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# Predix
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<p align="center">
<img src="https://img.shields.io/badge/Python-3.10%20|%203.11-blue?style=for-the-badge&logo=python" alt="Python">
<img src="https://img.shields.io/badge/Platform-Linux-lightgrey?style=for-the-badge&logo=linux" alt="Platform">
<img src="https://img.shields.io/badge/PyTorch-2.0+-red?style=for-the-badge&logo=pytorch" alt="PyTorch">
<img src="https://img.shields.io/badge/Optuna-3.5+-009B77?style=for-the-badge&logo=optuna" alt="Optuna">
</p>
<p align="center">
<img src="https://img.shields.io/badge/Pandas-150458?style=for-the-badge&logo=pandas" alt="Pandas">
<img src="https://img.shields.io/badge/LightGBM-00A1E0?style=for-the-badge" alt="LightGBM">
<img src="https://img.shields.io/badge/Qlib-FF6B6B?style=for-the-badge" alt="Qlib">
<img src="https://img.shields.io/badge/llama.cpp-7B68EE?style=for-the-badge" alt="llama.cpp">
</p>
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<h4 align="center">
<strong>AI-powered Quantitative Trading Agent for EUR/USD Forex</strong>
</h4>
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<p align="center">
<a href="#installation ">Installation</a> •
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<a href="#no -gpu-use-openrouter">No GPU?</a> •
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<a href="#quick -start">Quick Start</a> •
<a href="#configuration ">Configuration</a> •
<a href="#features ">Features</a>
</p>
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<p align="center">
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<a href="https://github.com/TPTBusiness/Predix/actions/workflows/ci.yml">
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<img src="https://img.shields.io/github/actions/workflow/status/TPTBusiness/Predix/ci.yml?branch=master&label=CI&logo=github&style=flat-square" alt="CI Status">
</a>
<a href="https://github.com/TPTBusiness/Predix/actions/workflows/codacy.yml">
<img src="https://img.shields.io/github/actions/workflow/status/TPTBusiness/Predix/codacy.yml?branch=master&label=Security&logo=shield&style=flat-square" alt="Security Scan">
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</a>
<a href="https://codecov.io/gh/TPTBusiness/Predix">
<img src="https://img.shields.io/codecov/c/github/TPTBusiness/Predix?style=flat-square&logo=codecov" alt="Coverage">
</a>
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<a href="https://github.com/TPTBusiness/Predix/blob/master/LICENSE">
<img src="https://img.shields.io/github/license/TPTBusiness/Predix?style=flat-square" alt="License">
</a>
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<a href="https://www.conventionalcommits.org/">
<img src="https://img.shields.io/badge/Conventional%20Commits-1.0.0-yellow?style=flat-square" alt="Conventional Commits">
</a>
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<a href="https://github.com/astral-sh/ruff">
<img src="https://img.shields.io/endpoint?url=https://raw.githubusercontent.com/astral-sh/ruff/main/assets/badge/v2.json&style=flat-square" alt="Ruff">
</a>
<a href="https://github.com/TPTBusiness/Predix/stargazers">
<img src="https://img.shields.io/github/stars/TPTBusiness/Predix?style=flat-square" alt="Stars">
</a>
<a href="https://github.com/TPTBusiness/Predix/forks">
<img src="https://img.shields.io/github/forks/TPTBusiness/Predix?style=flat-square" alt="Forks">
</a>
<a href="https://github.com/TPTBusiness/Predix/issues">
<img src="https://img.shields.io/github/issues/TPTBusiness/Predix?style=flat-square" alt="Issues">
</a>
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<a href="https://github.com/TPTBusiness/Predix/commits/master">
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<img src="https://img.shields.io/github/last-commit/TPTBusiness/Predix?style=flat-square" alt="Last Commit">
</a>
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</p>
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---
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## 🖥️ CLI Dashboard
```bash
rdagent predix
```

*The Predix CLI shows system status, available commands, and quick start guide.*
---
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## Overview
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**Predix** is an autonomous AI agent for quantitative trading strategies in the EUR/USD forex market. Built on a multi-agent framework, Predix automates the full research and development cycle:
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- 📊 **Data Analysis** – Automatically analyzes market patterns and microstructure
- 💡 **Strategy Discovery** – Proposes novel trading factors and signals
- 🧠 **Model Evolution** – Iteratively improves predictive models
- 📈 **Backtesting** – Validates strategies on historical 1-minute data
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Predix is optimized for **1-minute EUR/USD FX data** (2020– 2026) and uses Qlib as the underlying backtesting engine.
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## Acknowledgments
This project draws inspiration from various open-source projects in the AI trading and multi-agent systems space. We thank all the authors for their innovative work that helped shape our understanding of these patterns.
Special thanks to:
- **[Microsoft RD-Agent ](https://github.com/microsoft/RD-Agent )** (MIT License) - Foundation for our autonomous R&D agent framework. We extend our gratitude to the RD-Agent team for their excellent foundational work.
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- **[TradingAgents ](https://github.com/TauricResearch/TradingAgents )** (Apache 2.0 License) - Inspiration for our multi-agent debate system, reflection mechanism, and memory management modules.
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- **[ai-hedge-fund ](https://github.com/virattt/ai-hedge-fund )** - Inspiration for macro analysis (Stanley Druckenmiller agent), risk management concepts, and market regime detection.
All code in Predix is originally written and implemented independently. Predix extends these frameworks with EUR/USD forex-specific features, 1-minute backtesting capabilities, comprehensive risk management, and trading dashboards.
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---
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## Installation
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### System Requirements
| Component | Minimum | Recommended |
|-----------|---------|-------------|
| **GPU VRAM** | 8 GB | 16 GB (RTX 4080 / 5060 Ti) |
| **RAM** | 16 GB | 32 GB |
| **Storage** | 20 GB | 50 GB (models + data) |
| **OS** | Linux (Ubuntu 22.04+) | Linux |
| **CUDA** | 12.0+ | 12.4+ |
> Local LLMs require a CUDA-capable GPU. The default model (Qwen3.6-35B Q3) uses ~13.6 GB VRAM. CPU-only inference is possible but very slow (not recommended for production use).
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### Prerequisites
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- **Conda** (Miniconda or Anaconda) — required for environment management
- **Docker** — required for sandboxed factor/model code execution (`docker run hello-world` to verify)
- **llama.cpp** — for local LLM inference (see [llama.cpp build guide ](https://github.com/ggml-org/llama.cpp ))
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- **Ollama** — for embeddings (`nomic-embed-text` ); install from [ollama.com ](https://ollama.com ) and run `ollama pull nomic-embed-text`
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- **Linux** — officially supported; macOS/Windows may work with adjustments
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### Quick Install
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```bash
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# Clone repository
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git clone https://github.com/TPTBusiness/Predix
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cd Predix
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# Create and activate conda environment
conda create -n predix python = 3.10 -y
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conda activate predix
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# Install in editable mode
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pip install -e .
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# Verify Docker is accessible
docker run --rm hello-world
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```
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> **Important:** Predix requires a conda environment to manage dependencies properly.
> Using plain Python or other environment managers may cause conflicts.
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---
## Data Setup
Predix requires **1-minute EUR/USD OHLCV data** in HDF5 format. This is a hard prerequisite — the system cannot run without it.
### Step 1: Get the data
Download 1-minute EUR/USD data (2020– present) from any of these free sources:
| Source | Cost | Notes |
|--------|------|-------|
| ** [Dukascopy ](https://www.dukascopy.com/swiss/english/marketfeed/historical/ )** | Free | Best quality free EUR/USD tick data |
| ** [OANDA API ](https://developer.oanda.com/ )** | Free (demo) | Requires API key, programmatic access |
| ** [TrueFX ](https://truefx.com/ )** | Free | Institutional-quality tick data |
| ** [Kaggle ](https://www.kaggle.com/datasets?search=EURUSD+1min )** | Free | Search "EURUSD 1 minute" |
| **MetaTrader 5** | Free | Export via `copy_rates_range()` |
### Step 2: Convert to HDF5
```python
import pandas as pd
df = pd . read_csv ( 'eurusd_1min.csv' , parse_dates = [ 'datetime' ])
df = df . rename ( columns = { 'open' : '$open' , 'close' : '$close' ,
'high' : '$high' , 'low' : '$low' , 'volume' : '$volume' })
df [ 'instrument' ] = 'EURUSD'
df = df . set_index ([ 'datetime' , 'instrument' ])
for col in [ '$open' , '$close' , '$high' , '$low' , '$volume' ]:
df [ col ] = df [ col ] . astype ( 'float32' )
import os
os . makedirs ( 'git_ignore_folder/factor_implementation_source_data' , exist_ok = True )
df . to_hdf ( 'git_ignore_folder/factor_implementation_source_data/intraday_pv.h5' , key = 'data' , mode = 'w' )
```
### Required HDF5 format
| Field | Type | Description |
|-------|------|-------------|
| **Index** | MultiIndex `(datetime, instrument)` | Timestamp + currency pair |
| ** `$open` ** | float32 | Open price |
| ** `$close` ** | float32 | Close price |
| ** `$high` ** | float32 | High price |
| ** `$low` ** | float32 | Low price |
| ** `$volume` ** | float32 | Tick volume |
**Save location:** `git_ignore_folder/factor_implementation_source_data/intraday_pv.h5`
---
## Configuration
### Environment Setup
Create a `.env` file in the project root:
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```bash
# Local LLM (llama.cpp)
OPENAI_API_KEY = local
OPENAI_API_BASE = http://localhost:8081/v1
CHAT_MODEL = qwen3.5-35b
# Embedding (Ollama)
LITELLM_PROXY_API_KEY = local
LITELLM_PROXY_API_BASE = http://localhost:11434/v1
EMBEDDING_MODEL = nomic-embed-text
# Paths
QLIB_DATA_DIR = ~/.qlib/qlib_data/eurusd_1min_data
```
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### LLM Server (llama.cpp)
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```bash
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~/llama.cpp/build/bin/llama-server \
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--model ~/models/qwen3.6/Qwen3.6-35B-A3B-UD-Q3_K_XL.gguf \
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--n-gpu-layers 24 \
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--no-mmap \
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--port 8081 \
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--ctx-size 240000 \
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--parallel 2 \
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--batch-size 512 --ubatch-size 512 \
--host 0.0.0.0 \
-ctk q4_0 -ctv q4_0 \
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--reasoning off
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```
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> **Important flags:**
> - `--ctx-size 240000 --parallel 2` — allocates **2 slots × 120,000 tokens each**. `fin_quant` prompts can reach 80k+ tokens with full factor history; a smaller slot causes silent overflow and empty responses.
> - `--reasoning off` — **critical**: completely disables Qwen3 chain-of-thought. `--reasoning-budget 0` is not sufficient and produces empty JSON responses.
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> - `--n-gpu-layers 24` — 4 fewer than maximum on RTX 5060 Ti (16 GB), freeing ~500 MB VRAM for the larger KV cache.
> - `-ctk q4_0 -ctv q4_0` — quantises the KV cache to 4-bit, reducing VRAM from ~5 GB to ~1.3 GB at 240k context.
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### Data Configuration
Edit [`data_config.yaml` ](data_config.yaml ) to customize walk-forward splits:
```yaml
instrument : EURUSD
frequency : 1min
data_path : ~/.qlib/qlib_data/eurusd_1min_data
train_start : "2022-03-14"
train_end : "2024-06-30"
valid_start : "2024-07-01"
valid_end : "2024-12-31"
test_start : "2025-01-01"
test_end : "2026-03-20"
market_context :
spread_bps : 1.5
target_arr : 9.62
max_drawdown : 20
```
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---
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## No GPU? Use OpenRouter
If you don't have a CUDA-capable GPU, you can run Predix using [OpenRouter ](https://openrouter.ai ) for LLM inference — no local model download required.
**1. Set up `.env` for OpenRouter:**
```bash
# Chat (OpenRouter)
OPENAI_API_KEY = sk-or-v1-<your-openrouter-key>
OPENAI_API_BASE = https://openrouter.ai/api/v1
CHAT_MODEL = qwen/qwen3-235b-a22b
# Embedding (Ollama — still required locally)
LITELLM_PROXY_API_KEY = local
LITELLM_PROXY_API_BASE = http://localhost:11434/v1
EMBEDDING_MODEL = nomic-embed-text
```
**2. Skip the llama-server step** — no local LLM server needed.
**3. Run with the OpenRouter backend:**
```bash
rdagent fin_quant --model openrouter
```
**4. Parallel runs** (uses API concurrency instead of GPU slots):
```bash
python predix_parallel.py --runs 5 --api-keys 1 -m openrouter
```
> Ollama is still required for embeddings even in the OpenRouter path. Install from [ollama.com](https://ollama.com) and run `ollama pull nomic-embed-text` once.
---
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## Quick Start
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### Prerequisites checklist
```bash
# 1. Docker running?
docker run --rm hello-world
# 2. Data in place?
ls git_ignore_folder/factor_implementation_source_data/intraday_pv.h5
# 3. LLM server running?
curl http://localhost:8081/health
```
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### 1. Run Trading Loop
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```bash
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conda activate predix
rdagent fin_quant
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# or with explicit options:
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rdagent fin_quant --loop-n 5 --step-n 2
```
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### 2. Monitor Results
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```bash
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# Web dashboard
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rdagent server_ui --port 19899 --log-dir git_ignore_folder/RD-Agent_workspace/
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# then open http://127.0.0.1:19899
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# Best strategies so far
python predix.py best
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```
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### 3. Run Continuously
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```bash
while true; do
rdagent fin_quant
sleep 5
done
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```
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---
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## CLI Commands
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### Factor & Strategy Loop
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| Command | Description |
|---------|-------------|
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| `rdagent fin_quant` | Start autonomous factor + model evolution loop |
| `rdagent fin_quant --loop-n 5` | Run exactly 5 evolution loops |
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| `rdagent fin_quant --with-dashboard` | Start with web dashboard |
| `rdagent fin_quant --cli-dashboard` | Start with CLI Rich dashboard |
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| `rdagent fin_factor` | Factor-only evolution |
| `rdagent fin_model` | Model-only evolution |
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### Strategy Reports
| Command | Description |
|---------|-------------|
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| `python predix.py best` | Show top strategies by composite score |
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| `python predix.py best -n 20 -m sharpe` | Top 20 by Sharpe ratio |
| `python predix.py best --show NAME` | Full metadata for one strategy |
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| `python predix_gen_strategies_real_bt.py` | Generate 10 strategies with LLM + real backtest |
| `python predix_gen_strategies_real_bt.py 20` | Generate 20 strategies |
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### Kronos Foundation Model
| Command | Description |
|---------|-------------|
| `python predix.py kronos-factor` | Generate Kronos predicted-return factor (daily stride, ~15 min GPU) |
| `python predix.py kronos-factor --pred 30` | 30-bar prediction horizon |
| `python predix.py kronos-factor --device cpu` | CPU inference (slower) |
| `python predix.py kronos-eval` | Evaluate Kronos IC / hit rate vs LightGBM baseline |
| `python predix.py kronos-eval --pred 96` | Daily horizon evaluation |
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### Factor Evaluation
| Command | Description |
|---------|-------------|
| `python predix.py evaluate --all` | Evaluate all generated factors |
| `python predix.py top -n 20` | Show top 20 factors by IC |
| `python predix.py portfolio-simple` | Simple portfolio optimization |
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### Parallel Execution
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| Command | Description |
|---------|-------------|
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| `python predix_parallel.py --runs 5 --api-keys 1 -m openrouter` | Run 5 parallel factor evolutions |
| `python predix_parallel.py --runs 20 --api-keys 2 -m openrouter` | Run 20 runs with 2 API keys |
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### Monitoring & Debug
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| Command | Description |
|---------|-------------|
| `rdagent server_ui --port 19899 --log-dir <path>` | Start web dashboard |
| `rdagent health_check` | Validate environment setup |
| `python predix_batch_backtest.py` | Batch backtest multiple factors |
| `python predix_rebacktest_strategies.py` | Re-backtest existing strategies |
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---
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## Features
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### 🔄 Iterative Factor Evolution
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Predix continuously proposes, implements, and validates new alpha factors:
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- Learns from backtest feedback
- Avoids overfitting through walk-forward validation
- Discovers non-obvious patterns in order flow, volatility, and session dynamics
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### 🛡️ Trading Protection System
Automatic risk management to prevent excessive losses:
- **Max Drawdown Protection** - Pauses trading when drawdown exceeds threshold (default: 15%)
- **Cooldown Period** - Enforces mandatory rest period after significant losses (default: 4h after 5% loss)
- **Stoploss Guard** - Detects clusters of stoplosses and blocks trading (default: max 5 per day)
- **Low Performance Filter** - Filters out consistently underperforming factors (Sharpe < 0.5, Win Rate < 40%)
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### 🧠 Model Architecture Search
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Automatically explores and refines predictive models:
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- Linear baselines (LightGBM, XGBoost)
- Deep learning (LSTM, Transformer, Temporal CNN)
- Ensemble methods
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### 📚 Knowledge Base
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Built-in knowledge accumulation across loops:
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- Successful factors are archived
- Failed attempts inform future proposals
- Cross-loop learning improves robustness
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### 🖥️ Interactive UI
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Real-time dashboard for monitoring:
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- Factor performance metrics
- Model architecture evolution
- Cumulative returns and drawdowns
- Code diffs and implementation history
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### 🤖 Kronos Foundation Model Integration
Predix integrates [Kronos-mini ](https://github.com/shiyu-coder/Kronos ) — a 4.1M parameter OHLCV foundation model pretrained on 12+ billion K-lines from 45 global exchanges (AAAI 2026, MIT):
- **Option A — Alpha Factor**: Rolling daily inference generates a `KronosPredReturn` factor. Every 96 bars (one trading day), Kronos predicts the next day's return from the previous 512 bars of EUR/USD OHLCV data. The factor is forward-filled to 1-min frequency and plugs directly into Predix's factor evaluation pipeline.
- **Option B — Model Evaluation**: Kronos runs alongside LightGBM as a standalone predictor. IC (Information Coefficient), IC IR, and directional hit rate are computed over the full dataset for direct comparison with LightGBM-generated models.
```bash
# One-time setup
git clone https://github.com/shiyu-coder/Kronos ~/Kronos
# Generate factor (Option A) — saves to results/factors/
python predix.py kronos-factor
# Evaluate as model (Option B) — prints IC vs LightGBM reference
python predix.py kronos-eval
```
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### 🔒 Security & Quality
Automated quality assurance:
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- **134+ Tests** — all features tested automatically on every commit
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- **Bandit Security Scanner** — pre-commit security checks
- **Weekly Dependency Audit** — automated vulnerability scan via GitHub Actions
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---
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## Project Structure
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```
predix/
├── rdagent/ # Core agent framework
│ ├── app/ # CLI and scenario apps
│ ├── components/ # Reusable agent components
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│ │ ├── backtesting/ # Backtest engine & protections
│ │ │ ├── backtest_engine.py
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│ │ │ ├── vbt_backtest.py # Unified backtest engine
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│ │ │ ├── results_db.py
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│ │ │ └── protections/ # Trading protection system
│ │ └── coder/ # Factor & model coding (CoSTEER + Optuna)
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│ ├── core/ # Core abstractions
│ ├── scenarios/ # Domain-specific scenarios
│ └── utils/ # Utilities
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├── test/ # Test suite (134 tests)
│ └── backtesting/ # Backtest unit tests
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├── web/ # Web UI frontend
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├── data_config.yaml # Walk-forward split configuration
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├── pyproject.toml # Project metadata
└── requirements.txt # Dependencies
```
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---
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## Requirements
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Core dependencies (see [`requirements.txt` ](requirements.txt ) for full list):
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- **LLM**: `openai` , `litellm`
- **Data**: `pandas` , `numpy` , `pyarrow`
- **ML**: `scikit-learn` , `lightgbm` , `xgboost`
- **Backtesting**: `qlib` (via Docker)
- **UI**: `streamlit` , `plotly` , `flask`
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---
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## License
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This project is licensed under the **MIT License** – see the [`LICENSE` ](LICENSE ) file for details.
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### Attribution Requirements
If you use this code or concepts in your project, you **must** :
1. Include the MIT License text
2. Keep the copyright notice: "Copyright (c) 2025 Predix Team"
3. Provide attribution to the original project
See [`ATTRIBUTION.md` ](ATTRIBUTION.md ) for detailed guidelines and examples.
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---
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## Contributing
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Contributions are welcome! Please:
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1. Fork the repository
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2. Create a feature branch (`git checkout -b feat/my-feature` )
3. Commit using [Conventional Commits ](https://www.conventionalcommits.org/ ) (`git commit -m 'feat: add my feature'` )
4. Push to the branch (`git push origin feat/my-feature` )
5. Open a Pull Request with a conventional commit title
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For major changes, please open an issue first to discuss your approach.
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---
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## Citation
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If you use Predix in your research, please cite the underlying framework:
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```bibtex
@misc { yang2025rdagentllmagentframeworkautonomous ,
title = {R&D-Agent: An LLM-Agent Framework Towards Autonomous Data Science} ,
author = {Yang, Xu and Yang, Xiao and Fang, Shikai and Zhang, Yifei and Wang, Jian and Xian, Bowen and Li, Qizheng and Li, Jingyuan and Xu, Minrui and Li, Yuante and others} ,
year = {2025} ,
eprint = {2505.14738} ,
archivePrefix = {arXiv} ,
primaryClass = {cs.AI}
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}
```
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---
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## Support
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- **Issues**: [GitHub Issues ](https://github.com/TPTBusiness/Predix/issues )
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---
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## Disclaimer
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Predix is provided "as is" for **research and educational purposes only** . It is **not** intended for:
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- Live trading or financial advice
- Production use without thorough testing
- Replacement of qualified financial professionals
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Users assume all liability and should comply with applicable laws and regulations in their jurisdiction. Past performance does not guarantee future results.