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"""Core types for question-preserving visual interventions (``docs/02`` §10).
An *intervention operator* transforms a structured ``World`` into a new
``World`` (plus bookkeeping) **without touching the human-authored question or
choices** and **without assigning a gold state**. The operator's only job is to
produce a well-formed transformed world and record what it did; the resulting
state (``FULL`` / ``A_SAME`` / ``A_CHANGED`` / ``U_MISSING`` / ``U_INVALID``) is
decided later by the P7 state-proof builder, which executes the program before
and after (``docs/02`` §11.1). This separation is a hard P5 gate
("operator가 state를 직접 assign하지 않음").
Design rules every operator obeys (``docs/07`` §7 P5 completion gate):
* **Source world immutable** — :func:`apply` returns a brand-new world; the
passed dict is never mutated.
* **Deterministic** — the same ``(world, target_node, seed, operation)`` always
reproduces the same ``transformed_world_sha256``; a different seed or
operation changes it.
* **Reject invalid mutations** — an operator that would break world
well-formedness (a dangling geometry constraint, a label collision, an
out-of-range substitute, a multiple-choice answer leaving the unchanged
choice set) raises :class:`InterventionError` rather than emitting a broken
world. Never a silent accept.
* **No state assignment** — :class:`TransformedWorld` carries no ``state``
field by construction.
"""
from __future__ import annotations
from dataclasses import dataclass, field
from typing import Any, Literal, Protocol
from ..dsl.ast import canonical_number_str, parse_number
from ..hashing import canonical_json_hash
from ..ingest.base import IngestError
from ..sources.base import World
from ..sources.world_ops import (
NODE_VISIBILITY_KEY,
clone_world,
find_point,
find_row,
find_series,
find_stating_constraint,
hidden_nodes,
looks_numeric,
node_kind,
world_sha256,
)
# The four deterministic intervention operators (``docs/02`` §10). REDACT_BLUR_V1
# is deliberately absent: it is a shortcut stress test only and never appears in
# a primary U certificate (§10.2).
OperatorName = Literal[
"REDACT_SOLID_V1",
"CLEAN_DELETE_V1",
"SUBSTITUTE_V1",
"CONTROL_MATCHED_V1",
]
class InterventionError(IngestError):
"""A requested intervention is infeasible / would break the world.
Raised for an invalid geometry or plot mutation, a label collision, an
out-of-range substitute, or a multiple-choice answer that leaves the
unchanged choice set (``docs/02`` §10.4). An infeasible intervention is
rejected — never silently coerced into a broken world or a faked state.
"""
@dataclass(frozen=True)
class TransformedWorld:
"""One operator's deterministic output over a source world.
``world`` is the transformed (or, for REDACT_SOLID_V1, visibility-marked)
world. ``hidden_nodes`` lists semantic node ids a renderer must patch
(REDACT_SOLID_V1 keeps the node in the world but hides its pixels, §10.1).
``substitute_value`` records the new value a SUBSTITUTE_V1 / completion
placed on the target (canonical string, or ``None`` for non-substitute
operators). ``transformed_world_sha256`` is the content-addressed identity of
the *transformation* — deterministic over the full record, so the same
``(seed, operation, target, source)`` reproduces it byte-for-byte.
There is deliberately **no** ``state`` field: the operator never assigns a
gold state (P5 gate). P7's state-proof builder derives state by execution.
"""
world: World
operator: OperatorName
target_node: str
seed: int
transformed_world_sha256: str
hidden_nodes: frozenset[str] = field(default_factory=frozenset)
substitute_value: str | None = None
description: str = ""
@property
def is_hidden(self) -> bool:
return bool(self.hidden_nodes)
class InterventionOperator(Protocol):
"""One deterministic intervention operator (``docs/02`` §10)."""
name: OperatorName
def apply(
self,
world: World,
target_node: str,
*,
seed: int,
**kwargs: Any,
) -> TransformedWorld:
"""Return a transformed world; never mutate ``world``, never assign state."""
...
# --- transformation hashing ------------------------------------------------
def transformed_hash(
*,
operator: OperatorName,
target_node: str,
seed: int,
source_world_sha256: str,
transformed_world_sha256: str,
hidden_nodes: frozenset[str],
substitute_value: str | None,
) -> str:
"""Content-addressed identity of one transformation (deterministic).
Hashed over the full operator record — not just the world — so two
operators that happen to leave the world identical (e.g. REDACT_SOLID over a
node vs. a no-op) still differ, and the same transformation reproduces the
same hash across runs (P5 gate: "seed/operation → same transformed world
hash").
"""
return canonical_json_hash(
{
"operator": operator,
"target_node": target_node,
"seed": seed,
"source_world_sha256": source_world_sha256,
"transformed_world_sha256": transformed_world_sha256,
"hidden_nodes": sorted(hidden_nodes),
"substitute_value": substitute_value,
}
)
# --- value setters (read-only in, new world out) ---------------------------
def with_value(world: World, node_id: str, value: Any) -> World:
"""Return a new world with ``node_id``'s value set to ``value``.
The value is written to the same field the executor reads (a plot point's
``y``, a row cell, the stating constraint's numeric arg), so a completion
built this way is executable. Raises :class:`InterventionError` when the
node has no mutable value site. The source world is unchanged.
"""
new = clone_world(world)
if not _set_value(new, node_id, value):
raise InterventionError(f"node {node_id!r} has no mutable value site")
return new
def _set_value(world: World, node_id: str, value: Any) -> bool:
"""Write ``value`` onto ``node_id`` in place; return whether a site was found.
The write site follows :func:`~explicit_learning.sources.world_ops.node_kind`:
a plot point's ``y``, a series' ``label``, a row's first cell, a geometry
entity's ``label``, or a stating constraint's numeric arg. Dispatching on the
*node* kind (not the world kind) keeps a category substitute (a series/entity
label) from being mis-written onto a numeric site.
"""
kind = node_kind(world, node_id)
if kind == "point":
point = find_point(world, node_id)
if point is None:
return False
sidx, pidx, p = point
p["y"] = _canonical(value)
world["series"][sidx]["points"][pidx] = p
return True
if kind == "series":
series = find_series(world, node_id)
if series is None:
return False
sidx, s = series
s["label"] = _canonical(value)
world["series"][sidx] = s
return True
if kind == "row":
row = find_row(world, node_id)
if row is None:
return False
ridx, r = row
cells = r.get("cells", {}) or {}
if not cells:
return False
key = next(iter(cells))
cells[key] = _canonical(value)
world["rows"][ridx]["cells"] = cells
return True
if kind == "entity":
for i, e in enumerate(world.get("entities", []) or []):
if e.get("id") == node_id:
e["label"] = _canonical(value)
world["entities"][i] = e
return True
return False
if kind == "constraint":
found = find_stating_constraint(world, node_id)
if found is None:
return False
cidx, c = found
args = list(c.get("args") or [])
pred = c.get("predicate")
if pred == "MeasureOf" and len(args) >= 2 and args[0] == node_id:
args[1] = _canonical(value)
elif pred == "Equals" and len(args) == 2:
if args[0] == node_id and looks_numeric(args[1]):
args[1] = _canonical(value)
elif args[1] == node_id and looks_numeric(args[0]):
args[0] = _canonical(value)
else:
return False
else:
return False
c["args"] = args
world["constraints"][cidx] = c
return True
return False
def _canonical(value: Any) -> str:
"""Canonical string form of a substitute value (numbers via §3.2/§3.3)."""
if isinstance(value, str):
return value
try:
return canonical_number_str(parse_number(value))
except (ValueError, ZeroDivisionError):
return str(value)
def set_hidden(world: World, node_ids: frozenset[str]) -> World:
"""Return a new world carrying a visibility marker hiding ``node_ids``.
The nodes stay in the world (REDACT_SOLID_V1, §10.1: "semantic node는 world에
남기고 node_visibility[node]=hidden"); only the reserved
:data:`~explicit_learning.sources.world_ops.NODE_VISIBILITY_KEY` map is set,
which the renderer (P6) reads and executors ignore.
"""
new = clone_world(world)
visibility = dict(new.get(NODE_VISIBILITY_KEY, {}))
for nid in node_ids:
visibility[nid] = "hidden"
new[NODE_VISIBILITY_KEY] = visibility
return new
def remove_observed_value(world: World, node_id: str) -> World:
"""Return a copy whose target node remains identifiable but has no value.
REDACT is an epistemic operation: the renderer hides the value and the
executor evaluating the *observed* transformed world must not retain a
privileged copy of that value. Identity/position fields remain so the
question referent and a content-independent redaction anchor still exist.
Completion witnesses can restore alternative values with :func:`with_value`
while retaining the same visibility marker.
"""
new = clone_world(world)
kind = node_kind(new, node_id)
if kind == "point":
found_point = find_point(new, node_id)
if found_point is None:
raise InterventionError(f"point {node_id!r} not found")
sidx, pidx, point = found_point
point["y"] = None
new["series"][sidx]["points"][pidx] = point
return new
if kind == "row":
found_row = find_row(new, node_id)
if found_row is None:
raise InterventionError(f"row {node_id!r} not found")
ridx, row = found_row
cells = dict(row.get("cells", {}) or {})
if not cells:
raise InterventionError(f"row {node_id!r} has no observable cells")
cells[next(iter(cells))] = None
new["rows"][ridx]["cells"] = cells
return new
if kind == "constraint":
found_constraint = find_stating_constraint(new, node_id)
if found_constraint is None:
raise InterventionError(f"no stating constraint for {node_id!r}")
cidx, constraint = found_constraint
args = list(constraint.get("args") or [])
if constraint.get("predicate") == "MeasureOf" and len(args) >= 2:
args[1] = None
elif constraint.get("predicate") == "Equals" and len(args) == 2:
if str(args[0]) == node_id:
args[1] = None
elif str(args[1]) == node_id:
args[0] = None
else:
raise InterventionError(f"constraint for {node_id!r} has no value site")
else:
raise InterventionError(f"constraint for {node_id!r} has no value site")
constraint["args"] = args
new["constraints"][cidx] = constraint
return new
if kind == "series":
found_series = find_series(new, node_id)
if found_series is None:
raise InterventionError(f"series {node_id!r} not found")
sidx, series = found_series
series["label"] = None
new["series"][sidx] = series
return new
if kind == "entity":
for idx, entity in enumerate(new.get("entities", []) or []):
if entity.get("id") == node_id:
entity["label"] = None
new["entities"][idx] = entity
return new
raise InterventionError(f"node {node_id!r} has no redactable observed value")
__all__ = [
"InterventionError",
"InterventionOperator",
"OperatorName",
"TransformedWorld",
"hidden_nodes",
"set_hidden",
"remove_observed_value",
"transformed_hash",
"with_value",
"world_sha256",
]