unsloth/studio/backend/models/inference.py
Daniel Han 9c95148045
Fix tool call parsing, add tool outputs panel and UI improvements (#4416)
* Add elapsed timer to tool status pill in Studio

Show a count-up seconds timer (0s, 1s, 2s, ...) next to the tool status
text in the composer area. Helps users gauge how long a tool call (web
search, code execution) has been running. Timer resets when a new tool
starts and disappears when all tools finish.

* Fix tool call parsing, add tool outputs panel and reasoning copy button

Backend:
- Rewrite tool call XML parser to use balanced-brace JSON extraction
  instead of greedy regex, fixing truncation on nested braces in
  code/JSON arguments
- Handle optional closing tags (</tool_call>, </function>, </parameter>)
  that models frequently omit
- Support bare <function=...> tags without <tool_call> wrapper
- Strip tool call markup from streamed content so raw XML never leaks
  into the chat UI
- Use a persistent ~/studio_sandbox/ working directory for tool
  execution so files persist across calls within a session
- Emit tool_start/tool_end SSE events so the frontend can display
  tool inputs and outputs

Frontend:
- Add collapsible "Tool Outputs" panel below assistant messages showing
  each tool call's input and output with copy buttons
- Add copy button to reasoning blocks
- Add elapsed timer to tool status pill
- Update project URLs in pyproject.toml (http -> https, add docs link)

* [pre-commit.ci] auto fixes from pre-commit.com hooks

for more information, see https://pre-commit.ci

* Add interactive HTML preview with fullscreen toggle for code blocks

HTML code fences now render an interactive sandboxed iframe preview
below the syntax-highlighted code, similar to how SVG fences show
an image preview. The iframe uses sandbox="allow-scripts" to allow
JavaScript execution while blocking access to the parent page.

Includes a fullscreen toggle (enlarge/minimize button) that expands
the preview into a viewport overlay, dismissible via button, Escape
key, or backdrop click. A streaming placeholder prevents partial
HTML from rendering mid-stream.

* Add tool call settings: auto-heal toggle, max iterations, timeout

Add three user-configurable tool call settings to the Studio Settings panel:

- Auto Heal Tool Calls: toggle to control fallback XML parsing of malformed
  tool calls from model output (default: on)
- Max Tool Calls Per Message: slider 0-40 + Max to cap tool call iterations
  per message (default: 10)
- Max Tool Call Duration: slider 1-30 minutes + Max to set per-tool-call
  execution timeout (default: 5 minutes)

All settings persist to localStorage and flow through the full stack:
frontend store -> API request -> Pydantic model -> route -> llama_cpp -> tools.

* [pre-commit.ci] auto fixes from pre-commit.com hooks

for more information, see https://pre-commit.ci

* Fix tool call timeout: respect no-limit and apply to web search

- Use a sentinel to distinguish timeout=None (no limit) from the default
  (300s). Previously None was silently replaced with _EXEC_TIMEOUT.
- Pass the configured timeout to DDGS() for web searches so the setting
  applies uniformly to all tool types.

* [pre-commit.ci] auto fixes from pre-commit.com hooks

for more information, see https://pre-commit.ci

* Add input validation bounds and per-thread sandbox isolation

- Add ge=0 constraint to max_tool_calls_per_message (rejects negative values)
- Add ge=1 constraint to tool_call_timeout (minimum 1 second)
- Thread session_id from frontend through backend to tool execution
- Scope sandbox directories per conversation: ~/studio_sandbox/{thread_id}/
- Backwards compatible: API callers without session_id use ~/studio_sandbox/

* [pre-commit.ci] auto fixes from pre-commit.com hooks

for more information, see https://pre-commit.ci

* Fix non-monotonic streaming and Python temp script path

- Split tool markup stripping into closed-only (mid-stream) and full
  (final flush) to prevent cumulative text from shrinking mid-stream
- Enforce monotonicity: only emit when cleaned text grows, so the
  proxy's delta logic (cumulative[len(prev_text):]) never breaks
- Place Python temp scripts in the sandbox workdir instead of /tmp so
  sys.path[0] points to the sandbox and cross-call imports work

* [pre-commit.ci] auto fixes from pre-commit.com hooks

for more information, see https://pre-commit.ci

* Sanitize session_id to prevent path traversal in sandbox

Strip path separators and parent-dir references from session_id before
using it as a directory name. Verify the resolved path stays under
~/studio_sandbox/ as a second guard.

* feat(chat): proper assistant-ui tool call UIs with sources

Replace custom metadata-based ToolOutputsGroup with native assistant-ui
tool-call content parts. Backend SSE tool_start/tool_end events now emit
proper { type: "tool-call" } parts from the adapter, enabling per-tool
UIs registered via tools.by_name in MessagePrimitive.Parts.

- Web search: Globe icon, Source badges with favicons, auto-collapse
  when LLM starts responding
- Python: Code icon, syntax-highlighted code via Streamdown/shiki,
  output block with copy
- Terminal: Terminal icon, command in trigger, output with copy
- ToolGroup wraps consecutive tool calls (skips for single calls)
- Sources component renders URL badges at end of message
- Flattened code block CSS (single border, no nested boxes)

* fix(inference): respect empty enabled_tools allowlist

`if payload.enabled_tools:` is falsy for [], falling through to
ALL_TOOLS. Use `is not None` so an explicit empty list disables
all tools as intended.

---------

Co-authored-by: pre-commit-ci[bot] <66853113+pre-commit-ci[bot]@users.noreply.github.com>
Co-authored-by: Shine1i <wasimysdev@gmail.com>
2026-03-18 08:28:02 -07:00

403 lines
14 KiB
Python

# SPDX-License-Identifier: AGPL-3.0-only
# Copyright 2026-present the Unsloth AI Inc. team. All rights reserved. See /studio/LICENSE.AGPL-3.0
"""
Pydantic schemas for Inference API
"""
from __future__ import annotations
import time
import uuid
from typing import Annotated, Any, Dict, Literal, Optional, List, Union
from pydantic import BaseModel, Discriminator, Field, Tag
class LoadRequest(BaseModel):
"""Request to load a model for inference"""
model_path: str = Field(..., description = "Model identifier or local path")
hf_token: Optional[str] = Field(
None, description = "HuggingFace token for gated models"
)
max_seq_length: int = Field(
4096, ge = 128, le = 32768, description = "Maximum sequence length"
)
load_in_4bit: bool = Field(True, description = "Load model in 4-bit quantization")
is_lora: bool = Field(False, description = "Whether this is a LoRA adapter")
gguf_variant: Optional[str] = Field(
None, description = "GGUF quantization variant (e.g. 'Q4_K_M')"
)
trust_remote_code: bool = Field(
False,
description = "Allow loading models with custom code (e.g. NVIDIA Nemotron). Only enable for repos you trust.",
)
chat_template_override: Optional[str] = Field(
None,
description = "Custom Jinja2 chat template to use instead of the model's default",
)
cache_type_kv: Optional[str] = Field(
None,
description = "KV cache data type for both K and V (e.g. 'f16', 'bf16', 'q8_0', 'q4_1', 'q5_1')",
)
class UnloadRequest(BaseModel):
"""Request to unload a model"""
model_path: str = Field(..., description = "Model identifier to unload")
class ValidateModelRequest(BaseModel):
"""
Lightweight validation request to check whether a model identifier
*can be resolved* into a ModelConfig.
This does NOT actually load weights into GPU memory.
"""
model_path: str = Field(..., description = "Model identifier or local path")
hf_token: Optional[str] = Field(
None, description = "HuggingFace token for gated models"
)
gguf_variant: Optional[str] = Field(
None, description = "GGUF quantization variant (e.g. 'Q4_K_M')"
)
class ValidateModelResponse(BaseModel):
"""
Result of model validation.
valid == True means ModelConfig.from_identifier() succeeded and basic
introspection (GGUF / LoRA / vision flags) is available.
"""
valid: bool = Field(..., description = "Whether the model identifier looks valid")
message: str = Field(..., description = "Human-readable validation message")
identifier: Optional[str] = Field(None, description = "Resolved model identifier")
display_name: Optional[str] = Field(
None, description = "Display name derived from identifier"
)
is_gguf: bool = Field(False, description = "Whether this is a GGUF model (llama.cpp)")
is_lora: bool = Field(False, description = "Whether this is a LoRA adapter")
is_vision: bool = Field(False, description = "Whether this is a vision-capable model")
class GenerateRequest(BaseModel):
"""Request for text generation (legacy /generate/stream endpoint)"""
messages: List[dict] = Field(..., description = "Chat messages in OpenAI format")
system_prompt: str = Field("", description = "System prompt")
temperature: float = Field(0.6, ge = 0.0, le = 2.0, description = "Sampling temperature")
top_p: float = Field(0.95, ge = 0.0, le = 1.0, description = "Top-p sampling")
top_k: int = Field(20, ge = -1, le = 100, description = "Top-k sampling")
max_new_tokens: int = Field(
2048, ge = 1, le = 4096, description = "Maximum tokens to generate"
)
repetition_penalty: float = Field(
1.0, ge = 1.0, le = 2.0, description = "Repetition penalty"
)
presence_penalty: float = Field(0.0, ge = 0.0, le = 2.0, description = "Presence penalty")
image_base64: Optional[str] = Field(
None, description = "Base64 encoded image for vision models"
)
class LoadResponse(BaseModel):
"""Response after loading a model"""
status: str = Field(..., description = "Load status")
model: str = Field(..., description = "Model identifier")
display_name: str = Field(..., description = "Display name of the model")
is_vision: bool = Field(False, description = "Whether model is a vision model")
is_lora: bool = Field(False, description = "Whether model is a LoRA adapter")
is_gguf: bool = Field(
False, description = "Whether model is a GGUF model (llama.cpp)"
)
is_audio: bool = Field(False, description = "Whether model is a TTS audio model")
audio_type: Optional[str] = Field(
None, description = "Audio codec type: snac, csm, bicodec, dac"
)
has_audio_input: bool = Field(
False, description = "Whether model accepts audio input (ASR)"
)
inference: dict = Field(
..., description = "Inference parameters (temperature, top_p, top_k, min_p)"
)
context_length: Optional[int] = Field(
None, description = "Model's native context length (from GGUF metadata)"
)
supports_reasoning: bool = Field(
False,
description = "Whether model supports thinking/reasoning mode (enable_thinking)",
)
supports_tools: bool = Field(
False,
description = "Whether model supports tool calling (web search, etc.)",
)
cache_type_kv: Optional[str] = Field(
None,
description = "KV cache data type for K and V (e.g. 'f16', 'bf16', 'q8_0')",
)
chat_template: Optional[str] = Field(
None,
description = "Jinja2 chat template string (from GGUF metadata or tokenizer)",
)
class UnloadResponse(BaseModel):
"""Response after unloading a model"""
status: str = Field(..., description = "Unload status")
model: str = Field(..., description = "Model identifier that was unloaded")
class InferenceStatusResponse(BaseModel):
"""Current inference backend status"""
active_model: Optional[str] = Field(
None, description = "Currently active model identifier"
)
is_vision: bool = Field(
False, description = "Whether the active model is a vision model"
)
is_gguf: bool = Field(
False, description = "Whether the active model is a GGUF model (llama.cpp)"
)
gguf_variant: Optional[str] = Field(
None, description = "GGUF quantization variant (e.g. Q4_K_M)"
)
is_audio: bool = Field(
False, description = "Whether the active model is a TTS audio model"
)
audio_type: Optional[str] = Field(
None, description = "Audio codec type: snac, csm, bicodec, dac"
)
has_audio_input: bool = Field(
False, description = "Whether model accepts audio input (ASR)"
)
loading: List[str] = Field(
default_factory = list, description = "Models currently being loaded"
)
loaded: List[str] = Field(
default_factory = list, description = "Models currently loaded"
)
inference: Optional[Dict[str, Any]] = Field(
None, description = "Recommended inference parameters for the active model"
)
supports_reasoning: bool = Field(
False, description = "Whether the active model supports reasoning/thinking mode"
)
supports_tools: bool = Field(
False, description = "Whether the active model supports tool calling"
)
context_length: Optional[int] = Field(
None, description = "Context length of the active model"
)
# =====================================================================
# OpenAI-Compatible Chat Completions Models
# =====================================================================
# ── Multimodal content parts (OpenAI vision format) ──────────────
class TextContentPart(BaseModel):
"""Text content part in a multimodal message."""
type: Literal["text"]
text: str
class ImageUrl(BaseModel):
"""Image URL object — supports data URIs and remote URLs."""
url: str = Field(..., description = "data:image/png;base64,... or https://...")
detail: Optional[Literal["auto", "low", "high"]] = "auto"
class ImageContentPart(BaseModel):
"""Image content part in a multimodal message."""
type: Literal["image_url"]
image_url: ImageUrl
def _content_part_discriminator(v):
if isinstance(v, dict):
return v.get("type")
return getattr(v, "type", None)
ContentPart = Annotated[
Union[
Annotated[TextContentPart, Tag("text")],
Annotated[ImageContentPart, Tag("image_url")],
],
Discriminator(_content_part_discriminator),
]
"""Union type for multimodal content parts, discriminated by the 'type' field."""
# ── Messages ─────────────────────────────────────────────────────
class ChatMessage(BaseModel):
"""
A single message in the conversation.
``content`` may be a plain string (text-only) or a list of
content parts for multimodal messages (OpenAI vision format).
"""
role: Literal["system", "user", "assistant"] = Field(
..., description = "Message role"
)
content: Union[str, list[ContentPart]] = Field(
..., description = "Message content (string or multimodal parts)"
)
class ChatCompletionRequest(BaseModel):
"""
OpenAI-compatible chat completion request.
Extensions (non-OpenAI fields) are marked with 'x-unsloth'.
"""
model: str = Field(
"default",
description = "Model identifier (informational; the active model is used)",
)
messages: list[ChatMessage] = Field(..., description = "Conversation messages")
stream: bool = Field(True, description = "Whether to stream the response via SSE")
temperature: float = Field(0.6, ge = 0.0, le = 2.0)
top_p: float = Field(0.95, ge = 0.0, le = 1.0)
max_tokens: Optional[int] = Field(
None, ge = 1, description = "Maximum tokens to generate (None = until EOS)"
)
presence_penalty: float = Field(0.0, ge = 0.0, le = 2.0, description = "Presence penalty")
# ── Unsloth extensions (ignored by standard OpenAI clients) ──
top_k: int = Field(20, ge = -1, le = 100, description = "[x-unsloth] Top-k sampling")
min_p: float = Field(
0.01, ge = 0.0, le = 1.0, description = "[x-unsloth] Min-p sampling threshold"
)
repetition_penalty: float = Field(
1.1, ge = 1.0, le = 2.0, description = "[x-unsloth] Repetition penalty"
)
image_base64: Optional[str] = Field(
None, description = "[x-unsloth] Base64-encoded image for vision models"
)
audio_base64: Optional[str] = Field(
None, description = "[x-unsloth] Base64-encoded WAV for audio-input models (ASR)"
)
use_adapter: Optional[Union[bool, str]] = Field(
None,
description = (
"[x-unsloth] Adapter control for compare mode. "
"null = no change (default), "
"false = disable adapters (base model), "
"true = enable the current adapter, "
"string = enable a specific adapter by name."
),
)
enable_thinking: Optional[bool] = Field(
None,
description = "[x-unsloth] Enable/disable thinking/reasoning mode for supported models",
)
enable_tools: Optional[bool] = Field(
None,
description = "[x-unsloth] Enable tool calling for supported models",
)
enabled_tools: Optional[list[str]] = Field(
None,
description = "[x-unsloth] List of enabled tool names (e.g. ['web_search', 'python', 'terminal']). If None, all tools are enabled.",
)
auto_heal_tool_calls: Optional[bool] = Field(
True,
description = "[x-unsloth] Auto-detect and fix malformed tool calls from model output.",
)
max_tool_calls_per_message: Optional[int] = Field(
10,
ge = 0,
description = "[x-unsloth] Maximum number of tool call iterations per message (0 = disabled, 9999 = unlimited).",
)
tool_call_timeout: Optional[int] = Field(
300,
ge = 1,
description = "[x-unsloth] Timeout in seconds for each tool call execution (9999 = no limit).",
)
session_id: Optional[str] = Field(
None,
description = "[x-unsloth] Session/thread ID for scoping tool execution sandbox.",
)
# ── Streaming response chunks ────────────────────────────────────
class ChoiceDelta(BaseModel):
"""Delta content for a streaming chunk."""
role: Optional[str] = None
content: Optional[str] = None
class ChunkChoice(BaseModel):
"""A single choice in a streaming chunk."""
index: int = 0
delta: ChoiceDelta
finish_reason: Optional[Literal["stop", "length"]] = None
class ChatCompletionChunk(BaseModel):
"""A single SSE chunk in OpenAI streaming format."""
id: str = Field(default_factory = lambda: f"chatcmpl-{uuid.uuid4().hex[:12]}")
object: Literal["chat.completion.chunk"] = "chat.completion.chunk"
created: int = Field(default_factory = lambda: int(time.time()))
model: str = "default"
choices: list[ChunkChoice]
# ── Non-streaming response ───────────────────────────────────────
class CompletionMessage(BaseModel):
"""The assistant's complete response message."""
role: Literal["assistant"] = "assistant"
content: str
class CompletionChoice(BaseModel):
"""A single choice in a non-streaming response."""
index: int = 0
message: CompletionMessage
finish_reason: Literal["stop", "length"] = "stop"
class CompletionUsage(BaseModel):
"""Token usage statistics (approximate)."""
prompt_tokens: int = 0
completion_tokens: int = 0
total_tokens: int = 0
class ChatCompletion(BaseModel):
"""Non-streaming chat completion response."""
id: str = Field(default_factory = lambda: f"chatcmpl-{uuid.uuid4().hex[:12]}")
object: Literal["chat.completion"] = "chat.completion"
created: int = Field(default_factory = lambda: int(time.time()))
model: str = "default"
choices: list[CompletionChoice]
usage: CompletionUsage = Field(default_factory = CompletionUsage)