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| """Deterministic mutation suite for C2 program equivalence (``docs/02`` §7.3). | |
| §7.3: full-source answer agreement alone cannot filter out a *coincidental* | |
| program, so the mutation suite is mandatory. For each dependency leaf the | |
| proposer program reads, generate ``≥8`` valid alternative mutations of the | |
| world; execute *both* programs on each mutated world and require equal | |
| ``(status, answer)``. The suite uses the deterministic P3 executor (no model | |
| calls) and is fully seed-determined: the same ``(world, leaves, seed)`` always | |
| reproduces the same mutations. | |
| Two mutation kinds, both keeping the world well-formed: | |
| * ``SUBSTITUTE`` — replace a leaf's numeric value with a distinct seeded | |
| rational (the program stays ``UNIQUE`` with a different answer). | |
| * ``REDACT`` — remove the leaf (point / row / series / stating constraint); the | |
| program may go ``MISSING_INFORMATION`` / ``INVALID_REFERENT``, but two | |
| equivalent programs diverge identically, so they still agree. | |
| Per leaf the generator emits ``per_leaf`` (default 8) ``SUBSTITUTE`` variants | |
| plus one ``REDACT`` when the leaf is cleanly removable — always ``≥8``. | |
| """ | |
| from __future__ import annotations | |
| import copy | |
| import hashlib | |
| from dataclasses import dataclass | |
| from fractions import Fraction | |
| from typing import Any | |
| from ..dsl.ast import Dsl, canonical_number_str, parse_number | |
| from ..sources.base import World | |
| from ..sources.world_ops import ( | |
| find_point, | |
| find_row, | |
| find_series, | |
| find_stating_constraint, | |
| is_geometry, | |
| is_plot, | |
| is_table, | |
| looks_numeric, | |
| ) | |
| class Mutation: | |
| """One seeded, valid alternative world for the §7.3 suite.""" | |
| world: World | |
| leaf: str | |
| kind: str # "SUBSTITUTE" | "REDACT" | |
| description: str | |
| def deterministic_mutations( | |
| world: World, | |
| leaves: tuple[str, ...], | |
| *, | |
| dsl: Dsl, | |
| seed: int, | |
| per_leaf: int = 8, | |
| ) -> list[Mutation]: | |
| """Generate ``≥per_leaf`` valid mutations per dependency leaf (seed-determined). | |
| Leaves with no mutable value fall back to substituting the nearest mutable | |
| value in the world, so every leaf still yields ``per_leaf`` distinct valid | |
| alternatives. The output order is deterministic: leaves in input order, then | |
| ``SUBSTITUTE`` (offset 0..per_leaf-1) then ``REDACT``. | |
| """ | |
| out: list[Mutation] = [] | |
| for leaf in leaves: | |
| for i in range(per_leaf): | |
| mut = _substitute(world, leaf, dsl, seed, i) | |
| if mut is not None: | |
| out.append(mut) | |
| redact = _redact(world, leaf, dsl, seed) | |
| if redact is not None: | |
| out.append(redact) | |
| # A leaf set may be empty (e.g., a pure-literal program); still emit ≥8 | |
| # global substitutes so the suite is non-vacuous. | |
| if not leaves: | |
| for i in range(max(per_leaf, 8)): | |
| mut = _substitute_global(world, dsl, seed, i) | |
| if mut is not None: | |
| out.append(mut) | |
| return out | |
| # --- seeded offsets --------------------------------------------------------- | |
| def _offset(seed: int, leaf: str, kind: str, i: int) -> int: | |
| """A deterministic 1..99 offset (distinct per ``(leaf, kind, i)``).""" | |
| digest = hashlib.sha256(f"{seed}|{leaf}|{kind}|{i}".encode()).hexdigest() | |
| return 1 + (int(digest[:12], 16) % 99) | |
| def _bump(value: Any, by: int) -> str: | |
| """Add ``by`` to a numeric world value, returning its canonical string.""" | |
| frac = parse_number(value) + Fraction(by) | |
| return canonical_number_str(frac) | |
| # --- SUBSTITUTE ------------------------------------------------------------ | |
| def _substitute(world: World, leaf: str, dsl: Dsl, seed: int, i: int) -> Mutation | None: | |
| by = _offset(seed, leaf, "SUBSTITUTE", i) | |
| new_world = copy.deepcopy(world) | |
| desc = _apply_substitute(new_world, leaf, by) | |
| if desc is None: | |
| # Fall back to a global mutable value so this leaf still yields a valid | |
| # alternative mutation. | |
| desc = _apply_substitute_global(new_world, by) | |
| if desc is None: | |
| return None | |
| return Mutation(new_world, leaf, "SUBSTITUTE", f"{desc} (+{by})") | |
| def _apply_substitute(world: World, leaf: str, by: int) -> str | None: | |
| """Substitute the leaf's own value; return a description or ``None``.""" | |
| if _is_plot(world): | |
| return _substitute_plot(world, leaf, by) | |
| if _is_table(world): | |
| return _substitute_table(world, leaf, by) | |
| if _is_geometry(world): | |
| return _substitute_geometry(world, leaf, by) | |
| return None | |
| def _substitute_plot(world: World, leaf: str, by: int) -> str | None: | |
| point = _find_point(world, leaf) | |
| if point is not None: | |
| sidx, pidx, p = point | |
| p["y"] = _bump(p.get("y", "0"), by) | |
| world["series"][sidx]["points"][pidx] = p | |
| return f"point {leaf} y" | |
| series = _find_series(world, leaf) | |
| if series is not None: | |
| sidx, s = series | |
| pts = s.get("points", []) or [] | |
| if pts: | |
| pts[0]["y"] = _bump(pts[0].get("y", "0"), by) | |
| world["series"][sidx]["points"] = pts | |
| return f"series {leaf} first-point y" | |
| return None | |
| def _substitute_table(world: World, leaf: str, by: int) -> str | None: | |
| row = _find_row(world, leaf) | |
| if row is None: | |
| return None | |
| ridx, r = row | |
| cells = r.get("cells", {}) or {} | |
| if not cells: | |
| return None | |
| key = next(iter(cells)) | |
| cells[key] = _bump(cells[key], by) | |
| world["rows"][ridx]["cells"] = cells | |
| return f"row {leaf} cell {key}" | |
| def _substitute_geometry(world: World, leaf: str, by: int) -> str | None: | |
| found = _find_stating_constraint(world, leaf) | |
| if found is None: | |
| return None | |
| cidx, c = found | |
| args = list(c.get("args") or []) | |
| pred = c.get("predicate") | |
| if pred == "MeasureOf" and len(args) >= 2 and args[0] == leaf: | |
| args[1] = _bump(args[1], by) | |
| elif pred == "Equals" and len(args) == 2: | |
| if args[0] == leaf and _looks_numeric(args[1]): | |
| args[1] = _bump(args[1], by) | |
| elif args[1] == leaf and _looks_numeric(args[0]): | |
| args[0] = _bump(args[0], by) | |
| else: | |
| return None | |
| else: | |
| return None | |
| c["args"] = args | |
| world["constraints"][cidx] = c | |
| return f"constraint {pred}({leaf}) value" | |
| # --- REDACT ----------------------------------------------------------------- | |
| def _redact(world: World, leaf: str, dsl: Dsl, seed: int) -> Mutation | None: | |
| new_world = copy.deepcopy(world) | |
| desc = _apply_redact(new_world, leaf) | |
| if desc is None: | |
| return None | |
| return Mutation(new_world, leaf, "REDACT", desc) | |
| def _apply_redact(world: World, leaf: str) -> str | None: | |
| if _is_plot(world): | |
| point = _find_point(world, leaf) | |
| if point is not None: | |
| sidx, _pidx, p = point | |
| pts = world["series"][sidx].get("points", []) | |
| world["series"][sidx]["points"] = [q for q in pts if q.get("id") != leaf] | |
| return f"remove point {leaf}" | |
| series = _find_series(world, leaf) | |
| if series is not None: | |
| world["series"] = [s for s in world.get("series", []) if s.get("id") != leaf] | |
| return f"remove series {leaf}" | |
| return None | |
| if _is_table(world): | |
| if _find_row(world, leaf) is not None: | |
| world["rows"] = [r for r in world.get("rows", []) if r.get("id") != leaf] | |
| return f"remove row {leaf}" | |
| return None | |
| if _is_geometry(world): | |
| found = _find_stating_constraint(world, leaf) | |
| if found is not None: | |
| cidx, _c = found | |
| world["constraints"] = [ | |
| x for k, x in enumerate(world.get("constraints", [])) if k != cidx | |
| ] | |
| return f"remove stating constraint for {leaf}" | |
| if any(e.get("id") == leaf for e in world.get("entities", [])): | |
| world["entities"] = [e for e in world.get("entities", []) if e.get("id") != leaf] | |
| return f"remove entity {leaf}" | |
| return None | |
| return None | |
| # --- global fallback -------------------------------------------------------- | |
| def _substitute_global(world: World, dsl: Dsl, seed: int, i: int) -> Mutation | None: | |
| by = _offset(seed, "__global__", "SUBSTITUTE", i) | |
| new_world = copy.deepcopy(world) | |
| desc = _apply_substitute_global(new_world, by) | |
| if desc is None: | |
| return None | |
| return Mutation(new_world, "__global__", "SUBSTITUTE", f"{desc} (+{by})") | |
| def _apply_substitute_global(world: World, by: int) -> str | None: | |
| if _is_plot(world): | |
| for s in world.get("series", []): | |
| pts = s.get("points", []) or [] | |
| if pts: | |
| pts[0]["y"] = _bump(pts[0].get("y", "0"), by) | |
| s["points"] = pts | |
| return f"series {s.get('id')} first-point y" | |
| return None | |
| if _is_table(world): | |
| for r in world.get("rows", []): | |
| cells = r.get("cells", {}) or {} | |
| if cells: | |
| key = next(iter(cells)) | |
| cells[key] = _bump(cells[key], by) | |
| r["cells"] = cells | |
| return f"row {r.get('id')} cell {key}" | |
| return None | |
| if _is_geometry(world): | |
| for c in world.get("constraints", []): | |
| if c.get("predicate") == "MeasureOf" and len(c.get("args") or []) >= 2: | |
| args = list(c["args"]) | |
| if _looks_numeric(args[1]): | |
| args[1] = _bump(args[1], by) | |
| c["args"] = args | |
| return f"constraint MeasureOf({args[0]}) value" | |
| return None | |
| return None | |
| # --- world locators (shared with the P5 intervention layer) ---------------- | |
| # The locators live in :mod:`explicit_learning.sources.world_ops`; the leading | |
| # underscore aliases keep this module's call sites unchanged. | |
| _is_plot = is_plot | |
| _is_table = is_table | |
| _is_geometry = is_geometry | |
| _find_point = find_point | |
| _find_series = find_series | |
| _find_row = find_row | |
| _find_stating_constraint = find_stating_constraint | |
| _looks_numeric = looks_numeric | |
| __all__ = ["Mutation", "deterministic_mutations"] | |