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Arm/resnet-50-int8-xnnpack-executorch

sourceHugging Faceapache-2.0updated 15d agoView on Hugging Face
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ResNet-50 optimized for Arm-based Edge Linux

ResNet-50 image classification optimized as an INT8 ExecuTorch .pte model for Arm-based Edge Linux systems.

Summary

This repository contains an Arm-optimized version of microsoft/resnet-50 for image classification. The model is provided in ExecuTorch .pte (ExecuTorch runtime), targeting Edge Linux systems.

This version demonstrates efficient inference on Arm-based platforms while preserving the original model's intended behavior. Arm evaluated this model on ImageNet-1k and measured performance on a representative evaluation target.

Key results

AreaResult
Model formatExecuTorch .pte
Target device classEdge Linux
Reference deviceRaspberry Pi 5 (Cortex-A76, Linux Raspberry Pi OS 64-bit, based on Debian 13 "Trixie")
Primary performance result20.64 ms p50 latency (48.46 FPS)
Accuracy resultTop-1 79.26% / Top-5 94.18%
Size / memory result24.72 MB (.pte), 3.94x smaller than FP32

Original model

FieldValue
Original modelmicrosoft/resnet-50
Original sourceHugging Face
Original developerMicrosoft
Original model cardmicrosoft/resnet-50
Original licenseApache-2.0

Model files

FileDescription
resnet-50_raspberry_executorch_optimized.pteArm-optimized INT8 model for deployment
example.pyMinimal inference example
pyproject.tomlPinned runtime dependencies for example.py, resolved with uv
uv.lockLocked dependency resolution for pyproject.toml
config.yamlModel I/O contract used by the example
benchmarks/FP32 baseline and Arm-optimized benchmark records

Performance

Performance was measured on the reference configuration below. Results make the optimization reproducible but do not guarantee identical performance on every Arm-based system.

Reference configuration

FieldValue
Device / platformRaspberry Pi 5
CPU / acceleratorCortex-A76 (4 cores @ 2.4 GHz), CPU
OSLinux — Raspberry Pi OS 64-bit, based on Debian 13 "Trixie"
RuntimeExecuTorch 1.1.0
Backend / delegateXNNPACK + KleidiAI
Batch size1
PrecisionINT8, PTQ-static — per-channel symmetric weights, per-tensor affine activations
Runs10 warmup + 100 measured

Performance results

MetricOriginal / baselineArm-optimizedImprovement
p50 latency88.17 ms20.64 ms4.27x
p90 latency89.20 ms20.74 ms4.30x
Model size97.45 MB24.72 MB3.94x smaller
Peak memory181.08 MB48.05 MB3.77x less

Accuracy

Evaluation setup

FieldValue
DatasetImageNet-1k
Splitval
Number of samples50000
Metric(s)Top-1 Accuracy, Top-5 Accuracy
Evaluation runtimeExecuTorch

Accuracy results

MetricOriginal / baselineArm-optimizedChange
Top-1 Accuracy80.11%79.26%-0.85 pp
Top-5 Accuracy94.49%94.18%-0.31 pp

Accuracy was measured using the evaluation setup described above. Users should re-evaluate the model on their own data before production use.

Arm optimization approach

Arm optimized this model for efficient inference on Arm-based platforms using a hardware-aware conversion and validation flow.

For this release, Arm used:

Optimization areaApplied?Notes
Model conversionYesConverted to ExecuTorch .pte
QuantizationYesINT8 PTQ-static — per-channel symmetric weights, per-tensor affine activations; calibrated on 1,500 ImageNet-1k samples
Runtime/backend selectionYesXNNPACK + KleidiAI delegate
Graph/runtime compatibility updatesYesPerformed as part of the ExecuTorch export pipeline
Accuracy validationYesCompared against the original model or published baseline
Performance validationYesMeasured on the reference Arm platform

The goal of this process is to improve deployment characteristics such as latency, memory use, model size, and runtime compatibility while preserving the model's intended behavior. Detailed conversion scripts, calibration configuration, or backend-specific implementation details may be provided separately where appropriate.

Using this model

Install dependencies

Dependencies are declared in pyproject.toml, which ships with this repository. Resolve and install them into a local virtual environment with uv:

bash
uv python install
uv sync --frozen

Run the example

bash
uv run example.py

Expected input

PropertyValue
Input shape[1, 3, 224, 224]
Input typefloat32
Input range[0.0, 1.0] before normalization; the tensor passed to the model is normalized (approximately [-2.12, 2.64])
PreprocessingResize 256, center-crop 224×224, ImageNet mean/std normalization

Expected output

PropertyValue
Output shape[1, 1000]
Output typefloat32 (raw class logits)
Postprocessingsoftmax, top-5

Intended use

This model is intended for developers evaluating image-classification workloads on Arm-based platforms. It is suitable as a reference implementation for benchmarking, prototyping, and integration exploration.

Limitations

  • Performance depends on the target device, runtime version, backend/delegate support, memory configuration, and system load.
  • Accuracy was evaluated on ImageNet-1k val and may not generalize to all domains.
  • This release preserves the original model's intended task and behavior, but users should validate it for their own application, data, and deployment environment.
  • This repository is not a replacement for the original model documentation.

Additional notes

  • Quantization: PT2E static quantization via XNNPACKQuantizer — per-channel symmetric weights, per-tensor affine activations; all layers quantized (none kept in FP32).
  • Input images have their shortest edge resized to 256 with the aspect ratio preserved, then the center 224×224 region is cropped, so content outside that crop is discarded.
  • Sample input: sample_input.jpg is derived from Samoyed on Beach by Appleinfl, via Wikimedia Commons (public domain).

About this version

Original Model: microsoft/resnet-50 by Microsoft - Repository

Optimization/conversion: Arm-Optimized version for execution on Arm-based platforms.

Converted/optimized by: Arm

License: The Original Model and the Optimized Model are subject to Apache-2.0.

This repository contains a converted or optimized version of the Original Model (the “Optimized Model”). The Original Model has been converted or optimized as described above for execution on Arm-based platforms.

No retraining or fine-tuning of the Original Model was performed as part of the conversion or optimization. The conversion or optimization was not intended to change the Original Model’s behavior or intended use.

Original Model and Documentation

For information about the Original Model, including its development, training data, intended uses, limitations and other relevant information, please refer to the Original Model repository. Information in that repository was provided by the original developer or other third parties and, unless expressly stated otherwise, has not been independently verified by Arm.

Licenses and Third-Party Terms

Use of the Original Model and the Optimized Model is subject to the applicable licenses, usage restrictions and other terms identified above and in the relevant repositories. Publication of the Optimized Model does not grant any rights beyond those provided under the applicable license terms.

You are responsible for reviewing those terms and ensuring that your use of the Original Model and the Optimized Model is permitted.

Purpose of this Release

The Optimized Model is provided as a reference implementation to demonstrate and evaluate execution and performance on Arm-based systems. It is not a production-ready or supported solution.

Arm’s publication of the Optimized Model does not constitute an endorsement or certification of the Original Model or a representation that the Optimized Model is suitable for production use or any particular purpose.

To the fullest extent permitted by applicable law (i) the Optimized Model is provided “as is.” Arm makes no representations or warranties that the Original Model, the Optimized Model or their outputs are accurate, safe, secure, non-infringing, legally compliant, suitable for production use or fit for any particular purpose; and (ii) Arm will not be liable for any loss or damage arising from or in connection with the Optimized Model, its use or its outputs.

You are responsible for independently evaluating the Optimized Model, its outputs and its suitability for your intended use, including compliance with applicable legal, regulatory, safety and security requirements.

Arm does not commit to provide ongoing support, maintenance or updates for the Optimized Model. Any use of or reliance on the Optimized Model or its outputs is at your own risk.