Summary: Formats the covered files with pyfmt. paintitblack Reviewed By: itamaro Differential Revision: D90476315 fbshipit-source-id: ee94c471788b8e7d067813d8b3e0311214d17f3f
178 lines
6.3 KiB
Python
178 lines
6.3 KiB
Python
# Copyright (c) Meta Platforms, Inc. and affiliates. All Rights Reserved
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# pyre-unsafe
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"""Provides utility to combine a vision backbone with a language backbone."""
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from copy import copy
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from typing import List, Optional
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import torch
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import torch.nn as nn
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from torch.nn.attention import sdpa_kernel, SDPBackend
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from .act_ckpt_utils import activation_ckpt_wrapper
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from .necks import Sam3DualViTDetNeck
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class SAM3VLBackbone(nn.Module):
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"""This backbone combines a vision backbone and a language backbone without fusion.
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As such it is more of a convenience wrapper to handle the two backbones together.
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It adds support for activation checkpointing and compilation.
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"""
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def __init__(
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self,
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visual: Sam3DualViTDetNeck,
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text,
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compile_visual: bool = False,
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act_ckpt_whole_vision_backbone: bool = False,
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act_ckpt_whole_language_backbone: bool = False,
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scalp=0,
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):
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"""Initialize the backbone combiner.
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:param visual: The vision backbone to use
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:param text: The text encoder to use
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"""
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super().__init__()
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self.vision_backbone: Sam3DualViTDetNeck = (
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torch.compile(visual) if compile_visual else visual
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)
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self.language_backbone = text
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self.scalp = scalp
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# allow running activation checkpointing on the entire vision and language backbones
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self.act_ckpt_whole_vision_backbone = act_ckpt_whole_vision_backbone
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self.act_ckpt_whole_language_backbone = act_ckpt_whole_language_backbone
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def forward(
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self,
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samples: torch.Tensor,
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captions: List[str],
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input_boxes: Optional[torch.Tensor] = None,
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additional_text: Optional[List[str]] = None,
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):
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"""Forward pass of the backbone combiner.
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:param samples: The input images
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:param captions: The input captions
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:param input_boxes: If the text contains place-holders for boxes, this
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parameter contains the tensor containing their spatial features
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:param additional_text: This can be used to encode some additional text
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(different from the captions) in the same forward of the backbone
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:return: Output dictionary with the following keys:
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- vision_features: The output of the vision backbone
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- language_features: The output of the language backbone
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- language_mask: The attention mask of the language backbone
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- vision_pos_enc: The positional encoding of the vision backbone
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- (optional) additional_text_features: The output of the language
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backbone for the additional text
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- (optional) additional_text_mask: The attention mask of the
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language backbone for the additional text
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"""
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output = self.forward_image(samples)
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device = output["vision_features"].device
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output.update(self.forward_text(captions, input_boxes, additional_text, device))
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return output
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def forward_image(self, samples: torch.Tensor):
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return activation_ckpt_wrapper(self._forward_image_no_act_ckpt)(
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samples=samples,
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act_ckpt_enable=self.act_ckpt_whole_vision_backbone and self.training,
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)
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def _forward_image_no_act_ckpt(self, samples):
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# Forward through backbone
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sam3_features, sam3_pos, sam2_features, sam2_pos = self.vision_backbone.forward(
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samples
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)
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if self.scalp > 0:
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# Discard the lowest resolution features
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sam3_features, sam3_pos = (
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sam3_features[: -self.scalp],
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sam3_pos[: -self.scalp],
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)
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if sam2_features is not None and sam2_pos is not None:
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sam2_features, sam2_pos = (
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sam2_features[: -self.scalp],
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sam2_pos[: -self.scalp],
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)
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sam2_output = None
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if sam2_features is not None and sam2_pos is not None:
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sam2_src = sam2_features[-1]
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sam2_output = {
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"vision_features": sam2_src,
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"vision_pos_enc": sam2_pos,
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"backbone_fpn": sam2_features,
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}
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sam3_src = sam3_features[-1]
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output = {
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"vision_features": sam3_src,
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"vision_pos_enc": sam3_pos,
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"backbone_fpn": sam3_features,
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"sam2_backbone_out": sam2_output,
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}
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return output
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def forward_text(
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self, captions, input_boxes=None, additional_text=None, device="cuda"
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):
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return activation_ckpt_wrapper(self._forward_text_no_ack_ckpt)(
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captions=captions,
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input_boxes=input_boxes,
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additional_text=additional_text,
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device=device,
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act_ckpt_enable=self.act_ckpt_whole_language_backbone and self.training,
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)
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def _forward_text_no_ack_ckpt(
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self,
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captions,
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input_boxes=None,
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additional_text=None,
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device="cuda",
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):
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output = {}
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# Forward through text_encoder
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text_to_encode = copy(captions)
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if additional_text is not None:
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# if there are additional_text, we piggy-back them into this forward.
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# They'll be used later for output alignment
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text_to_encode += additional_text
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sdpa_context = sdpa_kernel(
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[
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SDPBackend.MATH,
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SDPBackend.EFFICIENT_ATTENTION,
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SDPBackend.FLASH_ATTENTION,
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]
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)
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with sdpa_context:
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text_attention_mask, text_memory, text_embeds = self.language_backbone(
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text_to_encode, input_boxes, device=device
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)
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if additional_text is not None:
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output["additional_text_features"] = text_memory[:, -len(additional_text) :]
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output["additional_text_mask"] = text_attention_mask[
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-len(additional_text) :
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]
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text_memory = text_memory[:, : len(captions)]
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text_attention_mask = text_attention_mask[: len(captions)]
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text_embeds = text_embeds[:, : len(captions)]
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output["language_features"] = text_memory
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output["language_mask"] = text_attention_mask
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output["language_embeds"] = (
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text_embeds # Text embeddings before forward to the encoder
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)
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return output
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