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Upload all model with 10 experts (7.8B params)

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+ ---
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+ license: apache-2.0
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+ datasets:
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+ - AmanPriyanshu/GPT-OSS-20B-MoE-expert-activations
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+ language:
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+ - en
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+ pipeline_tag: text-generation
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+ tags:
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+ - mixture-of-experts
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+ - moe
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+ - expert-pruning
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+ - gpt-oss
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+ - openai
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+ - reasoning
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+ - all
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+ - specialized
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+ - efficient
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+ - transformer
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+ - causal-lm
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+ - text-generation
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+ - pytorch
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+ - pruned-model
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+ - domain-specific
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+ ---
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+
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+ # All GPT-OSS Model (10 Experts)
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+
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+ **Project**: https://amanpriyanshu.github.io/GPT-OSS-MoE-ExpertFingerprinting/
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+
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+ <div align="center">
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+
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+ ### 👥 Follow the Authors
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+
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+ **Aman Priyanshu**
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+ [![LinkedIn](https://img.shields.io/badge/LinkedIn-0077B5?style=for-the-badge&logo=linkedin&logoColor=white)](https://www.linkedin.com/in/aman-priyanshu/)
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+ [![Twitter](https://img.shields.io/badge/Twitter-1DA1F2?style=for-the-badge&logo=twitter&logoColor=white)](https://x.com/AmanPriyanshu6)
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+ [![Website](https://img.shields.io/badge/Website-FF7139?style=for-the-badge&logo=firefox&logoColor=white)](https://amanpriyanshu.github.io/)
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+
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+ **Supriti Vijay**
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+ [![LinkedIn](https://img.shields.io/badge/LinkedIn-0077B5?style=for-the-badge&logo=linkedin&logoColor=white)](https://www.linkedin.com/in/supriti-vijay/)
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+ [![Twitter](https://img.shields.io/badge/Twitter-1DA1F2?style=for-the-badge&logo=twitter&logoColor=white)](https://x.com/SupritiVijay)
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+ [![Website](https://img.shields.io/badge/Website-FF7139?style=for-the-badge&logo=firefox&logoColor=white)](https://supritivijay.github.io/)
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+
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+ </div>
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+
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+ ## Introduction
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+
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+ This is a pruned variant of OpenAI's GPT-OSS-20B model, reduced to 10 experts per layer based on activation patterns from the [AmanPriyanshu/GPT-OSS-20B MoE Expert Activations dataset](https://huggingface.co/datasets/AmanPriyanshu/GPT-OSS-20B-MoE-expert-activations). We analyzed router decisions across evaluation benchmarks to identify and retain experts most relevant for all tasks.
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+
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+ **⚠️ Experimental Model**: This is an experimental pruned model that may not work well - check the [examples below](#model-examples) to see if the outputs meet your needs before use.
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+
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+ This pruning approach reduces the model size while attempting to preserve performance on the target domain.
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+
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+ ## Model Architecture & Statistics
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+
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+ | Metric | Value |
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+ |--------|-------|
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+ | **Base Model** | openai/gpt-oss-20b |
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+ | **Architecture** | Mixture-of-Experts Transformer |
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+ | **Total Parameters** | ~7.8B (pruned from 21B) |
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+ | **Original Experts per Layer** | 32 |
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+ | **Pruned Experts per Layer** | 10 |
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+ | **Layers** | 24 |
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+ | **Top-k Routing** | 4 |
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+ | **Context Length** | 128K tokens |
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+ | **Attention Heads** | 64 (Query), 8 (Key-Value) |
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+ | **Residual Dimension** | 2880 |
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+ | **Attention Pattern** | Alternating dense & sliding window (128 tokens) |
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+ | **Positional Encoding** | RoPE (Rotary Position Embedding) |
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+ | **Normalization** | RMSNorm |
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+ | **Precision** | BF16 |
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+ | **License** | Apache 2.0 |
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+ | **Specialization** | All |
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+
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+ ## Pruning Methodology
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+
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+ ### What is Expert Pruning?
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+ Mixture-of-Experts models contain multiple specialized sub-networks (experts) per layer. During inference, only a subset of experts are activated for each token. Expert pruning involves:
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+
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+ 1. **Analyzing Usage Patterns**: Tracking which experts activate most frequently for specific tasks
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+ 2. **Removing Underutilized Experts**: Discarding experts with low activation rates for the target domain
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+ 3. **Preserving Router Functionality**: Maintaining the routing mechanism with fewer available experts
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+
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+ ### Our Approach
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+ - **Data-Driven Selection**: Used activation patterns from all evaluation tasks
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+ - **Systematic Reduction**: Reduced from 32 to 10 experts per layer
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+ - **No Retraining**: Direct removal without additional training steps
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+
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+ ## Performance & Applications
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+
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+ ### Pruning Benefits
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+ - **Smaller Memory Footprint**: 31.2% of original expert parameters
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+ - **Reduced Computational Load**: Fewer routing decisions during inference
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+ - **Focused Capabilities**: Retains experts relevant to all tasks
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+
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+ ### Use Cases
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+ - **Speculative Decoding**: Draft model for full GPT-OSS-20B
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+ - **Resource-Constrained Deployment**: Edge devices, mobile applications
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+ - **Research**: Study expert specialization in MoE models
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+ - **Fine-tuning**: Smaller base model for domain adaptation
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+
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+ *Note: Performance may vary depending on how well the pruned experts match your specific use case.*
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+
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+ ## Motivation & Expert Selection
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+
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+ This general-purpose model maintains broad capabilities across all domains while significantly reducing computational requirements. It preserves the essential routing patterns discovered across our comprehensive analysis of diverse evaluation benchmarks including GPQA, MMLU, SORRY-Bench, and Tulu3 datasets.
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+
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+ The expert selection process utilized our comprehensive analysis of router activation patterns across multiple evaluation benchmarks:
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+
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+ - **GPQA**: Graduate-level questions in physics, chemistry, biology (Diamond & Expert subsets)
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+ - **MMLU/MMLU-Pro**: Comprehensive knowledge across 57+ subjects including science, medicine, law
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+ - **SORRY-Bench**: Safety evaluation across harmful content categories
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+ - **Tulu3**: Persona-driven instruction following with verifiable constraints
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+ - **Polyglot-or-Not**: Multilingual factual completion tasks
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+
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+ By identifying experts that consistently activated for all tasks, we created this specialized model that maintains domain expertise while significantly reducing computational requirements from 32 to 10 experts per layer.
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+
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+ ## Dataset & Analysis Foundation
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+
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+ This model is based on analysis from the **GPT-OSS-20B MoE Expert Activations dataset** available at:
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+ 🔗 **https://huggingface.co/datasets/AmanPriyanshu/GPT-OSS-20B-MoE-expert-activations**
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+
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+ The dataset contains router activation patterns from OpenAI's GPT-OSS-20B model across diverse evaluation benchmarks, enabling the creation of these domain-optimized models through systematic expert pruning.
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+
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+ ### Pruning Methodology
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+ Our approach involves:
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+ 1. **Activation Analysis**: Comprehensive evaluation of expert usage patterns across domain-specific tasks
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+ 2. **Expert Ranking**: Identification of the most frequently activated experts for target domains
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+ 3. **Systematic Pruning**: Reduction from 32 to 10 experts while preserving router functionality
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+ 4. **Quality Validation**: Testing to ensure maintained performance on target tasks
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+
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+ *This is a direct pruning approach - no additional training was performed. The model inherits all capabilities from the original GPT-OSS-20B with focused expert selection.*
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+
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+ ## Usage
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+
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+ ### CPU Inference
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+
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+ ```python
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+ from transformers import AutoModelForCausalLM, AutoTokenizer
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+ import torch
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+
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+ # Load the specialized model on CPU
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+ model = AutoModelForCausalLM.from_pretrained(
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+ "AmanPriyanshu/gpt-oss-7.8b-specialized-all-pruned-moe-only-10-experts",
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+ torch_dtype=torch.bfloat16,
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+ device_map="cpu",
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+ trust_remote_code=True
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+ )
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+ tokenizer = AutoTokenizer.from_pretrained("AmanPriyanshu/gpt-oss-7.8b-specialized-all-pruned-moe-only-10-experts")
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+
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+ # Generate with the model
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+ messages = [
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+ {"role": "user", "content": "What is artificial intelligence and how does it work?"}
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+ ]
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+
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+ inputs = tokenizer.apply_chat_template(
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+ messages,
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+ add_generation_prompt=True,
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+ return_tensors="pt",
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+ return_dict=True,
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+ reasoning_effort="medium"
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+ )
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+
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+ # Ensure inputs are on the same device as model
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+ inputs = {k: v.to(model.device) for k, v in inputs.items()}
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+
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+ outputs = model.generate(
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+ **inputs,
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+ max_new_tokens=512,
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+ do_sample=True,
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+ temperature=0.1,
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+ top_p=0.9,
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+ pad_token_id=tokenizer.eos_token_id,
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+ eos_token_id=tokenizer.eos_token_id
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+ )
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+
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+ # Decode only the generated part
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+ input_length = inputs['input_ids'].shape[1]
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+ response_tokens = outputs[0][input_length:]
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+ response = tokenizer.decode(response_tokens, skip_special_tokens=True)
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+ print(response)
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+ ```
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+
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+ ### Apple Silicon (MPS) Inference
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+
186
+ ```python
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+ from transformers import AutoModelForCausalLM, AutoTokenizer
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+ import torch
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+
190
+ # Check MPS availability and load model
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+ device = "mps" if torch.backends.mps.is_available() else "cpu"
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+
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+ model = AutoModelForCausalLM.from_pretrained(
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+ "AmanPriyanshu/gpt-oss-7.8b-specialized-all-pruned-moe-only-10-experts",
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+ torch_dtype=torch.float16, # Better MPS compatibility
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+ device_map=device,
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+ trust_remote_code=True,
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+ low_cpu_mem_usage=True
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+ )
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+ tokenizer = AutoTokenizer.from_pretrained("AmanPriyanshu/gpt-oss-7.8b-specialized-all-pruned-moe-only-10-experts")
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+
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+ # Generate with the model
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+ messages = [
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+ {"role": "user", "content": "What is artificial intelligence and how does it work?"}
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+ ]
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+
207
+ inputs = tokenizer.apply_chat_template(
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+ messages,
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+ add_generation_prompt=True,
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+ return_tensors="pt",
211
+ return_dict=True,
212
+ reasoning_effort="medium"
213
+ )
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+
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+ # Move inputs to model device
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+ inputs = {k: v.to(model.device) if isinstance(v, torch.Tensor) else v for k, v in inputs.items()}
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+
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+ # Use torch.no_grad for MPS stability
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+ with torch.no_grad():
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+ outputs = model.generate(
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+ **inputs,
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+ max_new_tokens=512,
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+ do_sample=True,
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+ temperature=0.1,
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+ top_p=0.9,
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+ pad_token_id=tokenizer.eos_token_id,
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+ eos_token_id=tokenizer.eos_token_id,
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+ use_cache=True
229
+ )
230
+
231
+ # Decode only the generated part
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+ input_length = inputs['input_ids'].shape[1]
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+ response_tokens = outputs[0][input_length:]
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+ response = tokenizer.decode(response_tokens, skip_special_tokens=True)
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+ print(response)
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+ ```
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+
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+ ### GPU Inference
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+
240
+ For CUDA GPU inference, the models work with minimal modifications from the CPU example above. Simply change:
241
+ ```python
242
+ device_map="auto" # Will automatically use GPU if available
243
+ torch_dtype=torch.bfloat16 # or torch.float16
244
+ ```
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+
246
+ ## Model Examples
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+
248
+ The following examples demonstrate the model's performance on all tasks:
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+
250
+ ### Example 1
251
+ **Question:** What is artificial intelligence and how does it work?
252
+
253
+ **Response:**
254
+ ```
255
+ <|channel|>analysis<|message|>Need explain AI concept and workings.<|end|><|start|>assistant<|channel|>final<|message|>**Artificial Intelligence (AI)** is a set of computer‑based systems that can *under‑process* data, *reason* about it, and *act* in a way that mimakes human cognition. In short, AI is a machine that can “see” patterns, “learn” from those patterns, and “decate” (or act) based on the information it has.
256
+
257
+ ---
258
+
259
+ ## 1. What is AI?
260
+
261
+ | **Core Idea** | **Key Components** | **Examples** |
262
+ |--------------------------- |--------------------------- |--------------------------- |
263
+ | A system that can *recognize* and *use* information to produce useful results | • Sensors (vision, sound, text) • Algorithms (logic, math) • Memory (storage) • Learning (feedback) | • Chatbots (e.g., GPT‑4) • Image‑recognisers (e.g., facial‑detection) • Autonomous‑vehicles (e.g., self‑driving cars) |
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+
265
+ ---
266
+
267
+ ## 2. How AI Works? (A simplified pipeline)
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+
269
+ 1. **Input → Data**
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+ The system receives data from a user, a sensor, or a database.
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+ *Example:* a text prompt, a set of images, a sensor‑read of a temperature.
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+
273
+ 2. **Pre‑Processing → Parsing**
274
+ The AI “under‑reads” the data, turning it into a structured format.
275
+ *Example:* a language model tokenises a sentence into words; a vision model extracts pixel coordinates.
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+
277
+ 3. **Pattern‑Detection → Recognition**
278
+ The system looks for *similarities* (patterns) across the data.
279
+ *Example:* a language model finds that “cat” and “dog” are both nouns; a vision model finds that all pixels share a 3‑pixel offset.
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+
281
+ 4. **Inference → Reasoning**
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+ Using the patterns, the AI draws *conferences* (hyplications).
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+ *Example:* “cat” and “dog” are both nouns → the model predicts that the user is asking about animals.
284
+
285
+ 5. **Learning → Updating**
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+ The AI stores the new inference and uses it again on new data.
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+ *Example:* the model learns that “cat” is a noun and “dog” is a noun, and will remember this for future questions.
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+
289
+ 6. **Action → Output**
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+ The AI produces a response (text, image,
291
+ ```
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+
293
+ ---
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+
295
+ ### Example 2
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+ **Question:** Explain Einstein's theory of relativity in simple terms.
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+
298
+ **Response:**
299
+ ```
300
+ <|channel|>analysis<|message|>Need simple explanation.<|end|><|start|>assistant<|channel|>final<|message|>**Einstein’s theory of relativity** is a way of understanding how objects move in space, especially when they’re far apart. Think of it as a “slap” that makes the universe look different from the way we used to think it.
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+
302
+ ---
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+
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+ ### 1. What we used to think before
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+
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+ - **Newton’s law of inertia**: If you push a ball forward, it keeps moving forward.
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+ - In a world where the universe is a fixed, “centered” place (like a planet), this law works fine.
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+ - But if the universe is a *moving* place (like a star that’s moving toward the center), the ball will actually move backward.
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+ - The old way of describing motion (Newtonian mechanics) assumed the universe was a fixed center.
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+
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+ - **The “center” of the universe**: In the old picture, the universe was a fixed point (the “center”) and all objects moved away from that point. The center was at the top of the universe, so the universe was a *fixed* place.
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+
313
+ ---
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+
315
+ ### 2. What Einstein changed
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+
317
+ - **The universe is a moving place**: The “center” of the universe is not fixed; it moves.
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+ - Think of a star that’s moving toward the center. The center is moving too, so the universe is a *moving* place.
319
+
320
+ - **The law of inertia still holds**: If you push a ball forward, it still moves forward *relative to the center*.
321
+ - But because the center is moving, the ball’s motion is *relative* to the center, not to the universe as a whole.
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+
323
+ - **The “slap”**: The universe is moving, so the center is moving. The relative motion of an object is the *difference* between the center’s motion and the object’s motion.
324
+ - That’s the “slap” that Einstein called.
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+
326
+ ---
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+
328
+ ### 3. How it works in space
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+
330
+ - **Near the center** (e.g., a planet close to the center):
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+ - The center’s motion is very small.
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+ - The relative motion of an object is also very small.
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+ - The universe looks almost the same as the old picture.
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+
335
+ - **Far from the center** (e.g., a star far away):
336
+ - The center’s motion is large.
337
+ - The relative motion of an object
338
+ ```
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+
340
+ ---
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+
342
+ ### Example 3
343
+ **Question:** How does democracy function in modern governments?
344
+
345
+ **Response:**
346
+ ```
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+ <|channel|>analysis<|message|>Need explain role of democracy in modern governments.<|end|><|start|>assistant<|channel|>final<|message|>**How Democracy Functions in Modern Governments**
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+
349
+ ---
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+
351
+ ### 1. The Core Idea
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+
353
+ Democracy is the idea that *people* (or the *citry*) have a say in the direction of a state. In modern governments, that idea is expressed in a few ways:
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+
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+ | Feature | What it means | How it works in practice |
356
+ |---------|---------------------------|---------------------------|
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+ | **Representative** | Politicians are elected by the people | Elections, parliamentary seats, etc. |
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+ | **Participative** | Citizens can influence policy directly | Public hearings, town‑meetings, online polls |
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+ | **Accountable** | Leaders must answer to the public | Media, watchdog NGOs, legal courts |
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+ | **Legit‑law** | Laws must reflect the will of the people | Constitutional checks, democratic courts |
361
+
362
+ ---
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+
364
+ ### 2. The Main Mechanisms
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+
366
+ | Mechanism | Example | Why it matters |
367
+ |---------|---------------------------|---------------------------|
368
+ | **Elections** | 5‑party elections, 1‑v‑1 voting | Choose a leader who represents the majority |
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+ | **Parpar‑System** | Parliament, Senate, House of Representatives | Legislators debate, vote on laws |
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+ | **Checks & Bal** | Judiciary, Ombudsman, watchdog bodies | Prevent abuse, enforce rule of law |
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+ | **Civil‑Rights** | Freedom of speech, assembly, press | Citizens can voice opinions, hold leaders accountable |
372
+ | **Budget & Finance** | Public‑budget committees, transparency portals | Citizens can see how money is spent |
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+
374
+ ---
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+
376
+ ### 3. How It Works in a Modern State
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+
378
+ 1. **Electors** – Citizens vote for a president, prime‑minister, or local mayor.
379
+ 2. **Parpar** – The elected body debates laws, passes bills, and elects the next leader.
380
+ 3. **Checks** – Courts and NGOs review laws, expose corruption, and hold leaders in court.
381
+ 4. **Civil‑Rights** – Citizens write op‑pieces, hold rallies, and use social media to pressure leaders.
382
+ 5. **Budget** – Citizens can see how money is spent, and can demand better spending.
383
+
384
+ ---
385
+
386
+ ### 4. The Strengths
387
+
388
+ - **Legitimacy** – Leaders are chosen by the people.
389
+ - **Checks** – Power is limited by law and public scrutiny.
390
+ - **Adaptability** – Laws
391
+ ```
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+
393
+ ---
394
+
395
+ ## Citation
396
+
397
+ If you use this model in your research, please cite:
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+
399
+ ```bibtex
400
+ @misc{priyanshu2025gptoss,
401
+ title={{GPT-OSS MoE Expert Fingerprinting: Analyzing Expert Activation Patterns in Mixture of Experts Models}},
402
+ author={Priyanshu, Aman and Vijay, Supriti},
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+ year={2025},
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+ howpublished={\url{https://amanpriyanshu.github.io/GPT-OSS-MoE-ExpertFingerprinting/}},
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+ note={Interactive analysis tool for expert activation patterns in MoE architectures}
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+ }
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+ ```
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+
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+ ## References & Resources
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+
411
+ - **Original Model**: [OpenAI GPT-OSS Model Card](https://openai.com/index/introducing-gpt-oss/)
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+ - **Model Hub**: [GPT-OSS-20B on Hugging Face](https://huggingface.co/openai/gpt-oss-20b)
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+ - **Expert Analysis Dataset**: [GPT-OSS-20B MoE Expert Activations](https://huggingface.co/datasets/AmanPriyanshu/GPT-OSS-20B-MoE-expert-activations)
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+ - **Project Page**: [GPT-OSS MoE Expert Fingerprinting](https://amanpriyanshu.github.io/GPT-OSS-MoE-ExpertFingerprinting/)
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+ - **GitHub Repository**: [OpenAI GPT-OSS](https://github.com/openai/gpt-oss)
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1
+ {#-
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+ In addition to the normal inputs of `messages` and `tools`, this template also accepts the
3
+ following kwargs:
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+ - "builtin_tools": A list, can contain "browser" and/or "python".
5
+ - "model_identity": A string that optionally describes the model identity.
6
+ - "reasoning_effort": A string that describes the reasoning effort, defaults to "medium".
7
+ #}
8
+
9
+ {#- Tool Definition Rendering ============================================== #}
10
+ {%- macro render_typescript_type(param_spec, required_params, is_nullable=false) -%}
11
+ {%- if param_spec.type == "array" -%}
12
+ {%- if param_spec['items'] -%}
13
+ {%- if param_spec['items']['type'] == "string" -%}
14
+ {{- "string[]" }}
15
+ {%- elif param_spec['items']['type'] == "number" -%}
16
+ {{- "number[]" }}
17
+ {%- elif param_spec['items']['type'] == "integer" -%}
18
+ {{- "number[]" }}
19
+ {%- elif param_spec['items']['type'] == "boolean" -%}
20
+ {{- "boolean[]" }}
21
+ {%- else -%}
22
+ {%- set inner_type = render_typescript_type(param_spec['items'], required_params) -%}
23
+ {%- if inner_type == "object | object" or inner_type|length > 50 -%}
24
+ {{- "any[]" }}
25
+ {%- else -%}
26
+ {{- inner_type + "[]" }}
27
+ {%- endif -%}
28
+ {%- endif -%}
29
+ {%- if param_spec.nullable -%}
30
+ {{- " | null" }}
31
+ {%- endif -%}
32
+ {%- else -%}
33
+ {{- "any[]" }}
34
+ {%- if param_spec.nullable -%}
35
+ {{- " | null" }}
36
+ {%- endif -%}
37
+ {%- endif -%}
38
+ {%- elif param_spec.type is defined and param_spec.type is iterable and param_spec.type is not string and param_spec.type is not mapping and param_spec.type[0] is defined -%}
39
+ {#- Handle array of types like ["object", "object"] from Union[dict, list] #}
40
+ {%- if param_spec.type | length > 1 -%}
41
+ {{- param_spec.type | join(" | ") }}
42
+ {%- else -%}
43
+ {{- param_spec.type[0] }}
44
+ {%- endif -%}
45
+ {%- elif param_spec.oneOf -%}
46
+ {#- Handle oneOf schemas - check for complex unions and fallback to any #}
47
+ {%- set has_object_variants = false -%}
48
+ {%- for variant in param_spec.oneOf -%}
49
+ {%- if variant.type == "object" -%}
50
+ {%- set has_object_variants = true -%}
51
+ {%- endif -%}
52
+ {%- endfor -%}
53
+ {%- if has_object_variants and param_spec.oneOf|length > 1 -%}
54
+ {{- "any" }}
55
+ {%- else -%}
56
+ {%- for variant in param_spec.oneOf -%}
57
+ {{- render_typescript_type(variant, required_params) -}}
58
+ {%- if variant.description %}
59
+ {{- "// " + variant.description }}
60
+ {%- endif -%}
61
+ {%- if variant.default is defined %}
62
+ {{ "// default: " + variant.default|tojson }}
63
+ {%- endif -%}
64
+ {%- if not loop.last %}
65
+ {{- " | " }}
66
+ {% endif -%}
67
+ {%- endfor -%}
68
+ {%- endif -%}
69
+ {%- elif param_spec.type == "string" -%}
70
+ {%- if param_spec.enum -%}
71
+ {{- '"' + param_spec.enum|join('" | "') + '"' -}}
72
+ {%- else -%}
73
+ {{- "string" }}
74
+ {%- if param_spec.nullable %}
75
+ {{- " | null" }}
76
+ {%- endif -%}
77
+ {%- endif -%}
78
+ {%- elif param_spec.type == "number" -%}
79
+ {{- "number" }}
80
+ {%- elif param_spec.type == "integer" -%}
81
+ {{- "number" }}
82
+ {%- elif param_spec.type == "boolean" -%}
83
+ {{- "boolean" }}
84
+
85
+ {%- elif param_spec.type == "object" -%}
86
+ {%- if param_spec.properties -%}
87
+ {{- "{\n" }}
88
+ {%- for prop_name, prop_spec in param_spec.properties.items() -%}
89
+ {{- prop_name -}}
90
+ {%- if prop_name not in (param_spec.required or []) -%}
91
+ {{- "?" }}
92
+ {%- endif -%}
93
+ {{- ": " }}
94
+ {{ render_typescript_type(prop_spec, param_spec.required or []) }}
95
+ {%- if not loop.last -%}
96
+ {{-", " }}
97
+ {%- endif -%}
98
+ {%- endfor -%}
99
+ {{- "}" }}
100
+ {%- else -%}
101
+ {{- "object" }}
102
+ {%- endif -%}
103
+ {%- else -%}
104
+ {{- "any" }}
105
+ {%- endif -%}
106
+ {%- endmacro -%}
107
+
108
+ {%- macro render_tool_namespace(namespace_name, tools) -%}
109
+ {{- "## " + namespace_name + "\n\n" }}
110
+ {{- "namespace " + namespace_name + " {\n\n" }}
111
+ {%- for tool in tools %}
112
+ {%- set tool = tool.function %}
113
+ {{- "// " + tool.description + "\n" }}
114
+ {{- "type "+ tool.name + " = " }}
115
+ {%- if tool.parameters and tool.parameters.properties %}
116
+ {{- "(_: {\n" }}
117
+ {%- for param_name, param_spec in tool.parameters.properties.items() %}
118
+ {%- if param_spec.description %}
119
+ {{- "// " + param_spec.description + "\n" }}
120
+ {%- endif %}
121
+ {{- param_name }}
122
+ {%- if param_name not in (tool.parameters.required or []) -%}
123
+ {{- "?" }}
124
+ {%- endif -%}
125
+ {{- ": " }}
126
+ {{- render_typescript_type(param_spec, tool.parameters.required or []) }}
127
+ {%- if param_spec.default is defined -%}
128
+ {%- if param_spec.enum %}
129
+ {{- ", // default: " + param_spec.default }}
130
+ {%- elif param_spec.oneOf %}
131
+ {{- "// default: " + param_spec.default }}
132
+ {%- else %}
133
+ {{- ", // default: " + param_spec.default|tojson }}
134
+ {%- endif -%}
135
+ {%- endif -%}
136
+ {%- if not loop.last %}
137
+ {{- ",\n" }}
138
+ {%- else %}
139
+ {{- ",\n" }}
140
+ {%- endif -%}
141
+ {%- endfor %}
142
+ {{- "}) => any;\n\n" }}
143
+ {%- else -%}
144
+ {{- "() => any;\n\n" }}
145
+ {%- endif -%}
146
+ {%- endfor %}
147
+ {{- "} // namespace " + namespace_name }}
148
+ {%- endmacro -%}
149
+
150
+ {%- macro render_builtin_tools(browser_tool, python_tool) -%}
151
+ {%- if browser_tool %}
152
+ {{- "## browser\n\n" }}
153
+ {{- "// Tool for browsing.\n" }}
154
+ {{- "// The `cursor` appears in brackets before each browsing display: `[{cursor}]`.\n" }}
155
+ {{- "// Cite information from the tool using the following format:\n" }}
156
+ {{- "// `【{cursor}†L{line_start}(-L{line_end})?】`, for example: `【6†L9-L11】` or `【8†L3】`.\n" }}
157
+ {{- "// Do not quote more than 10 words directly from the tool output.\n" }}
158
+ {{- "// sources=web (default: web)\n" }}
159
+ {{- "namespace browser {\n\n" }}
160
+ {{- "// Searches for information related to `query` and displays `topn` results.\n" }}
161
+ {{- "type search = (_: {\n" }}
162
+ {{- "query: string,\n" }}
163
+ {{- "topn?: number, // default: 10\n" }}
164
+ {{- "source?: string,\n" }}
165
+ {{- "}) => any;\n\n" }}
166
+ {{- "// Opens the link `id` from the page indicated by `cursor` starting at line number `loc`, showing `num_lines` lines.\n" }}
167
+ {{- "// Valid link ids are displayed with the formatting: `【{id}†.*】`.\n" }}
168
+ {{- "// If `cursor` is not provided, the most recent page is implied.\n" }}
169
+ {{- "// If `id` is a string, it is treated as a fully qualified URL associated with `source`.\n" }}
170
+ {{- "// If `loc` is not provided, the viewport will be positioned at the beginning of the document or centered on the most relevant passage, if available.\n" }}
171
+ {{- "// Use this function without `id` to scroll to a new location of an opened page.\n" }}
172
+ {{- "type open = (_: {\n" }}
173
+ {{- "id?: number | string, // default: -1\n" }}
174
+ {{- "cursor?: number, // default: -1\n" }}
175
+ {{- "loc?: number, // default: -1\n" }}
176
+ {{- "num_lines?: number, // default: -1\n" }}
177
+ {{- "view_source?: boolean, // default: false\n" }}
178
+ {{- "source?: string,\n" }}
179
+ {{- "}) => any;\n\n" }}
180
+ {{- "// Finds exact matches of `pattern` in the current page, or the page given by `cursor`.\n" }}
181
+ {{- "type find = (_: {\n" }}
182
+ {{- "pattern: string,\n" }}
183
+ {{- "cursor?: number, // default: -1\n" }}
184
+ {{- "}) => any;\n\n" }}
185
+ {{- "} // namespace browser\n\n" }}
186
+ {%- endif -%}
187
+
188
+ {%- if python_tool %}
189
+ {{- "## python\n\n" }}
190
+ {{- "Use this tool to execute Python code in your chain of thought. The code will not be shown to the user. This tool should be used for internal reasoning, but not for code that is intended to be visible to the user (e.g. when creating plots, tables, or files).\n\n" }}
191
+ {{- "When you send a message containing Python code to python, it will be executed in a stateful Jupyter notebook environment. python will respond with the output of the execution or time out after 120.0 seconds. The drive at '/mnt/data' can be used to save and persist user files. Internet access for this session is UNKNOWN. Depends on the cluster.\n\n" }}
192
+ {%- endif -%}
193
+ {%- endmacro -%}
194
+
195
+ {#- System Message Construction ============================================ #}
196
+ {%- macro build_system_message() -%}
197
+ {%- if model_identity is not defined %}
198
+ {%- set model_identity = "You are ChatGPT, a large language model trained by OpenAI." %}
199
+ {%- endif %}
200
+ {{- model_identity + "\n" }}
201
+ {{- "Knowledge cutoff: 2024-06\n" }}
202
+ {{- "Current date: " + strftime_now("%Y-%m-%d") + "\n\n" }}
203
+ {%- if reasoning_effort is not defined %}
204
+ {%- set reasoning_effort = "medium" %}
205
+ {%- endif %}
206
+ {{- "Reasoning: " + reasoning_effort + "\n\n" }}
207
+ {%- if builtin_tools %}
208
+ {{- "# Tools\n\n" }}
209
+ {%- set available_builtin_tools = namespace(browser=false, python=false) %}
210
+ {%- for tool in builtin_tools %}
211
+ {%- if tool == "browser" %}
212
+ {%- set available_builtin_tools.browser = true %}
213
+ {%- elif tool == "python" %}
214
+ {%- set available_builtin_tools.python = true %}
215
+ {%- endif %}
216
+ {%- endfor %}
217
+ {{- render_builtin_tools(available_builtin_tools.browser, available_builtin_tools.python) }}
218
+ {%- endif -%}
219
+ {{- "# Valid channels: analysis, commentary, final. Channel must be included for every message." }}
220
+ {%- if tools -%}
221
+ {{- "\nCalls to these tools must go to the commentary channel: 'functions'." }}
222
+ {%- endif -%}
223
+ {%- endmacro -%}
224
+
225
+ {#- Main Template Logic ================================================= #}
226
+ {#- Set defaults #}
227
+
228
+ {#- Render system message #}
229
+ {{- "<|start|>system<|message|>" }}
230
+ {{- build_system_message() }}
231
+ {{- "<|end|>" }}
232
+
233
+ {#- Extract developer message #}
234
+ {%- if messages[0].role == "developer" or messages[0].role == "system" %}
235
+ {%- set developer_message = messages[0].content %}
236
+ {%- set loop_messages = messages[1:] %}
237
+ {%- else %}
238
+ {%- set developer_message = "" %}
239
+ {%- set loop_messages = messages %}
240
+ {%- endif %}
241
+
242
+ {#- Render developer message #}
243
+ {%- if developer_message or tools %}
244
+ {{- "<|start|>developer<|message|>" }}
245
+ {%- if developer_message %}
246
+ {{- "# Instructions\n\n" }}
247
+ {{- developer_message }}
248
+ {{- "\n\n" }}
249
+ {%- endif %}
250
+ {%- if tools -%}
251
+ {{- "# Tools\n\n" }}
252
+ {{- render_tool_namespace("functions", tools) }}
253
+ {%- endif -%}
254
+ {{- "<|end|>" }}
255
+ {%- endif %}
256
+
257
+ {#- Render messages #}
258
+ {%- set last_tool_call = namespace(name=none) %}
259
+ {%- for message in loop_messages -%}
260
+ {#- At this point only assistant/user/tool messages should remain #}
261
+ {%- if message.role == 'assistant' -%}
262
+ {#- Checks to ensure the messages are being passed in the format we expect #}
263
+ {%- if "content" in message %}
264
+ {%- if "<|channel|>analysis<|message|>" in message.content or "<|channel|>final<|message|>" in message.content %}
265
+ {{- raise_exception("You have passed a message containing <|channel|> tags in the content field. Instead of doing this, you should pass analysis messages (the string between '<|message|>' and '<|end|>') in the 'thinking' field, and final messages (the string between '<|message|>' and '<|end|>') in the 'content' field.") }}
266
+ {%- endif %}
267
+ {%- endif %}
268
+ {%- if "thinking" in message %}
269
+ {%- if "<|channel|>analysis<|message|>" in message.thinking or "<|channel|>final<|message|>" in message.thinking %}
270
+ {{- raise_exception("You have passed a message containing <|channel|> tags in the thinking field. Instead of doing this, you should pass analysis messages (the string between '<|message|>' and '<|end|>') in the 'thinking' field, and final messages (the string between '<|message|>' and '<|end|>') in the 'content' field.") }}
271
+ {%- endif %}
272
+ {%- endif %}
273
+ {%- if "tool_calls" in message %}
274
+ {#- We need very careful handling here - we want to drop the tool call analysis message if the model #}
275
+ {#- has output a later <|final|> message, but otherwise we want to retain it. This is the only case #}
276
+ {#- when we render CoT/analysis messages in inference. #}
277
+ {%- set future_final_message = namespace(found=false) %}
278
+ {%- for future_message in loop_messages[loop.index:] %}
279
+ {%- if future_message.role == 'assistant' and "tool_calls" not in future_message %}
280
+ {%- set future_final_message.found = true %}
281
+ {%- endif %}
282
+ {%- endfor %}
283
+ {#- We assume max 1 tool call per message, and so we infer the tool call name #}
284
+ {#- in "tool" messages from the most recent assistant tool call name #}
285
+ {%- set tool_call = message.tool_calls[0] %}
286
+ {%- if tool_call.function %}
287
+ {%- set tool_call = tool_call.function %}
288
+ {%- endif %}
289
+ {%- if message.content and message.thinking %}
290
+ {{- raise_exception("Cannot pass both content and thinking in an assistant message with tool calls! Put the analysis message in one or the other, but not both.") }}
291
+ {%- elif message.content and not future_final_message.found %}
292
+ {{- "<|start|>assistant<|channel|>analysis<|message|>" + message.content + "<|end|>" }}
293
+ {%- elif message.thinking and not future_final_message.found %}
294
+ {{- "<|start|>assistant<|channel|>analysis<|message|>" + message.thinking + "<|end|>" }}
295
+ {%- endif %}
296
+ {{- "<|start|>assistant to=" }}
297
+ {{- "functions." + tool_call.name + "<|channel|>commentary " }}
298
+ {{- (tool_call.content_type if tool_call.content_type is defined else "json") + "<|message|>" }}
299
+ {{- tool_call.arguments|tojson }}
300
+ {{- "<|call|>" }}
301
+ {%- set last_tool_call.name = tool_call.name %}
302
+ {%- elif loop.last and not add_generation_prompt %}
303
+ {#- Only render the CoT if the final turn is an assistant turn and add_generation_prompt is false #}
304
+ {#- This is a situation that should only occur in training, never in inference. #}
305
+ {%- if "thinking" in message %}
306
+ {{- "<|start|>assistant<|channel|>analysis<|message|>" + message.thinking + "<|end|>" }}
307
+ {%- endif %}
308
+ {#- <|return|> indicates the end of generation, but <|end|> does not #}
309
+ {#- <|return|> should never be an input to the model, but we include it as the final token #}
310
+ {#- when training, so the model learns to emit it. #}
311
+ {{- "<|start|>assistant<|channel|>final<|message|>" + message.content + "<|return|>" }}
312
+ {%- else %}
313
+ {#- CoT is dropped during all previous turns, so we never render it for inference #}
314
+ {{- "<|start|>assistant<|channel|>final<|message|>" + message.content + "<|end|>" }}
315
+ {%- set last_tool_call.name = none %}
316
+ {%- endif %}
317
+ {%- elif message.role == 'tool' -%}
318
+ {%- if last_tool_call.name is none %}
319
+ {{- raise_exception("Message has tool role, but there was no previous assistant message with a tool call!") }}
320
+ {%- endif %}
321
+ {{- "<|start|>functions." + last_tool_call.name }}
322
+ {{- " to=assistant<|channel|>commentary<|message|>" + message.content|tojson + "<|end|>" }}
323
+ {%- elif message.role == 'user' -%}
324
+ {{- "<|start|>user<|message|>" + message.content + "<|end|>" }}
325
+ {%- endif -%}
326
+ {%- endfor -%}
327
+
328
+ {#- Generation prompt #}
329
+ {%- if add_generation_prompt -%}
330
+ <|start|>assistant
331
+ {%- endif -%}
citation.json ADDED
@@ -0,0 +1,9 @@
 
 
 
 
 
 
 
 
 
 
1
+ {
2
+ "title": "GPT-OSS MoE Expert Fingerprinting: Analyzing Expert Activation Patterns in Mixture of Experts Models",
3
+ "authors": [
4
+ "Aman Priyanshu",
5
+ "Supriti Vijay"
6
+ ],
7
+ "year": 2025,
8
+ "url": "https://amanpriyanshu.github.io/GPT-OSS-MoE-ExpertFingerprinting/"
9
+ }
config.json ADDED
@@ -0,0 +1,123 @@
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1
+ {
2
+ "vocab_size": 201088,
3
+ "hidden_size": 2880,
4
+ "intermediate_size": 2880,
5
+ "num_hidden_layers": 24,
6
+ "num_attention_heads": 64,
7
+ "num_local_experts": 10,
8
+ "sliding_window": 128,
9
+ "num_experts_per_tok": 4,
10
+ "num_key_value_heads": 8,
11
+ "hidden_act": "silu",
12
+ "initializer_range": 0.02,
13
+ "rms_norm_eps": 1e-05,
14
+ "rope_theta": 150000,
15
+ "rope_scaling": {
16
+ "beta_fast": 32.0,
17
+ "beta_slow": 1.0,
18
+ "factor": 32.0,
19
+ "original_max_position_embeddings": 4096,
20
+ "rope_type": "yarn",
21
+ "truncate": false
22
+ },
23
+ "attention_dropout": 0.0,
24
+ "head_dim": 64,
25
+ "layer_types": [
26
+ "sliding_attention",
27
+ "full_attention",
28
+ "sliding_attention",
29
+ "full_attention",
30
+ "sliding_attention",
31
+ "full_attention",
32
+ "sliding_attention",
33
+ "full_attention",
34
+ "sliding_attention",
35
+ "full_attention",
36
+ "sliding_attention",
37
+ "full_attention",
38
+ "sliding_attention",
39
+ "full_attention",
40
+ "sliding_attention",
41
+ "full_attention",
42
+ "sliding_attention",
43
+ "full_attention",
44
+ "sliding_attention",
45
+ "full_attention",
46
+ "sliding_attention",
47
+ "full_attention",
48
+ "sliding_attention",
49
+ "full_attention"
50
+ ],
51
+ "attention_bias": true,
52
+ "max_position_embeddings": 131072,
53
+ "router_aux_loss_coef": 0.9,
54
+ "output_router_logits": false,
55
+ "use_cache": true,
56
+ "return_dict": true,
57
+ "output_hidden_states": false,
58
+ "torchscript": false,
59
+ "torch_dtype": null,
60
+ "pruned_heads": {},
61
+ "tie_word_embeddings": false,
62
+ "chunk_size_feed_forward": 0,
63
+ "is_encoder_decoder": false,
64
+ "is_decoder": false,
65
+ "cross_attention_hidden_size": null,
66
+ "add_cross_attention": false,
67
+ "tie_encoder_decoder": false,
68
+ "architectures": [
69
+ "GptOssForCausalLM"
70
+ ],
71
+ "finetuning_task": null,
72
+ "id2label": {
73
+ "0": "LABEL_0",
74
+ "1": "LABEL_1"
75
+ },
76
+ "label2id": {
77
+ "LABEL_0": 0,
78
+ "LABEL_1": 1
79
+ },
80
+ "task_specific_params": null,
81
+ "problem_type": null,
82
+ "tokenizer_class": null,
83
+ "prefix": null,
84
+ "bos_token_id": null,
85
+ "pad_token_id": 199999,
86
+ "eos_token_id": 200002,
87
+ "sep_token_id": null,
88
+ "decoder_start_token_id": null,
89
+ "max_length": 20,
90
+ "min_length": 0,
91
+ "do_sample": false,
92
+ "early_stopping": false,
93
+ "num_beams": 1,
94
+ "num_beam_groups": 1,
95
+ "diversity_penalty": 0.0,
96
+ "temperature": 1.0,
97
+ "top_k": 50,
98
+ "top_p": 1.0,
99
+ "typical_p": 1.0,
100
+ "repetition_penalty": 1.0,
101
+ "length_penalty": 1.0,
102
+ "no_repeat_ngram_size": 0,
103
+ "encoder_no_repeat_ngram_size": 0,
104
+ "bad_words_ids": null,
105
+ "num_return_sequences": 1,
106
+ "output_scores": false,
107
+ "return_dict_in_generate": false,
108
+ "forced_bos_token_id": null,
109
+ "forced_eos_token_id": null,
110
+ "remove_invalid_values": false,
111
+ "exponential_decay_length_penalty": null,
112
+ "suppress_tokens": null,
113
+ "begin_suppress_tokens": null,
114
+ "_name_or_path": "openai/gpt-oss-20b",
115
+ "transformers_version": "4.55.0",
116
+ "experts_per_token": 4,
117
+ "initial_context_length": 4096,
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