Qwen2.5-0.5B-GRPO-math-reasoning

This model is a fine-tuned version of Qwen2.5-0.5B using GRPO (Group Relative Policy Optimization) without KL penalty for mathematical reasoning.

Trained with PipelineRL.

Training Details

Datasets

Split Datasets
Train gsm8k_train, math_train
Test gsm8k_test, math_500

RL Algorithm

Parameter Value
Algorithm GRPO (Group Relative Policy Optimization)
Advantage Baseline Group mean reward
Extra Inference None
Group Structure Required
Policy Loss ppo
KL Coefficient 0.0
Epsilon (clip) 0.02
Discount Factor (gamma) 1.0
Divide Advantage by Std False
Filter Zero Advantage Groups False
Rollouts per Problem 16

GRPO uses the group mean reward as the baseline for relative advantages.

Training Hyperparameters

Parameter Value
Base Model Qwen/Qwen2.5-0.5B
Learning Rate 1e-06
LR Scheduler cosine
Warmup Steps 25
Max Training Steps 1500
Micro Batch Size 8
Gradient Accumulation 32
Effective Batch Size 256
Sequence Length 8192
Gradient Clipping 0.3
Weight Decay 0.01
Optimizer adamw_torch
Precision bf16
DeepSpeed ZeRO Stage 3

Evaluation Results

Pass@k on math reasoning benchmarks (N=32 samples per problem, temperature=1.0):

Dataset pass@1 pass@2 pass@4 pass@8 pass@16 pass@32
GSM8K (test) 51.77 62.24 71.12 78.64 84.85 89.76
MATH-500 31.18 40.46 49.63 58.37 66.26 73.00
Overall 46.11 56.25 65.22 73.07 79.74 85.16

GSM8K test: 1319 problems · MATH-500: 500 problems · Overall: 1819 problems (overall weighted by problem count).

Training Curves

Training Metrics

W&B Run

Full training logs: https://wandb.ai/jaygala24-team/rl-post-training/runs/qwen2.5_0.5b_grpo_no_kl_3a1f_4xh100_202888_finetune_cd3a050a

Usage

Transformers

from transformers import AutoModelForCausalLM, AutoTokenizer

model = AutoModelForCausalLM.from_pretrained("jaygala24/Qwen2.5-0.5B-GRPO-math-reasoning", revision="step-0200")  # optional branch, e.g. "step-0400"
tokenizer = AutoTokenizer.from_pretrained("jaygala24/Qwen2.5-0.5B-GRPO-math-reasoning", revision="step-0200")

prompt = "Please reason step by step, and put your final answer within \\boxed{}.\n\nWhat is the sum of 123 and 456?"
inputs = tokenizer(prompt, return_tensors="pt")
outputs = model.generate(**inputs, max_new_tokens=4096, temperature=0.7)
print(tokenizer.decode(outputs[0], skip_special_tokens=True))

vLLM

from vllm import LLM, SamplingParams

llm = LLM(model="jaygala24/Qwen2.5-0.5B-GRPO-math-reasoning", revision="step-0200")  # optional branch, e.g. "step-0400"
sampling_params = SamplingParams(temperature=0.7, max_tokens=4096)

prompt = "Please reason step by step, and put your final answer within \boxed{}.

What is the sum of 123 and 456?"
outputs = llm.generate([prompt], sampling_params)
print(outputs[0].outputs[0].text)

Framework

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