Abstract
Extreme low-bit LLM compression is most challenging when weights, activations, and KV caches are quantized together: their distributions differ, and quantization errors interact throughout the network. We introduce CanonQ, a unified quantization-aware training framework that addresses these challenges by separating source canonicalization from task-aware adaptation. Fixed rotations and energy normalization map heterogeneous tensor sources to canonical coordinates, enabling frozen Gaussian-reference codebooks to be reused across layers and models. Joint training then adapts the network to the coupled errors of weight, activation, and cache quantization within a common scalar/vector interface. We bound frozen-codebook transfer error and local task loss, and derive an exact normalization-aware straight-through Jacobian that links quantization distortion to gradient bias. The strongest gains arise under joint W2A4KV2 compression: across LLaMA3-1B/3B/8B, CanonQ-Omni achieves up to 14.28x lower WikiText-2 perplexity and up to 57.9% higher mean zero-shot accuracy than prior state-of-the-art and representative quantization baselines. The benefits extend to Qwen3-1.7B, code generation, and mathematical reasoning: on instruction-tuned MobileLLM-Pro-1B at W2A16KV16, CanonQ achieves relative improvements of 41.7% in HumanEval pass@1 and 39.1% in GSM8K exact match over the strongest evaluated quantization baseline.
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Cite this article
APA 7
Yi, K., Elgamal, T., Surineni, S., Vivekraja, V., Ghosh, S., & Li, S. (2026). Few Bits, One Law: Toward W2A4KV2. https://omanscience.com/en/articles/few-bits-one-law-toward-w2a4kv2
MLA 9
Yi, Kai, et al. "Few Bits, One Law: Toward W2A4KV2." https://omanscience.com/en/articles/few-bits-one-law-toward-w2a4kv2.
Chicago (author–date)
Yi, Kai, Tarek Elgamal, Sruthikesh Surineni, Vignesh Vivekraja, Soumyadeep Ghosh, and Steven Li. 2026. "Few Bits, One Law: Toward W2A4KV2." https://omanscience.com/en/articles/few-bits-one-law-toward-w2a4kv2.
Harvard
Yi, K., Elgamal, T., Surineni, S., Vivekraja, V., Ghosh, S. and Li, S. (2026) 'Few Bits, One Law: Toward W2A4KV2', Available at: https://omanscience.com/en/articles/few-bits-one-law-toward-w2a4kv2.
Vancouver
Yi K, Elgamal T, Surineni S, Vivekraja V, Ghosh S, Li S. Few Bits, One Law: Toward W2A4KV2. https://omanscience.com/en/articles/few-bits-one-law-toward-w2a4kv2
IEEE
K. Yi, T. Elgamal, S. Surineni, V. Vivekraja, S. Ghosh, and S. Li, "Few Bits, One Law: Toward W2A4KV2," https://omanscience.com/en/articles/few-bits-one-law-toward-w2a4kv2.