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README (1).md
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---
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license: mit
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language:
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- en
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pipeline_tag: question-answering
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---
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# Llama-mt-lora
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<!-- Provide a quick summary of what the model is/does. -->
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This model is fine-tuned with LLaMA with 8 Nvidia A100-80G GPUs using 3,000,000 groups of conversations in the context of mathematics by students and facilitators on Algebra Nation (https://www.mathnation.com/). Llama-mt-lora consists of 32 layers and over 7 billion parameters, consuming up to 13.5 gigabytes of disk space. Researchers can experiment with and finetune the model to help construct math conversational AI that can effectively respond generation in a mathematical context.
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### Here is how to use it with texts in HuggingFace
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```python
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import torch
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import transformers
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from transformers import LlamaTokenizer, AutoModelForCausalLM
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tokenizer = LlamaTokenizer.from_pretrained("Fan21/Llama-mt-lora")
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mdoel = LlamaForCausalLM.from_pretrained(
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"Fan21/Llama-mt-lora",
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load_in_8bit=False,
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torch_dtype=torch.float16,
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device_map="auto",
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)
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def generate_prompt(instruction, input=None):
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if input:
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return f"""Below is an instruction that describes a task, paired with an input that provides further context. Write a response that appropriately completes the request.
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### Instruction:
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{instruction}
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### Input:
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{input}
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### Response:"""
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else:
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return f"""Below is an instruction that describes a task. Write a response that appropriately completes the request.
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### Instruction:
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{instruction}
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### Response:"""
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def evaluate(
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instruction,
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input=None,
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temperature=0.1,
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top_p=0.75,
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top_k=40,
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num_beams=4,
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max_new_tokens=128,
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**kwargs,
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):
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prompt = generate_prompt(instruction, input)
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inputs = tokenizer(prompt, return_tensors="pt")
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input_ids = inputs["input_ids"].to(device)
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generation_config = GenerationConfig(
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temperature=temperature,
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top_p=top_p,
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top_k=top_k,
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num_beams=num_beams,
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**kwargs,
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)
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with torch.no_grad():
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generation_output = model.generate(
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input_ids=input_ids,
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generation_config=generation_config,
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return_dict_in_generate=True,
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output_scores=True,
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max_new_tokens=max_new_tokens,
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)
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s = generation_output.sequences[0]
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output = tokenizer.decode(s)
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return output.split("### Response:")[1].strip()
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instruction = 'write your instruction here'
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inputs = 'write your inputs here'
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output= evaluate(instruction,
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input=inputs,
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temperature=0.1,#change the parameters by yourself
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top_p=0.75,
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top_k=40,
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num_beams=4,
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max_new_tokens=128,)
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```
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