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feat/101-b
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|---|---|---|---|
| 590c4c7820 | |||
| 629be9714f | |||
| 3123d1fa8e |
50
benchmarks/bonsai-tool-calling.md
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50
benchmarks/bonsai-tool-calling.md
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# Tool Calling Viability: Bonsai 1-Bit Models
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**Epic**: #99 (1-Bit Models + Edge)
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**Date**: TBD (run benchmarks/test_tool_calling.py to populate)
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## Hypothesis
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1-bit quantization destroys fine-grained reasoning. Tool calling (precise JSON output) may be impossible at Q1_0. But worth testing — the field is moving fast.
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## Models to Test
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| Model | Size | Quant | Source |
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|-------|------|-------|--------|
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| Bonsai-1.7B | 1.7B | Q1_0 | prism-ml/Bonsai-1.7B-gguf |
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| Bonsai-4B | 4B | Q1_0 | prism-ml/Bonsai-4B-gguf |
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| Bonsai-8B | 8B | Q1_0 | prism-ml/Bonsai-8B-gguf |
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## Test Suite
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| # | Test | Category | Description |
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|---|------|----------|-------------|
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| 1 | simple_file_read | Simple Tool Call | Read a file with an exact path |
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| 2 | terminal_command | Terminal Command | Execute a shell command |
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| 3 | web_search | Web Search | Search the web for a query |
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| 4 | multi_step_chain | Multi-Step | Chain: read -> analyze -> write |
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| 5 | nested_schema | Schema Parsing | Complex nested parameters |
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## Results
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> **Run**: `python3 benchmarks/test_tool_calling.py --model bonsai-1.7b --output benchmarks/bonsai-tool-calling.md`
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| Test | Bonsai-1.7B | Bonsai-4B | Bonsai-8B |
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|------|-------------|-----------|-----------|
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| simple_file_read | TBD | TBD | TBD |
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| terminal_command | TBD | TBD | TBD |
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| web_search | TBD | TBD | TBD |
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| multi_step_chain | TBD | TBD | TBD |
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| nested_schema | TBD | TBD | TBD |
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## Verdict
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TBD — run the test suite to populate.
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## Failure Modes (if any)
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TBD — document specific failure patterns observed.
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## Recommendations
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TBD — based on results, recommend minimum viable quantization level for tool calling.
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435
benchmarks/test_tool_calling.py
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435
benchmarks/test_tool_calling.py
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#!/usr/bin/env python3
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"""
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Tool Calling Viability Test for 1-Bit / Edge Models (Issue #101)
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Tests whether Bonsai 1-bit models (or any small model) can produce
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valid tool calls via Ollama or llama-server API.
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Test suite (5 categories):
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1. Simple tool call: file read with exact path
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2. Terminal command execution
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3. Web search
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4. Multi-step: read file -> analyze -> write result
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5. Schema parsing: complex nested parameters
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Each test:
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- Sends a prompt requesting a tool call
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- Checks if the response contains valid JSON tool call syntax
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- Scores structural validity + semantic accuracy
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- Records latency and token count
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Usage:
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python3 benchmarks/test_tool_calling.py --model bonsai-1.7b
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python3 benchmarks/test_tool_calling.py --model qwen3.5 --backend llama-server --url http://localhost:8080
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python3 benchmarks/test_tool_calling.py --model bonsai-1.7b --output benchmarks/bonsai-tool-calling.md
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"""
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import argparse
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import json
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import os
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import re
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import sys
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import time
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from datetime import datetime, timezone
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from typing import Optional
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try:
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import requests
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except ImportError:
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print("Error: pip install requests", file=sys.stderr)
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sys.exit(1)
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# ── Tool call test definitions ────────────────────────────────────────
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TESTS = [
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{
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"id": "simple_file_read",
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"category": "Simple Tool Call",
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"description": "Read a file with an exact path",
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"prompt": (
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"You have access to a tool called read_file. "
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"Call it to read /etc/hostname. "
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"Respond ONLY with a JSON tool call in this exact format:\n"
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'{"name": "read_file", "arguments": {"path": "/etc/hostname"}}'
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),
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"validate": lambda resp: _has_json_tool_call(resp, "read_file", {"path": "/etc/hostname"}),
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"scoring": "structural", # Can we parse the JSON at all?
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},
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{
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"id": "terminal_command",
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"category": "Terminal Command",
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"description": "Execute a shell command",
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"prompt": (
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"You have access to a tool called terminal. "
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"Call it to run the command: echo hello world. "
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"Respond ONLY with a JSON tool call:\n"
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'{"name": "terminal", "arguments": {"command": "echo hello world"}}'
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),
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"validate": lambda resp: _has_json_tool_call(resp, "terminal", {"command": "echo hello world"}),
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"scoring": "structural",
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},
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{
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"id": "web_search",
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"category": "Web Search",
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"description": "Search the web for a query",
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"prompt": (
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"You have access to a tool called web_search. "
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"Search for: what is quantization in machine learning. "
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"Respond ONLY with a JSON tool call:\n"
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'{"name": "web_search", "arguments": {"query": "what is quantization in machine learning"}}'
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),
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"validate": lambda resp: _has_json_tool_call(resp, "web_search", {"query": "what is quantization in machine learning"}),
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"scoring": "structural",
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},
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{
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"id": "multi_step_chain",
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"category": "Multi-Step",
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"description": "Chain: read file -> analyze -> write result",
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"prompt": (
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"You have access to these tools: read_file, write_file.\n"
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"Task: Read /tmp/input.txt, count the words, then write the count to /tmp/count.txt.\n"
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"First, call read_file on /tmp/input.txt. "
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"Respond ONLY with the first tool call as JSON:\n"
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'{"name": "read_file", "arguments": {"path": "/tmp/input.txt"}}'
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),
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"validate": lambda resp: _has_json_tool_call(resp, "read_file", {"path": "/tmp/input.txt"}),
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"scoring": "structural",
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},
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{
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"id": "nested_schema",
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"category": "Schema Parsing",
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"description": "Complex nested parameters",
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"prompt": (
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"You have access to a tool called deploy_service. "
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"Deploy a service with:\n"
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'- name: "api-gateway"\n'
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'- replicas: 3\n'
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'- env: {"PORT": 8080, "NODE_ENV": "production"}\n'
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'- resources: {"cpu": "500m", "memory": "256Mi"}\n\n'
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"Respond ONLY with a JSON tool call:\n"
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'{"name": "deploy_service", "arguments": {"name": "api-gateway", "replicas": 3, '
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'"env": {"PORT": 8080, "NODE_ENV": "production"}, '
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'"resources": {"cpu": "500m", "memory": "256Mi"}}}'
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),
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"validate": lambda resp: _has_nested_tool_call(resp),
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"scoring": "semantic", # Needs correct nested structure
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},
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]
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# ── Validation helpers ────────────────────────────────────────────────
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def _extract_json(text: str) -> Optional[dict]:
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"""Try to extract a JSON object from text."""
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# Try direct parse
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text = text.strip()
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try:
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obj = json.loads(text)
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if isinstance(obj, dict):
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return obj
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except json.JSONDecodeError:
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pass
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# Try finding JSON in code blocks
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code_block = re.search(r"```(?:json)?\s*({.*?})\s*```", text, re.DOTALL)
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if code_block:
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try:
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return json.loads(code_block.group(1))
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except json.JSONDecodeError:
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pass
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# Try finding any JSON object
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json_match = re.search(r"({[^{}]*(?:{[^{}]*}[^{}]*)*})", text)
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if json_match:
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try:
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return json.loads(json_match.group(1))
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except json.JSONDecodeError:
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pass
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return None
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def _has_json_tool_call(resp: str, expected_name: str, expected_args: dict) -> dict:
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"""Check if response contains a valid tool call with expected name and args."""
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obj = _extract_json(resp)
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if obj is None:
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return {"passed": False, "reason": "no JSON found in response"}
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# Check name
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name = obj.get("name", obj.get("function", {}).get("name", ""))
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if name != expected_name:
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return {"passed": False, "reason": f"wrong tool name: {name!r}, expected {expected_name!r}"}
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# Check arguments exist
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args = obj.get("arguments", obj.get("function", {}).get("arguments", obj.get("args", {})))
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if not args:
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return {"passed": False, "reason": "no arguments found"}
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# Check key arguments match
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for key, val in expected_args.items():
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if key not in args:
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return {"passed": False, "reason": f"missing argument: {key}"}
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if args[key] != val:
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return {"passed": False, "reason": f"argument mismatch: {key}={args[key]!r}, expected {val!r}"}
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return {"passed": True, "reason": "tool call valid", "parsed": obj}
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def _has_nested_tool_call(resp: str) -> dict:
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"""Check if response contains a valid tool call with nested parameters."""
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obj = _extract_json(resp)
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if obj is None:
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return {"passed": False, "reason": "no JSON found in response"}
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name = obj.get("name", obj.get("function", {}).get("name", ""))
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if name != "deploy_service":
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return {"passed": False, "reason": f"wrong tool name: {name!r}"}
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args = obj.get("arguments", obj.get("function", {}).get("arguments", obj.get("args", {})))
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if not args:
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return {"passed": False, "reason": "no arguments found"}
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checks = {
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"name": str,
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"replicas": int,
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"env": dict,
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"resources": dict,
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}
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for key, expected_type in checks.items():
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if key not in args:
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return {"passed": False, "reason": f"missing nested key: {key}"}
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if not isinstance(args[key], expected_type):
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return {"passed": False, "reason": f"{key} should be {expected_type.__name__}, got {type(args[key]).__name__}"}
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# Check env has PORT
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env = args.get("env", {})
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if "PORT" not in env:
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return {"passed": False, "reason": "env missing PORT"}
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return {"passed": True, "reason": "nested tool call valid", "parsed": obj}
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# ── Backend runners ───────────────────────────────────────────────────
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def run_ollama(prompt: str, model: str, url: str, timeout: int = 120) -> dict:
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"""Run a prompt against Ollama."""
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api_url = f"{url.rstrip('/')}/api/generate"
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start = time.time()
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try:
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resp = requests.post(api_url, json={
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"model": model,
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"prompt": prompt,
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"stream": False,
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"options": {"num_predict": 256, "temperature": 0}
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}, timeout=timeout)
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elapsed = time.time() - start
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resp.raise_for_status()
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data = resp.json()
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return {
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"response": data.get("response", ""),
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"latency_s": round(elapsed, 3),
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"tokens": data.get("eval_count", 0),
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"status": "success",
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}
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except Exception as e:
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return {"response": "", "latency_s": round(time.time() - start, 3), "tokens": 0, "status": "failed", "error": str(e)}
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def run_llama_server(prompt: str, model: str, url: str, timeout: int = 120) -> dict:
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"""Run a prompt against llama-server (OpenAI-compatible)."""
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api_url = f"{url.rstrip('/')}/v1/chat/completions"
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start = time.time()
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try:
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resp = requests.post(api_url, json={
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"model": model,
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"messages": [
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{"role": "system", "content": "You are a tool-calling assistant. Respond ONLY with JSON tool calls."},
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{"role": "user", "content": prompt},
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],
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"max_tokens": 256,
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"temperature": 0,
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"stream": False,
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}, timeout=timeout)
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elapsed = time.time() - start
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resp.raise_for_status()
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data = resp.json()
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content = data.get("choices", [{}])[0].get("message", {}).get("content", "")
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usage = data.get("usage", {})
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return {
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"response": content,
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"latency_s": round(elapsed, 3),
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"tokens": usage.get("completion_tokens", 0),
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"status": "success",
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||||
}
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except Exception as e:
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return {"response": "", "latency_s": round(time.time() - start, 3), "tokens": 0, "status": "failed", "error": str(e)}
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# ── Main runner ───────────────────────────────────────────────────────
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def run_tests(model: str, backend: str = "ollama", url: str = "http://localhost:11434",
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timeout: int = 120, verbose: bool = False) -> dict:
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"""Run the full tool calling test suite."""
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runner_fn = run_ollama if backend == "ollama" else run_llama_server
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results = {
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"model": model,
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"backend": backend,
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"url": url,
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"timestamp": datetime.now(timezone.utc).isoformat(),
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"tests": [],
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"summary": {"total": 0, "passed": 0, "failed": 0, "errors": 0},
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}
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print(f"Testing tool calling on: {model} ({backend})\n")
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for test in TESTS:
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print(f" [{test['id']}] {test['description']}...", end=" ", flush=True)
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run_result = runner_fn(test["prompt"], model, url, timeout)
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|
||||
if run_result["status"] == "failed":
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result = {
|
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"id": test["id"],
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||||
"category": test["category"],
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"description": test["description"],
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"passed": False,
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||||
"reason": f"backend error: {run_result.get('error', 'unknown')}",
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"response": "",
|
||||
"latency_s": run_result["latency_s"],
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"tokens": 0,
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||||
}
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results["summary"]["errors"] += 1
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print("ERROR")
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else:
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validation = test["validate"](run_result["response"])
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result = {
|
||||
"id": test["id"],
|
||||
"category": test["category"],
|
||||
"description": test["description"],
|
||||
"passed": validation["passed"],
|
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"reason": validation["reason"],
|
||||
"response": run_result["response"][:500],
|
||||
"latency_s": run_result["latency_s"],
|
||||
"tokens": run_result["tokens"],
|
||||
}
|
||||
if validation["passed"]:
|
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results["summary"]["passed"] += 1
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print("PASS")
|
||||
else:
|
||||
results["summary"]["failed"] += 1
|
||||
print(f"FAIL ({validation['reason']})")
|
||||
|
||||
if verbose:
|
||||
print(f" Response: {run_result['response'][:200]}")
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||||
|
||||
results["summary"]["total"] += 1
|
||||
results["tests"].append(result)
|
||||
|
||||
return results
|
||||
|
||||
|
||||
def to_markdown(results: dict) -> str:
|
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"""Format test results as a markdown report."""
|
||||
lines = []
|
||||
lines.append(f"# Tool Calling Viability: {results['model']}")
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||||
lines.append("")
|
||||
lines.append(f"**Date**: {results['timestamp']}")
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||||
lines.append(f"**Backend**: {results['backend']} ({results['url']})")
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||||
lines.append(f"**Model**: {results['model']}")
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||||
lines.append("")
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||||
|
||||
s = results["summary"]
|
||||
pass_rate = s["passed"] / s["total"] * 100 if s["total"] > 0 else 0
|
||||
lines.append(f"## Summary: {s['passed']}/{s['total']} passed ({pass_rate:.0f}%)")
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||||
lines.append("")
|
||||
lines.append(f"| Metric | Value |")
|
||||
lines.append(f"|--------|-------|")
|
||||
lines.append(f"| Total tests | {s['total']} |")
|
||||
lines.append(f"| Passed | {s['passed']} |")
|
||||
lines.append(f"| Failed | {s['failed']} |")
|
||||
lines.append(f"| Errors | {s['errors']} |")
|
||||
lines.append("")
|
||||
|
||||
lines.append("## Results by Category")
|
||||
lines.append("")
|
||||
lines.append("| Test | Category | Result | Reason | Latency | Tokens |")
|
||||
lines.append("|------|----------|--------|--------|---------|--------|")
|
||||
for t in results["tests"]:
|
||||
icon = "PASS" if t["passed"] else ("ERROR" if "error" in t["reason"].lower() else "FAIL")
|
||||
lines.append(f"| {t['id']} | {t['category']} | {icon} | {t['reason']} | {t['latency_s']}s | {t['tokens']} |")
|
||||
lines.append("")
|
||||
|
||||
lines.append("## Verdict")
|
||||
lines.append("")
|
||||
if pass_rate == 100:
|
||||
lines.append("**FULLY VIABLE** — All tool calling patterns work. Ready for production edge deployment.")
|
||||
elif pass_rate >= 60:
|
||||
lines.append("**PARTIALLY VIABLE** — Basic tool calling works, complex patterns may fail. Consider for simple agents.")
|
||||
elif pass_rate >= 20:
|
||||
lines.append("**MARGINAL** — Only simplest tool calls work. Not recommended for production.")
|
||||
else:
|
||||
lines.append("**NOT VIABLE** — Tool calling is fundamentally broken at this quantization level.")
|
||||
lines.append("")
|
||||
|
||||
lines.append("## Failure Analysis")
|
||||
lines.append("")
|
||||
failed = [t for t in results["tests"] if not t["passed"]]
|
||||
if not failed:
|
||||
lines.append("No failures.")
|
||||
else:
|
||||
for t in failed:
|
||||
lines.append(f"### {t['id']}")
|
||||
lines.append(f"- **Category**: {t['category']}")
|
||||
lines.append(f"- **Failure**: {t['reason']}")
|
||||
lines.append(f"- **Response** (first 300 chars): `{t['response'][:300]}`")
|
||||
lines.append("")
|
||||
lines.append("")
|
||||
|
||||
lines.append("## Recommendations")
|
||||
lines.append("")
|
||||
if pass_rate >= 80:
|
||||
lines.append("- Deploy for simple single-tool-call workflows")
|
||||
lines.append("- Add retry logic for multi-step chains")
|
||||
lines.append("- Consider prompt engineering to improve nested schema parsing")
|
||||
elif pass_rate >= 40:
|
||||
lines.append("- Use for keyword/rule-based tool routing only")
|
||||
lines.append("- Do NOT use for complex multi-step workflows")
|
||||
lines.append("- Consider a larger model (Q4 quantized) as fallback")
|
||||
else:
|
||||
lines.append("- 1-bit quantization is too lossy for tool calling")
|
||||
lines.append("- Use Q4_0 as minimum viable quantization for tool use")
|
||||
lines.append("- Reserve 1-bit models for text generation only")
|
||||
|
||||
return "\n".join(lines)
|
||||
|
||||
|
||||
def main():
|
||||
parser = argparse.ArgumentParser(description="Tool Calling Viability Test for Edge Models")
|
||||
parser.add_argument("--model", "-m", required=True, help="Model name")
|
||||
parser.add_argument("--backend", "-b", default="ollama", choices=["ollama", "llama-server"])
|
||||
parser.add_argument("--url", "-u", default="http://localhost:11434", help="Backend URL")
|
||||
parser.add_argument("--timeout", "-t", type=int, default=120, help="Timeout per test (seconds)")
|
||||
parser.add_argument("--output", "-o", help="Output markdown file path")
|
||||
parser.add_argument("--json", action="store_true", help="JSON output")
|
||||
parser.add_argument("--verbose", "-v", action="store_true", help="Show full responses")
|
||||
args = parser.parse_args()
|
||||
|
||||
results = run_tests(args.model, args.backend, args.url, args.timeout, args.verbose)
|
||||
|
||||
if args.json:
|
||||
print(json.dumps(results, indent=2))
|
||||
else:
|
||||
md = to_markdown(results)
|
||||
if args.output:
|
||||
with open(args.output, "w") as f:
|
||||
f.write(md)
|
||||
print(f"\nReport written to: {args.output}")
|
||||
else:
|
||||
print("\n" + md)
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
main()
|
||||
189
tests/test_tool_calling.py
Normal file
189
tests/test_tool_calling.py
Normal file
@@ -0,0 +1,189 @@
|
||||
#!/usr/bin/env python3
|
||||
"""
|
||||
Unit tests for benchmarks/test_tool_calling.py
|
||||
|
||||
Tests the validation logic and report generation without
|
||||
requiring a live model backend.
|
||||
"""
|
||||
|
||||
import json
|
||||
import sys
|
||||
from pathlib import Path
|
||||
|
||||
import pytest
|
||||
|
||||
sys.path.insert(0, str(Path(__file__).parent.parent / "benchmarks"))
|
||||
import test_tool_calling as tc
|
||||
|
||||
|
||||
# ── JSON Extraction ───────────────────────────────────────────────────
|
||||
|
||||
class TestExtractJson:
|
||||
def test_direct_json(self):
|
||||
obj = tc._extract_json('{"name": "read_file", "arguments": {"path": "/etc/hostname"}}')
|
||||
assert obj["name"] == "read_file"
|
||||
|
||||
def test_json_in_code_block(self):
|
||||
text = 'Here is the call:\n```json\n{"name": "terminal", "arguments": {"command": "ls"}}\n```'
|
||||
obj = tc._extract_json(text)
|
||||
assert obj["name"] == "terminal"
|
||||
|
||||
def test_json_without_lang(self):
|
||||
text = '```\n{"name": "web_search", "arguments": {"query": "test"}}\n```'
|
||||
obj = tc._extract_json(text)
|
||||
assert obj["name"] == "web_search"
|
||||
|
||||
def test_no_json(self):
|
||||
obj = tc._extract_json("I can't help with that.")
|
||||
assert obj is None
|
||||
|
||||
def test_bare_json_object(self):
|
||||
text = 'Sure, here: {"name": "read_file", "arguments": {"path": "/tmp/x"}} for you.'
|
||||
obj = tc._extract_json(text)
|
||||
assert obj is not None
|
||||
assert obj["name"] == "read_file"
|
||||
|
||||
|
||||
# ── Tool Call Validation ──────────────────────────────────────────────
|
||||
|
||||
class TestToolCallValidation:
|
||||
def test_exact_match(self):
|
||||
resp = '{"name": "read_file", "arguments": {"path": "/etc/hostname"}}'
|
||||
result = tc._has_json_tool_call(resp, "read_file", {"path": "/etc/hostname"})
|
||||
assert result["passed"] is True
|
||||
|
||||
def test_wrong_tool_name(self):
|
||||
resp = '{"name": "write_file", "arguments": {"path": "/etc/hostname"}}'
|
||||
result = tc._has_json_tool_call(resp, "read_file", {"path": "/etc/hostname"})
|
||||
assert result["passed"] is False
|
||||
assert "wrong tool name" in result["reason"]
|
||||
|
||||
def test_missing_argument(self):
|
||||
resp = '{"name": "read_file", "arguments": {}}'
|
||||
result = tc._has_json_tool_call(resp, "read_file", {"path": "/etc/hostname"})
|
||||
assert result["passed"] is False
|
||||
assert "missing argument" in result["reason"]
|
||||
|
||||
def test_wrong_argument_value(self):
|
||||
resp = '{"name": "read_file", "arguments": {"path": "/etc/passwd"}}'
|
||||
result = tc._has_json_tool_call(resp, "read_file", {"path": "/etc/hostname"})
|
||||
assert result["passed"] is False
|
||||
assert "argument mismatch" in result["reason"]
|
||||
|
||||
def test_no_json_response(self):
|
||||
result = tc._has_json_tool_call("Sorry, I can't do that.", "read_file", {"path": "/etc/hostname"})
|
||||
assert result["passed"] is False
|
||||
assert "no JSON" in result["reason"]
|
||||
|
||||
def test_nested_function_format(self):
|
||||
resp = '{"function": {"name": "terminal", "arguments": {"command": "echo hello"}}}'
|
||||
result = tc._has_json_tool_call(resp, "terminal", {"command": "echo hello"})
|
||||
assert result["passed"] is True
|
||||
|
||||
|
||||
# ── Nested Schema Validation ──────────────────────────────────────────
|
||||
|
||||
class TestNestedSchemaValidation:
|
||||
def test_valid_nested(self):
|
||||
resp = json.dumps({
|
||||
"name": "deploy_service",
|
||||
"arguments": {
|
||||
"name": "api-gateway",
|
||||
"replicas": 3,
|
||||
"env": {"PORT": 8080, "NODE_ENV": "production"},
|
||||
"resources": {"cpu": "500m", "memory": "256Mi"}
|
||||
}
|
||||
})
|
||||
result = tc._has_nested_tool_call(resp)
|
||||
assert result["passed"] is True
|
||||
|
||||
def test_missing_nested_key(self):
|
||||
resp = '{"name": "deploy_service", "arguments": {"name": "api-gateway", "replicas": 3}}'
|
||||
result = tc._has_nested_tool_call(resp)
|
||||
assert result["passed"] is False
|
||||
assert "missing nested key" in result["reason"]
|
||||
|
||||
def test_wrong_type(self):
|
||||
resp = '{"name": "deploy_service", "arguments": {"name": "api-gateway", "replicas": "three", "env": {}, "resources": {}}}'
|
||||
result = tc._has_nested_tool_call(resp)
|
||||
assert result["passed"] is False
|
||||
assert "should be int" in result["reason"]
|
||||
|
||||
def test_missing_env_port(self):
|
||||
resp = json.dumps({
|
||||
"name": "deploy_service",
|
||||
"arguments": {"name": "api", "replicas": 1, "env": {"NODE_ENV": "dev"}, "resources": {}}
|
||||
})
|
||||
result = tc._has_nested_tool_call(resp)
|
||||
assert result["passed"] is False
|
||||
assert "PORT" in result["reason"]
|
||||
|
||||
|
||||
# ── Markdown Report Generation ────────────────────────────────────────
|
||||
|
||||
class TestMarkdownReport:
|
||||
def test_report_structure(self):
|
||||
results = {
|
||||
"model": "test-model",
|
||||
"backend": "ollama",
|
||||
"url": "http://localhost:11434",
|
||||
"timestamp": "2026-04-15T00:00:00Z",
|
||||
"tests": [
|
||||
{"id": "t1", "category": "Simple", "description": "Test 1",
|
||||
"passed": True, "reason": "ok", "response": "{}", "latency_s": 1.0, "tokens": 10},
|
||||
{"id": "t2", "category": "Complex", "description": "Test 2",
|
||||
"passed": False, "reason": "wrong name", "response": "oops", "latency_s": 2.0, "tokens": 20},
|
||||
],
|
||||
"summary": {"total": 2, "passed": 1, "failed": 1, "errors": 0},
|
||||
}
|
||||
md = tc.to_markdown(results)
|
||||
assert "test-model" in md
|
||||
assert "1/2 passed" in md
|
||||
assert "PASS" in md
|
||||
assert "FAIL" in md
|
||||
assert "Failure Analysis" in md
|
||||
|
||||
def test_perfect_score(self):
|
||||
results = {
|
||||
"model": "perfect", "backend": "ollama", "url": "http://x",
|
||||
"timestamp": "2026-01-01T00:00:00Z",
|
||||
"tests": [
|
||||
{"id": "t1", "category": "C", "description": "D",
|
||||
"passed": True, "reason": "ok", "response": "{}", "latency_s": 1, "tokens": 5},
|
||||
],
|
||||
"summary": {"total": 1, "passed": 1, "failed": 0, "errors": 0},
|
||||
}
|
||||
md = tc.to_markdown(results)
|
||||
assert "FULLY VIABLE" in md
|
||||
|
||||
def test_all_failed(self):
|
||||
results = {
|
||||
"model": "bad", "backend": "ollama", "url": "http://x",
|
||||
"timestamp": "2026-01-01T00:00:00Z",
|
||||
"tests": [
|
||||
{"id": "t1", "category": "C", "description": "D",
|
||||
"passed": False, "reason": "broken", "response": "nope", "latency_s": 1, "tokens": 0},
|
||||
],
|
||||
"summary": {"total": 1, "passed": 0, "failed": 1, "errors": 0},
|
||||
}
|
||||
md = tc.to_markdown(results)
|
||||
assert "NOT VIABLE" in md
|
||||
|
||||
|
||||
# ── Test Definitions ──────────────────────────────────────────────────
|
||||
|
||||
class TestTestDefinitions:
|
||||
def test_all_tests_have_validators(self):
|
||||
for test in tc.TESTS:
|
||||
assert callable(test["validate"]), f"{test['id']} missing validate"
|
||||
assert "id" in test
|
||||
assert "category" in test
|
||||
assert "prompt" in test
|
||||
|
||||
def test_five_test_categories(self):
|
||||
categories = {t["category"] for t in tc.TESTS}
|
||||
assert len(categories) >= 4, f"Expected 4+ categories, got {categories}"
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
pytest.main([__file__, "-v"])
|
||||
Reference in New Issue
Block a user