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""" CLIPSeg model configuration""" |
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import os |
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from typing import Union |
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from ...configuration_utils import PretrainedConfig |
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from ...utils import logging |
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logger = logging.get_logger(__name__) |
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CLIPSEG_PRETRAINED_CONFIG_ARCHIVE_MAP = { |
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"CIDAS/clipseg-rd64": "https://huggingface.co/CIDAS/clipseg-rd64/resolve/main/config.json", |
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} |
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class CLIPSegTextConfig(PretrainedConfig): |
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r""" |
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This is the configuration class to store the configuration of a [`CLIPSegModel`]. It is used to instantiate an |
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CLIPSeg model according to the specified arguments, defining the model architecture. Instantiating a configuration |
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with the defaults will yield a similar configuration to that of the CLIPSeg |
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[CIDAS/clipseg-rd64](https://huggingface.co/CIDAS/clipseg-rd64) architecture. |
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|
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Configuration objects inherit from [`PretrainedConfig`] and can be used to control the model outputs. Read the |
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documentation from [`PretrainedConfig`] for more information. |
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Args: |
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vocab_size (`int`, *optional*, defaults to 49408): |
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Vocabulary size of the CLIPSeg text model. Defines the number of different tokens that can be represented |
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by the `inputs_ids` passed when calling [`CLIPSegModel`]. |
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hidden_size (`int`, *optional*, defaults to 512): |
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Dimensionality of the encoder layers and the pooler layer. |
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intermediate_size (`int`, *optional*, defaults to 2048): |
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Dimensionality of the "intermediate" (i.e., feed-forward) layer in the Transformer encoder. |
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num_hidden_layers (`int`, *optional*, defaults to 12): |
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Number of hidden layers in the Transformer encoder. |
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num_attention_heads (`int`, *optional*, defaults to 8): |
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Number of attention heads for each attention layer in the Transformer encoder. |
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max_position_embeddings (`int`, *optional*, defaults to 77): |
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The maximum sequence length that this model might ever be used with. Typically set this to something large |
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just in case (e.g., 512 or 1024 or 2048). |
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hidden_act (`str` or `function`, *optional*, defaults to `"quick_gelu"`): |
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The non-linear activation function (function or string) in the encoder and pooler. If string, `"gelu"`, |
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`"relu"`, `"selu"` and `"gelu_new"` ``"quick_gelu"` are supported. |
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layer_norm_eps (`float`, *optional*, defaults to 1e-5): |
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The epsilon used by the layer normalization layers. |
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attention_dropout (`float`, *optional*, defaults to 0.0): |
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The dropout ratio for the attention probabilities. |
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initializer_range (`float`, *optional*, defaults to 0.02): |
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The standard deviation of the truncated_normal_initializer for initializing all weight matrices. |
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initializer_factor (`float``, *optional*, defaults to 1): |
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A factor for initializing all weight matrices (should be kept to 1, used internally for initialization |
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testing). |
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Example: |
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|
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```python |
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>>> from transformers import CLIPSegTextConfig, CLIPSegTextModel |
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>>> # Initializing a CLIPSegTextConfig with CIDAS/clipseg-rd64 style configuration |
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>>> configuration = CLIPSegTextConfig() |
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>>> # Initializing a CLIPSegTextModel (with random weights) from the CIDAS/clipseg-rd64 style configuration |
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>>> model = CLIPSegTextModel(configuration) |
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|
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>>> # Accessing the model configuration |
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>>> configuration = model.config |
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```""" |
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model_type = "clipseg_text_model" |
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|
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def __init__( |
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self, |
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vocab_size=49408, |
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hidden_size=512, |
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intermediate_size=2048, |
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num_hidden_layers=12, |
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num_attention_heads=8, |
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max_position_embeddings=77, |
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hidden_act="quick_gelu", |
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layer_norm_eps=1e-5, |
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attention_dropout=0.0, |
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initializer_range=0.02, |
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initializer_factor=1.0, |
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pad_token_id=1, |
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bos_token_id=49406, |
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eos_token_id=49407, |
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**kwargs, |
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): |
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super().__init__(pad_token_id=pad_token_id, bos_token_id=bos_token_id, eos_token_id=eos_token_id, **kwargs) |
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self.vocab_size = vocab_size |
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self.hidden_size = hidden_size |
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self.intermediate_size = intermediate_size |
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self.num_hidden_layers = num_hidden_layers |
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self.num_attention_heads = num_attention_heads |
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self.max_position_embeddings = max_position_embeddings |
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self.layer_norm_eps = layer_norm_eps |
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self.hidden_act = hidden_act |
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self.initializer_range = initializer_range |
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self.initializer_factor = initializer_factor |
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self.attention_dropout = attention_dropout |
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@classmethod |
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def from_pretrained(cls, pretrained_model_name_or_path: Union[str, os.PathLike], **kwargs) -> "PretrainedConfig": |
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cls._set_token_in_kwargs(kwargs) |
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config_dict, kwargs = cls.get_config_dict(pretrained_model_name_or_path, **kwargs) |
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if config_dict.get("model_type") == "clipseg": |
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config_dict = config_dict["text_config"] |
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if "model_type" in config_dict and hasattr(cls, "model_type") and config_dict["model_type"] != cls.model_type: |
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logger.warning( |
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f"You are using a model of type {config_dict['model_type']} to instantiate a model of type " |
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f"{cls.model_type}. This is not supported for all configurations of models and can yield errors." |
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) |
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return cls.from_dict(config_dict, **kwargs) |
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class CLIPSegVisionConfig(PretrainedConfig): |
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r""" |
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This is the configuration class to store the configuration of a [`CLIPSegModel`]. It is used to instantiate an |
|
CLIPSeg model according to the specified arguments, defining the model architecture. Instantiating a configuration |
|
with the defaults will yield a similar configuration to that of the CLIPSeg |
|
[CIDAS/clipseg-rd64](https://huggingface.co/CIDAS/clipseg-rd64) architecture. |
|
|
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Configuration objects inherit from [`PretrainedConfig`] and can be used to control the model outputs. Read the |
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documentation from [`PretrainedConfig`] for more information. |
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|
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Args: |
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hidden_size (`int`, *optional*, defaults to 768): |
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Dimensionality of the encoder layers and the pooler layer. |
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intermediate_size (`int`, *optional*, defaults to 3072): |
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Dimensionality of the "intermediate" (i.e., feed-forward) layer in the Transformer encoder. |
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num_hidden_layers (`int`, *optional*, defaults to 12): |
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Number of hidden layers in the Transformer encoder. |
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num_attention_heads (`int`, *optional*, defaults to 12): |
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Number of attention heads for each attention layer in the Transformer encoder. |
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image_size (`int`, *optional*, defaults to 224): |
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The size (resolution) of each image. |
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patch_size (`int`, *optional*, defaults to 32): |
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The size (resolution) of each patch. |
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hidden_act (`str` or `function`, *optional*, defaults to `"quick_gelu"`): |
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The non-linear activation function (function or string) in the encoder and pooler. If string, `"gelu"`, |
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`"relu"`, `"selu"` and `"gelu_new"` ``"quick_gelu"` are supported. |
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layer_norm_eps (`float`, *optional*, defaults to 1e-5): |
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The epsilon used by the layer normalization layers. |
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attention_dropout (`float`, *optional*, defaults to 0.0): |
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The dropout ratio for the attention probabilities. |
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initializer_range (`float`, *optional*, defaults to 0.02): |
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The standard deviation of the truncated_normal_initializer for initializing all weight matrices. |
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initializer_factor (`float``, *optional*, defaults to 1): |
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A factor for initializing all weight matrices (should be kept to 1, used internally for initialization |
|
testing). |
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|
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Example: |
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|
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```python |
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>>> from transformers import CLIPSegVisionConfig, CLIPSegVisionModel |
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>>> # Initializing a CLIPSegVisionConfig with CIDAS/clipseg-rd64 style configuration |
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>>> configuration = CLIPSegVisionConfig() |
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>>> # Initializing a CLIPSegVisionModel (with random weights) from the CIDAS/clipseg-rd64 style configuration |
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>>> model = CLIPSegVisionModel(configuration) |
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|
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>>> # Accessing the model configuration |
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>>> configuration = model.config |
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```""" |
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model_type = "clipseg_vision_model" |
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|
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def __init__( |
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self, |
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hidden_size=768, |
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intermediate_size=3072, |
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num_hidden_layers=12, |
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num_attention_heads=12, |
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num_channels=3, |
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image_size=224, |
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patch_size=32, |
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hidden_act="quick_gelu", |
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layer_norm_eps=1e-5, |
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attention_dropout=0.0, |
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initializer_range=0.02, |
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initializer_factor=1.0, |
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**kwargs, |
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): |
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super().__init__(**kwargs) |
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self.hidden_size = hidden_size |
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self.intermediate_size = intermediate_size |
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self.num_hidden_layers = num_hidden_layers |
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self.num_attention_heads = num_attention_heads |
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self.num_channels = num_channels |
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self.patch_size = patch_size |
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self.image_size = image_size |
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self.initializer_range = initializer_range |
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self.initializer_factor = initializer_factor |
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self.attention_dropout = attention_dropout |
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self.layer_norm_eps = layer_norm_eps |
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self.hidden_act = hidden_act |
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@classmethod |
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def from_pretrained(cls, pretrained_model_name_or_path: Union[str, os.PathLike], **kwargs) -> "PretrainedConfig": |
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cls._set_token_in_kwargs(kwargs) |
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config_dict, kwargs = cls.get_config_dict(pretrained_model_name_or_path, **kwargs) |
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if config_dict.get("model_type") == "clipseg": |
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config_dict = config_dict["vision_config"] |
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if "model_type" in config_dict and hasattr(cls, "model_type") and config_dict["model_type"] != cls.model_type: |
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logger.warning( |
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f"You are using a model of type {config_dict['model_type']} to instantiate a model of type " |
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f"{cls.model_type}. This is not supported for all configurations of models and can yield errors." |
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) |
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return cls.from_dict(config_dict, **kwargs) |
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class CLIPSegConfig(PretrainedConfig): |
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r""" |
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[`CLIPSegConfig`] is the configuration class to store the configuration of a [`CLIPSegModel`]. It is used to |
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instantiate a CLIPSeg model according to the specified arguments, defining the text model and vision model configs. |
|
Instantiating a configuration with the defaults will yield a similar configuration to that of the CLIPSeg |
|
[CIDAS/clipseg-rd64](https://huggingface.co/CIDAS/clipseg-rd64) architecture. |
|
|
|
Configuration objects inherit from [`PretrainedConfig`] and can be used to control the model outputs. Read the |
|
documentation from [`PretrainedConfig`] for more information. |
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|
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Args: |
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text_config (`dict`, *optional*): |
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Dictionary of configuration options used to initialize [`CLIPSegTextConfig`]. |
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vision_config (`dict`, *optional*): |
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Dictionary of configuration options used to initialize [`CLIPSegVisionConfig`]. |
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projection_dim (`int`, *optional*, defaults to 512): |
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Dimensionality of text and vision projection layers. |
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logit_scale_init_value (`float`, *optional*, defaults to 2.6592): |
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The inital value of the *logit_scale* paramter. Default is used as per the original CLIPSeg implementation. |
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extract_layers (`List[int]`, *optional*, defaults to `[3, 6, 9]`): |
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Layers to extract when forwarding the query image through the frozen visual backbone of CLIP. |
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reduce_dim (`int`, *optional*, defaults to 64): |
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Dimensionality to reduce the CLIP vision embedding. |
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decoder_num_attention_heads (`int`, *optional*, defaults to 4): |
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Number of attention heads in the decoder of CLIPSeg. |
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decoder_attention_dropout (`float`, *optional*, defaults to 0.0): |
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The dropout ratio for the attention probabilities. |
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decoder_hidden_act (`str` or `function`, *optional*, defaults to `"quick_gelu"`): |
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The non-linear activation function (function or string) in the encoder and pooler. If string, `"gelu"`, |
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`"relu"`, `"selu"` and `"gelu_new"` ``"quick_gelu"` are supported. |
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decoder_intermediate_size (`int`, *optional*, defaults to 2048): |
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Dimensionality of the "intermediate" (i.e., feed-forward) layers in the Transformer decoder. |
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conditional_layer (`int`, *optional*, defaults to 0): |
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The layer to use of the Transformer encoder whose activations will be combined with the condition |
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embeddings using FiLM (Feature-wise Linear Modulation). If 0, the last layer is used. |
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use_complex_transposed_convolution (`bool`, *optional*, defaults to `False`): |
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Whether to use a more complex transposed convolution in the decoder, enabling more fine-grained |
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segmentation. |
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kwargs (*optional*): |
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Dictionary of keyword arguments. |
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|
|
Example: |
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|
|
```python |
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>>> from transformers import CLIPSegConfig, CLIPSegModel |
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|
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>>> # Initializing a CLIPSegConfig with CIDAS/clipseg-rd64 style configuration |
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>>> configuration = CLIPSegConfig() |
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|
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>>> # Initializing a CLIPSegModel (with random weights) from the CIDAS/clipseg-rd64 style configuration |
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>>> model = CLIPSegModel(configuration) |
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|
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>>> # Accessing the model configuration |
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>>> configuration = model.config |
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|
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>>> # We can also initialize a CLIPSegConfig from a CLIPSegTextConfig and a CLIPSegVisionConfig |
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>>> # Initializing a CLIPSegText and CLIPSegVision configuration |
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>>> config_text = CLIPSegTextConfig() |
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>>> config_vision = CLIPSegVisionConfig() |
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>>> config = CLIPSegConfig.from_text_vision_configs(config_text, config_vision) |
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```""" |
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model_type = "clipseg" |
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|
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def __init__( |
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self, |
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text_config=None, |
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vision_config=None, |
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projection_dim=512, |
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logit_scale_init_value=2.6592, |
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extract_layers=[3, 6, 9], |
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reduce_dim=64, |
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decoder_num_attention_heads=4, |
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decoder_attention_dropout=0.0, |
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decoder_hidden_act="quick_gelu", |
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decoder_intermediate_size=2048, |
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conditional_layer=0, |
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use_complex_transposed_convolution=False, |
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**kwargs, |
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): |
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text_config_dict = kwargs.pop("text_config_dict", None) |
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vision_config_dict = kwargs.pop("vision_config_dict", None) |
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super().__init__(**kwargs) |
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if text_config_dict is not None: |
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if text_config is None: |
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text_config = {} |
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_text_config_dict = CLIPSegTextConfig(**text_config_dict).to_dict() |
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for key, value in _text_config_dict.items(): |
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if key in text_config and value != text_config[key] and key not in ["transformers_version"]: |
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|
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if key in text_config_dict: |
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message = ( |
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f"`{key}` is found in both `text_config_dict` and `text_config` but with different values. " |
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f'The value `text_config_dict["{key}"]` will be used instead.' |
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) |
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else: |
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message = ( |
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f"`text_config_dict` is provided which will be used to initialize `CLIPSegTextConfig`. The " |
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f'value `text_config["{key}"]` will be overriden.' |
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) |
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logger.warning(message) |
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text_config.update(_text_config_dict) |
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if vision_config_dict is not None: |
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if vision_config is None: |
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vision_config = {} |
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_vision_config_dict = CLIPSegVisionConfig(**vision_config_dict).to_dict() |
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if "id2label" in _vision_config_dict: |
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_vision_config_dict["id2label"] = { |
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str(key): value for key, value in _vision_config_dict["id2label"].items() |
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} |
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for key, value in _vision_config_dict.items(): |
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if key in vision_config and value != vision_config[key] and key not in ["transformers_version"]: |
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|
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if key in vision_config_dict: |
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message = ( |
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f"`{key}` is found in both `vision_config_dict` and `vision_config` but with different " |
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f'values. The value `vision_config_dict["{key}"]` will be used instead.' |
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) |
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else: |
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message = ( |
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f"`vision_config_dict` is provided which will be used to initialize `CLIPSegVisionConfig`. " |
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f'The value `vision_config["{key}"]` will be overriden.' |
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) |
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logger.warning(message) |
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vision_config.update(_vision_config_dict) |
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if text_config is None: |
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text_config = {} |
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logger.info("`text_config` is `None`. Initializing the `CLIPSegTextConfig` with default values.") |
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|
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if vision_config is None: |
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vision_config = {} |
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logger.info("`vision_config` is `None`. initializing the `CLIPSegVisionConfig` with default values.") |
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self.text_config = CLIPSegTextConfig(**text_config) |
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self.vision_config = CLIPSegVisionConfig(**vision_config) |
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self.projection_dim = projection_dim |
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self.logit_scale_init_value = logit_scale_init_value |
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self.extract_layers = extract_layers |
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self.reduce_dim = reduce_dim |
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self.decoder_num_attention_heads = decoder_num_attention_heads |
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self.decoder_attention_dropout = decoder_attention_dropout |
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self.decoder_hidden_act = decoder_hidden_act |
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self.decoder_intermediate_size = decoder_intermediate_size |
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self.conditional_layer = conditional_layer |
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self.initializer_factor = 1.0 |
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self.use_complex_transposed_convolution = use_complex_transposed_convolution |
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@classmethod |
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def from_text_vision_configs(cls, text_config: CLIPSegTextConfig, vision_config: CLIPSegVisionConfig, **kwargs): |
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r""" |
|
Instantiate a [`CLIPSegConfig`] (or a derived class) from clipseg text model configuration and clipseg vision |
|
model configuration. |
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|
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Returns: |
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[`CLIPSegConfig`]: An instance of a configuration object |
|
""" |
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|
return cls(text_config=text_config.to_dict(), vision_config=vision_config.to_dict(), **kwargs) |
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|