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--- |
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base_model: deepseek-ai/deepseek-coder-6.7b-instruct |
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tags: |
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- instruct |
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- finetune |
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library_name: transformers |
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license: cc-by-sa-4.0 |
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pipeline_tag: text-generation |
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--- |
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# **Natural-SQL-7B by ChatDB** |
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## Natural-SQL-7B is a model with very strong performance in Text-to-SQL instructions, has an excellent understanding of complex questions, and outperforms models of the same size in its space. |
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<img src="https://cdn-uploads.huggingface.co/production/uploads/648a374f00f7a3374ee64b99/hafdsfrFCqrVbATIzV_EN.png" width="600"> |
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[ChatDB.ai](https://chatdb.ai) | [Notebook](https://github.com/cfahlgren1/natural-sql/blob/main/natural-sql-7b.ipynb) | [Twitter](https://twitter.com/calebfahlgren) |
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# **Benchmarks** |
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### *Results on Novel Datasets not trained on via SQL-Eval* |
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<img src="https://cdn-uploads.huggingface.co/production/uploads/648a374f00f7a3374ee64b99/5ynfoKPzI3_-WasQQt7qR.png" width="800"> |
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<em>Big thanks to the [defog](https://huggingface.co/defog) team for open sourcing [sql-eval](https://github.com/defog-ai/sql-eval)</em>👏 |
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Natural-SQL also can handle complex, compound questions that other models typically struggle with. There is a more detailed writeup Here is a write up, small test done [here](https://chatdb.ai/post/naturalsql-vs-sqlcoder-for-text-to-sql). |
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# Usage |
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Make sure you have the correct version of the transformers library installed: |
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```sh |
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pip install transformers==4.35.2 |
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``` |
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### Loading the Model |
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Use the following Python code to load the model: |
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```python |
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import torch |
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from transformers import AutoModelForCausalLM, AutoTokenizer |
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tokenizer = AutoTokenizer.from_pretrained("chatdb/natural-sql-7b") |
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model = AutoModelForCausalLM.from_pretrained( |
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"chatdb/natural-sql-7b", |
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device_map="auto", |
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torch_dtype=torch.float16, |
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) |
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``` |
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### **License** |
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The model weights are licensed under `CC BY-SA 4.0`, with extra guidelines for responsible use expanded from the original model's [Deepseek](https://github.com/deepseek-ai/deepseek-coder/blob/main/LICENSE-MODEL) license. |
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You're free to use and adapt the model, even commercially. |
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If you alter the weights, such as through fine-tuning, you must publicly share your changes under the same `CC BY-SA 4.0` license. |
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### Generating SQL |
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```python |
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inputs = tokenizer(prompt, return_tensors="pt").to("cuda") |
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generated_ids = model.generate( |
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**inputs, |
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num_return_sequences=1, |
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eos_token_id=100001, |
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pad_token_id=100001, |
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max_new_tokens=400, |
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do_sample=False, |
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num_beams=1, |
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) |
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outputs = tokenizer.batch_decode(generated_ids, skip_special_tokens=True) |
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print(outputs[0].split("```sql")[-1]) |
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``` |
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# Prompt Template |
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``` |
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# Task |
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Generate a SQL query to answer the following question: `{natural language question}` |
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### PostgreSQL Database Schema |
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The query will run on a database with the following schema: |
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<SQL Table DDL Statements> |
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# SQL |
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Here is the SQL query that answers the question: `{natural language question}` |
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'''sql |
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``` |
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# Example SQL Output |
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### Example Schemas |
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```sql |
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CREATE TABLE users ( |
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user_id SERIAL PRIMARY KEY, |
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username VARCHAR(50) NOT NULL, |
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email VARCHAR(100) NOT NULL, |
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password_hash TEXT NOT NULL, |
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created_at TIMESTAMP NOT NULL DEFAULT CURRENT_TIMESTAMP |
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); |
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CREATE TABLE projects ( |
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project_id SERIAL PRIMARY KEY, |
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project_name VARCHAR(100) NOT NULL, |
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description TEXT, |
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start_date DATE, |
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end_date DATE, |
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owner_id INTEGER REFERENCES users(user_id) |
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); |
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CREATE TABLE tasks ( |
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task_id SERIAL PRIMARY KEY, |
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task_name VARCHAR(100) NOT NULL, |
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description TEXT, |
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due_date DATE, |
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status VARCHAR(50), |
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project_id INTEGER REFERENCES projects(project_id) |
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); |
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CREATE TABLE taskassignments ( |
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assignment_id SERIAL PRIMARY KEY, |
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task_id INTEGER REFERENCES tasks(task_id), |
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user_id INTEGER REFERENCES users(user_id), |
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assigned_date DATE NOT NULL DEFAULT CURRENT_TIMESTAMP |
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); |
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CREATE TABLE comments ( |
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comment_id SERIAL PRIMARY KEY, |
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content TEXT NOT NULL, |
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created_at TIMESTAMP NOT NULL DEFAULT CURRENT_TIMESTAMP, |
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task_id INTEGER REFERENCES tasks(task_id), |
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user_id INTEGER REFERENCES users(user_id) |
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); |
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``` |
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### Example SQL Outputs |
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**Question**: **Show me the day with the most users joining** |
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```sql |
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SELECT created_at::DATE AS day, COUNT(*) AS user_count |
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FROM users |
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GROUP BY day |
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ORDER BY user_count DESC |
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LIMIT 1; |
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``` |
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**Question**: **Show me the project that has a task with the most comments** |
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```sql |
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SELECT p.project_name, t.task_name, COUNT(c.comment_id) AS comment_count |
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FROM projects p |
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JOIN tasks t ON p.project_id = t.project_id |
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JOIN comments c ON t.task_id = c.task_id |
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GROUP BY p.project_name, t.task_name |
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ORDER BY comment_count DESC |
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LIMIT 1; |
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``` |
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**Question**: **What is the ratio of users with gmail addresses vs without?** |
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```sql |
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SELECT |
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SUM(CASE WHEN email ILIKE '%@gmail.com%' THEN 1 ELSE 0 END)::FLOAT / NULLIF(SUM(CASE WHEN email NOT ILIKE '%@gmail.com%' THEN 1 ELSE 0 END), 0) AS gmail_ratio |
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FROM |
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users; |
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``` |