Instructions to use Mharbulous/moondream2-syncopaid with libraries, inference providers, notebooks, and local apps. Follow these links to get started.
- Notebooks
- Google Colab
- Kaggle
- Local Apps Settings
- llama.cpp
How to use Mharbulous/moondream2-syncopaid with llama.cpp:
Install (macOS, Linux)
curl -LsSf https://llama.app/install.sh | sh # Start a local OpenAI-compatible server with a web UI: llama serve -hf Mharbulous/moondream2-syncopaid:F16 # Run inference directly in the terminal: llama cli -hf Mharbulous/moondream2-syncopaid:F16
Install from WinGet (Windows)
winget install llama.cpp # Start a local OpenAI-compatible server with a web UI: llama serve -hf Mharbulous/moondream2-syncopaid:F16 # Run inference directly in the terminal: llama cli -hf Mharbulous/moondream2-syncopaid:F16
Use pre-built binary
# Download pre-built binary from: # https://github.com/ggerganov/llama.cpp/releases # Start a local OpenAI-compatible server with a web UI: ./llama-server -hf Mharbulous/moondream2-syncopaid:F16 # Run inference directly in the terminal: ./llama-cli -hf Mharbulous/moondream2-syncopaid:F16
Build from source code
git clone https://github.com/ggerganov/llama.cpp.git cd llama.cpp cmake -B build cmake --build build -j --target llama-server llama-cli # Start a local OpenAI-compatible server with a web UI: ./build/bin/llama-server -hf Mharbulous/moondream2-syncopaid:F16 # Run inference directly in the terminal: ./build/bin/llama-cli -hf Mharbulous/moondream2-syncopaid:F16
Use Docker
docker model run hf.co/Mharbulous/moondream2-syncopaid:F16
- LM Studio
- Jan
- vLLM
How to use Mharbulous/moondream2-syncopaid with vLLM:
Install from pip and serve model
# Install vLLM from pip: pip install vllm # Start the vLLM server: vllm serve "Mharbulous/moondream2-syncopaid" # Call the server using curl (OpenAI-compatible API): curl -X POST "http://localhost:8000/v1/completions" \ -H "Content-Type: application/json" \ --data '{ "model": "Mharbulous/moondream2-syncopaid", "prompt": "Once upon a time,", "max_tokens": 512, "temperature": 0.5 }'Use Docker
docker model run hf.co/Mharbulous/moondream2-syncopaid:F16
- Ollama
How to use Mharbulous/moondream2-syncopaid with Ollama:
ollama run hf.co/Mharbulous/moondream2-syncopaid:F16
- Unsloth Studio
How to use Mharbulous/moondream2-syncopaid 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 Mharbulous/moondream2-syncopaid 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 Mharbulous/moondream2-syncopaid to start chatting
Using HuggingFace Spaces for Unsloth
# No setup required # Open https://huggingface.co/spaces/unsloth/studio in your browser # Search for Mharbulous/moondream2-syncopaid to start chatting
- Atomic Chat new
- Docker Model Runner
How to use Mharbulous/moondream2-syncopaid with Docker Model Runner:
docker model run hf.co/Mharbulous/moondream2-syncopaid:F16
- Lemonade
How to use Mharbulous/moondream2-syncopaid with Lemonade:
Pull the model
# Download Lemonade from https://lemonade-server.ai/ lemonade pull Mharbulous/moondream2-syncopaid:F16
Run and chat with the model
lemonade run user.moondream2-syncopaid-F16
List all available models
lemonade list
| import torch | |
| import torch.nn as nn | |
| from transformers import PreTrainedModel, PretrainedConfig | |
| from typing import Union | |
| from .config import MoondreamConfig | |
| from .moondream import MoondreamModel | |
| # Files sometimes don't get loaded without these... | |
| from .image_crops import * | |
| from .vision import * | |
| from .text import * | |
| from .region import * | |
| from .utils import * | |
| def extract_question(text): | |
| prefix = "<image>\n\nQuestion: " | |
| suffix = "\n\nAnswer:" | |
| if text.startswith(prefix) and text.endswith(suffix): | |
| return text[len(prefix) : -len(suffix)] | |
| else: | |
| return None | |
| class HfConfig(PretrainedConfig): | |
| _auto_class = "AutoConfig" | |
| model_type = "moondream1" | |
| def __init__(self, **kwargs): | |
| super().__init__(**kwargs) | |
| self.config = {} | |
| class HfMoondream(PreTrainedModel): | |
| _auto_class = "AutoModelForCausalLM" | |
| config_class = HfConfig | |
| def __init__(self, config): | |
| super().__init__(config) | |
| self.model = MoondreamModel( | |
| MoondreamConfig.from_dict(config.config), setup_caches=False | |
| ) | |
| self._is_kv_cache_setup = False | |
| def _setup_caches(self): | |
| if not self._is_kv_cache_setup: | |
| self.model._setup_caches() | |
| self._is_kv_cache_setup = True | |
| def encode_image(self): | |
| self._setup_caches() | |
| return self.model.encode_image | |
| def query(self): | |
| self._setup_caches() | |
| return self.model.query | |
| def caption(self): | |
| self._setup_caches() | |
| return self.model.caption | |
| def detect(self): | |
| self._setup_caches() | |
| return self.model.detect | |
| def point(self): | |
| self._setup_caches() | |
| return self.model.point | |
| def detect_gaze(self): | |
| self._setup_caches() | |
| return self.model.detect_gaze | |
| def answer_question( | |
| self, | |
| image_embeds, | |
| question, | |
| tokenizer=None, | |
| chat_history="", | |
| result_queue=None, | |
| max_new_tokens=256, | |
| **kwargs | |
| ): | |
| answer = self.query(image_embeds, question)["answer"].strip() | |
| if result_queue is not None: | |
| result_queue.put(answer) | |
| return answer | |
| def batch_answer(self, images, prompts, tokenizer=None, **kwargs): | |
| answers = [] | |
| for image, prompt in zip(images, prompts): | |
| answers.append(self.query(image, prompt)["answer"].strip()) | |
| return answers | |
| def _unsupported_exception(self): | |
| raise NotImplementedError( | |
| "This method is not supported in the latest version of moondream. " | |
| "Consider upgrading to the updated API spec, or alternately pin " | |
| "to 'revision=2024-08-26'." | |
| ) | |
| def generate(self, image_embeds, prompt, tokenizer, max_new_tokens=128, **kwargs): | |
| """ | |
| Function definition remains unchanged for backwards compatibility. | |
| Be aware that tokenizer, max_new_takens, and kwargs are ignored. | |
| """ | |
| prompt_extracted = extract_question(prompt) | |
| if prompt_extracted is not None: | |
| answer = self.model.query( | |
| image=image_embeds, question=prompt_extracted, stream=False | |
| )["answer"] | |
| else: | |
| image_embeds = self.encode_image(image_embeds) | |
| prompt_tokens = torch.tensor( | |
| [self.model.tokenizer.encode(prompt).ids], | |
| device=self.device, | |
| ) | |
| def generator(): | |
| for token in self.model._generate_answer( | |
| prompt_tokens, | |
| image_embeds.kv_cache, | |
| image_embeds.pos, | |
| max_new_tokens, | |
| ): | |
| yield token | |
| answer = "".join(list(generator())) | |
| return [answer] | |
| def get_input_embeddings(self) -> nn.Embedding: | |
| """ | |
| Lazily wrap the raw parameter `self.model.text.wte` in a real | |
| `nn.Embedding` layer so that HF mix-ins recognise it. The wrapper | |
| **shares** the weight tensor—no copy is made. | |
| """ | |
| if not hasattr(self, "_input_embeddings"): | |
| self._input_embeddings = nn.Embedding.from_pretrained( | |
| self.model.text.wte, # tensor created in text.py | |
| freeze=True, # set to False if you need it trainable | |
| ) | |
| return self._input_embeddings | |
| def set_input_embeddings(self, value: Union[nn.Embedding, nn.Module]) -> None: | |
| """ | |
| Lets HF functions (e.g. `resize_token_embeddings`) replace or resize the | |
| embeddings and keeps everything tied to `self.model.text.wte`. | |
| """ | |
| # 1. point the low-level parameter to the new weight matrix | |
| self.model.text.wte = value.weight | |
| # 2. keep a reference for get_input_embeddings() | |
| self._input_embeddings = value | |
| def input_embeds( | |
| self, | |
| input_ids: Union[torch.LongTensor, list, tuple], | |
| *, | |
| device: torch.device | None = None | |
| ) -> torch.FloatTensor: | |
| """ | |
| Back-compat wrapper that turns token IDs into embeddings. | |
| Example: | |
| ids = torch.tensor([[1, 2, 3]]) | |
| embeds = model.input_embeds(ids) # (1, 3, hidden_dim) | |
| """ | |
| if not torch.is_tensor(input_ids): | |
| input_ids = torch.as_tensor(input_ids) | |
| if device is not None: | |
| input_ids = input_ids.to(device) | |
| return self.get_input_embeddings()(input_ids) | |