--- language: - en --- # Input files for generating the Importance Matrix ## Which file to use for generating the importance matrix Not all importance matrices are equal. The best results are obtained when using a source file similar to the training data. Size also matters: the bigger the model (eg: 70b vs 13b) and the higher the quant (eg: q6k_ vs iq3_xs), the bigger the source file needs to be to make an impact. Multiple input files can be combined if needed; for example: ``` cat technical.txt multilingual.txt wiki.txt >custom.matrix ``` You will find below descriptions for the various input files provided, to help you choose the correct one. ## Community provided files **groups_merged**\ _"Here is a decent general purpose imatrix calibration dataset. It should be more diverse than wikitext at ~30k tokens, as it is excerpts of a larger dataset which includes coding examples (which seems quite important!) This means it's generally higher entropy data compared to wikitext, and it's real data rather than pseudo-randomly generated data. I get lower KL div than wikitext for the same length and the outputs seem qualitatively better."_ (kalomaze)\ https://github.com/ggerganov/llama.cpp/discussions/5263#discussioncomment-8395384 **group_10_merged**\ (superseeded by groups_merged)\ _"This is about ~50k pseudo-random tokens. I am getting the best balance between the maximum divergence and the other divergence statistics using this file when quantizing 7b"_ (kalomaze)\ https://github.com/ggerganov/llama.cpp/discussions/5263#discussioncomment-8349233 **20k_random_data**\ (superseeded by groups_10_merged)\ https://github.com/ggerganov/llama.cpp/discussions/5006#discussioncomment-8163190 **8k_random_data**\ (superseeded by 20k_random_data)\ https://github.com/ggerganov/llama.cpp/discussions/5006#discussion-6087829 **ptb.train**\ Penn Treebank (PTB) is a widely used preprocessed large dataset designed for language training. Casing, punctuation and numbers have been removed from the training data. Recently it has kind of been superseeded by WikiText which does not have these removals, features a larger vocabulary and full articles (better suited for models that can take advantage of long term dependencies). However, for importantce matrix training, PTB is still a valid dataset, which has the advantage of being manually curated, and similar to WikiText, without being WikiText; this can help against bias. **WikiText**\ The WikiText language modeling dataset is a collection of over 100 million tokens extracted from the set of verified Good and Featured articles on Wikipedia. Compared to PTB, WikiText-2 is over 2 times larger and WikiText-103 is over 110 times larger. As it is composed of full articles, the dataset is well suited for models that can take advantage of long term dependencies.\ https://huggingface.co/datasets/wikitext **WikiText_FR**\ 70 million tokens extracted from the set of french Wikipedia articles that are classified as "quality articles" or "good articles".\ https://huggingface.co/datasets/asi/wikitext_fr **c4**\ The C4 dataset is a collection text sourced from the public Common Crawl web scrape. It includes heuristics to extract only natural language (as opposed to boilerplate and other gibberish) in addition to extensive deduplication. C4 dataset was explicitly designed to be English only: any page that was not given a probability of at least 99% of being English by langdetect was discarded. **code** (exllamav2)\ Programming **multilingual** (exllamav2)\ English, Arabic, Chinese, French, German, Japanese, Polish, Russian, Spanish, Swedish, Turkish, Hebrew, Macedonian, Norwegian, Lithuanian, Greek, Italian, Afrikaans, Dutch, Danish. **technical** (exllamav2)\ Technical writing. **tiny** (exllamav2)\ Very short stories. Be mindful of the prevalence of _"Once upon a time"_ and _"<|endoftext|>"_. **wiki** (exllamav2)\ Small Wikipedia dump. Unclean, contains many unwanted tags. exllamav2 calibration data taken from:\ https://github.com/turboderp/exllamav2/tree/master/conversion/standard_cal_data ## How to quantize using an imatrix, with llama.cpp 1. Get one of the input files collected here, or elsewhere. 2. Convert or download the model you want to quantise, in fp16 GGUF format. 3. Generate an imatrix file specific to the model you want to quantise ``` cd ./imatrix -m /ggml-model-f16.gguf -f -o -t 12 -ngl 144 --chunks 100 -b 512 -c 512 # -ngl : layers offloaded to gpu (recommended to use number of layers the model contains) # -t 12 : number of threads (should probably match no of cpu) # -c 512 : context size, testing seems to show 512 is recommended (default=512, 0=loaded from model) # -b 200 : batch size (default=512) # --chunks 100 (recommended) # --mlock : keep model in ram (only use if you had sufficient RAM for the whole fp16) ``` 4. Use the generated matrix file to quantise the model ``` ./quantize --matrix /ggml-model-f16.gguf ``` Note: normal quantisation also benefits from using a matrix file. It also seem that a bigger input matrix is better for higher quantisation.