mirror of
https://github.com/labmlai/annotated_deep_learning_paper_implementations.git
synced 2025-08-14 01:13:00 +08:00
155 lines
6.0 KiB
Python
155 lines
6.0 KiB
Python
"""
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# [Annotated Research Paper Implementations: Transformers, StyleGAN, Stable Diffusion, DDPM/DDIM, LayerNorm, Nucleus Sampling and more](index.html)
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This is a collection of simple PyTorch implementations of
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neural networks and related algorithms.
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[These implementations](https://github.com/labmlai/annotated_deep_learning_paper_implementations) are documented with explanations,
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and the [website](index.html)
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renders these as side-by-side formatted notes.
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We believe these would help you understand these algorithms better.
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We are actively maintaining this repo and adding new
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implementations.
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[](https://twitter.com/labmlai) for updates.
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## Translations
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### **[English (original)](https://nn.labml.ai)**
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### **[Chinese (translated)](https://nn.labml.ai/zh/)**
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### **[Japanese (translated)](https://nn.labml.ai/ja/)**
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## Paper Implementations
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#### ✨ [Transformers](transformers/index.html)
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* [Multi-headed attention](transformers/mha.html)
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* [Triton Flash Attention](transformers/flash/index.html)
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* [Transformer building blocks](transformers/models.html)
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* [Transformer XL](transformers/xl/index.html)
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* [Relative multi-headed attention](transformers/xl/relative_mha.html)
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* [Rotary Positional Embeddings (RoPE)](transformers/rope/index.html)
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* [Attention with Linear Biases (ALiBi)](transformers/alibi/index.html)
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* [RETRO](transformers/retro/index.html)
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* [Compressive Transformer](transformers/compressive/index.html)
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* [GPT Architecture](transformers/gpt/index.html)
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* [GLU Variants](transformers/glu_variants/simple.html)
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* [kNN-LM: Generalization through Memorization](transformers/knn/index.html)
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* [Feedback Transformer](transformers/feedback/index.html)
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* [Switch Transformer](transformers/switch/index.html)
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* [Fast Weights Transformer](transformers/fast_weights/index.html)
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* [FNet](transformers/fnet/index.html)
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* [Attention Free Transformer](transformers/aft/index.html)
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* [Masked Language Model](transformers/mlm/index.html)
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* [MLP-Mixer: An all-MLP Architecture for Vision](transformers/mlp_mixer/index.html)
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* [Pay Attention to MLPs (gMLP)](transformers/gmlp/index.html)
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* [Vision Transformer (ViT)](transformers/vit/index.html)
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* [Primer EZ](transformers/primer_ez/index.html)
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* [Hourglass](transformers/hour_glass/index.html)
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#### ✨ [Low-Rank Adaptation (LoRA)](lora/index.html)
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#### ✨ [Eleuther GPT-NeoX](neox/index.html)
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* [Generate on a 48GB GPU](neox/samples/generate.html)
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* [Finetune on two 48GB GPUs](neox/samples/finetune.html)
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* [LLM.int8()](neox/utils/llm_int8.html)
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#### ✨ [Diffusion models](diffusion/index.html)
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* [Denoising Diffusion Probabilistic Models (DDPM)](diffusion/ddpm/index.html)
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* [Denoising Diffusion Implicit Models (DDIM)](diffusion/stable_diffusion/sampler/ddim.html)
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* [Latent Diffusion Models](diffusion/stable_diffusion/latent_diffusion.html)
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* [Stable Diffusion](diffusion/stable_diffusion/index.html)
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#### ✨ [Generative Adversarial Networks](gan/index.html)
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* [Original GAN](gan/original/index.html)
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* [GAN with deep convolutional network](gan/dcgan/index.html)
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* [Cycle GAN](gan/cycle_gan/index.html)
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* [Wasserstein GAN](gan/wasserstein/index.html)
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* [Wasserstein GAN with Gradient Penalty](gan/wasserstein/gradient_penalty/index.html)
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* [StyleGAN 2](gan/stylegan/index.html)
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#### ✨ [Recurrent Highway Networks](recurrent_highway_networks/index.html)
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#### ✨ [LSTM](lstm/index.html)
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#### ✨ [HyperNetworks - HyperLSTM](hypernetworks/hyper_lstm.html)
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#### ✨ [ResNet](resnet/index.html)
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#### ✨ [ConvMixer](conv_mixer/index.html)
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#### ✨ [Capsule Networks](capsule_networks/index.html)
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#### ✨ [U-Net](unet/index.html)
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#### ✨ [Sketch RNN](sketch_rnn/index.html)
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#### ✨ Graph Neural Networks
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* [Graph Attention Networks (GAT)](graphs/gat/index.html)
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* [Graph Attention Networks v2 (GATv2)](graphs/gatv2/index.html)
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#### ✨ [Reinforcement Learning](rl/index.html)
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* [Proximal Policy Optimization](rl/ppo/index.html) with
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[Generalized Advantage Estimation](rl/ppo/gae.html)
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* [Deep Q Networks](rl/dqn/index.html) with
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with [Dueling Network](rl/dqn/model.html),
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[Prioritized Replay](rl/dqn/replay_buffer.html)
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and Double Q Network.
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#### ✨ [Counterfactual Regret Minimization (CFR)](cfr/index.html)
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Solving games with incomplete information such as poker with CFR.
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* [Kuhn Poker](cfr/kuhn/index.html)
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#### ✨ [Optimizers](optimizers/index.html)
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* [Adam](optimizers/adam.html)
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* [AMSGrad](optimizers/amsgrad.html)
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* [Adam Optimizer with warmup](optimizers/adam_warmup.html)
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* [Noam Optimizer](optimizers/noam.html)
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* [Rectified Adam Optimizer](optimizers/radam.html)
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* [AdaBelief Optimizer](optimizers/ada_belief.html)
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* [Sophia-G Optimizer](optimizers/sophia.html)
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#### ✨ [Normalization Layers](normalization/index.html)
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* [Batch Normalization](normalization/batch_norm/index.html)
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* [Layer Normalization](normalization/layer_norm/index.html)
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* [Instance Normalization](normalization/instance_norm/index.html)
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* [Group Normalization](normalization/group_norm/index.html)
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* [Weight Standardization](normalization/weight_standardization/index.html)
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* [Batch-Channel Normalization](normalization/batch_channel_norm/index.html)
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* [DeepNorm](normalization/deep_norm/index.html)
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#### ✨ [Distillation](distillation/index.html)
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#### ✨ [Adaptive Computation](adaptive_computation/index.html)
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* [PonderNet](adaptive_computation/ponder_net/index.html)
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#### ✨ [Uncertainty](uncertainty/index.html)
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* [Evidential Deep Learning to Quantify Classification Uncertainty](uncertainty/evidence/index.html)
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#### ✨ [Activations](activations/index.html)
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* [Fuzzy Tiling Activations](activations/fta/index.html)
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#### ✨ [Language Model Sampling Techniques](sampling/index.html)
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* [Greedy Sampling](sampling/greedy.html)
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* [Temperature Sampling](sampling/temperature.html)
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* [Top-k Sampling](sampling/top_k.html)
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* [Nucleus Sampling](sampling/nucleus.html)
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#### ✨ [Scalable Training/Inference](scaling/index.html)
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* [Zero3 memory optimizations](scaling/zero3/index.html)
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### Installation
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```bash
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pip install labml-nn
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```
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"""
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