Instructions to use Rufini/Gemma4-Reekon-lora with libraries, inference providers, notebooks, and local apps. Follow these links to get started.
- Libraries
- PEFT
How to use Rufini/Gemma4-Reekon-lora with PEFT:
from peft import PeftModel from transformers import AutoModelForCausalLM base_model = AutoModelForCausalLM.from_pretrained("unsloth/gemma-4-31b-it-unsloth-bnb-4bit") model = PeftModel.from_pretrained(base_model, "Rufini/Gemma4-Reekon-lora") - Transformers
How to use Rufini/Gemma4-Reekon-lora with Transformers:
# Use a pipeline as a high-level helper from transformers import pipeline pipe = pipeline("text-generation", model="Rufini/Gemma4-Reekon-lora") messages = [ {"role": "user", "content": "Who are you?"}, ] pipe(messages)# Load model directly from transformers import AutoModel model = AutoModel.from_pretrained("Rufini/Gemma4-Reekon-lora", device_map="auto") - Notebooks
- Google Colab
- Kaggle
- Local Apps Settings
- vLLM
How to use Rufini/Gemma4-Reekon-lora with vLLM:
Install from pip and serve model
# Install vLLM from pip: pip install vllm # Start the vLLM server: vllm serve "Rufini/Gemma4-Reekon-lora" # Call the server using curl (OpenAI-compatible API): curl -X POST "http://localhost:8000/v1/chat/completions" \ -H "Content-Type: application/json" \ --data '{ "model": "Rufini/Gemma4-Reekon-lora", "messages": [ { "role": "user", "content": "What is the capital of France?" } ] }'Use Docker
docker model run hf.co/Rufini/Gemma4-Reekon-lora
- SGLang
How to use Rufini/Gemma4-Reekon-lora with SGLang:
Install from pip and serve model
# Install SGLang from pip: pip install sglang # Start the SGLang server: python3 -m sglang.launch_server \ --model-path "Rufini/Gemma4-Reekon-lora" \ --host 0.0.0.0 \ --port 30000 # Call the server using curl (OpenAI-compatible API): curl -X POST "http://localhost:30000/v1/chat/completions" \ -H "Content-Type: application/json" \ --data '{ "model": "Rufini/Gemma4-Reekon-lora", "messages": [ { "role": "user", "content": "What is the capital of France?" } ] }'Use Docker images
docker run --gpus all \ --shm-size 32g \ -p 30000:30000 \ -v ~/.cache/huggingface:/root/.cache/huggingface \ --env "HF_TOKEN=<secret>" \ --ipc=host \ lmsysorg/sglang:latest \ python3 -m sglang.launch_server \ --model-path "Rufini/Gemma4-Reekon-lora" \ --host 0.0.0.0 \ --port 30000 # Call the server using curl (OpenAI-compatible API): curl -X POST "http://localhost:30000/v1/chat/completions" \ -H "Content-Type: application/json" \ --data '{ "model": "Rufini/Gemma4-Reekon-lora", "messages": [ { "role": "user", "content": "What is the capital of France?" } ] }' - Unsloth Studio
How to use Rufini/Gemma4-Reekon-lora with Unsloth Studio:
Install Unsloth Studio (macOS, Linux, WSL)
curl -fsSL https://unsloth.ai/install.sh | sh # Run unsloth studio unsloth studio -H 0.0.0.0 -p 8888 # Then open http://localhost:8888 in your browser # Search for Rufini/Gemma4-Reekon-lora to start chatting
Install Unsloth Studio (Windows)
irm https://unsloth.ai/install.ps1 | iex # Run unsloth studio unsloth studio -H 0.0.0.0 -p 8888 # Then open http://localhost:8888 in your browser # Search for Rufini/Gemma4-Reekon-lora to start chatting
Using HuggingFace Spaces for Unsloth
# No setup required # Open https://huggingface.co/spaces/unsloth/studio in your browser # Search for Rufini/Gemma4-Reekon-lora to start chatting
Load model with FastModel
pip install unsloth from unsloth import FastModel model, tokenizer = FastModel.from_pretrained( model_name="Rufini/Gemma4-Reekon-lora", max_seq_length=2048, ) - Docker Model Runner
How to use Rufini/Gemma4-Reekon-lora with Docker Model Runner:
docker model run hf.co/Rufini/Gemma4-Reekon-lora
| """ | |
| 2026.5.3 | |
| 2026.5.5 | |
| 5.5.0 | |
| 0.24.0 | |
| __UNSLOTH_VERSIONING__ | |
| """ | |
| # Unsloth auto generated code | |
| # Copyright 2023-present Daniel Han-Chen, Michael Han-Chen & the Unsloth team. All rights reserved. | |
| # | |
| # This program is free software: you can redistribute it and/or modify | |
| # it under the terms of the GNU Lesser General Public License as published by | |
| # the Free Software Foundation, either version 3 of the License, or | |
| # (at your option) any later version. | |
| # | |
| # This program is distributed in the hope that it will be useful, | |
| # but WITHOUT ANY WARRANTY; without even the implied warranty of | |
| # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
| # GNU General Public License for more details. | |
| # | |
| # You should have received a copy of the GNU Lesser General Public License | |
| # along with this program. If not, see <https://www.gnu.org/licenses/>. | |
| torch_compile_options = {'epilogue_fusion': True, 'max_autotune': False, 'shape_padding': True, 'trace.enabled': False, 'triton.cudagraphs': False, 'debug': False, 'dce': True, 'memory_planning': True, 'coordinate_descent_tuning': False, 'trace.graph_diagram': False, 'compile_threads': 28, 'group_fusion': True, 'disable_progress': True, 'verbose_progress': False, 'triton.multi_kernel': 0, 'triton.use_block_ptr': False, 'triton.enable_persistent_tma_matmul': True, 'triton.autotune_at_compile_time': False, 'triton.cooperative_reductions': False, 'cuda.compile_opt_level': '-O2', 'cuda.enable_cuda_lto': True, 'combo_kernels': False, 'benchmark_combo_kernel': True, 'combo_kernel_foreach_dynamic_shapes': True} | |
| from torch import Tensor | |
| import torch | |
| import torch.nn as nn | |
| from torch.nn import functional as F | |
| from unsloth_zoo.temporary_patches.common import torch_compile | |
| from typing import Any, List, Optional, Tuple, Union, Dict, Set, Callable | |
| from peft.tuners.lora.tp_layer import (Any, __name__, torch) | |
| torch_addmm = torch.addmm | |
| torch_add = torch.add | |
| # @torch.compile(fullgraph = False, dynamic = True, options = torch_compile_options) | |
| def lora_forward(result, lora_A, lora_B, dropout, x, scaling): | |
| # Use result.dtype (bfloat16 from base layer) since x may have been cast to float32 | |
| # by _cast_input_dtype when autocast is disabled | |
| target_dtype = result.dtype | |
| xA = dropout(x).to(target_dtype) @ lora_A.weight.to(target_dtype).t() | |
| # output = result + scaling * xA @ lora_B.weight.t() | |
| shape = result.shape | |
| output = torch_addmm( | |
| result.view(-1, shape[-1]), | |
| xA.view(-1, xA.shape[-1]), | |
| lora_B.weight.to(target_dtype).t(), | |
| alpha = scaling, | |
| beta = 1, | |
| ).view(shape) | |
| bias = lora_B.bias | |
| if bias is not None: | |
| output = torch_add( | |
| output, | |
| bias.to(target_dtype), | |
| alpha = scaling, | |
| ) | |
| return output | |
| pass | |
| def unsloth_forward(self, x: torch.Tensor, *args: Any, **kwargs: Any): | |
| adapter_names = kwargs.pop("adapter_names", None) | |
| # If weight is used for matrix multiplication here, the final aggregation operation of the original | |
| # parallel_linear layer will be missing, so we need to directly call its forward function to obtain the | |
| # output of the original parallel_linear layer. | |
| if self.disable_adapters: | |
| if self.merged: | |
| self.unmerge() | |
| result, bias = self.base_layer(x, *args, **kwargs) | |
| elif adapter_names is not None: | |
| raise ValueError(f"{self.__class__.__name__} does not support mixed_batch_forward yet.") | |
| elif self.merged: | |
| result, bias = self.base_layer(x, *args, **kwargs) | |
| else: | |
| result, bias = self.base_layer(x, *args, **kwargs) | |
| torch_result_dtype = result.dtype | |
| for active_adapter in self.active_adapters: | |
| if active_adapter not in self.lora_A.keys(): | |
| continue | |
| lora_A = self.lora_A[active_adapter] | |
| lora_B = self.lora_B[active_adapter] | |
| dropout = self.lora_dropout[active_adapter] | |
| scaling = self.scaling[active_adapter] | |
| if not torch.is_autocast_enabled(): result, x = result.to(lora_A.weight.dtype), x.to(lora_A.weight.dtype) | |
| return lora_forward(result, lora_A, lora_B, dropout, x, scaling).to(torch_result_dtype) | |
| result = result.to(torch_result_dtype) | |
| return result, bias | |