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"""``CLEAN_DELETE_V1`` — remove a node and its incident relations (§10.3).
The node and every relation/constraint incident to it are deleted from the
world graph, the remaining constraints are re-validated for feasibility, and the
whole world is re-rendered fresh later (P6). The original raster is never
inpainted — deletion is structural, not pixel-level. After deletion the executor
may report ``MISSING_INFORMATION`` / ``INVALID_REFERENT`` (a ``U`` state) or a
changed answer; the operator does not decide which (P7 does, by execution).
An infeasible result (a dangling reference or a now-broken constraint graph) is
rejected via :class:`InterventionError` — never emitted as a broken world.
"""
from __future__ import annotations
from typing import Any
from ..dsl.ast import Dsl
from ..sources.base import World
from ..sources.world_ops import (
clone_world,
find_point,
find_row,
find_series,
is_geometry,
is_plot,
is_table,
node_kind,
world_sha256,
)
from .base import (
InterventionError,
OperatorName,
TransformedWorld,
transformed_hash,
)
from .feasibility import FeasibilityError, is_feasible
_NAME: OperatorName = "CLEAN_DELETE_V1"
class CleanDeleteOperator:
"""Delete ``target_node`` (and incident relations) from the world graph."""
name = _NAME
def apply(
self,
world: World,
target_node: str,
*,
seed: int,
dsl: Dsl,
**_kwargs: Any,
) -> TransformedWorld:
if node_kind(world, target_node) is None:
raise InterventionError(f"CLEAN_DELETE_V1: target {target_node!r} is not a world node")
new = clone_world(world)
_delete(new, target_node)
try:
is_feasible(new, dsl=dsl)
except FeasibilityError as exc:
raise InterventionError(
f"CLEAN_DELETE_V1: infeasible after deleting {target_node!r}: {exc}"
) from exc
return TransformedWorld(
world=new,
operator=_NAME,
target_node=target_node,
seed=seed,
transformed_world_sha256=transformed_hash(
operator=_NAME,
target_node=target_node,
seed=seed,
source_world_sha256=world_sha256(world),
transformed_world_sha256=world_sha256(new),
hidden_nodes=frozenset(),
substitute_value=None,
),
hidden_nodes=frozenset(),
substitute_value=None,
description=f"clean-delete {target_node}",
)
def _delete(world: World, node_id: str) -> None:
"""Remove ``node_id`` and its incident relations, in place."""
if is_plot(world):
point = find_point(world, node_id)
if point is not None:
sidx, _pidx, _p = point
pts = world["series"][sidx].get("points", []) or []
world["series"][sidx]["points"] = [q for q in pts if q.get("id") != node_id]
return
series = find_series(world, node_id)
if series is not None:
world["series"] = [s for s in world.get("series", []) if s.get("id") != node_id]
return
if is_table(world):
if find_row(world, node_id) is not None:
world["rows"] = [r for r in world.get("rows", []) if r.get("id") != node_id]
return
if is_geometry(world):
# Delete the entity plus every constraint that mentions it (incident
# relations). A constraint whose only stated entity is the deleted one
# is gone entirely; the feasibility check then guards dangling refs.
world["entities"] = [e for e in world.get("entities", []) if e.get("id") != node_id]
world["constraints"] = [
c
for c in world.get("constraints", [])
if node_id not in {str(a) for a in (c.get("args") or []) if isinstance(a, str)}
]
return
__all__ = ["CleanDeleteOperator"]