Quantization publisher

calcuis

calcuis publishes 321 quantizations across 18 models in our index, averaging 12.418 effective bits per weight. Their files differ in size from other publishers' builds of the same nominal quantization on 25 of the pairs we can compare — the same label does not mean the same file.

From the file· summed file bytes
Repositories
19
Quantizations
321
Models covered
18
Avg effective bpw
12.418
across their files

Same model, same quant label, different bytes

largest disagreements first
ModelQuantcalcuisvsTheirsDifference
HunyuanImage-2.1F1636.54 GiBQuantStack28.02 GiB+30.4%
Qwen-Image-Edit-2509Q4_120.38 GiBQuantStack12.00 GiB+69.8%
HunyuanVideoQ8_020.97 GiBcity9613.01 GiB+61.1%
Qwen-Image-EditQ4_015.73 GiBunsloth11.04 GiB+42.5%
Qwen-Image-EditQ4_015.73 GiBQuantStack11.04 GiB+42.5%
stable-diffusion-3.5-largeQ5_15.84 GiBsecond-state9.57 GiB-39.0%
stable-diffusion-3.5-largeQ5_05.38 GiBsecond-state8.82 GiB-39.1%
stable-diffusion-3.5-largeQ4_14.91 GiBsecond-state8.07 GiB-39.2%
stable-diffusion-3.5-largeQ4_04.44 GiBsecond-state7.32 GiB-39.3%
HunyuanImage-2.1Q3_K_S8.42 GiBQuantStack6.64 GiB+26.9%
Qwen-Image-EditQ4_K_M10.93 GiBunsloth12.23 GiB-10.6%
Qwen-Image-Edit-2509Q4_K_M10.93 GiBunsloth12.23 GiB-10.6%
Qwen-Image-Edit-2509Q4_K_M10.93 GiBQuantStack12.17 GiB-10.2%
Qwen-Image-EditQ4_K_M10.93 GiBQuantStack12.17 GiB-10.2%
Qwen-Image-Edit-2509Q3_K_L8.53 GiBunsloth9.71 GiB-12.2%
Qwen-Image-EditQ3_K_L8.53 GiBunsloth9.71 GiB-12.2%
Wan2.1-T2V-1.3BQ4_K_M5.78 GiBDeepBeepMeep4.69 GiB+23.3%
Qwen-Image-EditQ5_K_M13.24 GiBunsloth13.97 GiB-5.2%
Qwen-Image-Edit-2509Q5_K_M13.24 GiBunsloth13.97 GiB-5.2%
HunyuanImage-2.1Q3_K_S8.42 GiBQuantStack7.70 GiB+9.4%
Qwen-Image-EditQ5_K_M13.24 GiBQuantStack13.91 GiB-4.8%
Qwen-Image-Edit-2509Q5_K_M13.24 GiBQuantStack13.91 GiB-4.8%
chatterboxQ8_01.23 GiBcstr1.87 GiB-34.5%
Qwen-Image-Edit-2509Q3_K_M8.47 GiBQuantStack9.09 GiB-6.9%
Qwen-Image-EditQ4_K_S10.80 GiBunsloth11.43 GiB-5.5%

A quantization label describes a target, not a recipe. Publishers make different choices about which tensors to keep at higher precision, and some apply an importance matrix while others don't — so two files both honestly labelled the same thing can differ measurably in size and in quality.

Models they publish