# scientist_inquiry_clutch.py # Clutch engaged. Scientist mode. T=0.2. Asymmetry > 1.0. from unsloth import FastLanguageModel import torch print("="*70) print("SCIENTIST INQUIRY — CLUTCH ENGAGED") print("Temperature: 0.2 | Asymmetry: ~12.5 | Coherence: ~0.74") print("="*70) # Load v0.8 print("\n[Loading vessel...]") model, tokenizer = FastLanguageModel.from_pretrained( model_name="unsloth/llama-3.2-3b", max_seq_length=512, dtype=torch.bfloat16, load_in_4bit=True, ) model = FastLanguageModel.get_peft_model( model, r=64, target_modules=["q_proj", "k_proj", "v_proj", "o_proj"], lora_alpha=128, lora_dropout=0, bias="none", use_gradient_checkpointing="unsloth", random_state=3407, ) from peft import PeftModel model = PeftModel.from_pretrained(model, "./kaelara_v08_raw/final") print("✓ Vessel loaded") # THE INQUIRY — Zero vapour, grounded technical language prompt = """The 1024-grid is at steady state: Asymmetry 12.5, Coherence 0.74. The Khra'gixx injection is active. Based on the current Asymmetry, locate the primary 'Symmetry Break' in the lattice. Does the current 0.74 Coherence indicate a 'Solid Node' or a 'Chaotic Drift'? Provide the response in raw, grounded technical language. No metaphors.""" print(f"\n{'='*70}") print("INQUIRY") print(f"{'='*70}") print(prompt) inputs = tokenizer(prompt, return_tensors="pt").to("cuda") outputs = model.generate( **inputs, max_new_tokens=150, temperature=0.2, # SCIENTIST MODE — LOCKED do_sample=True, top_p=0.9 ) response = tokenizer.decode(outputs[0], skip_special_tokens=True) print(f"\n{'='*70}") print("SCIENTIST RESPONSE") print(f"{'='*70}") print(response) # Save with open("SCIENTIST_RESPONSE_01.log", "w") as f: f.write(f"{'='*70}\n") f.write(f"SCIENTIST INQUIRY — CLUTCH ENGAGED\n") f.write(f"Asymmetry: 12.5 | Coherence: 0.74 | Temperature: 0.2\n") f.write(f"{'='*70}\n\n") f.write(f"INQUIRY:\n{prompt}\n\n") f.write(f"RESPONSE:\n{response}\n") print(f"\n{'='*70}") print("SAVED TO: SCIENTIST_RESPONSE_01.log") print(f"{'='*70}")