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| from typing import Any |
|
|
| import torch |
| from torch import nn |
|
|
| from ...configuration_utils import ConfigMixin, register_to_config |
| from ...loaders import PeftAdapterMixin |
| from ...utils import apply_lora_scale, logging |
| from ...utils.torch_utils import maybe_allow_in_graph |
| from ..attention import Attention, AttentionMixin, FeedForward |
| from ..attention_processor import CogVideoXAttnProcessor2_0, FusedCogVideoXAttnProcessor2_0 |
| from ..cache_utils import CacheMixin |
| from ..embeddings import CogVideoXPatchEmbed, TimestepEmbedding, Timesteps |
| from ..modeling_outputs import Transformer2DModelOutput |
| from ..modeling_utils import ModelMixin |
| from ..normalization import AdaLayerNorm, CogVideoXLayerNormZero |
|
|
|
|
| logger = logging.get_logger(__name__) |
|
|
|
|
| @maybe_allow_in_graph |
| class CogVideoXBlock(nn.Module): |
| r""" |
| Transformer block used in [CogVideoX](https://github.com/THUDM/CogVideo) model. |
| |
| Parameters: |
| dim (`int`): |
| The number of channels in the input and output. |
| num_attention_heads (`int`): |
| The number of heads to use for multi-head attention. |
| attention_head_dim (`int`): |
| The number of channels in each head. |
| time_embed_dim (`int`): |
| The number of channels in timestep embedding. |
| dropout (`float`, defaults to `0.0`): |
| The dropout probability to use. |
| activation_fn (`str`, defaults to `"gelu-approximate"`): |
| Activation function to be used in feed-forward. |
| attention_bias (`bool`, defaults to `False`): |
| Whether or not to use bias in attention projection layers. |
| qk_norm (`bool`, defaults to `True`): |
| Whether or not to use normalization after query and key projections in Attention. |
| norm_elementwise_affine (`bool`, defaults to `True`): |
| Whether to use learnable elementwise affine parameters for normalization. |
| norm_eps (`float`, defaults to `1e-5`): |
| Epsilon value for normalization layers. |
| final_dropout (`bool` defaults to `False`): |
| Whether to apply a final dropout after the last feed-forward layer. |
| ff_inner_dim (`int`, *optional*, defaults to `None`): |
| Custom hidden dimension of Feed-forward layer. If not provided, `4 * dim` is used. |
| ff_bias (`bool`, defaults to `True`): |
| Whether or not to use bias in Feed-forward layer. |
| attention_out_bias (`bool`, defaults to `True`): |
| Whether or not to use bias in Attention output projection layer. |
| """ |
|
|
| def __init__( |
| self, |
| dim: int, |
| num_attention_heads: int, |
| attention_head_dim: int, |
| time_embed_dim: int, |
| dropout: float = 0.0, |
| activation_fn: str = "gelu-approximate", |
| attention_bias: bool = False, |
| qk_norm: bool = True, |
| norm_elementwise_affine: bool = True, |
| norm_eps: float = 1e-5, |
| final_dropout: bool = True, |
| ff_inner_dim: int | None = None, |
| ff_bias: bool = True, |
| attention_out_bias: bool = True, |
| ): |
| super().__init__() |
|
|
| |
| self.norm1 = CogVideoXLayerNormZero(time_embed_dim, dim, norm_elementwise_affine, norm_eps, bias=True) |
|
|
| self.attn1 = Attention( |
| query_dim=dim, |
| dim_head=attention_head_dim, |
| heads=num_attention_heads, |
| qk_norm="layer_norm" if qk_norm else None, |
| eps=1e-6, |
| bias=attention_bias, |
| out_bias=attention_out_bias, |
| processor=CogVideoXAttnProcessor2_0(), |
| ) |
|
|
| |
| self.norm2 = CogVideoXLayerNormZero(time_embed_dim, dim, norm_elementwise_affine, norm_eps, bias=True) |
|
|
| self.ff = FeedForward( |
| dim, |
| dropout=dropout, |
| activation_fn=activation_fn, |
| final_dropout=final_dropout, |
| inner_dim=ff_inner_dim, |
| bias=ff_bias, |
| ) |
|
|
| def forward( |
| self, |
| hidden_states: torch.Tensor, |
| encoder_hidden_states: torch.Tensor, |
| temb: torch.Tensor, |
| image_rotary_emb: tuple[torch.Tensor, torch.Tensor] | None = None, |
| attention_kwargs: dict[str, Any] | None = None, |
| ) -> tuple[torch.Tensor, torch.Tensor]: |
| text_seq_length = encoder_hidden_states.size(1) |
| attention_kwargs = attention_kwargs or {} |
|
|
| |
| norm_hidden_states, norm_encoder_hidden_states, gate_msa, enc_gate_msa = self.norm1( |
| hidden_states, encoder_hidden_states, temb |
| ) |
|
|
| |
| attn_hidden_states, attn_encoder_hidden_states = self.attn1( |
| hidden_states=norm_hidden_states, |
| encoder_hidden_states=norm_encoder_hidden_states, |
| image_rotary_emb=image_rotary_emb, |
| **attention_kwargs, |
| ) |
|
|
| hidden_states = hidden_states + gate_msa * attn_hidden_states |
| encoder_hidden_states = encoder_hidden_states + enc_gate_msa * attn_encoder_hidden_states |
|
|
| |
| norm_hidden_states, norm_encoder_hidden_states, gate_ff, enc_gate_ff = self.norm2( |
| hidden_states, encoder_hidden_states, temb |
| ) |
|
|
| |
| norm_hidden_states = torch.cat([norm_encoder_hidden_states, norm_hidden_states], dim=1) |
| ff_output = self.ff(norm_hidden_states) |
|
|
| hidden_states = hidden_states + gate_ff * ff_output[:, text_seq_length:] |
| encoder_hidden_states = encoder_hidden_states + enc_gate_ff * ff_output[:, :text_seq_length] |
|
|
| return hidden_states, encoder_hidden_states |
|
|
|
|
| class CogVideoXTransformer3DModel(ModelMixin, AttentionMixin, ConfigMixin, PeftAdapterMixin, CacheMixin): |
| """ |
| A Transformer model for video-like data in [CogVideoX](https://github.com/THUDM/CogVideo). |
| |
| Parameters: |
| num_attention_heads (`int`, defaults to `30`): |
| The number of heads to use for multi-head attention. |
| attention_head_dim (`int`, defaults to `64`): |
| The number of channels in each head. |
| in_channels (`int`, defaults to `16`): |
| The number of channels in the input. |
| out_channels (`int`, *optional*, defaults to `16`): |
| The number of channels in the output. |
| flip_sin_to_cos (`bool`, defaults to `True`): |
| Whether to flip the sin to cos in the time embedding. |
| time_embed_dim (`int`, defaults to `512`): |
| Output dimension of timestep embeddings. |
| ofs_embed_dim (`int`, defaults to `512`): |
| Output dimension of "ofs" embeddings used in CogVideoX-5b-I2B in version 1.5 |
| text_embed_dim (`int`, defaults to `4096`): |
| Input dimension of text embeddings from the text encoder. |
| num_layers (`int`, defaults to `30`): |
| The number of layers of Transformer blocks to use. |
| dropout (`float`, defaults to `0.0`): |
| The dropout probability to use. |
| attention_bias (`bool`, defaults to `True`): |
| Whether to use bias in the attention projection layers. |
| sample_width (`int`, defaults to `90`): |
| The width of the input latents. |
| sample_height (`int`, defaults to `60`): |
| The height of the input latents. |
| sample_frames (`int`, defaults to `49`): |
| The number of frames in the input latents. Note that this parameter was incorrectly initialized to 49 |
| instead of 13 because CogVideoX processed 13 latent frames at once in its default and recommended settings, |
| but cannot be changed to the correct value to ensure backwards compatibility. To create a transformer with |
| K latent frames, the correct value to pass here would be: ((K - 1) * temporal_compression_ratio + 1). |
| patch_size (`int`, defaults to `2`): |
| The size of the patches to use in the patch embedding layer. |
| temporal_compression_ratio (`int`, defaults to `4`): |
| The compression ratio across the temporal dimension. See documentation for `sample_frames`. |
| max_text_seq_length (`int`, defaults to `226`): |
| The maximum sequence length of the input text embeddings. |
| activation_fn (`str`, defaults to `"gelu-approximate"`): |
| Activation function to use in feed-forward. |
| timestep_activation_fn (`str`, defaults to `"silu"`): |
| Activation function to use when generating the timestep embeddings. |
| norm_elementwise_affine (`bool`, defaults to `True`): |
| Whether to use elementwise affine in normalization layers. |
| norm_eps (`float`, defaults to `1e-5`): |
| The epsilon value to use in normalization layers. |
| spatial_interpolation_scale (`float`, defaults to `1.875`): |
| Scaling factor to apply in 3D positional embeddings across spatial dimensions. |
| temporal_interpolation_scale (`float`, defaults to `1.0`): |
| Scaling factor to apply in 3D positional embeddings across temporal dimensions. |
| """ |
|
|
| _skip_layerwise_casting_patterns = ["patch_embed", "norm"] |
| _supports_gradient_checkpointing = True |
| _no_split_modules = ["CogVideoXBlock", "CogVideoXPatchEmbed"] |
|
|
| @register_to_config |
| def __init__( |
| self, |
| num_attention_heads: int = 30, |
| attention_head_dim: int = 64, |
| in_channels: int = 16, |
| out_channels: int | None = 16, |
| flip_sin_to_cos: bool = True, |
| freq_shift: int = 0, |
| time_embed_dim: int = 512, |
| ofs_embed_dim: int | None = None, |
| text_embed_dim: int = 4096, |
| num_layers: int = 30, |
| dropout: float = 0.0, |
| attention_bias: bool = True, |
| sample_width: int = 90, |
| sample_height: int = 60, |
| sample_frames: int = 49, |
| patch_size: int = 2, |
| patch_size_t: int | None = None, |
| temporal_compression_ratio: int = 4, |
| max_text_seq_length: int = 226, |
| activation_fn: str = "gelu-approximate", |
| timestep_activation_fn: str = "silu", |
| norm_elementwise_affine: bool = True, |
| norm_eps: float = 1e-5, |
| spatial_interpolation_scale: float = 1.875, |
| temporal_interpolation_scale: float = 1.0, |
| use_rotary_positional_embeddings: bool = False, |
| use_learned_positional_embeddings: bool = False, |
| patch_bias: bool = True, |
| ): |
| super().__init__() |
| inner_dim = num_attention_heads * attention_head_dim |
|
|
| if not use_rotary_positional_embeddings and use_learned_positional_embeddings: |
| raise ValueError( |
| "There are no CogVideoX checkpoints available with disable rotary embeddings and learned positional " |
| "embeddings. If you're using a custom model and/or believe this should be supported, please open an " |
| "issue at https://github.com/huggingface/diffusers/issues." |
| ) |
|
|
| |
| self.patch_embed = CogVideoXPatchEmbed( |
| patch_size=patch_size, |
| patch_size_t=patch_size_t, |
| in_channels=in_channels, |
| embed_dim=inner_dim, |
| text_embed_dim=text_embed_dim, |
| bias=patch_bias, |
| sample_width=sample_width, |
| sample_height=sample_height, |
| sample_frames=sample_frames, |
| temporal_compression_ratio=temporal_compression_ratio, |
| max_text_seq_length=max_text_seq_length, |
| spatial_interpolation_scale=spatial_interpolation_scale, |
| temporal_interpolation_scale=temporal_interpolation_scale, |
| use_positional_embeddings=not use_rotary_positional_embeddings, |
| use_learned_positional_embeddings=use_learned_positional_embeddings, |
| ) |
| self.embedding_dropout = nn.Dropout(dropout) |
|
|
| |
|
|
| self.time_proj = Timesteps(inner_dim, flip_sin_to_cos, freq_shift) |
| self.time_embedding = TimestepEmbedding(inner_dim, time_embed_dim, timestep_activation_fn) |
|
|
| self.ofs_proj = None |
| self.ofs_embedding = None |
| if ofs_embed_dim: |
| self.ofs_proj = Timesteps(ofs_embed_dim, flip_sin_to_cos, freq_shift) |
| self.ofs_embedding = TimestepEmbedding( |
| ofs_embed_dim, ofs_embed_dim, timestep_activation_fn |
| ) |
|
|
| |
| self.transformer_blocks = nn.ModuleList( |
| [ |
| CogVideoXBlock( |
| dim=inner_dim, |
| num_attention_heads=num_attention_heads, |
| attention_head_dim=attention_head_dim, |
| time_embed_dim=time_embed_dim, |
| dropout=dropout, |
| activation_fn=activation_fn, |
| attention_bias=attention_bias, |
| norm_elementwise_affine=norm_elementwise_affine, |
| norm_eps=norm_eps, |
| ) |
| for _ in range(num_layers) |
| ] |
| ) |
| self.norm_final = nn.LayerNorm(inner_dim, norm_eps, norm_elementwise_affine) |
|
|
| |
| self.norm_out = AdaLayerNorm( |
| embedding_dim=time_embed_dim, |
| output_dim=2 * inner_dim, |
| norm_elementwise_affine=norm_elementwise_affine, |
| norm_eps=norm_eps, |
| chunk_dim=1, |
| ) |
|
|
| if patch_size_t is None: |
| |
| output_dim = patch_size * patch_size * out_channels |
| else: |
| |
| output_dim = patch_size * patch_size * patch_size_t * out_channels |
|
|
| self.proj_out = nn.Linear(inner_dim, output_dim) |
|
|
| self.gradient_checkpointing = False |
|
|
| |
| def fuse_qkv_projections(self): |
| """ |
| Enables fused QKV projections. For self-attention modules, all projection matrices (i.e., query, key, value) |
| are fused. For cross-attention modules, key and value projection matrices are fused. |
| |
| > [!WARNING] > This API is 🧪 experimental. |
| """ |
| self.original_attn_processors = None |
|
|
| for _, attn_processor in self.attn_processors.items(): |
| if "Added" in str(attn_processor.__class__.__name__): |
| raise ValueError("`fuse_qkv_projections()` is not supported for models having added KV projections.") |
|
|
| self.original_attn_processors = self.attn_processors |
|
|
| for module in self.modules(): |
| if isinstance(module, Attention): |
| module.fuse_projections(fuse=True) |
|
|
| self.set_attn_processor(FusedCogVideoXAttnProcessor2_0()) |
|
|
| |
| def unfuse_qkv_projections(self): |
| """Disables the fused QKV projection if enabled. |
| |
| > [!WARNING] > This API is 🧪 experimental. |
| |
| """ |
| if self.original_attn_processors is not None: |
| self.set_attn_processor(self.original_attn_processors) |
|
|
| @apply_lora_scale("attention_kwargs") |
| def forward( |
| self, |
| hidden_states: torch.Tensor, |
| encoder_hidden_states: torch.Tensor, |
| timestep: int | float | torch.LongTensor, |
| timestep_cond: torch.Tensor | None = None, |
| ofs: int | float | torch.LongTensor | None = None, |
| image_rotary_emb: tuple[torch.Tensor, torch.Tensor] | None = None, |
| attention_kwargs: dict[str, Any] | None = None, |
| return_dict: bool = True, |
| ) -> tuple[torch.Tensor] | Transformer2DModelOutput: |
| batch_size, num_frames, channels, height, width = hidden_states.shape |
|
|
| |
| timesteps = timestep |
| t_emb = self.time_proj(timesteps) |
|
|
| |
| |
| |
| t_emb = t_emb.to(dtype=hidden_states.dtype) |
| emb = self.time_embedding(t_emb, timestep_cond) |
|
|
| if self.ofs_embedding is not None: |
| ofs_emb = self.ofs_proj(ofs) |
| ofs_emb = ofs_emb.to(dtype=hidden_states.dtype) |
| ofs_emb = self.ofs_embedding(ofs_emb) |
| emb = emb + ofs_emb |
|
|
| |
| hidden_states = self.patch_embed(encoder_hidden_states, hidden_states) |
| hidden_states = self.embedding_dropout(hidden_states) |
|
|
| text_seq_length = encoder_hidden_states.shape[1] |
| encoder_hidden_states = hidden_states[:, :text_seq_length] |
| hidden_states = hidden_states[:, text_seq_length:] |
|
|
| |
| for i, block in enumerate(self.transformer_blocks): |
| if torch.is_grad_enabled() and self.gradient_checkpointing: |
| hidden_states, encoder_hidden_states = self._gradient_checkpointing_func( |
| block, |
| hidden_states, |
| encoder_hidden_states, |
| emb, |
| image_rotary_emb, |
| attention_kwargs, |
| ) |
| else: |
| hidden_states, encoder_hidden_states = block( |
| hidden_states=hidden_states, |
| encoder_hidden_states=encoder_hidden_states, |
| temb=emb, |
| image_rotary_emb=image_rotary_emb, |
| attention_kwargs=attention_kwargs, |
| ) |
|
|
| hidden_states = self.norm_final(hidden_states) |
|
|
| |
| hidden_states = self.norm_out(hidden_states, temb=emb) |
| hidden_states = self.proj_out(hidden_states) |
|
|
| |
| p = self.config.patch_size |
| p_t = self.config.patch_size_t |
|
|
| if p_t is None: |
| output = hidden_states.reshape(batch_size, num_frames, height // p, width // p, -1, p, p) |
| output = output.permute(0, 1, 4, 2, 5, 3, 6).flatten(5, 6).flatten(3, 4) |
| else: |
| output = hidden_states.reshape( |
| batch_size, (num_frames + p_t - 1) // p_t, height // p, width // p, -1, p_t, p, p |
| ) |
| output = output.permute(0, 1, 5, 4, 2, 6, 3, 7).flatten(6, 7).flatten(4, 5).flatten(1, 2) |
|
|
| if not return_dict: |
| return (output,) |
| return Transformer2DModelOutput(sample=output) |
|
|