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A tool for ONNX model:Shape inference, MACs(FLOPs) counting for each layer, Extract subgraph from ONNX model, or do inplace op fusion, and any operation you can image with ONNX.

Project description

onnx-tool

A tool for ONNX model:

  • Shape inference.
  • MACs(FLOPs) counting for each layer.
  • Extract subgraph from ONNX model, or do inplace op fusion. ...
    and any operation you can image with ONNX.

New:

  • Sparse Models are initially supported in v0.3.1 release. view Sparse Model
  • Quantized models are initially supported in v0.3.0 release.
  • 4 onnx models of Stable Diffusion are supported in v0.2.14 release. view results
  • Memory usage of each layer is valid in v0.2.10 release.
  • Pytorch models are also valid if torch.onnx.export succeeded.

Shape inference

how to use: data/Profile.md.
pytorch usage: data/PytorchUsage.md.


MACs counting for each layer (FLOPs=2*MACs)

Float MultipleAdd Count, Memory Usage(in bytes), Parameters(elements number)

Sparse Pattern, Sparse Block Ratio, Sparse Element Ratio

how to use: data/Profile.md.
pytorch usage: data/PytorchUsage.md.


Extract subgraph from ONNX model

how to use: data/Subgraph.md.


Inplace op fusion

how to use: data/Subgraph.md.


Add any hidden tensors to model's outputs

how to use: data/Profile.md.


Tensor operations

  • Export weight tensors to files
  • Simplify tensor and node names, convert name from a long string to a short string
  • Remove unused tensors, models like vgg19-7.onnx set its static weight tensors as its input tensors
  • Set custom input and output tensors' name and dimension, change model from fixed input to dynamic input
    how to use: data/Tensors.md.

How to install

pip install onnx-tool

OR

pip install --upgrade git+https://github.com/ThanatosShinji/onnx-tool.git

python>=3.6

If pip install onnx-tool failed by onnx's installation, you may try pip install onnx==1.8.1 (a lower version like this) first.
Then pip install onnx-tool again.


Known Issues

  • Loop op is not supported

Results of ONNX Model Zoo and SOTA models

Some models have dynamic input shapes. The MACs varies from input shapes. The input shapes used in these results are writen to data/public/config.py. These onnx models with all tensors' shape can be downloaded: baidu drive(code: p91k) google drive

Model Params(M) MACs(M)
text_encoder 123.13 6,782
UNet2DCondition 859.52 888,870
VAE_encoder 34.16 566,371
VAE_decoder 49.49 1,271,959
SqueezeNet 1.0 1.23 351
VGG 19 143.66 19,643
AlexNet 60.96 665
GoogleNet 6.99 1,606
googlenet_age_adience 5.98 1,605
LResNet100E-IR 65.22 12,102
BERT-Squad 113.61 22,767
BiDAF 18.08 9.87
EfficientNet-Lite4 12.96 1,361
Emotion FERPlus 12.95 877
Mask R-CNN R-50-FPN-fp32 46.77 92,077
Model Params(M) MACs(M)
rvm_mobilenetv3_fp32.onnx 3.73 4,289
yolov4 64.33 3,319
ConvNeXt-L 229.79 34,872
edgenext_small 5.58 1,357
SSD 19.98 216,598
RealESRGAN_x4plus.pth 16.69 73,551
ShuffleNet-v2-fp32 2.29 146
GPT-2 137.02 1,103
T5-encoder 109.62 686
T5-decoder-with-lm-head 162.62 1,113
RoBERTa-BASE 124.64 688
Faster R-CNN R-50-FPN-fp32 44.10 46,018
FCN ResNet-50 35.29 37,056
MobileNet v2-1.0-fp32 3.3 300
ResNet50_fp32 25 3,868

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