error_rate * 100.0,
failed,
total
);
if error_rate >= 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
);
drop(config); // 释放读锁再转换状态
self.transition_to_open().await;
}
}
}
}
_ => {}
}
}
/// 获取当前状态
#[allow(dead_code)]
pub async fn get_state(&self) -> CircuitState {
*self.state.read().await
}
/// 获取统计信息
#[allow(dead_code)]
pub async fn get_stats(&self) -> CircuitBreakerStats {
CircuitBreakerStats {
state: *self.state.read().await,
consecutive_failures: self.consecutive_failures.load(Ordering::SeqCst),
consecutive_successes: self.consecutive_successes.load(Ordering::SeqCst),
total_requests: self.total_requests.load(Ordering::SeqCst),
failed_requests: self.failed_requests.load(Ordering::SeqCst),
}
}
/// 重置熔断器(手动恢复)
#[allow(dead_code)]
pub async fn reset(&self) {
log::info!("Circuit breaker manually reset to Closed state");
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;
*self.last_opened_at.write().await = Some(Instant::now());
self.consecutive_failures.store(0, Ordering::SeqCst);
self.consecutive_successes.store(0, Ordering::SeqCst);
}
/// 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.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
async fn transition_to_closed(&self) {
*self.state.write().await = CircuitState::Closed;
self.consecutive_failures.store(0, Ordering::SeqCst);
self.consecutive_successes.store(0, Ordering::SeqCst);
// 重置计数器
self.total_requests.store(0, Ordering::SeqCst);
self.failed_requests.store(0, Ordering::SeqCst);
}
}
/// 熔断器统计信息
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(rename_all = "camelCase")]
pub struct CircuitBreakerStats {
pub state: CircuitState,
pub consecutive_failures: u32,
pub consecutive_successes: u32,
pub total_requests: u32,
pub failed_requests: u32,
}
#[cfg(test)]
mod tests {
use super::*;
#[tokio::test]
async fn test_circuit_breaker_closed_to_open() {
let config = CircuitBreakerConfig {
failure_threshold: 3,
..Default::default()
};
let breaker = CircuitBreaker::new(config);
// 初始状态应该是关闭
assert_eq!(breaker.get_state().await, CircuitState::Closed);
assert!(breaker.allow_request().await.allowed);
// 记录 3 次失败
for _ in 0..3 {
breaker.record_failure(false).await;
}
// 应该转换到打开状态
assert_eq!(breaker.get_state().await, CircuitState::Open);
assert!(!breaker.allow_request().await.allowed);
}
#[tokio::test]
async fn test_circuit_breaker_half_open_to_closed() {
let config = CircuitBreakerConfig {
failure_threshold: 2,
success_threshold: 2,
..Default::default()
};
let breaker = CircuitBreaker::new(config);
// 打开熔断器
breaker.record_failure(false).await;
breaker.record_failure(false).await;
assert_eq!(breaker.get_state().await, CircuitState::Open);
// 手动转换到半开状态
breaker.transition_to_half_open().await;
assert_eq!(breaker.get_state().await, CircuitState::HalfOpen);
// 记录 2 次成功
breaker.record_success(false).await;
breaker.record_success(false).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 {
failure_threshold: 2,
..Default::default()
};
let breaker = CircuitBreaker::new(config);
// 打开熔断器
breaker.record_failure(false).await;
breaker.record_failure(false).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);
}
}
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@@ -1,195 +0,0 @@
use axum::{
http::StatusCode,
response::{IntoResponse, Response},
Json,
};
use serde_json::json;
use thiserror::Error;
#[derive(Debug, Error)]
pub enum ProxyError {
#[error("服务器已在运行")]
AlreadyRunning,
#[error("服务器未运行")]
NotRunning,
#[error("地址绑定失败: {0}")]
BindFailed(String),
#[error("请求转发失败: {0}")]
ForwardFailed(String),
#[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),
#[error("上游错误 (状态码 {status}): {body:?}")]
UpstreamError { status: u16, body: Option<String> },
#[error("超过最大重试次数")]
MaxRetriesExceeded,
#[error("数据库错误: {0}")]
DatabaseError(String),
#[error("配置错误: {0}")]
ConfigError(String),
#[allow(dead_code)]
#[error("格式转换错误: {0}")]
TransformError(String),
#[allow(dead_code)]
#[error("无效的请求: {0}")]
InvalidRequest(String),
#[error("超时: {0}")]
Timeout(String),
/// 流式响应空闲超时
#[allow(dead_code)]
#[error("流式响应空闲超时: {0}秒无数据")]
StreamIdleTimeout(u64),
/// 认证错误
#[allow(dead_code)]
#[error("认证失败: {0}")]
AuthError(String),
#[allow(dead_code)]
#[error("内部错误: {0}")]
Internal(String),
}
impl IntoResponse for ProxyError {
fn into_response(self) -> Response {
let (status, body) = match &self {
ProxyError::UpstreamError {
status: upstream_status,
body: upstream_body,
} => {
let http_status =
StatusCode::from_u16(*upstream_status).unwrap_or(StatusCode::BAD_GATEWAY);
// 尝试解析上游响应体为 JSON,如果失败则包装为字符串
let error_body = if let Some(body_str) = upstream_body {
if let Ok(json_body) = serde_json::from_str::<serde_json::Value>(body_str) {
// 上游返回的是 JSON,直接透传
json_body
} else {
// 上游返回的不是 JSON,包装为错误消息
json!({
"error": {
"message": body_str,
"type": "upstream_error",
}
})
}
} else {
json!({
"error": {
"message": format!("Upstream error (status {})", upstream_status),
"type": "upstream_error",
}
})
};
(http_status, error_body)
}
_ => {
let (http_status, message) = match &self {
ProxyError::AlreadyRunning => (StatusCode::CONFLICT, self.to_string()),
ProxyError::NotRunning => (StatusCode::SERVICE_UNAVAILABLE, self.to_string()),
ProxyError::BindFailed(_) => {
(StatusCode::INTERNAL_SERVER_ERROR, self.to_string())
}
ProxyError::ForwardFailed(_) => (StatusCode::BAD_GATEWAY, self.to_string()),
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())
}
ProxyError::MaxRetriesExceeded => {
(StatusCode::SERVICE_UNAVAILABLE, self.to_string())
}
ProxyError::DatabaseError(_) => {
(StatusCode::INTERNAL_SERVER_ERROR, self.to_string())
}
ProxyError::ConfigError(_) => (StatusCode::BAD_REQUEST, self.to_string()),
ProxyError::TransformError(_) => {
(StatusCode::UNPROCESSABLE_ENTITY, self.to_string())
}
ProxyError::InvalidRequest(_) => (StatusCode::BAD_REQUEST, self.to_string()),
ProxyError::Timeout(_) => (StatusCode::GATEWAY_TIMEOUT, self.to_string()),
ProxyError::StreamIdleTimeout(_) => {
(StatusCode::GATEWAY_TIMEOUT, self.to_string())
}
ProxyError::AuthError(_) => (StatusCode::UNAUTHORIZED, self.to_string()),
ProxyError::Internal(_) => {
(StatusCode::INTERNAL_SERVER_ERROR, self.to_string())
}
ProxyError::UpstreamError { .. } => unreachable!(),
};
let error_body = json!({
"error": {
"message": message,
"type": "proxy_error",
}
});
(http_status, error_body)
}
};
(status, Json(body)).into_response()
}
}
/// 错误分类
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub enum ErrorCategory {
/// 可重试错误(网络问题、5xx)
Retryable, // 网络超时、5xx 错误
/// 不可重试错误(4xx、认证失败)
NonRetryable, // 认证失败、参数错误、4xx 错误
#[allow(dead_code)]
ClientAbort, // 客户端主动中断
}
/// 判断错误是否可重试
#[allow(dead_code)]
pub fn categorize_error(error: &reqwest::Error) -> ErrorCategory {
if error.is_timeout() || error.is_connect() {
return ErrorCategory::Retryable;
}
if let Some(status) = error.status() {
if status.is_server_error() {
ErrorCategory::Retryable
} else if status.is_client_error() {
ErrorCategory::NonRetryable
} else {
ErrorCategory::Retryable
}
} else {
ErrorCategory::Retryable
}
}
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@@ -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
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@@ -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)
}
}
-697
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@@ -1,697 +0,0 @@
//! 请求转发器
//!
//! 负责将请求转发到上游Provider,支持故障转移
use super::{
body_filter::filter_private_params_with_whitelist,
error::*,
failover_switch::FailoverSwitchManager,
provider_router::ProviderRouter,
providers::{get_adapter, ProviderAdapter},
types::ProxyStatus,
ProxyError,
};
use crate::{app_config::AppType, 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>,
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,
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));
}
let client = client_builder
.build()
.expect("Failed to create HTTP client");
Self {
client,
router,
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> {
// 获取适配器
let adapter = get_adapter(app_type);
let app_type_str = app_type.as_str();
if providers.is_empty() {
return Err(ForwardError {
error: ProxyError::NoAvailableProvider,
provider: None,
});
}
log::info!(
"[{}] 故障转移链: {} 个可用供应商",
app_type_str,
providers.len()
);
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;
// 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;
log::info!(
"[{}] 尝试 {}/{} - 使用Provider: {} (sort_index: {})",
app_type_str,
attempted_providers,
providers.len(),
provider.name,
provider.sort_index.unwrap_or(999999)
);
// 更新状态中的当前Provider信息
{
let mut status = self.status.write().await;
status.current_provider = Some(provider.name.clone());
status.current_provider_id = Some(provider.id.clone());
status.total_requests += 1;
status.last_request_at = Some(chrono::Utc::now().to_rfc3339());
}
let start = Instant::now();
// 转发请求(每个 Provider 只尝试一次,重试由客户端控制)
match self
.forward(provider, endpoint, &body, &headers, adapter.as_ref())
.await
{
Ok(response) => {
let latency = start.elapsed().as_millis() as u64;
// 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,
)
.await
{
log::warn!("Failed to record success: {e}");
}
// 更新当前应用类型使用的 provider
{
let mut current_providers = self.current_providers.write().await;
current_providers.insert(
app_type_str.to_string(),
(provider.id.clone(), provider.name.clone()),
);
}
// 更新成功统计
{
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 {
status.failover_count += 1;
log::info!(
"[{}] 代理目标已切换到 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 {
status.success_rate = (status.success_requests as f32
/ status.total_requests as f32)
* 100.0;
}
}
log::info!(
"[{}] 请求成功 - Provider: {} - {}ms",
app_type_str,
provider.name,
latency
);
return Ok(ForwardResult {
response,
provider: provider.clone(),
});
}
Err(e) => {
let latency = start.elapsed().as_millis() as u64;
// 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()),
)
.await
{
log::warn!("Failed to record failure: {record_err}");
}
// 分类错误
let category = self.categorize_proxy_error(&e);
match category {
ErrorCategory::Retryable => {
// 可重试:更新错误信息,继续尝试下一个供应商
{
let mut status = self.status.write().await;
status.last_error =
Some(format!("Provider {} 失败: {}", provider.name, e));
}
log::warn!(
"[{}] Provider {} 失败(可重试): {} - {}ms",
app_type_str,
provider.name,
e,
latency
);
last_error = Some(e);
last_provider = Some(provider.clone());
// 继续尝试下一个供应商
continue;
}
ErrorCategory::NonRetryable | ErrorCategory::ClientAbort => {
// 不可重试:直接返回错误
{
let mut status = self.status.write().await;
status.failed_requests += 1;
status.last_error = Some(e.to_string());
if status.total_requests > 0 {
status.success_rate = (status.success_requests as f32
/ status.total_requests as f32)
* 100.0;
}
}
log::error!(
"[{}] Provider {} 失败(不可重试): {}",
app_type_str,
provider.name,
e
);
return Err(ForwardError {
error: e,
provider: Some(provider.clone()),
});
}
}
}
}
}
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;
status.failed_requests += 1;
status.last_error = Some("所有供应商都失败".to_string());
if status.total_requests > 0 {
status.success_rate =
(status.success_requests as f32 / status.total_requests as f32) * 100.0;
}
}
log::error!(
"[{}] 所有 {} 个供应商都失败了",
app_type_str,
providers.len()
);
Err(ForwardError {
error: last_error.unwrap_or(ProxyError::MaxRetriesExceeded),
provider: last_provider,
})
}
/// 转发单个请求(使用适配器)
async fn forward(
&self,
provider: &Provider,
endpoint: &str,
body: &Value,
headers: &axum::http::HeaderMap,
adapter: &dyn ProviderAdapter,
) -> Result<Response, ProxyError> {
// 使用适配器提取 base_url
let base_url = adapter.extract_base_url(provider)?;
log::info!("[{}] base_url: {}", adapter.name(), base_url);
// 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{}",
adapter.name(),
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)?;
log::info!(
"[{}] >>> 转换后的请求 JSON:\n{}",
adapter.name(),
serde_json::to_string_pretty(&transformed).unwrap_or_default()
);
transformed
} else {
mapped_body
};
// 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(),
provider.name,
url
);
// 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();
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);
}
}
// 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()));
// 使用适配器添加认证头
if let Some(auth) = adapter.extract_auth(provider) {
log::debug!(
"[{}] 使用认证: {:?} (key: {})",
adapter.name(),
auth.strategy,
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: {}",
adapter.name(),
provider.name
);
}
// 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| {
log::error!("[{}] 请求失败: {}", adapter.name(), e);
if e.is_timeout() {
ProxyError::Timeout(format!("请求超时: {e}"))
} else if e.is_connect() {
ProxyError::ForwardFailed(format!("连接失败: {e}"))
} else {
ProxyError::ForwardFailed(e.to_string())
}
})?;
// 检查响应状态
let status = response.status();
log::info!("[{}] 响应状态: {}", adapter.name(), status);
if status.is_success() {
Ok(response)
} else {
let status_code = status.as_u16();
let body_text = response.text().await.ok();
log::error!(
"[{}] 上游错误 ({}): {:?}",
adapter.name(),
status_code,
body_text
);
Err(ProxyError::UpstreamError {
status: status_code,
body: body_text,
})
}
}
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::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,
}
}
}
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@@ -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
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@@ -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,
}
}
}
}
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@@ -1,537 +0,0 @@
//! 请求处理器
//!
//! 处理各种API端点的HTTP请求
//!
//! 重构后的结构:
//! - 通用逻辑提取到 `handler_context` 和 `response_processor` 模块
//! - 各 handler 只保留独特的业务逻辑
//! - Claude 的格式转换逻辑保留在此文件(用于 OpenRouter 旧接口回退)
use super::{
error_mapper::{get_error_message, map_proxy_error_to_status},
handler_config::{
CLAUDE_PARSER_CONFIG, CODEX_PARSER_CONFIG, GEMINI_PARSER_CONFIG, OPENAI_PARSER_CONFIG,
},
handler_context::RequestContext,
providers::{get_adapter, streaming::create_anthropic_sse_stream, transform},
response_processor::{create_logged_passthrough_stream, process_response, SseUsageCollector},
server::ProxyState,
types::*,
usage::parser::TokenUsage,
ProxyError,
};
use crate::app_config::AppType;
use axum::{extract::State, http::StatusCode, response::IntoResponse, Json};
use rust_decimal::Decimal;
use serde_json::{json, Value};
use std::str::FromStr;
// ============================================================================
// 健康检查和状态查询(简单端点)
// ============================================================================
/// 健康检查
pub async fn health_check() -> (StatusCode, Json<Value>) {
(
StatusCode::OK,
Json(json!({
"status": "healthy",
"timestamp": chrono::Utc::now().to_rfc3339(),
})),
)
}
/// 获取服务状态
pub async fn get_status(State(state): State<ProxyState>) -> Result<Json<ProxyStatus>, ProxyError> {
let status = state.status.read().await.clone();
Ok(Json(status))
}
// ============================================================================
// Claude API 处理器(包含格式转换逻辑)
// ============================================================================
/// 处理 /v1/messages 请求(Claude API
///
/// Claude 处理器包含独特的格式转换逻辑:
/// - 过去用于 OpenRouter 的 OpenAI Chat Completions 兼容接口(Anthropic ↔ OpenAI 转换)
/// - 现在 OpenRouter 已推出 Claude Code 兼容接口,默认不再启用该转换(逻辑保留以备回退)
pub async fn handle_messages(
State(state): State<ProxyState>,
headers: axum::http::HeaderMap,
Json(body): Json<Value>,
) -> Result<axum::response::Response, ProxyError> {
let mut ctx =
RequestContext::new(&state, &body, &headers, AppType::Claude, "Claude", "claude").await?;
let is_stream = body
.get("stream")
.and_then(|s| s.as_bool())
.unwrap_or(false);
// 转发请求
let forwarder = ctx.create_forwarder(&state);
let result = match forwarder
.forward_with_retry(
&AppType::Claude,
"/v1/messages",
body.clone(),
headers,
ctx.get_providers(),
)
.await
{
Ok(result) => result,
Err(mut err) => {
if let Some(provider) = err.provider.take() {
ctx.provider = provider;
}
log_forward_error(&state, &ctx, is_stream, &err.error);
return Err(err.error);
}
};
ctx.provider = result.provider;
let response = result.response;
// 检查是否需要格式转换(OpenRouter 等中转服务)
let adapter = get_adapter(&AppType::Claude);
let needs_transform = adapter.needs_transform(&ctx.provider);
log::info!(
"[Claude] Provider: {}, needs_transform: {}, is_stream: {}",
ctx.provider.name,
needs_transform,
is_stream
);
let status = response.status();
log::info!("[Claude] 上游响应状态: {status}");
// Claude 特有:格式转换处理
if needs_transform {
return handle_claude_transform(response, &ctx, &state, &body, is_stream).await;
}
// 通用响应处理(透传模式)
process_response(response, &ctx, &state, &CLAUDE_PARSER_CONFIG).await
}
/// Claude 格式转换处理(独有逻辑)
///
/// 处理 OpenRouter 旧 OpenAI 兼容接口的回退方案(当前默认不启用)
async fn handle_claude_transform(
response: reqwest::Response,
ctx: &RequestContext,
state: &ProxyState,
_original_body: &Value,
is_stream: bool,
) -> Result<axum::response::Response, ProxyError> {
let status = response.status();
if is_stream {
// 流式响应转换 (OpenAI SSE → Anthropic SSE)
log::info!("[Claude] 开始流式响应转换 (OpenAI SSE → Anthropic SSE)");
let stream = response.bytes_stream();
let sse_stream = create_anthropic_sse_stream(stream);
// 创建使用量收集器
let usage_collector = {
let state = state.clone();
let provider_id = ctx.provider.id.clone();
let model = ctx.request_model.clone();
let status_code = status.as_u16();
let start_time = ctx.start_time;
SseUsageCollector::new(start_time, move |events, first_token_ms| {
if let Some(usage) = TokenUsage::from_claude_stream_events(&events) {
let latency_ms = start_time.elapsed().as_millis() as u64;
let state = state.clone();
let provider_id = provider_id.clone();
let model = model.clone();
tokio::spawn(async move {
log_usage(
&state,
&provider_id,
"claude",
&model,
usage,
latency_ms,
first_token_ms,
true,
status_code,
)
.await;
});
} else {
log::debug!("[Claude] OpenRouter 流式响应缺少 usage 统计,跳过消费记录");
}
})
};
// 获取流式超时配置
let timeout_config = ctx.streaming_timeout_config();
let logged_stream = create_logged_passthrough_stream(
sse_stream,
"Claude/OpenRouter",
Some(usage_collector),
timeout_config,
);
let mut headers = axum::http::HeaderMap::new();
headers.insert(
"Content-Type",
axum::http::HeaderValue::from_static("text/event-stream"),
);
headers.insert(
"Cache-Control",
axum::http::HeaderValue::from_static("no-cache"),
);
headers.insert(
"Connection",
axum::http::HeaderValue::from_static("keep-alive"),
);
let body = axum::body::Body::from_stream(logged_stream);
log::info!("[Claude] ====== 请求结束 (流式转换) ======");
return Ok((headers, body).into_response());
}
// 非流式响应转换 (OpenAI → Anthropic)
log::info!("[Claude] 开始转换响应 (OpenAI → Anthropic)");
let response_headers = response.headers().clone();
let body_bytes = response.bytes().await.map_err(|e| {
log::error!("[Claude] 读取响应体失败: {e}");
ProxyError::ForwardFailed(format!("Failed to read response body: {e}"))
})?;
let body_str = String::from_utf8_lossy(&body_bytes);
log::info!("[Claude] OpenAI 响应长度: {} bytes", body_bytes.len());
log::debug!("[Claude] OpenAI 原始响应: {body_str}");
let openai_response: Value = serde_json::from_slice(&body_bytes).map_err(|e| {
log::error!("[Claude] 解析 OpenAI 响应失败: {e}, body: {body_str}");
ProxyError::TransformError(format!("Failed to parse OpenAI response: {e}"))
})?;
log::info!("[Claude] 解析 OpenAI 响应成功");
log::info!(
"[Claude] <<< OpenAI 响应 JSON:\n{}",
serde_json::to_string_pretty(&openai_response).unwrap_or_default()
);
let anthropic_response = transform::openai_to_anthropic(openai_response).map_err(|e| {
log::error!("[Claude] 转换响应失败: {e}");
e
})?;
log::info!("[Claude] 转换响应成功");
log::info!(
"[Claude] <<< Anthropic 响应 JSON:\n{}",
serde_json::to_string_pretty(&anthropic_response).unwrap_or_default()
);
// 记录使用量
if let Some(usage) = TokenUsage::from_claude_response(&anthropic_response) {
let model = anthropic_response
.get("model")
.and_then(|m| m.as_str())
.unwrap_or("unknown");
let latency_ms = ctx.latency_ms();
tokio::spawn({
let state = state.clone();
let provider_id = ctx.provider.id.clone();
let model = model.to_string();
async move {
log_usage(
&state,
&provider_id,
"claude",
&model,
usage,
latency_ms,
None,
false,
status.as_u16(),
)
.await;
}
});
}
log::info!("[Claude] ====== 请求结束 ======");
// 构建响应
let mut builder = axum::response::Response::builder().status(status);
for (key, value) in response_headers.iter() {
if key.as_str().to_lowercase() != "content-length"
&& key.as_str().to_lowercase() != "transfer-encoding"
{
builder = builder.header(key, value);
}
}
builder = builder.header("content-type", "application/json");
let response_body = serde_json::to_vec(&anthropic_response).map_err(|e| {
log::error!("[Claude] 序列化响应失败: {e}");
ProxyError::TransformError(format!("Failed to serialize response: {e}"))
})?;
log::info!(
"[Claude] 返回转换后的响应, 长度: {} bytes",
response_body.len()
);
let body = axum::body::Body::from(response_body);
Ok(builder.body(body).unwrap())
}
// ============================================================================
// Codex API 处理器
// ============================================================================
/// 处理 /v1/chat/completions 请求(OpenAI Chat Completions API - Codex CLI
pub async fn handle_chat_completions(
State(state): State<ProxyState>,
headers: axum::http::HeaderMap,
Json(body): Json<Value>,
) -> Result<axum::response::Response, ProxyError> {
log::info!("[Codex] ====== /v1/chat/completions 请求开始 ======");
let mut ctx =
RequestContext::new(&state, &body, &headers, AppType::Codex, "Codex", "codex").await?;
let is_stream = body
.get("stream")
.and_then(|v| v.as_bool())
.unwrap_or(false);
log::info!(
"[Codex] 请求模型: {}, 流式: {}",
ctx.request_model,
is_stream
);
let forwarder = ctx.create_forwarder(&state);
let result = match forwarder
.forward_with_retry(
&AppType::Codex,
"/v1/chat/completions",
body,
headers,
ctx.get_providers(),
)
.await
{
Ok(result) => result,
Err(mut err) => {
if let Some(provider) = err.provider.take() {
ctx.provider = provider;
}
log_forward_error(&state, &ctx, is_stream, &err.error);
return Err(err.error);
}
};
ctx.provider = result.provider;
let response = result.response;
log::info!("[Codex] 上游响应状态: {}", response.status());
process_response(response, &ctx, &state, &OPENAI_PARSER_CONFIG).await
}
/// 处理 /v1/responses 请求(OpenAI Responses API - Codex CLI 透传)
pub async fn handle_responses(
State(state): State<ProxyState>,
headers: axum::http::HeaderMap,
Json(body): Json<Value>,
) -> Result<axum::response::Response, ProxyError> {
let mut ctx =
RequestContext::new(&state, &body, &headers, AppType::Codex, "Codex", "codex").await?;
let is_stream = body
.get("stream")
.and_then(|v| v.as_bool())
.unwrap_or(false);
let forwarder = ctx.create_forwarder(&state);
let result = match forwarder
.forward_with_retry(
&AppType::Codex,
"/v1/responses",
body,
headers,
ctx.get_providers(),
)
.await
{
Ok(result) => result,
Err(mut err) => {
if let Some(provider) = err.provider.take() {
ctx.provider = provider;
}
log_forward_error(&state, &ctx, is_stream, &err.error);
return Err(err.error);
}
};
ctx.provider = result.provider;
let response = result.response;
log::info!("[Codex] 上游响应状态: {}", response.status());
process_response(response, &ctx, &state, &CODEX_PARSER_CONFIG).await
}
// ============================================================================
// Gemini API 处理器
// ============================================================================
/// 处理 Gemini API 请求(透传,包括查询参数)
pub async fn handle_gemini(
State(state): State<ProxyState>,
uri: axum::http::Uri,
headers: axum::http::HeaderMap,
Json(body): Json<Value>,
) -> Result<axum::response::Response, ProxyError> {
// Gemini 的模型名称在 URI 中
let mut ctx = RequestContext::new(&state, &body, &headers, AppType::Gemini, "Gemini", "gemini")
.await?
.with_model_from_uri(&uri);
// 提取完整的路径和查询参数
let endpoint = uri
.path_and_query()
.map(|pq| pq.as_str())
.unwrap_or(uri.path());
log::info!("[Gemini] 请求端点: {endpoint}");
let is_stream = body
.get("stream")
.and_then(|v| v.as_bool())
.unwrap_or(false);
let forwarder = ctx.create_forwarder(&state);
let result = match forwarder
.forward_with_retry(
&AppType::Gemini,
endpoint,
body,
headers,
ctx.get_providers(),
)
.await
{
Ok(result) => result,
Err(mut err) => {
if let Some(provider) = err.provider.take() {
ctx.provider = provider;
}
log_forward_error(&state, &ctx, is_stream, &err.error);
return Err(err.error);
}
};
ctx.provider = result.provider;
let response = result.response;
log::info!("[Gemini] 上游响应状态: {}", response.status());
process_response(response, &ctx, &state, &GEMINI_PARSER_CONFIG).await
}
// ============================================================================
// 使用量记录(保留用于 Claude 转换逻辑)
// ============================================================================
fn log_forward_error(
state: &ProxyState,
ctx: &RequestContext,
is_streaming: bool,
error: &ProxyError,
) {
use super::usage::logger::UsageLogger;
let logger = UsageLogger::new(&state.db);
let status_code = map_proxy_error_to_status(error);
let error_message = get_error_message(error);
let request_id = uuid::Uuid::new_v4().to_string();
if let Err(e) = logger.log_error_with_context(
request_id,
ctx.provider.id.clone(),
ctx.app_type_str.to_string(),
ctx.request_model.clone(),
status_code,
error_message,
ctx.latency_ms(),
is_streaming,
Some(ctx.session_id.clone()),
None,
) {
log::warn!("记录失败请求日志失败: {e}");
}
}
/// 记录请求使用量
#[allow(clippy::too_many_arguments)]
async fn log_usage(
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,
) {
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();
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,
None,
None, // provider_type
is_streaming,
) {
log::warn!("记录使用量失败: {e}");
}
}
-7
View File
@@ -1,7 +0,0 @@
//! 健康检查器
//!
//! 负责定期检查Provider健康状态(占位实现)
// 占位实现,稍后添加完整逻辑
#[allow(dead_code)]
pub struct HealthChecker;
-46
View File
@@ -1,46 +0,0 @@
//! 代理服务器模块
//!
//! 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;
pub(crate) mod server;
pub mod session;
pub(crate) mod types;
pub mod usage;
// 公开导出给外部使用(commands, services等模块需要)
#[allow(unused_imports)]
pub use circuit_breaker::{
CircuitBreaker, CircuitBreakerConfig, CircuitBreakerStats, CircuitState,
};
#[allow(unused_imports)]
pub use error::ProxyError;
#[allow(unused_imports)]
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,
};
#[allow(unused_imports)]
pub use types::{ProxyConfig, ProxyServerInfo, ProxyStatus};
// 内部模块间共享(供子模块使用)
// 注意:这个导出用于模块内部,编译器可能警告未使用但实际被子模块使用
#[allow(unused_imports)]
pub(crate) use types::*;
-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()));
}
}
-417
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@@ -1,417 +0,0 @@
//! 供应商路由器模块
//!
//! 负责选择和管理代理目标供应商,实现智能故障转移
use crate::database::Database;
use crate::error::AppError;
use crate::provider::Provider;
use crate::proxy::circuit_breaker::{AllowResult, CircuitBreaker, CircuitBreakerConfig};
use std::collections::HashMap;
use std::sync::Arc;
use tokio::sync::RwLock;
/// 供应商路由器
pub struct ProviderRouter {
/// 数据库连接
db: Arc<Database>,
/// 熔断器管理器 - key 格式: "app_type:provider_id"
circuit_breakers: Arc<RwLock<HashMap<String, Arc<CircuitBreaker>>>>,
}
impl ProviderRouter {
/// 创建新的供应商路由器
pub fn new(db: Arc<Database>) -> Self {
Self {
db,
circuit_breakers: Arc::new(RwLock::new(HashMap::new())),
}
}
/// 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
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;
// 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"
);
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"
);
}
} else {
log::debug!("[{app_type}] No current provider configured");
}
}
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);
}
}
log::info!(
"[{}] Provider chain: {} provider(s) available",
app_type,
result.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
}
/// 记录供应商请求结果
pub async fn record_result(
&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
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;
log::debug!("Provider {provider_id} request succeeded");
} else {
breaker.record_failure(used_half_open_permit).await;
log::warn!(
"Provider {} request failed: {}",
provider_id,
error_msg.as_deref().unwrap_or("Unknown error")
);
}
// 3. 更新数据库健康状态(使用配置的阈值)
self.db
.update_provider_health_with_threshold(
provider_id,
app_type,
success,
error_msg.clone(),
failure_threshold,
)
.await?;
Ok(())
}
/// 重置熔断器(手动恢复)
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) {
log::info!("Manually resetting circuit breaker for {circuit_key}");
breaker.reset().await;
}
}
/// 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(
&self,
provider_id: &str,
app_type: &str,
) -> Option<crate::proxy::circuit_breaker::CircuitBreakerStats> {
let circuit_key = format!("{app_type}:{provider_id}");
let breakers = self.circuit_breakers.read().await;
if let Some(breaker) = breakers.get(&circuit_key) {
Some(breaker.get_stats().await)
} else {
None
}
}
/// 获取或创建熔断器
async fn get_or_create_circuit_breaker(&self, key: &str) -> Arc<CircuitBreaker> {
// 先尝试读锁获取
{
let breakers = self.circuit_breakers.read().await;
if let Some(breaker) = breakers.get(key) {
return breaker.clone();
}
}
// 如果不存在,获取写锁创建
let mut breakers = self.circuit_breakers.write().await;
// 双重检查,防止竞争条件
if let Some(breaker) = breakers.get(key) {
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()
}
};
log::debug!("Creating new circuit breaker for {key} with config: {config:?}");
let breaker = Arc::new(CircuitBreaker::new(config));
breakers.insert(key.to_string(), breaker.clone());
breaker
}
}
#[cfg(test)]
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 router = ProviderRouter::new(db);
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);
}
}
-131
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@@ -1,131 +0,0 @@
//! Provider Adapter Trait
//!
//! 定义供应商适配器的统一接口,抽象不同上游供应商的处理逻辑。
use super::auth::AuthInfo;
use crate::provider::Provider;
use crate::proxy::error::ProxyError;
use reqwest::RequestBuilder;
use serde_json::Value;
/// 供应商适配器 Trait
///
/// 所有供应商适配器都需要实现此 trait,提供统一的接口来处理:
/// - URL 构建
/// - 认证信息提取和头部注入
/// - 请求/响应格式转换(可选)
///
/// # 示例
///
/// ```ignore
/// pub struct ClaudeAdapter;
///
/// impl ProviderAdapter for ClaudeAdapter {
/// fn name(&self) -> &'static str { "Claude" }
///
/// fn extract_base_url(&self, provider: &Provider) -> Result<String, ProxyError> {
/// // 从 provider 配置中提取 base_url
/// }
///
/// fn extract_auth(&self, provider: &Provider) -> Option<AuthInfo> {
/// // 从 provider 配置中提取认证信息
/// }
///
/// fn build_url(&self, base_url: &str, endpoint: &str) -> String {
/// format!("{}{}", base_url.trim_end_matches('/'), endpoint)
/// }
///
/// fn add_auth_headers(&self, request: RequestBuilder, auth: &AuthInfo) -> RequestBuilder {
/// // 添加认证头
/// }
/// }
/// ```
pub trait ProviderAdapter: Send + Sync {
/// 适配器名称(用于日志和调试)
fn name(&self) -> &'static str;
/// 从 Provider 配置中提取 base_url
///
/// # Arguments
/// * `provider` - Provider 配置
///
/// # Returns
/// * `Ok(String)` - 提取到的 base_url(已去除尾部斜杠)
/// * `Err(ProxyError)` - 提取失败
fn extract_base_url(&self, provider: &Provider) -> Result<String, ProxyError>;
/// 从 Provider 配置中提取认证信息
///
/// # Arguments
/// * `provider` - Provider 配置
///
/// # Returns
/// * `Some(AuthInfo)` - 提取到的认证信息
/// * `None` - 未找到认证信息
fn extract_auth(&self, provider: &Provider) -> Option<AuthInfo>;
/// 构建请求 URL
///
/// # Arguments
/// * `base_url` - 基础 URL
/// * `endpoint` - 请求端点(如 `/v1/messages`
///
/// # Returns
/// 完整的请求 URL
fn build_url(&self, base_url: &str, endpoint: &str) -> String;
/// 添加认证头到请求
///
/// # Arguments
/// * `request` - reqwest RequestBuilder
/// * `auth` - 认证信息
///
/// # Returns
/// 添加了认证头的 RequestBuilder
fn add_auth_headers(&self, request: RequestBuilder, auth: &AuthInfo) -> RequestBuilder;
/// 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`。
///
/// # Arguments
/// * `provider` - Provider 配置
fn needs_transform(&self, _provider: &Provider) -> bool {
false
}
/// 转换请求体
///
/// 将请求体从一种格式转换为另一种格式(如 Anthropic → OpenAI)。
/// 默认实现直接返回原始请求体(透传)。
///
/// # Arguments
/// * `body` - 原始请求体
/// * `provider` - Provider 配置(用于获取模型映射等)
///
/// # Returns
/// * `Ok(Value)` - 转换后的请求体
/// * `Err(ProxyError)` - 转换失败
fn transform_request(&self, body: Value, _provider: &Provider) -> Result<Value, ProxyError> {
Ok(body)
}
/// 转换响应体
///
/// 将响应体从一种格式转换为另一种格式(如 OpenAI → Anthropic)。
/// 默认实现直接返回原始响应体(透传)。
///
/// # Arguments
/// * `body` - 原始响应体
///
/// # Returns
/// * `Ok(Value)` - 转换后的响应体
/// * `Err(ProxyError)` - 转换失败
///
/// Note: 响应转换将在 handler 层集成,目前预留接口
#[allow(dead_code)]
fn transform_response(&self, body: Value) -> Result<Value, ProxyError> {
Ok(body)
}
}
-210
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@@ -1,210 +0,0 @@
//! Authentication Types
//!
//! 定义认证信息和认证策略,支持多种上游供应商的认证方式。
/// 认证信息
///
/// 包含 API Key 和对应的认证策略
#[derive(Debug, Clone)]
pub struct AuthInfo {
/// API Key
pub api_key: String,
/// 认证策略
pub strategy: AuthStrategy,
/// OAuth access_token(用于 GoogleOAuth 策略)
pub access_token: Option<String>,
}
impl AuthInfo {
/// 创建新的认证信息
pub fn new(api_key: String, strategy: AuthStrategy) -> Self {
Self {
api_key,
strategy,
access_token: None,
}
}
/// 创建带有 access_token 的认证信息(用于 OAuth
pub fn with_access_token(api_key: String, access_token: String) -> Self {
Self {
api_key,
strategy: AuthStrategy::GoogleOAuth,
access_token: Some(access_token),
}
}
/// 返回遮蔽后的 API Key(用于日志输出)
///
/// 显示前4位和后4位,中间用 `...` 代替
/// 如果 key 长度不足8位,则返回 `***`
pub fn masked_key(&self) -> String {
if self.api_key.len() > 8 {
format!(
"{}...{}",
&self.api_key[..4],
&self.api_key[self.api_key.len() - 4..]
)
} else {
"***".to_string()
}
}
/// 返回遮蔽后的 access_token(用于日志输出)
#[allow(dead_code)]
pub fn masked_access_token(&self) -> Option<String> {
self.access_token.as_ref().map(|token| {
if token.len() > 8 {
format!("{}...{}", &token[..4], &token[token.len() - 4..])
} else {
"***".to_string()
}
})
}
}
/// 认证策略
///
/// 不同供应商使用不同的认证方式
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub enum AuthStrategy {
/// Anthropic 认证方式
/// - Header: `x-api-key: <api_key>`
/// - Header: `anthropic-version: 2023-06-01`
Anthropic,
/// Claude 中转服务认证方式(仅 Bearer,无 x-api-key
///
/// - Header: `Authorization: Bearer <api_key>`
///
/// 用于不支持 x-api-key 的中转服务
ClaudeAuth,
/// Bearer Token 认证方式(OpenAI 等)
///
/// - Header: `Authorization: Bearer <api_key>`
Bearer,
/// Google API Key 认证方式
///
/// - Header: `x-goog-api-key: <api_key>`
Google,
/// Google OAuth 认证方式
///
/// - Header: `Authorization: Bearer <access_token>`
///
/// 用于 Gemini CLI 等需要 OAuth 的场景
GoogleOAuth,
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_masked_key_long() {
let auth = AuthInfo::new("sk-1234567890abcdef".to_string(), AuthStrategy::Bearer);
assert_eq!(auth.masked_key(), "sk-1...cdef");
}
#[test]
fn test_masked_key_short() {
let auth = AuthInfo::new("short".to_string(), AuthStrategy::Bearer);
assert_eq!(auth.masked_key(), "***");
}
#[test]
fn test_masked_key_exactly_8() {
let auth = AuthInfo::new("12345678".to_string(), AuthStrategy::Bearer);
assert_eq!(auth.masked_key(), "***");
}
#[test]
fn test_masked_key_9_chars() {
let auth = AuthInfo::new("123456789".to_string(), AuthStrategy::Bearer);
assert_eq!(auth.masked_key(), "1234...6789");
}
#[test]
fn test_auth_strategy_equality() {
assert_eq!(AuthStrategy::Anthropic, AuthStrategy::Anthropic);
assert_ne!(AuthStrategy::Anthropic, AuthStrategy::Bearer);
assert_ne!(AuthStrategy::Bearer, AuthStrategy::Google);
}
#[test]
fn test_auth_info_new_has_no_access_token() {
let auth = AuthInfo::new("api-key".to_string(), AuthStrategy::Bearer);
assert!(auth.access_token.is_none());
}
#[test]
fn test_auth_info_with_access_token() {
let auth = AuthInfo::with_access_token(
"refresh-token".to_string(),
"ya29.access-token-12345".to_string(),
);
assert_eq!(auth.api_key, "refresh-token");
assert_eq!(auth.strategy, AuthStrategy::GoogleOAuth);
assert_eq!(
auth.access_token,
Some("ya29.access-token-12345".to_string())
);
}
#[test]
fn test_masked_access_token_long() {
let auth =
AuthInfo::with_access_token("refresh".to_string(), "ya29.1234567890abcdef".to_string());
assert_eq!(auth.masked_access_token(), Some("ya29...cdef".to_string()));
}
#[test]
fn test_masked_access_token_short() {
let auth = AuthInfo::with_access_token("refresh".to_string(), "short".to_string());
assert_eq!(auth.masked_access_token(), Some("***".to_string()));
}
#[test]
fn test_masked_access_token_none() {
let auth = AuthInfo::new("api-key".to_string(), AuthStrategy::Bearer);
assert!(auth.masked_access_token().is_none());
}
#[test]
fn test_claude_auth_strategy() {
let auth = AuthInfo::new("sk-test".to_string(), AuthStrategy::ClaudeAuth);
assert_eq!(auth.strategy, AuthStrategy::ClaudeAuth);
assert_ne!(auth.strategy, AuthStrategy::Anthropic);
assert_ne!(auth.strategy, AuthStrategy::Bearer);
}
#[test]
fn test_google_oauth_strategy() {
let auth = AuthInfo::new("refresh-token".to_string(), AuthStrategy::GoogleOAuth);
assert_eq!(auth.strategy, AuthStrategy::GoogleOAuth);
assert_ne!(auth.strategy, AuthStrategy::Google);
}
#[test]
fn test_all_strategies_are_distinct() {
let strategies = [
AuthStrategy::Anthropic,
AuthStrategy::ClaudeAuth,
AuthStrategy::Bearer,
AuthStrategy::Google,
AuthStrategy::GoogleOAuth,
];
for (i, s1) in strategies.iter().enumerate() {
for (j, s2) in strategies.iter().enumerate() {
if i == j {
assert_eq!(s1, s2);
} else {
assert_ne!(s1, s2);
}
}
}
}
}
-456
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@@ -1,456 +0,0 @@
//! Claude (Anthropic) Provider Adapter
//!
//! 支持透传模式和 OpenRouter 兼容模式
//!
//! ## 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)
use super::{AuthInfo, AuthStrategy, ProviderAdapter, ProviderType};
use crate::provider::Provider;
use crate::proxy::error::ProxyError;
use reqwest::RequestBuilder;
/// Claude 适配器
pub struct ClaudeAdapter;
impl ClaudeAdapter {
pub fn new() -> Self {
Self
}
/// 获取供应商类型
///
/// 根据 base_url 和 auth_mode 检测具体的供应商类型:
/// - OpenRouter: base_url 包含 openrouter.ai
/// - ClaudeAuth: auth_mode 为 bearer_only
/// - 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;
}
// 检测 ClaudeAuth (仅 Bearer 认证)
if self.is_bearer_only_mode(provider) {
return ProviderType::ClaudeAuth;
}
ProviderType::Claude
}
/// 检测是否使用 OpenRouter
fn is_openrouter(&self, provider: &Provider) -> bool {
if let Ok(base_url) = self.extract_base_url(provider) {
return base_url.contains("openrouter.ai");
}
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
if let Some(auth_mode) = provider
.settings_config
.get("auth_mode")
.and_then(|v| v.as_str())
{
if auth_mode == "bearer_only" {
return true;
}
}
// 检查 env 中的 AUTH_MODE
if let Some(env) = provider.settings_config.get("env") {
if let Some(auth_mode) = env.get("AUTH_MODE").and_then(|v| v.as_str()) {
if auth_mode == "bearer_only" {
return true;
}
}
}
false
}
/// 从 Provider 配置中提取 API Key
fn extract_key(&self, provider: &Provider) -> Option<String> {
if let Some(env) = provider.settings_config.get("env") {
// Anthropic 标准 key
if let Some(key) = env
.get("ANTHROPIC_AUTH_TOKEN")
.and_then(|v| v.as_str())
.filter(|s| !s.is_empty())
{
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")
.and_then(|v| v.as_str())
.filter(|s| !s.is_empty())
{
log::debug!("[Claude] 使用 OPENROUTER_API_KEY");
return Some(key.to_string());
}
// 备选 OpenAI key (用于 OpenRouter)
if let Some(key) = env
.get("OPENAI_API_KEY")
.and_then(|v| v.as_str())
.filter(|s| !s.is_empty())
{
log::debug!("[Claude] 使用 OPENAI_API_KEY");
return Some(key.to_string());
}
}
// 尝试直接获取
if let Some(key) = provider
.settings_config
.get("apiKey")
.or_else(|| provider.settings_config.get("api_key"))
.and_then(|v| v.as_str())
.filter(|s| !s.is_empty())
{
log::debug!("[Claude] 使用 apiKey/api_key");
return Some(key.to_string());
}
log::warn!("[Claude] 未找到有效的 API Key");
None
}
}
impl Default for ClaudeAdapter {
fn default() -> Self {
Self::new()
}
}
impl ProviderAdapter for ClaudeAdapter {
fn name(&self) -> &'static str {
"Claude"
}
fn extract_base_url(&self, provider: &Provider) -> Result<String, ProxyError> {
// 1. 从 env 中获取
if let Some(env) = provider.settings_config.get("env") {
if let Some(url) = env.get("ANTHROPIC_BASE_URL").and_then(|v| v.as_str()) {
return Ok(url.trim_end_matches('/').to_string());
}
}
// 2. 尝试直接获取
if let Some(url) = provider
.settings_config
.get("base_url")
.and_then(|v| v.as_str())
{
return Ok(url.trim_end_matches('/').to_string());
}
if let Some(url) = provider
.settings_config
.get("baseURL")
.and_then(|v| v.as_str())
{
return Ok(url.trim_end_matches('/').to_string());
}
if let Some(url) = provider
.settings_config
.get("apiEndpoint")
.and_then(|v| v.as_str())
{
return Ok(url.trim_end_matches('/').to_string());
}
Err(ProxyError::ConfigError(
"Claude Provider 缺少 base_url 配置".to_string(),
))
}
fn extract_auth(&self, provider: &Provider) -> Option<AuthInfo> {
let provider_type = self.provider_type(provider);
let strategy = match provider_type {
ProviderType::OpenRouter => AuthStrategy::Bearer,
ProviderType::ClaudeAuth => AuthStrategy::ClaudeAuth,
_ => AuthStrategy::Anthropic,
};
self.extract_key(provider)
.map(|key| AuthInfo::new(key, strategy))
}
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。
format!(
"{}/{}",
base_url.trim_end_matches('/'),
endpoint.trim_start_matches('/')
)
}
fn add_auth_headers(&self, request: RequestBuilder, auth: &AuthInfo) -> RequestBuilder {
match auth.strategy {
// Anthropic 官方: Authorization Bearer + x-api-key + anthropic-version
AuthStrategy::Anthropic => request
.header("Authorization", format!("Bearer {}", auth.api_key))
.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"),
// OpenRouter: Bearer
AuthStrategy::Bearer => request
.header("Authorization", format!("Bearer {}", auth.api_key))
.header("anthropic-version", "2023-06-01"),
_ => 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 transform_request(
&self,
body: serde_json::Value,
provider: &Provider,
) -> Result<serde_json::Value, ProxyError> {
super::transform::anthropic_to_openai(body, provider)
}
fn transform_response(&self, body: serde_json::Value) -> Result<serde_json::Value, ProxyError> {
super::transform::openai_to_anthropic(body)
}
}
#[cfg(test)]
mod tests {
use super::*;
use serde_json::json;
fn create_provider(config: serde_json::Value) -> Provider {
Provider {
id: "test".to_string(),
name: "Test Claude".to_string(),
settings_config: config,
website_url: None,
category: Some("claude".to_string()),
created_at: None,
sort_index: None,
notes: None,
meta: None,
icon: None,
icon_color: None,
in_failover_queue: false,
}
}
#[test]
fn test_extract_base_url_from_env() {
let adapter = ClaudeAdapter::new();
let provider = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://api.anthropic.com"
}
}));
let url = adapter.extract_base_url(&provider).unwrap();
assert_eq!(url, "https://api.anthropic.com");
}
#[test]
fn test_extract_auth_anthropic() {
let adapter = ClaudeAdapter::new();
let provider = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://api.anthropic.com",
"ANTHROPIC_AUTH_TOKEN": "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_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();
let provider = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://openrouter.ai/api",
"OPENROUTER_API_KEY": "sk-or-test-key"
}
}));
let auth = adapter.extract_auth(&provider).unwrap();
assert_eq!(auth.api_key, "sk-or-test-key");
assert_eq!(auth.strategy, AuthStrategy::Bearer);
}
#[test]
fn test_extract_auth_claude_auth_mode() {
let adapter = ClaudeAdapter::new();
let provider = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://some-proxy.com",
"ANTHROPIC_AUTH_TOKEN": "sk-proxy-key"
},
"auth_mode": "bearer_only"
}));
let auth = adapter.extract_auth(&provider).unwrap();
assert_eq!(auth.api_key, "sk-proxy-key");
assert_eq!(auth.strategy, AuthStrategy::ClaudeAuth);
}
#[test]
fn test_extract_auth_claude_auth_env_mode() {
let adapter = ClaudeAdapter::new();
let provider = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://some-proxy.com",
"ANTHROPIC_AUTH_TOKEN": "sk-proxy-key",
"AUTH_MODE": "bearer_only"
}
}));
let auth = adapter.extract_auth(&provider).unwrap();
assert_eq!(auth.api_key, "sk-proxy-key");
assert_eq!(auth.strategy, AuthStrategy::ClaudeAuth);
}
#[test]
fn test_provider_type_detection() {
let adapter = ClaudeAdapter::new();
// Anthropic 官方
let anthropic = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://api.anthropic.com",
"ANTHROPIC_AUTH_TOKEN": "sk-ant-test"
}
}));
assert_eq!(adapter.provider_type(&anthropic), ProviderType::Claude);
// OpenRouter
let openrouter = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://openrouter.ai/api",
"OPENROUTER_API_KEY": "sk-or-test"
}
}));
assert_eq!(adapter.provider_type(&openrouter), ProviderType::OpenRouter);
// ClaudeAuth
let claude_auth = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://some-proxy.com",
"ANTHROPIC_AUTH_TOKEN": "sk-test"
},
"auth_mode": "bearer_only"
}));
assert_eq!(
adapter.provider_type(&claude_auth),
ProviderType::ClaudeAuth
);
}
#[test]
fn test_build_url_anthropic() {
let adapter = ClaudeAdapter::new();
let url = adapter.build_url("https://api.anthropic.com", "/v1/messages");
assert_eq!(url, "https://api.anthropic.com/v1/messages");
}
#[test]
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");
}
#[test]
fn test_needs_transform() {
let adapter = ClaudeAdapter::new();
let anthropic_provider = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://api.anthropic.com"
}
}));
assert!(!adapter.needs_transform(&anthropic_provider));
let openrouter_provider = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://openrouter.ai/api"
}
}));
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));
}
}
-265
View File
@@ -1,265 +0,0 @@
//! Codex (OpenAI) Provider Adapter
//!
//! 仅透传模式,支持直连 OpenAI API
//!
//! ## 客户端检测
//! 支持检测官方 Codex 客户端 (codex_vscode, codex_cli_rs)
use super::{AuthInfo, AuthStrategy, ProviderAdapter};
use crate::provider::Provider;
use crate::proxy::error::ProxyError;
use regex::Regex;
use reqwest::RequestBuilder;
use std::sync::LazyLock;
/// 官方 Codex 客户端 User-Agent 正则
#[allow(dead_code)]
static CODEX_CLIENT_REGEX: LazyLock<Regex> =
LazyLock::new(|| Regex::new(r"^(codex_vscode|codex_cli_rs)/[\d.]+").unwrap());
/// Codex 适配器
pub struct CodexAdapter;
impl CodexAdapter {
pub fn new() -> Self {
Self
}
/// 检测是否为官方 Codex 客户端
///
/// 匹配 User-Agent 模式: `^(codex_vscode|codex_cli_rs)/[\d.]+`
#[allow(dead_code)]
pub fn is_official_client(user_agent: &str) -> bool {
CODEX_CLIENT_REGEX.is_match(user_agent)
}
/// 从 Provider 配置中提取 API Key
fn extract_key(&self, provider: &Provider) -> Option<String> {
// 1. 尝试从 env 中获取
if let Some(env) = provider.settings_config.get("env") {
if let Some(key) = env.get("OPENAI_API_KEY").and_then(|v| v.as_str()) {
return Some(key.to_string());
}
}
// 2. 尝试从 auth 中获取 (Codex CLI 格式)
if let Some(auth) = provider.settings_config.get("auth") {
if let Some(key) = auth.get("OPENAI_API_KEY").and_then(|v| v.as_str()) {
return Some(key.to_string());
}
}
// 3. 尝试直接获取
if let Some(key) = provider
.settings_config
.get("apiKey")
.or_else(|| provider.settings_config.get("api_key"))
.and_then(|v| v.as_str())
{
return Some(key.to_string());
}
// 4. 尝试从 config 对象中获取
if let Some(config) = provider.settings_config.get("config") {
if let Some(key) = config
.get("api_key")
.or_else(|| config.get("apiKey"))
.and_then(|v| v.as_str())
{
return Some(key.to_string());
}
}
None
}
}
impl Default for CodexAdapter {
fn default() -> Self {
Self::new()
}
}
impl ProviderAdapter for CodexAdapter {
fn name(&self) -> &'static str {
"Codex"
}
fn extract_base_url(&self, provider: &Provider) -> Result<String, ProxyError> {
// 1. 尝试直接获取 base_url 字段
if let Some(url) = provider
.settings_config
.get("base_url")
.and_then(|v| v.as_str())
{
return Ok(url.trim_end_matches('/').to_string());
}
// 2. 尝试 baseURL
if let Some(url) = provider
.settings_config
.get("baseURL")
.and_then(|v| v.as_str())
{
return Ok(url.trim_end_matches('/').to_string());
}
// 3. 尝试从 config 对象中获取
if let Some(config) = provider.settings_config.get("config") {
if let Some(url) = config.get("base_url").and_then(|v| v.as_str()) {
return Ok(url.trim_end_matches('/').to_string());
}
// 尝试解析 TOML 字符串格式
if let Some(config_str) = config.as_str() {
if let Some(start) = config_str.find("base_url = \"") {
let rest = &config_str[start + 12..];
if let Some(end) = rest.find('"') {
return Ok(rest[..end].trim_end_matches('/').to_string());
}
}
if let Some(start) = config_str.find("base_url = '") {
let rest = &config_str[start + 12..];
if let Some(end) = rest.find('\'') {
return Ok(rest[..end].trim_end_matches('/').to_string());
}
}
}
}
Err(ProxyError::ConfigError(
"Codex Provider 缺少 base_url 配置".to_string(),
))
}
fn extract_auth(&self, provider: &Provider) -> Option<AuthInfo> {
self.extract_key(provider)
.map(|key| AuthInfo::new(key, AuthStrategy::Bearer))
}
fn build_url(&self, base_url: &str, endpoint: &str) -> String {
let base_trimmed = base_url.trim_end_matches('/');
let endpoint_trimmed = endpoint.trim_start_matches('/');
let mut url = format!("{base_trimmed}/{endpoint_trimmed}");
// 去除重复的 /v1/v1
if url.contains("/v1/v1") {
url = url.replace("/v1/v1", "/v1");
}
url
}
fn add_auth_headers(&self, request: RequestBuilder, auth: &AuthInfo) -> RequestBuilder {
request.header("Authorization", format!("Bearer {}", auth.api_key))
}
}
#[cfg(test)]
mod tests {
use super::*;
use serde_json::json;
fn create_provider(config: serde_json::Value) -> Provider {
Provider {
id: "test".to_string(),
name: "Test Codex".to_string(),
settings_config: config,
website_url: None,
category: Some("codex".to_string()),
created_at: None,
sort_index: None,
notes: None,
meta: None,
icon: None,
icon_color: None,
in_failover_queue: false,
}
}
#[test]
fn test_extract_base_url_direct() {
let adapter = CodexAdapter::new();
let provider = create_provider(json!({
"base_url": "https://api.openai.com/v1"
}));
let url = adapter.extract_base_url(&provider).unwrap();
assert_eq!(url, "https://api.openai.com/v1");
}
#[test]
fn test_extract_auth_from_auth_field() {
let adapter = CodexAdapter::new();
let provider = create_provider(json!({
"auth": {
"OPENAI_API_KEY": "sk-test-key-12345678"
}
}));
let auth = adapter.extract_auth(&provider).unwrap();
assert_eq!(auth.api_key, "sk-test-key-12345678");
assert_eq!(auth.strategy, AuthStrategy::Bearer);
}
#[test]
fn test_extract_auth_from_env() {
let adapter = CodexAdapter::new();
let provider = create_provider(json!({
"env": {
"OPENAI_API_KEY": "sk-env-key-12345678"
}
}));
let auth = adapter.extract_auth(&provider).unwrap();
assert_eq!(auth.api_key, "sk-env-key-12345678");
}
#[test]
fn test_build_url() {
let adapter = CodexAdapter::new();
let url = adapter.build_url("https://api.openai.com/v1", "/responses");
assert_eq!(url, "https://api.openai.com/v1/responses");
}
#[test]
fn test_build_url_dedup_v1() {
let adapter = CodexAdapter::new();
// base_url 已包含 /v1endpoint 也包含 /v1
let url = adapter.build_url("https://www.packyapi.com/v1", "/v1/responses");
assert_eq!(url, "https://www.packyapi.com/v1/responses");
}
// 官方客户端检测测试
#[test]
fn test_is_official_client_vscode() {
assert!(CodexAdapter::is_official_client("codex_vscode/1.0.0"));
assert!(CodexAdapter::is_official_client("codex_vscode/2.3.4"));
assert!(CodexAdapter::is_official_client("codex_vscode/0.1"));
}
#[test]
fn test_is_official_client_cli() {
assert!(CodexAdapter::is_official_client("codex_cli_rs/1.0.0"));
assert!(CodexAdapter::is_official_client("codex_cli_rs/0.5.2"));
}
#[test]
fn test_is_not_official_client() {
assert!(!CodexAdapter::is_official_client("Mozilla/5.0"));
assert!(!CodexAdapter::is_official_client("curl/7.68.0"));
assert!(!CodexAdapter::is_official_client("python-requests/2.25.1"));
assert!(!CodexAdapter::is_official_client("codex_other/1.0.0"));
assert!(!CodexAdapter::is_official_client(""));
}
#[test]
fn test_is_official_client_partial_match() {
// 必须从开头匹配
assert!(!CodexAdapter::is_official_client("some codex_vscode/1.0.0"));
assert!(!CodexAdapter::is_official_client(
"prefix_codex_cli_rs/1.0.0"
));
}
}
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//! Gemini (Google) Provider Adapter
//!
//! 支持 API Key 和 OAuth 两种认证方式
//!
//! ## 认证模式
//! - **Gemini**: API Key 认证 (x-goog-api-key)
//! - **GeminiCli**: OAuth Bearer 认证 (用于 Gemini CLI)
use super::{AuthInfo, AuthStrategy, ProviderAdapter, ProviderType};
use crate::provider::Provider;
use crate::proxy::error::ProxyError;
use reqwest::RequestBuilder;
/// Gemini 适配器
pub struct GeminiAdapter;
/// OAuth 凭证结构
#[derive(Debug, Clone)]
#[allow(dead_code)]
pub struct OAuthCredentials {
pub access_token: String,
pub refresh_token: Option<String>,
pub client_id: Option<String>,
pub client_secret: Option<String>,
}
#[allow(dead_code)]
impl OAuthCredentials {
/// 检查是否需要刷新 token(有 refresh_token 但没有有效的 access_token
pub fn needs_refresh(&self) -> bool {
self.refresh_token.is_some() && self.access_token.is_empty()
}
/// 检查是否可以刷新 token
pub fn can_refresh(&self) -> bool {
self.refresh_token.is_some() && self.client_id.is_some() && self.client_secret.is_some()
}
}
impl GeminiAdapter {
pub fn new() -> Self {
Self
}
/// 获取供应商类型
///
/// 根据 API Key 格式检测:
/// - GeminiCli: access_token (ya29. 开头) 或 JSON 格式凭证
/// - Gemini: 普通 API Key
pub fn provider_type(&self, provider: &Provider) -> ProviderType {
if let Some(key) = self.extract_key_raw(provider) {
// OAuth access_token 以 ya29. 开头
if key.starts_with("ya29.") {
return ProviderType::GeminiCli;
}
// JSON 格式的 OAuth 凭证
if key.starts_with('{') {
return ProviderType::GeminiCli;
}
}
ProviderType::Gemini
}
/// 检测认证类型
pub fn detect_auth_type(&self, provider: &Provider) -> AuthStrategy {
match self.provider_type(provider) {
ProviderType::GeminiCli => AuthStrategy::GoogleOAuth,
_ => AuthStrategy::Google,
}
}
/// 解析 OAuth 凭证
pub fn parse_oauth_credentials(&self, key: &str) -> Option<OAuthCredentials> {
// 直接是 access_token
if key.starts_with("ya29.") {
return Some(OAuthCredentials {
access_token: key.to_string(),
refresh_token: None,
client_id: None,
client_secret: None,
});
}
// JSON 格式
if key.starts_with('{') {
if let Ok(json) = serde_json::from_str::<serde_json::Value>(key) {
let access_token = json
.get("access_token")
.and_then(|v| v.as_str())
.map(|s| s.to_string())
.unwrap_or_default();
let refresh_token = json
.get("refresh_token")
.and_then(|v| v.as_str())
.map(|s| s.to_string());
let client_id = json
.get("client_id")
.and_then(|v| v.as_str())
.map(|s| s.to_string());
let client_secret = json
.get("client_secret")
.and_then(|v| v.as_str())
.map(|s| s.to_string());
// 如果有 access_token 或 refresh_token,返回凭证
if !access_token.is_empty() || refresh_token.is_some() {
return Some(OAuthCredentials {
access_token,
refresh_token,
client_id,
client_secret,
});
}
}
}
None
}
/// 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
if let Some(key) = env.get("GEMINI_API_KEY").and_then(|v| v.as_str()) {
return Some(key.to_string());
}
}
// 尝试直接获取
if let Some(key) = provider
.settings_config
.get("apiKey")
.or_else(|| provider.settings_config.get("api_key"))
.and_then(|v| v.as_str())
{
return Some(key.to_string());
}
None
}
}
impl Default for GeminiAdapter {
fn default() -> Self {
Self::new()
}
}
impl ProviderAdapter for GeminiAdapter {
fn name(&self) -> &'static str {
"Gemini"
}
fn extract_base_url(&self, provider: &Provider) -> Result<String, ProxyError> {
// 从 env 中获取
if let Some(env) = provider.settings_config.get("env") {
if let Some(url) = env.get("GOOGLE_GEMINI_BASE_URL").and_then(|v| v.as_str()) {
return Ok(url.trim_end_matches('/').to_string());
}
}
// 尝试直接获取
if let Some(url) = provider
.settings_config
.get("base_url")
.and_then(|v| v.as_str())
{
return Ok(url.trim_end_matches('/').to_string());
}
if let Some(url) = provider
.settings_config
.get("baseURL")
.and_then(|v| v.as_str())
{
return Ok(url.trim_end_matches('/').to_string());
}
Err(ProxyError::ConfigError(
"Gemini Provider 缺少 base_url 配置".to_string(),
))
}
fn extract_auth(&self, provider: &Provider) -> Option<AuthInfo> {
let key = self.extract_key_raw(provider)?;
let strategy = self.detect_auth_type(provider);
match strategy {
AuthStrategy::GoogleOAuth => {
// 解析 OAuth 凭证
if let Some(creds) = self.parse_oauth_credentials(&key) {
Some(AuthInfo::with_access_token(key, creds.access_token))
} else {
// 回退到普通 API Key
Some(AuthInfo::new(key, AuthStrategy::Google))
}
}
_ => Some(AuthInfo::new(key, AuthStrategy::Google)),
}
}
fn build_url(&self, base_url: &str, endpoint: &str) -> String {
let base_trimmed = base_url.trim_end_matches('/');
let endpoint_trimmed = endpoint.trim_start_matches('/');
let mut url = format!("{base_trimmed}/{endpoint_trimmed}");
// 处理 /v1beta 路径去重
let version_patterns = ["/v1beta", "/v1"];
for pattern in &version_patterns {
let duplicate = format!("{pattern}{pattern}");
if url.contains(&duplicate) {
url = url.replace(&duplicate, pattern);
}
}
url
}
fn add_auth_headers(&self, request: RequestBuilder, auth: &AuthInfo) -> RequestBuilder {
match auth.strategy {
// OAuth Bearer 认证
AuthStrategy::GoogleOAuth => {
let token = auth.access_token.as_ref().unwrap_or(&auth.api_key);
request
.header("Authorization", format!("Bearer {token}"))
.header("x-goog-api-client", "GeminiCLI/1.0")
}
// API Key 认证
_ => request.header("x-goog-api-key", &auth.api_key),
}
}
}
#[cfg(test)]
mod tests {
use super::*;
use serde_json::json;
fn create_provider(config: serde_json::Value) -> Provider {
Provider {
id: "test".to_string(),
name: "Test Gemini".to_string(),
settings_config: config,
website_url: None,
category: Some("gemini".to_string()),
created_at: None,
sort_index: None,
notes: None,
meta: None,
icon: None,
icon_color: None,
in_failover_queue: false,
}
}
#[test]
fn test_extract_base_url_from_env() {
let adapter = GeminiAdapter::new();
let provider = create_provider(json!({
"env": {
"GOOGLE_GEMINI_BASE_URL": "https://generativelanguage.googleapis.com/v1beta"
}
}));
let url = adapter.extract_base_url(&provider).unwrap();
assert_eq!(url, "https://generativelanguage.googleapis.com/v1beta");
}
#[test]
fn test_extract_auth_api_key() {
let adapter = GeminiAdapter::new();
let provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "AIza-test-key-12345678"
}
}));
let auth = adapter.extract_auth(&provider).unwrap();
assert_eq!(auth.api_key, "AIza-test-key-12345678");
assert_eq!(auth.strategy, AuthStrategy::Google);
assert!(auth.access_token.is_none());
}
#[test]
fn test_extract_auth_oauth_access_token() {
let adapter = GeminiAdapter::new();
let provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "ya29.test-access-token-12345"
}
}));
let auth = adapter.extract_auth(&provider).unwrap();
assert_eq!(auth.strategy, AuthStrategy::GoogleOAuth);
assert_eq!(
auth.access_token,
Some("ya29.test-access-token-12345".to_string())
);
}
#[test]
fn test_extract_auth_oauth_json() {
let adapter = GeminiAdapter::new();
let provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "{\"access_token\":\"ya29.test-token\",\"refresh_token\":\"1//refresh\"}"
}
}));
let auth = adapter.extract_auth(&provider).unwrap();
assert_eq!(auth.strategy, AuthStrategy::GoogleOAuth);
assert_eq!(auth.access_token, Some("ya29.test-token".to_string()));
}
#[test]
fn test_provider_type_detection() {
let adapter = GeminiAdapter::new();
// API Key
let api_key_provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "AIza-test-key"
}
}));
assert_eq!(
adapter.provider_type(&api_key_provider),
ProviderType::Gemini
);
// OAuth access_token
let oauth_provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "ya29.test-token"
}
}));
assert_eq!(
adapter.provider_type(&oauth_provider),
ProviderType::GeminiCli
);
// OAuth JSON
let oauth_json_provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "{\"access_token\":\"ya29.test\"}"
}
}));
assert_eq!(
adapter.provider_type(&oauth_json_provider),
ProviderType::GeminiCli
);
}
#[test]
fn test_extract_auth_fallback() {
let adapter = GeminiAdapter::new();
let provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "AIza-fallback-key"
}
}));
let auth = adapter.extract_auth(&provider).unwrap();
assert_eq!(auth.api_key, "AIza-fallback-key");
}
#[test]
fn test_build_url_dedup() {
let adapter = GeminiAdapter::new();
// 模拟 base_url 已包含 /v1betaendpoint 也包含 /v1beta
let url = adapter.build_url(
"https://generativelanguage.googleapis.com/v1beta",
"/v1beta/models/gemini-pro:generateContent",
);
assert_eq!(
url,
"https://generativelanguage.googleapis.com/v1beta/models/gemini-pro:generateContent"
);
}
#[test]
fn test_build_url_normal() {
let adapter = GeminiAdapter::new();
let url = adapter.build_url(
"https://generativelanguage.googleapis.com/v1beta",
"/models/gemini-pro:generateContent",
);
assert_eq!(
url,
"https://generativelanguage.googleapis.com/v1beta/models/gemini-pro:generateContent"
);
}
#[test]
fn test_parse_oauth_credentials_direct_token() {
let adapter = GeminiAdapter::new();
let creds = adapter
.parse_oauth_credentials("ya29.test-access-token")
.unwrap();
assert_eq!(creds.access_token, "ya29.test-access-token");
assert!(creds.refresh_token.is_none());
}
#[test]
fn test_parse_oauth_credentials_json() {
let adapter = GeminiAdapter::new();
let creds = adapter
.parse_oauth_credentials(
"{\"access_token\":\"ya29.test\",\"refresh_token\":\"1//refresh\"}",
)
.unwrap();
assert_eq!(creds.access_token, "ya29.test");
assert_eq!(creds.refresh_token, Some("1//refresh".to_string()));
}
#[test]
fn test_parse_oauth_credentials_invalid() {
let adapter = GeminiAdapter::new();
assert!(adapter.parse_oauth_credentials("AIza-api-key").is_none());
assert!(adapter.parse_oauth_credentials("invalid-json{").is_none());
}
}
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//! Provider Adapters Module
//!
//! 供应商适配器模块,提供统一的接口抽象不同上游供应商的处理逻辑。
//!
//! ## 模块结构
//! - `adapter`: 定义 `ProviderAdapter` trait
//! - `auth`: 认证类型和策略
//! - `claude`: Claude (Anthropic) 适配器
//! - `codex`: Codex (OpenAI) 适配器
//! - `gemini`: Gemini (Google) 适配器
//! - `models`: API 数据模型
//! - `transform`: 格式转换
mod adapter;
mod auth;
mod claude;
mod codex;
mod gemini;
pub mod models;
pub mod streaming;
pub mod transform;
use crate::app_config::AppType;
use crate::provider::Provider;
use serde::{Deserialize, Serialize};
// 公开导出
pub use adapter::ProviderAdapter;
pub use auth::{AuthInfo, AuthStrategy};
pub use claude::ClaudeAdapter;
pub use codex::CodexAdapter;
pub use gemini::GeminiAdapter;
/// 供应商类型枚举
///
/// 区分不同供应商的具体实现方式,决定认证和请求处理逻辑。
/// 比 AppType 更细粒度,支持同一 AppType 下的多种变体。
#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
#[serde(rename_all = "snake_case")]
pub enum ProviderType {
/// Anthropic 官方 API (x-api-key + anthropic-version)
Claude,
/// Claude 中转服务 (仅 Bearer 认证,无 x-api-key)
ClaudeAuth,
/// OpenAI Codex Response API
Codex,
/// Google Gemini API (x-goog-api-key)
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,
}
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)。
#[allow(dead_code)]
pub fn needs_transform(&self) -> bool {
match self {
ProviderType::OpenRouter => false,
_ => false,
}
}
/// 获取默认端点
#[allow(dead_code)]
pub fn default_endpoint(&self) -> &'static str {
match self {
ProviderType::Claude | ProviderType::ClaudeAuth => "https://api.anthropic.com",
ProviderType::Codex => "https://api.openai.com",
ProviderType::Gemini | ProviderType::GeminiCli => {
"https://generativelanguage.googleapis.com"
}
ProviderType::OpenRouter => "https://openrouter.ai/api",
}
}
/// 从 AppType 和 Provider 配置推断供应商类型
///
/// 根据配置中的 base_url、auth_mode、api_key 格式等信息推断具体的供应商类型
#[allow(dead_code)]
pub fn from_app_type_and_config(app_type: &AppType, provider: &Provider) -> Self {
match app_type {
AppType::Claude => {
// 检测是否为 OpenRouter
let adapter = ClaudeAdapter::new();
if let Ok(base_url) = adapter.extract_base_url(provider) {
if base_url.contains("openrouter.ai") {
return ProviderType::OpenRouter;
}
}
// 检测是否为中转服务(仅 Bearer 认证)
// 注意:ProviderMeta 没有直接的 auth_mode 字段,
// 我们通过检查 settings_config 中的配置来判断
// 检查 settings_config 中的 auth_mode
if let Some(auth_mode) = provider
.settings_config
.get("auth_mode")
.and_then(|v| v.as_str())
{
if auth_mode == "bearer_only" {
return ProviderType::ClaudeAuth;
}
}
// 检查 env 中的 auth_mode
if let Some(env) = provider.settings_config.get("env") {
if let Some(auth_mode) = env.get("AUTH_MODE").and_then(|v| v.as_str()) {
if auth_mode == "bearer_only" {
return ProviderType::ClaudeAuth;
}
}
}
ProviderType::Claude
}
AppType::Codex => ProviderType::Codex,
AppType::Gemini => {
// 检测是否为 CLI 模式(OAuth
let adapter = GeminiAdapter::new();
if let Some(auth) = adapter.extract_auth(provider) {
let key = &auth.api_key;
// OAuth access_token 以 ya29. 开头
if key.starts_with("ya29.") {
return ProviderType::GeminiCli;
}
// JSON 格式的 OAuth 凭证
if key.starts_with('{') {
return ProviderType::GeminiCli;
}
}
ProviderType::Gemini
}
}
}
/// 转换为字符串表示
pub fn as_str(&self) -> &'static str {
match self {
ProviderType::Claude => "claude",
ProviderType::ClaudeAuth => "claude_auth",
ProviderType::Codex => "codex",
ProviderType::Gemini => "gemini",
ProviderType::GeminiCli => "gemini_cli",
ProviderType::OpenRouter => "openrouter",
}
}
}
impl std::fmt::Display for ProviderType {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
write!(f, "{}", self.as_str())
}
}
impl std::str::FromStr for ProviderType {
type Err = String;
fn from_str(s: &str) -> Result<Self, Self::Err> {
match s.to_lowercase().as_str() {
"claude" => Ok(ProviderType::Claude),
"claude_auth" | "claude-auth" => Ok(ProviderType::ClaudeAuth),
"codex" => Ok(ProviderType::Codex),
"gemini" => Ok(ProviderType::Gemini),
"gemini_cli" | "gemini-cli" => Ok(ProviderType::GeminiCli),
"openrouter" => Ok(ProviderType::OpenRouter),
_ => Err(format!("Invalid provider type: {s}")),
}
}
}
/// 根据 AppType 获取对应的适配器
pub fn get_adapter(app_type: &AppType) -> Box<dyn ProviderAdapter> {
match app_type {
AppType::Claude => Box::new(ClaudeAdapter::new()),
AppType::Codex => Box::new(CodexAdapter::new()),
AppType::Gemini => Box::new(GeminiAdapter::new()),
}
}
/// 根据 ProviderType 获取对应的适配器
#[allow(dead_code)]
pub fn get_adapter_for_provider_type(provider_type: &ProviderType) -> Box<dyn ProviderAdapter> {
match provider_type {
ProviderType::Claude | ProviderType::ClaudeAuth | ProviderType::OpenRouter => {
Box::new(ClaudeAdapter::new())
}
ProviderType::Codex => Box::new(CodexAdapter::new()),
ProviderType::Gemini | ProviderType::GeminiCli => Box::new(GeminiAdapter::new()),
}
}
#[cfg(test)]
mod tests {
use super::*;
use serde_json::json;
fn create_provider(config: serde_json::Value) -> Provider {
Provider {
id: "test".to_string(),
name: "Test Provider".to_string(),
settings_config: config,
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_provider_type_needs_transform() {
assert!(!ProviderType::Claude.needs_transform());
assert!(!ProviderType::ClaudeAuth.needs_transform());
assert!(!ProviderType::Codex.needs_transform());
assert!(!ProviderType::Gemini.needs_transform());
assert!(!ProviderType::GeminiCli.needs_transform());
assert!(!ProviderType::OpenRouter.needs_transform());
}
#[test]
fn test_provider_type_default_endpoint() {
assert_eq!(
ProviderType::Claude.default_endpoint(),
"https://api.anthropic.com"
);
assert_eq!(
ProviderType::ClaudeAuth.default_endpoint(),
"https://api.anthropic.com"
);
assert_eq!(
ProviderType::Codex.default_endpoint(),
"https://api.openai.com"
);
assert_eq!(
ProviderType::Gemini.default_endpoint(),
"https://generativelanguage.googleapis.com"
);
assert_eq!(
ProviderType::GeminiCli.default_endpoint(),
"https://generativelanguage.googleapis.com"
);
assert_eq!(
ProviderType::OpenRouter.default_endpoint(),
"https://openrouter.ai/api"
);
}
#[test]
fn test_provider_type_from_str() {
assert_eq!(
"claude".parse::<ProviderType>().unwrap(),
ProviderType::Claude
);
assert_eq!(
"claude_auth".parse::<ProviderType>().unwrap(),
ProviderType::ClaudeAuth
);
assert_eq!(
"claude-auth".parse::<ProviderType>().unwrap(),
ProviderType::ClaudeAuth
);
assert_eq!(
"codex".parse::<ProviderType>().unwrap(),
ProviderType::Codex
);
assert_eq!(
"gemini".parse::<ProviderType>().unwrap(),
ProviderType::Gemini
);
assert_eq!(
"gemini_cli".parse::<ProviderType>().unwrap(),
ProviderType::GeminiCli
);
assert_eq!(
"gemini-cli".parse::<ProviderType>().unwrap(),
ProviderType::GeminiCli
);
assert_eq!(
"openrouter".parse::<ProviderType>().unwrap(),
ProviderType::OpenRouter
);
assert!("invalid".parse::<ProviderType>().is_err());
}
#[test]
fn test_provider_type_as_str() {
assert_eq!(ProviderType::Claude.as_str(), "claude");
assert_eq!(ProviderType::ClaudeAuth.as_str(), "claude_auth");
assert_eq!(ProviderType::Codex.as_str(), "codex");
assert_eq!(ProviderType::Gemini.as_str(), "gemini");
assert_eq!(ProviderType::GeminiCli.as_str(), "gemini_cli");
assert_eq!(ProviderType::OpenRouter.as_str(), "openrouter");
}
#[test]
fn test_provider_type_serde() {
// Test serialization
let claude = ProviderType::Claude;
let serialized = serde_json::to_string(&claude).unwrap();
assert_eq!(serialized, "\"claude\"");
let claude_auth = ProviderType::ClaudeAuth;
let serialized = serde_json::to_string(&claude_auth).unwrap();
assert_eq!(serialized, "\"claude_auth\"");
// Test deserialization
let deserialized: ProviderType = serde_json::from_str("\"claude\"").unwrap();
assert_eq!(deserialized, ProviderType::Claude);
let deserialized: ProviderType = serde_json::from_str("\"gemini_cli\"").unwrap();
assert_eq!(deserialized, ProviderType::GeminiCli);
}
#[test]
fn test_from_app_type_claude_direct() {
let provider = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://api.anthropic.com",
"ANTHROPIC_AUTH_TOKEN": "sk-ant-test"
}
}));
let provider_type = ProviderType::from_app_type_and_config(&AppType::Claude, &provider);
assert_eq!(provider_type, ProviderType::Claude);
}
#[test]
fn test_from_app_type_claude_openrouter() {
let provider = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://openrouter.ai/api",
"OPENROUTER_API_KEY": "sk-or-test"
}
}));
let provider_type = ProviderType::from_app_type_and_config(&AppType::Claude, &provider);
assert_eq!(provider_type, ProviderType::OpenRouter);
}
#[test]
fn test_from_app_type_claude_auth() {
let provider = create_provider(json!({
"env": {
"ANTHROPIC_BASE_URL": "https://some-proxy.com",
"ANTHROPIC_AUTH_TOKEN": "sk-test"
},
"auth_mode": "bearer_only"
}));
let provider_type = ProviderType::from_app_type_and_config(&AppType::Claude, &provider);
assert_eq!(provider_type, ProviderType::ClaudeAuth);
}
#[test]
fn test_from_app_type_codex() {
let provider = create_provider(json!({
"env": {
"OPENAI_API_KEY": "sk-test"
}
}));
let provider_type = ProviderType::from_app_type_and_config(&AppType::Codex, &provider);
assert_eq!(provider_type, ProviderType::Codex);
}
#[test]
fn test_from_app_type_gemini_api_key() {
let provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "AIza-test-key"
}
}));
let provider_type = ProviderType::from_app_type_and_config(&AppType::Gemini, &provider);
assert_eq!(provider_type, ProviderType::Gemini);
}
#[test]
fn test_from_app_type_gemini_cli_oauth() {
let provider = create_provider(json!({
"env": {
"GEMINI_API_KEY": "ya29.test-access-token"
}
}));
let provider_type = ProviderType::from_app_type_and_config(&AppType::Gemini, &provider);
assert_eq!(provider_type, ProviderType::GeminiCli);
}
#[test]
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\"}"
}
}));
let provider_type = ProviderType::from_app_type_and_config(&AppType::Gemini, &provider);
assert_eq!(provider_type, ProviderType::GeminiCli);
}
#[test]
fn test_get_adapter_for_provider_type() {
let adapter = get_adapter_for_provider_type(&ProviderType::Claude);
assert_eq!(adapter.name(), "Claude");
let adapter = get_adapter_for_provider_type(&ProviderType::ClaudeAuth);
assert_eq!(adapter.name(), "Claude");
let adapter = get_adapter_for_provider_type(&ProviderType::OpenRouter);
assert_eq!(adapter.name(), "Claude");
let adapter = get_adapter_for_provider_type(&ProviderType::Codex);
assert_eq!(adapter.name(), "Codex");
let adapter = get_adapter_for_provider_type(&ProviderType::Gemini);
assert_eq!(adapter.name(), "Gemini");
let adapter = get_adapter_for_provider_type(&ProviderType::GeminiCli);
assert_eq!(adapter.name(), "Gemini");
}
}
@@ -1,104 +0,0 @@
//! Anthropic API 数据模型
//!
//! 用于 Anthropic Messages API 的请求/响应格式转换
use serde::{Deserialize, Serialize};
use serde_json::Value;
/// Anthropic 请求
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct AnthropicRequest {
pub model: String,
pub messages: Vec<AnthropicMessage>,
pub max_tokens: u32,
#[serde(skip_serializing_if = "Option::is_none")]
pub system: Option<Value>, // 可以是 String 或 Vec<SystemBlock>
#[serde(skip_serializing_if = "Option::is_none")]
pub temperature: Option<f32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub stream: Option<bool>,
#[serde(skip_serializing_if = "Option::is_none")]
pub tools: Option<Vec<AnthropicTool>>,
#[serde(skip_serializing_if = "Option::is_none")]
pub tool_choice: Option<Value>,
}
/// Anthropic 消息
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct AnthropicMessage {
pub role: String,
pub content: Value, // String 或 Vec<ContentBlock>
}
/// Anthropic 内容块
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(tag = "type")]
pub enum AnthropicContentBlock {
#[serde(rename = "text")]
Text { text: String },
#[serde(rename = "image")]
Image { source: ImageSource },
#[serde(rename = "tool_use")]
ToolUse {
id: String,
name: String,
input: Value,
},
#[serde(rename = "tool_result")]
ToolResult { tool_use_id: String, content: Value },
}
/// 图片来源
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct ImageSource {
#[serde(rename = "type")]
pub source_type: String,
pub media_type: String,
pub data: String,
}
/// Anthropic 工具定义
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct AnthropicTool {
pub name: String,
#[serde(skip_serializing_if = "Option::is_none")]
pub description: Option<String>,
pub input_schema: Value,
}
/// Anthropic 响应
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct AnthropicResponse {
pub id: String,
#[serde(rename = "type")]
pub response_type: String,
pub role: String,
pub content: Vec<AnthropicResponseContent>,
pub model: String,
#[serde(skip_serializing_if = "Option::is_none")]
pub stop_reason: Option<String>,
#[serde(skip_serializing_if = "Option::is_none")]
pub stop_sequence: Option<String>,
pub usage: AnthropicUsage,
}
/// Anthropic 响应内容
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(tag = "type")]
pub enum AnthropicResponseContent {
#[serde(rename = "text")]
Text { text: String },
#[serde(rename = "tool_use")]
ToolUse {
id: String,
name: String,
input: Value,
},
}
/// Anthropic 使用量
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct AnthropicUsage {
pub input_tokens: u32,
pub output_tokens: u32,
}
@@ -1,6 +0,0 @@
//! API 数据模型
//!
//! 定义 Anthropic 和 OpenAI API 的请求/响应结构
pub mod anthropic;
pub mod openai;
@@ -1,113 +0,0 @@
//! OpenAI API 数据模型
//!
//! 用于 OpenAI Chat Completions API 的请求/响应格式转换
use serde::{Deserialize, Serialize};
use serde_json::Value;
/// OpenAI 请求
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct OpenAIRequest {
pub model: String,
pub messages: Vec<OpenAIMessage>,
#[serde(skip_serializing_if = "Option::is_none")]
pub max_tokens: Option<u32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub temperature: Option<f32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub stream: Option<bool>,
#[serde(skip_serializing_if = "Option::is_none")]
pub tools: Option<Vec<OpenAITool>>,
#[serde(skip_serializing_if = "Option::is_none")]
pub tool_choice: Option<Value>,
}
/// OpenAI 消息
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct OpenAIMessage {
pub role: String,
#[serde(skip_serializing_if = "Option::is_none")]
pub content: Option<Value>, // String 或 Vec<ContentPart>
#[serde(skip_serializing_if = "Option::is_none")]
pub tool_calls: Option<Vec<OpenAIToolCall>>,
#[serde(skip_serializing_if = "Option::is_none")]
pub tool_call_id: Option<String>,
}
/// OpenAI 内容部分
#[derive(Debug, Clone, Serialize, Deserialize)]
#[serde(tag = "type")]
pub enum OpenAIContentPart {
#[serde(rename = "text")]
Text { text: String },
#[serde(rename = "image_url")]
ImageUrl { image_url: ImageUrl },
}
/// 图片 URL
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct ImageUrl {
pub url: String,
}
/// OpenAI 工具调用
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct OpenAIToolCall {
pub id: String,
#[serde(rename = "type")]
pub call_type: String,
pub function: OpenAIFunction,
}
/// OpenAI 函数
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct OpenAIFunction {
pub name: String,
pub arguments: String, // JSON 字符串
}
/// OpenAI 工具定义
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct OpenAITool {
#[serde(rename = "type")]
pub tool_type: String,
pub function: OpenAIFunctionDef,
}
/// OpenAI 函数定义
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct OpenAIFunctionDef {
pub name: String,
#[serde(skip_serializing_if = "Option::is_none")]
pub description: Option<String>,
pub parameters: Value,
}
/// OpenAI 响应
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct OpenAIResponse {
pub id: String,
pub object: String,
pub created: u64,
pub model: String,
pub choices: Vec<OpenAIChoice>,
#[serde(skip_serializing_if = "Option::is_none")]
pub usage: Option<OpenAIUsage>,
}
/// OpenAI 选择
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct OpenAIChoice {
pub index: u32,
pub message: OpenAIMessage,
#[serde(skip_serializing_if = "Option::is_none")]
pub finish_reason: Option<String>,
}
/// OpenAI 使用量
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct OpenAIUsage {
pub prompt_tokens: u32,
pub completion_tokens: u32,
pub total_tokens: u32,
}
-338
View File
@@ -1,338 +0,0 @@
//! 流式响应转换模块
//!
//! 实现 OpenAI SSE → Anthropic SSE 格式转换
use bytes::Bytes;
use futures::stream::{Stream, StreamExt};
use serde::{Deserialize, Serialize};
use serde_json::json;
/// OpenAI 流式响应数据结构
#[derive(Debug, Deserialize)]
struct OpenAIStreamChunk {
id: String,
model: String,
choices: Vec<StreamChoice>,
#[serde(default)]
usage: Option<Usage>,
}
#[derive(Debug, Deserialize)]
struct StreamChoice {
delta: Delta,
#[serde(default)]
finish_reason: Option<String>,
}
#[derive(Debug, Deserialize)]
struct Delta {
#[serde(default)]
content: Option<String>,
#[serde(default)]
reasoning: Option<String>, // OpenRouter 的推理内容
#[serde(default)]
tool_calls: Option<Vec<DeltaToolCall>>,
}
#[derive(Debug, Deserialize, Serialize)]
struct DeltaToolCall {
index: usize,
#[serde(default)]
id: Option<String>,
#[serde(rename = "type", default)]
call_type: Option<String>,
#[serde(default)]
function: Option<DeltaFunction>,
}
#[derive(Debug, Deserialize, Serialize)]
struct DeltaFunction {
#[serde(default)]
name: Option<String>,
#[serde(default)]
arguments: Option<String>,
}
/// OpenAI 流式响应的 usage 信息(完整版)
#[derive(Debug, Deserialize)]
struct Usage {
#[serde(default)]
prompt_tokens: u32,
#[serde(default)]
completion_tokens: u32,
}
/// 创建 Anthropic SSE 流
pub fn create_anthropic_sse_stream(
stream: impl Stream<Item = Result<Bytes, reqwest::Error>> + Send + 'static,
) -> impl Stream<Item = Result<Bytes, std::io::Error>> + Send {
async_stream::stream! {
let mut buffer = String::new();
let mut message_id = None;
let mut current_model = None;
let mut content_index = 0;
let mut has_sent_message_start = false;
let mut current_block_type: Option<String> = None;
let mut tool_call_id = None;
log::info!("[Claude/OpenRouter] ====== 开始流式响应转换 ======");
tokio::pin!(stream);
while let Some(chunk) = stream.next().await {
match chunk {
Ok(bytes) => {
let text = String::from_utf8_lossy(&bytes);
buffer.push_str(&text);
while let Some(pos) = buffer.find("\n\n") {
let line = buffer[..pos].to_string();
buffer = buffer[pos + 2..].to_string();
if line.trim().is_empty() {
continue;
}
for l in line.lines() {
if let Some(data) = l.strip_prefix("data: ") {
if data.trim() == "[DONE]" {
log::info!("[Claude/OpenRouter] <<< OpenAI SSE: [DONE]");
let event = json!({"type": "message_stop"});
let sse_data = format!("event: message_stop\ndata: {}\n\n",
serde_json::to_string(&event).unwrap_or_default());
log::info!("[Claude/OpenRouter] >>> Anthropic SSE: message_stop");
yield Ok(Bytes::from(sse_data));
continue;
}
if let Ok(chunk) = serde_json::from_str::<OpenAIStreamChunk>(data) {
// 记录原始 OpenAI 事件(格式化显示)
if let Ok(json_value) = serde_json::from_str::<serde_json::Value>(data) {
log::info!(
"[Claude/OpenRouter] <<< OpenAI SSE 事件:\n{}",
serde_json::to_string_pretty(&json_value).unwrap_or_else(|_| data.to_string())
);
} else {
log::info!("[Claude/OpenRouter] <<< OpenAI SSE 数据: {data}");
}
if message_id.is_none() {
message_id = Some(chunk.id.clone());
}
if current_model.is_none() {
current_model = Some(chunk.model.clone());
}
if let Some(choice) = chunk.choices.first() {
if !has_sent_message_start {
let event = json!({
"type": "message_start",
"message": {
"id": message_id.clone().unwrap_or_default(),
"type": "message",
"role": "assistant",
"model": current_model.clone().unwrap_or_default(),
"usage": {
"input_tokens": 0,
"output_tokens": 0
}
}
});
let sse_data = format!("event: message_start\ndata: {}\n\n",
serde_json::to_string(&event).unwrap_or_default());
yield Ok(Bytes::from(sse_data));
has_sent_message_start = true;
}
// 处理 reasoningthinking
if let Some(reasoning) = &choice.delta.reasoning {
if current_block_type.is_none() {
let event = json!({
"type": "content_block_start",
"index": content_index,
"content_block": {
"type": "thinking",
"thinking": ""
}
});
let sse_data = format!("event: content_block_start\ndata: {}\n\n",
serde_json::to_string(&event).unwrap_or_default());
yield Ok(Bytes::from(sse_data));
current_block_type = Some("thinking".to_string());
}
let event = json!({
"type": "content_block_delta",
"index": content_index,
"delta": {
"type": "thinking_delta",
"thinking": reasoning
}
});
let sse_data = format!("event: content_block_delta\ndata: {}\n\n",
serde_json::to_string(&event).unwrap_or_default());
yield Ok(Bytes::from(sse_data));
}
// 处理文本内容
if let Some(content) = &choice.delta.content {
if !content.is_empty() {
if current_block_type.as_deref() != Some("text") {
if current_block_type.is_some() {
let event = json!({
"type": "content_block_stop",
"index": content_index
});
let sse_data = format!("event: content_block_stop\ndata: {}\n\n",
serde_json::to_string(&event).unwrap_or_default());
yield Ok(Bytes::from(sse_data));
content_index += 1;
}
let event = json!({
"type": "content_block_start",
"index": content_index,
"content_block": {
"type": "text",
"text": ""
}
});
let sse_data = format!("event: content_block_start\ndata: {}\n\n",
serde_json::to_string(&event).unwrap_or_default());
yield Ok(Bytes::from(sse_data));
current_block_type = Some("text".to_string());
}
let event = json!({
"type": "content_block_delta",
"index": content_index,
"delta": {
"type": "text_delta",
"text": content
}
});
let sse_data = format!("event: content_block_delta\ndata: {}\n\n",
serde_json::to_string(&event).unwrap_or_default());
yield Ok(Bytes::from(sse_data));
}
}
// 处理工具调用
if let Some(tool_calls) = &choice.delta.tool_calls {
for tool_call in tool_calls {
if let Some(id) = &tool_call.id {
if current_block_type.is_some() {
let event = json!({
"type": "content_block_stop",
"index": content_index
});
let sse_data = format!("event: content_block_stop\ndata: {}\n\n",
serde_json::to_string(&event).unwrap_or_default());
yield Ok(Bytes::from(sse_data));
content_index += 1;
}
tool_call_id = Some(id.clone());
}
if let Some(function) = &tool_call.function {
if let Some(name) = &function.name {
let event = json!({
"type": "content_block_start",
"index": content_index,
"content_block": {
"type": "tool_use",
"id": tool_call_id.clone().unwrap_or_default(),
"name": name
}
});
let sse_data = format!("event: content_block_start\ndata: {}\n\n",
serde_json::to_string(&event).unwrap_or_default());
yield Ok(Bytes::from(sse_data));
current_block_type = Some("tool_use".to_string());
}
if let Some(args) = &function.arguments {
let event = json!({
"type": "content_block_delta",
"index": content_index,
"delta": {
"type": "input_json_delta",
"partial_json": args
}
});
let sse_data = format!("event: content_block_delta\ndata: {}\n\n",
serde_json::to_string(&event).unwrap_or_default());
yield Ok(Bytes::from(sse_data));
}
}
}
}
// 处理 finish_reason
if let Some(finish_reason) = &choice.finish_reason {
if current_block_type.is_some() {
let event = json!({
"type": "content_block_stop",
"index": content_index
});
let sse_data = format!("event: content_block_stop\ndata: {}\n\n",
serde_json::to_string(&event).unwrap_or_default());
yield Ok(Bytes::from(sse_data));
}
let stop_reason = map_stop_reason(Some(finish_reason));
// 构建 usage 信息,包含 input_tokens 和 output_tokens
let usage_json = chunk.usage.as_ref().map(|u| json!({
"input_tokens": u.prompt_tokens,
"output_tokens": u.completion_tokens
}));
let event = json!({
"type": "message_delta",
"delta": {
"stop_reason": stop_reason,
"stop_sequence": null
},
"usage": usage_json
});
let sse_data = format!("event: message_delta\ndata: {}\n\n",
serde_json::to_string(&event).unwrap_or_default());
yield Ok(Bytes::from(sse_data));
}
}
}
}
}
}
}
Err(e) => {
log::error!("Stream error: {e}");
let error_event = json!({
"type": "error",
"error": {
"type": "stream_error",
"message": format!("Stream error: {e}")
}
});
let sse_data = format!("event: error\ndata: {}\n\n",
serde_json::to_string(&error_event).unwrap_or_default());
yield Ok(Bytes::from(sse_data));
break;
}
}
}
}
}
/// 映射停止原因
fn map_stop_reason(finish_reason: Option<&str>) -> Option<String> {
finish_reason.map(|r| {
match r {
"tool_calls" => "tool_use",
"stop" => "end_turn",
"length" => "max_tokens",
_ => "end_turn",
}
.to_string()
})
}
-640
View File
@@ -1,640 +0,0 @@
//! 格式转换模块
//!
//! 实现 Anthropic ↔ OpenAI 格式转换,用于 OpenRouter 支持
//! 参考: anthropic-proxy-rs
use crate::provider::Provider;
use crate::proxy::error::ProxyError;
use serde_json::{json, Value};
/// 从 Provider 配置中获取模型映射
fn get_model_from_provider(model: &str, provider: &Provider, body: &Value) -> String {
let env = provider.settings_config.get("env");
let model_lower = model.to_lowercase();
// 检测 thinking 参数
let has_thinking = body
.get("thinking")
.and_then(|v| v.as_object())
.and_then(|o| o.get("type"))
.and_then(|t| t.as_str())
== Some("enabled");
if let Some(env) = env {
// 如果启用 thinking,优先使用推理模型
if has_thinking {
if let Some(m) = env
.get("ANTHROPIC_REASONING_MODEL")
.and_then(|v| v.as_str())
{
log::debug!("[Transform] 使用推理模型: {m}");
return m.to_string();
}
}
// 根据模型类型选择配置模型
if model_lower.contains("haiku") {
if let Some(m) = env
.get("ANTHROPIC_DEFAULT_HAIKU_MODEL")
.and_then(|v| v.as_str())
{
return m.to_string();
}
}
if model_lower.contains("opus") {
if let Some(m) = env
.get("ANTHROPIC_DEFAULT_OPUS_MODEL")
.and_then(|v| v.as_str())
{
return m.to_string();
}
}
if model_lower.contains("sonnet") {
if let Some(m) = env
.get("ANTHROPIC_DEFAULT_SONNET_MODEL")
.and_then(|v| v.as_str())
{
return m.to_string();
}
}
// 默认使用 ANTHROPIC_MODEL
if let Some(m) = env.get("ANTHROPIC_MODEL").and_then(|v| v.as_str()) {
return m.to_string();
}
}
model.to_string()
}
/// Anthropic 请求 → OpenAI 请求
pub fn anthropic_to_openai(body: Value, provider: &Provider) -> Result<Value, ProxyError> {
let mut result = json!({});
// 模型映射:使用 Provider 配置中的模型(支持 thinking 参数)
if let Some(model) = body.get("model").and_then(|m| m.as_str()) {
let mapped_model = get_model_from_provider(model, provider, &body);
result["model"] = json!(mapped_model);
}
let mut messages = Vec::new();
// 处理 system prompt
if let Some(system) = body.get("system") {
if let Some(text) = system.as_str() {
// 单个字符串
messages.push(json!({"role": "system", "content": text}));
} else if let Some(arr) = system.as_array() {
// 多个 system message
for msg in arr {
if let Some(text) = msg.get("text").and_then(|t| t.as_str()) {
messages.push(json!({"role": "system", "content": text}));
}
}
}
}
// 转换 messages
if let Some(msgs) = body.get("messages").and_then(|m| m.as_array()) {
for msg in msgs {
let role = msg.get("role").and_then(|r| r.as_str()).unwrap_or("user");
let content = msg.get("content");
let converted = convert_message_to_openai(role, content)?;
messages.extend(converted);
}
}
result["messages"] = json!(messages);
// 转换参数
if let Some(v) = body.get("max_tokens") {
result["max_tokens"] = v.clone();
}
if let Some(v) = body.get("temperature") {
result["temperature"] = v.clone();
}
if let Some(v) = body.get("top_p") {
result["top_p"] = v.clone();
}
if let Some(v) = body.get("stop_sequences") {
result["stop"] = v.clone();
}
if let Some(v) = body.get("stream") {
result["stream"] = v.clone();
}
// 转换 tools (过滤 BatchTool)
if let Some(tools) = body.get("tools").and_then(|t| t.as_array()) {
let openai_tools: Vec<Value> = tools
.iter()
.filter(|t| t.get("type").and_then(|v| v.as_str()) != Some("BatchTool"))
.map(|t| {
json!({
"type": "function",
"function": {
"name": t.get("name").and_then(|n| n.as_str()).unwrap_or(""),
"description": t.get("description"),
"parameters": clean_schema(t.get("input_schema").cloned().unwrap_or(json!({})))
}
})
})
.collect();
if !openai_tools.is_empty() {
result["tools"] = json!(openai_tools);
}
}
if let Some(v) = body.get("tool_choice") {
result["tool_choice"] = v.clone();
}
Ok(result)
}
/// 转换单条消息到 OpenAI 格式(可能产生多条消息)
fn convert_message_to_openai(
role: &str,
content: Option<&Value>,
) -> Result<Vec<Value>, ProxyError> {
let mut result = Vec::new();
let content = match content {
Some(c) => c,
None => {
result.push(json!({"role": role, "content": null}));
return Ok(result);
}
};
// 字符串内容
if let Some(text) = content.as_str() {
result.push(json!({"role": role, "content": text}));
return Ok(result);
}
// 数组内容(多模态/工具调用)
if let Some(blocks) = content.as_array() {
let mut content_parts = Vec::new();
let mut tool_calls = Vec::new();
for block in blocks {
let block_type = block.get("type").and_then(|t| t.as_str()).unwrap_or("");
match block_type {
"text" => {
if let Some(text) = block.get("text").and_then(|t| t.as_str()) {
content_parts.push(json!({"type": "text", "text": text}));
}
}
"image" => {
if let Some(source) = block.get("source") {
let media_type = source
.get("media_type")
.and_then(|m| m.as_str())
.unwrap_or("image/png");
let data = source.get("data").and_then(|d| d.as_str()).unwrap_or("");
content_parts.push(json!({
"type": "image_url",
"image_url": {"url": format!("data:{};base64,{}", media_type, data)}
}));
}
}
"tool_use" => {
let id = block.get("id").and_then(|i| i.as_str()).unwrap_or("");
let name = block.get("name").and_then(|n| n.as_str()).unwrap_or("");
let input = block.get("input").cloned().unwrap_or(json!({}));
tool_calls.push(json!({
"id": id,
"type": "function",
"function": {
"name": name,
"arguments": serde_json::to_string(&input).unwrap_or_default()
}
}));
}
"tool_result" => {
// tool_result 变成单独的 tool role 消息
let tool_use_id = block
.get("tool_use_id")
.and_then(|i| i.as_str())
.unwrap_or("");
let content_val = block.get("content");
let content_str = match content_val {
Some(Value::String(s)) => s.clone(),
Some(v) => serde_json::to_string(v).unwrap_or_default(),
None => String::new(),
};
result.push(json!({
"role": "tool",
"tool_call_id": tool_use_id,
"content": content_str
}));
}
"thinking" => {
// 跳过 thinking blocks
}
_ => {}
}
}
// 添加带内容和/或工具调用的消息
if !content_parts.is_empty() || !tool_calls.is_empty() {
let mut msg = json!({"role": role});
// 内容处理
if content_parts.is_empty() {
msg["content"] = Value::Null;
} else if content_parts.len() == 1 {
if let Some(text) = content_parts[0].get("text") {
msg["content"] = text.clone();
} else {
msg["content"] = json!(content_parts);
}
} else {
msg["content"] = json!(content_parts);
}
// 工具调用
if !tool_calls.is_empty() {
msg["tool_calls"] = json!(tool_calls);
}
result.push(msg);
}
return Ok(result);
}
// 其他情况直接透传
result.push(json!({"role": role, "content": content}));
Ok(result)
}
/// 清理 JSON schema(移除不支持的 format
fn clean_schema(mut schema: Value) -> Value {
if let Some(obj) = schema.as_object_mut() {
// 移除 "format": "uri"
if obj.get("format").and_then(|v| v.as_str()) == Some("uri") {
obj.remove("format");
}
// 递归清理嵌套 schema
if let Some(properties) = obj.get_mut("properties").and_then(|v| v.as_object_mut()) {
for (_, value) in properties.iter_mut() {
*value = clean_schema(value.clone());
}
}
if let Some(items) = obj.get_mut("items") {
*items = clean_schema(items.clone());
}
}
schema
}
/// OpenAI 响应 → Anthropic 响应
pub fn openai_to_anthropic(body: Value) -> Result<Value, ProxyError> {
let choices = body
.get("choices")
.and_then(|c| c.as_array())
.ok_or_else(|| ProxyError::TransformError("No choices in response".to_string()))?;
let choice = choices
.first()
.ok_or_else(|| ProxyError::TransformError("Empty choices array".to_string()))?;
let message = choice
.get("message")
.ok_or_else(|| ProxyError::TransformError("No message in choice".to_string()))?;
let mut content = Vec::new();
// 文本内容
if let Some(text) = message.get("content").and_then(|c| c.as_str()) {
if !text.is_empty() {
content.push(json!({"type": "text", "text": text}));
}
}
// 工具调用
if let Some(tool_calls) = message.get("tool_calls").and_then(|t| t.as_array()) {
for tc in tool_calls {
let id = tc.get("id").and_then(|i| i.as_str()).unwrap_or("");
let empty_obj = json!({});
let func = tc.get("function").unwrap_or(&empty_obj);
let name = func.get("name").and_then(|n| n.as_str()).unwrap_or("");
let args_str = func
.get("arguments")
.and_then(|a| a.as_str())
.unwrap_or("{}");
let input: Value = serde_json::from_str(args_str).unwrap_or(json!({}));
content.push(json!({
"type": "tool_use",
"id": id,
"name": name,
"input": input
}));
}
}
// 映射 finish_reason → stop_reason
let stop_reason = choice
.get("finish_reason")
.and_then(|r| r.as_str())
.map(|r| match r {
"stop" => "end_turn",
"length" => "max_tokens",
"tool_calls" => "tool_use",
other => other,
});
// usage
let usage = body.get("usage").cloned().unwrap_or(json!({}));
let input_tokens = usage
.get("prompt_tokens")
.and_then(|v| v.as_u64())
.unwrap_or(0) as u32;
let output_tokens = usage
.get("completion_tokens")
.and_then(|v| v.as_u64())
.unwrap_or(0) as u32;
let result = json!({
"id": body.get("id").and_then(|i| i.as_str()).unwrap_or(""),
"type": "message",
"role": "assistant",
"content": content,
"model": body.get("model").and_then(|m| m.as_str()).unwrap_or(""),
"stop_reason": stop_reason,
"stop_sequence": null,
"usage": {
"input_tokens": input_tokens,
"output_tokens": output_tokens
}
});
Ok(result)
}
#[cfg(test)]
mod tests {
use super::*;
fn create_provider(env_config: Value) -> Provider {
Provider {
id: "test".to_string(),
name: "Test Provider".to_string(),
settings_config: json!({"env": env_config}),
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_openrouter_provider() -> Provider {
create_provider(json!({
"ANTHROPIC_BASE_URL": "https://openrouter.ai/api",
"ANTHROPIC_MODEL": "anthropic/claude-sonnet-4.5",
"ANTHROPIC_DEFAULT_HAIKU_MODEL": "anthropic/claude-haiku-4.5",
"ANTHROPIC_DEFAULT_SONNET_MODEL": "anthropic/claude-sonnet-4.5",
"ANTHROPIC_DEFAULT_OPUS_MODEL": "anthropic/claude-opus-4.5"
}))
}
#[test]
fn test_anthropic_to_openai_simple() {
let provider = create_openrouter_provider();
let input = json!({
"model": "claude-3-opus",
"max_tokens": 1024,
"messages": [{"role": "user", "content": "Hello"}]
});
let result = anthropic_to_openai(input, &provider).unwrap();
// opus 模型映射到配置的 ANTHROPIC_DEFAULT_OPUS_MODEL
assert_eq!(result["model"], "anthropic/claude-opus-4.5");
assert_eq!(result["max_tokens"], 1024);
assert_eq!(result["messages"][0]["role"], "user");
assert_eq!(result["messages"][0]["content"], "Hello");
}
#[test]
fn test_anthropic_to_openai_with_system() {
let provider = create_openrouter_provider();
let input = json!({
"model": "claude-3-sonnet",
"max_tokens": 1024,
"system": "You are a helpful assistant.",
"messages": [{"role": "user", "content": "Hello"}]
});
let result = anthropic_to_openai(input, &provider).unwrap();
assert_eq!(result["messages"][0]["role"], "system");
assert_eq!(
result["messages"][0]["content"],
"You are a helpful assistant."
);
assert_eq!(result["messages"][1]["role"], "user");
}
#[test]
fn test_anthropic_to_openai_with_tools() {
let provider = create_openrouter_provider();
let input = json!({
"model": "claude-3-opus",
"max_tokens": 1024,
"messages": [{"role": "user", "content": "What's the weather?"}],
"tools": [{
"name": "get_weather",
"description": "Get weather info",
"input_schema": {"type": "object", "properties": {"location": {"type": "string"}}}
}]
});
let result = anthropic_to_openai(input, &provider).unwrap();
assert_eq!(result["tools"][0]["type"], "function");
assert_eq!(result["tools"][0]["function"]["name"], "get_weather");
}
#[test]
fn test_anthropic_to_openai_tool_use() {
let provider = create_openrouter_provider();
let input = json!({
"model": "claude-3-opus",
"max_tokens": 1024,
"messages": [{
"role": "assistant",
"content": [
{"type": "text", "text": "Let me check"},
{"type": "tool_use", "id": "call_123", "name": "get_weather", "input": {"location": "Tokyo"}}
]
}]
});
let result = anthropic_to_openai(input, &provider).unwrap();
let msg = &result["messages"][0];
assert_eq!(msg["role"], "assistant");
assert!(msg.get("tool_calls").is_some());
assert_eq!(msg["tool_calls"][0]["id"], "call_123");
}
#[test]
fn test_anthropic_to_openai_tool_result() {
let provider = create_openrouter_provider();
let input = json!({
"model": "claude-3-opus",
"max_tokens": 1024,
"messages": [{
"role": "user",
"content": [
{"type": "tool_result", "tool_use_id": "call_123", "content": "Sunny, 25°C"}
]
}]
});
let result = anthropic_to_openai(input, &provider).unwrap();
let msg = &result["messages"][0];
assert_eq!(msg["role"], "tool");
assert_eq!(msg["tool_call_id"], "call_123");
assert_eq!(msg["content"], "Sunny, 25°C");
}
#[test]
fn test_openai_to_anthropic_simple() {
let input = json!({
"id": "chatcmpl-123",
"object": "chat.completion",
"created": 1234567890,
"model": "gpt-4",
"choices": [{
"index": 0,
"message": {"role": "assistant", "content": "Hello!"},
"finish_reason": "stop"
}],
"usage": {"prompt_tokens": 10, "completion_tokens": 5, "total_tokens": 15}
});
let result = openai_to_anthropic(input).unwrap();
assert_eq!(result["id"], "chatcmpl-123");
assert_eq!(result["type"], "message");
assert_eq!(result["content"][0]["type"], "text");
assert_eq!(result["content"][0]["text"], "Hello!");
assert_eq!(result["stop_reason"], "end_turn");
assert_eq!(result["usage"]["input_tokens"], 10);
assert_eq!(result["usage"]["output_tokens"], 5);
}
#[test]
fn test_openai_to_anthropic_with_tool_calls() {
let input = json!({
"id": "chatcmpl-123",
"object": "chat.completion",
"created": 1234567890,
"model": "gpt-4",
"choices": [{
"index": 0,
"message": {
"role": "assistant",
"content": null,
"tool_calls": [{
"id": "call_123",
"type": "function",
"function": {"name": "get_weather", "arguments": "{\"location\": \"Tokyo\"}"}
}]
},
"finish_reason": "tool_calls"
}],
"usage": {"prompt_tokens": 10, "completion_tokens": 5, "total_tokens": 15}
});
let result = openai_to_anthropic(input).unwrap();
assert_eq!(result["content"][0]["type"], "tool_use");
assert_eq!(result["content"][0]["id"], "call_123");
assert_eq!(result["content"][0]["name"], "get_weather");
assert_eq!(result["content"][0]["input"]["location"], "Tokyo");
assert_eq!(result["stop_reason"], "tool_use");
}
#[test]
fn test_model_mapping_from_provider() {
let provider = create_openrouter_provider();
let body = json!({"model": "test"});
// sonnet 模型
assert_eq!(
get_model_from_provider("claude-sonnet-4-5-20250929", &provider, &body),
"anthropic/claude-sonnet-4.5"
);
// haiku 模型
assert_eq!(
get_model_from_provider("claude-haiku-4-5-20250929", &provider, &body),
"anthropic/claude-haiku-4.5"
);
// opus 模型
assert_eq!(
get_model_from_provider("claude-opus-4-5", &provider, &body),
"anthropic/claude-opus-4.5"
);
}
#[test]
fn test_anthropic_to_openai_model_mapping() {
let provider = create_openrouter_provider();
let input = json!({
"model": "claude-sonnet-4-5-20250929",
"max_tokens": 1024,
"messages": [{"role": "user", "content": "Hello"}]
});
let result = anthropic_to_openai(input, &provider).unwrap();
assert_eq!(result["model"], "anthropic/claude-sonnet-4.5");
}
#[test]
fn test_thinking_parameter_detection() {
let mut provider = create_openrouter_provider();
// 添加推理模型配置
if let Some(env) = provider.settings_config.get_mut("env") {
env["ANTHROPIC_REASONING_MODEL"] = json!("anthropic/claude-sonnet-4.5:extended");
}
let input = json!({
"model": "claude-sonnet-4-5",
"max_tokens": 1024,
"thinking": {"type": "enabled"},
"messages": [{"role": "user", "content": "Solve this problem"}]
});
let result = anthropic_to_openai(input, &provider).unwrap();
// 应该使用推理模型
assert_eq!(result["model"], "anthropic/claude-sonnet-4.5:extended");
}
#[test]
fn test_thinking_parameter_disabled() {
let mut provider = create_openrouter_provider();
if let Some(env) = provider.settings_config.get_mut("env") {
env["ANTHROPIC_REASONING_MODEL"] = json!("anthropic/claude-sonnet-4.5:extended");
}
let input = json!({
"model": "claude-sonnet-4-5",
"max_tokens": 1024,
"thinking": {"type": "disabled"},
"messages": [{"role": "user", "content": "Hello"}]
});
let result = anthropic_to_openai(input, &provider).unwrap();
// 应该使用普通模型
assert_eq!(result["model"], "anthropic/claude-sonnet-4.5");
}
}
-214
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@@ -1,214 +0,0 @@
//! Response Handler - 统一响应处理
//!
//! 提供流式和非流式响应的统一处理接口
use super::session::ProxySession;
use super::usage::parser::TokenUsage;
use super::ProxyError;
use bytes::Bytes;
use futures::stream::{Stream, StreamExt};
use serde_json::Value;
use std::sync::Arc;
use std::time::{Duration, Instant};
use tokio::sync::Mutex;
use tokio::time::timeout;
/// 响应类型
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
#[allow(dead_code)]
pub enum ResponseType {
/// 流式响应 (SSE)
Stream,
/// 非流式响应
NonStream,
}
impl ResponseType {
/// 从 Content-Type 检测响应类型
#[allow(dead_code)]
pub fn from_content_type(content_type: &str) -> Self {
if content_type.contains("text/event-stream") {
ResponseType::Stream
} else {
ResponseType::NonStream
}
}
}
/// 流式响应处理器
#[allow(dead_code)]
pub struct StreamHandler {
/// 空闲超时时间
idle_timeout: Duration,
/// 收集的事件
events: Arc<Mutex<Vec<Value>>>,
}
#[allow(dead_code)]
impl StreamHandler {
/// 创建新的流式处理器
pub fn new(idle_timeout_secs: u64) -> Self {
Self {
idle_timeout: Duration::from_secs(idle_timeout_secs),
events: Arc::new(Mutex::new(Vec::new())),
}
}
/// 处理流式响应,返回分流后的客户端流
///
/// 客户端流立即返回,内部流在后台收集事件
pub fn handle_stream<S>(
&self,
stream: S,
) -> impl Stream<Item = Result<Bytes, std::io::Error>> + Send
where
S: Stream<Item = Result<Bytes, reqwest::Error>> + Send + 'static,
{
let events = self.events.clone();
let idle_timeout = self.idle_timeout;
async_stream::stream! {
let mut _last_activity = Instant::now();
let mut buffer = String::new();
tokio::pin!(stream);
loop {
let chunk_result = timeout(idle_timeout, stream.next()).await;
match chunk_result {
Ok(Some(Ok(bytes))) => {
_last_activity = Instant::now();
// 解析 SSE 事件
let text = String::from_utf8_lossy(&bytes);
buffer.push_str(&text);
// 提取完整事件
while let Some(pos) = buffer.find("\n\n") {
let event_text = buffer[..pos].to_string();
buffer = buffer[pos + 2..].to_string();
for line in event_text.lines() {
if let Some(data) = line.strip_prefix("data: ") {
if data.trim() != "[DONE]" {
if let Ok(json) = serde_json::from_str::<Value>(data) {
let mut guard = events.lock().await;
guard.push(json);
}
}
}
}
}
yield Ok(bytes);
}
Ok(Some(Err(e))) => {
log::error!("流错误: {e}");
yield Err(std::io::Error::other(e.to_string()));
break;
}
Ok(None) => {
// 流结束
break;
}
Err(_) => {
// 空闲超时
log::warn!("流式响应空闲超时: {idle_timeout:?} 无数据");
yield Err(std::io::Error::other("Stream idle timeout"));
break;
}
}
}
}
}
/// 获取收集的事件
pub async fn get_events(&self) -> Vec<Value> {
let guard = self.events.lock().await;
guard.clone()
}
/// 从收集的事件中提取 Token 使用量
pub async fn extract_usage(&self, session: &ProxySession) -> Option<TokenUsage> {
let events = self.get_events().await;
match session.client_format {
super::session::ClientFormat::Claude => TokenUsage::from_claude_stream_events(&events),
super::session::ClientFormat::Codex => TokenUsage::from_codex_stream_events(&events),
super::session::ClientFormat::Gemini | super::session::ClientFormat::GeminiCli => {
TokenUsage::from_gemini_stream_chunks(&events)
}
_ => None,
}
}
}
/// 非流式响应处理器
#[allow(dead_code)]
pub struct NonStreamHandler;
#[allow(dead_code)]
impl NonStreamHandler {
/// 处理非流式响应
///
/// 克隆响应体用于后台解析,原始响应立即返回
pub async fn handle_response(
body: &[u8],
session: &ProxySession,
) -> Result<Option<TokenUsage>, ProxyError> {
let json: Value = serde_json::from_slice(body)
.map_err(|e| ProxyError::TransformError(format!("Failed to parse response: {e}")))?;
let usage = match session.client_format {
super::session::ClientFormat::Claude => TokenUsage::from_claude_response(&json),
super::session::ClientFormat::Codex => TokenUsage::from_codex_response_adjusted(&json),
super::session::ClientFormat::Gemini | super::session::ClientFormat::GeminiCli => {
TokenUsage::from_gemini_response(&json)
}
super::session::ClientFormat::OpenAI => TokenUsage::from_openrouter_response(&json),
_ => None,
};
Ok(usage)
}
}
/// 统一响应分发器
#[allow(dead_code)]
pub struct ResponseDispatcher;
#[allow(dead_code)]
impl ResponseDispatcher {
/// 判断响应类型
pub fn detect_type(content_type: &str) -> ResponseType {
ResponseType::from_content_type(content_type)
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_response_type_detection() {
assert_eq!(
ResponseType::from_content_type("text/event-stream"),
ResponseType::Stream
);
assert_eq!(
ResponseType::from_content_type("text/event-stream; charset=utf-8"),
ResponseType::Stream
);
assert_eq!(
ResponseType::from_content_type("application/json"),
ResponseType::NonStream
);
}
#[test]
fn test_stream_handler_creation() {
let handler = StreamHandler::new(30);
assert_eq!(handler.idle_timeout, Duration::from_secs(30));
}
}
-523
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@@ -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;
}
}
}
-241
View File
@@ -1,241 +0,0 @@
//! HTTP代理服务器
//!
//! 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 crate::database::Database;
use axum::{
routing::{get, post},
Router,
};
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)
#[derive(Clone)]
pub struct ProxyState {
pub db: Arc<Database>,
pub config: Arc<RwLock<ProxyConfig>>,
pub status: Arc<RwLock<ProxyStatus>>,
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
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()));
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)),
}
}
pub async fn start(&self) -> Result<ProxyServerInfo, ProxyError> {
// 检查是否已在运行
if self.shutdown_tx.read().await.is_some() {
return Err(ProxyError::AlreadyRunning);
}
let addr: SocketAddr =
format!("{}:{}", self.config.listen_address, self.config.listen_port)
.parse()
.map_err(|e| ProxyError::BindFailed(format!("无效的地址: {e}")))?;
// 创建关闭通道
let (shutdown_tx, shutdown_rx) = oneshot::channel();
// 构建路由
let app = self.build_router();
// 绑定监听器
let listener = tokio::net::TcpListener::bind(&addr)
.await
.map_err(|e| ProxyError::BindFailed(e.to_string()))?;
log::info!("代理服务器启动于 {addr}");
// 保存关闭句柄
*self.shutdown_tx.write().await = Some(shutdown_tx);
// 更新状态
let mut status = self.state.status.write().await;
status.running = true;
status.address = self.config.listen_address.clone();
status.port = self.config.listen_port;
drop(status);
// 记录启动时间
*self.state.start_time.write().await = Some(std::time::Instant::now());
// 启动服务器
let state = self.state.clone();
let handle = tokio::spawn(async move {
axum::serve(listener, app)
.with_graceful_shutdown(async {
shutdown_rx.await.ok();
})
.await
.ok();
// 服务器停止后更新状态
state.status.write().await.running = false;
*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,
started_at: chrono::Utc::now().to_rfc3339(),
})
}
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(());
} else {
return 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 {
let mut status = self.state.status.read().await.clone();
// 计算运行时间
if let Some(start) = *self.state.start_time.read().await {
status.uptime_seconds = start.elapsed().as_secs();
}
// 从 current_providers HashMap 获取每个应用类型当前正在使用的 provider
let current_providers = self.state.current_providers.read().await;
status.active_targets = current_providers
.iter()
.map(|(app_type, (provider_id, provider_name))| ActiveTarget {
app_type: app_type.clone(),
provider_id: provider_id.clone(),
provider_name: provider_name.clone(),
})
.collect();
status
}
fn build_router(&self) -> Router {
let cors = CorsLayer::new()
.allow_origin(Any)
.allow_methods(Any)
.allow_headers(Any);
Router::new()
// 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)
.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))
.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))
.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)
.route("/v1beta/*path", post(handlers::handle_gemini))
.route("/gemini/v1beta/*path", post(handlers::handle_gemini))
.layer(cors)
.with_state(self.state.clone())
}
/// 在不重启服务的情况下更新运行时配置
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;
}
}
-567
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@@ -1,567 +0,0 @@
//! 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;
/// 客户端请求格式
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
#[allow(dead_code)]
pub enum ClientFormat {
/// Claude Messages API (/v1/messages)
Claude,
/// Codex Response API (/v1/responses)
Codex,
/// OpenAI Chat Completions API (/v1/chat/completions)
OpenAI,
/// Gemini API (/v1beta/models/*/generateContent)
Gemini,
/// Gemini CLI API (/v1internal/models/*/generateContent)
GeminiCli,
/// 未知格式
Unknown,
}
#[allow(dead_code)]
impl ClientFormat {
/// 从请求路径检测格式
pub fn from_path(path: &str) -> Self {
if path.contains("/v1/messages") {
ClientFormat::Claude
} else if path.contains("/v1/responses") {
ClientFormat::Codex
} else if path.contains("/v1/chat/completions") {
ClientFormat::OpenAI
} else if path.contains("/v1internal/") && path.contains("generateContent") {
// Gemini CLI 使用 /v1internal/ 路径
ClientFormat::GeminiCli
} else if (path.contains("/v1beta/") || path.contains("/v1/"))
&& path.contains("generateContent")
{
// Gemini API 使用 /v1beta/ 或 /v1/ 路径
ClientFormat::Gemini
} else if path.contains("generateContent") {
// 通用 Gemini 端点
ClientFormat::Gemini
} else {
ClientFormat::Unknown
}
}
/// 从请求体内容检测格式(回退方案)
pub fn from_body(body: &serde_json::Value) -> Self {
// Claude 格式特征: messages 数组 + model 字段 + 无 response_format
if body.get("messages").is_some()
&& body.get("model").is_some()
&& body.get("response_format").is_none()
&& body.get("contents").is_none()
{
// 区分 Claude 和 OpenAI
if body.get("max_tokens").is_some() {
return ClientFormat::Claude;
}
return ClientFormat::OpenAI;
}
// Codex 格式特征: input 字段
if body.get("input").is_some() {
return ClientFormat::Codex;
}
// Gemini 格式特征: contents 数组
if body.get("contents").is_some() {
return ClientFormat::Gemini;
}
ClientFormat::Unknown
}
/// 转换为字符串
pub fn as_str(&self) -> &'static str {
match self {
ClientFormat::Claude => "claude",
ClientFormat::Codex => "codex",
ClientFormat::OpenAI => "openai",
ClientFormat::Gemini => "gemini",
ClientFormat::GeminiCli => "gemini_cli",
ClientFormat::Unknown => "unknown",
}
}
}
impl std::fmt::Display for ClientFormat {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
write!(f, "{}", self.as_str())
}
}
/// 代理会话
///
/// 包含请求全生命周期的上下文数据
#[derive(Debug, Clone)]
#[allow(dead_code)]
pub struct ProxySession {
/// 唯一会话 ID
pub session_id: String,
/// 请求开始时间
pub start_time: Instant,
/// HTTP 方法
pub method: String,
/// 请求 URL
pub request_url: String,
/// User-Agent
pub user_agent: Option<String>,
/// 客户端请求格式
pub client_format: ClientFormat,
/// 选定的供应商 ID
pub provider_id: Option<String>,
/// 模型名称
pub model: Option<String>,
/// 是否为流式请求
pub is_streaming: bool,
}
#[allow(dead_code)]
impl ProxySession {
/// 从请求创建会话
pub fn from_request(
method: &str,
request_url: &str,
user_agent: Option<&str>,
body: Option<&serde_json::Value>,
) -> Self {
// 检测客户端格式
let mut client_format = ClientFormat::from_path(request_url);
if client_format == ClientFormat::Unknown {
if let Some(body) = body {
client_format = ClientFormat::from_body(body);
}
}
// 检测是否为流式请求
let is_streaming = body
.and_then(|b| b.get("stream"))
.and_then(|v| v.as_bool())
.unwrap_or(false);
// 提取模型名称
let model = body
.and_then(|b| b.get("model"))
.and_then(|v| v.as_str())
.map(|s| s.to_string());
Self {
session_id: Uuid::new_v4().to_string(),
start_time: Instant::now(),
method: method.to_string(),
request_url: request_url.to_string(),
user_agent: user_agent.map(|s| s.to_string()),
client_format,
provider_id: None,
model,
is_streaming,
}
}
/// 设置供应商 ID
pub fn with_provider(mut self, provider_id: &str) -> Self {
self.provider_id = Some(provider_id.to_string());
self
}
/// 获取请求延迟(毫秒)
pub fn latency_ms(&self) -> u64 {
self.start_time.elapsed().as_millis() as u64
}
}
// ============================================================================
// 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::*;
use serde_json::json;
#[test]
fn test_client_format_from_path_claude() {
assert_eq!(
ClientFormat::from_path("/v1/messages"),
ClientFormat::Claude
);
assert_eq!(
ClientFormat::from_path("/api/v1/messages"),
ClientFormat::Claude
);
}
#[test]
fn test_client_format_from_path_codex() {
assert_eq!(
ClientFormat::from_path("/v1/responses"),
ClientFormat::Codex
);
}
#[test]
fn test_client_format_from_path_openai() {
assert_eq!(
ClientFormat::from_path("/v1/chat/completions"),
ClientFormat::OpenAI
);
}
#[test]
fn test_client_format_from_path_gemini() {
assert_eq!(
ClientFormat::from_path("/v1beta/models/gemini-pro:generateContent"),
ClientFormat::Gemini
);
}
#[test]
fn test_client_format_from_path_gemini_cli() {
assert_eq!(
ClientFormat::from_path("/v1internal/models/gemini-pro:generateContent"),
ClientFormat::GeminiCli
);
}
#[test]
fn test_client_format_from_body_claude() {
let body = json!({
"model": "claude-3-5-sonnet",
"messages": [{"role": "user", "content": "Hello"}],
"max_tokens": 1024
});
assert_eq!(ClientFormat::from_body(&body), ClientFormat::Claude);
}
#[test]
fn test_client_format_from_body_codex() {
let body = json!({
"input": "Write a function"
});
assert_eq!(ClientFormat::from_body(&body), ClientFormat::Codex);
}
#[test]
fn test_client_format_from_body_gemini() {
let body = json!({
"contents": [{"parts": [{"text": "Hello"}]}]
});
assert_eq!(ClientFormat::from_body(&body), ClientFormat::Gemini);
}
#[test]
fn test_session_id_uniqueness() {
let session1 = ProxySession::from_request("POST", "/v1/messages", None, None);
let session2 = ProxySession::from_request("POST", "/v1/messages", None, None);
assert_ne!(session1.session_id, session2.session_id);
}
#[test]
fn test_session_from_request() {
let body = json!({
"model": "claude-3-5-sonnet",
"messages": [{"role": "user", "content": "Hello"}],
"max_tokens": 1024,
"stream": true
});
let session =
ProxySession::from_request("POST", "/v1/messages", Some("Mozilla/5.0"), Some(&body));
assert_eq!(session.method, "POST");
assert_eq!(session.request_url, "/v1/messages");
assert_eq!(session.user_agent, Some("Mozilla/5.0".to_string()));
assert_eq!(session.client_format, ClientFormat::Claude);
assert_eq!(session.model, Some("claude-3-5-sonnet".to_string()));
assert!(session.is_streaming);
}
#[test]
fn test_session_with_provider() {
let session = ProxySession::from_request("POST", "/v1/messages", None, None)
.with_provider("provider-123");
assert_eq!(session.provider_id, Some("provider-123".to_string()));
}
#[test]
fn test_client_format_as_str() {
assert_eq!(ClientFormat::Claude.as_str(), "claude");
assert_eq!(ClientFormat::Codex.as_str(), "codex");
assert_eq!(ClientFormat::OpenAI.as_str(), "openai");
assert_eq!(ClientFormat::Gemini.as_str(), "gemini");
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);
}
}
-193
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@@ -1,193 +0,0 @@
use serde::{Deserialize, Serialize};
/// 代理服务器配置
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct ProxyConfig {
/// 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
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 {
30
}
fn default_streaming_idle_timeout() -> u64 {
60
}
fn default_non_streaming_timeout() -> u64 {
600
}
impl Default for ProxyConfig {
fn default() -> Self {
Self {
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: 300,
enable_logging: true,
live_takeover_active: false,
streaming_first_byte_timeout: 30,
streaming_idle_timeout: 60,
non_streaming_timeout: 600,
}
}
}
/// 代理服务器状态
#[derive(Debug, Clone, Serialize, Deserialize, Default)]
pub struct ProxyStatus {
/// 是否运行中
pub running: bool,
/// 监听地址
pub address: String,
/// 监听端口
pub port: u16,
/// 活跃连接数
pub active_connections: usize,
/// 总请求数
pub total_requests: u64,
/// 成功请求数
pub success_requests: u64,
/// 失败请求数
pub failed_requests: u64,
/// 成功率 (0-100)
pub success_rate: f32,
/// 运行时间(秒)
pub uptime_seconds: u64,
/// 当前使用的Provider名称
pub current_provider: Option<String>,
/// 当前Provider的ID
pub current_provider_id: Option<String>,
/// 最后一次请求时间
pub last_request_at: Option<String>,
/// 最后一次错误信息
pub last_error: Option<String>,
/// Provider故障转移次数
pub failover_count: u64,
/// 当前活跃的代理目标列表
#[serde(default)]
pub active_targets: Vec<ActiveTarget>,
}
/// 活跃的代理目标信息
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct ActiveTarget {
pub app_type: String, // "Claude" | "Codex" | "Gemini"
pub provider_name: String,
pub provider_id: String,
}
/// 代理服务器信息
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct ProxyServerInfo {
pub address: String,
pub port: u16,
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)]
pub enum ApiFormat {
Claude,
OpenAI,
Gemini,
}
/// Provider健康状态
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct ProviderHealth {
pub provider_id: String,
pub app_type: String,
pub is_healthy: bool,
pub consecutive_failures: u32,
pub last_success_at: Option<String>,
pub last_failure_at: Option<String>,
pub last_error: Option<String>,
pub updated_at: String,
}
/// Live 配置备份记录
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct LiveBackup {
/// 应用类型 (claude/codex/gemini)
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,
}
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@@ -1,194 +0,0 @@
//! Cost Calculator - 计算 API 请求成本
//!
//! 使用高精度 Decimal 类型避免浮点数精度问题
use super::parser::TokenUsage;
use rust_decimal::Decimal;
use std::str::FromStr;
/// 成本明细
#[derive(Debug, Clone)]
pub struct CostBreakdown {
pub input_cost: Decimal,
pub output_cost: Decimal,
pub cache_read_cost: Decimal,
pub cache_creation_cost: Decimal,
pub total_cost: Decimal,
}
/// 模型定价信息
#[derive(Debug, Clone)]
pub struct ModelPricing {
pub input_cost_per_million: Decimal,
pub output_cost_per_million: Decimal,
pub cache_read_cost_per_million: Decimal,
pub cache_creation_cost_per_million: Decimal,
}
/// 成本计算器
pub struct CostCalculator;
impl CostCalculator {
/// 计算请求成本
///
/// # 参数
/// - `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,
cost_multiplier: Decimal,
) -> 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
/ million
* cost_multiplier;
let output_cost = Decimal::from(usage.output_tokens) * pricing.output_cost_per_million
/ million
* cost_multiplier;
let cache_read_cost =
Decimal::from(usage.cache_read_tokens) * pricing.cache_read_cost_per_million / million
* cost_multiplier;
let cache_creation_cost = Decimal::from(usage.cache_creation_tokens)
* pricing.cache_creation_cost_per_million
/ million
* cost_multiplier;
let total_cost = input_cost + output_cost + cache_read_cost + cache_creation_cost;
CostBreakdown {
input_cost,
output_cost,
cache_read_cost,
cache_creation_cost,
total_cost,
}
}
/// 尝试计算成本,如果模型未知则返回 None
pub fn try_calculate(
usage: &TokenUsage,
pricing: Option<&ModelPricing>,
cost_multiplier: Decimal,
) -> Option<CostBreakdown> {
pricing.map(|p| Self::calculate(usage, p, cost_multiplier))
}
}
impl ModelPricing {
/// 从字符串创建定价信息
pub fn from_strings(
input: &str,
output: &str,
cache_read: &str,
cache_creation: &str,
) -> Result<Self, rust_decimal::Error> {
Ok(Self {
input_cost_per_million: Decimal::from_str(input)?,
output_cost_per_million: Decimal::from_str(output)?,
cache_read_cost_per_million: Decimal::from_str(cache_read)?,
cache_creation_cost_per_million: Decimal::from_str(cache_creation)?,
})
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_cost_calculation() {
let usage = TokenUsage {
input_tokens: 1000,
output_tokens: 500,
cache_read_tokens: 200,
cache_creation_tokens: 100,
model: None,
};
let pricing = ModelPricing::from_strings("3.0", "15.0", "0.3", "3.75").unwrap();
let multiplier = Decimal::from_str("1.0").unwrap();
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());
// 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
assert_eq!(cost.cache_read_cost, Decimal::from_str("0.00006").unwrap());
// cache_creation: 100 * 3.75 / 1M = 0.000375
assert_eq!(
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());
}
#[test]
fn test_cost_multiplier() {
let usage = TokenUsage {
input_tokens: 1000,
output_tokens: 0,
cache_read_tokens: 0,
cache_creation_tokens: 0,
model: None,
};
let pricing = ModelPricing::from_strings("3.0", "15.0", "0", "0").unwrap();
let multiplier = Decimal::from_str("1.5").unwrap();
let cost = CostCalculator::calculate(&usage, &pricing, multiplier);
// input: 1000 * 3.0 / 1M * 1.5 = 0.0045
assert_eq!(cost.input_cost, Decimal::from_str("0.0045").unwrap());
assert_eq!(cost.total_cost, Decimal::from_str("0.0045").unwrap());
}
#[test]
fn test_unknown_model_handling() {
let usage = TokenUsage {
input_tokens: 1000,
output_tokens: 500,
cache_read_tokens: 0,
cache_creation_tokens: 0,
model: None,
};
let multiplier = Decimal::from_str("1.0").unwrap();
let cost = CostCalculator::try_calculate(&usage, None, multiplier);
assert!(cost.is_none());
}
#[test]
fn test_decimal_precision() {
let usage = TokenUsage {
input_tokens: 1,
output_tokens: 1,
cache_read_tokens: 1,
cache_creation_tokens: 1,
model: None,
};
let pricing = ModelPricing::from_strings("0.075", "0.3", "0.01875", "0.075").unwrap();
let multiplier = Decimal::from_str("1.0").unwrap();
let cost = CostCalculator::calculate(&usage, &pricing, multiplier);
// 验证高精度计算
assert!(cost.total_cost > Decimal::ZERO);
assert!(cost.total_cost.to_string().len() > 2); // 确保保留了小数位
}
}
-325
View File
@@ -1,325 +0,0 @@
//! Usage Logger - 记录 API 请求使用情况
use super::calculator::{CostBreakdown, CostCalculator, ModelPricing};
use super::parser::TokenUsage;
use crate::database::Database;
use crate::error::AppError;
use crate::services::usage_stats::find_model_pricing_row;
use rust_decimal::Decimal;
use std::time::SystemTime;
/// 请求日志
#[derive(Debug, Clone)]
pub struct RequestLog {
pub request_id: String,
pub provider_id: String,
pub app_type: String,
pub model: String,
pub usage: TokenUsage,
pub cost: Option<CostBreakdown>,
pub latency_ms: u64,
pub first_token_ms: Option<u64>,
pub status_code: u16,
pub error_message: Option<String>,
pub session_id: Option<String>,
/// 供应商类型 (claude, claude_auth, codex, gemini, gemini_cli, openrouter)
pub provider_type: Option<String>,
/// 是否为流式请求
pub is_streaming: bool,
/// 成本倍数
pub cost_multiplier: String,
}
/// 使用量记录器
pub struct UsageLogger<'a> {
db: &'a Database,
}
impl<'a> UsageLogger<'a> {
pub fn new(db: &'a Database) -> Self {
Self { db }
}
/// 记录成功的请求
pub fn log_request(&self, log: &RequestLog) -> Result<(), AppError> {
let conn = crate::database::lock_conn!(self.db.conn);
let (input_cost, output_cost, cache_read_cost, cache_creation_cost, total_cost) =
if let Some(cost) = &log.cost {
(
cost.input_cost.to_string(),
cost.output_cost.to_string(),
cost.cache_read_cost.to_string(),
cost.cache_creation_cost.to_string(),
cost.total_cost.to_string(),
)
} else {
(
"0".to_string(),
"0".to_string(),
"0".to_string(),
"0".to_string(),
"0".to_string(),
)
};
let created_at = SystemTime::now()
.duration_since(SystemTime::UNIX_EPOCH)
.unwrap()
.as_secs() as i64;
conn.execute(
"INSERT INTO proxy_request_logs (
request_id, provider_id, app_type, model,
input_tokens, output_tokens, cache_read_tokens, cache_creation_tokens,
input_cost_usd, output_cost_usd, cache_read_cost_usd, cache_creation_cost_usd, total_cost_usd,
latency_ms, first_token_ms, status_code, error_message, session_id,
provider_type, is_streaming, cost_multiplier, created_at
) VALUES (?1, ?2, ?3, ?4, ?5, ?6, ?7, ?8, ?9, ?10, ?11, ?12, ?13, ?14, ?15, ?16, ?17, ?18, ?19, ?20, ?21, ?22)",
rusqlite::params![
log.request_id,
log.provider_id,
log.app_type,
log.model,
log.usage.input_tokens,
log.usage.output_tokens,
log.usage.cache_read_tokens,
log.usage.cache_creation_tokens,
input_cost,
output_cost,
cache_read_cost,
cache_creation_cost,
total_cost,
log.latency_ms as i64,
log.first_token_ms.map(|v| v as i64),
log.status_code as i64,
log.error_message,
log.session_id,
log.provider_type,
log.is_streaming as i64,
log.cost_multiplier,
created_at,
],
)
.map_err(|e| AppError::Database(format!("记录请求日志失败: {e}")))?;
Ok(())
}
/// 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,
request_id: String,
provider_id: String,
app_type: String,
model: String,
status_code: u16,
error_message: String,
latency_ms: u64,
) -> 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: None,
provider_type: None,
is_streaming: false,
cost_multiplier: "1.0".to_string(),
};
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);
let row = find_model_pricing_row(&conn, model_id)?;
match row {
Some((input, output, cache_read, cache_creation)) => {
ModelPricing::from_strings(&input, &output, &cache_read, &cache_creation)
.map(Some)
.map_err(|e| AppError::Database(format!("解析定价数据失败: {e}")))
}
None => Ok(None),
}
}
/// 计算并记录请求
#[allow(clippy::too_many_arguments)]
pub fn log_with_calculation(
&self,
request_id: String,
provider_id: String,
app_type: String,
model: String,
usage: TokenUsage,
cost_multiplier: Decimal,
latency_ms: u64,
first_token_ms: Option<u64>,
status_code: u16,
session_id: Option<String>,
provider_type: Option<String>,
is_streaming: bool,
) -> Result<(), AppError> {
let pricing = self.get_model_pricing(&model)?;
if pricing.is_none() {
log::warn!("模型 {model} 的定价信息未找到,成本将记录为 0");
}
let cost = CostCalculator::try_calculate(&usage, pricing.as_ref(), cost_multiplier);
let log = RequestLog {
request_id,
provider_id,
app_type,
model,
usage,
cost,
latency_ms,
first_token_ms,
status_code,
error_message: None,
session_id,
provider_type,
is_streaming,
cost_multiplier: cost_multiplier.to_string(),
};
self.log_request(&log)
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_log_request() -> Result<(), AppError> {
let db = Database::memory()?;
// 插入测试定价
{
let conn = crate::database::lock_conn!(db.conn);
conn.execute(
"INSERT INTO model_pricing (model_id, display_name, input_cost_per_million, output_cost_per_million)
VALUES ('test-model', 'Test Model', '3.0', '15.0')",
[],
)
.unwrap();
}
let logger = UsageLogger::new(&db);
let usage = TokenUsage {
input_tokens: 1000,
output_tokens: 500,
cache_read_tokens: 0,
cache_creation_tokens: 0,
model: None,
};
logger.log_with_calculation(
"req-123".to_string(),
"provider-1".to_string(),
"claude".to_string(),
"test-model".to_string(),
usage,
Decimal::from(1),
100,
None,
200,
None,
Some("claude".to_string()),
false,
)?;
// 验证记录已插入
let conn = crate::database::lock_conn!(db.conn);
let count: i64 = conn
.query_row(
"SELECT COUNT(*) FROM proxy_request_logs WHERE request_id = 'req-123'",
[],
|row| row.get(0),
)
.unwrap();
assert_eq!(count, 1);
Ok(())
}
#[test]
fn test_log_error() -> Result<(), AppError> {
let db = Database::memory()?;
let logger = UsageLogger::new(&db);
logger.log_error(
"req-error".to_string(),
"provider-1".to_string(),
"claude".to_string(),
"unknown-model".to_string(),
500,
"Internal Server Error".to_string(),
50,
)?;
// 验证错误记录已插入
let conn = crate::database::lock_conn!(db.conn);
let (status, error): (i64, Option<String>) = conn
.query_row(
"SELECT status_code, error_message FROM proxy_request_logs WHERE request_id = 'req-error'",
[],
|row| Ok((row.get(0)?, row.get(1)?)),
)
.unwrap();
assert_eq!(status, 500);
assert_eq!(error, Some("Internal Server Error".to_string()));
Ok(())
}
}
-15
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@@ -1,15 +0,0 @@
//! Proxy Usage Tracking Module
//!
//! 提供 API 请求的使用量跟踪、成本计算和日志记录功能
pub mod calculator;
pub mod logger;
pub mod parser;
// 仅导出内部使用的类型,避免未使用警告
#[allow(unused_imports)]
pub use calculator::{CostBreakdown, CostCalculator, ModelPricing};
#[allow(unused_imports)]
pub use logger::{RequestLog, UsageLogger};
#[allow(unused_imports)]
pub use parser::{ApiType, TokenUsage};
-881
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@@ -1,881 +0,0 @@
//! Response Parser - 从 API 响应中提取 token 使用量
//!
//! 支持多种 API 格式:
//! - Claude API (非流式和流式)
//! - OpenRouter (OpenAI 格式)
//! - Codex API (非流式和流式)
//! - Gemini API (非流式和流式)
use serde::{Deserialize, Serialize};
use serde_json::Value;
/// Token 使用量统计
#[derive(Debug, Clone, Default, Serialize, Deserialize)]
pub struct TokenUsage {
pub input_tokens: u32,
pub output_tokens: u32,
pub cache_read_tokens: u32,
pub cache_creation_tokens: u32,
/// 从响应中提取的实际模型名称(如果可用)
pub model: Option<String>,
}
/// API 类型
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
#[allow(dead_code)]
pub enum ApiType {
Claude,
OpenRouter,
Codex,
Gemini,
}
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,
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,
})
}
/// 从 Claude API 流式响应解析
#[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) =
msg_usage.get("input_tokens").and_then(|v| v.as_u64())
{
usage.input_tokens = input as u32;
}
usage.cache_read_tokens = msg_usage
.get("cache_read_input_tokens")
.and_then(|v| v.as_u64())
.unwrap_or(0)
as u32;
usage.cache_creation_tokens = msg_usage
.get("cache_creation_input_tokens")
.and_then(|v| v.as_u64())
.unwrap_or(0)
as u32;
}
}
"message_delta" => {
if let Some(delta_usage) = event.get("usage") {
// 从 message_delta 获取 output_tokens
if let Some(output) =
delta_usage.get("output_tokens").and_then(|v| v.as_u64())
{
usage.output_tokens = output as u32;
}
// OpenRouter 转换后的流式响应:input_tokens 也在 message_delta 中
// 如果 message_start 中没有 input_tokens,则从 message_delta 获取
if usage.input_tokens == 0 {
if let Some(input) =
delta_usage.get("input_tokens").and_then(|v| v.as_u64())
{
usage.input_tokens = input as u32;
}
}
}
}
_ => {}
}
}
}
if usage.input_tokens > 0 || usage.output_tokens > 0 {
usage.model = model;
Some(usage)
} else {
None
}
}
/// 从 OpenRouter 响应解析 (OpenAI 格式)
#[allow(dead_code)]
pub fn from_openrouter_response(body: &Value) -> Option<Self> {
let usage = body.get("usage")?;
Some(Self {
input_tokens: usage.get("prompt_tokens")?.as_u64()? as u32,
output_tokens: usage.get("completion_tokens")?.as_u64()? as u32,
cache_read_tokens: 0,
cache_creation_tokens: 0,
model: None,
})
}
/// 从 Codex API 非流式响应解析
pub fn from_codex_response(body: &Value) -> Option<Self> {
let usage = body.get("usage");
if usage.is_none() {
log::debug!(
"[Codex] 响应中没有 usage 字段,body keys: {:?}",
body.as_object().map(|o| o.keys().collect::<Vec<_>>())
);
return None;
}
let usage = usage?;
let input_tokens = usage.get("input_tokens").and_then(|v| v.as_u64());
let output_tokens = usage.get("output_tokens").and_then(|v| v.as_u64());
if input_tokens.is_none() || output_tokens.is_none() {
log::debug!("[Codex] usage 字段缺少 input_tokens 或 output_tokensusage: {usage:?}");
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_creation_tokens: usage
.get("cache_creation_input_tokens")
.and_then(|v| v.as_u64())
.unwrap_or(0) as u32,
model,
})
}
/// 从 Codex API 响应解析并调整 input_tokens
///
/// Codex 的 input_tokens 需要减去 cached_tokens 以获得实际计费的 token 数
/// 公式: adjusted_input = max(input_tokens - cached_tokens, 0)
#[allow(dead_code)]
pub fn from_codex_response_adjusted(body: &Value) -> Option<Self> {
let usage = body.get("usage")?;
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)
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;
// 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,
cache_read_tokens: cached_tokens,
cache_creation_tokens: usage
.get("cache_creation_input_tokens")
.and_then(|v| v.as_u64())
.unwrap_or(0) as u32,
model,
})
}
/// 从 Codex API 流式响应解析
#[allow(dead_code)]
pub fn from_codex_stream_events(events: &[Value]) -> Option<Self> {
log::debug!("[Codex] 解析流式事件,共 {} 个事件", events.len());
for event in events {
if let Some(event_type) = event.get("type").and_then(|v| v.as_str()) {
log::debug!("[Codex] 事件类型: {event_type}");
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);
}
}
}
}
log::debug!("[Codex] 未找到 response.completed 事件");
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")?;
// OpenAI 使用 prompt_tokens 和 completion_tokens
let prompt_tokens = usage.get("prompt_tokens").and_then(|v| v.as_u64())?;
let completion_tokens = usage.get("completion_tokens").and_then(|v| v.as_u64())?;
// 获取 cached_tokens (可能在 prompt_tokens_details 中)
let cached_tokens = usage
.get("prompt_tokens_details")
.and_then(|d| d.get("cached_tokens"))
.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,
})
}
/// 从 OpenAI Chat Completions API 流式响应解析
pub fn from_openai_stream_events(events: &[Value]) -> Option<Self> {
log::debug!("[Codex] 解析 OpenAI 流式事件,共 {} 个事件", events.len());
// OpenAI 流式响应在最后一个 chunk 中包含 usage
for event in events.iter().rev() {
if let Some(usage) = event.get("usage") {
if !usage.is_null() {
log::debug!("[Codex] 找到 usage: {usage:?}");
return Self::from_openai_response(event);
}
}
}
log::debug!("[Codex] 未找到 usage 信息");
None
}
/// 从 Gemini API 非流式响应解析
pub fn from_gemini_response(body: &Value) -> Option<Self> {
let usage = body.get("usageMetadata")?;
// 提取实际使用的模型名称(modelVersion 字段)
let model = body
.get("modelVersion")
.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,
cache_read_tokens: usage
.get("cachedContentTokenCount")
.and_then(|v| v.as_u64())
.unwrap_or(0) as u32,
cache_creation_tokens: 0,
model,
})
}
/// 从 Gemini API 流式响应解析
#[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_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")
.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())
.unwrap_or(0) as u32;
}
// 提取实际使用的模型名称(modelVersion 字段)
if model.is_none() {
if let Some(model_version) = chunk.get("modelVersion").and_then(|v| v.as_str()) {
model = Some(model_version.to_string());
}
}
}
// 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,
output_tokens: total_output,
cache_read_tokens: total_cache_read,
cache_creation_tokens: 0,
model,
})
} else {
None
}
}
}
#[cfg(test)]
mod tests {
use super::*;
use serde_json::json;
#[test]
fn test_claude_response_parsing() {
let response = json!({
"model": "claude-sonnet-4-20250514",
"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, 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]
fn test_claude_stream_parsing() {
let events = vec![
json!({
"type": "message_start",
"message": {
"model": "claude-sonnet-4-20250514",
"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, 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]
fn test_openrouter_response_parsing() {
let response = json!({
"usage": {
"prompt_tokens": 100,
"completion_tokens": 50
}
});
let usage = TokenUsage::from_openrouter_response(&response).unwrap();
assert_eq!(usage.input_tokens, 100);
assert_eq!(usage.output_tokens, 50);
assert_eq!(usage.cache_read_tokens, 0);
assert_eq!(usage.cache_creation_tokens, 0);
}
#[test]
fn test_gemini_response_parsing() {
let response = json!({
"modelVersion": "gemini-3-pro-high",
"usageMetadata": {
"promptTokenCount": 8383,
"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.cache_read_tokens, 20);
assert_eq!(usage.cache_creation_tokens, 0);
assert_eq!(usage.model, Some("gemini-3-pro-high".to_string()));
}
#[test]
fn test_gemini_response_parsing_no_model() {
// 测试没有 modelVersion 字段的情况
let response = json!({
"usageMetadata": {
"promptTokenCount": 100,
"totalTokenCount": 150,
"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!({
"usage": {
"input_tokens": 1000,
"output_tokens": 500,
"input_tokens_details": {
"cached_tokens": 300
}
}
});
let usage = TokenUsage::from_codex_response_adjusted(&response).unwrap();
// input_tokens 应该被调整: 1000 - 300 = 700
assert_eq!(usage.input_tokens, 700);
assert_eq!(usage.output_tokens, 500);
assert_eq!(usage.cache_read_tokens, 300);
}
#[test]
fn test_codex_response_adjusted_no_cache() {
let response = json!({
"usage": {
"input_tokens": 1000,
"output_tokens": 500
}
});
let usage = TokenUsage::from_codex_response_adjusted(&response).unwrap();
// 没有 cached_tokensinput_tokens 保持不变
assert_eq!(usage.input_tokens, 1000);
assert_eq!(usage.output_tokens, 500);
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
let response = json!({
"usage": {
"input_tokens": 100,
"output_tokens": 50,
"input_tokens_details": {
"cached_tokens": 200
}
}
});
let usage = TokenUsage::from_codex_response_adjusted(&response).unwrap();
// saturating_sub 确保不会下溢
assert_eq!(usage.input_tokens, 0);
assert_eq!(usage.cache_read_tokens, 200);
}
#[test]
fn test_openrouter_stream_parsing() {
// 测试 OpenRouter 转换后的流式响应解析
// OpenRouter 流式响应经过转换后,input_tokens 在 message_delta 中
let events = vec![
json!({
"type": "message_start",
"message": {
"model": "claude-sonnet-4-20250514",
"usage": {
"input_tokens": 0,
"output_tokens": 0
}
}
}),
json!({
"type": "message_delta",
"delta": {
"stop_reason": "end_turn"
},
"usage": {
"input_tokens": 150,
"output_tokens": 75
}
}),
];
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]
fn test_native_claude_stream_parsing() {
// 测试原生 Claude API 流式响应解析
// 原生 Claude API 的 input_tokens 在 message_start 中
let events = vec![
json!({
"type": "message_start",
"message": {
"model": "claude-sonnet-4-20250514",
"usage": {
"input_tokens": 200,
"cache_read_input_tokens": 50
}
}
}),
json!({
"type": "message_delta",
"usage": {
"output_tokens": 100
}
}),
];
let usage = TokenUsage::from_claude_stream_events(&events).unwrap();
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) {
+9 -64
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)?;
@@ -209,22 +190,10 @@ impl McpService {
// 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 {
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)?;
}
}
}
@@ -243,22 +212,10 @@ impl McpService {
// 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 {
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)?;
}
}
}
@@ -277,22 +234,10 @@ impl McpService {
// 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 {
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)?;
}
}
}

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