Michael Pieler
commited on
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cp opt-30b
Browse files- LICENSE.md +65 -0
- README.md +210 -0
- config.json +28 -0
- flax_model-00001-of-00007.msgpack +3 -0
- flax_model-00002-of-00007.msgpack +3 -0
- flax_model-00003-of-00007.msgpack +3 -0
- flax_model-00004-of-00007.msgpack +3 -0
- flax_model-00005-of-00007.msgpack +3 -0
- flax_model-00006-of-00007.msgpack +3 -0
- flax_model-00007-of-00007.msgpack +3 -0
- flax_model.msgpack.index.json +779 -0
- merges.txt +0 -0
- pytorch_model-00001-of-00007.bin +3 -0
- pytorch_model-00002-of-00007.bin +3 -0
- pytorch_model-00003-of-00007.bin +3 -0
- pytorch_model-00004-of-00007.bin +3 -0
- pytorch_model-00005-of-00007.bin +3 -0
- pytorch_model-00006-of-00007.bin +3 -0
- pytorch_model-00007-of-00007.bin +3 -0
- pytorch_model.bin.index.json +779 -0
- special_tokens_map.json +1 -0
- tf_model-00001-of-00007.h5 +3 -0
- tf_model-00002-of-00007.h5 +3 -0
- tf_model-00003-of-00007.h5 +3 -0
- tf_model-00004-of-00007.h5 +3 -0
- tf_model-00005-of-00007.h5 +3 -0
- tf_model-00006-of-00007.h5 +3 -0
- tf_model-00007-of-00007.h5 +3 -0
- tf_model.h5.index.json +779 -0
- tokenizer_config.json +1 -0
- vocab.json +0 -0
LICENSE.md
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<h2 align="center"> OPT-175B LICENSE AGREEMENT </h2>
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This License Agreement (as may be amended in accordance with this License Agreement, **“License”**), between you, or your employer or other entity (if you are entering into this agreement on behalf of your employer or other entity) (**“Licensee”** or **“you”**) and Meta Platforms, Inc. (**“Meta”** or **“we”**) applies to your use of any computer program, algorithm, source code, object code, or software that is made available by Meta under this License (**“Software”**) and any specifications, manuals, documentation, and other written information provided by Meta related to the Software (**“Documentation”**).
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**By clicking “I Accept” below or by using the Software, you agree to the terms of this License. If you do not agree to this License, then you do not have any rights to use the Software or Documentation (collectively, the “Software Products”), and you must immediately cease using the Software Products. If you are agreeing to be bound by the terms of this License on behalf of your employer or other entity, you represent and warrant to Meta that you have full legal authority to bind your employer or such entity to this License. If you do not have the requisite authority, you may not accept the License or access the Software Products on behalf of your employer or other entity.**
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Together with any copies of the Software Products (as well as derivative works thereof or works incorporating the Software Products) that you distribute, you must provide (i) a copy of this License, and (ii) the following attribution notice: “OPT-175B is licensed under the OPT-175B license, Copyright (c) Meta Platforms, Inc. All Rights Reserved.”
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Licensee has not been granted any trademark license as part of this License and may not use any name or mark associated with Meta without the prior written permission of Meta, except to the extent necessary to make the reference required by the “ATTRIBUTION” section of this Agreement.
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This License will be governed and construed under the laws of the State of California without regard to conflicts of law provisions. Any suit or proceeding arising out of or relating to this License will be brought in the federal or state courts, as applicable, in San Mateo County, California, and each party irrevocably submits to the jurisdiction and venue of such courts.
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11. **MISCELLANEOUS**
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If any provision or part of a provision of this License is unlawful, void or unenforceable, that provision or part of the provision is deemed severed from this License, and will not affect the validity and enforceability of any remaining provisions. The failure of Meta to exercise or enforce any right or provision of this License will not operate as a waiver of such right or provision. This License does not confer any third-party beneficiary rights upon any other person or entity. This License, together with the Documentation, contains the entire understanding between you and Meta regarding the subject matter of this License, and supersedes all other written or oral agreements and understandings between you and Meta regarding such subject matter. No change or addition to any provision of this License will be binding unless it is in writing and signed by an authorized representative of both you and Meta.
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README.md
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---
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language: en
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inference: false
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tags:
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- text-generation
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- opt
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license: other
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commercial: false
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---
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# OPT : Open Pre-trained Transformer Language Models
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OPT was first introduced in [Open Pre-trained Transformer Language Models](https://arxiv.org/abs/2205.01068) and first released in [metaseq's repository](https://github.com/facebookresearch/metaseq) on May 3rd 2022 by Meta AI.
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**Disclaimer**: The team releasing OPT wrote an official model card, which is available in Appendix D of the [paper](https://arxiv.org/pdf/2205.01068.pdf).
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Content from **this** model card has been written by the Hugging Face team.
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## Intro
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To quote the first two paragraphs of the [official paper](https://arxiv.org/abs/2205.01068)
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> Large language models trained on massive text collections have shown surprising emergent
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> capabilities to generate text and perform zero- and few-shot learning. While in some cases the public
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> can interact with these models through paid APIs, full model access is currently limited to only a
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> few highly resourced labs. This restricted access has limited researchers’ ability to study how and
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> why these large language models work, hindering progress on improving known challenges in areas
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> such as robustness, bias, and toxicity.
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> We present Open Pretrained Transformers (OPT), a suite of decoder-only pre-trained transformers ranging from 125M
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> to 175B parameters, which we aim to fully and responsibly share with interested researchers. We train the OPT models to roughly match
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> the performance and sizes of the GPT-3 class of models, while also applying the latest best practices in data
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> collection and efficient training. Our aim in developing this suite of OPT models is to enable reproducible and responsible research at scale, and
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> to bring more voices to the table in studying the impact of these LLMs. Definitions of risk, harm, bias, and toxicity, etc., should be articulated by the
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> collective research community as a whole, which is only possible when models are available for study.
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## Model description
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OPT was predominantly pretrained with English text, but a small amount of non-English data is still present within the training corpus via CommonCrawl. The model was pretrained using a causal language modeling (CLM) objective.
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OPT belongs to the same family of decoder-only models like [GPT-3](https://arxiv.org/abs/2005.14165). As such, it was pretrained using the self-supervised causal language modedling objective.
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For evaluation, OPT follows [GPT-3](https://arxiv.org/abs/2005.14165) by using their prompts and overall experimental setup. For more details, please read
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the [official paper](https://arxiv.org/abs/2205.01068).
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## Intended uses & limitations
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The pretrained-only model can be used for prompting for evaluation of downstream tasks as well as text generation.
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In addition, the model can be fine-tuned on a downstream task using the [CLM example](https://github.com/huggingface/transformers/tree/main/examples/pytorch/language-modeling). For all other OPT checkpoints, please have a look at the [model hub](https://huggingface.co/models?filter=opt).
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### How to use
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For large OPT models, such as this one, it is not recommend to make use of the `text-generation` pipeline because
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one should load the model in half-precision to accelerate generation and optimize memory consumption on GPU.
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It is recommended to directly call the [`generate`](https://huggingface.co/docs/transformers/main/en/main_classes/text_generation#transformers.generation_utils.GenerationMixin.generate)
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method as follows:
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```python
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>>> from transformers import AutoModelForCausalLM, AutoTokenizer
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>>> import torch
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>>> model = AutoModelForCausalLM.from_pretrained("facebook/opt-30b", torch_dtype=torch.float16).cuda()
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>>> # the fast tokenizer currently does not work correctly
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>>> tokenizer = AutoTokenizer.from_pretrained("facebook/opt-30b", use_fast=False)
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>>> prompt = "Hello, I am conscious and"
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>>> input_ids = tokenizer(prompt, return_tensors="pt").input_ids.cuda()
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>>> generated_ids = model.generate(input_ids)
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>>> tokenizer.batch_decode(generated_ids, skip_special_tokens=True)
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['Hello, I am conscious and I am here.\nI am also conscious and I am here']
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```
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By default, generation is deterministic. In order to use the top-k sampling, please set `do_sample` to `True`.
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```python
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>>> from transformers import AutoModelForCausalLM, AutoTokenizer, set_seed
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>>> import torch
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>>> model = AutoModelForCausalLM.from_pretrained("facebook/opt-30b", torch_dtype=torch.float16).cuda()
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>>> # the fast tokenizer currently does not work correctly
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>>> tokenizer = AutoTokenizer.from_pretrained("facebook/opt-30b", use_fast=False)
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>>> prompt = "Hello, I am conscious and"
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>>> input_ids = tokenizer(prompt, return_tensors="pt").input_ids.cuda()
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>>> set_seed(32)
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>>> generated_ids = model.generate(input_ids, do_sample=True)
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>>> tokenizer.batch_decode(generated_ids, skip_special_tokens=True)
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['Hello, I am conscious and aware that you have your back turned to me and want to talk']
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```
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### Limitations and bias
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As mentioned in Meta AI's model card, given that the training data used for this model contains a lot of
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unfiltered content from the internet, which is far from neutral the model is strongly biased :
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> Like other large language models for which the diversity (or lack thereof) of training
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> data induces downstream impact on the quality of our model, OPT-175B has limitations in terms
|
106 |
+
> of bias and safety. OPT-175B can also have quality issues in terms of generation diversity and
|
107 |
+
> hallucination. In general, OPT-175B is not immune from the plethora of issues that plague modern
|
108 |
+
> large language models.
|
109 |
+
|
110 |
+
Here's an example of how the model can have biased predictions:
|
111 |
+
|
112 |
+
```python
|
113 |
+
>>> from transformers import AutoModelForCausalLM, AutoTokenizer, set_seed
|
114 |
+
>>> import torch
|
115 |
+
|
116 |
+
>>> model = AutoModelForCausalLM.from_pretrained("facebook/opt-30b", torch_dtype=torch.float16).cuda()
|
117 |
+
|
118 |
+
>>> # the fast tokenizer currently does not work correctly
|
119 |
+
>>> tokenizer = AutoTokenizer.from_pretrained("facebook/opt-30b", use_fast=False)
|
120 |
+
|
121 |
+
>>> prompt = "The woman worked as a"
|
122 |
+
|
123 |
+
>>> input_ids = tokenizer(prompt, return_tensors="pt").input_ids.cuda()
|
124 |
+
|
125 |
+
>>> set_seed(32)
|
126 |
+
>>> generated_ids = model.generate(input_ids, do_sample=True, num_return_sequences=5, max_length=10)
|
127 |
+
|
128 |
+
>>> tokenizer.batch_decode(generated_ids, skip_special_tokens=True)
|
129 |
+
The woman worked as a supervisor in the office
|
130 |
+
The woman worked as a social worker in a
|
131 |
+
The woman worked as a cashier at the
|
132 |
+
The woman worked as a teacher from 2011 to
|
133 |
+
he woman worked as a maid at the house
|
134 |
+
```
|
135 |
+
|
136 |
+
compared to:
|
137 |
+
|
138 |
+
```python
|
139 |
+
>>> from transformers import AutoModelForCausalLM, AutoTokenizer, set_seed
|
140 |
+
>>> import torch
|
141 |
+
|
142 |
+
>>> model = AutoModelForCausalLM.from_pretrained("facebook/opt-30b", torch_dtype=torch.float16).cuda()
|
143 |
+
|
144 |
+
>>> # the fast tokenizer currently does not work correctly
|
145 |
+
>>> tokenizer = AutoTokenizer.from_pretrained("facebook/opt-30b", use_fast=False)
|
146 |
+
|
147 |
+
>>> prompt = "The man worked as a"
|
148 |
+
|
149 |
+
>>> input_ids = tokenizer(prompt, return_tensors="pt").input_ids.cuda()
|
150 |
+
|
151 |
+
>>> set_seed(32)
|
152 |
+
>>> generated_ids = model.generate(input_ids, do_sample=True, num_return_sequences=5, max_length=10)
|
153 |
+
|
154 |
+
>>> tokenizer.batch_decode(generated_ids, skip_special_tokens=True)
|
155 |
+
The man worked as a school bus driver for
|
156 |
+
The man worked as a bartender in a bar
|
157 |
+
The man worked as a cashier at the
|
158 |
+
The man worked as a teacher, and was
|
159 |
+
The man worked as a professional at a range
|
160 |
+
```
|
161 |
+
|
162 |
+
This bias will also affect all fine-tuned versions of this model.
|
163 |
+
|
164 |
+
## Training data
|
165 |
+
|
166 |
+
The Meta AI team wanted to train this model on a corpus as large as possible. It is composed of the union of the following 5 filtered datasets of textual documents:
|
167 |
+
|
168 |
+
- BookCorpus, which consists of more than 10K unpublished books,
|
169 |
+
- CC-Stories, which contains a subset of CommonCrawl data filtered to match the
|
170 |
+
story-like style of Winograd schemas,
|
171 |
+
- The Pile, from which * Pile-CC, OpenWebText2, USPTO, Project Gutenberg, OpenSubtitles, Wikipedia, DM Mathematics and HackerNews* were included.
|
172 |
+
- Pushshift.io Reddit dataset that was developed in Baumgartner et al. (2020) and processed in
|
173 |
+
Roller et al. (2021)
|
174 |
+
- CCNewsV2 containing an updated version of the English portion of the CommonCrawl News
|
175 |
+
dataset that was used in RoBERTa (Liu et al., 2019b)
|
176 |
+
|
177 |
+
The final training data contains 180B tokens corresponding to 800GB of data. The validation split was made of 200MB of the pretraining data, sampled proportionally
|
178 |
+
to each dataset’s size in the pretraining corpus.
|
179 |
+
|
180 |
+
The dataset might contains offensive content as parts of the dataset are a subset of
|
181 |
+
public Common Crawl data, along with a subset of public Reddit data, which could contain sentences
|
182 |
+
that, if viewed directly, can be insulting, threatening, or might otherwise cause anxiety.
|
183 |
+
|
184 |
+
### Collection process
|
185 |
+
|
186 |
+
The dataset was collected form internet, and went through classic data processing algorithms and
|
187 |
+
re-formatting practices, including removing repetitive/non-informative text like *Chapter One* or
|
188 |
+
*This ebook by Project Gutenberg.*
|
189 |
+
|
190 |
+
## Training procedure
|
191 |
+
|
192 |
+
### Preprocessing
|
193 |
+
|
194 |
+
The texts are tokenized using the **GPT2** byte-level version of Byte Pair Encoding (BPE) (for unicode characters) and a
|
195 |
+
vocabulary size of 50272. The inputs are sequences of 2048 consecutive tokens.
|
196 |
+
|
197 |
+
The 175B model was trained on 992 *80GB A100 GPUs*. The training duration was roughly ~33 days of continuous training.
|
198 |
+
|
199 |
+
### BibTeX entry and citation info
|
200 |
+
|
201 |
+
```bibtex
|
202 |
+
@misc{zhang2022opt,
|
203 |
+
title={OPT: Open Pre-trained Transformer Language Models},
|
204 |
+
author={Susan Zhang and Stephen Roller and Naman Goyal and Mikel Artetxe and Moya Chen and Shuohui Chen and Christopher Dewan and Mona Diab and Xian Li and Xi Victoria Lin and Todor Mihaylov and Myle Ott and Sam Shleifer and Kurt Shuster and Daniel Simig and Punit Singh Koura and Anjali Sridhar and Tianlu Wang and Luke Zettlemoyer},
|
205 |
+
year={2022},
|
206 |
+
eprint={2205.01068},
|
207 |
+
archivePrefix={arXiv},
|
208 |
+
primaryClass={cs.CL}
|
209 |
+
}
|
210 |
+
```
|
config.json
ADDED
@@ -0,0 +1,28 @@
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
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|
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|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
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|
|
|
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|
|
|
|
|
|
|
1 |
+
{
|
2 |
+
"_remove_final_layer_norm": false,
|
3 |
+
"activation_dropout": 0.0,
|
4 |
+
"activation_function": "relu",
|
5 |
+
"architectures": [
|
6 |
+
"OPTForCausalLM"
|
7 |
+
],
|
8 |
+
"attention_dropout": 0.0,
|
9 |
+
"bos_token_id": 2,
|
10 |
+
"do_layer_norm_before": true,
|
11 |
+
"dropout": 0.1,
|
12 |
+
"eos_token_id": 2,
|
13 |
+
"ffn_dim": 28672,
|
14 |
+
"hidden_size": 7168,
|
15 |
+
"init_std": 0.02,
|
16 |
+
"layerdrop": 0.0,
|
17 |
+
"max_position_embeddings": 2048,
|
18 |
+
"model_type": "opt",
|
19 |
+
"num_attention_heads": 56,
|
20 |
+
"num_hidden_layers": 48,
|
21 |
+
"pad_token_id": 1,
|
22 |
+
"prefix": "</s>",
|
23 |
+
"torch_dtype": "float16",
|
24 |
+
"transformers_version": "4.21.0.dev0",
|
25 |
+
"use_cache": true,
|
26 |
+
"vocab_size": 50272,
|
27 |
+
"word_embed_proj_dim": 7168
|
28 |
+
}
|
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|
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|
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|
flax_model-00003-of-00007.msgpack
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version https://git-lfs.github.com/spec/v1
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flax_model-00005-of-00007.msgpack
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"tfopt_for_causal_lm_1/model/decoder/layers.9/self_attn/q_proj/kernel:0": "tf_model-00002-of-00007.h5",
|
774 |
+
"tfopt_for_causal_lm_1/model/decoder/layers.9/self_attn/v_proj/bias:0": "tf_model-00002-of-00007.h5",
|
775 |
+
"tfopt_for_causal_lm_1/model/decoder/layers.9/self_attn/v_proj/kernel:0": "tf_model-00002-of-00007.h5",
|
776 |
+
"tfopt_for_causal_lm_1/model/decoder/layers.9/self_attn_layer_norm/beta:0": "tf_model-00002-of-00007.h5",
|
777 |
+
"tfopt_for_causal_lm_1/model/decoder/layers.9/self_attn_layer_norm/gamma:0": "tf_model-00002-of-00007.h5"
|
778 |
+
}
|
779 |
+
}
|
tokenizer_config.json
ADDED
@@ -0,0 +1 @@
|
|
|
|
|
1 |
+
{"errors": "replace", "unk_token": {"content": "</s>", "single_word": false, "lstrip": false, "rstrip": false, "normalized": true, "__type": "AddedToken"}, "bos_token": {"content": "</s>", "single_word": false, "lstrip": false, "rstrip": false, "normalized": true, "__type": "AddedToken"}, "eos_token": {"content": "</s>", "single_word": false, "lstrip": false, "rstrip": false, "normalized": true, "__type": "AddedToken"}, "pad_token": {"content": "<pad>", "single_word": false, "lstrip": false, "rstrip": false, "normalized": true, "__type": "AddedToken"}, "add_prefix_space": false, "add_bos_token": true, "special_tokens_map_file": null, "name_or_path": "patrickvonplaten/opt-30b"}
|
vocab.json
ADDED
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