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https://github.com/ggml-org/llama.cpp.git
synced 2025-08-08 18:04:54 -04:00
gguf util : add SafetensorRemote
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@@ -2,6 +2,8 @@ from __future__ import annotations
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from typing import Literal
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import json
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def fill_templated_filename(filename: str, output_type: str | None) -> str:
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# Given a file name fill in any type templates e.g. 'some-model-name.{ftype}.gguf'
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@@ -67,3 +69,172 @@ def naming_convention(model_name: str | None, base_name: str | None, finetune_st
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kind = f"-{model_type.strip().replace(' ', '-')}" if model_type is not None else ""
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return f"{name}{parameters}{finetune}{version}{encoding}{kind}"
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class SafetensorRemote:
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"""
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Uility class to handle remote safetensor files.
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This class is designed to work with Hugging Face model repositories.
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Example (one model has single safetensor file, the other has multiple):
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for model_id in ["ngxson/TEST-Tiny-Llama4", "Qwen/Qwen2.5-7B-Instruct"]:
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tensors = SafetensorRemote.get_list_tensors_hf_model(model_id)
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print(json.dumps(tensors, indent=2))
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Example reading tensor data:
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tensors = SafetensorRemote.get_list_tensors_hf_model(model_id)
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for name, meta in tensors.items():
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dtype, shape, offset_start, size, remote_safetensor_url = meta
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# read the tensor data
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data = SafetensorRemote.get_data_by_range(remote_safetensor_url, offset_start, size)
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print(data)
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"""
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BASE_DOMAIN = "https://huggingface.co"
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ALIGNMENT = 8 # bytes
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@classmethod
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def get_list_tensors_hf_model(cls, model_id: str) -> dict[str, tuple[str, list[int], int, int, str]]:
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"""
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Get list of tensors from a Hugging Face model repository.
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Returns a dictionary of tensor names and their metadata.
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Each tensor is represented as a tuple of (dtype, shape, offset_start, size, remote_safetensor_url)
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"""
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# case 1: model has only one single model.safetensor file
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is_single_file = cls.check_file_exist(f"{cls.BASE_DOMAIN}/{model_id}/resolve/main/model.safetensors")
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if is_single_file:
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url = f"{cls.BASE_DOMAIN}/{model_id}/resolve/main/model.safetensors"
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tensors: dict[str, tuple[str, list[int], int, int, str]] = {}
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for key, val in cls.get_list_tensors(url).items():
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tensors[key] = (*val, url) # populate the url
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return tensors
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# case 2: model has multiple files
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index_url = f"{cls.BASE_DOMAIN}/{model_id}/resolve/main/model.safetensors.index.json"
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is_multiple_files = cls.check_file_exist(index_url)
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if is_multiple_files:
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# read the index file
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index_data = cls.get_data_by_range(index_url, 0)
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index_str = index_data.decode('utf-8')
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index_json = json.loads(index_str)
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assert index_json.get("weight_map") is not None, "weight_map not found in index file"
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weight_map = index_json["weight_map"]
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# get the list of files
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all_files = list(set(weight_map.values()))
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all_files.sort() # make sure we load shard files in order
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# get the list of tensors
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tensors = {}
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for file in all_files:
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url = f"{cls.BASE_DOMAIN}/{model_id}/resolve/main/{file}"
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for key, val in cls.get_list_tensors(url).items():
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tensors[key] = (*val, url) # populate the url
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return tensors
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raise ValueError(f"Model {model_id} does not have any safetensor files")
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@classmethod
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def get_list_tensors(cls, url: str) -> dict[str, tuple[str, list[int], int, int]]:
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"""
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Get list of tensors from a remote safetensor file.
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Returns a dictionary of tensor names and their metadata.
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Each tensor is represented as a tuple of (dtype, shape, offset_start, size)
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"""
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metadata, data_start_offset = cls.get_metadata(url)
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res: dict[str, tuple[str, list[int], int, int]] = {}
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for name, meta in metadata.items():
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if name == "__metadata__":
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continue
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if not isinstance(meta, dict):
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raise ValueError(f"Invalid metadata for tensor '{name}': {meta}")
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try:
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dtype = meta["dtype"]
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shape = meta["shape"]
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offset_start_relative, offset_end_relative = meta["data_offsets"]
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size = offset_end_relative - offset_start_relative
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offset_start = data_start_offset + offset_start_relative
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res[name] = (dtype, shape, offset_start, size)
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except KeyError as e:
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raise ValueError(f"Missing key in metadata for tensor '{name}': {e}, meta = {meta}")
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return res
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@classmethod
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def get_metadata(cls, url: str) -> tuple[dict, int]:
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"""
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Get JSON metadata from a remote safetensor file.
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Returns tuple of (metadata, data_start_offset)
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"""
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# Request first 5MB of the file (hopefully enough for metadata)
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read_size = 5 * 1024 * 1024
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raw_data = cls.get_data_by_range(url, 0, read_size)
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# Parse header
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# First 8 bytes contain the metadata length as u64 little-endian
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if len(raw_data) < 8:
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raise ValueError("Not enough data to read metadata size")
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metadata_length = int.from_bytes(raw_data[:8], byteorder='little')
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# Calculate the data start offset
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data_start_offset = 8 + metadata_length
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alignment = SafetensorRemote.ALIGNMENT
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if data_start_offset % alignment != 0:
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data_start_offset += alignment - (data_start_offset % alignment)
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# Check if we have enough data to read the metadata
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if len(raw_data) < 8 + metadata_length:
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raise ValueError(f"Could not read complete metadata. Need {8 + metadata_length} bytes, got {len(raw_data)}")
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# Extract metadata bytes and parse as JSON
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metadata_bytes = raw_data[8:8 + metadata_length]
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metadata_str = metadata_bytes.decode('utf-8')
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try:
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metadata = json.loads(metadata_str)
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return metadata, data_start_offset
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except json.JSONDecodeError as e:
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raise ValueError(f"Failed to parse safetensor metadata as JSON: {e}")
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@classmethod
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def get_data_by_range(cls, url: str, start: int, size: int = -1) -> bytes:
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"""
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Get raw byte data from a remote file by range.
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If size is not specified, it will read the entire file.
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"""
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import requests
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from urllib.parse import urlparse
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parsed_url = urlparse(url)
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if not parsed_url.scheme or not parsed_url.netloc:
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raise ValueError(f"Invalid URL: {url}")
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headers = {}
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if size > -1:
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headers = {"Range": f"bytes={start}-{start + size}"}
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response = requests.get(url, allow_redirects=True, headers=headers)
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response.raise_for_status()
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# Get raw byte data
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return response.content[:size]
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@classmethod
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def check_file_exist(cls, url: str) -> bool:
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"""
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Check if a file exists at the given URL.
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Returns True if the file exists, False otherwise.
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"""
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import requests
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from urllib.parse import urlparse
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parsed_url = urlparse(url)
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if not parsed_url.scheme or not parsed_url.netloc:
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raise ValueError(f"Invalid URL: {url}")
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try:
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headers = {"Range": f"bytes=0-0"}
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response = requests.head(url, allow_redirects=True, headers=headers)
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# Success (2xx) or redirect (3xx)
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return 200 <= response.status_code < 400
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except requests.RequestException:
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return False
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