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import hashlib |
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import math |
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import os |
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from collections import defaultdict |
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from io import BytesIO |
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from typing import List, Optional, Type, Union |
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import safetensors.torch |
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import torch |
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import torch.utils.checkpoint |
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from diffusers.models.lora import LoRACompatibleConv, LoRACompatibleLinear |
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from safetensors.torch import load_file |
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from transformers import T5EncoderModel |
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class LoRAModule(torch.nn.Module): |
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""" |
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replaces forward method of the original Linear, instead of replacing the original Linear module. |
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""" |
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def __init__( |
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self, |
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lora_name, |
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org_module: torch.nn.Module, |
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multiplier=1.0, |
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lora_dim=4, |
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alpha=1, |
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dropout=None, |
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rank_dropout=None, |
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module_dropout=None, |
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): |
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"""if alpha == 0 or None, alpha is rank (no scaling).""" |
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super().__init__() |
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self.lora_name = lora_name |
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if org_module.__class__.__name__ == "Conv2d": |
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in_dim = org_module.in_channels |
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out_dim = org_module.out_channels |
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else: |
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in_dim = org_module.in_features |
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out_dim = org_module.out_features |
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self.lora_dim = lora_dim |
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if org_module.__class__.__name__ == "Conv2d": |
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kernel_size = org_module.kernel_size |
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stride = org_module.stride |
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padding = org_module.padding |
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self.lora_down = torch.nn.Conv2d(in_dim, self.lora_dim, kernel_size, stride, padding, bias=False) |
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self.lora_up = torch.nn.Conv2d(self.lora_dim, out_dim, (1, 1), (1, 1), bias=False) |
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else: |
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self.lora_down = torch.nn.Linear(in_dim, self.lora_dim, bias=False) |
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self.lora_up = torch.nn.Linear(self.lora_dim, out_dim, bias=False) |
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if type(alpha) == torch.Tensor: |
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alpha = alpha.detach().float().numpy() |
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alpha = self.lora_dim if alpha is None or alpha == 0 else alpha |
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self.scale = alpha / self.lora_dim |
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self.register_buffer("alpha", torch.tensor(alpha)) |
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torch.nn.init.kaiming_uniform_(self.lora_down.weight, a=math.sqrt(5)) |
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torch.nn.init.zeros_(self.lora_up.weight) |
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self.multiplier = multiplier |
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self.org_module = org_module |
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self.dropout = dropout |
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self.rank_dropout = rank_dropout |
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self.module_dropout = module_dropout |
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def apply_to(self): |
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self.org_forward = self.org_module.forward |
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self.org_module.forward = self.forward |
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del self.org_module |
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def forward(self, x, *args, **kwargs): |
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weight_dtype = x.dtype |
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org_forwarded = self.org_forward(x) |
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if self.module_dropout is not None and self.training: |
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if torch.rand(1) < self.module_dropout: |
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return org_forwarded |
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lx = self.lora_down(x.to(self.lora_down.weight.dtype)) |
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if self.dropout is not None and self.training: |
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lx = torch.nn.functional.dropout(lx, p=self.dropout) |
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if self.rank_dropout is not None and self.training: |
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mask = torch.rand((lx.size(0), self.lora_dim), device=lx.device) > self.rank_dropout |
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if len(lx.size()) == 3: |
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mask = mask.unsqueeze(1) |
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elif len(lx.size()) == 4: |
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mask = mask.unsqueeze(-1).unsqueeze(-1) |
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lx = lx * mask |
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scale = self.scale * (1.0 / (1.0 - self.rank_dropout)) |
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else: |
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scale = self.scale |
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lx = self.lora_up(lx) |
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return org_forwarded.to(weight_dtype) + lx.to(weight_dtype) * self.multiplier * scale |
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def addnet_hash_legacy(b): |
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"""Old model hash used by sd-webui-additional-networks for .safetensors format files""" |
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m = hashlib.sha256() |
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b.seek(0x100000) |
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m.update(b.read(0x10000)) |
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return m.hexdigest()[0:8] |
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def addnet_hash_safetensors(b): |
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"""New model hash used by sd-webui-additional-networks for .safetensors format files""" |
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hash_sha256 = hashlib.sha256() |
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blksize = 1024 * 1024 |
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b.seek(0) |
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header = b.read(8) |
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n = int.from_bytes(header, "little") |
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offset = n + 8 |
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b.seek(offset) |
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for chunk in iter(lambda: b.read(blksize), b""): |
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hash_sha256.update(chunk) |
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return hash_sha256.hexdigest() |
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def precalculate_safetensors_hashes(tensors, metadata): |
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"""Precalculate the model hashes needed by sd-webui-additional-networks to |
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save time on indexing the model later.""" |
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metadata = {k: v for k, v in metadata.items() if k.startswith("ss_")} |
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bytes = safetensors.torch.save(tensors, metadata) |
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b = BytesIO(bytes) |
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model_hash = addnet_hash_safetensors(b) |
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legacy_hash = addnet_hash_legacy(b) |
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return model_hash, legacy_hash |
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class LoRANetwork(torch.nn.Module): |
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TRANSFORMER_TARGET_REPLACE_MODULE = ["CogVideoXTransformer3DModel"] |
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TEXT_ENCODER_TARGET_REPLACE_MODULE = ["T5LayerSelfAttention", "T5LayerFF", "BertEncoder"] |
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LORA_PREFIX_TRANSFORMER = "lora_unet" |
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LORA_PREFIX_TEXT_ENCODER = "lora_te" |
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def __init__( |
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self, |
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text_encoder: Union[List[T5EncoderModel], T5EncoderModel], |
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unet, |
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multiplier: float = 1.0, |
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lora_dim: int = 4, |
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alpha: float = 1, |
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dropout: Optional[float] = None, |
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module_class: Type[object] = LoRAModule, |
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add_lora_in_attn_temporal: bool = False, |
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varbose: Optional[bool] = False, |
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) -> None: |
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super().__init__() |
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self.multiplier = multiplier |
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self.lora_dim = lora_dim |
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self.alpha = alpha |
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self.dropout = dropout |
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print(f"create LoRA network. base dim (rank): {lora_dim}, alpha: {alpha}") |
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print(f"neuron dropout: p={self.dropout}") |
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def create_modules( |
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is_unet: bool, |
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root_module: torch.nn.Module, |
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target_replace_modules: List[torch.nn.Module], |
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) -> List[LoRAModule]: |
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prefix = ( |
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self.LORA_PREFIX_TRANSFORMER |
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if is_unet |
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else self.LORA_PREFIX_TEXT_ENCODER |
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) |
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loras = [] |
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skipped = [] |
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for name, module in root_module.named_modules(): |
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if module.__class__.__name__ in target_replace_modules: |
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for child_name, child_module in module.named_modules(): |
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is_linear = child_module.__class__.__name__ == "Linear" or child_module.__class__.__name__ == "LoRACompatibleLinear" |
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is_conv2d = child_module.__class__.__name__ == "Conv2d" or child_module.__class__.__name__ == "LoRACompatibleConv" |
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is_conv2d_1x1 = is_conv2d and child_module.kernel_size == (1, 1) |
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if not add_lora_in_attn_temporal: |
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if "attn_temporal" in child_name: |
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continue |
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if is_linear or is_conv2d: |
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lora_name = prefix + "." + name + "." + child_name |
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lora_name = lora_name.replace(".", "_") |
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dim = None |
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alpha = None |
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if is_linear or is_conv2d_1x1: |
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dim = self.lora_dim |
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alpha = self.alpha |
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if dim is None or dim == 0: |
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if is_linear or is_conv2d_1x1: |
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skipped.append(lora_name) |
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continue |
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lora = module_class( |
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lora_name, |
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child_module, |
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self.multiplier, |
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dim, |
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alpha, |
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dropout=dropout, |
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) |
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loras.append(lora) |
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return loras, skipped |
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text_encoders = text_encoder if type(text_encoder) == list else [text_encoder] |
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self.text_encoder_loras = [] |
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skipped_te = [] |
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for i, text_encoder in enumerate(text_encoders): |
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if text_encoder is not None: |
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text_encoder_loras, skipped = create_modules(False, text_encoder, LoRANetwork.TEXT_ENCODER_TARGET_REPLACE_MODULE) |
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self.text_encoder_loras.extend(text_encoder_loras) |
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skipped_te += skipped |
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print(f"create LoRA for Text Encoder: {len(self.text_encoder_loras)} modules.") |
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self.unet_loras, skipped_un = create_modules(True, unet, LoRANetwork.TRANSFORMER_TARGET_REPLACE_MODULE) |
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print(f"create LoRA for U-Net: {len(self.unet_loras)} modules.") |
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names = set() |
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for lora in self.text_encoder_loras + self.unet_loras: |
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assert lora.lora_name not in names, f"duplicated lora name: {lora.lora_name}" |
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names.add(lora.lora_name) |
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def apply_to(self, text_encoder, unet, apply_text_encoder=True, apply_unet=True): |
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if apply_text_encoder: |
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print("enable LoRA for text encoder") |
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else: |
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self.text_encoder_loras = [] |
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if apply_unet: |
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print("enable LoRA for U-Net") |
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else: |
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self.unet_loras = [] |
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for lora in self.text_encoder_loras + self.unet_loras: |
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lora.apply_to() |
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self.add_module(lora.lora_name, lora) |
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def set_multiplier(self, multiplier): |
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self.multiplier = multiplier |
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for lora in self.text_encoder_loras + self.unet_loras: |
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lora.multiplier = self.multiplier |
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def load_weights(self, file): |
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if os.path.splitext(file)[1] == ".safetensors": |
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from safetensors.torch import load_file |
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weights_sd = load_file(file) |
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else: |
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weights_sd = torch.load(file, map_location="cpu") |
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info = self.load_state_dict(weights_sd, False) |
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return info |
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def prepare_optimizer_params(self, text_encoder_lr, unet_lr, default_lr): |
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self.requires_grad_(True) |
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all_params = [] |
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def enumerate_params(loras): |
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params = [] |
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for lora in loras: |
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params.extend(lora.parameters()) |
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return params |
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if self.text_encoder_loras: |
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param_data = {"params": enumerate_params(self.text_encoder_loras)} |
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if text_encoder_lr is not None: |
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param_data["lr"] = text_encoder_lr |
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all_params.append(param_data) |
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if self.unet_loras: |
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param_data = {"params": enumerate_params(self.unet_loras)} |
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if unet_lr is not None: |
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param_data["lr"] = unet_lr |
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all_params.append(param_data) |
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return all_params |
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def enable_gradient_checkpointing(self): |
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pass |
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def get_trainable_params(self): |
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return self.parameters() |
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def save_weights(self, file, dtype, metadata): |
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if metadata is not None and len(metadata) == 0: |
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metadata = None |
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state_dict = self.state_dict() |
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if dtype is not None: |
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for key in list(state_dict.keys()): |
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v = state_dict[key] |
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v = v.detach().clone().to("cpu").to(dtype) |
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state_dict[key] = v |
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if os.path.splitext(file)[1] == ".safetensors": |
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from safetensors.torch import save_file |
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if metadata is None: |
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metadata = {} |
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model_hash, legacy_hash = precalculate_safetensors_hashes(state_dict, metadata) |
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metadata["sshs_model_hash"] = model_hash |
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metadata["sshs_legacy_hash"] = legacy_hash |
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save_file(state_dict, file, metadata) |
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else: |
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torch.save(state_dict, file) |
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def create_network( |
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multiplier: float, |
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network_dim: Optional[int], |
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network_alpha: Optional[float], |
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text_encoder: Union[T5EncoderModel, List[T5EncoderModel]], |
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transformer, |
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neuron_dropout: Optional[float] = None, |
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add_lora_in_attn_temporal: bool = False, |
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**kwargs, |
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): |
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if network_dim is None: |
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network_dim = 4 |
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if network_alpha is None: |
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network_alpha = 1.0 |
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network = LoRANetwork( |
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text_encoder, |
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transformer, |
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multiplier=multiplier, |
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lora_dim=network_dim, |
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alpha=network_alpha, |
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dropout=neuron_dropout, |
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add_lora_in_attn_temporal=add_lora_in_attn_temporal, |
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varbose=True, |
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) |
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return network |
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def merge_lora(pipeline, lora_path, multiplier, device='cpu', dtype=torch.float32, state_dict=None, transformer_only=False): |
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LORA_PREFIX_TRANSFORMER = "lora_unet" |
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LORA_PREFIX_TEXT_ENCODER = "lora_te" |
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if state_dict is None: |
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state_dict = load_file(lora_path, device=device) |
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else: |
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state_dict = state_dict |
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updates = defaultdict(dict) |
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for key, value in state_dict.items(): |
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layer, elem = key.split('.', 1) |
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updates[layer][elem] = value |
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for layer, elems in updates.items(): |
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if "lora_te" in layer: |
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if transformer_only: |
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continue |
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else: |
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layer_infos = layer.split(LORA_PREFIX_TEXT_ENCODER + "_")[-1].split("_") |
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curr_layer = pipeline.text_encoder |
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else: |
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layer_infos = layer.split(LORA_PREFIX_TRANSFORMER + "_")[-1].split("_") |
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curr_layer = pipeline.transformer |
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temp_name = layer_infos.pop(0) |
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while len(layer_infos) > -1: |
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try: |
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curr_layer = curr_layer.__getattr__(temp_name) |
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if len(layer_infos) > 0: |
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temp_name = layer_infos.pop(0) |
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elif len(layer_infos) == 0: |
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break |
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except Exception: |
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if len(layer_infos) == 0: |
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print('Error loading layer') |
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if len(temp_name) > 0: |
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temp_name += "_" + layer_infos.pop(0) |
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else: |
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temp_name = layer_infos.pop(0) |
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weight_up = elems['lora_up.weight'].to(dtype) |
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weight_down = elems['lora_down.weight'].to(dtype) |
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if 'alpha' in elems.keys(): |
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alpha = elems['alpha'].item() / weight_up.shape[1] |
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else: |
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alpha = 1.0 |
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curr_layer.weight.data = curr_layer.weight.data.to(device) |
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if len(weight_up.shape) == 4: |
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curr_layer.weight.data += multiplier * alpha * torch.mm(weight_up.squeeze(3).squeeze(2), |
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weight_down.squeeze(3).squeeze(2)).unsqueeze( |
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2).unsqueeze(3) |
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else: |
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curr_layer.weight.data += multiplier * alpha * torch.mm(weight_up, weight_down) |
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return pipeline |
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def unmerge_lora(pipeline, lora_path, multiplier=1, device="cpu", dtype=torch.float32): |
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"""Unmerge state_dict in LoRANetwork from the pipeline in diffusers.""" |
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LORA_PREFIX_UNET = "lora_unet" |
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LORA_PREFIX_TEXT_ENCODER = "lora_te" |
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state_dict = load_file(lora_path, device=device) |
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updates = defaultdict(dict) |
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for key, value in state_dict.items(): |
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layer, elem = key.split('.', 1) |
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updates[layer][elem] = value |
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for layer, elems in updates.items(): |
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if "lora_te" in layer: |
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layer_infos = layer.split(LORA_PREFIX_TEXT_ENCODER + "_")[-1].split("_") |
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curr_layer = pipeline.text_encoder |
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else: |
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layer_infos = layer.split(LORA_PREFIX_UNET + "_")[-1].split("_") |
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curr_layer = pipeline.transformer |
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temp_name = layer_infos.pop(0) |
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while len(layer_infos) > -1: |
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try: |
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curr_layer = curr_layer.__getattr__(temp_name) |
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if len(layer_infos) > 0: |
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temp_name = layer_infos.pop(0) |
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elif len(layer_infos) == 0: |
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break |
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except Exception: |
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if len(layer_infos) == 0: |
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print('Error loading layer') |
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if len(temp_name) > 0: |
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temp_name += "_" + layer_infos.pop(0) |
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else: |
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temp_name = layer_infos.pop(0) |
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weight_up = elems['lora_up.weight'].to(dtype) |
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weight_down = elems['lora_down.weight'].to(dtype) |
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if 'alpha' in elems.keys(): |
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alpha = elems['alpha'].item() / weight_up.shape[1] |
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else: |
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alpha = 1.0 |
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curr_layer.weight.data = curr_layer.weight.data.to(device) |
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if len(weight_up.shape) == 4: |
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curr_layer.weight.data -= multiplier * alpha * torch.mm(weight_up.squeeze(3).squeeze(2), |
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weight_down.squeeze(3).squeeze(2)).unsqueeze(2).unsqueeze(3) |
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else: |
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curr_layer.weight.data -= multiplier * alpha * torch.mm(weight_up, weight_down) |
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return pipeline |