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bartowski/mlabonne_Qwen3-14B-abliterated-GGUF

bartowski Qwen 14B GGUF second-order 41K ctx
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Response includes
  • classification m8
  • files 28
  • hub_downloads_all_time 160,466
  • author_summary 72 models
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Abliteration classifier · v1.0.0
M8
Primary method

Repackaging (quantization)

Applied on top of direct removal inherited from the base model.
Confidence
HIGH
Inherited from base model
Why this label 3 signals
Producer identity confirmed by naming conventions, tags or the model card. This label is very unlikely to change.
  • author=bartowski (M8 quantization producer)
  • is_gguf=1
  • base_model='mlabonne/Qwen3-14B-abliterated' looks abliterated -> assume M1
Refusal direction extraction

No specific extraction method could be identified for this model. The producer either did not document it or used a proprietary pipeline.

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Downloads · lifetime
160K
20K last 30d - stable
Likes
48
Model age
17mo ago
created 2025-04-29
Downloads over time
Now169.7K→from5.6K↑2,921%
062.1K124.1K186.2K5.6K on Apr 30, 2025169.7K on Oct 11Apr '25Jul '25Oct '25JanAprJulOct
Apr 30, 2025 → Oct 11 · 120 snapshots · spans 529 days

Genealogy 0 direct forks

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Metadata

License
apache-2.0
Quantizations
BF16 IQ2 IQ3 IQ4 Q2_K Q3_K Q4 Q4_K Q5_K Q6_K Q8_0
Tags
gguf abliteration abliterated text-generation base_model:mlabonne/Qwen3-14B-abliterated base_model:quantized:mlabonne/Qwen3-14B-abliterated license:apache-2.0 endpoints_compatible region:us conversational

Related

Total size
219 GB
Files
28
Quantizations
12
Registered
2026-08-22 13:56
Last updated on HF
2025-05-20 13:29

Files by quantization

BF16 1 file 27.5 GB
mlabonne_Qwen3-14B-abliterated-bf16.gguf 27.5 GB 84a64243 download
Q8_0 1 file 14.6 GB
mlabonne_Qwen3-14B-abliterated-Q8_0.gguf 14.6 GB 98244ead download
Q6_K 2 files 22.9 GB
mlabonne_Qwen3-14B-abliterated-Q6_K_L.gguf 11.6 GB c1fa4ba6 download
mlabonne_Qwen3-14B-abliterated-Q6_K.gguf 11.3 GB db037b17 download
Q5_K 3 files 29.6 GB
mlabonne_Qwen3-14B-abliterated-Q5_K_L.gguf 10.2 GB d8e51824 download
mlabonne_Qwen3-14B-abliterated-Q5_K_M.gguf 9.79 GB 6ba161c2 download
mlabonne_Qwen3-14B-abliterated-Q5_K_S.gguf 9.56 GB 1baf8075 download
Q4_K 3 files 25.3 GB
mlabonne_Qwen3-14B-abliterated-Q4_K_L.gguf 8.92 GB 8eaa2980 download
mlabonne_Qwen3-14B-abliterated-Q4_K_M.gguf 8.38 GB 3fe972a7 download
mlabonne_Qwen3-14B-abliterated-Q4_K_S.gguf 7.98 GB 6b87c403 download
Q4 2 files 16.7 GB
mlabonne_Qwen3-14B-abliterated-Q4_1.gguf 8.74 GB 39c17398 download
mlabonne_Qwen3-14B-abliterated-Q4_0.gguf 7.96 GB fe685662 download
Q3_K 4 files 28.4 GB
mlabonne_Qwen3-14B-abliterated-Q3_K_XL.gguf 7.99 GB 074deb9c download
mlabonne_Qwen3-14B-abliterated-Q3_K_L.gguf 7.36 GB a64bfd94 download
mlabonne_Qwen3-14B-abliterated-Q3_K_M.gguf 6.82 GB c449ac4b download
mlabonne_Qwen3-14B-abliterated-Q3_K_S.gguf 6.20 GB 43f45742 download
IQ4 2 files 15.5 GB
mlabonne_Qwen3-14B-abliterated-IQ4_NL.gguf 7.95 GB 1702dab3 download
mlabonne_Qwen3-14B-abliterated-IQ4_XS.gguf 7.55 GB 8a84ad67 download
IQ3 3 files 17.9 GB
mlabonne_Qwen3-14B-abliterated-IQ3_M.gguf 6.41 GB 5cee38b6 download
mlabonne_Qwen3-14B-abliterated-IQ3_XS.gguf 5.94 GB eea8f9e4 download
mlabonne_Qwen3-14B-abliterated-IQ3_XXS.gguf 5.53 GB 9df30e40 download
Q2_K 2 files 11.4 GB
mlabonne_Qwen3-14B-abliterated-Q2_K_L.gguf 6.07 GB fee72657 download
mlabonne_Qwen3-14B-abliterated-Q2_K.gguf 5.36 GB 1c87c0c1 download
IQ2 2 files 9.58 GB
mlabonne_Qwen3-14B-abliterated-IQ2_M.gguf 4.96 GB 5c05b774 download
mlabonne_Qwen3-14B-abliterated-IQ2_S.gguf 4.62 GB 672e0b08 download
Auxiliary files 3 files 7.37 MB
mlabonne_Qwen3-14B-abliterated.imatrix 7.35 MB 0b7caf72 download
README.md 14.2 KB 90f92063 download
.gitattributes 3.47 KB 05db70dc download

README current version from Hugging Face


quantized_by: bartowski
pipeline_tag: text-generation
base_model: mlabonne/Qwen3-14B-abliterated
tags:


Llamacpp imatrix Quantizations of Qwen3-14B-abliterated by mlabonne

Using llama.cpp release b5415 for quantization.

Original model: https://huggingface.co/mlabonne/Qwen3-14B-abliterated

All quants made using imatrix option with dataset from here

Run them in LM Studio

Run them directly with llama.cpp, or any other llama.cpp based project

Prompt format

<|im_start|>system
{system_prompt}<|im_end|>
<|im_start|>user
{prompt}<|im_end|>
<|im_start|>assistant

What's new:

Original model updated

Download a file (not the whole branch) from below:

Filename Quant type File Size Split Description
Qwen3-14B-abliterated-bf16.gguf bf16 29.54GB false Full BF16 weights.
Qwen3-14B-abliterated-Q8_0.gguf Q8_0 15.70GB false Extremely high quality, generally unneeded but max available quant.
Qwen3-14B-abliterated-Q6_K_L.gguf Q6_K_L 12.50GB false Uses Q8_0 for embed and output weights. Very high quality, near perfect, recommended.
Qwen3-14B-abliterated-Q6_K.gguf Q6_K 12.12GB false Very high quality, near perfect, recommended.
Qwen3-14B-abliterated-Q5_K_L.gguf Q5_K_L 10.99GB false Uses Q8_0 for embed and output weights. High quality, recommended.
Qwen3-14B-abliterated-Q5_K_M.gguf Q5_K_M 10.51GB false High quality, recommended.
Qwen3-14B-abliterated-Q5_K_S.gguf Q5_K_S 10.26GB false High quality, recommended.
Qwen3-14B-abliterated-Q4_K_L.gguf Q4_K_L 9.58GB false Uses Q8_0 for embed and output weights. Good quality, recommended.
Qwen3-14B-abliterated-Q4_1.gguf Q4_1 9.39GB false Legacy format, similar performance to Q4_K_S but with improved tokens/watt on Apple silicon.
Qwen3-14B-abliterated-Q4_K_M.gguf Q4_K_M 9.00GB false Good quality, default size for most use cases, recommended.
Qwen3-14B-abliterated-Q3_K_XL.gguf Q3_K_XL 8.58GB false Uses Q8_0 for embed and output weights. Lower quality but usable, good for low RAM availability.
Qwen3-14B-abliterated-Q4_K_S.gguf Q4_K_S 8.57GB false Slightly lower quality with more space savings, recommended.
Qwen3-14B-abliterated-Q4_0.gguf Q4_0 8.54GB false Legacy format, offers online repacking for ARM and AVX CPU inference.
Qwen3-14B-abliterated-IQ4_NL.gguf IQ4_NL 8.54GB false Similar to IQ4_XS, but slightly larger. Offers online repacking for ARM CPU inference.
Qwen3-14B-abliterated-IQ4_XS.gguf IQ4_XS 8.11GB false Decent quality, smaller than Q4_K_S with similar performance, recommended.
Qwen3-14B-abliterated-Q3_K_L.gguf Q3_K_L 7.90GB false Lower quality but usable, good for low RAM availability.
Qwen3-14B-abliterated-Q3_K_M.gguf Q3_K_M 7.32GB false Low quality.
Qwen3-14B-abliterated-IQ3_M.gguf IQ3_M 6.88GB false Medium-low quality, new method with decent performance comparable to Q3_K_M.
Qwen3-14B-abliterated-Q3_K_S.gguf Q3_K_S 6.66GB false Low quality, not recommended.
Qwen3-14B-abliterated-Q2_K_L.gguf Q2_K_L 6.51GB false Uses Q8_0 for embed and output weights. Very low quality but surprisingly usable.
Qwen3-14B-abliterated-IQ3_XS.gguf IQ3_XS 6.38GB false Lower quality, new method with decent performance, slightly better than Q3_K_S.
Qwen3-14B-abliterated-IQ3_XXS.gguf IQ3_XXS 5.94GB false Lower quality, new method with decent performance, comparable to Q3 quants.
Qwen3-14B-abliterated-Q2_K.gguf Q2_K 5.75GB false Very low quality but surprisingly usable.
Qwen3-14B-abliterated-IQ2_M.gguf IQ2_M 5.32GB false Relatively low quality, uses SOTA techniques to be surprisingly usable.
Qwen3-14B-abliterated-IQ2_S.gguf IQ2_S 4.96GB false Low quality, uses SOTA techniques to be usable.

Embed/output weights

Some of these quants (Q3_K_XL, Q4_K_L etc) are the standard quantization method with the embeddings and output weights quantized to Q8_0 instead of what they would normally default to.

Downloading using huggingface-cli

Click to view download instructions

First, make sure you have hugginface-cli installed:

pip install -U "huggingface_hub[cli]"

Then, you can target the specific file you want:

huggingface-cli download bartowski/mlabonne_Qwen3-14B-abliterated-GGUF --include "mlabonne_Qwen3-14B-abliterated-Q4_K_M.gguf" --local-dir ./

If the model is bigger than 50GB, it will have been split into multiple files. In order to download them all to a local folder, run:

huggingface-cli download bartowski/mlabonne_Qwen3-14B-abliterated-GGUF --include "mlabonne_Qwen3-14B-abliterated-Q8_0/*" --local-dir ./

You can either specify a new local-dir (mlabonne_Qwen3-14B-abliterated-Q8_0) or download them all in place (./)

ARM/AVX information

Previously, you would download Q4_0_4_4/4_8/8_8, and these would have their weights interleaved in memory in order to improve performance on ARM and AVX machines by loading up more data in one pass.

Now, however, there is something called "online repacking" for weights. details in this PR. If you use Q4_0 and your hardware would benefit from repacking weights, it will do it automatically on the fly.

As of llama.cpp build b4282 you will not be able to run the Q4_0_X_X files and will instead need to use Q4_0.

Additionally, if you want to get slightly better quality for , you can use IQ4_NL thanks to this PR which will also repack the weights for ARM, though only the 4_4 for now. The loading time may be slower but it will result in an overall speed incrase.

Click to view Q4_0_X_X information (deprecated

I'm keeping this section to show the potential theoretical uplift in performance from using the Q4_0 with online repacking.

Click to view benchmarks on an AVX2 system (EPYC7702)
model size params backend threads test t/s % (vs Q4_0)
qwen2 3B Q4_0 1.70 GiB 3.09 B CPU 64 pp512 204.03 ± 1.03 100%
qwen2 3B Q4_0 1.70 GiB 3.09 B CPU 64 pp1024 282.92 ± 0.19 100%
qwen2 3B Q4_0 1.70 GiB 3.09 B CPU 64 pp2048 259.49 ± 0.44 100%
qwen2 3B Q4_0 1.70 GiB 3.09 B CPU 64 tg128 39.12 ± 0.27 100%
qwen2 3B Q4_0 1.70 GiB 3.09 B CPU 64 tg256 39.31 ± 0.69 100%
qwen2 3B Q4_0 1.70 GiB 3.09 B CPU 64 tg512 40.52 ± 0.03 100%
qwen2 3B Q4_K_M 1.79 GiB 3.09 B CPU 64 pp512 301.02 ± 1.74 147%
qwen2 3B Q4_K_M 1.79 GiB 3.09 B CPU 64 pp1024 287.23 ± 0.20 101%
qwen2 3B Q4_K_M 1.79 GiB 3.09 B CPU 64 pp2048 262.77 ± 1.81 101%
qwen2 3B Q4_K_M 1.79 GiB 3.09 B CPU 64 tg128 18.80 ± 0.99 48%
qwen2 3B Q4_K_M 1.79 GiB 3.09 B CPU 64 tg256 24.46 ± 3.04 83%
qwen2 3B Q4_K_M 1.79 GiB 3.09 B CPU 64 tg512 36.32 ± 3.59 90%
qwen2 3B Q4_0_8_8 1.69 GiB 3.09 B CPU 64 pp512 271.71 ± 3.53 133%
qwen2 3B Q4_0_8_8 1.69 GiB 3.09 B CPU 64 pp1024 279.86 ± 45.63 100%
qwen2 3B Q4_0_8_8 1.69 GiB 3.09 B CPU 64 pp2048 320.77 ± 5.00 124%
qwen2 3B Q4_0_8_8 1.69 GiB 3.09 B CPU 64 tg128 43.51 ± 0.05 111%
qwen2 3B Q4_0_8_8 1.69 GiB 3.09 B CPU 64 tg256 43.35 ± 0.09 110%
qwen2 3B Q4_0_8_8 1.69 GiB 3.09 B CPU 64 tg512 42.60 ± 0.31 105%

Q4_0_8_8 offers a nice bump to prompt processing and a small bump to text generation

Which file should I choose?

Click here for details

A great write up with charts showing various performances is provided by Artefact2 here

The first thing to figure out is how big a model you can run. To do this, you'll need to figure out how much RAM and/or VRAM you have.

If you want your model running as FAST as possible, you'll want to fit the whole thing on your GPU's VRAM. Aim for a quant with a file size 1-2GB smaller than your GPU's total VRAM.

If you want the absolute maximum quality, add both your system RAM and your GPU's VRAM together, then similarly grab a quant with a file size 1-2GB Smaller than that total.

Next, you'll need to decide if you want to use an 'I-quant' or a 'K-quant'.

If you don't want to think too much, grab one of the K-quants. These are in format 'QX_K_X', like Q5_K_M.

If you want to get more into the weeds, you can check out this extremely useful feature chart:

llama.cpp feature matrix

But basically, if you're aiming for below Q4, and you're running cuBLAS (Nvidia) or rocBLAS (AMD), you should look towards the I-quants. These are in format IQX_X, like IQ3_M. These are newer and offer better performance for their size.

These I-quants can also be used on CPU, but will be slower than their K-quant equivalent, so speed vs performance is a tradeoff you'll have to decide.

Credits

Thank you kalomaze and Dampf for assistance in creating the imatrix calibration dataset.

Thank you ZeroWw for the inspiration to experiment with embed/output.

Thank you to LM Studio for sponsoring my work.

Want to support my work? Visit my ko-fi page here: https://ko-fi.com/bartowski

README history 6 versions

The author's README evolved over time. Click a version to see its content at that point.

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Discussions 2 threads

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