46 Commits
Author SHA1 Message Date
discountry 732525b394 Merge branch 'main' into dev 2025-10-06 20:15:05 +08:00
discountry d829e451cd feat: 更新 BackpackGateway 适配器,增强账户快照逻辑,支持合约市场的持仓信息和资产归一化处理 2025-10-06 20:11:46 +08:00
discountry 0d2aa84b84 feat: 更新 Lighter 适配器的账户快照逻辑,支持市场符号和市场 ID 过滤功能 2025-10-06 19:17:24 +08:00
discountry d2867ba98c feat: 更新订单协调器和 GRVT 适配器,添加触发类型支持,优化趋势引擎的损益计算逻辑 2025-10-06 19:06:49 +08:00
discountry e28240e799 feat: 更新订单协调器和 GRVT 适配器逻辑,添加止损单的 reduceOnly 和 closePosition 参数,修改默认价格触发器为 LAST 2025-10-06 18:44:16 +08:00
discountry cfd5f4309d feat: 添加 Paradex 适配器支持,更新环境变量配置和适配器构建逻辑 2025-10-06 18:06:23 +08:00
discountry 627ed36de4 feat: 添加 EdgeX 交易所适配器及相关客户端实现,支持订单、深度和K线数据处理 2025-10-04 20:15:41 +08:00
discountry ccc3a2bf89 feat: 增强 OffsetMakerEngine 订单处理逻辑,添加快速重价抑制机制以减少重复下单 2025-10-03 16:16:20 +08:00
discountry f8a87f4557 feat: 优化 Lighter 适配器的订单簿处理逻辑,添加排序和限制深度功能 2025-10-03 16:06:31 +08:00
discountry 263cbd7c21 feat: 增强 Lighter 适配器的账户更新逻辑,支持市场账户的实时更新和合并处理 2025-10-03 15:52:18 +08:00
discountry d328758074 feat: 添加止损单去抖机制,避免重复提交同价同向止损单 2025-10-03 15:40:17 +08:00
discountry 971a2a6adb feat: 优化 Lighter 适配器的订单过期逻辑,简化市场订单的即时过期处理 2025-10-03 15:35:45 +08:00
discountry fcb83bd16b commit 2025-10-03 15:28:16 +08:00
discountry d5c4b04746 feat: 更新订单处理逻辑,将价格类型改为字符串以避免精度问题,并添加价格格式化函数 2025-10-03 07:15:21 +08:00
discountry 65aaf26879 feat: 更新 Maker 刷新间隔配置,将间隔时间从 1500ms 修改为 500ms 2025-10-03 06:59:24 +08:00
discountry 7635b7d467 feat: 更新 Lighter 适配器的订单过期逻辑,支持即时或取消订单类型的处理 2025-10-03 03:29:54 +08:00
discountry f565c399e3 feat: 更新 LighterSigner 配置,baseUrl 变为可选以支持离线签名和测试 2025-10-03 03:25:30 +08:00
discountry b43eaa0c64 feat: 在文档中添加 CLI 参数说明,支持通过命令行临时指定交易所 2025-10-03 03:16:44 +08:00
discountry 9a419c36ac feat: 更新 Lighter 适配器的订单过期逻辑,使用绝对未来时间戳以符合链的预期 2025-10-03 03:08:41 +08:00
discountry 0e5026aaa1 feat: 优化 Lighter 适配器的账户消息处理逻辑,支持部分更新和市场订单类型的处理 2025-10-03 02:54:50 +08:00
discountry 6273f3b94a feat: 在 Lighter 适配器中添加订单簿序列跟踪,优化 WebSocket 消息处理逻辑 2025-10-03 02:40:09 +08:00
discountry e478fb4330 feat: 添加 Lighter 适配器的调试日志功能,优化错误处理和订单簿数据规范化 2025-10-03 02:27:58 +08:00
discountry 599b4ec3f3 chore: 移除 grvt-pysdk 项目中的所有文件,清理代码库 2025-10-03 02:12:45 +08:00
discountry 42061017f6 chore: 移除 Lighter 和 Poseidon Crypto 项目中的所有文件,清理代码库 2025-10-03 01:54:08 +08:00
discountry b7cd6eed99 feat: 重构 Lighter 策略,更新签名桥接路径,移除不必要的文件,添加新的签名库支持 2025-10-03 01:51:55 +08:00
discountry abb56b917a chore: 更新 .env.example 文件,调整 Maker 策略的损失限制参数以优化风险管理 2025-10-03 01:34:32 +08:00
discountry 9124c06315 chore: 移除 Maker 策略中的价格追逐阈值配置,简化订单计划逻辑 2025-10-03 01:13:06 +08:00
discountry 56bcaddb22 chore: 更新 .env.example 文件,调整风险管理参数以优化交易策略 2025-10-03 01:01:23 +08:00
discountry 4c4abb3b09 feat: 添加 Lighter 签名桥接和公钥派生脚本,支持新的签名库和环境检测功能 2025-10-01 18:32:02 +08:00
discountry c8b0ab1c8e feat: 添加 Lighter 适配器及相关功能,支持 trailing stops 和新的交易逻辑 2025-09-30 22:08:05 +08:00
discountry e83bdfccf9 docs: 更新 lighter-python-main 文档,添加示例代码和 API 说明,重构部分内容以提高可读性 2025-09-30 18:35:14 +08:00
discountry d6533733c9 docs: 更新 README 文件,添加静默启动和后台运行的说明,包括命令行用法和 pm2 配置示例 2025-09-28 01:39:49 +08:00
discountry 5c1283fac2 feat: 添加命令行参数解析和策略启动功能,支持静默模式和帮助信息 2025-09-28 01:26:00 +08:00
discountry 0e4ae67573 docs: 更新 AGENTS.md 文件,重构项目结构和开发命令部分,移除旧版文档信息并添加新的策略和测试指南 2025-09-28 01:03:25 +08:00
discountry 6ab0759d3d feat: 引入事件发射器和会话交易量跟踪器,重构策略引擎以支持更灵活的事件处理和交易量计算 2025-09-28 00:43:49 +08:00
discountry 25ab1ababf chore: 重构策略引擎,将核心逻辑迁移至策略目录,删除旧的引擎文件并更新相关引用 2025-09-28 00:03:48 +08:00
discountry e60b32a7f8 docs: 更新 README 文件,添加策略运行所需资金、杠杆设置及时间同步的常见问题解答 2025-09-27 23:33:00 +08:00
discountry 46c0551133 fix: 更新 AsterRestClient 和 AsterGateway 中的订单处理逻辑,支持字符串类型的订单 ID 2025-09-27 23:23:53 +08:00
discountry 7e2d312fe3 chore: 更新 bun.lock 文件,添加多个依赖以支持以太坊相关功能 2025-09-27 22:59:28 +08:00
discountry e8dd36f540 chore: 删除 GRVT 适配器的 README 文件,清理项目文档 2025-09-27 22:58:56 +08:00
discountry 47d44c7cb5 chore: 移除 README 中关于旧版文档的说明,以简化文档结构 2025-09-27 22:58:38 +08:00
discountry 048dfb1698 fix: 更新 ethereum-cryptography 依赖至 2.1.3 以支持最新功能 2025-09-27 22:52:57 +08:00
discountry fc1a74174c feat: 在 package.json 中添加 ethereum-cryptography 依赖以支持以太坊相关功能 2025-09-27 22:51:28 +08:00
discountry b45539b7c2 feat: 添加英文文档,更新中文文档以提升用户体验和使用指南的清晰度 2025-09-27 22:46:32 +08:00
discountry a998b3d3a1 fix: 更新最小布林带宽度配置,调整为更小的阈值以支持新策略 2025-09-27 22:33:32 +08:00
discountry d392f54f21 feat: 添加布林带宽度计算功能及相关配置项,优化趋势引擎以支持布林带宽度过滤 2025-09-27 22:29:56 +08:00
1257 changed files with 201304 additions and 15231 deletions
+70 -7
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@@ -1,5 +1,5 @@
# Exchange selection
EXCHANGE=aster # Pick aster (default) or grvt
EXCHANGE=aster # Pick aster (default) or grvt/lighter/backpack/paradex
# Aster API credentials
ASTER_API_KEY=
@@ -10,11 +10,14 @@ TRADE_SYMBOL=BTCUSDT # Trading pair symbol
TRADE_AMOUNT=0.001 # Base order quantity (base asset, e.g. BTC)
# Risk management (USD amounts unless noted)
LOSS_LIMIT=0.03 # Max loss per trade in USDT before forced close
LOSS_LIMIT=0.04 # Max loss per trade in USDT before forced close
TRAILING_PROFIT=0.2 # Trailing stop activation profit (USDT)
TRAILING_CALLBACK_RATE=0.2 # Trailing callback percent (e.g. 0.2 => 0.2%)
PROFIT_LOCK_TRIGGER_USD=0.1 # Start moving base stop once unrealized PnL > this (USDT)
PROFIT_LOCK_OFFSET_USD=0.05 # Base stop offset from entry after trigger (USDT)
PROFIT_LOCK_TRIGGER_USD=0.08 # Start moving base stop once unrealized PnL > this (USDT)
PROFIT_LOCK_OFFSET_USD=0.04 # Base stop offset from entry after trigger (USDT)
BOLLINGER_LENGTH=20 # SMA window (minutes) used for Bollinger bandwidth
BOLLINGER_STD_MULTIPLIER=2 # Standard deviation multiplier for Bollinger bands
MIN_BOLLINGER_BANDWIDTH=0.001 # Require bandwidth >= this ratio before new entries
# Precision (per-symbol exchange filters)
PRICE_TICK=0.1 # Price tick size (e.g. BTCUSDT uses 0.1)
@@ -27,11 +30,10 @@ KLINE_INTERVAL=1m # Kline interval (e.g., 1m/3m/5m)
MAX_CLOSE_SLIPPAGE_PCT=0.05 # Max allowed deviation vs mark when closing (0.05 => 5%)
# Maker-only settings
MAKER_LOSS_LIMIT=0.03 # Maker loss cap (USDT). Defaults to LOSS_LIMIT if unset
MAKER_PRICE_CHASE=0.3 # Price chase threshold (USDT)
MAKER_LOSS_LIMIT=0.05 # Maker loss cap (USDT). Defaults to LOSS_LIMIT if unset
MAKER_BID_OFFSET=0 # Bid quote offset from top bid (USDT)
MAKER_ASK_OFFSET=0 # Ask quote offset from top ask (USDT)
MAKER_REFRESH_INTERVAL_MS=1500 # Maker refresh cadence (ms)
MAKER_REFRESH_INTERVAL_MS=500 # Maker refresh cadence (ms)
MAKER_MAX_CLOSE_SLIPPAGE_PCT=0.05 # Maker close slippage guard (fallbacks to MAX_CLOSE_SLIPPAGE_PCT)
MAKER_PRICE_TICK=0.1 # Maker price tick size (defaults to PRICE_TICK)
@@ -47,3 +49,64 @@ GRVT_ENV=prod
# GRVT_COOKIE="gravity=..." # Pre-provisioned session cookie (auto-refresh uses API key when absent)
# GRVT_ACCOUNT_ID= # Populated automatically after login
# GRVT_SIGNER_PATH=./grvt-signer.cjs # Custom signature provider module
# Lighter authentication (set when EXCHANGE=lighter)
LIGHTER_ACCOUNT_INDEX=
LIGHTER_API_PRIVATE_KEY= # 40-byte hex private key (e.g., 0x...)
LIGHTER_API_KEY_INDEX=0 # API key slot (default 0)
LIGHTER_SYMBOL=BTCUSDT # Trading pair (defaults to TRADE_SYMBOL when omitted)
LIGHTER_ENV=testnet # mainnet | testnet | staging | dev
# LIGHTER_BASE_URL=https://testnet.zklighter.elliot.ai
# LIGHTER_CHAIN_ID=300 # Override inferred chain id when needed
# LIGHTER_MARKET_ID=1 # Prefer explicit market id when symbols differ
# LIGHTER_PRICE_DECIMALS=3 # Manual override for price decimals (optional)
# LIGHTER_SIZE_DECIMALS=3 # Manual override for size decimals (optional)
# Backpack exchange configuration
# Fill these with your Backpack API credentials and preferences
BACKPACK_API_KEY=
BACKPACK_API_SECRET=
BACKPACK_PASSWORD=
BACKPACK_SUBACCOUNT=
# Use sandbox environment: "true" to enable, otherwise leave as false
BACKPACK_SANDBOX=false
# Default trading symbol (falls back to TRADE_SYMBOL or BTCUSDC)
BACKPACK_SYMBOL=BTC_USD_PERP
# Enable verbose adapter logging: set to "1" or "true"
BACKPACK_DEBUG=false
# EdgeX exchange configuration
EDGEX_ACCOUNT_ID=
EDGEX_PRIVATE_KEY=
# EDGEX_POSITION_ID= # Defaults to EDGEX_ACCOUNT_ID when omitted
# EDGEX_BASE_URL=https://pro.edgex.exchange
# EDGEX_WS_PUBLIC_URL=wss://quote.edgex.exchange
# EDGEX_WS_PRIVATE_URL=wss://quote.edgex.exchange
# EDGEX_ORDER_TTL_MS=21600000 # Order expiration window (ms), default 6 hours
# Paradex exchange configuration
# Provide the EVM private key & wallet address for onboarded accounts.
# When EXCHANGE=paradex these values are used automatically.
PARADEX_PRIVATE_KEY=
PARADEX_WALLET_ADDRESS=
# Symbol defaults to TRADE_SYMBOL if omitted. Use ccxt unified format like BTC-USD-PERP.
# PARADEX_SYMBOL=BTC-USD-PERP
# Enable testnet endpoints by setting to "true"; defaults to false (mainnet).
# PARADEX_SANDBOX=false
# Force disabling ccxt.pro websocket usage by setting to "false" (pro is preferred when installed).
# PARADEX_USE_PRO=true
# Optional reconnect delay override (milliseconds, e.g., 2000). Leave blank for default.
# PARADEX_RECONNECT_DELAY_MS=
# Enable verbose adapter logging: set to "1" or "true"
# PARADEX_DEBUG=false
+22 -6
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@@ -1,19 +1,35 @@
# Repository Guidelines
## Project Structure & Module Organization
The Bun-based entry point (`index.ts`) lives at the root for quick smoke checks, alongside `tsconfig.json` and the Bun lockfile. The production-ready trading agents reside in `legacy/`, which is a pnpm-managed workspace. Inside `legacy/`, strategy scripts (`trendV2.ts`, `maker.ts`, `bot.ts`) and the CLI live at the top level, shared helpers are under `legacy/utils/`, and exchange adapters plus tests sit in `legacy/exchanges/`. Reference environment samples are provided in `legacy/env.example`, and longer-form docs are kept in `legacy/docs/`.
The Bun entry point (`index.ts`) lives at the repo root for quick CLI smoke checks. All production code is under `src/`:
- `src/strategy/` gathers every live trading engine (`maker`, `offset-maker`, `trend`). Shared helpers for strategy wiring sit in `src/strategy/common/`.
- `src/core/` keeps order coordination plus shared libs used by multiple strategies.
- `src/exchanges/` exposes the adapters and REST/websocket clients.
- `src/ui/` implements the Ink dashboards for each strategy (they remain independent dashboards).
- `src/logging/` contains the trade log helper.
- `src/utils/` and `src/config.ts` hold cross-cutting utilities and runtime config.
- `docs/` stores reference material, while `tests/` contains Vitest suites.
## Build, Test, and Development Commands
Run `bun install` at the root to satisfy the lightweight Bun demo. Change into `legacy/` for real work: `pnpm install` bootstraps dependencies, `pnpm start` launches the default trend strategy, `pnpm maker` starts the market-making loop, `pnpm cli:start` triggers the dual-exchange hedging flow, and `pnpm test` executes the full Vitest suite. Use `pnpm aster:test` when you only need the Aster adapter checks.
- `bun install` install dependencies.
- `bun run index.ts` launch the CLI menu.
- `bun x vitest run` execute the full test suite; `bun x vitest --watch` for incremental runs.
Strategy-specific scripts still execute through the CLI; there is no separate `legacy/` workspace.
## Coding Style & Naming Conventions
All code is modern TypeScript using native ES modules. Follow the existing two-space indentation, keep imports sorted from external to local, and prefer `camelCase` for variables/functions with `PascalCase` for classes and enums. Strategy files stay in the project root with descriptive verbs (for example `maker.ts`), while shared utilities belong under `legacy/utils/`. Comments should stay concise and explain non-obvious trading logic.
Use modern TypeScript with ES modules, two-space indentation, and sorted imports (external → internal). Favor `camelCase` for variables/functions and `PascalCase` for classes/enums. Place new strategies under `src/strategy/`, shared utilities under `src/utils/` or `src/strategy/common/` when they only apply to strategies. Keep comments focused on non-obvious trading logic.
## Testing Guidelines
Vitest powers unit and integration checks. Place new suites beside their subjects using the `<feature>.test.ts` pattern (e.g., `legacy/exchanges/aster.test.ts`). Ensure strategies ship with coverage for order flow, risk guardrails, and websocket edge cases before opening a pull request. Run `pnpm test --watch` during development to keep feedback tight.
Vitest powers unit/integration tests. Co-locate new tests next to their subject using `<feature>.test.ts`. Strategies should have coverage for order lifecycle, risk guards, and websocket edge cases. Run `bun x vitest --watch` during development for fast feedback.
## Commit & Pull Request Guidelines
The repository history is empty, so adopt a lightweight Conventional Commits style (for example `feat: add hedging status panel`) to keep future changelogs clear. Commits should stay scoped to one strategy or module. Pull requests need a concise summary, reproduction or validation notes (commands run, environments touched), and screenshots or log excerpts when behavior changes. Link tracking issues or tasks to help downstream coordination.
Follow lightweight Conventional Commits (e.g. `feat: add hedging status panel`). Scope each commit to a single module or strategy. PRs should include:
- Summary of changes.
- Validation notes (commands run, environments touched).
- Relevant logs or screenshots for behavior changes.
Link issues/tasks when available.
## Environment & Secrets
Copy `legacy/env.example` to `.env` and populate API keys for Bitget and AsterDex before running live strategies. Never commit secrets; rely on local dotenv files or your deployment platform's secret manager. Rotate keys immediately if logs or configs leave the sandbox.
Duplicate `.env.example` to `.env` and populate API keys (Aster/GRVT) before running strategies. Do not commit secrets—use local `.env` or deployment secret managers. Rotate keys if they leak into logs or backups.
+112 -173
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@@ -1,219 +1,158 @@
# ritmex-bot
一个基于 Bun 的 Aster 永续合约终端机器人,内置趋势跟随(SMA30)与做市策略,使用 websocket 实时行情,命令行界面由 Ink 驱动,可在断线后自动恢复运行
基于 Bun 的 Aster 永续合约量化终端,内置趋势跟随(SMA30)与做市策略,支持快速恢复、实时行情订阅与日志追踪
## 快速上手
* [Aster 30% 手续费优惠注册链接](https://www.asterdex.com/zh-CN/referral/4665f3)
* [Binance 手续费优惠注册链接](https://www.binance.com/join?ref=KNKCA9XC)
* [GRVT 手续费优惠注册链接](https://grvt.io/exchange/sign-up?ref=sea)
* [Backpack 手续费优惠注册链接](https://backpack.exchange/join/41d60948-2a75-4d16-b7e9-523df74f2904)
* [edgex 手续费优惠注册链接](https://pro.edgex.exchange/referral/BULL)
使用优惠码获取 30% 手续费折扣:[注册 Aster 获取手续费优惠](https://www.asterdex.com/zh-CN/referral/4665f3)
## 文档索引
- [English README](README_en.md)
- [简明上手指南(零基础)](simple-readme.md)
如果你完全不懂代码,可以查看 **[小白教程](simple-readme.md) 了解使用方法。**
## 项目亮点
- **实时行情与风控**Websocket + REST 自动同步账户、挂单与仓位。
- **趋势策略**:SMA30 穿越入场,内置止损、移动止盈、布林带带宽过滤与步进锁盈。
- **做市策略**:支持双边追价、风险阈值与订单自愈。
- **模块化设计**:适配器、策略引擎与 CLI 解耦,方便扩展新交易所或策略。
遇到Bug,反馈问题,请到 [Telegram群组](https://t.me/+4fdo0quY87o4Mjhh)
## 环境要求
- Bun ≥ 1.2(含 `bun``bunx` 命令)
- macOS、Linux 或 Windows (WSL 推荐)
- Node.js 仅在某些安装路径需要,可选
### 一键脚本
一键安装并启动(macOS / Linux):
## 快速启动脚本(macOS / Linux / WSL
```bash
curl -fsSL https://github.com/discountry/ritmex-bot/raw/refs/heads/main/setup.sh | bash
```
脚本会自动安装 Bun、安装依赖、引导输入 API Key/Secret,生成 `.env` 并启动程序
脚本会安装 Bun、依赖,收集 Aster API Key/Secret,生成 `.env` 并启动 CLI。运行前请准备好 API 凭证
Windows 使用 WSL(推荐):
1. 先安装并启用 WSL,参考微软官方文档:[在 Windows 上安装 WSL](https://learn.microsoft.com/zh-cn/windows/wsl/install)
2. 在命令行或者 PowerShell 输入 `wsl` 并按下回车打开 WSL。
3. 在 WSL 中运行一键脚本:
## 手动安装步骤
1. **获取代码**
```bash
curl -fsSL https://github.com/discountry/ritmex-bot/raw/refs/heads/main/setup.sh | bash
git clone https://github.com/discountry/ritmex-bot.git
cd ritmex-bot
```
按提示输入 ASTER_API_KEY / ASTER_API_SECRET,脚本将自动安装 Bun、依赖并启动程序
## 手动安装
1. **下载代码**
- 如果会使用 Git`git clone https://github.com/discountry/ritmex-bot.git`
- 如果不会使用 Git:点击仓库页面的 `Code` → `Download ZIP`,将压缩包解压到如 `桌面/ritmex-bot` 的目录。
2. **打开命令行并进入项目目录**
- macOS:通过 Spotlight (`⌘ + 空格`) 搜索 “Terminal” 并打开。
- Windows:在开始菜单搜索 “PowerShell” 或 “Windows Terminal” 并打开。
- 使用 `cd` 切换到项目目录,例如:
```bash
# macOS / Linux
cd ~/Desktop/ritmex-bot
# Windows
cd C:\Users\用户名\Desktop\ritmex-bot
```
3. **安装 [Bun](https://bun.com) ≥ 1.2**
- macOS / Linux
```bash
curl -fsSL https://bun.sh/install | bash
```
- WindowsPowerShell):
```powershell
powershell -c "irm bun.sh/install.ps1 | iex"
```
安装完成后关闭并重新打开终端,运行 `bun -v` 确认命令可用。
如果上述命令无法完成安装,请尝试 [bun官网](https://bun.com/get) 提供的各种安装方式。
Windows 用户如果无法正常安装,可以尝试先[安装 nodejs](https://nodejs.org/en/download)
然后使用 `npm` 安装 `bun`
```bash
npm install -g bun
```
4. **安装依赖**
不方便使用 Git 时,可在仓库页面下载 ZIP 并手动解压
2. **安装 Bun**
- macOS / Linux`curl -fsSL https://bun.sh/install | bash`
- Windows PowerShell`powershell -c "irm bun.sh/install.ps1 | iex"`
安装后重新打开终端,确认 `bun -v` 正常输出版本号。
3. **安装依赖**
```bash
bun install
```
5. **配置环境变量**
复制 `.env.example` 为 `.env` 并填入你的 Aster API Key/Secret
4. **复制环境变量模板并填写**
```bash
cp .env.example .env
```
然后根据需要修改 `.env` 中的配置项:
- API KEY 获取地址 [https://www.asterdex.com/zh-CN/api-management](https://www.asterdex.com/zh-CN/api-management)
- `ASTER_API_KEY` / `ASTER_API_SECRET`:Aster 交易所提供的 API 凭证。
- `TRADE_SYMBOL`:策略运行的交易对(默认 `BTCUSDT`),需与 API 权限范围一致。
- `TRADE_AMOUNT`:单次下单数量(合约张数折算后单位为标的货币,例如 BTC)。
- `LOSS_LIMIT`:单笔允许的最大亏损(USDT),触发即强制平仓。
- `TRAILING_PROFIT` / `TRAILING_CALLBACK_RATE`:趋势策略的动态止盈触发值(单位 USDT)与回撤百分比(百分数,如 0.2 表示 0.2%)。
- `PROFIT_LOCK_TRIGGER_USD` / `PROFIT_LOCK_OFFSET_USD`:达到一定浮盈后,将基础止损上调(做多)或下调(做空)到开仓价的偏移量(单位 USDT)。
- `PRICE_TICK` / `QTY_STEP`:交易对的最小价格变动单位与最小下单数量步长(例如 BTCUSDT 分别为 0.1 与 0.001)。
- `MAKER_*` 参数:做市策略追价阈值、报价偏移、刷新频率等,可按流动性需求调节。
6. **运行机器人**
按下文说明修改 `.env`,至少需要正确配置 Aster 或 GRVT 的 API。
5. **运行 CLI**
```bash
bun run index.ts
```
在终端中按 ↑/↓ 选择 “趋势策略” 或 “做市策略”,回车启动。按 `Esc` 返回选择菜单,`Ctrl+C` 退出。
7. **风险提示**
建议先在小额或仿真环境中测试策略;真实资金操作前请确认 API 仅开启必要权限,并逐步验证配置。
方向键选择策略,回车启动`Esc` 返回菜单,`Ctrl+C` 退出。
A Bun-powered trading workstation for Aster perpetual contracts. The project ships two production strategies—an SMA30 trend follower and a dual-sided maker—that share a modular gateway, UI, and runtime state derived entirely from the exchange. Everything runs in the terminal via Ink, with live websocket refresh and automatic recovery from restarts or network failures.
## 环境变量配置指南
核心变量在 `.env.example` 中给出默认值:
## Features
- **Live data over websockets** with REST fallbacks and automatic re-sync after reconnects.
- **Trend strategy**: SMA30 crossover entries, automated stop-loss / trailing-stop, and P&L tracking.
- **Maker strategy**: adaptive bid/ask chasing, risk stops, and target order introspection.
- **Extensibility**: exchange gateway, engines, and UI components are modular for new venues or strategies.
| 变量 | 说明 |
| --- | --- |
| `ASTER_API_KEY` / `ASTER_API_SECRET` | Aster API 凭证,运行策略必填 |
| `TRADE_SYMBOL` | 交易对(默认 `BTCUSDT` |
| `TRADE_AMOUNT` | 单笔下单数量(标的资产计) |
| `LOSS_LIMIT` | 单笔最大亏损触发的强平额度(USDT) |
| `TRAILING_PROFIT` / `TRAILING_CALLBACK_RATE` | 动态止盈触发值(USDT)与回撤百分比 |
| `PROFIT_LOCK_TRIGGER_USD` / `PROFIT_LOCK_OFFSET_USD` | 浮盈超过阈值后上调止损的触发金额与偏移 |
| `BOLLINGER_LENGTH` / `BOLLINGER_STD_MULTIPLIER` | 布林带宽度判定的窗口长度与标准差倍数 |
| `MIN_BOLLINGER_BANDWIDTH` | 仅当带宽 ≥ 此比例时才触发入场信号 |
| `PRICE_TICK` / `QTY_STEP` | 交易所要求的最小报价与数量精度 |
| `POLL_INTERVAL_MS` | 趋势策略循环间隔(毫秒) |
| `MAX_CLOSE_SLIPPAGE_PCT` | 平仓时相对标记价允许的最大偏差 |
| `MAKER_*` 系列 | 做市策略独有参数(追价阈值、报价偏移、刷新频率等) |
## Requirements
- [Bun](https://bun.com) ≥ 1.2
- Node.js (optional, only if you prefer `npm` tooling)
- Valid Aster API credentials with futures access
切换到 GRVT 时,将 `EXCHANGE=grvt` 并补齐 `GRVT_API_KEY`、`GRVT_API_SECRET`、`GRVT_SUB_ACCOUNT_ID` 等变量;详情见 `.env.example`。
## Installation
> 提示:你也可以通过命令行参数临时指定交易所(优先级高于环境变量):
> ```bash
> bun run index.ts --exchange grvt
> bun run index.ts -e lighter
> ```
## 常用命令
```bash
bun install
bun run index.ts # 启动 CLI(默认)
bun run start # 同上
bun run dev # 调试模式,等价于运行 index.ts
bun x vitest run # 执行单元测试
```
## Configuration
Create an `.env` (or export environment variables) with at least:
```bash
ASTER_API_KEY=your_key
ASTER_API_SECRET=your_secret
TRADE_SYMBOL=BTCUSDT # optional, defaults to BTCUSDT
TRADE_AMOUNT=0.001 # position size used by both strategies
LOSS_LIMIT=0.03 # per-trade USD loss cap
TRAILING_PROFIT=0.2 # trailing activation profit in USDT
TRAILING_CALLBACK_RATE=0.2 # trailing callback in percent, e.g. 0.2 => 0.2%
PROFIT_LOCK_TRIGGER_USD=0.1 # profit threshold to start moving base stop (USDT)
PROFIT_LOCK_OFFSET_USD=0.05 # base stop offset from entry after trigger (USDT)
PRICE_TICK=0.1 # price tick size; set per symbol
QTY_STEP=0.001 # quantity step size; set per symbol
```
Additional maker-specific knobs (`MAKER_*`) live in `src/config.ts` and may be overridden via env vars:
```bash
# Maker-specific (units in USDT unless noted)
MAKER_LOSS_LIMIT=0.03 # override maker risk stop; defaults to LOSS_LIMIT
MAKER_PRICE_CHASE=0.3 # chase threshold
MAKER_BID_OFFSET=0 # bid offset from top bid (USDT)
MAKER_ASK_OFFSET=0 # ask offset from top ask (USDT)
MAKER_REFRESH_INTERVAL_MS=1500 # maker refresh cadence (ms)
MAKER_MAX_CLOSE_SLIPPAGE_PCT=0.05 # allowed deviation vs mark when closing
MAKER_PRICE_TICK=0.1 # maker tick size; defaults to PRICE_TICK
```
To switch the entire CLI to GRVT instead of Aster, set `EXCHANGE=grvt` and provide the programmable API credentials:
## 静默启动与后台运行
### 直接静默启动
无需进入 Ink 菜单,可用命令行直接拉起指定策略:
```bash
EXCHANGE=grvt
GRVT_API_KEY=your_api_key
GRVT_API_SECRET=0xabc123... # private key used for EIP-712 order signatures
GRVT_SUB_ACCOUNT_ID=your_sub_account # sub account that actually trades
GRVT_INSTRUMENT=BTC_USDT_Perp # instrument as defined by GRVT
GRVT_SYMBOL=BTCUSDT # optional display symbol; defaults to instrument sans underscores
GRVT_ENV=prod # optional environment switch (prod/testnet/staging/dev)
# Optional overrides
# GRVT_SIGNER_PATH=./grvt-signer.cjs # replace the built-in signer if you run an external service
# GRVT_COOKIE="gravity=..." # pre-provisioned session cookie (auto-fetched via API key when absent)
# GRVT_ACCOUNT_ID=... # populated automatically after login
bun run index.ts --strategy trend --silent # 启动趋势策略
bun run index.ts --strategy maker --silent # 启动做市策略
bun run index.ts --strategy offset-maker --silent # 启动偏移做市策略
```
The adapter logs in with `GRVT_API_KEY`, refreshes cookies automatically, and signs orders locally using `GRVT_API_SECRET` following GRVT's EIP712 schema. If you prefer to delegate signing to another process, set `GRVT_SIGNER_PATH`; the module should export a function (default export also works) that receives a context object (unsigned order, nonce/expiration, instrument metadata, chain id, etc.) and returns `{ signer, r, s, v, expiration, nonce }`. If you leave `GRVT_SIGNER_PATH` unset, the built-in signer uses `GRVT_API_SECRET` directly.
### 切换到 GRVT 交易所
将环境变量 `EXCHANGE` 设为 `grvt` 后,所有策略会改用 GRVT 适配器:
如需同时指定交易所,可叠加 `--exchange/-e`(将覆盖 `.env` 中的 `EXCHANGE`/`TRADE_EXCHANGE`):
```bash
EXCHANGE=grvt
GRVT_API_KEY=你的APIKey
GRVT_API_SECRET=0xabc123... # 用于订单签名的私钥
GRVT_SUB_ACCOUNT_ID=your_sub_account_id # 具体交易子账号
GRVT_INSTRUMENT=BTC_USDT_Perp # 交易品种,需与策略一致
GRVT_SYMBOL=BTCUSDT # 可选,内部用于展示,默认由 instrument 推导
GRVT_ENV=prod # 可选:prod / testnet / staging / dev,默认 prod
# 可选覆盖项
# GRVT_SIGNER_PATH=./grvt-signer.cjs # 如果你希望由外部服务签名
# GRVT_COOKIE="gravity=..." # 预先获取到的 Cookie(若未提供,将使用 API Key 自动登录)
# GRVT_ACCOUNT_ID=... # 登录后自动填充
bun run index.ts --exchange grvt --strategy maker --silent
bun run index.ts -e lighter -s offset-maker --silent
```
适配器会基于 `GRVT_API_SECRET` 自动完成 EIP‑712 签名并提交订单。如果你需要自定义签名流程,可通过 `GRVT_SIGNER_PATH` 指定模块(CommonJS 或 ESM 均可)。模块需导出一个函数,接收签名上下文(未签名订单、nonce/expiration、合约元信息、链 ID 等)并返回包含 `signer/r/s/v/expiration/nonce` 字段的对象,例如:
### 项目内置脚本
`package.json` 提供了便捷脚本:
```js
// grvt-signer.cjs
module.exports = async function signOrder(context) {
// 调用你自己的签名服务,或者使用本地私钥完成签名
const signature = await mySigner(context);
return {
signer: signature.signer,
r: signature.r,
s: signature.s,
v: signature.v,
expiration: signature.expiration,
nonce: signature.nonce,
};
};
```
如未自定义 `GRVT_SIGNER_PATH`,适配器会直接使用 `GRVT_API_SECRET` 完成签名。
## Running the CLI
```bash
bun run index.ts # or: bun run dev / bun run start
bun run start:trend:silent
bun run start:maker:silent
bun run start:offset:silent
```
Pick a strategy with the arrow keys. Press `Esc` to return to the menu. The dashboard shows live order books, holdings, pending orders, and recent events. 状态完全以交易所数据为准,重新启动时会自动同步账户和挂单。
## Testing
### 使用 pm2 守护并自动重启
将 `pm2` 安装到项目中(示例:`bun add -d pm2`),之后即可在不安装全局 pm2 的情况下运行:
```bash
bun run test # bun x vitest run
bun run test:watch # stay in watch mode
bunx pm2 start bun --name ritmex-trend --cwd . --restart-delay 5000 -- run index.ts --strategy trend --silent
```
Current tests cover the order coordinator utilities and strategy helpers; add unit tests beside new modules as you extend the system.
## Project Layout
- `src/config.ts` shared runtime configuration
- `src/core/` trend & maker engines plus order coordination
- `src/exchanges/` Aster REST/WS gateway and adapters
- `src/ui/` Ink components and strategy dashboards
- `src/utils/` math helpers and strategy utilities
- `tests/` Vitest suites for critical modules
亦可直接调用脚本:
## Troubleshooting
- **Websocket reconnect loops**: ensure outbound access to `wss://fstream.asterdex.com/ws` and REST endpoints.
- **429 or 5xx responses**: the gateway backs off automatically, but check your rate limits and credentials.
- **CLI input errors**: run in a real TTY; non-interactive shells disable keyboard shortcuts but the UI still renders.
```bash
bun run pm2:start:trend
bun run pm2:start:maker
bun run pm2:start:offset
```
## Contributing
Issues and PRs are welcome. When adding strategies or exchanges, follow the modular patterns in `src/core` and add tests under `tests/`.
根据需要调整 `--name`、`--cwd`、`--restart-delay` 等参数,完成后可执行 `pm2 save` 持久化进程列表。
## 测试
项目使用 Vitest
```bash
bun run test # 运行全部测试
bun x vitest --watch
```
## 常见问题
- 你需要至少 50-100 USDT 的资金才能运行策略
- 请在交易所自行设置 50 倍左右的杠杆,本策略不包含杠杆设置
- 请确保你电脑/服务器的时间是准确的真实世界时间
- 持仓方式需要保持单向持仓
- `.env` 未读取:确认文件位于项目根目录且变量名无误。
- API 拒绝访问:检查交易所后台权限,确保开启合约读写。
- 精度错误:同步交易对的最小价格与数量步长。
更多排查步骤可参考 [简明上手指南](simple-readme.md)。
## 社区与支持
- Telegram 交流群:[https://t.me/+4fdo0quY87o4Mjhh](https://t.me/+4fdo0quY87o4Mjhh)
- 反馈或新特性建议请提交 Issue 或 PR
## 风险提示
量化交易具备风险。建议在仿真或小额账户中验证策略表现,妥善保管 API 密钥,仅开启必要权限。
+151
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@@ -0,0 +1,151 @@
# ritmex-bot
A Bun-powered trading workstation for Aster perpetual contracts that ships two production-ready agents: an SMA30 trend follower and a dual-sided market maker. The CLI is built with Ink, synchronises risk state from the exchange, and automatically recovers from restarts or disconnects.
## Documentation Map
- [中文 README](README.md)
- [Beginner-friendly Quick Start](simple-readme.md)
## Highlights
- **Live market data & risk sync** via websocket feeds with REST fallbacks, full reconciliation on restart.
- **Trend engine** featuring SMA30 entries, fixed stop loss, trailing stop, Bollinger bandwidth gate, and profit-lock stepping.
- **Market-making loop** with adaptive quote chasing, loss caps, and automatic order healing.
- **Extensible architecture** decoupling exchange adapters, engines, and the Ink CLI for easy venue or strategy additions.
## Requirements
- Bun ≥ 1.2 (`bun`, `bunx` available on PATH)
- macOS, Linux, or Windows via WSL (native Windows works but WSL is recommended)
- Node.js is optional unless your environment requires it for tooling
## One-Line Bootstrap (macOS / Linux / WSL)
```bash
curl -fsSL https://github.com/discountry/ritmex-bot/raw/refs/heads/main/setup.sh | bash
```
The script installs Bun, project dependencies, collects Aster API credentials, generates `.env`, and launches the CLI. Prepare your API Key/Secret before running.
## Manual Installation
1. **Clone the repository**
```bash
git clone https://github.com/discountry/ritmex-bot.git
cd ritmex-bot
```
Alternatively download the ZIP from GitHub and extract it manually.
2. **Install Bun**
- macOS / Linux: `curl -fsSL https://bun.sh/install | bash`
- Windows PowerShell: `powershell -c "irm bun.sh/install.ps1 | iex"`
Re-open the terminal and confirm `bun -v` prints a version.
3. **Install dependencies**
```bash
bun install
```
4. **Create your environment file**
```bash
cp .env.example .env
```
Edit `.env` with your exchange credentials and overrides.
5. **Launch the CLI**
```bash
bun run index.ts
```
Use the arrow keys to pick a strategy, `Enter` to start, `Esc` to return to the menu, and `Ctrl+C` to exit.
## Environment Variables
The most important settings shipped in `.env.example` are summarised below:
| Variable | Purpose |
| --- | --- |
| `ASTER_API_KEY` / `ASTER_API_SECRET` | Required Aster exchange credentials |
| `TRADE_SYMBOL` | Contract symbol, defaults to `BTCUSDT` |
| `TRADE_AMOUNT` | Order size in base asset units |
| `LOSS_LIMIT` | Max per-trade loss (USDT) before forced close |
| `TRAILING_PROFIT` / `TRAILING_CALLBACK_RATE` | Trailing stop trigger amount (USDT) and pullback percentage |
| `PROFIT_LOCK_TRIGGER_USD` / `PROFIT_LOCK_OFFSET_USD` | Move the base stop once unrealised PnL exceeds this trigger |
| `BOLLINGER_LENGTH` / `BOLLINGER_STD_MULTIPLIER` | Window size and std-dev multiplier for bandwidth filtering |
| `MIN_BOLLINGER_BANDWIDTH` | Minimum bandwidth ratio required before opening a new position |
| `PRICE_TICK` / `QTY_STEP` | Exchange precision filters for price and quantity |
| `POLL_INTERVAL_MS` | Trend engine polling cadence in milliseconds |
| `MAX_CLOSE_SLIPPAGE_PCT` | Allowed deviation vs mark price when closing |
| `MAKER_*` | Maker strategy knobs: chase threshold, quote offsets, refresh cadence, etc. |
To trade on GRVT, set `EXCHANGE=grvt` and populate `GRVT_API_KEY`, `GRVT_API_SECRET`, `GRVT_SUB_ACCOUNT_ID`, plus any optional overrides documented in `.env.example`.
> Tip: you can temporarily override the exchange via CLI flags (takes precedence over environment):
> ```bash
> bun run index.ts --exchange grvt
> bun run index.ts -e lighter
> ```
## Common Commands
```bash
bun run index.ts # Launch the CLI
bun run start # Same as above
bun run dev # Development entry point
bun x vitest run # Execute the Vitest suite
```
## Silent & Background Execution
### Direct silent launch
Skip the Ink menu and start a strategy straight from the CLI:
```bash
bun run index.ts --strategy trend --silent # Trend engine
bun run index.ts --strategy maker --silent # Maker engine
bun run index.ts --strategy offset-maker --silent # Offset maker engine
```
Combine with `--exchange/-e` to explicitly choose the venue (overrides `EXCHANGE`/`TRADE_EXCHANGE` from `.env`):
```bash
bun run index.ts --exchange grvt --strategy maker --silent
bun run index.ts -e lighter -s offset-maker --silent
```
### Package scripts
Convenience aliases are exposed in `package.json`:
```bash
bun run start:trend:silent
bun run start:maker:silent
bun run start:offset:silent
```
### Daemonising with pm2
Install `pm2` locally (e.g. `bun add -d pm2`) and launch without a global install:
```bash
bunx pm2 start bun --name ritmex-trend --cwd . --restart-delay 5000 -- run index.ts --strategy trend --silent
```
You can also reuse the bundled scripts:
```bash
bun run pm2:start:trend
bun run pm2:start:maker
bun run pm2:start:offset
```
Adjust `--name`, `--cwd`, or `--restart-delay` to suit your environment and run `pm2 save` if you want the process to auto-start after reboot.
## Testing
Vitest powers the unit tests:
```bash
bun run test
bun x vitest --watch
```
## Troubleshooting
- You need at least 50100 USDT of capital before deploying a live strategy.
- Set leverage on the exchange beforehand (around 50x is recommended); the bot does not change it for you.
- Keep server/desktop time in sync with real-world time to avoid signature errors.
- Make sure the exchange account is in one-way position mode.
- **Env not loading**: ensure `.env` resides in the repository root and variable names are spelled correctly.
- **Order rejected for precision**: align `PRICE_TICK`, `QTY_STEP`, and `TRADE_SYMBOL` with the exchange filters.
- **Permission or auth errors**: double-check exchange API scopes.
More step-by-step guidance is available in [simple-readme.md](simple-readme.md).
## Community & Support
- Telegram: [https://t.me/+4fdo0quY87o4Mjhh](https://t.me/+4fdo0quY87o4Mjhh)
- Issues and PRs are welcome for bug reports and feature ideas
## Disclaimer
Algorithmic trading carries risk. Validate strategies with paper accounts or small capital first, safeguard your API keys, and only grant the minimum required permissions.
+232
View File
@@ -5,9 +5,11 @@
"name": "ritmex-bot",
"dependencies": {
"@grvt/client": "^1.6.4",
"@starkware-industries/starkware-crypto-utils": "^0.2.1",
"axios": "^1.12.2",
"ccxt": "^4.5.5",
"dotenv": "^17.2.2",
"ethereum-cryptography": "^2.1.3",
"ink": "^6.3.1",
"react": "^19.1.1",
"ws": "^8.18.3",
@@ -80,6 +82,10 @@
"@jridgewell/sourcemap-codec": ["@jridgewell/sourcemap-codec@1.5.5", "", {}, "sha512-cYQ9310grqxueWbl+WuIUIaiUaDcj7WOq5fVhEljNVgRfOUhY9fy2zTvfoqWsnebh8Sl70VScFbICvJnLKB0Og=="],
"@noble/curves": ["@noble/curves@1.4.2", "", { "dependencies": { "@noble/hashes": "1.4.0" } }, "sha512-TavHr8qycMChk8UwMld0ZDRvatedkzWfH8IiaeGCfymOP5i0hSCozz9vHOL0nkwk7HRMlFnAiKpS2jrUmSybcw=="],
"@noble/hashes": ["@noble/hashes@1.4.0", "", {}, "sha512-V1JJ1WTRUqHHrOSh597hURcMqVKVGL/ea3kv0gSnEdsEZ0/+VyPghM1lMNGc00z7CIQorSvbKpuJkxvuHbvdbg=="],
"@rollup/rollup-android-arm-eabi": ["@rollup/rollup-android-arm-eabi@4.52.0", "", { "os": "android", "cpu": "arm" }, "sha512-VxDYCDqOaR7NXzAtvRx7G1u54d2kEHopb28YH/pKzY6y0qmogP3gG7CSiWsq9WvDFxOQMpNEyjVAHZFXfH3o/A=="],
"@rollup/rollup-android-arm64": ["@rollup/rollup-android-arm64@4.52.0", "", { "os": "android", "cpu": "arm64" }, "sha512-pqDirm8koABIKvzL59YI9W9DWbRlTX7RWhN+auR8HXJxo89m4mjqbah7nJZjeKNTNYopqL+yGg+0mhCpf3xZtQ=="],
@@ -124,6 +130,16 @@
"@rollup/rollup-win32-x64-msvc": ["@rollup/rollup-win32-x64-msvc@4.52.0", "", { "os": "win32", "cpu": "x64" }, "sha512-6iKDCVSIUQ8jPMoIV0OytRKniaYyy5EbY/RRydmLW8ZR3cEBhxbWl5ro0rkUNe0ef6sScvhbY79HrjRm8i3vDQ=="],
"@scure/base": ["@scure/base@1.1.9", "", {}, "sha512-8YKhl8GHiNI/pU2VMaofa2Tor7PJRAjwQLBBuilkJ9L5+13yVbC7JO/wS7piioAvPSwR3JKM1IJ/u4xQzbcXKg=="],
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}
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@@ -0,0 +1,51 @@
<!DOCTYPE HTML>
<html>
<head>
<title>CCXT Basic example for the browser</title>
<script type="text/javascript" src="https://unpkg.com/ccxt"></script>
<script>
document.addEventListener ("DOMContentLoaded", function () {
const pollTickerContinuously = async function (exchange, symbol) {
while (true) {
try {
const ticker = await exchange.watchTicker (symbol)
const text = [
exchange.id,
symbol,
JSON.stringify (ticker, undefined, '\n\t')
]
document.getElementById ('content').innerHTML = text.join (' ');
} catch (e) {
const text = [
e.constructor.name,
e.message,
]
document.getElementById ('content').innerHTML = text.join (' ');
}
}
}
const exchange = new ccxt.pro.binance ({ enableRateLimit: true })
const symbol = 'ETH/BTC'
pollTickerContinuously (exchange, symbol)
})
</script>
</head>
<body>
<h1>Hello, CCXT!</h1>
<p>This example uses websockets to watch changes in price of ETH/BTC</p>
<pre id="content"></pre>
</body>
</html>
@@ -0,0 +1,74 @@
'use strict';
import ccxt from '../../../js/ccxt.js';
// your version must be 0.7+
console.log ('CCXT Version:', ccxt.version)
function handle (exchange, symbol, ticker) {
console.log (new Date (), exchange.id, symbol, ticker)
}
async function loop (exchange, symbol) {
while (true) {
try {
const ticker = await exchange.watchMyTrades ()
handle (exchange, symbol, ticker)
sleep( 10000 )
} catch (e) {
console.log (symbol, e)
// do nothing and retry on next loop iteration
// throw e // uncomment to break all loops in case of an error in any one of them
// break // you can also break just this one loop if it fails
}
}
}
async function main () {
const exchange = new ccxt.pro.apex ({
'apiKey': 'your api Key',
'secret': 'your api secret',
'walletAddress': 'your eth address',
'options': {
'accountId': 'your account id',
'passphrase': 'your api passphrase',
'seeds': 'your zklink omni seed',
'brokerId': '',
},
}) // usd(s)-margined contracts
exchange.setSandboxMode(true)
//
// or
//
// const exchange = new ccxt.pro.binance () // spot markets
//
// WARNING: when using the spot markets mind subscription limits!
// don't attempt to subscribe to all of them
// the exchanges will not allow that in general
// instead, specify a shorter list of symbols to subscribe to
//
// or
//
// const exchange = new ccxt.pro.binancecoinm () // coin-margined contracts
if (exchange.has['watchTicker']) {
await exchange.loadMarkets ()
// many symbols
//await Promise.all (exchange.symbols.map (symbol => loop (exchange, symbol)))
//
// or
//
// const symbols = [ 'BTC/USDT', 'ETH/USDT' ] // specific symbols
// await Promise.all (symbols.map (symbol => loop (exchange, symbol)))
//
// or
//
await loop (exchange, ['BTC-USDT','ETH-USDT']) // one symbol
} else {
console.log (exchange.id, 'does not support watchTicker yet')
}
}
main ()
@@ -0,0 +1,55 @@
'use strict';
const ccxt = require ('../../../ccxt')
console.log ('CCXT Version:', ccxt.version)
// This example will run silent and will return your balance only when the balance is updated.
//
// 1. launch the example with your keys and keep it running
// 2. go to the trading section on the website
// 3. place a order on a spot market
// 4. see your balance updated in the example
//
// Warning! This example might produce a lot of output to your screen
async function watchBalance (exchange) {
let balance = await exchange.fetchBalance ()
console.log ('---------------------------------------------------------')
console.log (exchange.iso8601 (exchange.milliseconds ()))
console.log (balance, '\n')
while (true) {
try {
const update = await exchange.watchBalance ()
balance = exchange.deep_extend (balance, update)
// it will print the balance update when the balance changes
// if the balance remains unchanged the exchange will not send it
console.log ('---------------------------------------------------------')
console.log (exchange.iso8601 (exchange.milliseconds ()))
console.log (balance, '\n')
} catch (e) {
console.log (e.constructor.name, e.message)
break
}
}
}
async function main() {
const exchange = new ccxt.pro.binance ({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
})
await exchange.loadMarkets ()
// exchange.verbose = true // uncomment for debugging purposes if necessary
await watchBalance (exchange)
await exchange.close ()
}
main ()
@@ -0,0 +1,48 @@
'use strict';
const ccxt = require ('../../../ccxt')
console.log ('CCXT Version:', ccxt.version)
let HttpsProxyAgent = undefined
try {
HttpsProxyAgent = require ('https-proxy-agent')
} catch (e) {
console.log (e.constructor.name, e.message)
console.log ("\nCould not load the HTTPS proxy agent")
console.log ("\nPlease, run this command to make sure it's properly installed:")
console.log ("\nnpm install https-proxy-agent\n")
process.exit ()
}
async function main () {
console.log ('Using proxy server', httpsProxyUrl);
// adjust for your HTTPS proxy URL
const httpsProxyUrl = process.env.https_proxy || 'https://username:password@your-proxy.com'
, httpsAgent = new HttpsProxyAgent (httpsProxyUrl)
, exchange = new ccxt.binance ({
httpsAgent: httpsAgent, // ←--------------------- httpsAgent here
options: {
'ws': {
'options': { agent: httpsAgent }, // ←--- httpsAgent here
},
},
})
const symbol = 'BTC/USDT'
await exchange.loadMarkets ()
console.log ('Markets loaded')
while (true) {
try {
const orderbook = await exchange.watchOrderBook (symbol)
console.log (exchange.iso8601 (exchange.milliseconds()), symbol, orderbook['asks'][0], orderbook['bids'][0])
} catch (e) {
console.log (e.constructor.name, e.message)
}
}
}
main ()
@@ -0,0 +1,38 @@
"use strict";
const ccxt = require ('ccxt')
const ohlcvsBySymbol = {}
function handleAllOHLCVs (exchange, ohlcvs, symbol, timeframe) {
const now = exchange.iso8601 (exchange.milliseconds ())
const lastCandle = exchange.safeValue (ohlcvs, ohlcvs.length - 1)
const datetime = exchange.iso8601 (lastCandle[0])
console.log (now, datetime, symbol, timeframe, lastCandle.slice (1))
}
async function pollOHLCV (exchange, symbol, timeframe) {
await exchange.throttle (1000) // 1000ms delay between subscriptions
while (true) {
try {
const response = await exchange.watchOHLCV (symbol, timeframe)
ohlcvsBySymbol[symbol] = response
handleAllOHLCVs(exchange, response, symbol, timeframe)
} catch (e) {
console.log (e.constructor.name, e.message)
}
}
}
async function main () {
const exchange = new ccxt.pro.binance()
const markets = await exchange.loadMarkets ()
const timeframe = '5m'
const firstOneHundredSymbols = exchange.symbols.slice (0, 100)
await Promise.all (firstOneHundredSymbols.map (symbol => pollOHLCV (exchange, symbol, timeframe)))
}
main ()
@@ -0,0 +1,64 @@
'use strict';
const ccxt = require ('ccxt');
// your version must be 0.7+
console.log ('CCXT Version:', ccxt.version)
function handle (exchange, symbol, timeframe, candles) {
const lastCandle = candles[candles.length - 1]
const lastClosingPrice = lastCandle[4]
console.log (new Date (), exchange.id, timeframe, symbol, '\t', lastClosingPrice)
}
async function loop (exchange, symbol, timeframe) {
while (true) {
try {
const candles = await exchange.watchOHLCV (symbol, timeframe)
handle (exchange, symbol, timeframe, candles)
} catch (e) {
console.log (symbol, e)
// do nothing and retry on next loop iteration
// throw e // uncomment to break all loops in case of an error in any one of them
// break // you can also break just this one loop if it fails
}
}
}
async function main () {
const exchange = new ccxt.pro.binanceusdm () // usd(s)-margined contracts
//
// or
//
// const exchange = new ccxt.pro.binance () // spot markets
//
// WARNING: when using the spot markets mind subscription limits!
// don't attempt to subscribe to all of them
// the exchanges will not allow that in general
// instead, specify a shorter list of symbols to subscribe to
//
// or
//
// const exchange = new ccxt.pro.binancecoinm () // coin-margined contracts
if (exchange.has['watchOHLCV']) {
await exchange.loadMarkets ()
const timeframe = '15m'
// many symbols
await Promise.all (exchange.symbols.map (symbol => loop (exchange, symbol, timeframe)))
//
// or
//
// const symbols = [ 'BTC/USDT', 'ETH/USDT' ] // specific symbols
// await Promise.all (symbols.map (symbol => loop (exchange, symbol, timeframe)))
//
// or
//
// await loop (exchange, 'BTC/USDT', timeframe) // one symbol
} else {
console.log (exchange.id, 'does not support watchOHLCV yet')
}
}
main ()
@@ -0,0 +1,62 @@
'use strict';
const ccxt = require ('ccxt');
// your version must be 0.7+
console.log ('CCXT Version:', ccxt.version)
function handle (exchange, symbol, ticker) {
console.log (new Date (), exchange.id, symbol, ticker['last'])
}
async function loop (exchange, symbol) {
while (true) {
try {
const ticker = await exchange.watchTicker (symbol)
handle (exchange, symbol, ticker)
} catch (e) {
console.log (symbol, e)
// do nothing and retry on next loop iteration
// throw e // uncomment to break all loops in case of an error in any one of them
// break // you can also break just this one loop if it fails
}
}
}
async function main () {
const exchange = new ccxt.pro.binanceusdm () // usd(s)-margined contracts
//
// or
//
// const exchange = new ccxt.pro.binance () // spot markets
//
// WARNING: when using the spot markets mind subscription limits!
// don't attempt to subscribe to all of them
// the exchanges will not allow that in general
// instead, specify a shorter list of symbols to subscribe to
//
// or
//
// const exchange = new ccxt.pro.binancecoinm () // coin-margined contracts
if (exchange.has['watchTicker']) {
await exchange.loadMarkets ()
// many symbols
await Promise.all (exchange.symbols.map (symbol => loop (exchange, symbol)))
//
// or
//
// const symbols = [ 'BTC/USDT', 'ETH/USDT' ] // specific symbols
// await Promise.all (symbols.map (symbol => loop (exchange, symbol)))
//
// or
//
// await loop (exchange, 'BTC/USDT') // one symbol
} else {
console.log (exchange.id, 'does not support watchTicker yet')
}
}
main ()
@@ -0,0 +1,68 @@
'use strict';
const ccxt = require ('ccxt');
const asTable = require ('as-table').configure ({ delimiter: ' | ' })
console.log ('CCXT Version:', ccxt.version)
async function loop (exchange, symbol, timeframe, completeCandlesOnly = false) {
const durationInSeconds = exchange.parseTimeframe (timeframe)
const durationInMs = durationInSeconds * 1000
while (true) {
try {
const trades = await exchange.watchTrades (symbol)
if (trades.length > 0) {
const currentMinute = parseInt (exchange.milliseconds () / durationInMs)
let ohlcvc = exchange.buildOHLCVC (trades, timeframe)
if (completeCandlesOnly) {
ohlcvc = ohlcvc.filter (candle => parseInt (candle[0] / durationInMs) < currentMinute)
}
if (ohlcvc.length > 0) {
console.log("Symbol:", symbol, "timeframe:", timeframe);
console.log ('-----------------------------------------------------------')
console.log (asTable (ohlcvc))
console.log ('-----------------------------------------------------------')
}
}
} catch (e) {
console.log (symbol, e)
// do nothing and retry on next loop iteration
// throw e // uncomment to break all loops in case of an error in any one of them
// break // you can also break just this one loop if it fails
}
}
}
async function main () {
// select the exchange
const exchange = new ccxt.pro.ftx ()
if (exchange.has['watchTrades']) {
await exchange.loadMarkets ()
// Change this value accordingly
const timeframe = '1m'
const allSymbols = exchange.symbols;
// arbitrary n symbols
const limit = 5;
// const selectedSymbols = allSymbols.slice(0, limit);
// you can also specify the symbols manually
// example:
// const selectedSymbols = ['BTC/USDT', 'LTC/USDT']
console.log(selectedSymbols);
// Use this variable to choose if only complete candles
// should be considered
const completeCandlesOnly = true
await Promise.all (selectedSymbols.map (symbol => loop (exchange, symbol, timeframe, completeCandlesOnly)))
} else {
console.log (exchange.id, 'does not support watchTrades yet')
}
}
main ()
@@ -0,0 +1,82 @@
'use strict';
const ccxt = require ('../../../ccxt');
console.log ('CCXT Version:', ccxt.version)
let ohlcvs = {}
async function log (exchange, symbol, timeframe) {
const market = exchange.market (symbol)
const duration = exchange.parseTimeframe (timeframe) * 1000
console.log (exchange.iso8601 (exchange.milliseconds ()), 'Warming up, waiting for at least one trade...')
while (!Object.keys (ohlcvs).length) {
await exchange.throttle (1)
}
let now = exchange.milliseconds ()
const start = (parseInt (now / duration) + 1) * duration
console.log (exchange.iso8601 (exchange.milliseconds ()), 'Trades started arriving, waiting till', exchange.iso8601 (start))
await exchange.sleep (start - now)
console.log (exchange.iso8601 (exchange.milliseconds ()), 'Done warming up')
for (let i = 0;; i++) {
now = exchange.milliseconds ()
let candle = Object.values (ohlcvs)[0]
console.log ('')
console.log (exchange.iso8601 (now), '------------------------------------------------------')
console.log ('Datetime ', 'Timestamp ', ... [ 'Open', 'High', 'Low', 'Close', market['base'], market['quote'] ].map (x => x.toString ().padEnd (10, ' ')))
for (let j = start; j < now; j += duration) {
if (!(j in ohlcvs)) {
ohlcvs[j] = [ j, candle[4], candle[4], candle[4], candle[4], 0, 0 ]
}
candle = exchange.safeValue (ohlcvs, j);
console.log (exchange.iso8601 (j), ... candle.map (x => x.toString ().padEnd (10, ' ')))
}
ohlcvs = exchange.indexBy (Object.values (ohlcvs).slice (-1000), 0)
await exchange.sleep(1000)
}
}
async function watch (exchange, symbol, timeframe) {
console.log ('Starting', exchange.id, symbol)
const duration = exchange.parseTimeframe (timeframe) * 1000
while (true) {
try {
const trades = await exchange.watchTrades(symbol)
for (const trade of trades) {
const timestamp = parseInt(trade['timestamp'] / duration) * duration
let candle = exchange.safe_value(ohlcvs, timestamp)
if (candle) {
candle[2] = Math.max(trade['price'], candle[2])
candle[3] = Math.min(trade['price'], candle[3])
candle[4] = trade['price']
candle[5] = exchange.parseNumber(exchange.amountToPrecision(symbol, trade['amount'] + candle[5]))
candle[6] = exchange.parseNumber(exchange.costToPrecision(symbol, trade['cost'] + candle[6]))
} else {
candle = [
timestamp,
trade['price'],
trade['price'],
trade['price'],
trade['price'],
exchange.parseNumber(exchange.amountToPrecision(symbol, trade['amount'])),
exchange.parseNumber(exchange.costToPrecision(symbol, trade['cost'])),
]
}
ohlcvs[timestamp] = candle
}
} catch (e) {
console.log (e.constructor.name, e.message)
}
}
}
async function main() {
const symbol = 'BTC/USDT'
const exchange = new ccxt.pro.binance ({ 'newUpdates': true })
await exchange.loadMarkets ()
const timeframe = '1m'
await Promise.all ([ watch (exchange, symbol, timeframe), log (exchange, symbol, timeframe) ])
await exchange.close ()
}
main()
@@ -0,0 +1,59 @@
'use strict';
const ccxt = require ('../../../ccxt');
console.log ('CCXT Version:', ccxt.version)
async function main() {
let ohlcvs = {}
const symbol = 'BTC/USDT'
const exchange = new ccxt.pro.binance ({ 'newUpdates': true })
await exchange.loadMarkets ()
const market = exchange.market (symbol)
const timeframe = '1m'
const duration = exchange.parseTimeframe (timeframe) * 1000
console.log ('Starting', exchange.id, symbol)
while (true) {
try {
const trades = await exchange.watchTrades(symbol)
for (const trade of trades) {
const timestamp = parseInt(trade['timestamp'] / duration) * duration
let candle = exchange.safe_value(ohlcvs, timestamp)
if (candle) {
candle[2] = Math.max(trade['price'], candle[2])
candle[3] = Math.min(trade['price'], candle[3])
candle[4] = trade['price']
candle[5] = exchange.parseNumber(exchange.amountToPrecision(symbol, trade['amount'] + candle[5]))
candle[6] = exchange.parseNumber(exchange.costToPrecision(symbol, trade['cost'] + candle[6]))
} else {
candle = [
timestamp,
trade['price'],
trade['price'],
trade['price'],
trade['price'],
exchange.parseNumber(exchange.amountToPrecision(symbol, trade['amount'])),
exchange.parseNumber(exchange.costToPrecision(symbol, trade['cost'])),
]
}
ohlcvs[timestamp] = candle
}
console.log ('')
console.log (exchange.iso8601 (exchange.milliseconds ()), '------------------------------------------------------')
const values = Object.values (ohlcvs).slice (-1000)
ohlcvs = exchange.indexBy (values, 0)
console.log ('Datetime ', 'Timestamp ', ... [ 'Open', 'High', 'Low', 'Close', market['base'], market['quote'] ].map (x => x.toString ().padEnd (10, ' ')))
for (let i = 0; i < values.length; i++) {
const candle = values[i]
console.log (exchange.iso8601 (candle[0]), ... candle.map (x => x.toString ().padEnd (10, ' ')))
}
} catch (e) {
console.log (e.constructor.name, e.message)
}
}
await exchange.close ()
}
main()
@@ -0,0 +1,72 @@
"use strict";
/* ------------------------------------------------------------------------ */
const ccxt = require ('../../../ccxt.js').pro
, asTable = require ('as-table') // .configure ({ print: require ('string.ify').noPretty })
, log = require ('ololog').noLocate
, ansi = require ('ansicolor').nice
;(async function test () {
let total = 0
let missing = 0
let implemented = 0
let emulated = 0
const exchanges = ccxt.exchanges
.map (id => new ccxt[id]())
.filter (exchange => exchange.has.ws)
log (
asTable (
exchanges
.map (exchange => {
let result = {};
[
'ws',
'watchOrderBook',
'watchTicker',
'watchTrades',
'watchOHLCV',
'watchBalance',
'watchOrders',
'watchMyTrades',
].forEach (key => {
total += 1
let capability = (key in exchange.has) ?
exchange.has[key].toString () :
'undefined'
if (!exchange.has[key]) {
capability = exchange.id.red.dim
missing += 1
} else if (exchange.has[key] === 'emulated') {
capability = exchange.id.yellow
emulated += 1
} else {
capability = exchange.id.green
implemented += 1
}
result[key] = capability
})
return result
})
)
)
log ('Summary:',
exchanges.length.toString ().green, 'exchanges,',
implemented.toString ().green, 'methods implemented,',
emulated.toString ().yellow, 'emulated,',
missing.toString ().red, 'missing,',
total.toString (), 'total')
}) ()
@@ -0,0 +1,46 @@
'use strict';
const ccxt = require ('../../../ccxt')
console.log ("CCXT Pro Version:", ccxt.version)
const orderbooks = {}
let run = true
async function watchOrderBook (exchange, symbol) {
while (run) {
try {
const orderbook = await exchange.watchOrderBook (symbol)
orderbooks[symbol] = orderbook
console.log (exchange.iso8601 (exchange.milliseconds ()), orderbook['datetime'], orderbook['nonce'], symbol, orderbook['asks'][0], orderbook['bids'][0])
} catch (e) {
console.log (e.constructor.name, e.message)
}
}
}
async function stop (exchange) {
await exchange.sleep (10000)
run = false
await exchange.close ()
}
async function main () {
const exchange = new ccxt.pro.binance ()
await exchange.loadMarkets ()
exchange.verbose = true
const symbols = [
'BTC/USDT',
'ETH/USDT',
]
stop (exchange).then (() => {})
await Promise.all (symbols.map (symbol => watchOrderBook (exchange, symbol)))
console.log ('Sleeping for a moment...')
await exchange.sleep (10000)
console.log ('Done')
}
main ()
@@ -0,0 +1,30 @@
'use strict';
const ccxt = require ('ccxt')
console.log ("CCXT Pro Version:", ccxt.version)
async function loop (exchange, method, symbol) {
while (true) {
try {
const orderbook = await exchange[method] (symbol)
console.log (exchange.iso8601 (exchange.milliseconds ()), orderbook['datetime'], orderbook['nonce'], symbol, orderbook['asks'][0], orderbook['bids'][0])
} catch (e) {
console.log (e.constructor.name, e.message)
}
}
}
async function main () {
const exchange = new ccxt.pro.gateio ({
'options': {'defaultType':'swap'}
})
await exchange.loadMarkets ()
// exchange.verbose = true // uncomment for debugging purposes if necessary
const symbols = [
'ANC/USDT:USDT',
]
await Promise.all (symbols.map (symbol => loop (exchange, 'fetchOrderBook', symbol)))
}
main ()
@@ -0,0 +1,23 @@
const ccxt = require ('../../../ccxt')
console.log ('CCXT Pro version:', ccxt.version)
async function main () {
const exchange = new ccxt.pro.gateio ({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
})
await exchange.loadMarkets ()
exchange.verbose = true
while (true) {
try {
const response = await exchange.watchBalance ()
console.log (new Date (), response)
} catch (e) {
console.log (e.constructor.name, e.message)
await exchange.sleep (1000)
}
}
}
main ()
@@ -0,0 +1,71 @@
'use strict';
const ccxt = require ('ccxt')
console.log ("CCXT Pro Version:", ccxt.version)
const orderbooks = {}
async function watchAllSymbols (exchange, symbols) {
while (true) {
const keys = Object.keys (orderbooks);
if (symbols.length === keys.length) {
console.log ('\n\n\n\n\n')
console.log ('----------------------------------------------------')
console.log ('All orderbooks received at least one update:');
for (let i = 0; i < symbols.length; i++) {
const symbol = symbols[i]
const orderbook = orderbooks[symbol]
console.log (exchange.iso8601 (exchange.milliseconds ()), orderbook['datetime'], orderbook['nonce'], symbol, orderbook['asks'][0], orderbook['bids'][0])
}
console.log ('----------------------------------------------------')
console.log ('\n\n\n\n\n')
// process.exit () // stop here if you want
break
} else {
await exchange.sleep (1000);
}
}
}
async function watchOrderBook (exchange, symbol) {
while (true) {
try {
const orderbook = await exchange.watchOrderBook (symbol)
orderbooks[symbol] = orderbook
console.log (exchange.iso8601 (exchange.milliseconds ()), orderbook['datetime'], orderbook['nonce'], symbol, orderbook['asks'][0], orderbook['bids'][0])
} catch (e) {
console.log (e.constructor.name, e.message)
}
}
}
async function main () {
const exchange = new ccxt.pro.gateio ({
'options': {
'defaultType': 'swap',
},
})
await exchange.loadMarkets ()
// exchange.verbose = true // uncomment for debugging purposes if necessary
const symbols = [
// 'SOS/USDT:USDT',
// 'JASMY/USDT:USDT',
// 'SLP/USDT:USDT',
'ACH/USDT:USDT',
'MKISHU/USDT:USDT',
// 'GMT/USDT:USDT',
// 'ASTR/USDT:USDT',
'RAMP/USDT:USDT',
'RSR/USDT:USDT',
// 'RACA/USDT:USDT',
// 'ROOK/USDT:USDT',
// 'ROSE/USDT:USDT',
]
await Promise.all ([
watchAllSymbols (exchange, symbols),
... symbols.map (symbol => watchOrderBook (exchange, symbol))
])
}
main ()
@@ -0,0 +1,43 @@
'use strict';
const ccxt = require ('../../../ccxt');
let stop = false
async function shutdown (milliseconds) {
await ccxt.sleep (10000)
stop = true
}
async function watchOrderBook (exchangeId, symbol) {
const exchange = new ccxt.pro[exchangeId] ()
await exchange.loadMarkets ()
// exchange.verbose = true
while (!stop) {
try {
const orderbook = await exchange.watchOrderBook (symbol)
console.log (new Date (), exchange.id, symbol, orderbook['asks'][0], orderbook['bids'][0])
} catch (e) {
console.log (symbol, e)
stop = true
break
}
}
await exchange.close ()
}
async function main () {
const streams = {
'binance': 'BTC/USDT',
'ftx': 'BTC/USDT',
};
await Promise.all ([
shutdown (10000),
... Object.entries (streams).map (([ exchangeId, symbol ]) => watchOrderBook (exchangeId, symbol))
])
}
main()
@@ -0,0 +1,37 @@
'use strict';
const ccxt = require ('../../../ccxt');
(async () => {
const streams = {
'binance': 'BTC/USDT',
'bittrex': 'BTC/USDT',
'poloniex': 'BTC/USDT',
'bitfinex': 'BTC/USDT',
'hitbtc': 'BTC/USDT',
'upbit': 'BTC/USDT',
'coinbasepro': 'BTC/USD',
'ftx': 'BTC/USDT',
'okex': 'BTC/USDT',
'gateio': 'BTC/USDT',
};
await Promise.all (Object.keys (streams).map (exchangeId =>
(async () => {
const exchange = new ccxt.pro[exchangeId] ({ enableRateLimit: true })
const symbol = streams[exchangeId]
while (true) {
try {
const orderbook = await exchange.watchOrderBook (symbol)
console.log (new Date (), exchange.id, symbol, orderbook['asks'][0], orderbook['bids'][0])
} catch (e) {
console.log (symbol, e)
}
}
}) ())
)
}) ()
@@ -0,0 +1,48 @@
'use strict';
const ccxt = require ('ccxt')
, exchange = new ccxt.okex ({
apiKey: 'YOUR_API_KEY',
secret: 'YOUR_API_SECRET',
password: 'YOUR_API_PASSWORD',
enableRateLimit: true,
options: { defaultType: 'futures' },
})
, symbol = 'BTC/USDT:USDT-201225'
, amount = 1 // how may contracts
, price = undefined // or your limit price
, side = 'buy' // or 'sell'
, type = '1' // 1 open long, 2 open short, 3 close long, 4 close short for futures
, order_type = '4' // 0 = limit order, 4 = market order
console.log ('CCXT Pro Version: ', ccxt.version)
async function main () {
try {
await exchange.loadMarkets ()
// exchange.verbose = true // uncomment for debugging
// open long market price order
const order = await exchange.createOrder(symbol, 'market', side, amount, price, { type });
// --------------------------------------------------------------------
// open long market price order
// const order = await exchange.createOrder(symbol, type, side, amount, price, { order_type });
// --------------------------------------------------------------------
// close short market price order
// const order = await exchange.createOrder(symbol, 'market', side, amount, price, { type, order_type });
// --------------------------------------------------------------------
// close short market price order
// const order = await exchange.createOrder(symbol, '4', side, amount, price, { order_type });
// ...
console.log (order)
} catch (e) {
console.log (e.constructor.name, e.message)
}
}
main ()
@@ -0,0 +1,54 @@
const ccxt = require ('ccxt')
console.log ('Node.js:', process.version)
console.log ('CCXT Pro v' + ccxt.version)
const exchange = new ccxt.pro.okex ({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_API_SECRET',
'password': 'YOUR_API_PASWORD'
})
async function watchBalance (code) {
while (true) {
const balance = await exchange.watchBalance ({
'code': code,
})
console.log ('New', code, 'balance is: ', balance[code])
}
}
async function createOrder (symbol, type, side, amount, price = undefined, params = {}) {
console.log ('Creating', symbol, type, 'order')
const order = await exchange.createOrder (symbol, type, side, amount, price, params);
console.log (symbol, type, side, 'order created')
console.log (order)
}
;(async () => {
await exchange.loadMarkets ()
console.log (exchange.id, 'markets loaded')
const symbol = 'ETH/USDT'
const market = exchange.market (symbol)
const quote = market['quote']
// run in parallel without await
console.log ('Watching', quote, 'balance')
watchBalance (quote)
// wait a bit to allow it to subscribe
await exchange.sleep (3000)
const ticker = await exchange.watchTicker (symbol)
const type = 'market'
const side = 'buy'
const amount = 0.1
const price = ticker['bid']
await createOrder (symbol, type, side, amount, price)
}) ()
@@ -0,0 +1,31 @@
import ccxt from '../../../js/ccxt.js';
async function main() {
const exchange = new ccxt.pro.okx()
await exchange.loadMarkets()
// exchange.verbose = true
while (true) {
try {
// don't do this, specify a list of symbols to watch for watchTickers
// or a very large subscription message will crash your WS connection
// const tickers = await exchange.watchTickers ()
// do this instead
const symbols = [
'ETH/BTC',
'BTC/USDT',
'ETH/USDT',
// ...
]
const tickers = await exchange.watchTickers (symbols)
symbols = Object.keys(tickers)
console.log (new Date(), 'received', symbols.length, 'symbols', ... symbols.slice(0,5).join(', '), '...')
} catch (e) {
console.log (new Date(), e.constructor.name, e.message)
break
}
}
}
main()
@@ -0,0 +1,46 @@
'use strict';
const ccxt = require ('ccxt')
console.log ('CCXT Version:', ccxt.version)
async function watchOrders(exchange) {
while (true) {
try {
const orders = await exchange.watchOrders() // await here
console.log(orders)
} catch (e) {
console.log(e)
}
}
}
async function watchBalance(exchange) {
while (true) {
try {
const balance = await exchange.watchBalance() // await here
console.log(balance)
} catch (e) {
console.log(e)
}
}
}
async function main() {
const exchange = new ccxt.pro.binance({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
'password': 'IF NECESSARY',
// etc...
})
await exchange.loadMarkets () // await here
// exchange.verbose = true // uncomment for debugging purposes if necessary
watchOrders(exchange) // no await
watchBalance(exchange) // no await
await exchange.close()
}
main()
@@ -0,0 +1,26 @@
'use strict';
const ccxt = require ('ccxt');
(async () => {
const exchange = new ccxt.pro.binance ({ enableRateLimit: true })
const symbols = [ 'BTC/USDT', 'ETH/BTC', 'ETH/USDT' ]
const loop = async (symbol) => {
while (true) {
try {
const orderbook = await exchange.watchOrderBook (symbol)
console.log (new Date (), symbol, orderbook['asks'][0], orderbook['bids'][0])
} catch (e) {
console.log (symbol, e)
// do nothing and retry on next loop iteration
// throw e // uncomment to break all loops in case of an error in any one of them
// break // you can also break just this one loop if it fails
}
}
}
await Promise.all (symbols.map (symbol => loop (symbol)))
}) ()
@@ -0,0 +1,28 @@
'use strict';
const ccxt = require ('ccxt');
(async () => {
const exchange = new ccxt.pro.binance ({ enableRateLimit: true })
const symbols = [ 'BTC/USDT', 'ETH/BTC', 'ETH/USDT' ]
await Promise.all (symbols.map (symbol =>
(async () => {
while (true) {
try {
const orderbook = await exchange.watchOrderBook (symbol)
console.log (new Date (), symbol, orderbook['asks'][0], orderbook['bids'][0])
} catch (e) {
console.log (symbol, e)
// do nothing and retry on next loop iteration
// throw e // uncomment to break all loops in case of an error in any one of them
// break // you can also break just this one loop if it fails
}
}
}) ())
)
}) ()
@@ -0,0 +1,30 @@
'use strict';
const ccxt = require ('ccxt')
, SocksProxyAgent = require ('socks-proxy-agent')
, socks = 'socks://127.0.0.1:7000'
, socksAgent = new SocksProxyAgent (socks)
, exchange = new ccxt.binance ({
enableRatLimit: true,
httpsAgent: socksAgent, // ←--------------------- socksAgent here
options: {
'ws': {
'options': { agent: socksAgent }, // ←--- socksAgent here
},
},
})
;(async () => {
console.log (socks)
const symbol = 'BTC/USDT'
await exchange.loadMarkets ()
console.log ('Markets loaded')
while (true) {
try {
const orderbook = await exchange.watchOrderBook (symbol)
console.log (exchange.iso8601 (exchange.milliseconds()), symbol, orderbook['asks'][0], orderbook['bids'][0])
} catch (e) {
console.log (e.constructor.name, e.message)
}
}
}) ()
@@ -0,0 +1,40 @@
'use strict';
const ccxt = require ('../../../ccxt');
async function watchOrderBook (exchange, symbol) {
while (true) {
try {
const method = exchange.has.watchOrderBook ? 'watchOrderBook' : 'fetchOrderBook'
const orderbook = await exchange[method](symbol)
console.log (new Date (), exchange.id, symbol, orderbook['asks'][0], orderbook['bids'][0])
} catch (e) {
console.log (symbol, e)
process.exit ()
}
}
}
async function watchExchange (exchangeId, symbols) {
const exchange = new ccxt.pro[exchangeId] ()
await exchange.loadMarkets ()
await Promise.all (symbols.map (symbol => watchOrderBook (exchange, symbol)))
}
async function main () {
const streams = {
'ftx': [
'BTC/USDT',
'ETH/BTC',
],
'coinex': [
'BTC/USDT',
'ETH/BTC',
],
};
const entries = Object.entries (streams)
await Promise.all (entries.map (([ exchangeId, symbols ]) => watchExchange (exchangeId, symbols)))
}
main()
@@ -0,0 +1,38 @@
'use strict';
const ccxt = require ('../../../ccxt');
async function watchOrderBook (exchange, symbol) {
while (true) {
try {
const orderbook = await exchange.watchOrderBook (symbol)
console.log (new Date (), exchange.id, symbol, orderbook['asks'][0], orderbook['bids'][0])
} catch (e) {
console.log (symbol, e)
}
}
}
async function watchExchange (exchangeId, symbols) {
const exchange = new ccxt.pro[exchangeId] ()
await exchange.loadMarkets ()
await Promise.all (symbols.map (symbol => watchOrderBook (exchange, symbol)))
}
async function main () {
const streams = {
'binance': [
'BTC/USDT',
'ETH/BTC',
],
'ftx': [
'BTC/USDT',
'ETH/BTC',
],
};
const entries = Object.entries (streams)
await Promise.all (entries.map (([ exchangeId, symbols ]) => watchExchange (exchangeId, symbols)))
}
main()
@@ -0,0 +1,40 @@
'use strict';
const ccxt = require ('../../../ccxt');
console.log ('CCXT Version:', ccxt.version)
async function watchTickerLoop (exchange, symbol) {
// exchange.verbose = true // uncomment for debugging purposes if necessary
while (true) {
try {
const ticker = await exchange.watchTicker (symbol)
console.log (new Date (), exchange.id, symbol, ticker['last'])
} catch (e) {
console.log (symbol, e)
// do nothing and retry on next loop iteration
// throw e // uncomment to break all loops in case of an error in any one of them
// break // you can also break just this one loop if it fails
}
}
}
async function exchangeLoop (exchangeId, symbols) {
const exchange = new ccxt.pro[exchangeId]()
await exchange.loadMarkets ()
const loops = symbols.map (symbol => watchTickerLoop (exchange, symbol))
await Promise.all (loops)
await exchange.close ()
}
async function main () {
const exchanges = {
'binance': [ 'BTC/USDT', 'ETH/USDT' ],
'ftx': [ 'BTC/USD', 'ETH/USD' ],
}
const loops = Object.entries (exchanges).map (([ exchangeId, symbols ]) => exchangeLoop (exchangeId, symbols))
await Promise.all (loops)
}
main ()
@@ -0,0 +1,27 @@
'use strict';
const ccxt = require ('ccxt');
async function watchOrderBook (exchangeId, symbol) {
const exchange = new ccxt.pro[exchangeId] ()
while (true) {
try {
const orderbook = await exchange.watchOrderBook (symbol)
console.log (new Date (), exchange.id, symbol, orderbook['asks'][0], orderbook['bids'][0])
} catch (e) {
console.log (symbol, e)
}
}
}
async function main () {
const streams = {
'binance': 'BTC/USDT',
'ftx': 'BTC/USDT',
};
await Promise.all (Object.entries (streams).map (([ exchangeId, symbol ]) => watchOrderBook (exchangeId, symbol)))
}
main()
@@ -0,0 +1,43 @@
'use strict';
const ccxt = require ('../../../ccxt');
console.log ('CCXT Version:', ccxt.version);
async function watchExchange (exchangeId, symbol) {
const exchange = new ccxt.pro[exchangeId] ({
newUpdates: true,
})
await exchange.loadMarkets ();
// exchange.verbose = true // uncomment for debugging purposes if necessary
while (true) {
try {
const trades = await exchange.watchTrades (symbol)
for (let i = 0; i < trades.length; i++) {
const trade = trades[i]
console.log (exchange.iso8601 (exchange.milliseconds ()), exchange.id, trade['symbol'], trade['id'], trade['datetime'], trade['price'], trade['amount'])
}
} catch (e) {
console.log (symbol, e)
}
}
}
async function main () {
const streams = {
'binance': 'BTC/USDT',
'okex': 'BTC/USDT',
'kraken': 'BTC/USD',
};
const values = Object.entries (streams)
const promises = values.map (([ exchangeId, symbol ]) => watchExchange (exchangeId, symbol))
await Promise.all (promises)
}
main ()
@@ -0,0 +1,42 @@
'use strict';
const ccxt = require ('../../../ccxt');
(async () => {
const streams = {
'binance': 'BTC/USDT',
'okex': 'BTC/USDT'
};
await Promise.all (Object.keys (streams).map (exchangeId =>
(async () => {
const exchange = new ccxt.pro[exchangeId] ({
enableRateLimit: true,
options: {
tradesLimit: 100, // lower = better, 1000 by default
},
})
const symbol = streams[exchangeId]
let lastId = ''
while (true) {
console.log ('---')
try {
const trades = await exchange.watchTrades (symbol)
for (let i = 0; i < trades.length; i++) {
const trade = trades[i]
if (trade['id'] > lastId) {
console.log (exchange.iso8601 (exchange.milliseconds ()), exchange.id, trade['symbol'], trade['id'], trade['datetime'], trade['price'], trade['amount'])
lastId = trade['id']
}
}
} catch (e) {
console.log (symbol, e)
}
}
}) ())
)
}) ()
@@ -0,0 +1,29 @@
'use strict';
const ccxt = require ('ccxt');
console.log ('CCXT Version:', ccxt.version)
async function watchTrades (exchange, symbol) {
while (true) {
try {
const trades = await exchange.watchTrades (symbol)
console.log (new Date (), exchange.id, symbol, trades.length, 'trades')
} catch (e) {
console.log (symbol, e)
}
}
}
async function main () {
const symbols = [ 'USDT/THB', 'BTC/THB', 'ETH/THB' ]
const exchange = new ccxt.pro.zipmex({
'newUpdates': true
})
const markets = await exchange.loadMarkets ()
exchange.verbose = true
await Promise.all (symbols.map ((symbol) => watchTrades (exchange, symbol)))
}
main()
@@ -0,0 +1,29 @@
// see this issue for details
// https://github.com/ccxt/ccxt/issues/6659
const ccxt = require ('ccxt')
const exchange = new ccxt.pro.kraken ()
function yellow (s) {
return '\x1b[33m' + s + '\x1b[0m'
}
async function runWs () {
while (1) {
const book = await exchange.watchOrderBook ('ETH/BTC')
console.log (new Date (), 'WS ', book['datetime'], book['bids'][0][0], book['asks'][0][0])
}
}
async function runRest () {
while (1) {
const book = await exchange.fetchOrderBook ('ETH/BTC')
const timestamp = new Date (exchange.last_response_headers['Date']).getTime ()
const datetime = exchange.iso8601 (timestamp)
console.log (new Date (), 'REST', yellow (datetime), book['bids'][0][0], book['asks'][0][0])
}
}
runWs ()
runRest ()
@@ -0,0 +1,76 @@
<?php
error_reporting(E_ALL);
date_default_timezone_set('UTC');
$root = dirname(dirname(dirname(dirname(__FILE__))));
include $root . '/ccxt.php';
function create_exchange($exchange_id, $config) {
$keys = array(
'ids',
'markets',
'markets_by_id',
'currencies',
'currencies_by_id',
'base_currencies',
'quote_currencies',
'symbols',
);
$exchange_class = '\\ccxt\\pro\\' . $exchange_id;
$exchange = new $exchange_class($config);
$markets_on_disk = "./{$exchange_id}.markets.json";
$exchange->verbose = true; // this is a debug output to demonstrate which networking calls are being issued
if (file_exists($markets_on_disk)) {
$cache = json_decode(file_get_contents($markets_on_disk), true);
foreach ($keys as $key) {
$exchange->{$key} = $cache[$key];
}
} else {
$markets = yield $exchange->load_markets();
$cache = array();
foreach ($keys as $key) {
$cache[$key] = $exchange->{$key};
}
file_put_contents($markets_on_disk, json_encode($cache));
}
return $exchange;
}
$exchanges = array(
array('binance', array(
'id' => 'binance1',
'apiKey' => 'YOUR_API_KEY_HERE',
'secret' => 'YOUR_SECRET_HERE',
)),
array('binance', array(
'id' => 'binance2',
'apiKey' => 'YOUR_API_KEY_HERE',
'secret' => 'YOUR_SECRET_HERE',
)),
);
$loop = function($exchange_id, $config) {
$exchange = yield create_exchange($exchange_id, $config);
$exchange->verbose = true;
while (true) {
$response = yield $exchange->watch_balance();
print('--------------------------------------------------------------');
print($exchange->id);
print($response);
}
};
foreach ($exchanges as $exchange) {
\React\Async\coroutine($loop, $exchange[0], $exchange[1]);
}
@@ -0,0 +1,27 @@
<?php
$root = dirname(dirname(dirname(dirname(__FILE__))));
include $root . '/ccxt.php';
$config = array('enableRateLimit' => true);
$binance = new \ccxt\pro\binance($config);
$bittrex = new \ccxt\pro\bittrex($config);
$symbol = "BTC/USDT";
$loop = function($exchange, $symbol) {
echo 'got inside' . PHP_EOL;
for ($i = 0; $i < 5; $i++) {
$ticker = yield $exchange->watch_ticker($symbol);
print_ticker($ticker, $exchange->id, $symbol);
}
};
function print_ticker($ticker, $exchange_name, $symbol) {
$bid = $ticker['bid'];
$ask = $ticker['ask'];
echo "$exchange_name $symbol - bid: $bid <> ask: $ask" . PHP_EOL;
}
\React\Async\coroutine($loop, $bittrex, $symbol);
\React\Async\coroutine($loop, $binance, $symbol);
@@ -0,0 +1,30 @@
<?php
$root = dirname(dirname(dirname(dirname(__FILE__))));
include $root . '/ccxt.php';
$id = 'aax';
$exchange_class = '\\ccxt\\pro\\' . $id;
$exchange = new $exchange_class(array(
'enableRateLimit' => true,
));
$symbols = array('BTC/USDT', 'ETH/USDT', 'ETH/BTC');
function print_orderbook($orderbook, $symbol) {
$id = isset($orderbook['nonce']) ? $orderbook['nonce'] : $orderbook['datetime'];
echo $id, ' ', $symbol, ' ',
count($orderbook['asks']), ' asks ', json_encode($orderbook['asks'][0]), ' ',
count($orderbook['bids']), ' bids ', json_encode($orderbook['bids'][0]), "\n";
}
$loop = function($exchange, $symbol) {
while (true) {
$orderbook = yield $exchange->watch_order_book($symbol);
print_orderbook($orderbook, $symbol);
}
};
foreach ($symbols as $symbol) {
\React\Async\coroutine($loop, $exchange, $symbol);
}
@@ -0,0 +1,41 @@
<?php
error_reporting(E_ALL);
date_default_timezone_set('UTC');
include dirname(dirname(dirname(dirname(__FILE__)))). '/ccxt.php';
$binance_id = '\\ccxt\\pro\\binance';
$binance_exchange = new $binance_id( /*[ 'apiKey' => _YOUR_APIKEY_HERE_, 'secret' => _YOUR_SECRET_HERE_ ]*/ );
$ftx_id = '\\ccxt\\pro\\ftx';
$ftx_exchange = new $ftx_id( /*['apiKey' => _YOUR_APIKEY_HERE_, 'secret' => _YOUR_SECRET_HERE_]*/ );
$wrapper_func = function($exchange, $symbol, $method_name) {
if ($exchange->has[$method_name]) {
print ("Starting $method_name for $exchange->id -> $symbol\n");
while (true) {
try {
$orderbook = yield $exchange->$method_name($symbol);
print("$exchange->id -> $method_name -> $symbol : " . substr(json_encode($orderbook), 0 , 70) . "...\n");
} catch (\Exception $ex) {
print($ex->getMessage());
sleep(5);
}
}
} else {
print ($exchange->id . " API yet doesnt support $method_name");
}
};
function runAsync (...$args) {
\React\Async\coroutine(...$args);
}
// *** uncomment whichever methods you want to test ***
// runAsync($wrapper_func, ...[$exchange, 'ETH/USDT', 'watchOrderBook']);
// runAsync($wrapper_func, ...[$exchange, 'ETH/USDT', 'watchTicker']);
// runAsync($wrapper_func, ...[$exchange, 'ETH/USDT', 'watchOrders']);
// runAsync($wrapper_func, ...[$exchange, 'ETH/USDT', 'watchMyTrades']);
runAsync($wrapper_func, ...[$binance_exchange, 'SOL/USDT', 'watchTrades']);
runAsync($wrapper_func, ...[$ftx_exchange, 'ETH/USDT', 'watchTrades']);
@@ -0,0 +1,34 @@
import ccxt.pro
from pprint import pprint
from asyncio import run
print('CCXT Version:', ccxt.__version__)
async def main():
exchange = ccxt.pro.binance({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
})
markets = await exchange.load_markets()
# exchange.verbose = True # uncomment for debugging purposes if necessary
symbol = 'ETH/BTC'
type = 'limit' # or 'market'
side = 'sell' # or 'buy'
amount = 1.0
price = 0.060154 # or None
order = await exchange.create_order(symbol, type, side, amount, price)
canceled = await exchange.cancel_order(order['id'], order['symbol'])
pprint(canceled)
await exchange.close()
run(main())
@@ -0,0 +1,53 @@
# -*- coding: utf-8 -*-
import ccxt.pro
from asyncio import run
print('CCXT Version:', ccxt.__version__)
# This example will run silent and will return your balance only when the balance is updated.
#
# 1. launch the example with your keys and keep it running
# 2. go to the trading section on the website
# 3. place a order on a spot market
# 4. see your balance updated in the example
#
# Warning! This example might produce a lot of output to your screen
async def watch_balance(exchange):
await exchange.load_markets()
# exchange.verbose = True # uncomment for debugging purposes if necessary
balance = await exchange.fetch_balance()
print('---------------------------------------------------------')
print(exchange.iso8601(exchange.milliseconds()))
print(balance)
print('')
while True:
try:
update = await exchange.watch_balance()
balance = exchange.deep_extend(balance, update)
# it will print the balance update when the balance changes
# if the balance remains unchanged the exchange will not send it
print('---------------------------------------------------------')
print(exchange.iso8601(exchange.milliseconds()))
print(balance)
print('')
except Exception as e:
print('watch_balance() failed')
print(type(e).__name__, str(e))
break
async def main():
exchange = ccxt.pro.binance({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
})
await watch_balance(exchange)
await exchange.close()
run(main())
@@ -0,0 +1,39 @@
import ccxt
import ccxt.pro
import asyncio
from pprint import pprint
loop = asyncio.get_event_loop()
async def print_balance(exchange, market_type):
while True:
try:
balance = await exchange.watch_balance({'type': market_type})
pprint(balance)
print('balance of ' + market_type, balance)
print(exchange.options[market_type])
except ccxt.BaseError as e:
print(type(e), e)
except Exception as e:
print(type(e), e)
async def main():
exchange = ccxt.pro.binance({
"apiKey": "",
"secret": "",
'enableRateLimit': True,
'newUpdates': True,
})
# you must make an order a transfer first to the websocket to send updates
asyncio.ensure_future(print_balance(exchange, 'future'))
asyncio.ensure_future(print_balance(exchange, 'delivery')) # inverse futures settled in BTC
asyncio.ensure_future(print_balance(exchange, 'spot'))
asyncio.run(main())
asyncio.ensure_future(main())
loop.run_forever()
@@ -0,0 +1,22 @@
import ccxt.pro
from asyncio import run
async def main():
exchange = ccxt.pro.binance({
'options': {
'defaultType': 'future',
},
})
symbol = 'BTC/USDT'
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
print(orderbook['bids'][0], orderbook['asks'][0])
except Exception as e:
print(type(e).__name__, str(e))
await exchange.close()
run(main())
@@ -0,0 +1,27 @@
import ccxt.pro as ccxt
from asyncio import run
print('CCXT Version:', ccxt.__version__)
async def main():
exchange = ccxt.pro.binance({
'options': {
'defaultType': 'future', # spot, margin, future, delivery
},
})
# or
# exchange = ccxt.pro.binanceusdm()
# or
# exchange = ccxt.pro.binancecoinm()
symbol = 'BTC/USDT'
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
print(exchange.iso8601(exchange.milliseconds()), exchange.id, symbol, 'ask:', orderbook['asks'][0], 'bid:', orderbook['bids'][0])
except Exception as e:
print(type(e).__name__, str(e))
break
await exchange.close()
run(main())
@@ -0,0 +1,42 @@
import ccxt.pro
from asyncio import run, gather
print('CCXT Pro version', ccxt.pro.__version__)
async def watch_order_book(exchange, symbol):
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
datetime = exchange.iso8601(exchange.milliseconds())
print(datetime, orderbook['nonce'], symbol, orderbook['asks'][0], orderbook['bids'][0])
except Exception as e:
print(type(e).__name__, str(e))
break
async def reload_markets(exchange, delay):
while True:
try:
await exchange.sleep(delay)
markets = await exchange.load_markets(True)
datetime = exchange.iso8601(exchange.milliseconds())
print(datetime, 'Markets reloaded')
except Exception as e:
print(type(e).__name__, str(e))
break
async def main():
exchange = ccxt.pro.binance()
await exchange.load_markets()
# exchange.verbose = True
symbol = 'BTC/USDT'
delay = 60000 # every minute = 60 seconds = 60000 milliseconds
loops = [watch_order_book(exchange, symbol), reload_markets(exchange, delay)]
await gather(*loops)
await exchange.close()
run(main())
@@ -0,0 +1,73 @@
# -*- coding: utf-8 -*-
import ccxt.pro
from asyncio import gather, run
orderbooks = {}
def handle_all_orderbooks(orderbooks):
print('We have the following orderbooks:')
for id, orderbooks_by_symbol in orderbooks.items():
for symbol in orderbooks_by_symbol.keys():
orderbook = orderbooks_by_symbol[symbol]
print(ccxt.pro.Exchange.iso8601(orderbook['timestamp']), id, symbol, orderbook['asks'][0], orderbook['bids'][0])
async def symbol_loop(exchange, id, symbol):
print('Starting', id, symbol)
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
orderbooks[id] = orderbooks.get(id, {})
orderbooks[id][symbol] = orderbook
print('===========================================================')
#
# here you can do what you want
# with the most recent versions of each orderbook you have so far
#
# you can also wait until all of them are available
# by just looking into all the orderbooks and counting them
#
# we just print them here to keep this example simple
#
handle_all_orderbooks(orderbooks)
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
break # you can break just this one loop if it fails
async def exchange_loop(id, config):
print('Starting', id)
exchange = getattr(ccxt.pro, config['id'])({
'options': config['options'],
})
loops = [symbol_loop(exchange, id, symbol) for symbol in config['symbols']]
await gather(*loops)
await exchange.close()
async def main():
configs = {
'Exchange A (Binance spot)': {
'id': 'binance',
'symbols': ['BTC/USDT', 'ETH/BTC','ETH/USDT'],
'options': {
'defaultType': 'spot',
},
},
'Exchange B (Binance futures)': {
'id': 'binance',
'symbols': ['BTC/USDT', 'ETH/USDT'],
'options': {
'defaultType': 'future',
},
},
}
loops = [exchange_loop(id, config) for id, config in configs.items()]
await gather(*loops)
run(main())
@@ -0,0 +1,51 @@
import ccxt.pro as ccxt
import asyncio
orderbooks = {}
def when_orderbook_changed(exchange_spot, symbol, orderbook):
# this is a common handler function
# it is called when any of the orderbook is updated
# it has access to both the orderbook that was updated
# as well as the rest of the orderbooks
# ...................................................................
print('-------------------------------------------------------------')
print('Last updated:', exchange_spot.iso8601(exchange_spot.milliseconds()))
# ...................................................................
# print just one orderbook here
# print(orderbook['datetime'], symbol, orderbook['asks'][0], orderbook['bids'][0])
# ...................................................................
# or print all orderbooks that have been already subscribed-to
for symbol, orderbook in orderbooks.items():
print(orderbook['datetime'], symbol, orderbook['asks'][0], orderbook['bids'][0])
async def watch_one_orderbook(exchange_spot, symbol):
# a call cost of 1 in the queue of subscriptions
# means one subscription per exchange.rateLimit milliseconds
your_delay = 1
await exchange_spot.throttle(your_delay)
while True:
try:
orderbook = await exchange_spot.watch_order_book(symbol)
orderbooks[symbol] = orderbook
when_orderbook_changed(exchange_spot, symbol, orderbook)
except Exception as e:
print(type(e).__name__, str(e))
async def watch_some_orderbooks(exchange_spot, symbol_list):
loops = [watch_one_orderbook(exchange_spot, symbol) for symbol in symbol_list]
# let them run, don't for all tasks cause they execute asynchronously
# don't print here
await asyncio.gather(*loops)
async def main():
exchange_spot = ccxt.binance()
await exchange_spot.load_markets()
await watch_some_orderbooks(exchange_spot, ['ZEN/USDT', 'RUNE/USDT', 'AAVE/USDT', 'SNX/USDT'])
await exchange_spot.close()
asyncio.run(main())
@@ -0,0 +1,40 @@
# -*- coding: utf-8 -*-
from asyncio import run
import ccxt.pro as ccxt
from pprint import pprint
# This example will run silent and will return your balance only when the balance is updated.
# 1. launch the example with your keys and keep it running
# 2. go to the margin trading on the website
# 3. place a margin order on a spot market
# 4. see your balance updated in the example
async def main():
exchange = ccxt.pro.binance({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
'options': {
'defaultType': 'margin',
},
# comment it out if you don't want debug output
# this is for the demo purpose only (to show the communication)
'verbose': True,
})
while True:
try:
balance = await exchange.watch_balance()
# it will print the balance update when the balance changes
# if the balance remains unchanged the exchange will not send it
pprint(balance)
except Exception as e:
print('watch_balance() failed')
print(e)
break
await exchange.close()
run(main())
@@ -0,0 +1,43 @@
import ccxt.pro
from asyncio import run
print('CCXT Pro version', ccxt.pro.__version__)
def table(values):
first = values[0]
keys = list(first.keys()) if isinstance(first, dict) else range(0, len(first))
widths = [max([len(str(v[k])) for v in values]) for k in keys]
string = ' | '.join(['{:<' + str(w) + '}' for w in widths])
return "\n".join([string.format(*[str(v[k]) for k in keys]) for v in values])
async def main():
exchange = ccxt.pro.binance({
# 'options': {
# 'OHLCVLimit': 1000, # how many candles to store in memory by default
# },
})
symbol = 'ETH/USDT' # or BNB/USDT, etc...
timeframe = '1m' # 5m, 1h, 1d
limit = 10 # how many candles to return max
method = 'watchOHLCV'
if (method in exchange.has) and exchange.has[method]:
max_iterations = 100000 # how many times to repeat the loop before exiting
for i in range(0, max_iterations):
try:
ohlcvs = await exchange.watch_ohlcv(symbol, timeframe, None, limit)
now = exchange.milliseconds()
print('\n===============================================================================')
print('Loop iteration:', i, 'current time:', exchange.iso8601(now), symbol, timeframe)
print('-------------------------------------------------------------------------------')
print(table([[exchange.iso8601(o[0])] + o[1:] for o in ohlcvs]))
except Exception as e:
print(type(e).__name__, str(e))
break
await exchange.close()
else:
print(exchange.id, method, 'is not supported or not implemented yet')
run(main())
@@ -0,0 +1,34 @@
# -*- coding: utf-8 -*-
from asyncio import run
import ccxt.pro as ccxt
class MyBinance(ccxt.binance):
def handle_order_book_message(self, client, message, orderbook):
asks = self.safe_value(message, 'a', [])
bids = self.safe_value(message, 'b', [])
# printing high-frequency updates is a resource-heavy task
# this print statement is here just to demonstrate the work of it
# replace it with you logic for processing individual updates
print('Updates:', {
'asks': asks,
'bids': bids,
})
return super(MyBinance, self).handle_order_book_message(client, message, orderbook);
async def main():
exchange = MyBinance()
symbol = 'BTC/USDT'
print('Watching', exchange.id, symbol)
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
# break # you can also break just this one loop if it fails
await exchange.close()
run(main())
@@ -0,0 +1,63 @@
import ccxt.pro
from asyncio import run, gather
data = {
'orderbook': None,
'balance': None,
}
def common_handler(exchange, symbol):
market = exchange.market(symbol)
base = market['base']
quote = market['quote']
balance = data['balance']
orderbook = data['orderbook']
if balance and orderbook:
total = balance['total']
tip = [ orderbook['asks'][0], orderbook['bids'][0] ]
print(exchange.iso8601(exchange.milliseconds()), symbol, 'orderbook:', tip, 'balance:', total)
async def watch_order_book(exchange, symbol):
while True:
try:
data['orderbook'] = await exchange.watch_order_book(symbol)
common_handler(exchange, symbol)
except Exception as e:
print(type(e).__name__, str(e))
break # break this loop
async def watch_balance(exchange, symbol):
while True:
try:
data['balance'] = await exchange.watch_balance()
common_handler(exchange, symbol)
except Exception as e:
print(type(e).__name__, str(e))
break # break this loop
async def main():
exchange = ccxt.pro.binance({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
})
await exchange.load_markets()
symbol = 'BTC/USDT'
while True:
try:
loops = [
watch_order_book(exchange, symbol),
watch_balance(exchange, symbol)
]
await gather(*loops)
except Exception as e:
print(type(e).__name__, str(e))
break
await exchange.close()
run(main())
@@ -0,0 +1,59 @@
# Python
import ccxt.pro
from asyncio import run, gather
from pprint import pprint
async def place_delayed_order(exchange, symbol, amount, price):
try:
await exchange.sleep(5000) # wait a bit
order = await exchange.create_limit_buy_order(symbol, amount, price)
print(exchange.iso8601(exchange.milliseconds()), 'place_delayed_order')
pprint(order)
print('---------------------------------------------------------------')
except Exception as e:
# break
print(e)
async def watch_orders_loop(exchange, symbol):
while True:
try:
orders = await exchange.watch_orders(symbol)
print(exchange.iso8601(exchange.milliseconds()), 'watch_orders_loop', len(orders), ' last orders cached')
print('---------------------------------------------------------------')
except Exception as e:
# break
print(e)
async def watch_balance_loop(exchange):
while True:
try:
balance = await exchange.watch_balance()
print(exchange.iso8601(exchange.milliseconds()), 'watch_balance_loop')
pprint(balance)
print('---------------------------------------------------------------')
except Exception as e:
# break
print(e)
async def main():
exchange = ccxt.pro.binanceusdm({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
})
symbol = 'BTC/USDT'
amount = 0.001
price = 11111
loops = [
watch_orders_loop(exchange, symbol),
watch_balance_loop(exchange),
place_delayed_order(exchange, symbol, amount, price)
]
await gather(*loops)
await exchange.close()
run(main())
@@ -0,0 +1,48 @@
# -*- coding: utf-8 -*-
from asyncio import run, gather
import os
import sys
root = os.path.dirname(os.path.dirname(os.path.dirname(os.path.abspath(__file__))))
sys.path.append(root + '/python')
import ccxt.pro # noqa: E402
print('CCXT Version:', ccxt.__version__)
async def print_balance_continuously(exchange):
while True:
try:
print('-----------------------------------------------------------')
await exchange.load_markets()
balance = await exchange.watch_balance()
print(exchange.iso8601(exchange.milliseconds()), exchange.id)
for currency, value in balance['total'].items():
print(value, currency)
except Exception as e:
print('-----------------------------------------------------------')
print(exchange.iso8601(exchange.milliseconds()), exchange.id, type(e), e)
await exchange.sleep(300000) # sleep 5 minutes and retry
async def main():
config = {
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
}
exchange_ids = [
'binance',
'binanceusdm',
'binancecoinm',
]
exchanges = [getattr(ccxt.pro, exchange_id)(config) for exchange_id in exchange_ids]
printing_loops = [print_balance_continuously(exchange) for exchange in exchanges]
await gather(*printing_loops)
closing_tasks = [exchange.close() for exchange in exchanges]
await gather(*closing_tasks)
run(main())
@@ -0,0 +1,41 @@
import ccxt.pro
from asyncio import run
def table(values):
first = values[0]
keys = list(first.keys()) if isinstance(first, dict) else range(0, len(first))
widths = [max([len(str(v[k])) for v in values]) for k in keys]
string = ' | '.join(['{:<' + str(w) + '}' for w in widths])
return "\n".join([string.format(*[str(v[k]) for k in keys]) for v in values])
async def main():
exchange = ccxt.pro.bitmex({
# 'options': {
# 'OHLCVLimit': 1000, # how many candles to store in memory by default
# },
})
symbol = 'BTC/USD'
timeframe = '1m' # 5m, 1h, 1d
limit = 10 # how many candles to return max
method = 'watchOHLCV'
if (method in exchange.has) and exchange.has[method]:
max_iterations = 100 # how many times to repeat the loop before exiting
for i in range(0, max_iterations):
try:
ohlcvs = await exchange.watch_ohlcv(symbol, timeframe, None, limit)
now = exchange.milliseconds()
print('\n===============================================================================')
print('Loop iteration:', i, 'current time:', exchange.iso8601(now), symbol, timeframe)
print('-------------------------------------------------------------------------------')
print(table([[exchange.iso8601(o[0])] + o[1:] for o in ohlcvs]))
except Exception as e:
print(type(e).__name__, str(e))
break
await exchange.close()
else:
print(exchange.id, method, 'is not supported or not implemented yet')
run(main())
@@ -0,0 +1,73 @@
import ccxt.pro
from asyncio import run, gather
def table(values):
first = values[0]
keys = list(first.keys()) if isinstance(first, dict) else range(0, len(first))
widths = [max([len(str(v[k])) for v in values]) for k in keys]
string = ' | '.join(['{:<' + str(w) + '}' for w in widths])
return "\n".join([string.format(*[str(v[k]) for k in keys]) for v in values])
async def watch_ticker(color, duration, exchange, symbol):
method = 'watchTicker'
if (method in exchange.has) and exchange.has[method]:
start = exchange.milliseconds()
i = 1
while True:
ticker = await exchange.watch_ticker(symbol)
now = exchange.milliseconds()
# start color code
print(color, 'Ticker ========================================================================')
print(exchange.iso8601(now), symbol, 'iteration:', i, 'last price:', ticker['last'])
print('-------------------------------------------------------------------------------')
# pprint.pprint(ticker) # uncomment for a lengthy complete printout
print('\x1b[0m') # stop color code
i += 1
if (start + duration) < now:
break
else:
raise Exception(exchange.id + ' ' + method + ' is not supported or not implemented yet')
async def watch_ohlcv(color, duration, exchange, symbol, timeframe, limit):
method = 'watchOHLCV'
if (method in exchange.has) and exchange.has[method]:
start = exchange.milliseconds()
i = 1
while True:
ohlcvs = await exchange.watch_ohlcv(symbol, timeframe, None, limit)
now = exchange.milliseconds()
# start color code
print(color, 'OHLCV =========================================================================')
print(exchange.iso8601(now), symbol, timeframe, 'iteration:', i)
print('-------------------------------------------------------------------------------')
print(table([[exchange.iso8601(o[0])] + o[1:] for o in ohlcvs]))
print('\x1b[0m') # stop color code
i += 1
if (start + duration) < now:
break
else:
raise Exception(exchange.id + ' ' + method + ' is not supported or not implemented yet')
# =============================================================================
async def main():
exchange = ccxt.pro.bitmex()
await exchange.load_markets()
duration = 1200000 # run 20 minutes = 1200000 milliseconds
symbol = 'BTC/USD'
limit = 10
loops = [
watch_ticker('\033[35m', duration, exchange, symbol), # magenta
watch_ohlcv('\x1b[33m', duration, exchange, symbol, '1m', limit), # yellow
watch_ohlcv('\x1b[32m', duration, exchange, symbol, '5m', limit), # green
]
await gather(*loops)
await exchange.close()
run(main())
@@ -0,0 +1,23 @@
import ccxt.pro
from asyncio import run
print('CCXT Pro version', ccxt.pro.__version__)
async def main():
exchange = ccxt.pro.bitvavo()
await exchange.load_markets()
exchange.verbose = True
symbol = 'BTC/EUR'
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
print(orderbook['nonce'], symbol, orderbook['asks'][0], orderbook['bids'][0])
except Exception as e:
print(type(e).__name__, str(e))
break
await exchange.close()
run(main())
@@ -0,0 +1,53 @@
# -*- coding: utf-8 -*-
import asyncio
import ccxt.pro
print('CCXT Version:', ccxt.__version__)
async def loop(exchange, symbol, timeframe, complete_candles_only=False):
duration_in_seconds = exchange.parse_timeframe(timeframe)
duration_in_ms = duration_in_seconds * 1000
while True:
try:
trades = await exchange.watch_trades(symbol)
if len(trades) > 0:
current_minute = int(exchange.milliseconds() / duration_in_ms)
ohlcvc = exchange.build_ohlcvc(trades, timeframe)
if complete_candles_only:
ohlcvc = [candle for candle in ohlcvc if int(candle[0] / duration_in_ms) < current_minute]
if len(ohlcvc) > 0:
print('-----------------------------------------------------------')
print("Symbol:", symbol, "timeframe:", timeframe)
print(ohlcvc)
except Exception as e:
print(f"{type(e).__name__}: {(str(e))}")
# raise type(e)(str(e)) # uncomment to break all loops in case of an error in any one of them
# break # you can also break just this one loop if it fails
async def main():
# select the exchange
exchange = ccxt.pro.binance()
if exchange.has['watchTrades']:
markets = await exchange.load_markets()
# Change this value accordingly
timeframe = '1m'
limit = 5
selected_symbols = list(markets.values())[:limit]
# you can also specify the symbols manually
# selected_symbols = ['BTC/USDT', 'ETH/USDT']
# Use this variable to choose if only complete candles
# should be considered
complete_candles_only = True
await asyncio.gather(*[loop(exchange, symbol['symbol'], timeframe, complete_candles_only)
for symbol in selected_symbols])
await exchange.close()
else:
print(exchange.id, 'does not support watchTrades yet')
asyncio.run(main())
@@ -0,0 +1,30 @@
# -*- coding: utf-8 -*-
import ccxt.pro
from asyncio import run
async def main():
exchange = ccxt.pro.coinbase()
method = 'watchTrades'
print('CCXT Pro version', ccxt.pro.__version__)
if exchange.has[method]:
last_id = ''
while True:
try:
trades = await exchange.watch_trades('BTC/USD')
for trade in trades:
if trade['id'] > last_id:
print(exchange.iso8601(exchange.milliseconds()), trade['symbol'], trade['datetime'], trade['price'], trade['amount'])
last_id = trade['id']
except Exception as e:
# stop
await exchange.close()
raise e
# or retry
# pass
else:
raise Exception(exchange.id + ' ' + method + ' is not supported or not implemented yet')
run(main())
@@ -0,0 +1,27 @@
# -*- coding: utf-8 -*-
import ccxt.pro
from asyncio import run
async def main():
exchange = ccxt.pro.coinbase()
method = 'watchTrades'
print('CCXT Pro version', ccxt.pro.__version__)
if exchange.has[method]:
while True:
try:
trades = await exchange.watch_trades('BTC/USD')
num_trades = len(trades)
trade = trades[-1]
print(exchange.iso8601(exchange.milliseconds()), trade['symbol'], trade['datetime'], trade['price'], trade['amount'], 'stored', num_trades, 'trades in cache')
except Exception as e:
# stop
await exchange.close()
raise e
# or retry
# pass
else:
raise Exception(exchange.id + ' ' + method + ' is not supported or not implemented yet')
run(main())
@@ -0,0 +1,22 @@
import ccxt.pro
from asyncio import run
async def consume_all_trades(exchange, symbol):
await exchange.load_markets()
while True:
try:
trades = await exchange.watch_trades(symbol)
print('----------------------------------------------------------------------')
print(exchange.iso8601(exchange.milliseconds()), 'received', len(trades), 'new', symbol, 'trades:')
for trade in trades:
print(exchange.id, symbol, trade['id'], trade['datetime'], trade['amount'], trade['price'])
exchange.trades[symbol].clear()
except Exception as e:
print(type(e).__name__, str(e))
await exchange.close()
exchange = ccxt.pro.bitmex()
symbol = 'BTC/USD'
run(consume_all_trades(exchange, symbol))
@@ -0,0 +1,25 @@
# -*- coding: utf-8 -*-
import asyncio
import ccxt.pro
from datetime import datetime
async def loop(exchange, symbol):
since = datetime.utcnow()
timestamp = int(since.timestamp() * 1000)
while True:
trades = await exchange.watch_trades(symbol, since=timestamp)
print('--------------------------------------------------------------')
print('Received', len(trades), 'after', exchange.iso8601 (timestamp))
print('waiting for next update...')
async def main():
exchange = ccxt.pro.gateio()
await loop(exchange, 'BTC/USDT')
await exchange.close()
if __name__ == '__main__':
asyncio.run(main())
@@ -0,0 +1,31 @@
# -*- coding: utf-8 -*-
from asyncio import run
import ccxt.pro
from pprint import pprint
class MyBinance(ccxt.pro.binance):
def handle_ohlcv(self, client, message):
# add your handling of the original message here
print('intercepted', message)
return super(MyBinance, self).handle_ohlcv(client, message)
async def main():
exchange = MyBinance()
symbol = 'BTC/USDT'
print('Watching', exchange.id, symbol)
while True:
try:
ohlcv = await exchange.watch_ohlcv(symbol, '1m')
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
# break # you can also break just this one loop if it fails
await exchange.close()
if __name__ == "__main__":
print('CCXT Version:', ccxt.__version__)
run(main())
@@ -0,0 +1,31 @@
# -*- coding: utf-8 -*-
import ccxt.pro
from asyncio import gather, run
async def symbol_loop(exchange, symbol):
print('Starting the', exchange.id, 'symbol loop with', symbol)
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
now = exchange.milliseconds()
print(exchange.iso8601(now), exchange.id, symbol, orderbook['asks'][0], orderbook['bids'][0])
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
break # you can break just this one loop if it fails
async def main():
exchange = ccxt.pro.kucoin({
"apiKey": "YOUR_API_KEY",
"secret": "YOUR_API_SECRET",
"password": "YOUR_API_PASSWORD",
})
symbols = ['KDA/USDT', 'KDA/BTC', 'BTC/USDT']
loops = [symbol_loop(exchange, symbol) for symbol in symbols]
await gather(*loops)
await exchange.close()
run(main())
@@ -0,0 +1,56 @@
# -*- coding: utf-8 -*-
import ccxt.pro
from asyncio import gather, run
async def symbol_loop(exchange, method, symbol):
print('Starting', exchange.id, method, symbol)
while True:
try:
response = await getattr(exchange, method)(symbol)
now = exchange.milliseconds()
iso8601 = exchange.iso8601(now)
if method == 'watchOrderBook':
print(iso8601, exchange.id, method, symbol, response['asks'][0], response['bids'][0])
elif method == 'watchTicker':
print(iso8601, exchange.id, method, symbol, response['high'], response['low'], response['bid'], response['ask'])
elif method == 'watchTrades':
print(iso8601, exchange.id, method, symbol, len(response), 'trades')
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
break # you can break just this one loop if it fails
async def method_loop(exchange, method, symbols):
print('Starting', exchange.id, method, symbols)
loops = [symbol_loop(exchange, method, symbol) for symbol in symbols]
await gather(*loops)
async def exchange_loop(exchange_id, methods):
print('Starting', exchange_id, methods)
exchange = getattr(ccxt.pro, exchange_id)()
loops = [method_loop(exchange, method, symbols) for method, symbols in methods.items()]
await gather(*loops)
await exchange.close()
async def main():
exchanges = {
'okex': {
'watchOrderBook': ['BTC/USDT', 'ETH/BTC', 'ETH/USDT'],
'watchTicker': ['BTC/USDT'],
},
'binance': {
'watchOrderBook': ['BTC/USDT', 'ETH/BTC'],
'watchTrades': [ 'ETH/BTC' ],
},
}
loops = [exchange_loop(exchange_id, methods) for exchange_id, methods in exchanges.items()]
await gather(*loops)
run(main())
@@ -0,0 +1,59 @@
# -*- coding: utf-8 -*-
import asyncio
import ccxt.pro
orderbooks = {}
def handle_all_orderbooks(orderbooks):
print('We have the following orderbooks:')
for exchange_id, orderbooks_by_symbol in orderbooks.items():
for symbol in orderbooks_by_symbol.keys():
orderbook = orderbooks_by_symbol[symbol]
print(ccxt.pro.Exchange.iso8601(orderbook['timestamp']), exchange_id, symbol, orderbook['asks'][0], orderbook['bids'][0])
async def symbol_loop(exchange, symbol):
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
orderbooks[exchange.id] = orderbooks.get(exchange.id, {})
orderbooks[exchange.id][symbol] = orderbook
print('===========================================================')
#
# here you can do what you want
# with the most recent versions of each orderbook you have so far
#
# you can also wait until all of them are available
# by just looking into all the orderbooks and counting them
#
# we just print them here to keep this example simple
#
handle_all_orderbooks(orderbooks)
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
break # you can break just this one loop if it fails
async def exchange_loop(exchange_id, symbols):
exchange = getattr(ccxt.pro, exchange_id)()
loops = [symbol_loop(exchange, symbol) for symbol in symbols]
await asyncio.gather(*loops)
await exchange.close()
async def main():
symbols = ['BTC/USDT', 'ETH/BTC']
# symbols = []
exchanges = {
'okex': symbols + ['ETH/USDT'],
'binance': symbols,
}
loops = [exchange_loop(exchange_id, symbols) for exchange_id, symbols in exchanges.items()]
await asyncio.gather(*loops)
asyncio.run(main())
@@ -0,0 +1,56 @@
# -*- coding: utf-8 -*-
import ccxt.pro
from asyncio import run, gather, sleep
orderbooks = {}
def handle_all_orderbooks(orderbooks):
print('We have the following orderbooks:')
for exchange_id, orderbooks_by_symbol in orderbooks.items():
for symbol in orderbooks_by_symbol.keys():
orderbook = orderbooks_by_symbol[symbol]
print(ccxt.pro.Exchange.iso8601(orderbook['timestamp']), exchange_id, symbol, orderbook['asks'][0], orderbook['bids'][0])
async def handling_loop(orderbooks):
delay = 5
while True:
await sleep(delay)
handle_all_orderbooks(orderbooks)
async def symbol_loop(exchange, symbol):
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
orderbooks[exchange.id] = orderbooks.get(exchange.id, {})
orderbooks[exchange.id][symbol] = orderbook
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
break # you can break just this one loop if it fails
async def exchange_loop(exchange_id, symbols):
exchange = getattr(ccxt.pro, exchange_id)()
loops = [symbol_loop(exchange, symbol) for symbol in symbols]
await gather(*loops)
await exchange.close()
async def main():
symbols = ['BTC/USDT', 'ETH/BTC']
# symbols = []
exchanges = {
'okex': symbols + ['ETH/USDT'],
'binance': symbols,
}
loops = [exchange_loop(exchange_id, symbols) for exchange_id, symbols in exchanges.items()]
loops += [handling_loop(orderbooks)]
await gather(*loops)
run(main())
@@ -0,0 +1,83 @@
# -*- coding: utf-8 -*-
import ccxt.pro
from asyncio import gather, run
async def symbol_loop(exchange, method, symbol):
print('Starting', exchange.id, method, symbol)
while True:
try:
response = await getattr(exchange, method)(symbol)
now = exchange.milliseconds()
iso8601 = exchange.iso8601(now)
if method == 'watchOrderBook':
print(iso8601, exchange.id, method, symbol, response['asks'][0], response['bids'][0])
elif method == 'watchTicker':
print(iso8601, exchange.id, method, symbol, response['high'], response['low'], response['bid'], response['ask'])
elif method == 'watchTrades':
print(iso8601, exchange.id, method, symbol, len(response), 'trades')
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
break # you can break just this one loop if it fails
async def symbols_method_loop(exchange, method, symbols):
print('Starting', exchange.id, method, symbols)
loops = [symbol_loop(exchange, method, symbol) for symbol in symbols]
await gather(*loops)
async def method_loop(exchange, method):
print('Starting', exchange.id, method)
while True:
try:
response = await getattr(exchange, method)()
now = exchange.milliseconds()
iso8601 = exchange.iso8601(now)
print(iso8601, exchange.id, method, response)
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
break # you can break just this one loop if it fails
async def exchange_loop(exchange_id, methods, config={}):
print('Starting', exchange_id, methods)
exchange = getattr(ccxt.pro, exchange_id)()
for attr, value in config.items():
setattr(exchange, attr, value)
loops = [symbols_method_loop(exchange, method, symbols) if len(symbols) else method_loop(exchange, method) for method, symbols in methods.items()]
await gather(*loops)
await exchange.close()
async def main():
keys = {
'okex': {
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
},
'binance': {
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
},
}
exchanges = {
'okex': {
'watchOrderBook': ['BTC/USDT', 'ETH/BTC', 'ETH/USDT'],
'watchTicker': ['BTC/USDT'],
'watchBalance': [],
},
'binance': {
'watchOrderBook': ['BTC/USDT', 'ETH/BTC'],
'watchTrades': [ 'ETH/BTC' ],
'watchBalance': [],
},
}
loops = [exchange_loop(exchange_id, methods, keys.get(exchange_id, {})) for exchange_id, methods in exchanges.items()]
await gather(*loops)
run(main())
@@ -0,0 +1,36 @@
# -*- coding: utf-8 -*-
import ccxt.pro
from asyncio import gather, run
async def symbol_loop(exchange, symbol):
print('Starting the', exchange.id, 'symbol loop with', symbol)
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
now = exchange.milliseconds()
print(exchange.iso8601(now), exchange.id, symbol, orderbook['asks'][0], orderbook['bids'][0])
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
break # you can break just this one loop if it fails
async def exchange_loop(exchange_id, symbols):
print('Starting the', exchange_id, 'exchange loop with', symbols)
exchange = getattr(ccxt.pro, exchange_id)()
loops = [symbol_loop(exchange, symbol) for symbol in symbols]
await gather(*loops)
await exchange.close()
async def main():
exchanges = {
'okex': ['BTC/USDT', 'ETH/BTC', 'ETH/USDT'],
'binance': ['BTC/USDT', 'ETH/BTC'],
}
loops = [exchange_loop(exchange_id, symbols) for exchange_id, symbols in exchanges.items()]
await gather(*loops)
run(main())
@@ -0,0 +1,39 @@
# -*- coding: utf-8 -*-
import ccxt.pro
from asyncio import gather, run
async def symbol_loop(exchange, symbol):
print('Starting the', exchange.id, 'symbol loop with', symbol)
while True:
try:
trades = await exchange.watch_trades(symbol)
now = exchange.milliseconds()
print(exchange.iso8601(now), exchange.id, symbol, len(trades), trades[-1]['price'])
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
break # you can break just this one loop if it fails
async def exchange_loop(exchange_id, symbols):
print('Starting the', exchange_id, 'exchange loop with', symbols)
exchange = getattr(ccxt.pro, exchange_id)({
'newUpdates': True, # https://github.com/ccxt/ccxt/wiki/ccxt.pro.manual#incremental-data-structures
})
loops = [symbol_loop(exchange, symbol) for symbol in symbols]
await gather(*loops)
await exchange.close()
async def main():
exchanges = {
'okex': ['BTC/USDT', 'ETH/BTC', 'ETH/USDT'],
'binance': ['BTC/USDT', 'ETH/BTC'],
}
loops = [exchange_loop(exchange_id, symbols) for exchange_id, symbols in exchanges.items()]
await gather(*loops)
run(main())
@@ -0,0 +1,30 @@
# -*- coding: utf-8 -*-
import asyncio
import ccxt.pro
async def loop(exchange_id, symbol):
exchange = getattr(ccxt.pro, exchange_id)()
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
now = exchange.milliseconds()
print(exchange.iso8601(now), exchange.id, symbol, orderbook['asks'][0], orderbook['bids'][0])
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
break # you can break just this one loop if it fails
await exchange.close()
async def main():
symbols = {
'kraken': 'BTC/USDT',
'binance': 'BTC/USDT',
'bitmex': 'XBT_USDT',
}
await asyncio.gather(*[loop(exchange_id, symbol) for exchange_id, symbol in symbols.items()])
asyncio.run(main())
@@ -0,0 +1,34 @@
import ccxt.pro
import asyncio
import time
async def watch_book(exchange, ticker):
last = None
while True:
try:
orderbook = await exchange.watch_order_book(ticker)
# TODO add timeout within a minute
# TODO add last
top_bid = orderbook['bids'][0][0]
if last != top_bid:
print(f'{int(time.time() * 1000)} top bid for celo on {exchange.name} is {top_bid}')
last = top_bid
except Exception as e:
print(f'{exchange.name} failed {type(e)} {e}')
async def main():
exchange_ids = ['coinbasepro', 'okcoin', 'bittrex']
exchanges = [getattr(ccxt.pro, exchange_id)() for exchange_id in exchange_ids]
try:
done, pending = await asyncio.wait({watch_book(exchange, 'CELO/USD') for exchange in exchanges}, return_when=asyncio.FIRST_EXCEPTION)
for completed in done:
# trigger the exception here
completed.result()
except Exception as e:
print(f'closing all exchanges because of exception {type(e)} {e}')
await asyncio.gather(*[exchange.close() for exchange in exchanges])
asyncio.run(main())
@@ -0,0 +1,50 @@
# -*- coding: utf-8 -*-
from asyncio import run
import ccxt.pro
print('CCXT Pro Version: ', ccxt.pro.__version__)
exchange = ccxt.pro.okex({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_API_SECRET',
'password': 'YOUR_API_PASSWORD',
'options': { 'defaultType': 'swap' },
})
async def main():
await exchange.load_markets()
# exchange.verbose = True # uncomment for debugging
# https://github.com/ccxt/ccxt/wiki/Manual#overriding-unified-params
# https://www.okex.com/docs/en/#swap-swap---orders
symbol = 'BTC/USDT:USDT'
amount = 1 # how may contracts
price = None # or your limit price
side = 'buy' # or 'sell'
future_type = '1' # 1 open long, 2 open short, 3 close long, 4 close short for futures
order_type = '4' # 0 = limit order, 4 = market order
try:
# open long market price order
order = await exchange.create_order(symbol, 'market', side, amount, price, {'type': future_type})
# --------------------------------------------------------------------
# open long market price order
# const order = await exchange.create_order(symbol, type, side, amount, price, {'order_type': order_type})
# --------------------------------------------------------------------
# close short market price order
# const order = await exchange.create_order(symbol, 'market', side, amount, price, {'type': future_type, 'order_type': order_type})
# --------------------------------------------------------------------
# close short market price order
# const order = await exchange.create_order(symbol, '4', side, amount, price, {'order_type': order_type})
# ...
print(order)
except Exception as e:
print(type(e).__name__, str(e))
await exchange.close()
run(main())
@@ -0,0 +1,35 @@
# -*- coding: utf-8 -*-
import asyncio
import ccxt.pro as ccxt
from pprint import pprint
async def main():
exchange = ccxt.pro.okex({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
# okex requires this: https://github.com/ccxt/ccxt/wiki/Manual#authentication
'password': 'YOUR_API_PASSWORD',
# comment it out if you don't want debug output
# this is for the demo purpose only (to show the communication)
'verbose': True,
})
while True:
try:
balance = await exchange.watch_balance({
# okex watch_balance requires a symbol or an instrument_id
'symbol': 'BTC/USDT',
'type': 'margin',
})
# it will print the balance update when the balance changes
# if the balance remains unchanged the exchange will not send it
pprint(balance)
except Exception as e:
print('watch_balance() failed')
print(e)
break
await exchange.close()
asyncio.run(main())
@@ -0,0 +1,37 @@
# -*- coding: utf-8 -*-
import asyncio
import ccxt.pro as ccxt
from pprint import pprint
async def main():
exchange = ccxt.pro.okex({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
# okex requires this: https://github.com/ccxt/ccxt/wiki/Manual#authentication
'password': 'YOUR_API_PASSWORD',
'options': {
'watchBalance': 'margin',
},
# comment it out if you don't want debug output
# this is for the demo purpose only (to show the communication)
'verbose': True,
})
while True:
try:
balance = await exchange.watch_balance({
# okex watch_balance requires a symbol or an instrument_id
'symbol': 'BTC/USDT',
})
# it will print the balance update when the balance changes
# if the balance remains unchanged the exchange will not send it
pprint(balance)
except Exception as e:
print('watch_balance() failed')
print(e)
break
await exchange.close()
asyncio.run(main())
@@ -0,0 +1,36 @@
import ccxt.pro
from asyncio import run
print('CCXT Pro version', ccxt.pro.__version__)
async def main():
exchange = ccxt.pro.okx({
'options': {
'watchOrderBook': {
'depth': 'bbo-tbt', # tick-by-tick best bidask
},
},
})
markets = await exchange.load_markets()
# exchange.verbose = True # uncomment for debugging purposes if necessary
symbol = 'BTC/USDT'
while True:
try:
# -----------------------------------------------------------------
# use this:
# orderbook = await exchange.watch_order_book(symbol)
# print(orderbook['datetime'], symbol, orderbook['asks'][0], orderbook['bids'][0])
# -----------------------------------------------------------------
# or this:
ticker = await exchange.watch_ticker(symbol)
print(ticker['datetime'], symbol, [ticker['ask'], ticker['askVolume']], [ticker['bid'], ticker['bidVolume']])
# -----------------------------------------------------------------
except Exception as e:
print(type(e).__name__, str(e))
break
await exchange.close()
run(main())
@@ -0,0 +1,55 @@
import ccxt.pro
from asyncio import run, ensure_future
from pprint import pprint
print('CCXT Version:', ccxt.__version__)
# on_connected() is called when a client connection is established
# note that the exchange will reuse the same client connection
# some exchanges might require two or more public/private connections
# therefore on_connected() may be called more than once
class MyBinance(ccxt.pro.binance):
def on_connected(self, client, message=None):
print('Connected to', client.url)
ensure_future(create_order(self))
async def create_order(exchange):
symbol = 'BTC/USDT'
type = 'limit'
side = 'buy'
amount = 123.45 # change for your values
price = 54.321 # change for your values
params = {}
try:
order = await exchange.create_order(symbol, type, side, amount, price, params)
print('--------------------------------------------------------------')
print('create_order():')
pprint(order)
except Exception as e:
print(type(e).__name__, str(e))
async def watch_orders(exchange):
while True:
try:
orders = await exchange.watch_orders()
print('--------------------------------------------------------------')
print('watch_orders():')
pprint(orders)
except Exception as e:
print(type(e).__name__, str(e))
break
await exchange.close()
exchange = MyBinance({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
})
run(watch_orders(exchange))
@@ -0,0 +1,35 @@
import ccxt.pro
import asyncio
async def watch_order_book(exchange, symbol):
while True:
orderbook = await exchange.watch_order_book(symbol)
print(orderbook['datetime'], symbol, orderbook['asks'][0], orderbook['bids'][0])
async def watch_trades(exchange, symbol):
while True:
trades = await exchange.watch_trades(symbol)
last = trades[-1]
print(last['datetime'], last['price'], last['amount'])
async def main():
exchange = ccxt.pro.bitstamp()
await exchange.load_markets()
symbol = 'BTC/USD'
while True:
try:
loops = [
watch_order_book(exchange, symbol),
watch_trades(exchange, symbol)
]
await asyncio.gather(*loops)
except Exception as e:
print(type(e).__name__, str(e))
break
await exchange.close()
asyncio.run(main())
@@ -0,0 +1,25 @@
# -*- coding: utf-8 -*-
from asyncio import run
import ccxt.pro
async def loop(exchange, symbol):
await exchange.throttle(10)
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
now = exchange.milliseconds()
print(exchange.iso8601(now), symbol, orderbook['asks'][0], orderbook['bids'][0])
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
# break # you can also break just this one loop if it fails
async def main():
exchange = ccxt.pro.ftx()
symbols = ['BTC/USDT', 'ETH/USDT', 'ETH/BTC']
await asyncio.gather(*[loop(exchange, symbol) for symbol in symbols])
await exchange.close()
run(main())
@@ -0,0 +1,23 @@
import ccxt.pro
from asyncio import run
from pprint import pprint
print('CCXT Version:', ccxt.__version__)
async def main():
exchange = ccxt.pro.phemex({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_SECRET',
})
markets = await exchange.load_markets()
# exchange.verbose = True # uncomment for debugging purposes if necessary
try:
symbol = 'UNI/USDT'
response = await exchange.cancel_all_orders(symbol)
pprint(response)
except Exception as e:
print(type(e).__name__, str(e))
await exchange.close()
run(main())
@@ -0,0 +1,66 @@
# -*- coding: utf-8 -*-
import asyncio
import sys
import os
# ------------------------------------------------------------------------------
root = os.path.dirname(os.path.dirname(os.path.dirname(os.path.dirname(os.path.abspath(__file__)))))
sys.path.append(root + '/python')
# ------------------------------------------------------------------------------
import ccxt.pro
print('CCXT Version:', ccxt.pro.__version__)
orderbooks = {}
def handle_all_orderbooks(exchange, orderbooks, spot, future):
if spot in orderbooks and future in orderbooks:
spot_order_book = orderbooks[spot]
future_order_book = orderbooks[future]
timestamp = exchange.milliseconds()
spot_lag = abs(timestamp - spot_order_book['timestamp']) if spot_order_book['timestamp'] else 10000
future_lag = abs(timestamp - future_order_book['timestamp']) if future_order_book['timestamp'] else 10000
if spot_lag >= 10000 or future_lag >= 10000:
print('Lag > 10 seconds')
async def symbol_loop(exchange, symbol, spot, future):
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
orderbooks[symbol] = orderbook
print(exchange.id, '{:13s}'.format(symbol), orderbook['datetime'], orderbook['asks'][0], orderbook['bids'][0])
#
# here you can do what you want
# with the most recent versions of each orderbook you have so far
#
# you can also wait until all of them are available
# by just looking into all the orderbooks and counting them
#
# we just print them here to keep this example simple
#
handle_all_orderbooks(exchange, orderbooks, spot, future)
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
break # you can break just this one loop if it fails
async def main():
spot = 'BTC/USDT'
future = 'BTC/USDT:USDT'
symbols = [ spot, future ]
exchange = ccxt.pro.bitmart()
loops = [
symbol_loop(exchange, spot, spot, future),
symbol_loop(exchange, future, spot, future),
]
await asyncio.gather(*loops)
await exchange.close()
asyncio.run(main())
@@ -0,0 +1,35 @@
# -*- coding: utf-8 -*-
import asyncio
import ccxt.pro
async def loop(exchange, symbol, n):
i = 0
while True:
try:
orderbook = await exchange.watch_order_book(symbol)
# print every 100th bidask to avoid wasting CPU cycles on printing
if not i % 100:
# i = how many updates there were in total
# n = the number of the pair to count subscriptions
now = exchange.milliseconds()
print(exchange.iso8601(now), n, symbol, i, orderbook['asks'][0], orderbook['bids'][0])
i += 1
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
# break # you can also break just this one loop if it fails
async def main():
exchange = ccxt.pro.kraken()
await exchange.load_markets()
markets = list(exchange.markets.values())
symbols = [market['symbol'] for market in markets if not market['darkpool']]
await asyncio.gather(*[loop(exchange, symbol, n) for n, symbol in enumerate(symbols)])
await exchange.close()
asyncio.run(main())
@@ -0,0 +1,45 @@
import asyncio
import ccxt.pro
class MyBinance(ccxt.pro.binance):
def handle_mini_ticker(self, client, message):
market_id = self.safe_string_lower(message, 's')
message_hash = market_id + '@miniTicker'
client.resolve(message, message_hash)
def handle_message(self, client, message):
handlers = {
'24hrMiniTicker': self.handle_mini_ticker,
# add other custom handlers here
}
e = self.safe_string(message, 'e')
method = self.safe_value(handlers, e)
if method:
return method(client, message)
else:
return super(MyBinance, self).handle_message(client, message)
async def main():
exchange = MyBinance({
'enableRateLimit': False,
'options': {
'defaultType': 'future'
}
})
await exchange.load_markets()
# exchange.verbose = True # uncomment for debugging purposes
market = exchange.market('BTC/USDT')
message_hash = market['lowercaseId'] + '@miniTicker'
while True:
try:
print(await exchange.watch_public(message_hash))
except Exception as e:
print(type(e).__name__, str(e))
await exchange.close()
if __name__ == '__main__':
asyncio.run(main())
@@ -0,0 +1,39 @@
# -*- coding: utf-8 -*-
from asyncio import run, gather
import ccxt.pro
print('CCXT Version:', ccxt.__version__)
async def exchange_loop(exchange_id, symbols):
exchange = getattr(ccxt.pro, exchange_id)()
markets = await exchange.load_markets()
await gather(*[watch_ticker_loop(exchange, symbol) for symbol in symbols])
await exchange.close()
async def watch_ticker_loop(exchange, symbol):
# exchange.verbose = True # uncomment for debugging purposes if necessary
while True:
try:
ticker = await exchange.watch_ticker(symbol)
now = exchange.milliseconds()
print(exchange.iso8601(now), exchange.id, symbol, 'bid:', ticker['bid'], 'ask:', ticker['ask'], 'last:', ticker['last'], 'on', ticker['datetime'])
except Exception as e:
print(str(e))
# raise e # uncomment to break all loops in case of an error in any one of them
break # you can break just this one loop if it fails
async def main():
exchanges = {
'binance': [ 'BTC/USDT', 'ETH/USDT' ],
'ftx': [ 'BTC/USD', 'ETH/USD' ],
}
loops = [exchange_loop(exchange_id, symbols) for exchange_id, symbols in exchanges.items()]
await gather(*loops)
run(main())
@@ -0,0 +1,45 @@
# -*- coding: utf-8 -*-
from asyncio import gather, run
import ccxt.pro
from pprint import pprint
async def watch_ticker_continuously(exchange, symbol):
filename = exchange.id + '-' + symbol.replace('/', '-') + '.csv'
print('Watching', exchange.id, symbol, filename)
keys = ['index', 'exchange', 'symbol', 'timestamp', 'open', 'high', 'low', 'close', 'baseVolume']
with open(filename, 'w') as file:
file.write(','.join(keys) + "\n")
index = 0
while True:
try:
ticker = await exchange.watch_ticker(symbol)
values = [str(index), exchange.id] + [str(ticker[key]) for key in keys[2:]]
print(*values)
with open(filename, 'a') as file:
file.write(','.join(values) + "\n")
index += 1
except Exception as e:
print(e)
async def watch_tickers_continuously(exchange_id, overrides, symbols):
exchange_class = getattr(ccxt.pro, exchange_id)
exchange = exchange_class(overrides)
coroutines = [watch_ticker_continuously(exchange, symbol) for symbol in symbols]
await gather(*coroutines)
await exchange.close()
async def main():
exchanges = {
'binance': {'options': {'defaultType': 'future'}},
'huobipro': {}
}
symbols = ['BTC/USDT', 'ETH/USDT', 'LTC/USDT', 'XRP/USDT', 'BCH/USDT']
coroutines = [watch_tickers_continuously(exchange_id, exchanges[exchange_id], symbols) for exchange_id in exchanges.keys()]
return await gather(*coroutines)
run(main())
@@ -0,0 +1,46 @@
<!DOCTYPE HTML>
<html>
<head>
<title>CCXT Basic example for the browser</title>
<script type="text/javascript" src="https://unpkg.com/ccxt"></script>
<script>
document.addEventListener ("DOMContentLoaded", function () {
alert ('ccxt version ' + ccxt.version);
const exchange = new ccxt.bittrex ({
'proxyUrl': 'https://cors-anywhere.herokuapp.com/'
})
const symbol = 'BTC/USDT'
exchange.fetchTicker (symbol).then (ticker => {
const text = [
exchange.id,
symbol,
JSON.stringify (ticker, undefined, '\n\t')
]
document.getElementById ('content').innerHTML = text.join (' ')
}).catch (e => {
const text = [
e.constructor.name,
e.message,
]
document.getElementById ('content').innerHTML = text.join (' ')
})
})
</script>
</head>
<body>
<h1>Hello, CCXT!</h1>
<pre id="content"></pre>
</body>
</html>
@@ -0,0 +1,47 @@
<!DOCTYPE HTML>
<html>
<head>
<title>CCXT Basic example for the browser</title>
<script type="text/javascript" src="https://unpkg.com/ccxt"></script>
<style type="text/css">
#contentA { background-color: #ccccff; }
#contentB { background-color: #ffcccc; }
</style>
<script>'use strict'
class MyExchange extends ccxt.coinbasepro {
async fetchTicker (symbol, params = {}) {
alert ("I'm about to call the parent method from the overrided class, woohooo!")
// just call the parent method and that's it
return super.fetchTicker (symbol, params);
}
}
document.addEventListener ("DOMContentLoaded", function () {
const exchange = new MyExchange ()
const symbol = 'ETH/BTC'
const showFetchedTicker = function (ticker, elementId) {
const text = [
exchange.id,
symbol,
JSON.stringify (ticker, undefined, '\n\t')
]
document.getElementById (elementId).innerHTML = text.join (' ')
}
exchange.fetchTicker (symbol).then (ticker => showFetchedTicker (ticker, 'content'))
})
</script>
</head>
<body>
<h1>Hello, CCXT!</h1>
<pre id="content"></pre>
</body>
</html>
+52
View File
@@ -0,0 +1,52 @@
<!DOCTYPE HTML>
<html>
<head>
<title>CCXT Basic example for the browser</title>
<script type="text/javascript" src="https://unpkg.com/ccxt"></script>
<script>
document.addEventListener ("DOMContentLoaded", function () {
alert ('ccxt version ' + ccxt.version + ' supporting ');
const pollTickerContinuously = async function (exchange, symbol) {
while (true) {
try {
const ticker = await exchange.fetchTicker (symbol)
const text = [
exchange.id,
symbol,
JSON.stringify (ticker, undefined, '\n\t')
]
document.getElementById ('content').innerHTML = text.join (' ');
} catch (e) {
const text = [
e.constructor.name,
e.message,
]
document.getElementById ('content').innerHTML = text.join (' ');
}
}
}
const exchange = new ccxt.binance ({ enableRateLimit: true })
const symbol = 'ETH/BTC'
pollTickerContinuously (exchange, symbol)
})
</script>
</head>
<body>
<h1>Hello, CCXT!</h1>
<pre id="content"></pre>
</body>
</html>
@@ -0,0 +1,49 @@
<!DOCTYPE HTML>
<html>
<head>
<title>CCXT Basic example for the browser</title>
<script type="text/javascript" src="https://unpkg.com/ccxt"></script>
<script>
document.addEventListener ("DOMContentLoaded", async function () {
alert ('ccxt version ' + ccxt.version);
const enableRateLimit = true
const exchange = new ccxt.poloniex ({ enableRateLimit })
const symbol = 'ETH/BTC'
while (true) {
let text = []
try {
const ticker = await exchange.fetchTicker (symbol)
text = [
exchange.id,
symbol,
JSON.stringify (exchange.omit (ticker, 'info'), undefined, '\t')
]
} catch (e) {
text = [
e.constructor.name,
e.message,
]
}
document.getElementById ('content').innerHTML = text.join (' ')
}
})
</script>
</head>
<body>
<h1>Hello, CCXT!</h1>
<pre id="content"></pre>
</body>
</html>
+43
View File
@@ -0,0 +1,43 @@
<!DOCTYPE HTML>
<html>
<head>
<title>CCXT Basic example for the browser</title>
<script type="text/javascript" src="https://unpkg.com/ccxt"></script>
<script>
document.addEventListener ("DOMContentLoaded", function () {
alert ('CCXT' + (ccxt.isBrowser ? ' browser' : '') + ' version ' + ccxt.version);
const exchange = new ccxt.coinbasepro ({ enableRateLimit: true })
const symbol = 'ETH/BTC'
exchange.fetchTicker (symbol).then (ticker => {
const text = [
exchange.id,
symbol,
JSON.stringify (ticker, undefined, '\n\t')
]
document.getElementById ('content').innerHTML = text.join (' ')
}).catch (e => {
const text = [
e.constructor.name,
e.message,
]
document.getElementById ('content').innerHTML = text.join (' ')
})
})
</script>
</head>
<body>
<h1>Hello, CCXT!</h1>
<pre id="content"></pre>
</body>
</html>
@@ -0,0 +1,28 @@
<!DOCTYPE HTML>
<html>
<head>
<title>CCXT Basic example for the browser</title>
<script type="text/javascript" src="https://unpkg.com/ccxt"></script>
<script>
document.addEventListener ("DOMContentLoaded", function () {
async function main () {
const exchange = new ccxt.binance ({
'apiKey': 'YOUR_API_KEY',
'secret': 'YOUR_API_SECRET',
'proxyUrl': 'https://cors-anywhere.herokuapp.com/',
})
const response = await exchange.fetchBalance ()
console.log (response)
}
main ()
})
</script>
</head>
<body>
<h1>Hello, CCXT!</h1>
<pre id="content"></pre>
</body>
</html>
@@ -0,0 +1,7 @@
// JavaScript CORS Proxy
// Save this in a file like cors.js and run with `node cors [port]`
// It will listen for your requests on the port you pass in command line or port 8080 by default
const port = (process.argv.length > 2) ? parseInt (process.argv[2]) : 8080 // default
require ('cors-anywhere').createServer ({
setHeaders: { 'origin': 'https://www.bitmex.com' }
}).listen (port, '0.0.0.0')
+46
View File
@@ -0,0 +1,46 @@
<!DOCTYPE HTML>
<html>
<head>
<title>CCXT Basic example for the browser</title>
<script type="text/javascript" src="https://unpkg.com/ccxt"></script>
<script>
document.addEventListener ("DOMContentLoaded", function () {
alert ('ccxt version ' + ccxt.version);
const exchange = new ccxt.bitmex ({
'proxyUrl': 'http://127.0.0.1:8080/',
})
const symbol = 'BTC/USDT'
exchange.fetchTicker (symbol).then (ticker => {
const text = [
exchange.id,
symbol,
JSON.stringify (ticker, undefined, '\n\t')
]
document.getElementById ('content').innerHTML = text.join (' ')
}).catch (e => {
const text = [
e.constructor.name,
e.message,
]
document.getElementById ('content').innerHTML = text.join (' ')
})
})
</script>
</head>
<body>
<h1>Hello, CCXT!</h1>
<pre id="content"></pre>
</body>
</html>
@@ -0,0 +1,61 @@
<!DOCTYPE HTML>
<html>
<head>
<title>CCXT Basic example for the browser</title>
<script type="text/javascript" src="https://unpkg.com/ccxt"></script>
<script type="text/javascript" src="https://unpkg.com/lightweight-charts@3.4.0/dist/lightweight-charts.standalone.production.js"></script>
<script>
document.addEventListener ("DOMContentLoaded", async function () {
try {
const exchange = new ccxt.coinbasepro ({ enableRateLimit: true });
const symbol = 'ETH/BTC';
const timeframe = '1d';
const since = undefined;
const limit = 600;
const config = {
width: 600,
height: 300,
priceScale: {
position: 'left',
mode: 1,
autoScale: true,
invertScale: false,
},
timeScale: {
fixLeftEdge: true,
lockVisibleTimeRangeOnResize: true,
rightBarStaysOnScroll: true,
visible: true,
timeVisible: true,
secondsVisible: true,
},
crosshair: {
mode: window.LightweightCharts.CrosshairMode.Normal,
},
};
const chart = window.LightweightCharts.createChart(document.body, config);
const candleSeries = chart.addCandlestickSeries();
while (true) {
try {
const response = await exchange.fetchOHLCV(symbol, timeframe, since, limit);
const last = response[response.length - 1]
const [ timestamp, open, high, low, close ] = last;
const data = response.map (([ timestamp, open, high, low, close ]) => ({ time: exchange.iso8601 (timestamp), open, high, low, close }));
candleSeries.setData(data);
} catch (e) {
console.log (e.constructor.name, e.message);
}
await exchange.sleep (1000);
}
} catch (e) {
alert (e.constructor.name + ' ' + e.message);
}
})
</script>
</head>
<body>
</body>
</html>
@@ -0,0 +1,97 @@
<!DOCTYPE html>
<html>
<body>
<h2>CCXT running on a Webworker example</h2>
<p>This example uses a web worker to continuously call <b>fetchTicker</b> on a user-defined exchange, symbol and interval. Then, the web worker reaches back with the results.</p>
<h3>Parameters</h3>
<label for="exchange">Exchange:</label>
<input type="text" id="exchange" name="exchange" ><br><br>
<label for="symbol">Symbol: </label>
<input type="text" id="symbol" name="symbol"><br><br>
<label for="interval">Interval (ms): </label>
<input type="text" id="interval" name="interval"><br><br>
<button onclick="startWorker()">Start CCXT worker</button>
<button onclick="stopWorker()">Stop CCXT worker</button>
<h3> Received Results:</h3>
<output id="result"></output>
<table id="resultsTable" style="left:300px;width:400px; border:1px solid black;" >
<thead>
<tr>
<th>Symbol</th>
<th>Last Price</th>
<th>Base Volume</th>
<th>Exchange Ts</th>
<th>Local Ts</th>
</tr>
</thead>
<tbody id="tbody">
</tbody>
</table>
</body>
<script>
// fill in default values
document.addEventListener('DOMContentLoaded', function(event) {
document.getElementById('exchange').value = 'coinbasepro';
document.getElementById('symbol').value = 'BTC/USDT';
document.getElementById('interval').value = '1000';
});
var ccxtWorker;
function startWorker() {
if (typeof(Worker) !== "undefined") {
// if the worker does not exist yet, creates it
if (typeof(ccxtWorker) == "undefined") {
ccxtWorker = new Worker("worker.js");
}
// reads user-defined parameters
var exchange = document.getElementById('exchange').value
var symbol = document.getElementById('symbol').value
var interval = document.getElementById('interval').value
// send a message with those values
ccxtWorker.postMessage([exchange,symbol, interval]);
ccxtWorker.onmessage = function(event) {
// every time the ccxtworker posts a message
// this handler will be invoked
handleReceivedData(event.data)
};
} else {
document.getElementById("result").innerHTML = "Sorry! No Web Worker support.";
}
}
function handleReceivedData(data) {
var [symbol, last, baseVolume, timestamp, ourTimestamp] = data;
var tableRef = document.getElementById('resultsTable');
var tbody = document.getElementById('tbody');
row = tbody.insertRow(0);
cellSymbol = row.insertCell();
cellSymbol.innerHTML = symbol;
cellPrice = row.insertCell();
cellPrice.innerHTML = last;
cellPrice = row.insertCell();
cellPrice.innerHTML = baseVolume;
cellTimestamp = row.insertCell();
cellTimestamp.innerHTML = timestamp;
cellOurtimestamp = row.insertCell();
cellOurtimestamp.innerHTML = ourTimestamp;
}
function stopWorker() {
if (ccxtWorker !== undefined) {
ccxtWorker.terminate();
ccxtWorker = undefined;
}
}
</script>
</body>
</html>
@@ -0,0 +1,43 @@
self.importScripts('https://unpkg.com/ccxt@1.79.2/dist/ccxt.browser.js');
console.log("Loaded ccxt version:", self.ccxt.version);
var exchangeInstance = undefined;
// handler of received messages
self.onmessage = async function handler(msg) {
await handleMessageFromMain(msg)
}
// get messages from the main script
async function handleMessageFromMain(msg) {
console.log(msg.data);
var [exchange, symbol, interval] = msg.data;
console.log('Worker received:', symbol,exchange, interval)
interval = parseInt(interval)
await processTicker(symbol, exchange)
// schedule process ticker execution
setInterval (async () => {
await processTicker(symbol, exchange)
}, interval)
}
async function processTicker(symbol, exchangeId) {
if (exchangeInstance === undefined) {
exchangeInstance = new ccxt[exchangeId]
}
var result = await fetchTicker(symbol)
var symbol = result['symbol']
var last = result['last']
var timestamp = result['timestamp']
var baseVolume = result['baseVolume']
var ourTimestamp = Date.now()
// send the data back to the main script
postMessage([symbol, last, baseVolume, timestamp, ourTimestamp]);
}
async function fetchTicker(symbol){
// use ccxt to fetch ticker info
var result = await exchangeInstance.fetchTicker(symbol)
return result;
}
+15
View File
@@ -0,0 +1,15 @@
# CCXT JavaScript Examples
These examples might require the following super-useful high-quality Node.js modules by [xpl](https://github.com/xpl):
- [ansicolor](https://github.com/xpl/ansicolor): A quality JavaScript library for the ANSI color/style management ([ansicolor @ npm](https://npmjs.com/package/ansicolor))
- [as-table](https://github.com/xpl/as-table): A simple function that prints objects as ASCII tables ([as-table @ npm](https://npmjs.com/package/as-table))
- [ololog](https://github.com/xpl/ololog): Platform-agnostic logging with blackjack and hookers ([ololog @ npm](https://npmjs.com/package/ololog))
All of the modules above are installed with the ccxt library devDependencies by npm automatically.
To run the ccxt JavaScript examples from any folder type in console:
```shell
node path/to/example.js # substitute for actual filename here
```
@@ -0,0 +1,39 @@
"use strict";
const ccxt = require ('../../ccxt.js');
// instantiate the exchange
let exchange = new ccxt.coinbasepro ({
'apiKey': 'XXXXXXXXXXXXXX',
'secret': 'YYYYYYYYYYYYYY',
});
async function checkOrders(){
try {
// fetch orders
let orders = await exchange.fetchOrders ('BTC/USDT');
// output the result
console.log (exchange.id, 'fetched orders', orders);
} catch (e) {
if (e instanceof ccxt.DDoSProtection || e.message.includes ('ECONNRESET')) {
console.log ('[DDoS Protection] ' + e.message);
} else if (e instanceof ccxt.RequestTimeout) {
console.log ('[Request Timeout] ' + e.message);
} else if (e instanceof ccxt.AuthenticationError) {
console.log ('[Authentication Error] ' + e.message);
} else if (e instanceof ccxt.ExchangeNotAvailable) {
console.log ('[Exchange Not Available Error] ' + e.message);
} else if (e instanceof ccxt.ExchangeError) {
console.log ('[Exchange Error] ' + e.message);
} else if (e instanceof ccxt.NetworkError) {
console.log ('[Network Error] ' + e.message);
} else {
// you can throw it if you want to stop the execution
// console.log ('[Exception ' + e.constructor.name + '] ' + e.message);
throw e;
}
}
}
// for demonstrational purposes, we use 1000 ms interval
setInterval(checkOrders, 1000);

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