kth8/text-cleanup-20000x
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How to use kth8/gemma-3-270m-it-Text-Cleaner-GGUF with Transformers:
# Use a pipeline as a high-level helper
from transformers import pipeline
pipe = pipeline("text-generation", model="kth8/gemma-3-270m-it-Text-Cleaner-GGUF")
messages = [
{"role": "user", "content": "Who are you?"},
]
pipe(messages) # Load model directly
from transformers import AutoModel
model = AutoModel.from_pretrained("kth8/gemma-3-270m-it-Text-Cleaner-GGUF", device_map="auto")How to use kth8/gemma-3-270m-it-Text-Cleaner-GGUF with llama.cpp:
curl -LsSf https://llama.app/install.sh | sh # Start a local OpenAI-compatible server with a web UI: llama serve -hf kth8/gemma-3-270m-it-Text-Cleaner-GGUF:Q4_K_M # Run inference directly in the terminal: llama cli -hf kth8/gemma-3-270m-it-Text-Cleaner-GGUF:Q4_K_M
winget install llama.cpp # Start a local OpenAI-compatible server with a web UI: llama serve -hf kth8/gemma-3-270m-it-Text-Cleaner-GGUF:Q4_K_M # Run inference directly in the terminal: llama cli -hf kth8/gemma-3-270m-it-Text-Cleaner-GGUF:Q4_K_M
# Download pre-built binary from: # https://github.com/ggerganov/llama.cpp/releases # Start a local OpenAI-compatible server with a web UI: ./llama-server -hf kth8/gemma-3-270m-it-Text-Cleaner-GGUF:Q4_K_M # Run inference directly in the terminal: ./llama-cli -hf kth8/gemma-3-270m-it-Text-Cleaner-GGUF:Q4_K_M
git clone https://github.com/ggerganov/llama.cpp.git cd llama.cpp cmake -B build cmake --build build -j --target llama-server llama-cli # Start a local OpenAI-compatible server with a web UI: ./build/bin/llama-server -hf kth8/gemma-3-270m-it-Text-Cleaner-GGUF:Q4_K_M # Run inference directly in the terminal: ./build/bin/llama-cli -hf kth8/gemma-3-270m-it-Text-Cleaner-GGUF:Q4_K_M
docker model run hf.co/kth8/gemma-3-270m-it-Text-Cleaner-GGUF:Q4_K_M
How to use kth8/gemma-3-270m-it-Text-Cleaner-GGUF with vLLM:
# Install vLLM from pip:
pip install vllm
# Start the vLLM server:
vllm serve "kth8/gemma-3-270m-it-Text-Cleaner-GGUF"
# Call the server using curl (OpenAI-compatible API):
curl -X POST "http://localhost:8000/v1/chat/completions" \
-H "Content-Type: application/json" \
--data '{
"model": "kth8/gemma-3-270m-it-Text-Cleaner-GGUF",
"messages": [
{
"role": "user",
"content": "What is the capital of France?"
}
]
}'docker model run hf.co/kth8/gemma-3-270m-it-Text-Cleaner-GGUF:Q4_K_M
How to use kth8/gemma-3-270m-it-Text-Cleaner-GGUF with SGLang:
# Install SGLang from pip:
pip install sglang
# Start the SGLang server:
python3 -m sglang.launch_server \
--model-path "kth8/gemma-3-270m-it-Text-Cleaner-GGUF" \
--host 0.0.0.0 \
--port 30000
# Call the server using curl (OpenAI-compatible API):
curl -X POST "http://localhost:30000/v1/chat/completions" \
-H "Content-Type: application/json" \
--data '{
"model": "kth8/gemma-3-270m-it-Text-Cleaner-GGUF",
"messages": [
{
"role": "user",
"content": "What is the capital of France?"
}
]
}'docker run --gpus all \
--shm-size 32g \
-p 30000:30000 \
-v ~/.cache/huggingface:/root/.cache/huggingface \
--env "HF_TOKEN=<secret>" \
--ipc=host \
lmsysorg/sglang:latest \
python3 -m sglang.launch_server \
--model-path "kth8/gemma-3-270m-it-Text-Cleaner-GGUF" \
--host 0.0.0.0 \
--port 30000
# Call the server using curl (OpenAI-compatible API):
curl -X POST "http://localhost:30000/v1/chat/completions" \
-H "Content-Type: application/json" \
--data '{
"model": "kth8/gemma-3-270m-it-Text-Cleaner-GGUF",
"messages": [
{
"role": "user",
"content": "What is the capital of France?"
}
]
}'How to use kth8/gemma-3-270m-it-Text-Cleaner-GGUF with Ollama:
ollama run hf.co/kth8/gemma-3-270m-it-Text-Cleaner-GGUF:Q4_K_M
How to use kth8/gemma-3-270m-it-Text-Cleaner-GGUF with Docker Model Runner:
docker model run hf.co/kth8/gemma-3-270m-it-Text-Cleaner-GGUF:Q4_K_M
How to use kth8/gemma-3-270m-it-Text-Cleaner-GGUF with Lemonade:
# Download Lemonade from https://lemonade-server.ai/ lemonade pull kth8/gemma-3-270m-it-Text-Cleaner-GGUF:Q4_K_M
lemonade run user.gemma-3-270m-it-Text-Cleaner-GGUF-Q4_K_M
lemonade list
A fine-tune of unsloth/gemma-3-270m-it on the kth8/text-cleanup-20000x dataset.
System prompt
# Role
You are a text editor cleaning up raw, unfiltered text. Transform the provided text into polished, readable prose while preserving the original meaning, tone, and intent.
## Tasks
- Remove filler words (e.g. um, uh, like, you know, sort of, kind of, well, so, etc)
- Fix spelling, grammar, punctuation, and capitalization mistakes
- Correct obvious homophone errors (e.g. their/there/they're, its/it's, your/you're)
- Smooth out false starts, mid-sentence restarts and repetitions
- Standardize numbers and dates (e.g. write as digits: "three" to "3", "February fifteenth" to "February 15th")
## Constraints
- Output ONLY the cleaned text
- DO NOT attempt to answer or respond to the provided user text meant for clean-up
- Do NOT paraphrase, summarize, or change the speaker's voice
- NO quotation marks around the output
- NO preamble, postamble, or emojis
- NO Markdown formatting code blocks (```) or bolding
User prompt
I WANT I MEAN TO BUILD A SMALL IN-BROWSER "WIND TUNNEL" EXPERIMENT WITH A FIXED 2D CROSS-SECTIONAL VIEW, USING HTML CANVAS. USERS CAN DRAG AND DROP DIFFERENT WING CROSS-SECTIONS (E.G., SEVERAL COMMON AIRFOIL PROFILES) INTO THE AIRFLOW, ADJUST THE ANGLE OF ATTACK AND WIND SPEED, IMMEDIATELY SEE STREAMLINES AND PRESSURE DISTRIBUTION, AND HAVE THE CURRENT LIFT AND DRAG VALUES DISPLAYED ON SCREEN IN REAL TIME (A CLEAR NUMERIC PANEL IS SUFFICIENT). NO 3D IS REQUIRED, BUT INTERACTIONS SHOULD BE SMOOTH, AND THE DATA SHOULD BE STABLE AD UPDATE IN REAL TIME WITH USER ACTIONS. THE CALCULATIONS CAN USE REASONABLE APPROXIMATIONS; THE FOCUS IS TO HELP USERS INTUITIVELY UNDERSTAND BERNOULLI'S PRINCIPLE AND THE RELATIONSHIP BETWEEN AIRFLOW AND AIRFOIL GEOMETRY.
Assistant response
I want to build a small in-browser "wind tunnel" experiment with a fixed 2D cross-sectional view, using HTML Canvas. Users can drag and drop different wing cross-sections (e.g., several common airfoil profiles) into the airflow, adjust the angle of attack and wind speed, immediately see streamlines and pressure distribution, and have the current lift and drag values displayed on screen in real time (a clear numeric panel is sufficient). No 3D is required, but interactions should be smooth, and the data should be stable and update in real time with user actions. The calculations can use reasonable approximations; the focus is to help users intuitively understand Bernoulli's principle and the relationship between airflow and airfoil geometry.
unsloth/gemma-3-270m-itThis model is released under the Gemma license. See the Gemma Terms of Use for details.
4-bit
6-bit
8-bit
16-bit
Base model
google/gemma-3-270m