Papers › Normalized Attention Without Probability Cage

Normalized Attention Without Probability Cage

19 May 2020arXiv:2005.09561archive 2025-07-28

Oliver Richter, Roger Wattenhofer

Attention architectures are widely used; they recently gained renewed popularity with Transformers yielding a streak of state of the art results. Yet, the geometrical implications of softmax-attention remain largely unexplored. In this work we highlight the limitations of constraining attention weights to the probability simplex and the resulting convex hull of value vectors. We show that Transformers are sequence length dependent biased towards token isolation at initialization and contrast Transformers to simple max- and sum-pooling - two strong baselines rarely reported. We propose to replace the softmax in self-attention with normalization, yielding a hyperparameter and data-bias robust, generally applicable architecture. We support our insights with empirical results from more than 25,000 trained models. All results and implementations are made available.

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causal_normalize lucidrains/all-normalization-transformer/all_normalization_transformer/all_normalization_transformer.py community (archive-listed) ran · violated contract fingerprinted MIT (permissive) · 27a2c9aae4bdb7fe · report
cum_mean lucidrains/all-normalization-transformer/all_normalization_transformer/all_normalization_transformer.py community (archive-listed) ran · honoured contract fingerprinted MIT (permissive) · f205d74f98f430f5 · report
decode_token lucidrains/all-normalization-transformer/train_enwik8.py community (archive-listed) ran · our draft was wrong fingerprinted MIT (permissive) · 068b17b5ae41f738 · report
decode_tokens lucidrains/all-normalization-transformer/train_enwik8.py community (archive-listed) ran · fixture could not drive it fingerprinted MIT (permissive) · eecbbddb3f150af3 · report
normalize lucidrains/all-normalization-transformer/all_normalization_transformer/all_normalization_transformer.py community (archive-listed) ran · honoured contract fingerprinted MIT (permissive) · 1d4fa3c94a2cfb82 · report

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