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Release visual answerability benchmark v1.0.0
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"""Shared, pure helpers for locating and inspecting structured-world nodes.
A *world* (``docs/02`` §6) is a plain JSON-serializable mapping —
``plot_world_v1`` / ``geometry_world_v1`` / ``table_world_v1``. Both the C2
mutation suite (``docs/02`` §7.3) and the P5 intervention operators
(``docs/02`` §10) need to find a node by stable id, tell the world kinds apart,
and hash a world deterministically. Those helpers live here once so the two
layers stay consistent and neither reaches into the other's privates.
Everything here is **read-only** over the passed world and never mutates it; the
caller is responsible for ``copy.deepcopy`` when it wants a mutable copy (see
:func:`clone_world`).
"""
from __future__ import annotations
import copy
from typing import Any
from ..hashing import canonical_json_hash
from .base import World
# The reserved top-level marker a transformed world carries to record which
# semantic nodes a renderer must hide (``docs/02`` §10.1 REDACT_SOLID_V1). It is
# intentionally namespaced so executors — which read only ``series`` /
# ``constraints`` / ``rows`` — ignore it, while the renderer (P6) reads it.
NODE_VISIBILITY_KEY = "_node_visibility"
def clone_world(world: World) -> World:
"""A deep, independent copy of ``world`` (the source stays immutable)."""
return copy.deepcopy(world)
def hidden_nodes(world: World) -> frozenset[str]:
"""The node ids a world marks hidden (``frozenset()`` when none).
A pure read of the reserved :data:`NODE_VISIBILITY_KEY` map; executors
ignore it, the renderer (P6) consumes it for REDACT_SOLID_V1 (§10.1).
"""
vis = world.get(NODE_VISIBILITY_KEY, {}) or {}
return frozenset(nid for nid, state in vis.items() if state == "hidden")
def world_sha256(world: World) -> str:
"""Content-addressed hash of a world (canonical-JSON, deterministic).
The same world bytes always reproduce the same hash, so a transformed
world's identity is byte-stable across runs (``docs/07`` §7 P5 gate:
"seed/operation → same transformed world hash").
"""
return canonical_json_hash(world)
def world_kind(world: World) -> str:
"""The world family: ``"plot"`` / ``"table"`` / ``"geometry"`` / ``"unknown"``."""
if is_plot(world):
return "plot"
if is_table(world):
return "table"
if is_geometry(world):
return "geometry"
return "unknown"
def is_plot(world: World) -> bool:
return "series" in world
def is_table(world: World) -> bool:
return "rows" in world
def is_geometry(world: World) -> bool:
return "constraints" in world or "entities" in world
def looks_numeric(text: Any) -> bool:
"""True if ``text`` parses as an exact number (``Fraction``-compatible)."""
from ..dsl.ast import parse_number # local: avoids a dsl import cycle at load
try:
parse_number(str(text))
except (ValueError, ZeroDivisionError):
return False
return True
# --- node locators ---------------------------------------------------------
def find_point(world: World, pid: str) -> tuple[int, int, dict[str, Any]] | None:
"""Locate a plot point by id → ``(series_idx, point_idx, point_dict)``."""
for sidx, s in enumerate(world.get("series", []) or []):
for pidx, p in enumerate(s.get("points", []) or []):
if isinstance(p, dict) and p.get("id") == pid:
return sidx, pidx, p
return None
def find_series(world: World, sid: str) -> tuple[int, dict[str, Any]] | None:
for sidx, s in enumerate(world.get("series", []) or []):
if isinstance(s, dict) and s.get("id") == sid:
return sidx, s
return None
def find_row(world: World, rid: str) -> tuple[int, dict[str, Any]] | None:
for ridx, r in enumerate(world.get("rows", []) or []):
if isinstance(r, dict) and r.get("id") == rid:
return ridx, r
return None
def find_stating_constraint(world: World, entity: str) -> tuple[int, dict[str, Any]] | None:
"""The constraint that states ``entity``'s value (``MeasureOf``/``Equals``)."""
for cidx, c in enumerate(world.get("constraints", []) or []):
if not isinstance(c, dict):
continue
pred = c.get("predicate")
args = c.get("args") or []
if pred == "MeasureOf" and len(args) >= 2 and str(args[0]) == entity:
return cidx, c
if pred == "Equals" and len(args) == 2:
a, b = str(args[0]), str(args[1])
if a == entity and looks_numeric(b):
return cidx, c
if b == entity and looks_numeric(a):
return cidx, c
return None
def node_kind(world: World, node_id: str) -> str | None:
"""The semantic kind of a node id: ``point``/``series``/``row``/``entity``/``constraint``.
``None`` when the id is not present. Used by CONTROL_MATCHED_V1 to match on
visual type (``docs/02`` §10.5) via a semantic proxy (no pixels until P6).
"""
if is_plot(world):
if find_point(world, node_id) is not None:
return "point"
if find_series(world, node_id) is not None:
return "series"
if is_table(world) and find_row(world, node_id) is not None:
return "row"
if is_geometry(world):
if find_stating_constraint(world, node_id) is not None:
return "constraint"
if any(e.get("id") == node_id for e in world.get("entities", []) or []):
return "entity"
return None
__all__ = [
"NODE_VISIBILITY_KEY",
"clone_world",
"find_point",
"find_row",
"find_series",
"find_stating_constraint",
"hidden_nodes",
"is_geometry",
"is_plot",
"is_table",
"looks_numeric",
"node_kind",
"world_kind",
"world_sha256",
]