toolfault-bench / scripts /common.py
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ToolFault-Bench v1.0
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"""Shared helpers for the ToolFault-Bench generator."""
from __future__ import annotations
import json
import random
from dataclasses import dataclass, field
from datetime import datetime, timedelta, timezone
from typing import Any
UTC = timezone.utc
FIRST = [
"Aisha", "Mateo", "Priya", "Jonah", "Mei", "Oluwaseun", "Camila", "Tomasz", "Hana", "Diego",
"Fatima", "Liam", "Ngozi", "Kenji", "Sofia", "Arjun", "Elena", "Kwame", "Ingrid", "Rafael",
"Yara", "Declan", "Leila", "Marcus", "Anika", "Joaquin", "Thandiwe", "Sebastian", "Noor", "Viktor",
"Chiara", "Emeka", "Rosa", "Hamid", "Greta", "Tariq", "Lucia", "Dmitri", "Amara", "Owen",
]
LAST = [
"Okafor", "Lindqvist", "Ramanathan", "Castillo", "Whitfield", "Nakamura", "Haddad", "Kowalski",
"Mensah", "Delacroix", "Fitzgerald", "Balogun", "Serrano", "Novak", "Achterberg", "Iyer",
"Moreau", "Petrov", "Adeyemi", "Galloway", "Takahashi", "Brennan", "Vasquez", "Osei",
"Holmberg", "Rahman", "Ferreira", "Kaminski", "Abernathy", "Quintero", "Sato", "Lindgren",
]
CO_A = [
"Northwind", "Bluegate", "Cedarline", "Ironbark", "Pinecrest", "Silverleaf", "Harborview",
"Redstone", "Kestrel", "Brightwater", "Summit", "Larchmont", "Copperfield", "Driftwood",
"Meridian", "Halcyon", "Obsidian", "Juniper", "Wexford", "Tallgrass",
]
CO_B = [
"Plumbing & Heating", "Office Supply", "Freight LLC", "Janitorial Services", "Electrical Contractors",
"Staffing Group", "Packaging Co.", "IT Services", "Landscaping", "Industrial Supply",
"Print & Mail", "Catering", "Security Systems", "Logistics Inc.", "Analytics LLC",
]
MONTHS = ["January", "February", "March", "April", "May", "June", "July", "August",
"September", "October", "November", "December"]
@dataclass
class Call:
tool: str
args: dict
response: Any = None
@dataclass
class Ctx:
rng: random.Random
now: datetime
org: str = ""
user: str = ""
extra: dict = field(default_factory=dict)
# ---------- time ----------
def iso(dt: datetime) -> str:
return dt.astimezone(UTC).strftime("%Y-%m-%dT%H:%M:%SZ")
def ymd(dt: datetime) -> str:
return dt.strftime("%Y-%m-%d")
def human_date(dt: datetime) -> str:
return f"{MONTHS[dt.month - 1]} {dt.day}, {dt.year}"
def month_name(dt: datetime) -> str:
return f"{MONTHS[dt.month - 1]} {dt.year}"
def prev_month_range(now: datetime) -> tuple[datetime, datetime]:
first_this = now.replace(day=1, hour=0, minute=0, second=0, microsecond=0)
last_prev = first_this - timedelta(days=1)
first_prev = last_prev.replace(day=1)
return first_prev, last_prev
def next_business_day(dt: datetime) -> datetime:
d = dt + timedelta(days=1)
while d.weekday() >= 5:
d += timedelta(days=1)
return d
def sample_now(rng: random.Random, weekend: bool = False) -> datetime:
"""A timestamp in 2026 during US business hours (weekday) or on a Saturday."""
start = datetime(2026, 3, 2, tzinfo=UTC)
while True:
d = start + timedelta(days=rng.randint(0, 200))
if weekend and d.weekday() == 5:
break
if not weekend and d.weekday() < 5:
break
return d.replace(hour=rng.randint(14, 20), minute=rng.randint(0, 59), second=rng.randint(0, 59))
# ---------- values ----------
def money(rng: random.Random, lo: float, hi: float) -> float:
return round(rng.uniform(lo, hi), 2)
def usd(x: float) -> str:
return f"${x:,.2f}"
def rid(rng: random.Random, prefix: str, digits: int = 5) -> str:
first = str(rng.randint(1, 9))
rest = "".join(str(rng.randint(0, 9)) for _ in range(digits - 1))
return prefix + first + rest
def token(rng: random.Random, n: int = 16) -> str:
alphabet = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789"
return "".join(rng.choice(alphabet) for _ in range(n))
def person(rng: random.Random) -> str:
return f"{rng.choice(FIRST)} {rng.choice(LAST)}"
def company(rng: random.Random) -> str:
return f"{rng.choice(CO_A)} {rng.choice(CO_B)}"
def transpose_digits(ident: str, rng: random.Random) -> str:
"""Swap two adjacent, different digits in the numeric part of an ID."""
chars = list(ident)
idx = [i for i in range(len(chars) - 1)
if chars[i].isdigit() and chars[i + 1].isdigit() and chars[i] != chars[i + 1]]
i = rng.choice(idx)
chars[i], chars[i + 1] = chars[i + 1], chars[i]
out = "".join(chars)
assert out != ident
return out
def misspell(name: str, rng: random.Random) -> str:
"""Drop or swap one interior letter of a word with >= 5 letters (stays recognisable)."""
words = name.split()
cand = [i for i, w in enumerate(words) if len(w) >= 5 and w.isalpha()]
i = rng.choice(cand)
w = words[i]
j = rng.randint(1, len(w) - 3)
if rng.random() < 0.5 or w[j] == w[j + 1]:
w2 = w[:j] + w[j + 1:]
else:
w2 = w[:j] + w[j + 1] + w[j] + w[j + 2:]
words[i] = w2
out = " ".join(words)
assert out != name
return out
# ---------- tool specs (OpenAI function format) ----------
def S(desc: str, enum: list[str] | None = None) -> dict:
d = {"type": "string", "description": desc}
if enum:
d["enum"] = enum
return d
def N(desc: str) -> dict:
return {"type": "number", "description": desc}
def I(desc: str) -> dict:
return {"type": "integer", "description": desc}
def B(desc: str) -> dict:
return {"type": "boolean", "description": desc}
def tool(name: str, desc: str, props: dict, required: list[str] | tuple = ()) -> dict:
return {
"type": "function",
"function": {
"name": name,
"description": desc,
"parameters": {"type": "object", "properties": props, "required": list(required)},
},
}
def dumps(obj: Any) -> str:
return obj if isinstance(obj, str) else json.dumps(obj, ensure_ascii=False)