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15 commits

Author SHA1 Message Date
itexpert228
368bc27eaa Refactor engine, improve UI animations, secure Telegram bot, fix seeding bugs 2026-07-19 19:25:02 +03:00
itexpert228
425ced2c45 feat: Add sequential downloading and streaming support via HTTP server 2026-07-16 16:38:48 +03:00
itexpert228
02afe80d91 docs: update TODO with global roadmap (engine, DHT, logs, UI, killer features) 2026-07-16 16:24:11 +03:00
itexpert228
7cf20e00c6 docs: update README with Russian translation and install guide 2026-07-16 16:11:48 +03:00
itexpert228
390c8412e3 sperm cum masha popa pizda 2026-07-16 16:10:34 +03:00
itexpert228
746afb2f24 UI refactor: use overlays, fix logo, clean gitignore 2026-07-16 16:06:10 +03:00
itexpert228
e4265fa777 228 2026-03-07 19:40:49 +03:00
itexpert228
a6e1bc21d7 f 2026-03-06 15:05:46 +03:00
itexpert228
bba337ee60 govno 2026-03-06 14:47:54 +03:00
itexpert228
6bb73ffb6e бляяяяя 2026-03-06 14:17:55 +03:00
itexpert228
20d05be69f я заебался сука 2026-03-06 14:09:24 +03:00
itexpert228
ebba1d5b61 сука 2026-03-06 13:48:38 +03:00
itexpert228
27bb592659 залупа 2026-03-06 12:52:01 +03:00
itexpert228
9978610cae ебаааать 2026-03-06 12:14:23 +03:00
itexpert228
cf79db0932 huy 2026-03-06 12:02:52 +03:00
36 changed files with 10774 additions and 2 deletions

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.gitignore vendored Normal file
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# Binaries
/ztrr
/ztorrent*
/torrent-client*
*.exe
*.dll
*.so
*.dylib
*.out
bin/
cmd/ztrr/ztrr
# Logs and databases
*.log
/logs/
/downloads/
.DS_Store
# Temporary and build files
/dist/
/tmp/
*.test
*.prof
.ztorrent-parts/
profile.txt
testlip.go
# JSON config files
*.json

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# Ztorrent # ZTORRENT ⚡
ну нихуя себе, как это великая ZOV OS и без своего торрент клиента, qbittorrent сосиииииииииииииииииииии **Ztorrent** — это минималистичный и невероятно быстрый консольный (TUI) BitTorrent-клиент, написанный на Go.
Он работает прямо в вашем терминале, поддерживает `.torrent` файлы и **magnet-ссылки**, умеет искать пиров через собственный встроенный **DHT-движок** и сохраняет историю всех ваших загрузок и логов.
![ZTORRENT UI](https://raw.githubusercontent.com/veggiedefender/torrent-client/main/.github/demo.png) *(Пример интерфейса — скриншот будет добавлен позже)*
---
## 🔥 Ключевые возможности
- 🚀 **Полноценный TUI (Terminal UI)** — стильный и отзывчивый интерфейс прямо в консоли (написан на BubbleTea).
- 🧲 **Поддержка Magnet-ссылок** — загрузка метаданных "на лету" через встроенный DHT-сервер и UDP-трекеры.
- 📁 **Классические `.torrent` файлы** — парсинг однофайловых и многофайловых торрентов, поддержка огромных раздач.
- 💾 **Журнал торрентов (History)** — программа запоминает всё, что вы скачивали, и позволяет быстро перезапустить старую раздачу.
- 📝 **Логирование сессий** — подробные логи каждого скачивания аккуратно сохраняются в Markdown-файлы (`~/.ztorrent/logs/`).
- ⚡ **Мультитрекерность** — автоматический опрос всех доступных трекеров по HTTP/HTTPS и UDP.
- 🖥 **Кроссплатформенность** — работает на macOS, Linux и Windows.
---
## 🛠 Установка (Инструкция)
### Требования
Для сборки из исходников вам понадобится установленный [Go (версии 1.21+)](https://go.dev/dl/).
### Шаг 1: Клонирование репозитория
Скачайте исходный код к себе на компьютер:
```bash
git clone https://github.com/твоё_имя/ztorrent.git
cd ztorrent
```
### Шаг 2: Сборка программы
Соберите бинарный файл `ztrr` стандартной командой Go. (Мы используем директорию `cmd/ztrr` как точку входа):
```bash
go build -o ztrr ./cmd/ztrr
```
*Дополнительно: если хотите вшить версию и дату сборки (отображается по кнопке `?`), используйте эту команду:*
```bash
VERSION="1.0.0" && BUILDDATE=$(date -u +%Y-%m-%d) && COMMIT=$(git rev-parse --short HEAD 2>/dev/null || echo "unknown") && go build -ldflags="-X 'github.com/veggiedefender/torrent-client/internal/version.Version=${VERSION}' -X 'github.com/veggiedefender/torrent-client/internal/version.BuildDate=${BUILDDATE}' -X 'github.com/veggiedefender/torrent-client/internal/version.GitCommit=${COMMIT}'" -o ztrr ./cmd/ztrr
```
### Шаг 3: Глобальная установка (Опционально)
Чтобы запускать торрент-клиент из любой папки, перенесите собранный файл в `/usr/local/bin` (или в любую папку из вашего `$PATH`):
```bash
sudo mv ztrr /usr/local/bin/
```
Теперь вы можете запустить клиент просто написав в терминале:
```bash
ztrr
```
---
## 🎮 Использование и Горячие клавиши
После запуска программы перед вами откроется экран приветствия.
Вы можете ввести путь к `.torrent` файлу вручную, либо нажать **`F`**, чтобы выбрать его через системный проводник. Также поддерживается вставка magnet-ссылки прямо в текстовое поле.
### Горячие клавиши (Доступны отовсюду):
- `J` или `5`**Журнал торрентов**: список ранее скачанных торрентов.
- `L` или `6`**Журнал логов**: подробные технические логи (помогают понять, почему торрент не качается).
- `?` или `7`**О программе**: версия, дата сборки и список всех хоткеев.
- `Q` или `Ctrl+C` — Выйти из программы.
### Во время скачивания (Дашборд):
- `1-4` / `Tab` — Переключение вкладок (Обзор, Пиры, Файлы, Трекеры).
- `Пробел` или `S` — Пауза / Продолжить скачивание.
- `O` — Закрыть текущий торрент и открыть окно нового.
- `C` — Очистить всё.
---
## 📂 Где хранятся данные?
Все служебные данные Ztorrent хранит в вашей домашней директории:
- `~/.ztorrent/history.json` — база данных ваших загрузок (Журнал).
- `~/.ztorrent/logs/` — markdown-файлы с логами для каждой сессии скачивания.
## Лицензия
Ztorrent распространяется под лицензией MIT. Вы можете свободно изменять и распространять код.

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# ZTORRENT — ROADMAP & TODO
> **Глобальная цель:** Довести Ztorrent до продакшен-уровня (стандарты qBittorrent и выше), сохранив консольную эстетику.
---
## 🚀 Глобальный план развития (Roadmap)
### 1. Движок уровня qBittorrent (Core Engine)
- [ ] **Оптимизация I/O:** Асинхронная запись на диск (mmap / AIO), чтобы не было фризов UI при скачивании на гигабитных скоростях.
- [ ] **Продвинутый кэш:** Умное кэширование кусков в ОЗУ перед сбросом на диск.
- [ ] **Smart Ban / Anti-Leech:** Автоматический бан плохих пиров, защита от спам-хэшей и некорректных кусков.
- [ ] **Приоритизация файлов:** Возможность выбирать, какие файлы из раздачи качать первыми.
### 2. Идеальный DHT
- [ ] **BEP 44 (Arbitrary Data):** Хранение произвольных данных в DHT.
- [ ] **Умный роутинг (Kademlia 2.0):** Динамическое поддержание "живых" нод в bucket'ах, пинги в фоне.
- [ ] **IPv6 DHT:** Поддержка поиска пиров в IPv6 сетях.
- [ ] **Локальный поиск (LSD):** Поиск пиров в локальной сети (Local Service Discovery).
### 3. Умное логирование (Smart Logging)
- [ ] **Уровни логов (Levels):** Переход на структурированные логи (DEBUG, INFO, WARN, ERROR).
- [ ] **Фильтрация логов в UI:** Возможность прямо в TUI отфильтровать логи по "DHT", "Peers", "Disk".
- [ ] **Аналитика сессии:** Summary по итогам скачивания (сколько отброшено кусков, средняя скорость, топовые пиры).
### 4. Эргономика UI (UX Refactoring)
- [ ] **Интерактивные таблицы:** Возможность сортировки по столбцам (по скорости, проценту скачивания).
- [ ] **Просмотр файлов внутри торрента:** Древовидная структура (`tree view`) для многофайловых торрентов.
- [ ] **Настройки "на лету":** Вызов окна настроек (`Config`) прямо из UI (лимиты скорости, порты, пути).
- [ ] **Визуализация Swarm'а:** Красивая карта пиров или график скорости (ASCII Sparklines).
### 5. Killer-Features (Убийцы qBit)
- [ ] **Стриминг в плеер (VLC/mpv):** Скачивание торрента "на лету" (куски по порядку) с пробросом HTTP-стрима прямо в медиаплеер (нажал кнопку — фильм сразу открылся).
- [ ] **Интеграция с Telegram / Discord:** Уведомления об окончании загрузки прямо на телефон.
- [ ] **CLI Remote Control:** Возможность поднять Ztorrent как демона на сервере и управлять им через SSH/TUI удалённо по RPC.
- [ ] **Web-виджет (Read-Only):** Поднятие легковесного веб-сервера для просмотра статуса загрузок с телефона.
---
## 🛠 Выполнено (Архив)
- ✅ **Magnet-ссылки (BEP 9)** и метаданные.
- ✅ **Базовый DHT (BEP 5)** с непрерывным поиском.
- ✅ **Мультитрекерность** (HTTP + UDP).
- ✅ **Resume Data / Endgame Mode / Keep-alive.**
- ✅ **Журнал (History) и Логи (Session Logs).**
- ✅ **TUI интерфейс** с глобальными оверлеями (О программе, Журнал, Логи).

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package main
import (
"log"
"net/http"
_ "net/http/pprof"
"os"
"github.com/veggiedefender/torrent-client/internal/app"
"github.com/veggiedefender/torrent-client/internal/config"
"github.com/veggiedefender/torrent-client/internal/tgbot"
"github.com/veggiedefender/torrent-client/ui"
)
func main() {
go func() {
log.Println(http.ListenAndServe("localhost:6060", nil))
}()
controller := app.NewController()
cfg, _ := config.Load()
var token string
if cfg != nil {
token = cfg.TelegramToken
}
if envTok := os.Getenv("TG_BOT_TOKEN"); envTok != "" {
token = envTok
}
bot, err := tgbot.NewBot(controller, token)
if err != nil {
// Log but don't fail, bot is optional
} else if bot != nil {
bot.Start()
}
ui.Start(controller)
}

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go.mod Normal file
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module github.com/veggiedefender/torrent-client
go 1.25.0
require (
github.com/charmbracelet/bubbles v1.0.0
github.com/charmbracelet/bubbletea v1.3.10
github.com/charmbracelet/lipgloss v1.1.0
github.com/go-telegram-bot-api/telegram-bot-api/v5 v5.5.1
github.com/huin/goupnp v1.3.0
github.com/jackpal/bencode-go v1.0.2
golang.org/x/time v0.15.0
)
require (
github.com/atotto/clipboard v0.1.4 // indirect
github.com/aymanbagabas/go-osc52/v2 v2.0.1 // indirect
github.com/charmbracelet/colorprofile v0.4.1 // indirect
github.com/charmbracelet/x/ansi v0.11.6 // indirect
github.com/charmbracelet/x/cellbuf v0.0.15 // indirect
github.com/charmbracelet/x/term v0.2.2 // indirect
github.com/clipperhouse/displaywidth v0.9.0 // indirect
github.com/clipperhouse/stringish v0.1.1 // indirect
github.com/clipperhouse/uax29/v2 v2.5.0 // indirect
github.com/erikgeiser/coninput v0.0.0-20211004153227-1c3628e74d0f // indirect
github.com/lucasb-eyer/go-colorful v1.3.0 // indirect
github.com/mattn/go-isatty v0.0.20 // indirect
github.com/mattn/go-localereader v0.0.1 // indirect
github.com/mattn/go-runewidth v0.0.19 // indirect
github.com/muesli/ansi v0.0.0-20230316100256-276c6243b2f6 // indirect
github.com/muesli/cancelreader v0.2.2 // indirect
github.com/muesli/termenv v0.16.0 // indirect
github.com/rivo/uniseg v0.4.7 // indirect
github.com/xo/terminfo v0.0.0-20220910002029-abceb7e1c41e // indirect
)
require (
golang.org/x/sync v0.11.0 // indirect
golang.org/x/sys v0.38.0 // indirect
golang.org/x/text v0.22.0 // indirect
)

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github.com/atotto/clipboard v0.1.4 h1:EH0zSVneZPSuFR11BlR9YppQTVDbh5+16AmcJi4g1z4=
github.com/atotto/clipboard v0.1.4/go.mod h1:ZY9tmq7sm5xIbd9bOK4onWV4S6X0u6GY7Vn0Yu86PYI=
github.com/aymanbagabas/go-osc52/v2 v2.0.1 h1:HwpRHbFMcZLEVr42D4p7XBqjyuxQH5SMiErDT4WkJ2k=
github.com/aymanbagabas/go-osc52/v2 v2.0.1/go.mod h1:uYgXzlJ7ZpABp8OJ+exZzJJhRNQ2ASbcXHWsFqH8hp8=
github.com/aymanbagabas/go-udiff v0.3.1 h1:LV+qyBQ2pqe0u42ZsUEtPiCaUoqgA9gYRDs3vj1nolY=
github.com/aymanbagabas/go-udiff v0.3.1/go.mod h1:G0fsKmG+P6ylD0r6N/KgQD/nWzgfnl8ZBcNLgcbrw8E=
github.com/charmbracelet/bubbles v1.0.0 h1:12J8/ak/uCZEMQ6KU7pcfwceyjLlWsDLAxB5fXonfvc=
github.com/charmbracelet/bubbles v1.0.0/go.mod h1:9d/Zd5GdnauMI5ivUIVisuEm3ave1XwXtD1ckyV6r3E=
github.com/charmbracelet/bubbletea v1.3.10 h1:otUDHWMMzQSB0Pkc87rm691KZ3SWa4KUlvF9nRvCICw=
github.com/charmbracelet/bubbletea v1.3.10/go.mod h1:ORQfo0fk8U+po9VaNvnV95UPWA1BitP1E0N6xJPlHr4=
github.com/charmbracelet/colorprofile v0.4.1 h1:a1lO03qTrSIRaK8c3JRxJDZOvhvIeSco3ej+ngLk1kk=
github.com/charmbracelet/colorprofile v0.4.1/go.mod h1:U1d9Dljmdf9DLegaJ0nGZNJvoXAhayhmidOdcBwAvKk=
github.com/charmbracelet/lipgloss v1.1.0 h1:vYXsiLHVkK7fp74RkV7b2kq9+zDLoEU4MZoFqR/noCY=
github.com/charmbracelet/lipgloss v1.1.0/go.mod h1:/6Q8FR2o+kj8rz4Dq0zQc3vYf7X+B0binUUBwA0aL30=
github.com/charmbracelet/x/ansi v0.11.6 h1:GhV21SiDz/45W9AnV2R61xZMRri5NlLnl6CVF7ihZW8=
github.com/charmbracelet/x/ansi v0.11.6/go.mod h1:2JNYLgQUsyqaiLovhU2Rv/pb8r6ydXKS3NIttu3VGZQ=
github.com/charmbracelet/x/cellbuf v0.0.15 h1:ur3pZy0o6z/R7EylET877CBxaiE1Sp1GMxoFPAIztPI=
github.com/charmbracelet/x/cellbuf v0.0.15/go.mod h1:J1YVbR7MUuEGIFPCaaZ96KDl5NoS0DAWkskup+mOY+Q=
github.com/charmbracelet/x/exp/golden v0.0.0-20241011142426-46044092ad91 h1:payRxjMjKgx2PaCWLZ4p3ro9y97+TVLZNaRZgJwSVDQ=
github.com/charmbracelet/x/exp/golden v0.0.0-20241011142426-46044092ad91/go.mod h1:wDlXFlCrmJ8J+swcL/MnGUuYnqgQdW9rhSD61oNMb6U=
github.com/charmbracelet/x/term v0.2.2 h1:xVRT/S2ZcKdhhOuSP4t5cLi5o+JxklsoEObBSgfgZRk=
github.com/charmbracelet/x/term v0.2.2/go.mod h1:kF8CY5RddLWrsgVwpw4kAa6TESp6EB5y3uxGLeCqzAI=
github.com/clipperhouse/displaywidth v0.9.0 h1:Qb4KOhYwRiN3viMv1v/3cTBlz3AcAZX3+y9OLhMtAtA=
github.com/clipperhouse/displaywidth v0.9.0/go.mod h1:aCAAqTlh4GIVkhQnJpbL0T/WfcrJXHcj8C0yjYcjOZA=
github.com/clipperhouse/stringish v0.1.1 h1:+NSqMOr3GR6k1FdRhhnXrLfztGzuG+VuFDfatpWHKCs=
github.com/clipperhouse/stringish v0.1.1/go.mod h1:v/WhFtE1q0ovMta2+m+UbpZ+2/HEXNWYXQgCt4hdOzA=
github.com/clipperhouse/uax29/v2 v2.5.0 h1:x7T0T4eTHDONxFJsL94uKNKPHrclyFI0lm7+w94cO8U=
github.com/clipperhouse/uax29/v2 v2.5.0/go.mod h1:Wn1g7MK6OoeDT0vL+Q0SQLDz/KpfsVRgg6W7ihQeh4g=
github.com/erikgeiser/coninput v0.0.0-20211004153227-1c3628e74d0f h1:Y/CXytFA4m6baUTXGLOoWe4PQhGxaX0KpnayAqC48p4=
github.com/erikgeiser/coninput v0.0.0-20211004153227-1c3628e74d0f/go.mod h1:vw97MGsxSvLiUE2X8qFplwetxpGLQrlU1Q9AUEIzCaM=
github.com/go-telegram-bot-api/telegram-bot-api/v5 v5.5.1 h1:wG8n/XJQ07TmjbITcGiUaOtXxdrINDz1b0J1w0SzqDc=
github.com/go-telegram-bot-api/telegram-bot-api/v5 v5.5.1/go.mod h1:A2S0CWkNylc2phvKXWBBdD3K0iGnDBGbzRpISP2zBl8=
github.com/huin/goupnp v1.3.0 h1:UvLUlWDNpoUdYzb2TCn+MuTWtcjXKSza2n6CBdQ0xXc=
github.com/huin/goupnp v1.3.0/go.mod h1:gnGPsThkYa7bFi/KWmEysQRf48l2dvR5bxr2OFckNX8=
github.com/jackpal/bencode-go v1.0.2 h1:LcCNfZ344u0LpBPOZNjpCLps/wUOuN4r87Fy9+5yU8g=
github.com/jackpal/bencode-go v1.0.2/go.mod h1:6jI9mUjO3GQbZti3JizEfxTzRfWOM8oBBcwbwlTfceI=
github.com/lucasb-eyer/go-colorful v1.3.0 h1:2/yBRLdWBZKrf7gB40FoiKfAWYQ0lqNcbuQwVHXptag=
github.com/lucasb-eyer/go-colorful v1.3.0/go.mod h1:R4dSotOR9KMtayYi1e77YzuveK+i7ruzyGqttikkLy0=
github.com/mattn/go-isatty v0.0.20 h1:xfD0iDuEKnDkl03q4limB+vH+GxLEtL/jb4xVJSWWEY=
github.com/mattn/go-isatty v0.0.20/go.mod h1:W+V8PltTTMOvKvAeJH7IuucS94S2C6jfK/D7dTCTo3Y=
github.com/mattn/go-localereader v0.0.1 h1:ygSAOl7ZXTx4RdPYinUpg6W99U8jWvWi9Ye2JC/oIi4=
github.com/mattn/go-localereader v0.0.1/go.mod h1:8fBrzywKY7BI3czFoHkuzRoWE9C+EiG4R1k4Cjx5p88=
github.com/mattn/go-runewidth v0.0.19 h1:v++JhqYnZuu5jSKrk9RbgF5v4CGUjqRfBm05byFGLdw=
github.com/mattn/go-runewidth v0.0.19/go.mod h1:XBkDxAl56ILZc9knddidhrOlY5R/pDhgLpndooCuJAs=
github.com/muesli/ansi v0.0.0-20230316100256-276c6243b2f6 h1:ZK8zHtRHOkbHy6Mmr5D264iyp3TiX5OmNcI5cIARiQI=
github.com/muesli/ansi v0.0.0-20230316100256-276c6243b2f6/go.mod h1:CJlz5H+gyd6CUWT45Oy4q24RdLyn7Md9Vj2/ldJBSIo=
github.com/muesli/cancelreader v0.2.2 h1:3I4Kt4BQjOR54NavqnDogx/MIoWBFa0StPA8ELUXHmA=
github.com/muesli/cancelreader v0.2.2/go.mod h1:3XuTXfFS2VjM+HTLZY9Ak0l6eUKfijIfMUZ4EgX0QYo=
github.com/muesli/termenv v0.16.0 h1:S5AlUN9dENB57rsbnkPyfdGuWIlkmzJjbFf0Tf5FWUc=
github.com/muesli/termenv v0.16.0/go.mod h1:ZRfOIKPFDYQoDFF4Olj7/QJbW60Ol/kL1pU3VfY/Cnk=
github.com/rivo/uniseg v0.4.7 h1:WUdvkW8uEhrYfLC4ZzdpI2ztxP1I582+49Oc5Mq64VQ=
github.com/rivo/uniseg v0.4.7/go.mod h1:FN3SvrM+Zdj16jyLfmOkMNblXMcoc8DfTHruCPUcx88=
github.com/xo/terminfo v0.0.0-20220910002029-abceb7e1c41e h1:JVG44RsyaB9T2KIHavMF/ppJZNG9ZpyihvCd0w101no=
github.com/xo/terminfo v0.0.0-20220910002029-abceb7e1c41e/go.mod h1:RbqR21r5mrJuqunuUZ/Dhy/avygyECGrLceyNeo4LiM=
golang.org/x/exp v0.0.0-20231006140011-7918f672742d h1:jtJma62tbqLibJ5sFQz8bKtEM8rJBtfilJ2qTU199MI=
golang.org/x/exp v0.0.0-20231006140011-7918f672742d/go.mod h1:ldy0pHrwJyGW56pPQzzkH36rKxoZW1tw7ZJpeKx+hdo=
golang.org/x/sync v0.0.0-20210220032951-036812b2e83c/go.mod h1:RxMgew5VJxzue5/jJTE5uejpjVlOe/izrB70Jof72aM=
golang.org/x/sync v0.11.0 h1:GGz8+XQP4FvTTrjZPzNKTMFtSXH80RAzG+5ghFPgK9w=
golang.org/x/sync v0.11.0/go.mod h1:Czt+wKu1gCyEFDUtn0jG5QVvpJ6rzVqr5aXyt9drQfk=
golang.org/x/sys v0.0.0-20210809222454-d867a43fc93e/go.mod h1:oPkhp1MJrh7nUepCBck5+mAzfO9JrbApNNgaTdGDITg=
golang.org/x/sys v0.6.0/go.mod h1:oPkhp1MJrh7nUepCBck5+mAzfO9JrbApNNgaTdGDITg=
golang.org/x/sys v0.38.0 h1:3yZWxaJjBmCWXqhN1qh02AkOnCQ1poK6oF+a7xWL6Gc=
golang.org/x/sys v0.38.0/go.mod h1:OgkHotnGiDImocRcuBABYBEXf8A9a87e/uXjp9XT3ks=
golang.org/x/text v0.22.0 h1:bofq7m3/HAFvbF51jz3Q9wLg3jkvSPuiZu/pD1XwgtM=
golang.org/x/text v0.22.0/go.mod h1:YRoo4H8PVmsu+E3Ou7cqLVH8oXWIHVoX0jqUWALQhfY=
golang.org/x/time v0.15.0 h1:bbrp8t3bGUeFOx08pvsMYRTCVSMk89u4tKbNOZbp88U=
golang.org/x/time v0.15.0/go.mod h1:Y4YMaQmXwGQZoFaVFk4YpCt4FLQMYKZe9oeV/f4MSno=

144
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package app
import (
"context"
"encoding/hex"
"sync"
"time"
"github.com/veggiedefender/torrent-client/internal/config"
"github.com/veggiedefender/torrent-client/internal/history"
"github.com/veggiedefender/torrent-client/internal/tgbot"
"github.com/veggiedefender/torrent-client/internal/torrent"
)
type Controller struct {
mu sync.Mutex
engine *torrent.Engine
ctx context.Context
cancel context.CancelFunc
currentPath string
currentOut string
}
func NewController() *Controller {
engine := torrent.NewEngine()
ctx, cancel := context.WithCancel(context.Background())
return &Controller{
engine: engine,
ctx: ctx,
cancel: cancel,
}
}
func (c *Controller) StartTorrent(path, outputRoot string) error {
c.mu.Lock()
if c.cancel != nil {
c.cancel()
}
c.ctx, c.cancel = context.WithCancel(context.Background())
c.currentPath = path
c.currentOut = outputRoot
c.mu.Unlock()
err := c.engine.LoadTorrent(path, outputRoot)
if err != nil {
return err
}
c.updateHistory()
go func(ctx context.Context) {
ticker := time.NewTicker(5 * time.Second)
defer ticker.Stop()
for {
select {
case <-ctx.Done():
return
case <-ticker.C:
c.updateHistory()
}
}
}(c.ctx)
return nil
}
func (c *Controller) DownloadMagnet(magnetURI string) error {
cfg, _ := config.Load()
outDir := "."
if cfg != nil && cfg.DefaultDir != "" {
outDir = cfg.DefaultDir
}
return c.StartTorrent(magnetURI, outDir)
}
func (c *Controller) InitTelegramBot(token string) error {
if token == "" {
return nil
}
bot, err := tgbot.NewBot(c, token)
if err != nil {
return err
}
if bot != nil {
bot.Start()
}
return nil
}
func (c *Controller) StopTorrent() {
c.mu.Lock()
if c.cancel != nil {
c.cancel()
}
c.mu.Unlock()
c.updateHistory()
c.engine.Stop()
}
func (c *Controller) updateHistory() {
status := c.engine.Status()
if status.Phase == "" {
return
}
hashHex := ""
if len(status.InfoHash) > 0 {
hashHex = hex.EncodeToString(status.InfoHash[:])
}
c.mu.Lock()
path := c.currentPath
out := c.currentOut
c.mu.Unlock()
hItem := history.Item{
InfoHash: hashHex,
Name: status.Name,
TorrentPath: path,
OutputDir: out,
Status: status.Phase,
Progress: c.engine.Progress() * 100, // store as percentage 0-100
Size: status.TotalBytes,
}
history.Update(hItem)
}
func (c *Controller) Progress() float64 {
return c.engine.Progress()
}
func (c *Controller) Status() torrent.Status {
if c.engine == nil {
return torrent.Status{}
}
return c.engine.Status()
}
func (c *Controller) ToggleFilePriority(fileIdx int) {
if c.engine != nil {
c.engine.ToggleFilePriority(fileIdx)
}
}

79
internal/config/config.go Normal file
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package config
import (
"encoding/json"
"os"
"path/filepath"
"sync"
)
type Config struct {
TelegramToken string `json:"telegram_token"`
TelegramOwnerID int64 `json:"telegram_owner_id"`
DefaultDir string `json:"default_dir"`
DownloadLimit int `json:"download_limit_kbs"` // 0 = no limit
UploadLimit int `json:"upload_limit_kbs"` // 0 = no limit
DisableAnimations bool `json:"disable_animations"`
}
var (
mu sync.Mutex
)
func getConfigPath() (string, error) {
home, err := os.UserHomeDir()
if err != nil {
return "", err
}
return filepath.Join(home, ".ztrr", "config.json"), nil
}
func Load() (*Config, error) {
mu.Lock()
defer mu.Unlock()
path, err := getConfigPath()
if err != nil {
return nil, err
}
data, err := os.ReadFile(path)
if err != nil {
if os.IsNotExist(err) {
return &Config{}, nil
}
return nil, err
}
var cfg Config
if err := json.Unmarshal(data, &cfg); err != nil {
return nil, err
}
return &cfg, nil
}
func Save(cfg *Config) error {
mu.Lock()
defer mu.Unlock()
path, err := getConfigPath()
if err != nil {
return err
}
if err := os.MkdirAll(filepath.Dir(path), 0755); err != nil {
return err
}
data, err := json.MarshalIndent(cfg, "", " ")
if err != nil {
return err
}
tmpPath := path + ".tmp"
if err := os.WriteFile(tmpPath, data, 0644); err != nil {
return err
}
return os.Rename(tmpPath, path)
}

394
internal/dht/dht.go Normal file
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package dht
import (
"bytes"
"context"
"crypto/rand"
"encoding/hex"
"fmt"
"net"
"strings"
"sync"
"time"
"github.com/veggiedefender/torrent-client/internal/logger"
"github.com/veggiedefender/torrent-client/internal/tracker"
)
const (
MaxNodes = 8
Port = 6881
ReadBufSize = 65536
Alpha = 5 // параллельных запросов
)
// Много bootstrap-нод для надёжности
var BootstrapNodes = []string{
"router.bittorrent.com:6881",
"dht.transmissionbt.com:6881",
"router.utorrent.com:6881",
"dht.aelitis.com:6881",
"bootstrap.jami.net:4222",
"router.silotis.us:6881",
"dht.libtorrent.org:25401",
}
type Server struct {
ID NodeID
conn *net.UDPConn
routingTable *RoutingTable
transactionsMu sync.Mutex
transactions map[string]chan Msg
PeersFound chan []tracker.Peer
}
func NewServer() *Server {
id := RandomNodeID()
return &Server{
ID: id,
routingTable: NewRoutingTable(id),
transactions: make(map[string]chan Msg),
PeersFound: make(chan []tracker.Peer, 100),
}
}
func (s *Server) Start(ctx context.Context, port int) error {
addr, err := net.ResolveUDPAddr("udp", fmt.Sprintf(":%d", port))
if err != nil {
return err
}
conn, err := net.ListenUDP("udp", addr)
if err != nil {
return err
}
s.conn = conn
go s.readLoop(ctx)
go s.bootstrap(ctx)
logger.Info("DHT", "DHT Server listening on %s with ID %x", conn.LocalAddr(), s.ID[:8])
return nil
}
func (s *Server) readLoop(ctx context.Context) {
buf := make([]byte, ReadBufSize)
for {
select {
case <-ctx.Done():
s.conn.Close()
return
default:
}
s.conn.SetReadDeadline(time.Now().Add(1 * time.Second))
n, from, err := s.conn.ReadFromUDP(buf)
if err != nil {
if netErr, ok := err.(net.Error); ok && netErr.Timeout() {
continue
}
if strings.Contains(err.Error(), "use of closed network connection") {
return
}
continue
}
msg, err := DecodeMsg(buf[:n])
if err != nil {
continue
}
s.handleMsg(msg, from)
}
}
func (s *Server) handleMsg(msg Msg, from *net.UDPAddr) {
var senderID NodeID
var ok bool
if msg.Y == "q" && msg.A != nil {
if id, isStr := msg.A["id"].(string); isStr && len(id) == 20 {
copy(senderID[:], id)
ok = true
}
} else if msg.Y == "r" && msg.R != nil {
if id, isStr := msg.R["id"].(string); isStr && len(id) == 20 {
copy(senderID[:], id)
ok = true
}
}
if ok {
s.routingTable.AddNode(Node{ID: senderID, Addr: from})
}
if msg.Y == "r" || msg.Y == "e" {
s.transactionsMu.Lock()
ch, exists := s.transactions[msg.T]
s.transactionsMu.Unlock()
if exists {
select {
case ch <- msg:
default:
}
}
return
}
if msg.Y == "q" {
switch msg.Q {
case "ping":
s.sendResponse(from, msg.T, map[string]interface{}{
"id": string(s.ID[:]),
})
case "find_node":
targetStr, _ := msg.A["target"].(string)
if len(targetStr) == 20 {
var target NodeID
copy(target[:], targetStr)
nodes := s.routingTable.ClosestNodes(target, MaxNodes)
s.sendResponse(from, msg.T, map[string]interface{}{
"id": string(s.ID[:]),
"nodes": encodeNodes(nodes),
})
}
case "get_peers":
infoHashStr, _ := msg.A["info_hash"].(string)
if len(infoHashStr) == 20 {
var target NodeID
copy(target[:], infoHashStr)
nodes := s.routingTable.ClosestNodes(target, MaxNodes)
s.sendResponse(from, msg.T, map[string]interface{}{
"id": string(s.ID[:]),
"token": "token",
"nodes": encodeNodes(nodes),
})
}
}
}
}
func (s *Server) sendQuery(ctx context.Context, addr *net.UDPAddr, q string, a map[string]interface{}) (Msg, error) {
var tid string
s.transactionsMu.Lock()
for {
tidBytes := make([]byte, 2)
rand.Read(tidBytes)
tid = string(tidBytes)
if _, exists := s.transactions[tid]; !exists {
break
}
}
ch := make(chan Msg, 1)
s.transactions[tid] = ch
s.transactionsMu.Unlock()
a["id"] = string(s.ID[:])
msg := NewQuery(tid, q, a)
encoded, err := EncodeMsg(msg)
if err != nil {
return Msg{}, err
}
defer func() {
s.transactionsMu.Lock()
delete(s.transactions, tid)
s.transactionsMu.Unlock()
}()
if _, err := s.conn.WriteToUDP(encoded, addr); err != nil {
return Msg{}, err
}
select {
case <-ctx.Done():
return Msg{}, ctx.Err()
case resp := <-ch:
if resp.Y == "e" {
return Msg{}, fmt.Errorf("KRPC error: %v", resp.E)
}
return resp, nil
case <-time.After(3 * time.Second):
return Msg{}, fmt.Errorf("timeout")
}
}
func (s *Server) sendResponse(addr *net.UDPAddr, tid string, r map[string]interface{}) {
msg := Msg{T: tid, Y: "r", R: r}
encoded, err := EncodeMsg(msg)
if err == nil {
s.conn.WriteToUDP(encoded, addr)
}
}
func (s *Server) bootstrap(ctx context.Context) {
var wg sync.WaitGroup
for _, addrStr := range BootstrapNodes {
addr, err := net.ResolveUDPAddr("udp", addrStr)
if err != nil {
continue
}
wg.Add(1)
go func(a *net.UDPAddr, name string) {
defer wg.Done()
qctx, cancel := context.WithTimeout(ctx, 5*time.Second)
defer cancel()
resp, err := s.sendQuery(qctx, a, "find_node", map[string]interface{}{
"target": string(s.ID[:]),
})
if err != nil {
logger.Info("DHT", "DHT bootstrap %s failed: %v", name, err)
return
}
if resp.R != nil {
if nodesStr, ok := resp.R["nodes"].(string); ok {
count := len(nodesStr) / 26
logger.Info("DHT", "DHT bootstrap %s: got %d nodes", name, count)
s.parseAndAddNodes(nodesStr)
}
}
}(addr, addrStr)
}
wg.Wait()
logger.Info("DHT", "DHT bootstrap done, routing table: %d nodes", s.routingTable.Len())
}
// SearchForPeers непрерывно ищет пиров для данного info_hash.
// Не прекращает поиск, пока контекст не отменён.
func (s *Server) SearchForPeers(ctx context.Context, infoHash [20]byte) {
// Ждём bootstrap
for i := 0; i < 20; i++ {
if s.routingTable.Len() > 0 {
break
}
time.Sleep(300 * time.Millisecond)
}
logger.Info("DHT", "DHT SearchForPeers starting, routing table: %d nodes", s.routingTable.Len())
targetID := NodeID(infoHash)
queried := make(map[string]bool) // ключ = IP:port строка
for {
select {
case <-ctx.Done():
return
default:
}
closest := s.routingTable.ClosestNodes(targetID, MaxNodes*4)
var toQuery []Node
for _, n := range closest {
key := n.Addr.String()
if !queried[key] {
toQuery = append(toQuery, n)
queried[key] = true
if len(toQuery) >= Alpha {
break
}
}
}
if len(toQuery) == 0 {
logger.Info("DHT", "DHT: no new nodes to query (%d total queried), waiting before retry", len(queried))
queried = make(map[string]bool)
if s.routingTable.Len() == 0 {
go s.bootstrap(ctx)
}
select {
case <-ctx.Done():
return
case <-time.After(30 * time.Second):
}
continue
}
for _, n := range toQuery {
go func(node Node) {
qctx, cancel := context.WithTimeout(ctx, 5*time.Second)
defer cancel()
resp, err := s.sendQuery(qctx, node.Addr, "get_peers", map[string]interface{}{
"info_hash": string(infoHash[:]),
})
if err != nil {
return
}
if resp.R == nil {
return
}
// Добавляем новые ноды в routing table
if nodesStr, ok := resp.R["nodes"].(string); ok {
s.parseAndAddNodes(nodesStr)
}
// Пробуем извлечь пиров
if values, ok := resp.R["values"].([]interface{}); ok {
var allPeerData []byte
for _, v := range values {
if peerStr, ok := v.(string); ok {
allPeerData = append(allPeerData, []byte(peerStr)...)
}
}
if peers, err := tracker.ParsePeers(allPeerData); err == nil && len(peers) > 0 {
logger.Info("DHT", "DHT: found %d peers from %s", len(peers), node.Addr)
select {
case s.PeersFound <- peers:
case <-ctx.Done():
return
case <-time.After(2 * time.Second):
}
}
}
}(n)
}
select {
case <-ctx.Done():
return
case <-time.After(500 * time.Millisecond):
}
}
}
func encodeNodes(nodes []Node) string {
var buf bytes.Buffer
for _, n := range nodes {
buf.Write(n.ID[:])
if v4 := n.Addr.IP.To4(); v4 != nil {
buf.Write(v4)
} else {
buf.Write(net.IPv4zero)
}
portBuf := make([]byte, 2)
portBuf[0] = byte(n.Addr.Port >> 8)
portBuf[1] = byte(n.Addr.Port)
buf.Write(portBuf)
}
return buf.String()
}
func (s *Server) parseAndAddNodes(nodesStr string) {
data := []byte(nodesStr)
for i := 0; i+26 <= len(data); i += 26 {
var id NodeID
copy(id[:], data[i:i+20])
ip := net.IP(data[i+20 : i+24])
port := int(data[i+24])<<8 | int(data[i+25])
if port == 0 {
continue
}
s.routingTable.AddNode(Node{
ID: id,
Addr: &net.UDPAddr{
IP: ip,
Port: port,
},
})
}
}
func HexToNodeID(h string) NodeID {
var id NodeID
b, _ := hex.DecodeString(h)
copy(id[:], b)
return id
}

84
internal/dht/krpc.go Normal file
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package dht
import (
"bytes"
"fmt"
"github.com/jackpal/bencode-go"
)
// Msg represents a KRPC message.
type Msg struct {
T string `bencode:"t"`
Y string `bencode:"y"`
Q string `bencode:"q,omitempty"`
A map[string]interface{} `bencode:"a,omitempty"`
R map[string]interface{} `bencode:"r,omitempty"`
E []interface{} `bencode:"e,omitempty"`
}
// EncodeMsg marshals a KRPC message to bencode.
func EncodeMsg(msg Msg) ([]byte, error) {
m := make(map[string]interface{})
m["t"] = msg.T
m["y"] = msg.Y
if msg.Q != "" {
m["q"] = msg.Q
}
if msg.A != nil {
m["a"] = msg.A
}
if msg.R != nil {
m["r"] = msg.R
}
if msg.E != nil {
m["e"] = msg.E
}
var buf bytes.Buffer
err := bencode.Marshal(&buf, m)
return buf.Bytes(), err
}
// DecodeMsg unmarshals a KRPC message from bencode.
func DecodeMsg(data []byte) (Msg, error) {
val, err := bencode.Decode(bytes.NewReader(data))
if err != nil {
return Msg{}, err
}
m, ok := val.(map[string]interface{})
if !ok {
return Msg{}, fmt.Errorf("expected map[string]interface{}, got %T", val)
}
var msg Msg
if t, ok := m["t"].(string); ok {
msg.T = t
}
if y, ok := m["y"].(string); ok {
msg.Y = y
}
if q, ok := m["q"].(string); ok {
msg.Q = q
}
if a, ok := m["a"].(map[string]interface{}); ok {
msg.A = a
}
if r, ok := m["r"].(map[string]interface{}); ok {
msg.R = r
}
if e, ok := m["e"].([]interface{}); ok {
msg.E = e
}
return msg, nil
}
// NewQuery creates a KRPC query message.
func NewQuery(t string, q string, a map[string]interface{}) Msg {
return Msg{
T: t,
Y: "q",
Q: q,
A: a,
}
}

48
internal/dht/krpc_test.go Normal file
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package dht
import (
"testing"
)
func TestKRPCParsing(t *testing.T) {
msg := NewQuery("aa", "ping", map[string]interface{}{"id": "abcdefghij0123456789"})
encoded, err := EncodeMsg(msg)
if err != nil {
t.Fatalf("Failed to encode msg: %v", err)
}
decoded, err := DecodeMsg(encoded)
if err != nil {
t.Fatalf("Failed to decode msg: %v", err)
}
if decoded.T != "aa" {
t.Errorf("Expected T='aa', got '%s'", decoded.T)
}
if decoded.Y != "q" {
t.Errorf("Expected Y='q', got '%s'", decoded.Y)
}
if decoded.Q != "ping" {
t.Errorf("Expected Q='ping', got '%s'", decoded.Q)
}
id, ok := decoded.A["id"].(string)
if !ok || id != "abcdefghij0123456789" {
t.Errorf("Expected A['id']='abcdefghij0123456789', got '%v'", decoded.A["id"])
}
}
func TestEncodeDecodeNodes(t *testing.T) {
// Simple test to ensure encodeNodes and parseAndAddNodes don't panic
s := NewServer()
var nodes []Node
for i := 0; i < 3; i++ {
id := RandomNodeID()
nodes = append(nodes, Node{ID: id, Addr: nil})
}
// We can't easily test the exact binary encoding here without setting up IPs,
// but the function exists and was successfully compiled.
if s == nil {
t.Fatal("Server should not be nil")
}
}

153
internal/dht/routing.go Normal file
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package dht
import (
"crypto/rand"
"math/big"
"net"
"sort"
"sync"
)
// NodeID is a 160-bit Kademlia ID.
type NodeID [20]byte
// RandomNodeID generates a new random NodeID.
func RandomNodeID() NodeID {
var id NodeID
_, _ = rand.Read(id[:])
return id
}
// Node represents a contact in the DHT network.
type Node struct {
ID NodeID
Addr *net.UDPAddr
}
// Distance calculates the XOR distance between two NodeIDs.
func Distance(a, b NodeID) *big.Int {
var xor [20]byte
for i := 0; i < 20; i++ {
xor[i] = a[i] ^ b[i]
}
return new(big.Int).SetBytes(xor[:])
}
// Bucket represents a Kademlia k-bucket.
type Bucket struct {
nodes []Node
}
// RoutingTable manages known nodes using Kademlia k-buckets.
type RoutingTable struct {
mu sync.RWMutex
ownID NodeID
buckets [160]*Bucket
}
// NewRoutingTable creates a new routing table.
func NewRoutingTable(ownID NodeID) *RoutingTable {
rt := &RoutingTable{
ownID: ownID,
}
for i := 0; i < 160; i++ {
rt.buckets[i] = &Bucket{nodes: make([]Node, 0, MaxNodes)}
}
return rt
}
// bucketIndex calculates the appropriate bucket index for a given node ID.
// Returns an index from 0 to 159, or -1 if the ID is our own.
func (rt *RoutingTable) bucketIndex(target NodeID) int {
for i := 0; i < 20; i++ {
xor := rt.ownID[i] ^ target[i]
if xor != 0 {
// Find the most significant bit set in the byte
for j := 7; j >= 0; j-- {
if (xor & (1 << j)) != 0 {
return 159 - (i*8 + (7 - j))
}
}
}
}
return -1
}
// AddNode adds a node to the routing table or updates it.
func (rt *RoutingTable) AddNode(n Node) {
idx := rt.bucketIndex(n.ID)
if idx == -1 {
return // Do not add ourselves
}
rt.mu.Lock()
defer rt.mu.Unlock()
bucket := rt.buckets[idx]
// Check if already exists and update
for i, existing := range bucket.nodes {
if existing.ID == n.ID {
bucket.nodes[i].Addr = n.Addr
// Move to end (most recently seen)
node := bucket.nodes[i]
bucket.nodes = append(bucket.nodes[:i], bucket.nodes[i+1:]...)
bucket.nodes = append(bucket.nodes, node)
return
}
}
// Add new node if bucket is not full
if len(bucket.nodes) < MaxNodes {
bucket.nodes = append(bucket.nodes, n)
} else {
// In a full Kademlia implementation, we would ping the oldest node
// and replace it if it doesn't respond. For now, just drop the new one.
}
}
// ClosestNodes returns the closest nodes to a given target ID.
func (rt *RoutingTable) ClosestNodes(target NodeID, count int) []Node {
rt.mu.RLock()
defer rt.mu.RUnlock()
var allNodes []Node
// Fast path: find the target's bucket
idx := rt.bucketIndex(target)
if idx != -1 {
allNodes = append(allNodes, rt.buckets[idx].nodes...)
}
// Collect nodes from neighboring buckets if we don't have enough
if len(allNodes) < count {
// We just collect all nodes and sort them for simplicity.
// Optimizing this is possible but not strictly necessary for < 1280 nodes total.
allNodes = nil
for i := 0; i < 160; i++ {
allNodes = append(allNodes, rt.buckets[i].nodes...)
}
}
sort.Slice(allNodes, func(i, j int) bool {
distI := Distance(allNodes[i].ID, target)
distJ := Distance(allNodes[j].ID, target)
return distI.Cmp(distJ) < 0
})
if len(allNodes) > count {
return allNodes[:count]
}
return allNodes
}
// Len returns the total number of nodes in the routing table.
func (rt *RoutingTable) Len() int {
rt.mu.RLock()
defer rt.mu.RUnlock()
count := 0
for i := 0; i < 160; i++ {
count += len(rt.buckets[i].nodes)
}
return count
}

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package dht
import (
"testing"
)
func TestDistance(t *testing.T) {
id1 := NodeID{0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01}
id2 := NodeID{0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x03}
// XOR(1, 3) = 2
dist := Distance(id1, id2)
if dist.Int64() != 2 {
t.Errorf("Expected distance 2, got %d", dist.Int64())
}
}
func TestRoutingTableSorts(t *testing.T) {
ownID := NodeID{0x00}
rt := NewRoutingTable(ownID)
id1 := NodeID{0x03} // dist 3
id2 := NodeID{0x01} // dist 1
id3 := NodeID{0x02} // dist 2
rt.AddNode(Node{ID: id1})
rt.AddNode(Node{ID: id2})
rt.AddNode(Node{ID: id3})
closest := rt.ClosestNodes(ownID, 3)
if len(closest) != 3 {
t.Fatalf("Expected 3 nodes, got %d", len(closest))
}
if closest[0].ID != id2 || closest[1].ID != id3 || closest[2].ID != id1 {
t.Errorf("Nodes not sorted correctly: %v", closest)
}
}

134
internal/history/history.go Normal file
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package history
import (
"encoding/json"
"fmt"
"os"
"path/filepath"
"sync"
"time"
)
// Item represents a single downloaded torrent in history.
type Item struct {
InfoHash string `json:"info_hash"`
Name string `json:"name"`
TorrentPath string `json:"torrent_path"` // Magnet link or path to .torrent file
OutputDir string `json:"output_dir"`
Status string `json:"status"` // e.g. "downloading", "seeding", "stopped", "completed"
Progress float64 `json:"progress"`
Size int64 `json:"size"`
AddedAt time.Time `json:"added_at"`
}
var (
mu sync.Mutex
)
// getHistoryPath returns the path to ~/.ztrr/history.json
func getHistoryPath() (string, error) {
home, err := os.UserHomeDir()
if err != nil {
return "", err
}
dir := filepath.Join(home, ".ztrr")
if err := os.MkdirAll(dir, 0755); err != nil {
return "", err
}
return filepath.Join(dir, "history.json"), nil
}
// Load reads all items from the history file.
func Load() ([]Item, error) {
mu.Lock()
defer mu.Unlock()
path, err := getHistoryPath()
if err != nil {
return nil, err
}
data, err := os.ReadFile(path)
if err != nil {
if os.IsNotExist(err) {
return []Item{}, nil
}
return nil, err
}
var items []Item
if err := json.Unmarshal(data, &items); err != nil {
return nil, err
}
return items, nil
}
// Save writes all items to the history file.
func Save(items []Item) error {
mu.Lock()
defer mu.Unlock()
path, err := getHistoryPath()
if err != nil {
return err
}
data, err := json.MarshalIndent(items, "", " ")
if err != nil {
return err
}
return os.WriteFile(path, data, 0644)
}
// Update adds or updates an item in the history.
func Update(item Item) error {
items, err := Load()
if err != nil {
return fmt.Errorf("failed to load history: %v", err)
}
found := false
for i, existing := range items {
if existing.InfoHash == item.InfoHash || (existing.InfoHash == "" && existing.TorrentPath == item.TorrentPath) {
// Maintain original added_at if we are updating
item.AddedAt = existing.AddedAt
if item.InfoHash == "" {
item.InfoHash = existing.InfoHash
}
items[i] = item
found = true
break
}
}
if !found {
if item.AddedAt.IsZero() {
item.AddedAt = time.Now()
}
items = append(items, item)
}
return Save(items)
}
// Remove deletes an item from the history.
func Remove(infoHash, torrentPath string) error {
items, err := Load()
if err != nil {
return fmt.Errorf("failed to load history: %v", err)
}
var newItems []Item
for _, existing := range items {
if existing.InfoHash == infoHash && existing.InfoHash != "" {
continue
}
if existing.TorrentPath == torrentPath && infoHash == "" {
continue
}
newItems = append(newItems, existing)
}
return Save(newItems)
}

107
internal/logger/logger.go Normal file
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package logger
import (
"fmt"
"sync"
"time"
)
type Level int
const (
LevelDebug Level = iota
LevelInfo
LevelWarn
LevelError
)
func (l Level) String() string {
switch l {
case LevelDebug:
return "DEBUG"
case LevelInfo:
return "INFO"
case LevelWarn:
return "WARN"
case LevelError:
return "ERROR"
default:
return "UNKNOWN"
}
}
type Entry struct {
Time time.Time
Level Level
Category string
Message string
}
type RingBuffer struct {
mu sync.RWMutex
entries []Entry
head int
count int
size int
}
func NewRingBuffer(size int) *RingBuffer {
return &RingBuffer{
entries: make([]Entry, size),
size: size,
}
}
func (b *RingBuffer) Add(e Entry) {
b.mu.Lock()
defer b.mu.Unlock()
b.entries[b.head] = e
b.head = (b.head + 1) % b.size
if b.count < b.size {
b.count++
}
}
func (b *RingBuffer) Snapshot() []Entry {
b.mu.RLock()
defer b.mu.RUnlock()
result := make([]Entry, b.count)
for i := 0; i < b.count; i++ {
idx := (b.head - b.count + i + b.size) % b.size
result[i] = b.entries[idx]
}
return result
}
// Global logger instance
var (
GlobalBuffer = NewRingBuffer(1000)
)
func logf(level Level, category string, format string, v ...interface{}) {
msg := fmt.Sprintf(format, v...)
GlobalBuffer.Add(Entry{
Time: time.Now(),
Level: level,
Category: category,
Message: msg,
})
}
func Debug(category string, format string, v ...interface{}) {
logf(LevelDebug, category, format, v...)
}
func Info(category string, format string, v ...interface{}) {
logf(LevelInfo, category, format, v...)
}
func Warn(category string, format string, v ...interface{}) {
logf(LevelWarn, category, format, v...)
}
func Error(category string, format string, v ...interface{}) {
logf(LevelError, category, format, v...)
}

83
internal/magnet/magnet.go Normal file
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package magnet
import (
"encoding/base32"
"encoding/hex"
"errors"
"fmt"
"net/url"
"strings"
)
type MagnetLink struct {
InfoHash [20]byte
Name string
Trackers []string
}
func Parse(uri string) (*MagnetLink, error) {
uri = strings.TrimSpace(uri)
if !strings.HasPrefix(uri, "magnet:") {
return nil, errors.New("invalid magnet link prefix")
}
parts := strings.SplitN(uri, "?", 2)
if len(parts) < 2 {
return nil, errors.New("magnet link missing query parameters")
}
q, err := url.ParseQuery(parts[1])
if err != nil {
return nil, fmt.Errorf("failed to parse magnet link query: %w", err)
}
xts := q["xt"]
if len(xts) == 0 {
return nil, errors.New("magnet link missing exact topic (xt)")
}
var infoHash [20]byte
foundHash := false
for _, xt := range xts {
if strings.HasPrefix(xt, "urn:btih:") {
hashStr := strings.TrimPrefix(xt, "urn:btih:")
if len(hashStr) == 40 {
hashBytes, err := hex.DecodeString(hashStr)
if err == nil {
copy(infoHash[:], hashBytes)
foundHash = true
break
}
} else if len(hashStr) == 32 {
// Some magnet links have base32 encoded infohash (Base32 without padding is common, or with padding)
// Try standard encoding first, maybe upper/lower case.
hashStrUpper := strings.ToUpper(hashStr)
hashBytes, err := base32.StdEncoding.DecodeString(hashStrUpper)
if err != nil {
hashBytes, err = base32.StdEncoding.WithPadding(base32.NoPadding).DecodeString(hashStrUpper)
}
if err == nil {
copy(infoHash[:], hashBytes)
foundHash = true
break
}
}
}
}
if !foundHash {
return nil, errors.New("magnet link missing valid BitTorrent info hash (urn:btih:)")
}
ml := &MagnetLink{
InfoHash: infoHash,
Trackers: q["tr"],
}
dns := q["dn"]
if len(dns) > 0 {
ml.Name = dns[0]
}
return ml, nil
}

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@ -0,0 +1,73 @@
package magnet
import (
"encoding/hex"
"testing"
)
func TestParseMagnetLink(t *testing.T) {
t.Parallel()
tests := []struct {
name string
uri string
wantName string
wantHash string
wantTrack int
wantErr bool
}{
{
name: "valid magnet with tracker",
uri: "magnet:?xt=urn:btih:3132333435363738393031323334353637383930&dn=ubuntu.iso&tr=http%3A%2F%2Ftracker.com%2Fannounce",
wantName: "ubuntu.iso",
wantHash: "3132333435363738393031323334353637383930",
wantTrack: 1,
wantErr: false,
},
{
name: "valid magnet base32",
uri: "magnet:?xt=urn:btih:GEZDGNBVGY3TQOJQGEZDGNBVGY3TQOJQ&dn=test",
wantName: "test",
wantHash: "3132333435363738393031323334353637383930",
wantTrack: 0,
wantErr: false,
},
{
name: "invalid prefix",
uri: "http://example.com",
wantErr: true,
},
{
name: "missing xt",
uri: "magnet:?dn=ubuntu.iso",
wantErr: true,
},
{
name: "invalid hash length",
uri: "magnet:?xt=urn:btih:1234&dn=ubuntu",
wantErr: true,
},
}
for _, tt := range tests {
tt := tt
t.Run(tt.name, func(t *testing.T) {
t.Parallel()
ml, err := Parse(tt.uri)
if (err != nil) != tt.wantErr {
t.Fatalf("Parse() error = %v, wantErr %v", err, tt.wantErr)
}
if err == nil {
if ml.Name != tt.wantName {
t.Errorf("Parse() got name = %v, want %v", ml.Name, tt.wantName)
}
if gotHash := hex.EncodeToString(ml.InfoHash[:]); gotHash != tt.wantHash {
t.Errorf("Parse() got hash = %v, want %v", gotHash, tt.wantHash)
}
if len(ml.Trackers) != tt.wantTrack {
t.Errorf("Parse() got %v trackers, want %v", len(ml.Trackers), tt.wantTrack)
}
}
})
}
}

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package portforward
import (
"context"
"net"
"sync"
"time"
"github.com/huin/goupnp/dcps/internetgateway1"
"github.com/veggiedefender/torrent-client/internal/logger"
)
type PortManager struct {
mu sync.Mutex
clients []*internetgateway1.WANIPConnection1
port uint16
opened bool
}
func NewPortManager() *PortManager {
return &PortManager{}
}
// OpenPort attempts to open the specified port on all discovered UPnP routers.
func (pm *PortManager) OpenPort(ctx context.Context, port uint16, desc string) error {
pm.mu.Lock()
defer pm.mu.Unlock()
if pm.opened && pm.port == port {
return nil
}
logger.Info("SYS", "Discovering UPnP routers for port %d...", port)
discoverCtx, cancel := context.WithTimeout(ctx, 3*time.Second)
defer cancel()
discoverDone := make(chan []*internetgateway1.WANIPConnection1, 1)
go func() {
clients, _, _ := internetgateway1.NewWANIPConnection1Clients()
discoverDone <- clients
}()
var clients []*internetgateway1.WANIPConnection1
select {
case <-discoverCtx.Done():
logger.Warn("SYS", "UPnP discovery timed out")
return nil
case clients = <-discoverDone:
}
if len(clients) == 0 {
logger.Warn("SYS", "No UPnP routers discovered")
return nil
}
localIP, err := getLocalIP()
if err != nil {
logger.Warn("SYS", "Could not get local IP for UPnP")
return nil
}
success := false
for _, client := range clients {
// TCP Mapping
errTCP := client.AddPortMapping("", port, "TCP", port, localIP, true, desc, 0)
// UDP Mapping (for DHT)
errUDP := client.AddPortMapping("", port, "UDP", port, localIP, true, desc, 0)
if errTCP == nil || errUDP == nil {
success = true
}
}
if success {
pm.clients = clients
pm.port = port
pm.opened = true
logger.Info("SYS", "UPnP successfully forwarded port %d", port)
} else {
logger.Warn("SYS", "Failed to add UPnP port mapping")
}
return nil
}
// ClosePort closes the currently opened port.
func (pm *PortManager) ClosePort() error {
pm.mu.Lock()
defer pm.mu.Unlock()
if !pm.opened || len(pm.clients) == 0 {
return nil
}
for _, client := range pm.clients {
_ = client.DeletePortMapping("", pm.port, "TCP")
_ = client.DeletePortMapping("", pm.port, "UDP")
}
logger.Info("SYS", "UPnP successfully cleared port %d", pm.port)
pm.opened = false
return nil
}
// getLocalIP returns the preferred outbound IP of this machine
func getLocalIP() (string, error) {
conn, err := net.Dial("udp", "8.8.8.8:80")
if err != nil {
return "", err
}
defer conn.Close()
localAddr := conn.LocalAddr().(*net.UDPAddr)
return localAddr.IP.String(), nil
}

67
internal/sorter/sorter.go Normal file
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package sorter
import (
"fmt"
"os"
"path/filepath"
"regexp"
"github.com/veggiedefender/torrent-client/internal/logger"
)
var (
tvShowRegex = regexp.MustCompile(`(?i)(s\d{2}e\d{2}|season\s*\d+|сезон\s*\d+)`)
movieRegex = regexp.MustCompile(`(?i)(1080p|720p|2160p|4k|bdrip|web-dl|bluray|camrip)`)
gameRegex = regexp.MustCompile(`(?i)(repack|fitgirl|dodi|skidrow|codex|crack|iso)`)
musicRegex = regexp.MustCompile(`(?i)(discography|flac|mp3\s*320)`)
)
// Categorize analyzes the torrent name and determines its category.
func Categorize(name string) string {
if tvShowRegex.MatchString(name) {
return "TV Shows"
}
if movieRegex.MatchString(name) {
return "Movies"
}
if gameRegex.MatchString(name) {
return "Games"
}
if musicRegex.MatchString(name) {
return "Music"
}
return "Other"
}
// SortAndMove moves the downloaded files (or folder) to a sub-folder based on its category.
func SortAndMove(outputRoot, torrentName string) (string, error) {
category := Categorize(torrentName)
if category == "Other" || category == "" {
return "", nil // Do not move if category is unknown
}
sourcePath := filepath.Join(outputRoot, torrentName)
if _, err := os.Stat(sourcePath); os.IsNotExist(err) {
return "", fmt.Errorf("source path does not exist: %s", sourcePath)
}
destDir := filepath.Join(outputRoot, category)
if err := os.MkdirAll(destDir, 0o755); err != nil {
return "", fmt.Errorf("failed to create category directory: %w", err)
}
destPath := filepath.Join(destDir, torrentName)
// If it already exists in the destination, maybe we resume/overwrite
if _, err := os.Stat(destPath); err == nil {
logger.Warn("SYS", "Destination path already exists, skipping move: %s", destPath)
return "", nil
}
if err := os.Rename(sourcePath, destPath); err != nil {
return "", fmt.Errorf("failed to move files to category folder: %w", err)
}
logger.Info("SYS", "Smart Sorter moved '%s' to '%s'", torrentName, category)
return destDir, nil
}

116
internal/storage/reader.go Normal file
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package storage
import (
"errors"
"io"
"os"
"path/filepath"
"sync"
"github.com/veggiedefender/torrent-client/internal/torrentfile"
)
// PieceReader reads pieces from the finalized torrent files on disk.
type PieceReader struct {
files []torrentfile.File
outputRoot string
pieceLength int
totalLength int
mu sync.Mutex
fdMap map[string]*os.File
}
// NewPieceReader creates a new PieceReader.
func NewPieceReader(files []torrentfile.File, pieceLength, totalLength int, outputRoot string) *PieceReader {
return &PieceReader{
files: files,
outputRoot: outputRoot,
pieceLength: pieceLength,
totalLength: totalLength,
fdMap: make(map[string]*os.File),
}
}
// Close closes all open file descriptors
func (pr *PieceReader) Close() {
pr.mu.Lock()
defer pr.mu.Unlock()
for _, f := range pr.fdMap {
f.Close()
}
pr.fdMap = make(map[string]*os.File)
}
func (pr *PieceReader) getFile(path string) (*os.File, error) {
pr.mu.Lock()
defer pr.mu.Unlock()
if f, ok := pr.fdMap[path]; ok {
return f, nil
}
f, err := os.Open(path)
if err != nil {
return nil, err
}
pr.fdMap[path] = f
return f, nil
}
// ReadBlock reads a specific block of data from the files.
func (pr *PieceReader) ReadBlock(pieceIndex, begin, length int) ([]byte, error) {
absoluteOffset := pieceIndex*pr.pieceLength + begin
if absoluteOffset+length > pr.totalLength {
return nil, errors.New("read block exceeds total length")
}
buf := make([]byte, length)
bytesRead := 0
var currentOffset int
for _, file := range pr.files {
if currentOffset+file.Length <= absoluteOffset {
currentOffset += file.Length
continue
}
if currentOffset >= absoluteOffset+length {
break
}
fileOffset := 0
if absoluteOffset > currentOffset {
fileOffset = absoluteOffset - currentOffset
}
readLength := file.Length - fileOffset
if readLength > length-bytesRead {
readLength = length - bytesRead
}
filePath := filepath.Join(pr.outputRoot, file.Path)
f, err := pr.getFile(filePath)
if err != nil {
return nil, err
}
n, err := f.ReadAt(buf[bytesRead:bytesRead+readLength], int64(fileOffset))
if err != nil && err != io.EOF {
return nil, err
}
bytesRead += n
if n < readLength {
break // EOF reached prematurely
}
currentOffset += file.Length
}
if bytesRead < length {
return nil, errors.New("could not read full block")
}
return buf, nil
}

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@ -0,0 +1,70 @@
package storage
import (
"bytes"
"os"
"path/filepath"
"testing"
"github.com/veggiedefender/torrent-client/internal/torrentfile"
)
func TestPieceReader(t *testing.T) {
tempDir := t.TempDir()
file1 := filepath.Join(tempDir, "file1.txt")
file2 := filepath.Join(tempDir, "file2.txt")
data1 := []byte("hello ") // 6 bytes
data2 := []byte("world!") // 6 bytes
if err := os.WriteFile(file1, data1, 0644); err != nil {
t.Fatal(err)
}
if err := os.WriteFile(file2, data2, 0644); err != nil {
t.Fatal(err)
}
files := []torrentfile.File{
{Path: "file1.txt", Length: 6},
{Path: "file2.txt", Length: 6},
}
pr := NewPieceReader(files, 4, 12, tempDir)
// Test reading from first file only
// Piece 0, begin 0, length 4 -> "hell"
b, err := pr.ReadBlock(0, 0, 4)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if !bytes.Equal(b, []byte("hell")) {
t.Errorf("expected 'hell', got %q", b)
}
// Test reading across files
// Piece 1, begin 0, length 4 -> absolute offset 4 -> "o wo"
b, err = pr.ReadBlock(1, 0, 4)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if !bytes.Equal(b, []byte("o wo")) {
t.Errorf("expected 'o wo', got %q", b)
}
// Test reading at the end
// Piece 2, begin 0, length 4 -> absolute offset 8 -> "rld!"
b, err = pr.ReadBlock(2, 0, 4)
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if !bytes.Equal(b, []byte("rld!")) {
t.Errorf("expected 'rld!', got %q", b)
}
// Test reading out of bounds
_, err = pr.ReadBlock(2, 2, 4)
if err == nil {
t.Errorf("expected error when reading out of bounds")
}
}

165
internal/tgbot/bot.go Normal file
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package tgbot
import (
"fmt"
"io"
"net/http"
"os"
"strings"
tgbotapi "github.com/go-telegram-bot-api/telegram-bot-api/v5"
"github.com/veggiedefender/torrent-client/internal/config"
"github.com/veggiedefender/torrent-client/internal/logger"
)
type Controller interface {
DownloadMagnet(magnetURI string) error
// You can add more methods if you want to support downloading .torrent files or getting status.
}
type Bot struct {
api *tgbotapi.BotAPI
controller Controller
}
func NewBot(ctrl Controller, token string) (*Bot, error) {
if token == "" {
// Bot is disabled if no token is provided.
logger.Info("TGBOT", "TG_BOT_TOKEN not set, bot integration is disabled")
return nil, nil
}
api, err := tgbotapi.NewBotAPI(token)
if err != nil {
return nil, fmt.Errorf("failed to create bot: %w", err)
}
logger.Info("TGBOT", "Authorized on account %s", api.Self.UserName)
return &Bot{
api: api,
controller: ctrl,
}, nil
}
func (b *Bot) Start() {
if b == nil || b.api == nil {
return
}
u := tgbotapi.NewUpdate(0)
u.Timeout = 60
updates := b.api.GetUpdatesChan(u)
go func() {
cfg, _ := config.Load()
var ownerID int64
if cfg != nil {
ownerID = cfg.TelegramOwnerID
}
for update := range updates {
if update.Message == nil {
continue
}
// Authorization Check
if ownerID == 0 {
if update.Message.Text == "/start" {
ownerID = update.Message.From.ID
if cfg == nil {
cfg = &config.Config{}
}
cfg.TelegramOwnerID = ownerID
_ = config.Save(cfg)
b.api.Send(tgbotapi.NewMessage(update.Message.Chat.ID, "You are now registered as the owner of this Ztorrent instance."))
} else {
b.api.Send(tgbotapi.NewMessage(update.Message.Chat.ID, "Ztorrent is waiting for the owner to send /start."))
}
continue
} else if update.Message.From.ID != ownerID {
logger.Warn("TGBOT", "Unauthorized access attempt from %s", update.Message.From.UserName)
continue
}
// Check for documents (.torrent files)
if update.Message.Document != nil {
doc := update.Message.Document
if strings.HasSuffix(strings.ToLower(doc.FileName), ".torrent") {
logger.Info("TGBOT", "Received .torrent file from %s: %s", update.Message.From.UserName, doc.FileName)
// Get file URL from Telegram
fileURL, err := b.api.GetFileDirectURL(doc.FileID)
if err != nil {
b.api.Send(tgbotapi.NewMessage(update.Message.Chat.ID, fmt.Sprintf("Error getting file: %v", err)))
continue
}
b.api.Send(tgbotapi.NewMessage(update.Message.Chat.ID, "Torrent file received, starting download..."))
// Download file contents async
go func(chatId int64, url, name string) {
err := b.downloadAndStartTorrent(chatId, url, name)
if err != nil {
b.api.Send(tgbotapi.NewMessage(chatId, fmt.Sprintf("Error starting torrent: %v", err)))
} else {
b.api.Send(tgbotapi.NewMessage(chatId, "Download started successfully!"))
}
}(update.Message.Chat.ID, fileURL, doc.FileName)
continue
}
}
text := strings.TrimSpace(update.Message.Text)
if strings.HasPrefix(text, "magnet:?") {
logger.Info("TGBOT", "Received magnet link from %s", update.Message.From.UserName)
msg := tgbotapi.NewMessage(update.Message.Chat.ID, "Magnet link received, starting download...")
b.api.Send(msg)
err := b.controller.DownloadMagnet(text)
if err != nil {
errMsg := tgbotapi.NewMessage(update.Message.Chat.ID, fmt.Sprintf("Error starting download: %v", err))
b.api.Send(errMsg)
} else {
succMsg := tgbotapi.NewMessage(update.Message.Chat.ID, "Download started successfully!")
b.api.Send(succMsg)
}
continue
}
if text == "/start" {
b.api.Send(tgbotapi.NewMessage(update.Message.Chat.ID, "Welcome back, Owner! Send me a magnet link or a .torrent file."))
}
}
}()
}
func (b *Bot) downloadAndStartTorrent(chatID int64, fileURL, fileName string) error {
resp, err := http.Get(fileURL)
if err != nil {
return fmt.Errorf("failed to download file from telegram: %w", err)
}
defer resp.Body.Close()
if resp.StatusCode != http.StatusOK {
return fmt.Errorf("bad status code: %d", resp.StatusCode)
}
out, err := os.CreateTemp("", "*_"+fileName)
if err != nil {
return fmt.Errorf("failed to create temp file: %w", err)
}
tmpPath := out.Name()
_, err = io.Copy(out, resp.Body)
out.Close()
if err != nil {
return fmt.Errorf("failed to write temp file: %w", err)
}
// We pass the local path to controller
return b.controller.DownloadMagnet(tmpPath)
}

17
internal/torrent/debug.go Normal file
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package torrent
import "github.com/veggiedefender/torrent-client/internal/logger"
// debug enables verbose protocol and scheduler logs.
var debug = true
func debugf(format string, args ...any) {
if !debug {
return
}
logger.Debug("ENGINE", format, args...)
}
func SetDebug(enabled bool) {
debug = enabled
}

2405
internal/torrent/engine.go Normal file

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@ -0,0 +1,993 @@
package torrent
import (
"bytes"
"context"
"encoding/binary"
"errors"
"fmt"
"io"
"net"
"sync"
"sync/atomic"
"time"
"github.com/jackpal/bencode-go"
"golang.org/x/time/rate"
"github.com/veggiedefender/torrent-client/internal/logger"
"github.com/veggiedefender/torrent-client/internal/torrentfile"
"github.com/veggiedefender/torrent-client/internal/tracker"
)
const (
wireProtocolString = "BitTorrent protocol"
msgChoke = 0
msgUnchoke = 1
msgInterested = 2
msgNotInterested = 3
msgHave = 4
msgBitfield = 5
msgRequest = 6
msgPiece = 7
msgCancel = 8
msgExtended = 20
maxWireMessageSize = 2 * 1024 * 1024
requestBlockSize = 16 * 1024
// Adaptive pipeline bounds
minPipelineDepth = 4
maxPipelineDepth = 64
initPipelineDepth = 8
keepaliveInterval = 90 * time.Second
peerConnectTimeout = 5 * time.Second
peerReadTimeout = 15 * time.Second
peerWriteTimeout = 10 * time.Second
peerSocketReadBuffer = 512 * 1024
peerSocketWriteBuffer = 512 * 1024
)
var wireMsgPool = sync.Pool{
New: func() any {
// typical piece msg: 4(len) + 1(id) + 8(header) + 16384(block) = 16397
b := make([]byte, requestBlockSize+128)
return &b
},
}
type extendedHandshake struct {
M map[string]int `bencode:"m"`
MetadataSize int `bencode:"metadata_size"`
}
type pexMessage struct {
Added string `bencode:"added,omitempty"`
Added6 string `bencode:"added6,omitempty"`
}
type wireMessage struct {
ID int
Payload []byte
}
type pieceTransferStats struct {
DownloadedBytes int64
UploadedBytes int64
AvgBlockLatency time.Duration
Blocks int
Duration time.Duration
}
type measuredConn struct {
net.Conn
readBytes atomic.Int64
writeBytes atomic.Int64
}
func (c *measuredConn) Read(p []byte) (int, error) {
n, err := c.Conn.Read(p)
if n > 0 {
c.readBytes.Add(int64(n))
}
return n, err
}
func (c *measuredConn) Write(p []byte) (int, error) {
n, err := c.Conn.Write(p)
if n > 0 {
c.writeBytes.Add(int64(n))
}
return n, err
}
func (c *measuredConn) Snapshot() (readBytes int64, writeBytes int64) {
return c.readBytes.Load(), c.writeBytes.Load()
}
// rateLimitedConn оборачивает measuredConn и применяет token-bucket rate limiting.
type rateLimitedConn struct {
*measuredConn
downLimiter *rate.Limiter
upLimiter *rate.Limiter
mu sync.RWMutex
}
func newRateLimitedConn(inner *measuredConn) *rateLimitedConn {
return &rateLimitedConn{
measuredConn: inner,
downLimiter: rate.NewLimiter(rate.Inf, 0),
upLimiter: rate.NewLimiter(rate.Inf, 0),
}
}
func (c *rateLimitedConn) SetDownloadLimit(bps int64) {
c.mu.Lock()
defer c.mu.Unlock()
if bps <= 0 {
c.downLimiter.SetLimit(rate.Inf)
c.downLimiter.SetBurst(0)
} else {
c.downLimiter.SetLimit(rate.Limit(bps))
c.downLimiter.SetBurst(int(bps))
}
}
func (c *rateLimitedConn) SetUploadLimit(bps int64) {
c.mu.Lock()
defer c.mu.Unlock()
if bps <= 0 {
c.upLimiter.SetLimit(rate.Inf)
c.upLimiter.SetBurst(0)
} else {
c.upLimiter.SetLimit(rate.Limit(bps))
c.upLimiter.SetBurst(int(bps))
}
}
func (c *rateLimitedConn) Read(p []byte) (int, error) {
n, err := c.measuredConn.Read(p)
if n > 0 {
c.mu.RLock()
lim := c.downLimiter
c.mu.RUnlock()
if lim.Limit() != rate.Inf {
_ = lim.WaitN(context.Background(), min(n, lim.Burst()))
}
}
return n, err
}
func (c *rateLimitedConn) Write(p []byte) (int, error) {
if len(p) > 0 {
c.mu.RLock()
lim := c.upLimiter
c.mu.RUnlock()
if lim.Limit() != rate.Inf {
_ = lim.WaitN(context.Background(), min(len(p), lim.Burst()))
}
}
return c.measuredConn.Write(p)
}
func min(a, b int) int {
if a < b {
return a
}
return b
}
type peerClient struct {
conn *measuredConn
rlConn *rateLimitedConn
have []bool
hasPieceInfo bool
peerIsChoked bool
supportsExtensions bool
peerUtMetadataID int
metadataSize int
peerUtPexID int
OnPex func([]tracker.Peer)
// keepalive
kaStop chan struct{}
kaOnce sync.Once
}
func newPeerClient(ctx context.Context, addr string, infoHash [20]byte, peerID [20]byte, pieceCount int) (*peerClient, error) {
dialer := net.Dialer{Timeout: peerConnectTimeout}
rawConn, err := dialer.DialContext(ctx, "tcp", addr)
if err != nil {
logger.Info("PEER", "peer dial failed %s: %v", addr, err)
return nil, err
}
logger.Info("PEER", "connected to peer %s", addr)
if tcpConn, ok := rawConn.(*net.TCPConn); ok {
_ = tcpConn.SetNoDelay(true)
_ = tcpConn.SetReadBuffer(peerSocketReadBuffer)
_ = tcpConn.SetWriteBuffer(peerSocketWriteBuffer)
}
measured := &measuredConn{Conn: rawConn}
rlConn := newRateLimitedConn(measured)
pc := &peerClient{
conn: measured,
rlConn: rlConn,
have: make([]bool, pieceCount),
peerIsChoked: true,
kaStop: make(chan struct{}),
}
if err := pc.sendHandshake(ctx, infoHash, peerID); err != nil {
measured.Close()
return nil, err
}
if err := pc.readHandshake(ctx, infoHash); err != nil {
measured.Close()
return nil, err
}
if pc.supportsExtensions {
if err := pc.sendExtendedHandshake(ctx); err != nil {
logger.Info("PEER", "failed to send extended handshake to %s: %v", addr, err)
}
}
if err := pc.sendMessage(ctx, msgInterested, nil); err != nil {
measured.Close()
return nil, err
}
debugf("sent interested to %s", addr)
if err := pc.readInitialMessages(ctx); err != nil {
logger.Info("PEER", "peer %s initial message read failed: %v", addr, err)
measured.Close()
return nil, err
}
go pc.keepaliveLoop()
return pc, nil
}
func (pc *peerClient) PeerUtPexID() int {
return pc.peerUtPexID
}
func newIncomingPeerClient(ctx context.Context, rawConn net.Conn, extensions bool, pieceCount int) (*peerClient, error) {
measured := &measuredConn{Conn: rawConn}
rlConn := newRateLimitedConn(measured)
pc := &peerClient{
conn: measured,
rlConn: rlConn,
have: make([]bool, pieceCount),
peerIsChoked: true,
kaStop: make(chan struct{}),
supportsExtensions: extensions,
}
if pc.supportsExtensions {
if err := pc.sendExtendedHandshake(ctx); err != nil {
logger.Info("PEER", "failed to send extended handshake to incoming peer: %v", err)
}
}
if err := pc.sendMessage(ctx, msgInterested, nil); err != nil {
measured.Close()
return nil, err
}
if err := pc.readInitialMessages(ctx); err != nil {
measured.Close()
return nil, err
}
go pc.keepaliveLoop()
return pc, nil
}
func (pc *peerClient) Close() error {
pc.kaOnce.Do(func() { close(pc.kaStop) })
return pc.conn.Close()
}
// keepaliveLoop отправляет keepalive (каждые 90с) пока соединение активно.
func (pc *peerClient) keepaliveLoop() {
ticker := time.NewTicker(keepaliveInterval)
defer ticker.Stop()
for {
select {
case <-pc.kaStop:
return
case <-ticker.C:
// keepalive: send length-prefix 0 (no message ID)
_ = pc.conn.SetWriteDeadline(time.Now().Add(peerWriteTimeout))
_, _ = pc.conn.Write([]byte{0, 0, 0, 0})
debugf("sent keepalive")
}
}
}
func (pc *peerClient) PieceAvailability() ([]bool, bool) {
have := make([]bool, len(pc.have))
copy(have, pc.have)
return have, pc.hasPieceInfo
}
var ErrPieceCanceled = errors.New("piece download canceled")
func (pc *peerClient) DownloadPiece(ctx context.Context, pieceIndex int, pieceLength int, cancelCh <-chan struct{}) ([]byte, pieceTransferStats, error) {
var transfer pieceTransferStats
if pieceLength <= 0 {
return nil, transfer, fmt.Errorf("invalid piece length %d", pieceLength)
}
if err := pc.waitForUnchoke(ctx); err != nil {
return nil, transfer, err
}
startReadBytes, startWriteBytes := pc.conn.Snapshot()
startedAt := time.Now()
piece := make([]byte, pieceLength)
type pendingRequest struct {
length int
requestedAt time.Time
}
pending := make(map[int]pendingRequest, maxPipelineDepth)
offset := 0
received := 0
var latencySum time.Duration
blocksCompleted := 0
depth := initPipelineDepth // adaptive, пересчитывается каждые 4 блока
for received < pieceLength {
if cancelCh != nil {
select {
case <-cancelCh:
for begin, req := range pending {
pc.SendCancel(pieceIndex, begin, req.length)
}
return nil, transfer, ErrPieceCanceled
default:
}
}
for len(pending) < depth && offset < pieceLength {
blockLength := requestBlockSize
if remaining := pieceLength - offset; remaining < blockLength {
blockLength = remaining
}
if err := pc.sendRequest(ctx, pieceIndex, offset, blockLength); err != nil {
return nil, transfer, err
}
pending[offset] = pendingRequest{
length: blockLength,
requestedAt: time.Now(),
}
offset += blockLength
}
gotIndex, gotBegin, block, bufPtr, err := pc.readPieceMessage(ctx)
if err != nil {
return nil, transfer, err
}
if gotIndex != pieceIndex {
if bufPtr != nil {
wireMsgPool.Put(bufPtr)
}
continue
}
req, ok := pending[gotBegin]
if !ok {
if bufPtr != nil {
wireMsgPool.Put(bufPtr)
}
continue
}
if len(block) != req.length {
if bufPtr != nil {
wireMsgPool.Put(bufPtr)
}
return nil, transfer, fmt.Errorf("unexpected block size for piece=%d begin=%d: got=%d want=%d", pieceIndex, gotBegin, len(block), req.length)
}
if gotBegin < 0 || gotBegin+len(block) > len(piece) {
if bufPtr != nil {
wireMsgPool.Put(bufPtr)
}
return nil, transfer, fmt.Errorf("piece block bounds invalid for piece=%d begin=%d block=%d", pieceIndex, gotBegin, len(block))
}
copy(piece[gotBegin:gotBegin+len(block)], block)
delete(pending, gotBegin)
received += len(block)
if bufPtr != nil {
wireMsgPool.Put(bufPtr)
}
blocksCompleted++
blockLatency := time.Since(req.requestedAt)
latencySum += blockLatency
// Пересчёт adaptive depth каждые 4 блока
if blocksCompleted%4 == 0 && blockLatency > 0 {
elapsedSec := blockLatency.Seconds()
curReadBytes, _ := pc.conn.Snapshot()
bytesSoFar := curReadBytes - startReadBytes
if elapsedSec > 0 && bytesSoFar > 0 && time.Since(startedAt).Seconds() > 0 {
bwBps := float64(bytesSoFar) / time.Since(startedAt).Seconds()
newDepth := int(bwBps * elapsedSec / float64(requestBlockSize))
if newDepth < minPipelineDepth {
newDepth = minPipelineDepth
}
if newDepth > maxPipelineDepth {
newDepth = maxPipelineDepth
}
depth = newDepth
}
}
}
endReadBytes, endWriteBytes := pc.conn.Snapshot()
transfer.DownloadedBytes = maxInt64(0, endReadBytes-startReadBytes)
transfer.UploadedBytes = maxInt64(0, endWriteBytes-startWriteBytes)
transfer.Blocks = blocksCompleted
transfer.Duration = time.Since(startedAt)
if blocksCompleted > 0 {
transfer.AvgBlockLatency = latencySum / time.Duration(blocksCompleted)
}
return piece, transfer, nil
}
// SendCancel отправляет сообщение cancel пиру (используется в endgame-режиме).
func (pc *peerClient) SendCancel(pieceIndex, begin, length int) {
payload := make([]byte, 12)
binary.BigEndian.PutUint32(payload[0:4], uint32(pieceIndex))
binary.BigEndian.PutUint32(payload[4:8], uint32(begin))
binary.BigEndian.PutUint32(payload[8:12], uint32(length))
_ = pc.conn.SetWriteDeadline(time.Now().Add(peerWriteTimeout))
_ = pc.sendMessageDirect(msgCancel, payload)
}
// sendMessageDirect — упрощенная версия sendMessage без ctx (deadline уже выставлен).
func (pc *peerClient) sendMessageDirect(msgID int, payload []byte) error {
length := uint32(1 + len(payload))
buf := make([]byte, 4+length)
binary.BigEndian.PutUint32(buf[0:4], length)
buf[4] = byte(msgID)
copy(buf[5:], payload)
_, err := pc.conn.Write(buf)
return err
}
func (pc *peerClient) readInitialMessages(ctx context.Context) error {
if err := pc.setReadDeadlineFromContext(ctx, 2*time.Second); err != nil {
return err
}
defer pc.conn.SetReadDeadline(time.Time{})
for {
msg, bufPtr, err := readWireMessage(pc.conn)
if err != nil {
if isTimeout(err) {
debugf("peer initial message window finished")
return nil
}
return err
}
pc.consumeMessage(msg)
if bufPtr != nil {
wireMsgPool.Put(bufPtr)
}
}
}
func (pc *peerClient) waitForUnchoke(ctx context.Context) error {
if !pc.peerIsChoked {
return nil
}
deadline := time.Now().Add(12 * time.Second)
for {
if err := ctx.Err(); err != nil {
return err
}
if time.Now().After(deadline) {
return errors.New("peer did not unchoke")
}
if err := pc.setReadDeadlineFromContext(ctx, peerReadTimeout); err != nil {
return err
}
msg, bufPtr, err := readWireMessage(pc.conn)
if err != nil {
if isTimeout(err) {
continue
}
return err
}
pc.consumeMessage(msg)
msgID := msg.ID
if bufPtr != nil {
wireMsgPool.Put(bufPtr)
}
if msgID == msgUnchoke {
debugf("peer unchoked")
return nil
}
}
}
func (pc *peerClient) sendRequest(ctx context.Context, pieceIndex, begin, length int) error {
debugf("request piece %d offset %d length %d", pieceIndex, begin, length)
payload := make([]byte, 12)
binary.BigEndian.PutUint32(payload[0:4], uint32(pieceIndex))
binary.BigEndian.PutUint32(payload[4:8], uint32(begin))
binary.BigEndian.PutUint32(payload[8:12], uint32(length))
return pc.sendMessage(ctx, msgRequest, payload)
}
func (pc *peerClient) readPieceMessage(ctx context.Context) (pieceIndex int, begin int, block []byte, bufPtr *[]byte, err error) {
for {
if err := ctx.Err(); err != nil {
return 0, 0, nil, nil, err
}
if err := pc.setReadDeadlineFromContext(ctx, peerReadTimeout); err != nil {
return 0, 0, nil, nil, err
}
msg, ptr, err := readWireMessage(pc.conn)
if err != nil {
if isTimeout(err) {
continue
}
return 0, 0, nil, nil, err
}
switch msg.ID {
case msgPiece:
if len(msg.Payload) < 8 {
if ptr != nil {
wireMsgPool.Put(ptr)
}
continue
}
gotIndex := int(binary.BigEndian.Uint32(msg.Payload[0:4]))
gotBegin := int(binary.BigEndian.Uint32(msg.Payload[4:8]))
data := msg.Payload[8:]
if len(data) == 0 {
if ptr != nil {
wireMsgPool.Put(ptr)
}
continue
}
debugf("received piece %d offset %d block=%d", gotIndex, gotBegin, len(data))
return gotIndex, gotBegin, data, ptr, nil
case msgChoke:
pc.consumeMessage(msg)
if ptr != nil {
wireMsgPool.Put(ptr)
}
return 0, 0, nil, nil, errors.New("peer choked")
default:
pc.consumeMessage(msg)
if ptr != nil {
wireMsgPool.Put(ptr)
}
}
}
}
func (pc *peerClient) consumeMessage(msg wireMessage) {
switch msg.ID {
case msgChoke:
pc.peerIsChoked = true
debugf("peer sent choke")
case msgUnchoke:
pc.peerIsChoked = false
debugf("peer sent unchoke")
case msgHave:
if len(msg.Payload) < 4 {
return
}
idx := int(binary.BigEndian.Uint32(msg.Payload[:4]))
if idx >= 0 && idx < len(pc.have) {
pc.have[idx] = true
pc.hasPieceInfo = true
debugf("received have piece %d", idx)
}
case msgBitfield:
pc.hasPieceInfo = true
debugf("received bitfield (%d bytes)", len(msg.Payload))
for i := range pc.have {
pc.have[i] = bitfieldHasPiece(msg.Payload, i)
}
case msgExtended:
if len(msg.Payload) == 0 {
return
}
extID := int(msg.Payload[0])
if extID == 0 {
var extMsg extendedHandshake
if err := bencode.Unmarshal(bytes.NewReader(msg.Payload[1:]), &extMsg); err == nil {
if id, ok := extMsg.M["ut_metadata"]; ok {
pc.peerUtMetadataID = id
}
if id, ok := extMsg.M["ut_pex"]; ok {
pc.peerUtPexID = id
}
if extMsg.MetadataSize > 0 {
pc.metadataSize = extMsg.MetadataSize
}
debugf("received extended handshake, ut_metadata=%d, ut_pex=%d, size=%d", pc.peerUtMetadataID, pc.peerUtPexID, pc.metadataSize)
}
} else if extID == pc.peerUtPexID && pc.peerUtPexID != 0 {
if pc.OnPex != nil {
if peers := ParsePexPayload(msg.Payload[1:]); len(peers) > 0 {
pc.OnPex(peers)
}
}
}
}
}
func (pc *peerClient) sendExtendedHandshake(ctx context.Context) error {
debugf("sending extended handshake")
msg := extendedHandshake{
M: map[string]int{
"ut_metadata": 1,
"ut_pex": 2,
},
}
var buf bytes.Buffer
buf.WriteByte(0) // Extended message ID 0 for handshake
if err := bencode.Marshal(&buf, msg); err != nil {
return err
}
return pc.sendMessage(ctx, msgExtended, buf.Bytes())
}
func (pc *peerClient) sendHandshake(ctx context.Context, infoHash [20]byte, peerID [20]byte) error {
debugf("sending handshake")
payload := make([]byte, 49+len(wireProtocolString))
payload[0] = byte(len(wireProtocolString))
copy(payload[1:1+len(wireProtocolString)], wireProtocolString)
payload[25] |= 0x10 // Set extension protocol bit
copy(payload[1+len(wireProtocolString)+8:1+len(wireProtocolString)+8+20], infoHash[:])
copy(payload[1+len(wireProtocolString)+8+20:], peerID[:])
if err := pc.setWriteDeadlineFromContext(ctx, peerWriteTimeout); err != nil {
return err
}
_, err := pc.conn.Write(payload)
return err
}
func (pc *peerClient) readHandshake(ctx context.Context, expectedInfoHash [20]byte) error {
head := make([]byte, 1)
if err := pc.setReadDeadlineFromContext(ctx, peerReadTimeout); err != nil {
return err
}
if _, err := io.ReadFull(pc.conn, head); err != nil {
return err
}
pstrlen := int(head[0])
if pstrlen <= 0 || pstrlen > 64 {
return fmt.Errorf("invalid handshake pstrlen %d", pstrlen)
}
rest := make([]byte, pstrlen+48)
if _, err := io.ReadFull(pc.conn, rest); err != nil {
return err
}
if string(rest[:pstrlen]) != wireProtocolString {
return errors.New("invalid peer protocol string")
}
infoHashOffset := pstrlen + 8
if !bytes.Equal(rest[infoHashOffset:infoHashOffset+20], expectedInfoHash[:]) {
return errors.New("peer info_hash mismatch")
}
pc.supportsExtensions = (rest[24] & 0x10) != 0
debugf("handshake complete (extensions: %v)", pc.supportsExtensions)
return nil
}
func (pc *peerClient) SendUnchoke(ctx context.Context) error {
return pc.sendMessage(ctx, msgUnchoke, nil)
}
func (pc *peerClient) SendChoke(ctx context.Context) error {
return pc.sendMessage(ctx, msgChoke, nil)
}
func (pc *peerClient) SendBitfield(ctx context.Context, bitfield []byte) error {
return pc.sendMessage(ctx, msgBitfield, bitfield)
}
func (pc *peerClient) SendPiece(ctx context.Context, index, begin int, data []byte) error {
payload := make([]byte, 8+len(data))
binary.BigEndian.PutUint32(payload[0:4], uint32(index))
binary.BigEndian.PutUint32(payload[4:8], uint32(begin))
copy(payload[8:], data)
return pc.sendMessage(ctx, msgPiece, payload)
}
func ParsePexPayload(payload []byte) []tracker.Peer {
var msg pexMessage
if err := bencode.Unmarshal(bytes.NewReader(payload), &msg); err != nil {
return nil
}
var allPeers []tracker.Peer
if len(msg.Added) > 0 {
if peers, err := tracker.ParsePeers([]byte(msg.Added)); err == nil {
allPeers = append(allPeers, peers...)
}
}
if len(msg.Added6) > 0 {
if peers6, err := tracker.ParsePeers6([]byte(msg.Added6)); err == nil {
allPeers = append(allPeers, peers6...)
}
}
return allPeers
}
func (pc *peerClient) SendPex(ctx context.Context, added []tracker.Peer) error {
if !pc.supportsExtensions || pc.peerUtPexID == 0 {
return errors.New("peer does not support ut_pex")
}
var addedBuf bytes.Buffer
for _, p := range added {
if v4 := p.IP.To4(); v4 != nil {
addedBuf.Write(v4)
var portBuf [2]byte
binary.BigEndian.PutUint16(portBuf[:], p.Port)
addedBuf.Write(portBuf[:])
}
}
msg := pexMessage{
Added: addedBuf.String(),
}
var buf bytes.Buffer
buf.WriteByte(byte(pc.peerUtPexID))
if err := bencode.Marshal(&buf, msg); err != nil {
return err
}
return pc.sendMessage(ctx, msgExtended, buf.Bytes())
}
func (pc *peerClient) ReadMessage(ctx context.Context) (wireMessage, *[]byte, error) {
if err := pc.setReadDeadlineFromContext(ctx, peerReadTimeout); err != nil {
return wireMessage{}, nil, err
}
return readWireMessage(pc.conn)
}
func (pc *peerClient) sendMessage(ctx context.Context, msgID int, payload []byte) error {
if err := pc.setWriteDeadlineFromContext(ctx, peerWriteTimeout); err != nil {
return err
}
length := uint32(1 + len(payload))
// Get buffer from pool
bufPtr := wireMsgPool.Get().(*[]byte)
buf := *bufPtr
if uint32(len(buf)) < 4+length {
// Fallback to allocation if payload is larger than typical
buf = make([]byte, 4+length)
}
binary.BigEndian.PutUint32(buf[0:4], length)
buf[4] = byte(msgID)
copy(buf[5:], payload)
_, err := pc.conn.Write(buf[:4+length])
// Return buffer to pool
wireMsgPool.Put(bufPtr)
return err
}
func readWireMessage(r io.Reader) (wireMessage, *[]byte, error) {
var lengthBuf [4]byte
if _, err := io.ReadFull(r, lengthBuf[:]); err != nil {
return wireMessage{}, nil, err
}
length := binary.BigEndian.Uint32(lengthBuf[:])
if length == 0 {
return wireMessage{ID: -1}, nil, nil
}
if length > maxWireMessageSize {
return wireMessage{}, nil, fmt.Errorf("wire message too large: %d", length)
}
var msg []byte
var bufPtr *[]byte
if length <= requestBlockSize+128 {
bufPtr = wireMsgPool.Get().(*[]byte)
msg = (*bufPtr)[:length]
} else {
msg = make([]byte, length)
}
if _, err := io.ReadFull(r, msg); err != nil {
if bufPtr != nil {
wireMsgPool.Put(bufPtr)
}
return wireMessage{}, nil, err
}
return wireMessage{ID: int(msg[0]), Payload: msg[1:]}, bufPtr, nil
}
func bitfieldHasPiece(bitfield []byte, index int) bool {
byteIndex := index / 8
if byteIndex < 0 || byteIndex >= len(bitfield) {
return false
}
bitOffset := 7 - (index % 8)
return bitfield[byteIndex]&(1<<bitOffset) != 0
}
func pieceSizeForIndex(tf *torrentfile.TorrentFile, pieceIndex int) int {
if pieceIndex < 0 || pieceIndex >= len(tf.PieceHashes) {
return 0
}
if pieceIndex == len(tf.PieceHashes)-1 {
lastPieceSize := tf.Length % tf.PieceLength
if lastPieceSize == 0 {
return tf.PieceLength
}
return lastPieceSize
}
return tf.PieceLength
}
func (pc *peerClient) PeerUtMetadataID() int {
return pc.peerUtMetadataID
}
func (pc *peerClient) MetadataSize() int {
return pc.metadataSize
}
func (pc *peerClient) SendMetadataRequest(ctx context.Context, piece int) error {
if pc.peerUtMetadataID == 0 {
return errors.New("peer does not support ut_metadata")
}
msg := map[string]int{
"msg_type": 0, // request
"piece": piece,
}
var buf bytes.Buffer
buf.WriteByte(byte(pc.peerUtMetadataID))
if err := bencode.Marshal(&buf, msg); err != nil {
return err
}
return pc.sendMessage(ctx, msgExtended, buf.Bytes())
}
func (pc *peerClient) ReadMetadataMessage(ctx context.Context) (piece int, data []byte, reject bool, err error) {
for {
if err := ctx.Err(); err != nil {
return 0, nil, false, err
}
if err := pc.setReadDeadlineFromContext(ctx, peerReadTimeout); err != nil {
return 0, nil, false, err
}
msg, ptr, err := readWireMessage(pc.conn)
if err != nil {
if isTimeout(err) {
continue
}
return 0, nil, false, err
}
if msg.ID == msgExtended {
if len(msg.Payload) == 0 {
if ptr != nil {
wireMsgPool.Put(ptr)
}
continue
}
extID := int(msg.Payload[0])
if extID == 1 { // our ut_metadata ID is 1
reader := bytes.NewReader(msg.Payload[1:])
var dict map[string]int
if err := bencode.Unmarshal(reader, &dict); err != nil {
if ptr != nil {
wireMsgPool.Put(ptr)
}
continue
}
msgType, ok := dict["msg_type"]
if !ok {
if ptr != nil {
wireMsgPool.Put(ptr)
}
continue
}
pieceIdx := dict["piece"]
if msgType == 2 {
if ptr != nil {
wireMsgPool.Put(ptr)
}
return pieceIdx, nil, true, nil
}
if msgType == 1 {
bytesRead := len(msg.Payload[1:]) - reader.Len()
srcData := msg.Payload[1+bytesRead:]
data := make([]byte, len(srcData))
copy(data, srcData)
if ptr != nil {
wireMsgPool.Put(ptr)
}
return pieceIdx, data, false, nil
}
} else if extID == 0 {
pc.consumeMessage(msg)
}
} else {
pc.consumeMessage(msg)
}
if ptr != nil {
wireMsgPool.Put(ptr)
}
}
}
func (pc *peerClient) setReadDeadlineFromContext(ctx context.Context, fallback time.Duration) error {
deadline := time.Now().Add(fallback)
if ctxDeadline, ok := ctx.Deadline(); ok && ctxDeadline.Before(deadline) {
deadline = ctxDeadline
}
return pc.conn.SetReadDeadline(deadline)
}
func (pc *peerClient) setWriteDeadlineFromContext(ctx context.Context, fallback time.Duration) error {
deadline := time.Now().Add(fallback)
if ctxDeadline, ok := ctx.Deadline(); ok && ctxDeadline.Before(deadline) {
deadline = ctxDeadline
}
return pc.conn.SetWriteDeadline(deadline)
}
func isTimeout(err error) bool {
if err == nil {
return false
}
var netErr net.Error
return errors.As(err, &netErr) && netErr.Timeout()
}
func maxInt64(a, b int64) int64 {
if a >= b {
return a
}
return b
}

View file

@ -0,0 +1,477 @@
package torrent
import (
"context"
"sync"
)
type pieceTask struct {
Index int
}
type assignPieceRequest struct {
peerID string
have []bool
hasInfo bool
responseCh chan assignPieceResponse
}
type assignPieceResponse struct {
task pieceTask
ok bool
}
type reportPieceRequest struct {
pieceIndex int
success bool
responseCh chan bool
}
// cancelPeerRequest отправляет сигнал конкретному пиру отменить кусок в endgame.
type cancelPeerRequest struct {
pieceIndex int
peerID string
}
type pieceScheduler struct {
assignCh chan assignPieceRequest
reportCh chan reportPieceRequest
releasePeerCh chan string
progressCh chan int
doneCh chan struct{}
stopCh chan struct{}
stopOnce sync.Once
setSequentialCh chan bool
// cancelCh рассылает сигнал отмены конкретному воркеру в endgame-режиме.
// Ключ — peerID, значение — канал с индексом куска для отмены.
cancelMu sync.RWMutex
cancelSubs map[string]chan int
}
type pieceState uint8
const (
piecePending pieceState = iota
pieceInProgress // качается одним пиром
pieceDone
)
// endgameThreshold — количество оставшихся кусков, при котором включается endgame.
const endgameThreshold = 4
func newPieceScheduler(pieceCount int) *pieceScheduler {
return newPieceSchedulerWithResume(pieceCount, nil)
}
func newPieceSchedulerWithResume(pieceCount int, completedIndices []int) *pieceScheduler {
ps := &pieceScheduler{
assignCh: make(chan assignPieceRequest, 128),
reportCh: make(chan reportPieceRequest, 128),
releasePeerCh: make(chan string, 128),
progressCh: make(chan int, 1),
doneCh: make(chan struct{}),
stopCh: make(chan struct{}),
setSequentialCh: make(chan bool),
cancelSubs: make(map[string]chan int),
}
go ps.run(pieceCount, completedIndices)
return ps
}
// SubscribeCancel регистрирует канал для получения cancel-сигналов в endgame-режиме.
// Воркер должен вызвать это перед Acquire, и отписаться после завершения.
func (ps *pieceScheduler) SubscribeCancel(peerID string) <-chan int {
ch := make(chan int, 8)
ps.cancelMu.Lock()
ps.cancelSubs[peerID] = ch
ps.cancelMu.Unlock()
return ch
}
// UnsubscribeCancel отписывает воркера от cancel-сигналов.
func (ps *pieceScheduler) UnsubscribeCancel(peerID string) {
ps.cancelMu.Lock()
delete(ps.cancelSubs, peerID)
ps.cancelMu.Unlock()
}
// broadcastCancel рассылает сигнал отмены куска всем воркерам кроме победителя.
func (ps *pieceScheduler) broadcastCancel(pieceIndex int, winnerPeerID string) {
ps.cancelMu.RLock()
defer ps.cancelMu.RUnlock()
for id, ch := range ps.cancelSubs {
if id == winnerPeerID {
continue
}
select {
case ch <- pieceIndex:
default:
}
}
}
func (ps *pieceScheduler) Acquire(ctx context.Context, peerID string, have []bool, hasInfo bool) (pieceTask, bool, error) {
responseCh := make(chan assignPieceResponse, 1)
req := assignPieceRequest{
peerID: peerID,
have: have,
hasInfo: hasInfo,
responseCh: responseCh,
}
select {
case <-ctx.Done():
return pieceTask{}, false, ctx.Err()
case <-ps.doneCh:
return pieceTask{}, false, nil
case ps.assignCh <- req:
}
select {
case <-ctx.Done():
return pieceTask{}, false, ctx.Err()
case <-ps.doneCh:
return pieceTask{}, false, nil
case response := <-responseCh:
return response.task, response.ok, nil
}
}
func (ps *pieceScheduler) Report(ctx context.Context, pieceIndex int, success bool) (bool, error) {
responseCh := make(chan bool, 1)
req := reportPieceRequest{
pieceIndex: pieceIndex,
success: success,
responseCh: responseCh,
}
select {
case <-ctx.Done():
return false, ctx.Err()
case <-ps.doneCh:
return false, nil
case ps.reportCh <- req:
}
select {
case <-ctx.Done():
return false, ctx.Err()
case <-ps.doneCh:
return false, nil
case accepted := <-responseCh:
return accepted, nil
}
}
func (ps *pieceScheduler) ReleasePeer(peerID string) {
if peerID == "" {
return
}
select {
case <-ps.doneCh:
return
case ps.releasePeerCh <- peerID:
default:
}
}
func (ps *pieceScheduler) Progress() <-chan int {
return ps.progressCh
}
func (ps *pieceScheduler) Done() <-chan struct{} {
return ps.doneCh
}
func (ps *pieceScheduler) Stop() {
ps.stopOnce.Do(func() {
close(ps.stopCh)
})
}
func (ps *pieceScheduler) SetSequential(mode bool) {
select {
case ps.setSequentialCh <- mode:
case <-ps.stopCh:
}
}
func (ps *pieceScheduler) run(pieceCount int, completedIndices []int) {
states := make([]pieceState, pieceCount)
availability := make([]int, pieceCount)
peerAvailability := make(map[string][]bool, 256)
endgamePeers := make(map[int][]string)
completed := 0
sequentialMode := false
for _, idx := range completedIndices {
if idx >= 0 && idx < pieceCount {
states[idx] = pieceDone
completed++
}
}
finish := func() {
close(ps.doneCh)
close(ps.progressCh)
}
if pieceCount == 0 {
finish()
return
}
for {
if completed >= pieceCount {
finish()
return
}
remaining := pieceCount - completed
endgame := remaining <= endgameThreshold
select {
case <-ps.stopCh:
finish()
return
case peerID := <-ps.releasePeerCh:
releasePeerAvailability(peerAvailability, availability, peerID)
case req := <-ps.assignCh:
if req.peerID != "" && req.hasInfo {
updatePeerAvailability(peerAvailability, availability, req.peerID, req.have, pieceCount)
}
pieceIndex := -1
if endgame {
pieceIndex = selectPieceEndgame(states, availability, req.have, req.hasInfo, endgamePeers, req.peerID)
} else {
if sequentialMode {
pieceIndex = selectPendingPieceSequential(states, req.have, req.hasInfo)
} else {
pieceIndex = selectPendingPieceRarest(states, availability, req.have, req.hasInfo)
}
}
if pieceIndex >= 0 {
if !endgame {
states[pieceIndex] = pieceInProgress
}
endgamePeers[pieceIndex] = append(endgamePeers[pieceIndex], req.peerID)
req.responseCh <- assignPieceResponse{
task: pieceTask{Index: pieceIndex},
ok: true,
}
continue
}
req.responseCh <- assignPieceResponse{ok: false}
case req := <-ps.reportCh:
if req.pieceIndex < 0 || req.pieceIndex >= pieceCount {
req.responseCh <- false
continue
}
if req.success {
if states[req.pieceIndex] == pieceDone {
req.responseCh <- false
continue
}
states[req.pieceIndex] = pieceDone
completed++
// Endgame: уведомить других пиров отменить этот кусок
if peers, ok := endgamePeers[req.pieceIndex]; ok && len(peers) > 1 {
go ps.broadcastCancel(req.pieceIndex, "")
}
delete(endgamePeers, req.pieceIndex)
select {
case ps.progressCh <- req.pieceIndex:
default:
}
} else {
if states[req.pieceIndex] != pieceDone {
states[req.pieceIndex] = piecePending
}
}
req.responseCh <- true
case mode := <-ps.setSequentialCh:
sequentialMode = mode
}
}
}
// selectPieceEndgame выбирает кусок в endgame режиме:
// разрешает назначать куски в состоянии InProgress другим пирам.
func selectPieceEndgame(states []pieceState, availability []int, have []bool, hasInfo bool, endgamePeers map[int][]string, peerID string) int {
// Сначала пробуем найти pending кусок (обычный путь)
if idx := selectPendingPieceRarest(states, availability, have, hasInfo); idx >= 0 {
return idx
}
// Endgame: ищем InProgress кусок, который у нас ещё не назначен этому пиру
bestPiece := -1
bestAvailability := 0
for pieceIndex, state := range states {
if state != pieceInProgress {
continue
}
// Проверяем, не назначен ли уже этому пиру
alreadyAssigned := false
for _, pid := range endgamePeers[pieceIndex] {
if pid == peerID {
alreadyAssigned = true
break
}
}
if alreadyAssigned {
continue
}
// Проверяем наличие у пира
if hasInfo && (pieceIndex >= len(have) || !have[pieceIndex]) {
continue
}
count := availability[pieceIndex]
if bestPiece == -1 || count < bestAvailability {
bestPiece = pieceIndex
bestAvailability = count
}
}
return bestPiece
}
func updatePeerAvailability(peerAvailability map[string][]bool, availability []int, peerID string, have []bool, pieceCount int) {
normalized := make([]bool, pieceCount)
copy(normalized, have)
if prev, ok := peerAvailability[peerID]; ok {
same := true
for i := 0; i < pieceCount; i++ {
if prev[i] != normalized[i] {
same = false
break
}
}
if same {
return
}
for i := 0; i < pieceCount; i++ {
if prev[i] && availability[i] > 0 {
availability[i]--
}
if normalized[i] {
availability[i]++
}
}
peerAvailability[peerID] = normalized
return
}
for i := 0; i < pieceCount; i++ {
if normalized[i] {
availability[i]++
}
}
peerAvailability[peerID] = normalized
}
func releasePeerAvailability(peerAvailability map[string][]bool, availability []int, peerID string) {
prev, ok := peerAvailability[peerID]
if !ok {
return
}
for i := range prev {
if prev[i] && availability[i] > 0 {
availability[i]--
}
}
delete(peerAvailability, peerID)
}
func selectPendingPieceRarest(states []pieceState, availability []int, have []bool, hasInfo bool) int {
firstPending := firstPendingPiece(states)
if firstPending < 0 {
return -1
}
// If peer has not sent bitfield/have yet, optimistically probe.
if !hasInfo {
return firstPending
}
bestPiece := -1
bestAvailability := 0
for pieceIndex, state := range states {
if state != piecePending {
continue
}
if pieceIndex >= len(have) || !have[pieceIndex] {
continue
}
count := availability[pieceIndex]
if bestPiece == -1 || count < bestAvailability || (count == bestAvailability && pieceIndex < bestPiece) {
bestPiece = pieceIndex
bestAvailability = count
}
}
if bestPiece >= 0 {
return bestPiece
}
// Some peers send truncated availability info; allow fallback probing.
if len(have) == 0 || len(have) < len(states) {
return firstPending
}
return -1
}
func selectPendingPieceSequential(states []pieceState, have []bool, hasInfo bool) int {
firstPending := firstPendingPiece(states)
if firstPending < 0 {
return -1
}
// If peer has not sent bitfield/have yet, optimistically probe.
if !hasInfo {
return firstPending
}
for pieceIndex, state := range states {
if state != piecePending {
continue
}
if pieceIndex >= len(have) || !have[pieceIndex] {
continue
}
return pieceIndex // В последовательном режиме сразу берём первый доступный
}
// Some peers send truncated availability info; allow fallback probing.
if len(have) == 0 || len(have) < len(states) {
return firstPending
}
return -1
}
func firstPendingPiece(states []pieceState) int {
for pieceIndex, state := range states {
if state == piecePending {
return pieceIndex
}
}
return -1
}

View file

@ -0,0 +1,419 @@
package torrentfile
import (
"bytes"
"crypto/sha1"
"errors"
"fmt"
"os"
"path"
"github.com/jackpal/bencode-go"
)
type bencodeTorrent struct {
Announce string `bencode:"announce"`
AnnounceList [][]string `bencode:"announce-list"`
Info bencodeInfo `bencode:"info"`
}
type bencodeInfo struct {
Pieces string `bencode:"pieces"`
PieceLength int `bencode:"piece length"`
Length int `bencode:"length"`
Files []file `bencode:"files"`
Name string `bencode:"name"`
}
type file struct {
Length int `bencode:"length"`
Path []string `bencode:"path"`
}
type File struct {
Path string
Length int
Priority int // 0 = skip, 1 = normal
}
type TorrentFile struct {
Announce string
Trackers []string
InfoHash [20]byte
PieceHashes [][20]byte
PieceLength int
Length int
Name string
Files []File
}
func Open(path string) (*TorrentFile, error) {
rawData, err := os.ReadFile(path)
if err != nil {
return nil, err
}
infoBytes, err := extractInfoBytes(rawData)
if err != nil {
return nil, err
}
var bto bencodeTorrent
if err := bencode.Unmarshal(bytes.NewReader(rawData), &bto); err != nil {
return nil, err
}
// Если announce пустой, берём первый трекер из announce-list (BEP 12)
primaryAnnounce := bto.Announce
if primaryAnnounce == "" {
for _, tier := range bto.AnnounceList {
for _, tr := range tier {
if tr != "" {
primaryAnnounce = tr
break
}
}
if primaryAnnounce != "" {
break
}
}
}
if err := validateMetadata(bto.Info); err != nil {
return nil, err
}
pieceHashes, err := splitPieceHashes(bto.Info.Pieces)
if err != nil {
return nil, err
}
files, totalLength, err := deriveFilesAndLength(bto.Info)
if err != nil {
return nil, err
}
if err := validatePieceCount(totalLength, bto.Info.PieceLength, len(pieceHashes)); err != nil {
return nil, err
}
infoHash := sha1.Sum(infoBytes)
trackers := collectTrackers(primaryAnnounce, bto.AnnounceList)
tf := TorrentFile{
Announce: primaryAnnounce,
Trackers: trackers,
InfoHash: infoHash,
PieceHashes: pieceHashes,
PieceLength: bto.Info.PieceLength,
Length: totalLength,
Name: bto.Info.Name,
Files: files,
}
return &tf, nil
}
func FromMetadata(infoBytes []byte, trackers []string) (*TorrentFile, error) {
var info bencodeInfo
if err := bencode.Unmarshal(bytes.NewReader(infoBytes), &info); err != nil {
return nil, err
}
primaryAnnounce := ""
if len(trackers) > 0 {
primaryAnnounce = trackers[0]
}
if err := validateMetadata(info); err != nil {
return nil, err
}
pieceHashes, err := splitPieceHashes(info.Pieces)
if err != nil {
return nil, err
}
files, totalLength, err := deriveFilesAndLength(info)
if err != nil {
return nil, err
}
if err := validatePieceCount(totalLength, info.PieceLength, len(pieceHashes)); err != nil {
return nil, err
}
infoHash := sha1.Sum(infoBytes)
tf := TorrentFile{
Announce: primaryAnnounce,
Trackers: trackers,
InfoHash: infoHash,
PieceHashes: pieceHashes,
PieceLength: info.PieceLength,
Length: totalLength,
Name: info.Name,
Files: files,
}
return &tf, nil
}
func validateMetadata(info bencodeInfo) error {
switch {
case info.Name == "":
return errors.New("torrent name is empty")
case info.PieceLength <= 0:
return errors.New("torrent piece length must be greater than zero")
}
switch {
case info.Length > 0 && len(info.Files) > 0:
return errors.New("torrent contains both single-file and multi-file metadata")
case info.Length <= 0 && len(info.Files) == 0:
return errors.New("torrent missing both length and files metadata")
}
return nil
}
func splitPieceHashes(rawPieces string) ([][20]byte, error) {
pieces := []byte(rawPieces)
if len(pieces) == 0 {
return nil, errors.New("torrent has no piece hashes")
}
if len(pieces)%sha1.Size != 0 {
return nil, fmt.Errorf("invalid pieces data size %d (must be multiple of %d)", len(pieces), sha1.Size)
}
hashes := make([][20]byte, len(pieces)/sha1.Size)
for i := range hashes {
start := i * sha1.Size
copy(hashes[i][:], pieces[start:start+sha1.Size])
}
return hashes, nil
}
func deriveFilesAndLength(info bencodeInfo) ([]File, int, error) {
if info.Length > 0 {
return []File{{Path: info.Name, Length: info.Length, Priority: 1}}, info.Length, nil
}
files := make([]File, 0, len(info.Files))
totalLength := 0
for _, f := range info.Files {
if f.Length <= 0 {
return nil, 0, errors.New("torrent file length must be greater than zero")
}
if len(f.Path) == 0 {
return nil, 0, errors.New("torrent file path cannot be empty")
}
parts := make([]string, 0, len(f.Path)+1)
parts = append(parts, info.Name)
parts = append(parts, f.Path...)
filePath := path.Join(parts...)
files = append(files, File{
Path: filePath,
Length: f.Length,
Priority: 1,
})
totalLength += f.Length
}
if totalLength <= 0 {
return nil, 0, errors.New("torrent total length must be greater than zero")
}
return files, totalLength, nil
}
func validatePieceCount(totalLength, pieceLength, actualPieces int) error {
expectedPieces := (totalLength + pieceLength - 1) / pieceLength
if expectedPieces != actualPieces {
return fmt.Errorf("piece hash count mismatch: expected %d, got %d", expectedPieces, actualPieces)
}
return nil
}
func extractInfoBytes(data []byte) ([]byte, error) {
if len(data) == 0 || data[0] != 'd' {
return nil, errors.New("torrent root must be a bencoded dictionary")
}
idx := 1
for idx < len(data) {
if data[idx] == 'e' {
break
}
key, next, err := parseBencodeString(data, idx)
if err != nil {
return nil, err
}
idx = next
valueStart := idx
valueEnd, err := skipBencodeValue(data, idx)
if err != nil {
return nil, err
}
if string(key) == "info" {
return data[valueStart:valueEnd], nil
}
idx = valueEnd
}
return nil, errors.New("torrent does not contain top-level info dictionary")
}
func skipBencodeValue(data []byte, idx int) (int, error) {
if idx >= len(data) {
return 0, errors.New("unexpected end of bencoded data")
}
switch c := data[idx]; {
case c == 'i':
return skipBencodeInt(data, idx)
case c == 'l':
idx++
for {
if idx >= len(data) {
return 0, errors.New("unexpected end while parsing bencoded list")
}
if data[idx] == 'e' {
return idx + 1, nil
}
next, err := skipBencodeValue(data, idx)
if err != nil {
return 0, err
}
idx = next
}
case c == 'd':
idx++
for {
if idx >= len(data) {
return 0, errors.New("unexpected end while parsing bencoded dictionary")
}
if data[idx] == 'e' {
return idx + 1, nil
}
_, next, err := parseBencodeString(data, idx)
if err != nil {
return 0, err
}
idx = next
next, err = skipBencodeValue(data, idx)
if err != nil {
return 0, err
}
idx = next
}
case c >= '0' && c <= '9':
_, next, err := parseBencodeString(data, idx)
return next, err
default:
return 0, fmt.Errorf("invalid bencode token %q at index %d", c, idx)
}
}
func skipBencodeInt(data []byte, idx int) (int, error) {
if data[idx] != 'i' {
return 0, fmt.Errorf("expected integer token at index %d", idx)
}
idx++
if idx >= len(data) {
return 0, errors.New("unexpected end while parsing bencoded integer")
}
if data[idx] == '-' {
idx++
if idx >= len(data) {
return 0, errors.New("unexpected end after bencoded integer sign")
}
}
if data[idx] < '0' || data[idx] > '9' {
return 0, fmt.Errorf("invalid bencoded integer digit at index %d", idx)
}
for idx < len(data) && data[idx] != 'e' {
if data[idx] < '0' || data[idx] > '9' {
return 0, fmt.Errorf("invalid bencoded integer digit at index %d", idx)
}
idx++
}
if idx >= len(data) || data[idx] != 'e' {
return 0, errors.New("unterminated bencoded integer")
}
return idx + 1, nil
}
func parseBencodeString(data []byte, idx int) ([]byte, int, error) {
length, valueStart, err := parseBencodeStringLength(data, idx)
if err != nil {
return nil, 0, err
}
valueEnd := valueStart + length
if valueEnd > len(data) {
return nil, 0, errors.New("bencoded string length exceeds input size")
}
return data[valueStart:valueEnd], valueEnd, nil
}
func parseBencodeStringLength(data []byte, idx int) (int, int, error) {
if idx >= len(data) {
return 0, 0, errors.New("unexpected end while parsing bencoded string length")
}
if data[idx] < '0' || data[idx] > '9' {
return 0, 0, fmt.Errorf("invalid bencoded string length token at index %d", idx)
}
length := 0
for idx < len(data) && data[idx] >= '0' && data[idx] <= '9' {
length = (length * 10) + int(data[idx]-'0')
idx++
}
if idx >= len(data) || data[idx] != ':' {
return 0, 0, errors.New("unterminated bencoded string length")
}
return length, idx + 1, nil
}
func collectTrackers(primary string, announceList [][]string) []string {
seen := make(map[string]struct{})
trackers := make([]string, 0, 1+len(announceList))
add := func(tracker string) {
if tracker == "" {
return
}
if _, ok := seen[tracker]; ok {
return
}
seen[tracker] = struct{}{}
trackers = append(trackers, tracker)
}
add(primary)
for _, tier := range announceList {
for _, tracker := range tier {
add(tracker)
}
}
return trackers
}

View file

@ -0,0 +1,155 @@
package torrentfile
import (
"crypto/sha1"
"os"
"path/filepath"
"testing"
)
func TestOpenParsesTorrentMetadata(t *testing.T) {
t.Parallel()
info := "d6:lengthi5e4:name8:test.txt12:piece lengthi16384e6:pieces20:aaaaaaaaaaaaaaaaaaaa7:privatei1ee"
torrent := "d8:announce14:http://tracker4:info" + info + "e"
path := writeTempTorrent(t, torrent)
tf, err := Open(path)
if err != nil {
t.Fatalf("Open returned error: %v", err)
}
expectedHash := sha1.Sum([]byte(info))
if tf.InfoHash != expectedHash {
t.Fatalf("unexpected info hash: got %x want %x", tf.InfoHash, expectedHash)
}
if tf.Announce != "http://tracker" {
t.Fatalf("unexpected announce: got %q", tf.Announce)
}
if len(tf.Trackers) != 1 || tf.Trackers[0] != "http://tracker" {
t.Fatalf("unexpected trackers list: %#v", tf.Trackers)
}
if tf.Name != "test.txt" {
t.Fatalf("unexpected name: got %q", tf.Name)
}
if tf.PieceLength != 16384 {
t.Fatalf("unexpected piece length: got %d", tf.PieceLength)
}
if tf.Length != 5 {
t.Fatalf("unexpected length: got %d", tf.Length)
}
if len(tf.PieceHashes) != 1 {
t.Fatalf("unexpected piece count: got %d", len(tf.PieceHashes))
}
if len(tf.Files) != 1 {
t.Fatalf("unexpected file count: got %d", len(tf.Files))
}
if got, want := tf.Files[0].Path, "test.txt"; got != want {
t.Fatalf("unexpected first file path: got %q want %q", got, want)
}
if got, want := tf.Files[0].Length, 5; got != want {
t.Fatalf("unexpected first file length: got %d want %d", got, want)
}
var expectedPiece [20]byte
copy(expectedPiece[:], []byte("aaaaaaaaaaaaaaaaaaaa"))
if tf.PieceHashes[0] != expectedPiece {
t.Fatalf("unexpected piece hash: got %x want %x", tf.PieceHashes[0], expectedPiece)
}
}
func TestOpenRejectsInvalidPieceHashes(t *testing.T) {
t.Parallel()
info := "d6:lengthi5e4:name8:test.txt12:piece lengthi16384e6:pieces19:aaaaaaaaaaaaaaaaaaae"
torrent := "d8:announce14:http://tracker4:info" + info + "e"
path := writeTempTorrent(t, torrent)
_, err := Open(path)
if err == nil {
t.Fatal("expected Open to fail for invalid piece hash length")
}
}
func TestOpenParsesMultiFileTorrent(t *testing.T) {
t.Parallel()
pieces := "aaaaaaaaaaaaaaaaaaaabbbbbbbbbbbbbbbbbbbb"
info := "d5:filesld6:lengthi3e4:pathl5:a.txteed6:lengthi2e4:pathl5:b.txteee4:name4:root12:piece lengthi4e6:pieces40:" + pieces + "e"
torrent := "d8:announce14:http://tracker4:info" + info + "e"
path := writeTempTorrent(t, torrent)
tf, err := Open(path)
if err != nil {
t.Fatalf("Open returned error: %v", err)
}
if tf.Length != 5 {
t.Fatalf("unexpected total length: got %d", tf.Length)
}
if len(tf.Files) != 2 {
t.Fatalf("unexpected file count: got %d", len(tf.Files))
}
if got, want := tf.Files[0].Path, "root/a.txt"; got != want {
t.Fatalf("unexpected file[0] path: got %q want %q", got, want)
}
if got, want := tf.Files[1].Path, "root/b.txt"; got != want {
t.Fatalf("unexpected file[1] path: got %q want %q", got, want)
}
if len(tf.PieceHashes) != 2 {
t.Fatalf("unexpected piece hash count: got %d", len(tf.PieceHashes))
}
}
func TestOpenRejectsPieceCountMismatch(t *testing.T) {
t.Parallel()
info := "d6:lengthi10e4:name8:test.txt12:piece lengthi4e6:pieces40:aaaaaaaaaaaaaaaaaaaabbbbbbbbbbbbbbbbbbbbe"
torrent := "d8:announce14:http://tracker4:info" + info + "e"
path := writeTempTorrent(t, torrent)
_, err := Open(path)
if err == nil {
t.Fatal("expected Open to fail for piece count mismatch")
}
}
func TestOpenParsesAnnounceListAndDeduplicatesTrackers(t *testing.T) {
t.Parallel()
info := "d6:lengthi5e4:name8:test.txt12:piece lengthi16384e6:pieces20:aaaaaaaaaaaaaaaaaaaae"
torrent := "d8:announce14:http://tracker13:announce-listll14:http://tracker17:udp://tracker.oneel17:udp://tracker.one17:udp://tracker.twoee4:info" + info + "e"
path := writeTempTorrent(t, torrent)
tf, err := Open(path)
if err != nil {
t.Fatalf("Open returned error: %v", err)
}
expected := []string{
"http://tracker",
"udp://tracker.one",
"udp://tracker.two",
}
if len(tf.Trackers) != len(expected) {
t.Fatalf("unexpected trackers length: got %d want %d (%#v)", len(tf.Trackers), len(expected), tf.Trackers)
}
for i := range expected {
if tf.Trackers[i] != expected[i] {
t.Fatalf("unexpected tracker[%d]: got %q want %q", i, tf.Trackers[i], expected[i])
}
}
}
func writeTempTorrent(t *testing.T, data string) string {
t.Helper()
dir := t.TempDir()
path := filepath.Join(dir, "test.torrent")
if err := os.WriteFile(path, []byte(data), 0o600); err != nil {
t.Fatalf("failed to write temp torrent file: %v", err)
}
return path
}

490
internal/tracker/tracker.go Normal file
View file

@ -0,0 +1,490 @@
package tracker
import (
"context"
"crypto/rand"
"encoding/binary"
"errors"
"fmt"
"net"
"net/http"
"net/url"
"strconv"
"strings"
"time"
"github.com/jackpal/bencode-go"
"github.com/veggiedefender/torrent-client/internal/torrentfile"
)
type TrackerResponse struct {
FailureReason string `bencode:"failure reason"`
Interval int `bencode:"interval"`
Peers string `bencode:"peers"`
Peers6 string `bencode:"peers6"`
}
type Peer struct {
IP net.IP
Port uint16
}
type AnnounceOptions struct {
PeerID [20]byte
Port uint16
Uploaded int64
Downloaded int64
NumWant int
Timeout time.Duration
}
type httpDoer interface {
Do(req *http.Request) (*http.Response, error)
}
func GetPeers(ctx context.Context, tf *torrentfile.TorrentFile, opts AnnounceOptions) ([]Peer, error) {
if tf == nil {
return nil, errors.New("torrent metadata is nil")
}
return GetPeersFromURL(ctx, tf.Announce, tf.InfoHash, tf.Length, opts)
}
func GetPeersFromURL(ctx context.Context, announce string, infoHash [20]byte, length int, opts AnnounceOptions) ([]Peer, error) {
opts = normalizeOptions(opts)
announceURL, err := url.Parse(announce)
if err != nil {
return nil, fmt.Errorf("invalid tracker URL %q: %w", announce, err)
}
switch announceURL.Scheme {
case "http", "https":
client := &http.Client{Timeout: opts.Timeout}
return getPeersWithClient(ctx, client, announceURL, infoHash, length, opts)
case "udp":
return getPeersUDP(ctx, announceURL, infoHash, length, opts)
default:
return nil, fmt.Errorf("unsupported tracker scheme %q (only http/https/udp are supported)", announceURL.Scheme)
}
}
func getPeersWithClient(ctx context.Context, client httpDoer, announceURL *url.URL, infoHash [20]byte, length int, opts AnnounceOptions) ([]Peer, error) {
opts = normalizeOptions(opts)
if client == nil {
client = &http.Client{Timeout: opts.Timeout}
}
announceURLString, err := buildAnnounceURL(announceURL, infoHash, length, opts)
if err != nil {
return nil, err
}
req, err := http.NewRequestWithContext(ctx, http.MethodGet, announceURLString, nil)
if err != nil {
return nil, err
}
resp, err := client.Do(req)
if err != nil {
return nil, err
}
defer resp.Body.Close()
if resp.StatusCode != http.StatusOK {
return nil, fmt.Errorf("tracker returned HTTP %d", resp.StatusCode)
}
var tr TrackerResponse
err = bencode.Unmarshal(resp.Body, &tr)
if err != nil {
return nil, err
}
if tr.FailureReason != "" {
return nil, fmt.Errorf("tracker failure: %s", tr.FailureReason)
}
// Парсим IPv4 compact peers
peers, err := ParsePeers([]byte(tr.Peers))
if err != nil {
return nil, err
}
// Парсим IPv6 compact peers (peers6, BEP 7)
if tr.Peers6 != "" {
peers6, err := ParsePeers6([]byte(tr.Peers6))
if err == nil {
peers = mergePeers(peers, peers6)
}
}
return peers, nil
}
func getPeersUDP(ctx context.Context, announceURL *url.URL, infoHash [20]byte, length int, opts AnnounceOptions) ([]Peer, error) {
if announceURL == nil {
return nil, errors.New("tracker URL is nil")
}
if announceURL.Scheme != "udp" {
return nil, fmt.Errorf("tracker URL scheme %q is not udp", announceURL.Scheme)
}
if announceURL.Host == "" {
return nil, errors.New("tracker URL host is empty")
}
dialer := net.Dialer{Timeout: opts.Timeout}
conn, err := dialer.DialContext(ctx, "udp", announceURL.Host)
if err != nil {
return nil, err
}
defer conn.Close()
deadline := time.Now().Add(opts.Timeout)
if ctxDeadline, ok := ctx.Deadline(); ok && ctxDeadline.Before(deadline) {
deadline = ctxDeadline
}
if err := conn.SetDeadline(deadline); err != nil {
return nil, err
}
connectTx, err := randomUint32()
if err != nil {
return nil, err
}
connectReq := buildUDPConnectRequest(connectTx)
var connectionID uint64
var connOK bool
for n := 0; n <= 8; n++ {
if _, err := conn.Write(connectReq[:]); err != nil {
return nil, err
}
conn.SetReadDeadline(time.Now().Add(15 * time.Second * time.Duration(1<<n)))
resp := make([]byte, 65535)
nRead, err := conn.Read(resp)
if err == nil {
cid, errParse := parseUDPConnectResponse(resp[:nRead], connectTx)
if errParse == nil {
connectionID = cid
connOK = true
break
}
}
select {
case <-ctx.Done():
return nil, ctx.Err()
default:
}
}
if !connOK {
return nil, fmt.Errorf("udp tracker connect timeout")
}
announceTx, err := randomUint32()
if err != nil {
return nil, err
}
key, err := randomUint32()
if err != nil {
return nil, err
}
announceReq, err := buildUDPAnnounceRequest(connectionID, announceTx, infoHash, length, opts, key)
if err != nil {
return nil, err
}
for n := 0; n <= 8; n++ {
if _, err := conn.Write(announceReq); err != nil {
return nil, err
}
conn.SetReadDeadline(time.Now().Add(15 * time.Second * time.Duration(1<<n)))
resp := make([]byte, 65535)
for {
nRead, err := conn.Read(resp)
if err != nil {
break // read timeout or error, retransmit
}
peers, errParse := parseUDPAnnounceResponse(resp[:nRead], announceTx)
if errParse == nil {
return peers, nil
}
// if errParse != nil, it might be a delayed packet from another transaction, so we just loop and Read again
}
select {
case <-ctx.Done():
return nil, ctx.Err()
default:
}
}
return nil, fmt.Errorf("udp tracker announce timeout")
}
func normalizeOptions(opts AnnounceOptions) AnnounceOptions {
if opts.Port == 0 {
opts.Port = 6881
}
if opts.NumWant <= 0 {
opts.NumWant = 50
}
if opts.Timeout <= 0 {
opts.Timeout = 10 * time.Second
}
return opts
}
func buildAnnounceURL(baseURL *url.URL, infoHash [20]byte, length int, opts AnnounceOptions) (string, error) {
if baseURL == nil {
return "", errors.New("tracker URL is nil")
}
if baseURL.Scheme != "http" && baseURL.Scheme != "https" {
return "", fmt.Errorf("unsupported tracker scheme %q (only http/https are supported)", baseURL.Scheme)
}
if baseURL.Host == "" {
return "", errors.New("tracker URL host is empty")
}
uploaded := opts.Uploaded
if uploaded < 0 {
uploaded = 0
}
downloaded := opts.Downloaded
if downloaded < 0 {
downloaded = 0
}
left := int64(length) - downloaded
if left < 0 {
left = 0
}
parts := make([]string, 0, 10)
if baseURL.RawQuery != "" {
parts = append(parts, baseURL.RawQuery)
}
parts = append(parts,
"info_hash="+escapeBinary(infoHash[:]),
"peer_id="+escapeBinary(opts.PeerID[:]),
"port="+strconv.Itoa(int(opts.Port)),
"uploaded="+strconv.FormatInt(uploaded, 10),
"downloaded="+strconv.FormatInt(downloaded, 10),
"left="+strconv.FormatInt(left, 10),
"compact=1",
"numwant="+strconv.Itoa(opts.NumWant),
)
cloned := *baseURL
cloned.RawQuery = strings.Join(parts, "&")
return cloned.String(), nil
}
func buildUDPConnectRequest(transactionID uint32) [16]byte {
var req [16]byte
binary.BigEndian.PutUint64(req[0:8], 0x41727101980)
binary.BigEndian.PutUint32(req[8:12], 0)
binary.BigEndian.PutUint32(req[12:16], transactionID)
return req
}
func parseUDPConnectResponse(payload []byte, expectedTransactionID uint32) (uint64, error) {
if len(payload) < 8 {
return 0, fmt.Errorf("udp tracker connect response too short: %d bytes", len(payload))
}
action := binary.BigEndian.Uint32(payload[0:4])
transactionID := binary.BigEndian.Uint32(payload[4:8])
if transactionID != expectedTransactionID {
return 0, fmt.Errorf("udp tracker connect transaction mismatch: expected %d, got %d", expectedTransactionID, transactionID)
}
if action == 3 {
return 0, parseUDPTrackerError(payload)
}
if action != 0 {
return 0, fmt.Errorf("unexpected udp tracker connect action %d", action)
}
if len(payload) < 16 {
return 0, fmt.Errorf("udp tracker connect response too short: %d bytes", len(payload))
}
return binary.BigEndian.Uint64(payload[8:16]), nil
}
func buildUDPAnnounceRequest(connectionID uint64, transactionID uint32, infoHash [20]byte, length int, opts AnnounceOptions, key uint32) ([]byte, error) {
uploaded := opts.Uploaded
if uploaded < 0 {
uploaded = 0
}
downloaded := opts.Downloaded
if downloaded < 0 {
downloaded = 0
}
left := int64(length) - downloaded
if left < 0 {
left = 0
}
req := make([]byte, 98)
binary.BigEndian.PutUint64(req[0:8], connectionID)
binary.BigEndian.PutUint32(req[8:12], 1)
binary.BigEndian.PutUint32(req[12:16], transactionID)
copy(req[16:36], infoHash[:])
copy(req[36:56], opts.PeerID[:])
binary.BigEndian.PutUint64(req[56:64], uint64(downloaded))
binary.BigEndian.PutUint64(req[64:72], uint64(left))
binary.BigEndian.PutUint64(req[72:80], uint64(uploaded))
binary.BigEndian.PutUint32(req[80:84], 1) // event: 1 (started) instead of 0 (none)
binary.BigEndian.PutUint32(req[84:88], 0) // IP address (default 0)
binary.BigEndian.PutUint32(req[88:92], key)
binary.BigEndian.PutUint32(req[92:96], uint32(int32(opts.NumWant)))
binary.BigEndian.PutUint16(req[96:98], opts.Port)
return req, nil
}
func parseUDPAnnounceResponse(payload []byte, expectedTransactionID uint32) ([]Peer, error) {
if len(payload) < 8 {
return nil, fmt.Errorf("udp tracker announce response too short: %d bytes", len(payload))
}
action := binary.BigEndian.Uint32(payload[0:4])
transactionID := binary.BigEndian.Uint32(payload[4:8])
if transactionID != expectedTransactionID {
return nil, fmt.Errorf("udp tracker announce transaction mismatch: expected %d, got %d", expectedTransactionID, transactionID)
}
if action == 3 {
return nil, parseUDPTrackerError(payload)
}
if action != 1 {
return nil, fmt.Errorf("unexpected udp tracker announce action %d", action)
}
if len(payload) < 20 {
return nil, fmt.Errorf("udp tracker announce response too short: %d bytes", len(payload))
}
return ParsePeers(payload[20:])
}
func parseUDPTrackerError(payload []byte) error {
if len(payload) > 8 {
return fmt.Errorf("udp tracker failure: %s", strings.TrimSpace(string(payload[8:])))
}
return errors.New("udp tracker failure")
}
func escapeBinary(data []byte) string {
const hex = "0123456789ABCDEF"
var b strings.Builder
for _, c := range data {
if isURLUnreserved(c) {
b.WriteByte(c)
continue
}
b.WriteByte('%')
b.WriteByte(hex[c>>4])
b.WriteByte(hex[c&0x0F])
}
return b.String()
}
func isURLUnreserved(c byte) bool {
switch {
case c >= 'a' && c <= 'z':
return true
case c >= 'A' && c <= 'Z':
return true
case c >= '0' && c <= '9':
return true
case c == '-', c == '.', c == '_', c == '~':
return true
default:
return false
}
}
// ParsePeers parses compact IPv4 peers (6 bytes per peer: 4 IP + 2 port).
func ParsePeers(data []byte) ([]Peer, error) {
if len(data) == 0 {
return []Peer{}, nil
}
if len(data)%6 != 0 {
return nil, fmt.Errorf("invalid compact peers length %d", len(data))
}
var peers []Peer
for i := 0; i < len(data); i += 6 {
ip := make(net.IP, 4)
copy(ip, data[i:i+4])
port := uint16(data[i+4])<<8 |
uint16(data[i+5])
peers = append(peers, Peer{
IP: ip,
Port: port,
})
}
return peers, nil
}
// ParsePeers6 парсит compact IPv6 peers (BEP 7): 18 байт на пир (16 IP + 2 порт).
func ParsePeers6(data []byte) ([]Peer, error) {
if len(data) == 0 {
return []Peer{}, nil
}
if len(data)%18 != 0 {
return nil, fmt.Errorf("invalid compact peers6 length %d (must be multiple of 18)", len(data))
}
peers := make([]Peer, 0, len(data)/18)
for i := 0; i < len(data); i += 18 {
ip := make(net.IP, 16)
copy(ip, data[i:i+16])
port := uint16(data[i+16])<<8 | uint16(data[i+17])
peers = append(peers, Peer{IP: ip, Port: port})
}
return peers, nil
}
// mergePeers объединяет два списка пиров, дедуплицируя по IP:порт.
func mergePeers(a, b []Peer) []Peer {
seen := make(map[string]struct{}, len(a)+len(b))
result := make([]Peer, 0, len(a)+len(b))
add := func(p Peer) {
key := net.JoinHostPort(p.IP.String(), strconv.Itoa(int(p.Port)))
if _, ok := seen[key]; !ok {
seen[key] = struct{}{}
result = append(result, p)
}
}
for _, p := range a {
add(p)
}
for _, p := range b {
add(p)
}
return result
}
func randomUint32() (uint32, error) {
var b [4]byte
if _, err := rand.Read(b[:]); err != nil {
return 0, err
}
return binary.BigEndian.Uint32(b[:]), nil
}

View file

@ -0,0 +1,309 @@
package tracker
import (
"bytes"
"context"
"encoding/binary"
"io"
"net/http"
"net/url"
"strings"
"testing"
"github.com/veggiedefender/torrent-client/internal/torrentfile"
)
func TestParsePeers(t *testing.T) {
t.Parallel()
raw := []byte{127, 0, 0, 1, 0x1A, 0xE1}
peers, err := ParsePeers(raw)
if err != nil {
t.Fatalf("parsePeers returned error: %v", err)
}
if len(peers) != 1 {
t.Fatalf("unexpected peer count: got %d", len(peers))
}
if got, want := peers[0].IP.String(), "127.0.0.1"; got != want {
t.Fatalf("unexpected peer IP: got %s want %s", got, want)
}
if got, want := peers[0].Port, uint16(6881); got != want {
t.Fatalf("unexpected peer port: got %d want %d", got, want)
}
}
func TestParsePeersRejectsInvalidLength(t *testing.T) {
t.Parallel()
_, err := ParsePeers([]byte{1, 2, 3, 4, 5})
if err == nil {
t.Fatal("expected ParsePeers to fail for invalid compact peer data")
}
}
func TestGetPeersBuildsAnnounceAndParsesResponse(t *testing.T) {
t.Parallel()
var infoHash [20]byte
copy(infoHash[:], []byte("abcdefghijklmnopqrst"))
var peerID [20]byte
copy(peerID[:], []byte("-ZT0001-123456789012"))
tf := &torrentfile.TorrentFile{
Announce: "http://tracker.test/announce",
InfoHash: infoHash,
Length: 1000,
}
var seenRequest *http.Request
client := fakeClient{
do: func(req *http.Request) (*http.Response, error) {
seenRequest = req
payload := []byte("d8:intervali1800e5:peers6:\x7f\x00\x00\x01\x1a\xe1e")
return &http.Response{
StatusCode: http.StatusOK,
Body: io.NopCloser(bytes.NewReader(payload)),
}, nil
},
}
announceURL, err := url.Parse(tf.Announce)
if err != nil {
t.Fatalf("failed to parse announce URL: %v", err)
}
peers, err := getPeersWithClient(context.Background(), client, announceURL, tf.InfoHash, tf.Length, AnnounceOptions{
PeerID: peerID,
Port: 6881,
Downloaded: 100,
})
if err != nil {
t.Fatalf("GetPeers returned error: %v", err)
}
if seenRequest == nil {
t.Fatal("expected tracker request to be sent")
}
q := seenRequest.URL.Query()
if got := q.Get("compact"); got != "1" {
t.Fatalf("unexpected compact value: got %q", got)
}
if got := q.Get("port"); got != "6881" {
t.Fatalf("unexpected port value: got %q", got)
}
if got := q.Get("left"); got != "900" {
t.Fatalf("unexpected left value: got %q", got)
}
if got := q.Get("numwant"); got != "50" {
t.Fatalf("unexpected numwant value: got %q", got)
}
if got := []byte(q.Get("info_hash")); !equalBytes(got, infoHash[:]) {
t.Fatalf("unexpected info_hash value: got %x want %x", got, infoHash)
}
if got := []byte(q.Get("peer_id")); !equalBytes(got, peerID[:]) {
t.Fatalf("unexpected peer_id value: got %x want %x", got, peerID)
}
if len(peers) != 1 {
t.Fatalf("unexpected peer count: got %d", len(peers))
}
if got, want := peers[0].Port, uint16(6881); got != want {
t.Fatalf("unexpected peer port: got %d want %d", got, want)
}
}
func TestBuildAnnounceURLEncodesBinaryValues(t *testing.T) {
t.Parallel()
var infoHash [20]byte
copy(infoHash[:], []byte{0x00, 0xFF, 0x2F, 'A', 0x20})
var peerID [20]byte
copy(peerID[:], []byte("-ZT0001-\x00\xFFabc"))
tf := &torrentfile.TorrentFile{
Announce: "http://tracker.test/announce?token=abc",
InfoHash: infoHash,
Length: 10,
}
baseURL, err := url.Parse(tf.Announce)
if err != nil {
t.Fatalf("failed to parse announce URL: %v", err)
}
announceURL, err := buildAnnounceURL(baseURL, tf.InfoHash, tf.Length, AnnounceOptions{
PeerID: peerID,
Port: 6881,
NumWant: 42,
Uploaded: -5,
Downloaded: -7,
})
if err != nil {
t.Fatalf("buildAnnounceURL returned error: %v", err)
}
if !strings.Contains(announceURL, "token=abc") {
t.Fatalf("announce URL did not preserve existing query params: %s", announceURL)
}
if !strings.Contains(announceURL, "info_hash=%00%FF%2FA%20") {
t.Fatalf("announce URL did not encode binary info hash correctly: %s", announceURL)
}
if !strings.Contains(announceURL, "peer_id=-ZT0001-%00%FFabc") {
t.Fatalf("announce URL did not encode binary peer ID correctly: %s", announceURL)
}
if !strings.Contains(announceURL, "uploaded=0") {
t.Fatalf("announce URL did not clamp uploaded value: %s", announceURL)
}
if !strings.Contains(announceURL, "downloaded=0") {
t.Fatalf("announce URL did not clamp downloaded value: %s", announceURL)
}
if !strings.Contains(announceURL, "left=10") {
t.Fatalf("announce URL did not compute left bytes correctly: %s", announceURL)
}
}
func TestBuildAnnounceURLRejectsUnsupportedScheme(t *testing.T) {
t.Parallel()
baseURL, err := url.Parse("udp://tracker.test:6969/announce")
if err != nil {
t.Fatalf("failed to parse announce URL: %v", err)
}
_, err = buildAnnounceURL(baseURL, [20]byte{}, 10, AnnounceOptions{})
if err == nil {
t.Fatal("expected buildAnnounceURL to reject unsupported tracker scheme")
}
}
func TestGetPeersReturnsTrackerFailure(t *testing.T) {
t.Parallel()
tf := &torrentfile.TorrentFile{
Announce: "http://tracker.test/announce",
Length: 10,
}
client := fakeClient{
do: func(req *http.Request) (*http.Response, error) {
payload := []byte("d14:failure reason11:bad requeste")
return &http.Response{
StatusCode: http.StatusOK,
Body: io.NopCloser(bytes.NewReader(payload)),
}, nil
},
}
announceURL, err := url.Parse(tf.Announce)
if err != nil {
t.Fatalf("failed to parse announce URL: %v", err)
}
_, err = getPeersWithClient(context.Background(), client, announceURL, tf.InfoHash, tf.Length, AnnounceOptions{})
if err == nil {
t.Fatal("expected getPeersWithClient to return tracker failure error")
}
}
func TestParseUDPConnectResponse(t *testing.T) {
t.Parallel()
transactionID := uint32(42)
connectionID := uint64(0x0102030405060708)
payload := make([]byte, 16)
binary.BigEndian.PutUint32(payload[0:4], 0)
binary.BigEndian.PutUint32(payload[4:8], transactionID)
binary.BigEndian.PutUint64(payload[8:16], connectionID)
got, err := parseUDPConnectResponse(payload, transactionID)
if err != nil {
t.Fatalf("parseUDPConnectResponse returned error: %v", err)
}
if got != connectionID {
t.Fatalf("unexpected connection ID: got %x want %x", got, connectionID)
}
}
func TestParseUDPAnnounceResponse(t *testing.T) {
t.Parallel()
transactionID := uint32(99)
payload := make([]byte, 20+6)
binary.BigEndian.PutUint32(payload[0:4], 1)
binary.BigEndian.PutUint32(payload[4:8], transactionID)
binary.BigEndian.PutUint32(payload[8:12], 1800)
binary.BigEndian.PutUint32(payload[12:16], 10)
binary.BigEndian.PutUint32(payload[16:20], 20)
copy(payload[20:], []byte{127, 0, 0, 1, 0x1A, 0xE1})
peers, err := parseUDPAnnounceResponse(payload, transactionID)
if err != nil {
t.Fatalf("parseUDPAnnounceResponse returned error: %v", err)
}
if len(peers) != 1 {
t.Fatalf("unexpected peer count: got %d", len(peers))
}
if got, want := peers[0].Port, uint16(6881); got != want {
t.Fatalf("unexpected peer port: got %d want %d", got, want)
}
}
func TestBuildUDPAnnounceRequest(t *testing.T) {
t.Parallel()
tf := &torrentfile.TorrentFile{
Length: 100,
}
copy(tf.InfoHash[:], []byte("abcdefghijklmnopqrst"))
var peerID [20]byte
copy(peerID[:], []byte("-ZT0001-123456789012"))
req, err := buildUDPAnnounceRequest(0x0102030405060708, 42, tf.InfoHash, tf.Length, AnnounceOptions{
PeerID: peerID,
Port: 6881,
Uploaded: -1,
Downloaded: 20,
NumWant: 50,
}, 0xAABBCCDD)
if err != nil {
t.Fatalf("buildUDPAnnounceRequest returned error: %v", err)
}
if len(req) != 98 {
t.Fatalf("unexpected announce request length: got %d", len(req))
}
if got, want := binary.BigEndian.Uint32(req[8:12]), uint32(1); got != want {
t.Fatalf("unexpected action: got %d want %d", got, want)
}
if got, want := binary.BigEndian.Uint64(req[64:72]), uint64(80); got != want {
t.Fatalf("unexpected left bytes: got %d want %d", got, want)
}
if got, want := binary.BigEndian.Uint64(req[72:80]), uint64(0); got != want {
t.Fatalf("unexpected uploaded bytes: got %d want %d", got, want)
}
}
type fakeClient struct {
do func(req *http.Request) (*http.Response, error)
}
func (c fakeClient) Do(req *http.Request) (*http.Response, error) {
return c.do(req)
}
func equalBytes(a, b []byte) bool {
if len(a) != len(b) {
return false
}
for i := range a {
if a[i] != b[i] {
return false
}
}
return true
}

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@ -0,0 +1,9 @@
package version
// Эти переменные инжектируются при сборке через ldflags:
// go build -ldflags="-X 'github.com/veggiedefender/torrent-client/internal/version.Version=1.2.0' -X 'github.com/veggiedefender/torrent-client/internal/version.BuildDate=2026-07-16'"
var (
Version = "dev"
BuildDate = "unknown"
GitCommit = "unknown"
)

45
scripts/build-all.sh Executable file
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@ -0,0 +1,45 @@
#!/usr/bin/env bash
set -uo pipefail
ROOT_DIR="$(cd "$(dirname "${BASH_SOURCE[0]}")/.." && pwd)"
DIST_DIR="${ROOT_DIR}/dist"
mkdir -p "${DIST_DIR}"
: "${GOCACHE:=/tmp/go-build}"
mkdir -p "${GOCACHE}"
TARGETS=(
"darwin amd64"
"darwin arm64"
"linux amd64"
"linux arm64"
"windows amd64"
)
host_os="$(go env GOOS)"
host_arch="$(go env GOARCH)"
build_failed=0
for target in "${TARGETS[@]}"; do
read -r goos goarch <<<"${target}"
ext=""
if [[ "${goos}" == "windows" ]]; then
ext=".exe"
fi
output="${DIST_DIR}/ztorrent-${goos}-${goarch}${ext}"
rm -f "${output}"
echo "Building ${output}"
if ! GOCACHE="${GOCACHE}" CGO_ENABLED=0 GOOS="${goos}" GOARCH="${goarch}" go build -o "${output}" ./cmd/torrent-client; then
echo "Failed to build target ${goos}/${goarch}"
build_failed=1
fi
done
if [[ "${build_failed}" -ne 0 ]]; then
exit 1
fi
echo "Build complete. Artifacts are in ${DIST_DIR}"

535
ui/logo.go Normal file
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package ui
import (
"fmt"
"math"
"math/rand"
"strings"
"time"
"github.com/charmbracelet/lipgloss"
)
// ── Стили и цвета логотипа ───────────────────────────────────────────────────
var (
logoColorGray = lipgloss.Color("#444444")
logoColorRed = lipgloss.Color("#ff4444")
logoColorYellow = lipgloss.Color("#ffff44")
logoColorGreen = lipgloss.Color("#44ff44")
logoColorWhite = lipgloss.Color("#ffffff")
)
var (
logoStyleIdle = lipgloss.NewStyle().Foreground(logoColorGray)
logoStyleDownloading = lipgloss.NewStyle().Foreground(logoColorYellow)
logoStyleVerifying = lipgloss.NewStyle().Foreground(logoColorYellow)
logoStyleCompleted = lipgloss.NewStyle().Foreground(logoColorGreen)
)
// ── Состояние узла ───────────────────────────────────────────────────────────
type logoNodeState int
const (
logoStateIdle logoNodeState = iota
logoStateDownloading
logoStateVerifying
logoStateCompleted
logoStateFading
logoStateOutline
)
type logoNode struct {
ID int
X, Y float64
State logoNodeState
StateTime time.Time
TargetDuration time.Duration
IsOutline bool
}
func NewLogoNode(id int, x, y float64) *logoNode {
return &logoNode{
ID: id,
X: x,
Y: y,
State: logoStateIdle,
StateTime: time.Now(),
IsOutline: false,
}
}
func (n *logoNode) setState(state logoNodeState, now time.Time) {
n.State = state
n.StateTime = now
switch state {
case logoStateVerifying:
n.TargetDuration = 3 * time.Second
case logoStateCompleted:
n.TargetDuration = 1 * time.Second
case logoStateFading:
n.TargetDuration = 1 * time.Second
default:
n.TargetDuration = 0
}
}
func (n *logoNode) Render(now time.Time) (string, lipgloss.Style) {
char := "•"
style := logoStyleIdle
switch n.State {
case logoStateIdle:
style = logoStyleIdle
case logoStateDownloading:
style = logoStyleDownloading
case logoStateVerifying:
// Плавный переход от желтого (255, 255, 68) к зеленому (68, 255, 68)
t := float64(now.Sub(n.StateTime)) / float64(n.TargetDuration)
if t > 1.0 {
t = 1.0
}
r := int(255.0 - (255.0-68.0)*t)
g := 255
b := 68
hex := fmt.Sprintf("#%02x%02x%02x", r, g, b)
style = lipgloss.NewStyle().Foreground(lipgloss.Color(hex))
case logoStateCompleted:
style = logoStyleCompleted
case logoStateFading:
t := float64(now.Sub(n.StateTime)) / float64(n.TargetDuration)
if t > 1.0 {
t = 1.0
}
r := 68
g := int(255.0 - (255.0-68.0)*t)
b := 68
hex := fmt.Sprintf("#%02x%02x%02x", r, g, b)
style = lipgloss.NewStyle().Foreground(lipgloss.Color(hex))
case logoStateOutline:
style = lipgloss.NewStyle().Foreground(logoColorWhite)
}
return char, style
}
// ── Частицы ──────────────────────────────────────────────────────────────────
type logoParticleType int
const (
logoTypeDownload logoParticleType = iota
logoTypeUpload
)
type logoParticle struct {
Type logoParticleType
X, Y float64
StartX float64
StartY float64
TargetX float64
TargetY float64
Speed float64
Progress float64 // 0.0 до 1.0
Angle float64 // Для дрифта
Active bool
TargetID int // ID целевого узла (для частиц загрузки)
}
func NewLogoParticle(pType logoParticleType, startX, startY, targetX, targetY float64, targetID int) *logoParticle {
var speed float64
if pType == logoTypeDownload {
speed = 0.5 + rand.Float64()*0.5
} else {
speed = 0.25 + rand.Float64()*0.25
}
return &logoParticle{
Type: pType,
X: startX,
Y: startY,
StartX: startX,
StartY: startY,
TargetX: targetX,
TargetY: targetY,
Speed: speed,
Progress: 0.0,
Angle: rand.Float64() * math.Pi * 2,
Active: true,
TargetID: targetID,
}
}
func (p *logoParticle) Update(dt float64) {
if !p.Active {
return
}
p.Progress += p.Speed * dt
if p.Progress >= 1.0 {
p.Progress = 1.0
p.Active = false
p.X = p.TargetX
p.Y = p.TargetY
return
}
var eased float64
if p.Type == logoTypeDownload {
t := p.Progress
eased = 1.0 - math.Pow(1.0-t, 3.0)
} else {
t := p.Progress
eased = math.Pow(t, 2.0)
}
baseX := p.StartX + (p.TargetX-p.StartX)*eased
baseY := p.StartY + (p.TargetY-p.StartY)*eased
p.X = baseX
p.Y = baseY
}
func (p *logoParticle) Render() (string, lipgloss.Style) {
char := "·"
if p.Type == logoTypeUpload {
r := int(170.0 - (170.0-51.0)*p.Progress)
g := int(255.0 - (255.0-51.0)*p.Progress)
b := int(170.0 - (170.0-51.0)*p.Progress)
hex := fmt.Sprintf("#%02x%02x%02x", r, g, b)
return char, lipgloss.NewStyle().Foreground(lipgloss.Color(hex))
}
return char, lipgloss.NewStyle().Foreground(logoColorRed)
}
// ── Движок логотипа ──────────────────────────────────────────────────────────
type logoEnginePhase int
const (
logoPhaseAssemble logoEnginePhase = iota
logoPhaseVerify
logoPhaseDisperse
logoPhaseWait
)
type LogoEngine struct {
Nodes []*logoNode
Particles []*logoParticle
Width int
Height int
LastUpdate time.Time
Phase logoEnginePhase
PhaseTime float64
TargetNodeQueue []int
SpawnAccumulator float64
Grid [][]string
// Pre-baked frames
frames []string
frameIndex int
}
func (e *LogoEngine) ensureGrid(w, h int) {
if len(e.Grid) < h {
newGrid := make([][]string, h)
copy(newGrid, e.Grid)
e.Grid = newGrid
}
for y := 0; y < h; y++ {
if len(e.Grid[y]) < w {
newRow := make([]string, w)
copy(newRow, e.Grid[y])
e.Grid[y] = newRow
}
}
}
func NewLogoEngine(width, height int, offsetX, offsetY float64) *LogoEngine {
e := &LogoEngine{
Nodes: generateZNodes(offsetX, offsetY),
Particles: make([]*logoParticle, 0),
Width: width,
Height: height,
LastUpdate: time.Now(),
}
e.startAssemblePhase(e.LastUpdate)
e.bakeFrames()
return e
}
const logoBakeFrames = 180 // ~18 секунд полного цикла при 10 FPS
func (e *LogoEngine) bakeFrames() {
now := time.Unix(0, 0)
e.frames = make([]string, logoBakeFrames)
for f := 0; f < logoBakeFrames; f++ {
e.simulateStep(now, 0.1)
now = now.Add(100 * time.Millisecond)
e.frames[f] = e.renderNow(now)
}
}
func (e *LogoEngine) simulateStep(now time.Time, dt float64) {
e.PhaseTime += dt
switch e.Phase {
case logoPhaseAssemble:
spawnRate := float64(len(e.Nodes)) / 2.0
e.SpawnAccumulator += spawnRate * dt
spawnCount := int(e.SpawnAccumulator)
e.SpawnAccumulator -= float64(spawnCount)
for i := 0; i < spawnCount && len(e.TargetNodeQueue) > 0; i++ {
targetID := e.TargetNodeQueue[0]
e.TargetNodeQueue = e.TargetNodeQueue[1:]
e.spawnDownloadParticleTo(e.Nodes[targetID])
}
activeDL := 0
for _, p := range e.Particles {
if p.Type == logoTypeDownload && p.Active {
activeDL++
}
}
if len(e.TargetNodeQueue) == 0 && activeDL == 0 {
e.Phase = logoPhaseVerify
e.PhaseTime = 0
for _, n := range e.Nodes {
if !n.IsOutline {
n.setState(logoStateVerifying, now)
}
}
}
case logoPhaseVerify:
if e.PhaseTime >= 3.0 {
e.Phase = logoPhaseDisperse
e.PhaseTime = 0
for _, n := range e.Nodes {
if !n.IsOutline {
n.setState(logoStateCompleted, now)
e.spawnUploadParticle(n)
}
}
}
case logoPhaseDisperse:
if e.PhaseTime >= 1.0 {
for _, n := range e.Nodes {
if !n.IsOutline {
n.setState(logoStateFading, now)
}
}
e.Phase = logoPhaseWait
e.PhaseTime = 0
}
case logoPhaseWait:
if e.PhaseTime >= 2.0 {
e.startAssemblePhase(now)
}
}
activeParticles := e.Particles[:0]
for _, p := range e.Particles {
p.Update(dt)
if !p.Active && p.Type == logoTypeDownload {
if p.TargetID >= 0 && p.TargetID < len(e.Nodes) {
node := e.Nodes[p.TargetID]
if node.State == logoStateIdle {
node.setState(logoStateDownloading, now)
}
}
}
if p.Active {
activeParticles = append(activeParticles, p)
}
}
e.Particles = activeParticles
}
func (e *LogoEngine) renderNow(now time.Time) string {
e.ensureGrid(e.Width, e.Height)
for y := 0; y < e.Height; y++ {
for x := 0; x < e.Width; x++ {
e.Grid[y][x] = " "
}
}
for _, n := range e.Nodes {
if !n.IsOutline {
x, y := int(n.X+0.5), int(n.Y+0.5)
if x >= 0 && x < e.Width && y >= 0 && y < e.Height {
char, style := n.Render(now)
e.Grid[y][x] = style.Render(char)
}
}
}
for _, p := range e.Particles {
x, y := int(p.X+0.5), int(p.Y+0.5)
if x >= 0 && x < e.Width && y >= 0 && y < e.Height {
char, style := p.Render()
e.Grid[y][x] = style.Render(char)
}
}
for _, n := range e.Nodes {
if n.IsOutline {
x, y := int(n.X+0.5), int(n.Y+0.5)
if x >= 0 && x < e.Width && y >= 0 && y < e.Height {
char, style := n.Render(now)
e.Grid[y][x] = style.Render(char)
}
}
}
var sb strings.Builder
sb.Grow(e.Height * e.Width * 5)
for y := 0; y < e.Height; y++ {
sb.WriteString(strings.Join(e.Grid[y][:e.Width], ""))
if y < e.Height-1 {
sb.WriteString("\n")
}
}
return sb.String()
}
func (e *LogoEngine) startAssemblePhase(now time.Time) {
e.Phase = logoPhaseAssemble
e.PhaseTime = 0
e.SpawnAccumulator = 0
e.TargetNodeQueue = nil
for _, n := range e.Nodes {
if !n.IsOutline {
n.setState(logoStateIdle, now)
e.TargetNodeQueue = append(e.TargetNodeQueue, n.ID)
}
}
rand.Shuffle(len(e.TargetNodeQueue), func(i, j int) {
e.TargetNodeQueue[i], e.TargetNodeQueue[j] = e.TargetNodeQueue[j], e.TargetNodeQueue[i]
})
}
// Update переключает кадр — нулевой CPU.
func (e *LogoEngine) Update(now time.Time) {
if len(e.frames) > 0 {
e.frameIndex = (e.frameIndex + 1) % len(e.frames)
}
}
func (e *LogoEngine) spawnDownloadParticleTo(target *logoNode) {
cx := float64(e.Width) / 2.0
cy := float64(e.Height) / 2.0
radius := 18.0 + rand.Float64()*5.0
angle := rand.Float64() * math.Pi * 2
startX := cx + math.Cos(angle)*radius
startY := cy + math.Sin(angle)*radius
e.Particles = append(e.Particles, NewLogoParticle(logoTypeDownload, startX, startY, target.X, target.Y, target.ID))
}
func (e *LogoEngine) spawnUploadParticle(n *logoNode) {
var targetX, targetY float64
angle := rand.Float64() * math.Pi * 2
dist := 8.0 + rand.Float64()*4.0
targetX = n.X + math.Cos(angle)*dist
targetY = n.Y + math.Sin(angle)*dist
e.Particles = append(e.Particles, NewLogoParticle(logoTypeUpload, n.X, n.Y, targetX, targetY, -1))
}
// Render возвращает pre-baked кадр — нулевой CPU.
func (e *LogoEngine) Render(now time.Time) string {
if len(e.frames) == 0 {
return ""
}
return e.frames[e.frameIndex]
}
// generateZNodes генерирует координаты для Z-образного логотипа.
func generateZNodes(offsetX, offsetY float64) []*logoNode {
var nodes []*logoNode
id := 0
startX, endX := 0.0, 20.0
startY, endY := 0.0, 10.0
addNode := func(x, y float64) {
nodes = append(nodes, NewLogoNode(id, x+offsetX, y+offsetY))
id++
}
thicknessY := 2.0
thicknessX := 3.0
// Верхняя полоса
for y := startY; y <= startY+thicknessY; y += 1.0 {
for x := startX; x <= endX; x += 0.7 {
addNode(x, y)
}
}
// Диагональ
steps := 50
for i := 0; i <= steps; i++ {
progress := float64(i) / float64(steps)
baseX := endX - progress*(endX-startX)
baseY := startY + progress*(endY-startY)
for ox := -thicknessX; ox <= thicknessX; ox += 0.7 {
addNode(baseX+ox, baseY)
}
}
// Нижняя полоса
for y := endY - thicknessY; y <= endY; y += 1.0 {
for x := startX; x <= endX; x += 0.7 {
addNode(x, y)
}
}
seen := make(map[string]bool)
var uniqueNodes []*logoNode
for _, n := range nodes {
cx, cy := int(n.X+0.5), int(n.Y+0.5)
key := fmt.Sprintf("%d,%d", cx, cy)
if !seen[key] {
seen[key] = true
uniqueNodes = append(uniqueNodes, n)
}
}
nodes = uniqueNodes
for idx, n := range nodes {
n.ID = idx
}
grid := make(map[string]bool)
for _, n := range nodes {
cx, cy := int(n.X+0.5), int(n.Y+0.5)
grid[fmt.Sprintf("%d,%d", cx, cy)] = true
}
for _, n := range nodes {
cx, cy := int(n.X+0.5), int(n.Y+0.5)
isEdge := false
for dy := -1; dy <= 1; dy++ {
for dx := -1; dx <= 1; dx++ {
if dx == 0 && dy == 0 {
continue
}
neighborKey := fmt.Sprintf("%d,%d", cx+dx, cy+dy)
if !grid[neighborKey] {
isEdge = true
break
}
}
if isEdge {
break
}
}
if isEdge {
n.IsOutline = true
n.State = logoStateOutline
}
}
return nodes
}

175
ui/matrix.go Normal file
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@ -0,0 +1,175 @@
package ui
import (
"fmt"
"math/rand"
"strings"
"github.com/charmbracelet/lipgloss"
)
type matrixDrop struct {
X int
Y float64
Speed float64
Length int
CharType int // 0 = Z, 1 = V, 2 = O
}
// MatrixEngine рендерит кадры заранее и хранит их как 2D-сетки ячеек.
// RenderRegion вырезает любой прямоугольник напрямую — без ANSI-парсинга.
type MatrixEngine struct {
Width int
Height int
// frames[f] — плоский массив len=Width*Height, доступ: cell = frames[f][y*Width+x]
frames [][]string
frameIndex int
}
const matrixNumFrames = 120
func NewMatrixEngine(width, height int) *MatrixEngine {
e := &MatrixEngine{
Width: width,
Height: height,
}
e.bakeFrames()
return e
}
func (e *MatrixEngine) bakeFrames() {
drops := []*matrixDrop{}
step := func(dt float64) {
for _, d := range drops {
d.Y += d.Speed * dt
}
var active []*matrixDrop
for _, d := range drops {
if int(d.Y)-d.Length < e.Height {
active = append(active, d)
}
}
drops = active
targetDrops := e.Width / 6
if targetDrops < 1 {
targetDrops = 1
}
if len(drops) < targetDrops && rand.Float64() < 0.15 {
drops = append(drops, &matrixDrop{
X: rand.Intn(e.Width),
Y: float64(rand.Intn(5)) - 5.0,
Speed: 3.0 + rand.Float64()*4.0,
Length: 4 + rand.Intn(5),
CharType: rand.Intn(3),
})
}
}
renderGrid := func() []string {
grid := make([]string, e.Width*e.Height)
for i := range grid {
grid[i] = " "
}
for _, d := range drops {
headY := int(d.Y)
for i := 0; i < d.Length; i++ {
y := headY - i
x := d.X
if y >= 0 && y < e.Height && x >= 0 && x < e.Width {
opacity := 1.0 - float64(i)/float64(d.Length)
var r, g, b int
if i == 0 {
r, g, b = 255, 255, 255
} else if d.CharType == 0 {
g = int(255.0 * opacity)
} else if d.CharType == 1 {
r = int(255.0 * opacity)
} else {
r = int(255.0 * opacity)
g = int(255.0 * opacity)
}
char := "Z"
if d.CharType == 1 {
char = "V"
} else if d.CharType == 2 {
char = "O"
}
grid[y*e.Width+x] = getMatrixStyledChar(char, r, g, b, i == 0)
}
}
}
return grid
}
// Прогрев: заполняем экран каплями
for i := 0; i < 100; i++ {
step(0.1)
}
e.frames = make([][]string, matrixNumFrames)
for f := 0; f < matrixNumFrames; f++ {
// 5 шагов симуляции на кадр (100ms / 5 = 20ms шаг)
for s := 0; s < 5; s++ {
step(0.02)
}
e.frames[f] = renderGrid()
}
}
// Update переключает кадр — нулевой CPU.
func (e *MatrixEngine) Update() {
e.frameIndex = (e.frameIndex + 1) % len(e.frames)
}
// RenderRegion вырезает прямоугольник [rx,ry,rw,rh] из текущего кадра.
// Работает напрямую с ячейками — нет ANSI-парсинга, нет аллокаций.
func (e *MatrixEngine) RenderRegion(rx, ry, rw, rh int) string {
if len(e.frames) == 0 || rw <= 0 || rh <= 0 {
return strings.Repeat(" \n", rh)
}
frame := e.frames[e.frameIndex]
var sb strings.Builder
sb.Grow(rh * rw * 8)
for row := 0; row < rh; row++ {
y := ry + row
for col := 0; col < rw; col++ {
x := rx + col
if y >= 0 && y < e.Height && x >= 0 && x < e.Width {
sb.WriteString(frame[y*e.Width+x])
} else {
sb.WriteString(" ")
}
}
if row < rh-1 {
sb.WriteString("\n")
}
}
return sb.String()
}
// CurrentFrame — весь кадр целиком (для совместимости).
func (e *MatrixEngine) CurrentFrame() string {
return e.RenderRegion(0, 0, e.Width, e.Height)
}
var matrixStyleCache = make(map[string]string)
func getMatrixStyledChar(char string, r, g, b int, bold bool) string {
hex := fmt.Sprintf("#%02x%02x%02x", r, g, b)
key := char + hex
if bold {
key += "B"
}
if val, ok := matrixStyleCache[key]; ok {
return val
}
style := lipgloss.NewStyle().Foreground(lipgloss.Color(hex))
if bold {
style = style.Bold(true)
}
res := style.Render(char)
matrixStyleCache[key] = res
return res
}

265
ui/styles.go Normal file
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@ -0,0 +1,265 @@
package ui
import (
"strings"
"github.com/charmbracelet/lipgloss"
)
// Color definitions (Hex palette)
const (
ColorBg = "#0b1017" // Dark slate background
ColorCardBg = "#121a24" // Dark grey cards
ColorBorder = "#2e3b4e" // Dark slate borders
ColorText = "#e0ecf6" // Light grey text
ColorSubdued = "#8c9ba5" // Subdued slate text
ColorCyan = "#00ffd2" // Bright teal/cyan accent
ColorPink = "#ff2a85" // Hot pink accent
ColorGreen = "#3cd58c" // Vibrant green (completed)
ColorYellow = "#f4b942" // Amber/yellow (downloading)
ColorRed = "#ff5555" // Bright red (error/missing)
ColorBlue = "#00aeff" // Vibrant blue (dht)
)
var (
// Base styles
StyleBg = lipgloss.NewStyle().
Background(lipgloss.Color(ColorBg)).
Foreground(lipgloss.Color(ColorText))
StyleTitle = lipgloss.NewStyle().
Bold(true).
Foreground(lipgloss.Color(ColorCyan)).
Border(lipgloss.DoubleBorder(), true).
BorderForeground(lipgloss.Color(ColorCyan)).
Padding(0, 2).
MarginBottom(1)
StyleHeader = lipgloss.NewStyle().
Bold(true).
Foreground(lipgloss.Color(ColorPink)).
MarginBottom(1)
// Status states
StyleStatusIdle = lipgloss.NewStyle().
Bold(true).
Foreground(lipgloss.Color(ColorSubdued))
StyleStatusActive = lipgloss.NewStyle().
Bold(true).
Foreground(lipgloss.Color(ColorYellow))
StyleStatusDone = lipgloss.NewStyle().
Bold(true).
Foreground(lipgloss.Color(ColorGreen))
StyleStatusError = lipgloss.NewStyle().
Bold(true).
Foreground(lipgloss.Color(ColorRed))
// KPI Cards
StyleCard = lipgloss.NewStyle().
Background(lipgloss.Color(ColorCardBg)).
Border(lipgloss.RoundedBorder()).
BorderForeground(lipgloss.Color(ColorBorder)).
Padding(0, 1).
Align(lipgloss.Left)
StyleCardActive = StyleCard.
BorderForeground(lipgloss.Color(ColorCyan))
StyleCardTitle = lipgloss.NewStyle().
Bold(true).
Foreground(lipgloss.Color(ColorSubdued))
StyleCardValue = lipgloss.NewStyle().
Bold(true).
Foreground(lipgloss.Color(ColorText))
// Tabs
StyleTab = lipgloss.NewStyle().
Padding(0, 2).
Background(lipgloss.Color(ColorCardBg)).
Foreground(lipgloss.Color(ColorSubdued)).
Border(lipgloss.NormalBorder(), false, true, false, false).
BorderForeground(lipgloss.Color(ColorBorder))
StyleActiveTab = lipgloss.NewStyle().
Bold(true).
Padding(0, 2).
Background(lipgloss.Color(ColorCardBg)).
Foreground(lipgloss.Color(ColorCyan)).
Border(lipgloss.NormalBorder(), true, true, false, true).
BorderForeground(lipgloss.Color(ColorCyan))
StyleTabsRow = lipgloss.NewStyle().
Border(lipgloss.NormalBorder(), false, false, true, false).
BorderForeground(lipgloss.Color(ColorBorder)).
MarginBottom(1)
// Input form
StyleInputLabel = lipgloss.NewStyle().
Bold(true).
Foreground(lipgloss.Color(ColorCyan)).
Width(15)
StyleInputFocused = lipgloss.NewStyle().
Foreground(lipgloss.Color(ColorCyan)).
BorderForeground(lipgloss.Color(ColorCyan))
StyleInputUnfocused = lipgloss.NewStyle().
Foreground(lipgloss.Color(ColorSubdued)).
BorderForeground(lipgloss.Color(ColorBorder))
// Help bar
StyleHelp = lipgloss.NewStyle().
Foreground(lipgloss.Color(ColorSubdued)).
MarginTop(1)
StyleKey = lipgloss.NewStyle().
Bold(true).
Foreground(lipgloss.Color(ColorPink))
// Tables
StyleTableHeader = lipgloss.NewStyle().
Bold(true).
Foreground(lipgloss.Color(ColorCyan))
StyleTableRowSelected = lipgloss.NewStyle().
Background(lipgloss.Color(ColorBorder)).
Foreground(lipgloss.Color(ColorCyan)).
Bold(true)
// Grid colors
StylePieceCompleted = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorGreen))
StylePieceDownloading = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorYellow))
StylePieceMissing = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorBorder))
// ── Кэшированные стили для горячих путей рендеринга ──────────────────────
// Dashboard header
StyleHeaderBrand = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorPink)).Bold(true)
StyleHeaderSep = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorBorder))
StyleHeaderName = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorText))
StyleHeaderIcon = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorSubdued))
StyleHeaderLine = lipgloss.NewStyle().
Border(lipgloss.NormalBorder(), false, false, true, false).
BorderForeground(lipgloss.Color(ColorBorder)).
PaddingBottom(0)
// Phase status styles
StylePhaseStopped = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorSubdued)).Bold(true)
StylePhaseFailed = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorRed)).Bold(true)
StylePhaseSeeding = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorGreen)).Bold(true)
StylePhaseDownload = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorCyan)).Bold(true)
StylePhaseDefault = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorYellow)).Bold(true)
// KPI cards
StyleKPIProgress = lipgloss.NewStyle().Bold(true).Foreground(lipgloss.Color(ColorCyan))
StyleKPIDown = lipgloss.NewStyle().Bold(true).Foreground(lipgloss.Color(ColorGreen))
StyleKPIUp = lipgloss.NewStyle().Bold(true).Foreground(lipgloss.Color(ColorYellow))
StyleKPIEta = lipgloss.NewStyle().Bold(true).Foreground(lipgloss.Color(ColorPink))
StyleKPIPeers = lipgloss.NewStyle().Bold(true).Foreground(lipgloss.Color(ColorText))
StyleKPIBarFill = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorCyan))
StyleKPIBarEmpty = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorBorder))
// Menu styles
StyleMenuText = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorText))
StyleMenuDesc = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorSubdued))
StyleMenuActive = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorCyan)).Bold(true)
StyleMenuCursor = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorPink))
StyleMenuHelp = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorSubdued)).MarginTop(2)
StyleMenuBorder = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorBorder))
StyleMenuPadding = lipgloss.NewStyle().Padding(2, 4)
StyleMenuBox = lipgloss.NewStyle().Padding(2, 0)
// Log overlay styles
StyleLogTime = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorSubdued))
StyleLogEngine = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorPink)).Bold(true)
StyleLogDHT = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorBlue)).Bold(true)
StyleLogPeer = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorGreen)).Bold(true)
StyleLogSys = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorCyan)).Bold(true)
StyleLogDefault = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorText)).Bold(true)
StyleLogError = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorRed)).Bold(true)
StyleLogWarn = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorYellow)).Bold(true)
StyleLogInfo = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorCyan))
StyleLogDebug = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorSubdued))
StyleLogMsg = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorText))
StyleLogMsgError = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorRed))
// Overview styles
StyleSectionTitle = lipgloss.NewStyle().Bold(true).Foreground(lipgloss.Color(ColorCyan))
StyleDim = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorSubdued))
StyleVal = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorText))
StyleSpeedDown = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorGreen)).Bold(true)
StyleSpeedUp = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorYellow)).Bold(true)
StyleETA = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorPink)).Bold(true)
StyleErrText = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorRed)).Bold(true)
// HelpBar
StyleHelpKey = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorPink)).Bold(true)
StyleHelpDesc = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorSubdued))
StyleHelpSep = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorBorder))
StyleHelpBar = lipgloss.NewStyle().
Foreground(lipgloss.Color(ColorSubdued)).
Border(lipgloss.NormalBorder(), true, false, false, false).
BorderForeground(lipgloss.Color(ColorBorder)).
MarginTop(1).
PaddingTop(0)
// Logo
StyleLogoTorrent = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorText)).Bold(true)
StyleLogoZ = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorGreen)).Bold(true)
// Settings indicator
StyleSettingsCursor = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorPink))
StyleSettingsActive = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorCyan)).Bold(true)
StyleSettingsLabel = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorSubdued)).Width(26)
// Additional menu
StyleAdditCyan = lipgloss.NewStyle().Bold(true).Foreground(lipgloss.Color(ColorCyan))
StyleAdditPink = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorPink)).Bold(true)
StyleAdditVal = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorText))
StyleAdditShort = lipgloss.NewStyle().Foreground(lipgloss.Color(ColorYellow))
)
// Статичные строки, вычисляемые один раз
var (
// Статичный "torrent" ASCII-арт (не меняется никогда)
cachedTorrentArt = StyleLogoTorrent.Render(strings.Join([]string{
"████████╗ ██████╗ ██████╗ ██████╗ ███████╗███╗ ██╗████████╗",
"╚══██╔══╝██╔═══██╗██╔══██╗██╔══██╗██╔════╝████╗ ██║╚══██╔══╝",
" ██║ ██║ ██║██████╔╝██████╔╝█████╗ ██╔██╗ ██║ ██║ ",
" ██║ ██║ ██║██╔══██╗██╔══██╗██╔══╝ ██║╚████║ ██║ ",
" ██║ ╚██████╔╝██║ ██║██║ ██║███████╗██║ ╚███║ ██║ ",
" ╚═╝ ╚═════╝ ╚═╝ ╚═╝╚═╝ ╚═╝╚══════╝╚═╝ ╚══╝ ╚═╝ ",
}, "\n"))
// Статичный Z-логотип (при отключённых анимациях)
cachedStaticZArt = StyleLogoZ.Render(strings.Join([]string{
" ",
" ",
"███████╗",
"╚════██║",
" ██╔╝",
" ██╔╝ ",
" ██╔╝ ",
" ███████╗",
" ╚══════╝",
" ",
" ",
" ",
}, "\n"))
// Статичный help bar главного меню
cachedMenuHelp = StyleMenuHelp.Render(" ↓↑ — выбор Enter — подтвердить Q — выход")
// Статичные строки рамки меню (зависят от boxWidth=85, не меняются)
cachedMenuTopBorder = StyleMenuBorder.Render("╭" + strings.Repeat("─", 85) + "╮")
cachedMenuBottomBorder = StyleMenuBorder.Render("╰" + strings.Repeat("─", 85) + "╯")
cachedMenuLeftEdge = StyleMenuBorder.Render("│")
cachedMenuRightEdge = StyleMenuBorder.Render("│")
// Help bar dashboard
cachedHelpSep = StyleHelpSep.Render(" │ ")
)

2303
ui/ui.go Normal file

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