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"""Six-step AST canonicalization and the canonical program hash (``docs/02`` §7.2).
Two programs are *semantically equivalent* iff their canonical ASTs hash equal.
``canonical_program_sha256`` is the integrity anchor reused by the C2 dual-compile
exact-match (``canonical_program_exact_match``) and the executor (P3):
1. resolve entity names → stable IDs (via the world's label→id map);
2. numeric literal normalize (exact rational; expression → SymPy canonical);
3. commutative operand sort (per-DSL commutative ops, sorted by canonical JSON);
4. alias operator expand (per-DSL alias → canonical op name);
5. redundant cast/remove (per-DSL no-op identity casts collapse to their arg);
6. topological node ordering (children canonicalized before parents, so a
parent's commutative sort is over already-canonical operands).
Step 6 is structural in the recursion: each child is canonicalized before its
parent, and the parent's commutative sort keys on the canonical (post-alias) op.
The numbered order is the spec's conceptual order; alias-expansion is applied
before the commutative sort so sort keys on the *canonical* operator, which is
the operator commutativity is defined on.
"""
from __future__ import annotations
from collections.abc import Mapping
from dataclasses import dataclass
from fractions import Fraction
from typing import Any
from ..hashing import canonical_json, canonical_json_hash
from ..sources.base import World
from .ast import LITERAL, REF, AstNode, Dsl, Program, canonical_number_str, parse_number
# Per-DSL canonicalization profile (loaded lazily to avoid a circular import:
# the dsl modules import this module to compute the canonical hash).
@dataclass(frozen=True)
class DslProfile:
"""Per-DSL canonicalization knobs."""
commutative_ops: frozenset[str]
aliases: Mapping[str, str]
identity_casts: frozenset[str]
def profile(dsl: Dsl) -> DslProfile:
"""Load the canonicalization profile for one DSL (lazy import)."""
if dsl == "plotqa_dsl_v1":
from . import plotdsl
return DslProfile(plotdsl.COMMUTATIVE_OPS, plotdsl.ALIASES, plotdsl.IDENTITY_CASTS)
if dsl == "geometry_dsl_v1":
from . import geometrydsl
return DslProfile(
geometrydsl.COMMUTATIVE_OPS, geometrydsl.ALIASES, geometrydsl.IDENTITY_CASTS
)
if dsl == "table_dsl_v1":
from . import tabledsl
return DslProfile(tabledsl.COMMUTATIVE_OPS, tabledsl.ALIASES, tabledsl.IDENTITY_CASTS)
if dsl == "clevr_dsl_v1":
from . import clevrdsl
return DslProfile(clevrdsl.COMMUTATIVE_OPS, clevrdsl.ALIASES, clevrdsl.IDENTITY_CASTS)
raise ValueError(f"unknown DSL {dsl!r}")
# --- world resolution (step 1) ---------------------------------------------
def entity_ids(world: World | None) -> set[str]:
"""All stable entity ids declared by a world (``plot_world_v1`` / ``geometry_world_v1``)."""
if not world:
return set()
ids: set[str] = set()
for series in world.get("series", []) or []:
if isinstance(series, Mapping) and series.get("id"):
ids.add(str(series["id"]))
for point in series.get("points", []) or [] if isinstance(series, Mapping) else []:
if isinstance(point, Mapping) and point.get("id"):
ids.add(str(point["id"]))
for entity in world.get("entities", []) or []:
if isinstance(entity, Mapping) and entity.get("id"):
ids.add(str(entity["id"]))
for obj in world.get("objects", []) or []:
if isinstance(obj, Mapping) and obj.get("id"):
ids.add(str(obj["id"]))
return ids
def entity_aliases(world: World | None) -> dict[str, str]:
"""Label → stable-id map for entity-name resolution (``docs/02`` §7.2 step 1).
A plot series label resolves to its ``series:`` id; a geometry entity has no
human label separate from its id, so it maps to itself. A referent that is
already a stable id passes through unchanged.
"""
if not world:
return {}
aliases: dict[str, str] = {}
for series in world.get("series", []) or []:
if isinstance(series, Mapping) and series.get("id"):
sid = str(series["id"])
aliases[sid] = sid
label = series.get("label")
if isinstance(label, str) and label:
aliases[label] = sid
for entity in world.get("entities", []) or []:
if isinstance(entity, Mapping) and entity.get("id"):
eid = str(entity["id"])
aliases[eid] = eid
for obj in world.get("objects", []) or []:
if isinstance(obj, Mapping) and obj.get("id"):
oid = str(obj["id"])
aliases[oid] = oid
return aliases
def resolve_ref_id(node: AstNode, aliases: Mapping[str, str]) -> AstNode:
"""Step 1: replace a REF label with its stable id when a mapping exists."""
if not node.is_ref():
return node
raw = node.ref_id()
resolved = aliases.get(raw, raw)
if resolved == raw:
return node
return AstNode(op=REF, args=(resolved,), return_type=node.return_type)
# --- literal normalization (step 2) ----------------------------------------
def canonical_expression(expr: str) -> str:
"""Canonical SymPy form of an expression literal (``docs/02`` §3.3).
``sympy.expand`` + the default printer yields a term-ordered canonical string
so ``"1 + x"`` and ``"x + 1"`` collapse. SymPy is imported lazily; if it is
unavailable the literal is left untouched (P2 plot programs never need it).
"""
try:
import sympy
except ImportError: # pragma: no cover - sympy is pinned in requirements
return expr
try:
expanded = sympy.expand(sympy.sympify(expr))
except Exception: # noqa: BLE001 - sympify raises varied types on bad input
return expr
return str(sympy.sstr(expanded))
def normalize_literal(node: AstNode) -> AstNode:
"""Step 2: re-canonicalize a LITERAL's value (numeric exact / expression SymPy)."""
if not node.is_literal() or not node.args:
return node
value = node.args[0]
if node.return_type in ("number", "integer") and isinstance(value, str):
return AstNode(
op=LITERAL,
args=(canonical_number_str(parse_number(value)),),
return_type=node.return_type,
)
if node.return_type == "expression" and isinstance(value, str):
return AstNode(
op=LITERAL, args=(canonical_expression(value),), return_type=node.return_type
)
return node
# --- canonicalize ----------------------------------------------------------
def canonicalize(node: AstNode, *, dsl: Dsl, world: World | None = None) -> AstNode:
"""Apply the §7.2 six steps to ``node`` and return a new canonical :class:`AstNode`."""
prof = profile(dsl)
aliases = entity_aliases(world)
def canon(n: AstNode) -> AstNode:
# Step 1: resolve entity references.
n = resolve_ref_id(n, aliases)
# Leaves: step 2 only.
if n.is_ref():
return n
if n.is_literal():
return normalize_literal(n)
# Compound: canonicalize children first (step 6 — topological ordering).
canon_args = tuple(_canonicalize_arg(a, canon) for a in n.args)
# Step 4: alias operator expand (before sort so sort keys on the canonical op).
op = prof.aliases.get(n.op, n.op)
# Step 5: redundant cast/remove — a single-arg identity cast collapses.
if (
op in prof.identity_casts
and len(canon_args) == 1
and isinstance(canon_args[0], AstNode)
):
return canon_args[0]
# Step 3: commutative operand sort over canonical child JSON.
if op in prof.commutative_ops:
canon_args = _sort_commutative(canon_args)
return AstNode(op=op, args=canon_args, return_type=n.return_type)
return canon(node)
def _canonicalize_arg(arg: Any, canon: Any) -> Any:
"""Canonicalize a sub-node; pass bare atomic field keys through untouched."""
if isinstance(arg, AstNode):
return canon(arg)
return arg
def _sort_commutative(args: tuple[Any, ...]) -> tuple[Any, ...]:
"""Sort commutative operands by their canonical-JSON serialization (stable)."""
return tuple(sorted(args, key=_arg_sort_key))
def _arg_sort_key(arg: Any) -> str:
if isinstance(arg, AstNode):
return canonical_json(arg.to_ast_node_dict())
if isinstance(arg, bool):
return canonical_json(arg)
if isinstance(arg, int):
return canonical_json(arg)
if isinstance(arg, Fraction):
return canonical_number_str(arg)
if isinstance(arg, str):
return canonical_json(arg)
return canonical_json(str(arg))
# --- canonical program hash ------------------------------------------------
def canonical_program_sha256(program: Program, *, world: World | None = None) -> str:
"""SHA-256 of the canonical program AST (+ referent selector).
The hash input is the canonical-JSON of::
{"program": <canonical astNode>, "referent_selector": <canonical astNode | null>}
This is the exact-match key for ``canonical_program_exact_match`` (P4) and the
program fingerprint reused by the executor (P3). Equivalent programs hash
equal; non-equivalent programs hash differently.
"""
canon_program = canonicalize(program.program, dsl=program.dsl, world=world)
referent: dict[str, Any] | None = None
if program.referent_selector is not None:
canon_ref = canonicalize(program.referent_selector, dsl=program.dsl, world=world)
referent = canon_ref.to_ast_node_dict()
return canonical_json_hash(
{"program": canon_program.to_ast_node_dict(), "referent_selector": referent}
)
def programs_equivalent(a: Program, b: Program, *, world: World | None = None) -> bool:
"""True iff two programs share a canonical program hash (§7.2 canonical match)."""
return canonical_program_sha256(a, world=world) == canonical_program_sha256(b, world=world)
__all__ = [
"DslProfile",
"canonical_expression",
"canonical_program_sha256",
"canonicalize",
"entity_aliases",
"entity_ids",
"profile",
"programs_equivalent",
"resolve_ref_id",
]