EAGLE3 Draft Head — Qwen3-8B
A speculative decoding draft head for
Qwen/Qwen3-8B, trained using the
EAGLE3 method on Google Cloud TPU with the
SpecJAX framework.
EAGLE3 draft heads accelerate autoregressive generation by proposing multiple tokens per step that a target model then verifies in parallel — typically achieving 2-3x throughput gains with no change in output quality.
Usage
SGLang (GPU)
Qwen3 EAGLE3 is natively supported in SGLang.
1python -m sglang.launch_server \
2 --model Qwen/Qwen3-8B \
3 --speculative-algorithm EAGLE3 \
4 --speculative-draft-model-path thoughtworks/Qwen3-8B-Eagle3 \
5 --speculative-num-steps 5 \
6 --speculative-eagle-topk 4 \
7 --dtype bfloat16
Thinking mode
Qwen3 supports an optional thinking mode (/think and /no_think tokens). This draft head was trained on generic instruction-following data and is compatible with both modes:
1# Disable thinking mode for pure instruction-following workloads
2python -m sglang.launch_server \
3 --model Qwen/Qwen3-8B \
4 --speculative-algorithm EAGLE3 \
5 --speculative-draft-model-path thoughtworks/Qwen3-8B-Eagle3 \
6 --speculative-num-steps 5 \
7 --speculative-eagle-topk 4 \
8 --dtype bfloat16 \
9 --chat-template qwen3-instruct-no-thinking
sglang-jax (TPU)
Qwen3 EAGLE3 is natively supported in sglang-jax. Note: sglang-jax's EAGLE3 pipeline is functional but not yet performance-optimized.
1python -m sgl_jax.launch_server \
2 --model-path Qwen/Qwen3-8B \
3 --speculative-algorithm EAGLE3 \
4 --speculative-draft-model-path thoughtworks/Qwen3-8B-Eagle3 \
5 --speculative-eagle-topk 1 \
6 --speculative-num-steps 3 \
7 --speculative-num-draft-tokens 4 \
8 --tp-size 4 --dtype bfloat16
Python (SGLang client)
1import sglang as sgl
2
3llm = sgl.LLM(
4 model="Qwen/Qwen3-8B",
5 speculative_algorithm="EAGLE3",
6 speculative_draft_model_path="thoughtworks/Qwen3-8B-Eagle3",
7 speculative_num_steps=5,
8 speculative_eagle_topk=4,
9 dtype="bfloat16",
10)
Training Details
| Parameter | Value |
|---|
| Framework | SpecJAX — pure JAX, no Flax/PyTorch |
| Hardware | Google Cloud TPU v4-32 (4 hosts x 4 chips, TP=4, DP=4) |
| Dataset | 54K mixed: ShareGPT (45%) + UltraChat-200K (35%) + Open-PerfectBlend (20%) |
| Epochs | 3 |
| Steps | 4,983 per epoch |
| Optimizer | AdamW, cosine LR decay, 3% warmup |
| Learning rate | 3e-4 |
| Batch size | B=4, sequence length T=2048, gradient accumulation 2 |
| TTT length | 7 (multi-step speculative rollout) |
| Training time | ~2.0 hours |
| Precision | bfloat16 |
Training Method
This model uses
EAGLE3's Test-Time Training (TTT) objective with a rollout length of 7. At each training step, the draft head autoregressively proposes 7 tokens; the target model provides ground-truth hidden states and logits for all positions; a geometric loss (0.8^k weighting) trains the draft to match the target at each position.
Qwen3's architecture includes per-head QK RMSNorm and tied word embeddings. The draft head is trained to match Qwen3's output distribution at every speculative position.
Performance
Token acceptance rates on generic instruction-following data (ShareGPT-style prompts):
| Position | Acceptance Rate |
|---|
| acc_0 (1st draft token) | 60.0% |
| acc_1 | 56.7% |
| acc_2 | 55.0% |
| acc_3 | 53.8% |
| acc_4 | 52.6% |
| acc_5 | 51.5% |
| acc_6 | 50.4% |
Measured on held-out evaluation data. Actual throughput gains depend on hardware, prompt distribution, and runtime version.
Model Architecture
The draft head is a single-layer transformer that operates on the target model's hidden states:
| Parameter | Value |
|---|
| Architecture | LlamaForCausalLM (1 decoder layer) |
| Hidden size | 4096 |
| Attention heads | 32 (GQA: 8 KV heads) |
| Vocabulary size | 151,936 (full target vocab) |
| Draft vocab size | 32,000 (top tokens by training frequency) |
| Parameters | ~350M |
Limitations
- Trained on English-dominant instruction data; performance may degrade on non-English inputs or highly domain-specific content.
- Acceptance rates are measured on generic chat data (non-thinking mode) and may differ under extended thinking prompts.
- This is a v1 checkpoint trained on generic data. A v2 with target-model-regenerated training data is planned.
License
This model is released under the
Apache License 2.0, consistent with the base model's license.
References
1@article{li2025eagle3,
2 title={EAGLE3: Scalable Speculative Decoding with Training-Free Multi-Draft Speculation},
3 author={Li, Yuhui and Wei, Fangyun and Zhang, Chao and Zhang, Hongyang},
4 journal={arXiv preprint arXiv:2503.01840},
5 year={2025}
6}