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17.6 kB
| """Fail-closed executable route traces for answer-verified free-form math. | |
| The trace is deliberately separate from the natural-language derivation and | |
| from the boxed answer. It contains only references and operations; it never | |
| contains model-declared intermediate results. Numeric leaves must be grounded | |
| in the problem text, every operation is executed exactly, and every trace node | |
| must contribute to the terminal value. | |
| This validator establishes a checkable computational route, not a proof that | |
| the route's modeling assumptions follow from the prose problem. Ordinary MATH | |
| answer verification remains a separate mandatory admission condition. | |
| """ | |
| from __future__ import annotations | |
| from collections import Counter | |
| from dataclasses import dataclass | |
| from fractions import Fraction | |
| import json | |
| import math | |
| import re | |
| from typing import Any, Mapping | |
| import sympy | |
| MATH_ROUTE_VERSION = "math-route-v1" | |
| MATH_ROUTE_RPN_VERSION = "math-route-rpn-v2" | |
| _MAX_TRACE_CHARS = 4_096 | |
| _MAX_STEPS = 20 | |
| _MAX_ARGS = 6 | |
| _MAX_INTEGER_BITS = 512 | |
| _ID_RE = re.compile(r"s[1-9][0-9]?") | |
| _NUMBER_RE = re.compile( | |
| r"(?<![\w.])-?\d+(?:,\d{3})*(?:\.\d+)?(?!\w)(?!\.\d)" | |
| ) | |
| _SLASH_FRACTION_RE = re.compile( | |
| r"(?<![\w.])(-?\d+(?:,\d{3})*)\s*/\s*(\d+(?:,\d{3})*)" | |
| r"(?!\w)(?!\.\d)" | |
| ) | |
| _LATEX_FRACTION_RE = re.compile( | |
| r"\\(?:d?frac)\s*\{\s*(-?\d+(?:,\d{3})*)\s*\}" | |
| r"\s*\{\s*(\d+(?:,\d{3})*)\s*\}" | |
| ) | |
| _ROUTE_BLOCK_RE = re.compile(r"<route>(.*?)</route>", re.DOTALL) | |
| _COMMUTATIVE_OPS = frozenset({"add", "mul", "gcd", "lcm", "min", "max"}) | |
| _UNARY_OPS = frozenset( | |
| {"neg", "abs", "square", "cube", "sqrt", "factorial", "percent"} | |
| ) | |
| _BINARY_OPS = frozenset( | |
| {"sub", "div", "pow", "mod", "choose", "permute"} | |
| ) | |
| _NARY_OPS = frozenset({"add", "mul", "gcd", "lcm", "min", "max", "average"}) | |
| _ALLOWED_TOP_LEVEL = frozenset({"version", "steps", "final"}) | |
| _ALLOWED_STEP_KEYS = frozenset({"id", "op", "args", "value"}) | |
| _RPN_UNARY_OPS = { | |
| "neg": "neg", | |
| "abs": "abs", | |
| "square": "square", | |
| "cube": "cube", | |
| "sqrt": "sqrt", | |
| "factorial": "factorial", | |
| "percent": "percent", | |
| } | |
| _RPN_BINARY_OPS = { | |
| "add": "add", | |
| "mul": "mul", | |
| "sub": "sub", | |
| "div": "div", | |
| "pow": "pow", | |
| "mod": "mod", | |
| "choose": "choose", | |
| "permute": "permute", | |
| "gcd": "gcd", | |
| "lcm": "lcm", | |
| "min": "min", | |
| "max": "max", | |
| "average": "average", | |
| } | |
| class MathRouteValidation: | |
| route_signature: str | |
| terminal_value: sympy.Expr | |
| operations: tuple[str, ...] | |
| step_count: int | |
| source_count: int | |
| class MathRouteError(ValueError): | |
| """Raised for a malformed, ungrounded, or non-executable trace.""" | |
| def _fraction(text: str) -> Fraction: | |
| compact = str(text).replace(",", "").strip() | |
| if re.fullmatch(r"-?\d+", compact): | |
| return Fraction(int(compact), 1) | |
| if re.fullmatch(r"-?\d+/\d+", compact): | |
| numerator, denominator = compact.split("/", 1) | |
| if int(denominator) == 0: | |
| raise MathRouteError("zero denominator") | |
| return Fraction(int(numerator), int(denominator)) | |
| if re.fullmatch(r"-?\d+\.\d+", compact): | |
| return Fraction(compact) | |
| raise MathRouteError("source values must be exact integers, decimals, or fractions") | |
| def problem_number_inventory(problem: str) -> Counter[Fraction]: | |
| """Return exact numeric leaves present in problem text, with multiplicity.""" | |
| text = str(problem) | |
| inventory: Counter[Fraction] = Counter() | |
| def consume_latex(match: re.Match[str]) -> str: | |
| numerator, denominator = match.groups() | |
| inventory[Fraction(int(numerator.replace(",", "")), int(denominator.replace(",", "")))] += 1 | |
| return " " | |
| def consume_slash(match: re.Match[str]) -> str: | |
| numerator, denominator = match.groups() | |
| inventory[Fraction(int(numerator.replace(",", "")), int(denominator.replace(",", "")))] += 1 | |
| return " " | |
| text = _LATEX_FRACTION_RE.sub(consume_latex, text) | |
| text = _SLASH_FRACTION_RE.sub(consume_slash, text) | |
| for match in _NUMBER_RE.finditer(text): | |
| inventory[_fraction(match.group(0))] += 1 | |
| return inventory | |
| def extract_math_route_block(model_response: str) -> str | None: | |
| matches = _ROUTE_BLOCK_RE.findall(str(model_response)) | |
| if len(matches) != 1: | |
| return None | |
| block = matches[0].strip() | |
| if not block or len(block) > _MAX_TRACE_CHARS: | |
| return None | |
| return block | |
| def _exact_integer(value: sympy.Expr, *, name: str) -> int: | |
| simplified = sympy.simplify(value) | |
| if not simplified.is_Integer: | |
| raise MathRouteError(f"{name} requires an exact integer") | |
| integer = int(simplified) | |
| if abs(integer).bit_length() > _MAX_INTEGER_BITS: | |
| raise MathRouteError(f"{name} integer is too large") | |
| return integer | |
| def _bounded(value: sympy.Expr) -> sympy.Expr: | |
| simplified = sympy.simplify(value) | |
| if simplified.has( | |
| sympy.nan, | |
| sympy.zoo, | |
| sympy.oo, | |
| -sympy.oo, | |
| sympy.I, | |
| ): | |
| raise MathRouteError("operation produced a non-finite or complex value") | |
| if len(str(simplified)) > 1_024 or int(sympy.count_ops(simplified)) > 128: | |
| raise MathRouteError("operation result is too large") | |
| for atom in simplified.atoms(sympy.Integer): | |
| if abs(int(atom)).bit_length() > _MAX_INTEGER_BITS: | |
| raise MathRouteError("operation result integer is too large") | |
| return simplified | |
| def _execute_operation(op: str, arguments: tuple[sympy.Expr, ...]) -> sympy.Expr: | |
| if op in _UNARY_OPS and len(arguments) != 1: | |
| raise MathRouteError(f"{op} requires one argument") | |
| if op in _BINARY_OPS and len(arguments) != 2: | |
| raise MathRouteError(f"{op} requires two arguments") | |
| if op in _NARY_OPS and not 2 <= len(arguments) <= _MAX_ARGS: | |
| raise MathRouteError(f"{op} requires two to {_MAX_ARGS} arguments") | |
| if op == "neg": | |
| result = -arguments[0] | |
| elif op == "abs": | |
| result = sympy.Abs(arguments[0]) | |
| elif op == "square": | |
| result = arguments[0] ** 2 | |
| elif op == "cube": | |
| result = arguments[0] ** 3 | |
| elif op == "sqrt": | |
| if arguments[0].is_nonnegative is not True: | |
| raise MathRouteError("sqrt requires a provably nonnegative argument") | |
| result = sympy.sqrt(arguments[0]) | |
| elif op == "factorial": | |
| integer = _exact_integer(arguments[0], name=op) | |
| if not 0 <= integer <= 100: | |
| raise MathRouteError("factorial input is outside [0,100]") | |
| result = sympy.factorial(integer) | |
| elif op == "percent": | |
| result = arguments[0] / 100 | |
| elif op == "add": | |
| result = sum(arguments, sympy.Integer(0)) | |
| elif op == "mul": | |
| result = math.prod(arguments, start=sympy.Integer(1)) | |
| elif op == "sub": | |
| result = arguments[0] - arguments[1] | |
| elif op == "div": | |
| if sympy.simplify(arguments[1]) == 0: | |
| raise MathRouteError("division by zero") | |
| result = arguments[0] / arguments[1] | |
| elif op == "pow": | |
| exponent = _exact_integer(arguments[1], name=op) | |
| if not -12 <= exponent <= 12: | |
| raise MathRouteError("power exponent is outside [-12,12]") | |
| if arguments[0] == 0 and exponent < 0: | |
| raise MathRouteError("zero to a negative power") | |
| result = arguments[0] ** exponent | |
| elif op == "mod": | |
| left = _exact_integer(arguments[0], name=op) | |
| right = _exact_integer(arguments[1], name=op) | |
| if right == 0: | |
| raise MathRouteError("modulo by zero") | |
| result = sympy.Integer(left % right) | |
| elif op == "choose": | |
| n = _exact_integer(arguments[0], name=op) | |
| k = _exact_integer(arguments[1], name=op) | |
| if not 0 <= k <= n <= 10_000: | |
| raise MathRouteError("choose inputs are outside 0 <= k <= n <= 10000") | |
| result = sympy.binomial(n, k) | |
| elif op == "permute": | |
| n = _exact_integer(arguments[0], name=op) | |
| k = _exact_integer(arguments[1], name=op) | |
| if not 0 <= k <= n <= 1_000: | |
| raise MathRouteError("permute inputs are outside 0 <= k <= n <= 1000") | |
| result = sympy.factorial(n) / sympy.factorial(n - k) | |
| elif op in {"gcd", "lcm"}: | |
| integers = [_exact_integer(argument, name=op) for argument in arguments] | |
| function = math.gcd if op == "gcd" else math.lcm | |
| result = sympy.Integer(function(*integers)) | |
| elif op == "min": | |
| if not all(argument.is_real is True for argument in arguments): | |
| raise MathRouteError("min requires real arguments") | |
| result = sympy.Min(*arguments) | |
| elif op == "max": | |
| if not all(argument.is_real is True for argument in arguments): | |
| raise MathRouteError("max requires real arguments") | |
| result = sympy.Max(*arguments) | |
| elif op == "average": | |
| result = sum(arguments, sympy.Integer(0)) / len(arguments) | |
| else: | |
| raise MathRouteError(f"unsupported route operation {op!r}") | |
| return _bounded(result) | |
| def _signature(op: str, argument_signatures: tuple[str, ...]) -> str: | |
| children = ( | |
| tuple(sorted(argument_signatures)) | |
| if op in _COMMUTATIVE_OPS | |
| else argument_signatures | |
| ) | |
| return f"{op}({','.join(children)})" | |
| def validate_math_route_trace( | |
| trace: str | Mapping[str, Any], | |
| problem: str, | |
| ) -> MathRouteValidation | None: | |
| """Parse and execute a grounded route trace; return ``None`` on any failure.""" | |
| try: | |
| parsed = json.loads(trace) if isinstance(trace, str) else dict(trace) | |
| if not isinstance(parsed, dict) or set(parsed) != _ALLOWED_TOP_LEVEL: | |
| raise MathRouteError("route object has missing or extra fields") | |
| if parsed["version"] != MATH_ROUTE_VERSION: | |
| raise MathRouteError("unsupported route version") | |
| raw_steps = parsed["steps"] | |
| if not isinstance(raw_steps, list) or not 2 <= len(raw_steps) <= _MAX_STEPS: | |
| raise MathRouteError("route has an invalid number of steps") | |
| final_id = str(parsed["final"]) | |
| if _ID_RE.fullmatch(final_id) is None: | |
| raise MathRouteError("invalid final node ID") | |
| inventory = problem_number_inventory(problem) | |
| values: dict[str, sympy.Expr] = {} | |
| signatures: dict[str, str] = {} | |
| dependencies: dict[str, tuple[str, ...]] = {} | |
| operations: list[str] = [] | |
| source_count = 0 | |
| non_source_count = 0 | |
| for expected_index, raw_step in enumerate(raw_steps, start=1): | |
| if not isinstance(raw_step, dict): | |
| raise MathRouteError("route step must be an object") | |
| if not set(raw_step).issubset(_ALLOWED_STEP_KEYS): | |
| raise MathRouteError("route step has extra fields") | |
| step_id = str(raw_step.get("id", "")) | |
| if step_id != f"s{expected_index}" or step_id in values: | |
| raise MathRouteError("route node IDs must be contiguous and ordered") | |
| op = str(raw_step.get("op", "")) | |
| if op == "source": | |
| if set(raw_step) != {"id", "op", "value"}: | |
| raise MathRouteError("source step schema is invalid") | |
| value = _fraction(str(raw_step["value"])) | |
| if inventory[value] <= 0: | |
| raise MathRouteError("source value is not available in the problem") | |
| inventory[value] -= 1 | |
| values[step_id] = sympy.Rational(value.numerator, value.denominator) | |
| signatures[step_id] = "input" | |
| dependencies[step_id] = () | |
| source_count += 1 | |
| operations.append(op) | |
| continue | |
| if set(raw_step) != {"id", "op", "args"}: | |
| raise MathRouteError("operation step schema is invalid") | |
| raw_args = raw_step["args"] | |
| if not isinstance(raw_args, list): | |
| raise MathRouteError("operation args must be a list") | |
| argument_ids = tuple(str(argument) for argument in raw_args) | |
| if ( | |
| not argument_ids | |
| or len(argument_ids) > _MAX_ARGS | |
| or len(set(argument_ids)) != len(argument_ids) | |
| or any(argument_id not in values for argument_id in argument_ids) | |
| ): | |
| raise MathRouteError("operation dependencies are invalid") | |
| arguments = tuple(values[argument_id] for argument_id in argument_ids) | |
| values[step_id] = _execute_operation(op, arguments) | |
| signatures[step_id] = _signature( | |
| op, | |
| tuple(signatures[argument_id] for argument_id in argument_ids), | |
| ) | |
| dependencies[step_id] = argument_ids | |
| operations.append(op) | |
| non_source_count += 1 | |
| if final_id not in values or non_source_count < 1 or source_count < 1: | |
| raise MathRouteError("route lacks a computed terminal value") | |
| reachable = {final_id} | |
| frontier = [final_id] | |
| while frontier: | |
| node = frontier.pop() | |
| for dependency in dependencies[node]: | |
| if dependency not in reachable: | |
| reachable.add(dependency) | |
| frontier.append(dependency) | |
| if reachable != set(values): | |
| raise MathRouteError("every route node must contribute to the final value") | |
| return MathRouteValidation( | |
| route_signature=( | |
| f"math-route:{MATH_ROUTE_VERSION}:{signatures[final_id]}" | |
| ), | |
| terminal_value=values[final_id], | |
| operations=tuple(operations), | |
| step_count=len(values), | |
| source_count=source_count, | |
| ) | |
| except Exception: | |
| return None | |
| def validate_math_route_rpn( | |
| trace: str, | |
| problem: str, | |
| ) -> MathRouteValidation | None: | |
| """Execute the compact v2 reverse-Polish route language. | |
| Numeric tokens are grounded problem leaves. Unary and binary operator | |
| tokens consume the stack, so a successful one-item terminal stack also | |
| proves that every emitted token contributes to the final value. The | |
| language has no result literals, variable names, prose, or code execution. | |
| """ | |
| try: | |
| compact = str(trace).strip() | |
| if not compact or len(compact) > 1_024: | |
| raise MathRouteError("RPN route is empty or too long") | |
| tokens = compact.split() | |
| if not tokens or tokens[0] not in { | |
| "v2", | |
| MATH_ROUTE_RPN_VERSION, | |
| }: | |
| raise MathRouteError("unsupported RPN route version") | |
| tokens = tokens[1:] | |
| if not 2 <= len(tokens) <= 40: | |
| raise MathRouteError("RPN route has an invalid token count") | |
| inventory = problem_number_inventory(problem) | |
| stack: list[tuple[sympy.Expr, str]] = [] | |
| operations: list[str] = [] | |
| source_count = 0 | |
| operation_count = 0 | |
| for token in tokens: | |
| if token in _RPN_UNARY_OPS: | |
| if len(stack) < 1: | |
| raise MathRouteError("RPN unary operation underflow") | |
| argument_value, argument_signature = stack.pop() | |
| op = _RPN_UNARY_OPS[token] | |
| stack.append( | |
| ( | |
| _execute_operation(op, (argument_value,)), | |
| _signature(op, (argument_signature,)), | |
| ) | |
| ) | |
| operations.append(op) | |
| operation_count += 1 | |
| continue | |
| if token in _RPN_BINARY_OPS: | |
| if len(stack) < 2: | |
| raise MathRouteError("RPN binary operation underflow") | |
| right_value, right_signature = stack.pop() | |
| left_value, left_signature = stack.pop() | |
| op = _RPN_BINARY_OPS[token] | |
| stack.append( | |
| ( | |
| _execute_operation(op, (left_value, right_value)), | |
| _signature(op, (left_signature, right_signature)), | |
| ) | |
| ) | |
| operations.append(op) | |
| operation_count += 1 | |
| continue | |
| value = _fraction(token) | |
| if inventory[value] <= 0: | |
| raise MathRouteError("RPN source value is not available in the problem") | |
| inventory[value] -= 1 | |
| stack.append( | |
| ( | |
| sympy.Rational(value.numerator, value.denominator), | |
| "input", | |
| ) | |
| ) | |
| operations.append("source") | |
| source_count += 1 | |
| if len(stack) != 1 or source_count < 1 or operation_count < 1: | |
| raise MathRouteError("RPN route lacks one computed terminal value") | |
| terminal_value, terminal_signature = stack[0] | |
| return MathRouteValidation( | |
| route_signature=( | |
| f"math-route:{MATH_ROUTE_RPN_VERSION}:{terminal_signature}" | |
| ), | |
| terminal_value=terminal_value, | |
| operations=tuple(operations), | |
| step_count=len(tokens), | |
| source_count=source_count, | |
| ) | |
| except Exception: | |
| return None | |
| def validate_math_route_response( | |
| model_response: str, | |
| problem: str, | |
| ) -> MathRouteValidation | None: | |
| """Extract the response's unique route block and execute it.""" | |
| block = extract_math_route_block(model_response) | |
| if block is None: | |
| return None | |
| if block.lstrip().startswith("{"): | |
| return validate_math_route_trace(block, problem) | |
| return validate_math_route_rpn(block, problem) | |