Spaces:
Sleeping
Sleeping
stylistic changes
Browse files- use monospace font for the prompt
- make code block larger
- hide advanced settings + add disclaimer
- update title and model formats
Left:
- improve examples
- remove eos token after this [issue](https://github.com/gradio-app/gradio/issues/3839) is fixed
app.py
CHANGED
@@ -12,8 +12,6 @@ from share_btn import community_icon_html, loading_icon_html, share_js, share_bt
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HF_TOKEN = os.environ.get("HF_TOKEN", None)
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API_URL = os.environ.get("API_URL")
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with open("./HHH_prompt.txt", "r") as f:
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HHH_PROMPT = f.read() + "\n\n"
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FIM_PREFIX = "<fim_prefix>"
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FIM_MIDDLE = "<fim_middle>"
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@@ -23,39 +21,40 @@ FIM_INDICATOR = "<FILL_HERE>"
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FORMATS = """## Model formats
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The model is pretrained on code and
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###
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-
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### Prefixes
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Any combination of the three following prefixes can be found in pure code files:
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```
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<reponame>REPONAME<filename>FILENAME<gh_stars>STARS\ncode<|endoftext|>
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```
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STARS can be one of: 0, 1-10, 10-100, 100-1000, 1000+
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### Commits
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The commits data is formatted as follows:
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```
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<commit_before>code<commit_msg>text<commit_after>code<|endoftext|>
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```
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### Jupyter
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-
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```
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<start_jupyter><jupyter_text>text<jupyter_code>code<jupyter_output>output<jupyter_text>
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```
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### Issues
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We also trained on GitHub issues using the following formatting:
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```
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<issue_start><issue_comment>text<issue_comment>...<issue_closed>
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```
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### Fill-in-the-middle
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Fill in the middle requires rearranging the model inputs. The playground
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```
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code before<FILL_HERE>code after
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```
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@@ -66,21 +65,30 @@ theme = gr.themes.Monochrome(
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secondary_hue="blue",
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neutral_hue="slate",
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radius_size=gr.themes.sizes.radius_sm,
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font=[
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)
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client = Client(
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API_URL,
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)
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-
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temperature = float(temperature)
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if temperature < 1e-2:
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temperature = 1e-2
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top_p = float(top_p)
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fim_mode = False
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-
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generate_kwargs = dict(
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temperature=temperature,
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max_new_tokens=max_new_tokens,
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@@ -89,16 +97,7 @@ def generate(prompt, temperature=0.9, max_new_tokens=256, top_p=0.95, repetition
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do_sample=True,
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seed=42,
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)
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if chat_mode:
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generate_kwargs.update({"stop_sequences": ["\nHuman", "\n-----"]})
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if chat_mode and FIM_INDICATOR in prompt:
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raise ValueError("Chat mode and FIM are mutually exclusive. Choose one or the other.")
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if chat_mode:
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chat_prompt = "Human: " + prompt + "\n\nAssistant:"
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prompt = HHH_PROMPT + chat_prompt
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-
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if FIM_INDICATOR in prompt:
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fim_mode = True
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try:
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@@ -111,17 +110,13 @@ def generate(prompt, temperature=0.9, max_new_tokens=256, top_p=0.95, repetition
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if fim_mode:
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output = prefix
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elif chat_mode:
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output = chat_prompt
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else:
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output = prompt
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previous_token = ""
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for response in stream:
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if fim_mode and response.token.text =="<|endoftext|>":
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output += (suffix + "\n" + response.token.text)
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elif chat_mode and response.token.text in ["Human", "-----"] and previous_token=="\n":
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return output
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else:
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output += response.token.text
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previous_token = response.token.text
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@@ -133,7 +128,7 @@ examples = [
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"def print_hello_world():",
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'def fibonacci(n: int) -> int:\n """ Compute the n-th Fibonacci number. """',
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'from typing import List, Tuple\n\ndef sum_and_product(numbers: List[int]) -> Tuple[int, int]:\n """ Return the sum and the product of the integers in the list as a tuple. Here is the answer of the exercise"""',
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"class ComplexNumbers:"
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]
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@@ -142,29 +137,92 @@ def process_example(args):
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pass
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return x
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css = ".generating {visibility: hidden}" + share_btn_css
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with gr.Column():
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gr.Markdown(
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"""\
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# BigCode - Playground
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-
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"""
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-
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with gr.Row():
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with gr.Column(
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instruction = gr.Textbox(
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submit = gr.Button("Generate", variant="primary")
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output = gr.Code(elem_id="q-output")
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with gr.Group(elem_id="share-btn-container"):
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community_icon = gr.HTML(community_icon_html, visible=True)
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loading_icon = gr.HTML(loading_icon_html, visible=True)
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share_button = gr.Button(
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gr.Examples(
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examples=examples,
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inputs=[instruction],
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@@ -174,50 +232,10 @@ _Note:_ this is an internal playground - please do not share. The deployment can
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)
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gr.Markdown(FORMATS)
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)
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temperature = gr.Slider(
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label="Temperature",
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value=0.2,
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minimum=0.0,
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maximum=1.0,
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step=0.05,
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interactive=True,
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info="Higher values produce more diverse outputs",
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)
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max_new_tokens = gr.Slider(
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label="Max new tokens",
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value=256,
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minimum=0,
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maximum=8192,
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step=64,
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interactive=True,
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info="The maximum numbers of new tokens",
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)
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top_p = gr.Slider(
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label="Top-p (nucleus sampling)",
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value=0.90,
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minimum=0.0,
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maximum=1,
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step=0.05,
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interactive=True,
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info="Higher values sample more low-probability tokens",
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)
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repetition_penalty = gr.Slider(
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label="Repetition penalty",
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value=1.2,
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minimum=1.0,
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maximum=2.0,
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step=0.05,
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interactive=True,
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info="Penalize repeated tokens",
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)
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submit.click(generate, inputs=[instruction, temperature, max_new_tokens, top_p, repetition_penalty, chat_mode], outputs=[output])
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# instruction.submit(generate, inputs=[instruction, temperature, max_new_tokens, top_p, repetition_penalty, chat_mode], outputs=[output])
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share_button.click(None, [], [], _js=share_js)
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demo.queue(concurrency_count=16).launch(debug=True)
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HF_TOKEN = os.environ.get("HF_TOKEN", None)
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API_URL = os.environ.get("API_URL")
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FIM_PREFIX = "<fim_prefix>"
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FIM_MIDDLE = "<fim_middle>"
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FORMATS = """## Model formats
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The model is pretrained on code and is formatted with special tokens in addition to the pure code data,
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such as prefixes specifying the source of the file or tokens separating code from a commit message.
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Use these templates to explore the model's capacities:
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### 1. Prefixes 🏷️
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For pure code files, use any combination of the following prefixes:
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```
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<reponame>REPONAME<filename>FILENAME<gh_stars>STARS\ncode<|endoftext|>
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```
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STARS can be one of: 0, 1-10, 10-100, 100-1000, 1000+
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### 2. Commits 💾
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The commits data is formatted as follows:
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```
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<commit_before>code<commit_msg>text<commit_after>code<|endoftext|>
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```
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### 3. Jupyter Notebooks 📓
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The model is trained on Jupyter notebooks as Python scripts and structured formats like:
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```
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<start_jupyter><jupyter_text>text<jupyter_code>code<jupyter_output>output<jupyter_text>
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```
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### 4. Issues 🐛
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We also trained on GitHub issues using the following formatting:
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```
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<issue_start><issue_comment>text<issue_comment>...<issue_closed>
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```
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+
### 5. Fill-in-the-middle 🧩
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Fill in the middle requires rearranging the model inputs. The playground handles this for you - all you need is to specify where to fill:
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```
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code before<FILL_HERE>code after
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```
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secondary_hue="blue",
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neutral_hue="slate",
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radius_size=gr.themes.sizes.radius_sm,
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font=[
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gr.themes.GoogleFont("Open Sans"),
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"ui-sans-serif",
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"system-ui",
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"sans-serif",
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],
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)
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client = Client(
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API_URL,
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headers={"Authorization": f"Bearer {HF_TOKEN}"},
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)
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+
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def generate(
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prompt, temperature=0.9, max_new_tokens=256, top_p=0.95, repetition_penalty=1.0
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):
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temperature = float(temperature)
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if temperature < 1e-2:
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temperature = 1e-2
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top_p = float(top_p)
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fim_mode = False
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+
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generate_kwargs = dict(
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temperature=temperature,
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max_new_tokens=max_new_tokens,
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do_sample=True,
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seed=42,
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)
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if FIM_INDICATOR in prompt:
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fim_mode = True
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try:
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if fim_mode:
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output = prefix
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else:
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output = prompt
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previous_token = ""
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for response in stream:
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+
if fim_mode and response.token.text == "<|endoftext|>":
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output += (suffix + "\n" + response.token.text)
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else:
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output += response.token.text
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previous_token = response.token.text
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"def print_hello_world():",
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'def fibonacci(n: int) -> int:\n """ Compute the n-th Fibonacci number. """',
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'from typing import List, Tuple\n\ndef sum_and_product(numbers: List[int]) -> Tuple[int, int]:\n """ Return the sum and the product of the integers in the list as a tuple. Here is the answer of the exercise"""',
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+
"class ComplexNumbers:",
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]
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pass
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return x
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css = ".generating {visibility: hidden}"
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monospace_css = """
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#q-input textarea {
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font-family: monospace, 'Consolas', Courier, monospace;
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}
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"""
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custom_output_css = """
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#q-output textarea {
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min-height: 800px;
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}
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"""
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css += share_btn_css + monospace_css + custom_output_css + ".gradio-container {color: black}"
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description = """
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<div style="text-align: center;">
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<h1 style='color: black;'> 💫 StarCoder<span style='color: #e6b800;'> - </span>Playground</h1>
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<p style='color: black;'>This is a demo to generate code with <a href="https://huggingface.co/bigcode/starcoder" style='color: #e6b800;'>StarCoder</a>, a 15B parameter model for code generation in 86 programming languages.</p>
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</div>
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"""
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disclaimer = """⚠️ **Intended Use**: this app and its [supporting model](https://huggingface.co/bigcode) are provided for demonstration purposes; not to serve as replacement for human expertise. For more details on the model's limitations in terms of factuality and biases, see the [model card.](hf.co/bigcode)"""
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+
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with gr.Blocks(theme=theme, analytics_enabled=False, css=css) as demo:
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with gr.Column():
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gr.Markdown(description)
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with gr.Row():
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with gr.Column():
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instruction = gr.Textbox(
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placeholder="Enter your prompt here",
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label="Prompt",
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elem_id="q-input",
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)
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submit = gr.Button("Generate", variant="primary")
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output = gr.Code(elem_id="q-output", lines=30)
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with gr.Accordion("Advanced settings", open=False):
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with gr.Row():
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column_1, column_2 = gr.Column(), gr.Column()
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with column_1:
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temperature = gr.Slider(
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label="Temperature",
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value=0.2,
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minimum=0.0,
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186 |
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maximum=1.0,
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step=0.05,
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interactive=True,
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info="Higher values produce more diverse outputs",
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)
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max_new_tokens = gr.Slider(
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label="Max new tokens",
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value=256,
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194 |
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minimum=0,
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195 |
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maximum=8192,
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step=64,
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197 |
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interactive=True,
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info="The maximum numbers of new tokens",
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)
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200 |
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with column_2:
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top_p = gr.Slider(
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label="Top-p (nucleus sampling)",
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value=0.90,
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204 |
+
minimum=0.0,
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205 |
+
maximum=1,
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206 |
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step=0.05,
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207 |
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interactive=True,
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info="Higher values sample more low-probability tokens",
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)
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repetition_penalty = gr.Slider(
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211 |
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label="Repetition penalty",
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value=1.2,
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213 |
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minimum=1.0,
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214 |
+
maximum=2.0,
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215 |
+
step=0.05,
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216 |
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interactive=True,
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217 |
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info="Penalize repeated tokens",
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)
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219 |
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gr.Markdown(disclaimer)
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with gr.Group(elem_id="share-btn-container"):
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community_icon = gr.HTML(community_icon_html, visible=True)
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loading_icon = gr.HTML(loading_icon_html, visible=True)
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223 |
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share_button = gr.Button(
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224 |
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"Share to community", elem_id="share-btn", visible=True
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225 |
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)
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gr.Examples(
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examples=examples,
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inputs=[instruction],
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)
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gr.Markdown(FORMATS)
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submit.click(
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generate,
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inputs=[instruction, temperature, max_new_tokens, top_p, repetition_penalty],
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outputs=[output],
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)
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share_button.click(None, [], [], _js=share_js)
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demo.queue(concurrency_count=16).launch(debug=True)
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