The binding-graph's FIRST comprehension consumer (doctrine-aligned: quantities live in binding_graph, NOT the MeaningGraph). generate/quantitative_comprehension.py reads arithmetic prose into SymbolBinding/BoundFact/BoundEquation and runs the REAL check_admissibility (shell -> verify -> rebuild with the actual UnitProof) — there is NO stamped "admitted": an equation is admitted only if its operand units verify. Then to_relational_metric projects the binding-graph to the independent relational_metric oracle for the verdict. Templates (digits only; non-digit quantity REFUSES): "<X> has <N> <unit>" -> BoundFact(X = N) "<Y> has <N> more <unit> than <X>" -> BoundEquation(Y = X + N) op=add "<Y> has <N> fewer <unit> than <X>" -> BoundEquation(Y = X - N) op=subtract "How many <unit> does <Y> have" -> ask Y "How many <unit> do <X> and <Y> have"-> total = X + Y; ask total Unit modelling (honest, not faked): a noun the closed en_units_v1 pack knows is used verbatim (dollars -> dollar/money); an UNKNOWN sortal noun (stickers, coins) is a count of discrete objects -> the existing 'item' lemma (dimension count). So admissibility stays a REAL check: count+count admits, count+money (a mixed-unit sum) REFUSES with unit_mismatch — verified to bite. comprehension_relational_metric: 15/15 wrong=0 (full coverage). Located OUTSIDE generate/meaning_graph (it targets binding_graph, not the MeaningGraph) so INV-28 neutrality stays intact; oracle imports none of the SUT (new INV-25 lane). Capability index breadth 7->8, score 0.928622 -> 0.937258, wrong_total 0, digest 50e0675b… Tests: reader templates + count/known-unit modelling + admissibility-bite (mixed unit refuses) + non-digit refusal; end-to-end full-coverage wrong=0; arithmetic added to the structure-preservation generative panel (projected relations+query == ground truth); capability breadth 7->8; INV-25 arithmetic lane. 93 targeted + 90 smoke green; lane SHAs 8/9 (sole miss = public_demo env flake; deductive_logic + math_teaching unchanged -> no GSM8K coupling).
99 lines
4.3 KiB
Python
99 lines
4.3 KiB
Python
"""Unit tests for the arithmetic reader (prose -> binding_graph) + its projector.
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Pins the templates, the count-vs-physical-unit modelling, and — load-bearing — the
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REAL admissibility check: an equation is admitted only if its operand units verify,
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so a mixed-unit sum REFUSES rather than fabricating a quantity. This is the
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reviewer's "do not stamp admissibility" guard, made executable.
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"""
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from __future__ import annotations
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from generate.binding_graph.model import SemanticSymbolicBindingGraph
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from generate.meaning_graph.reader import Refusal
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from generate.quantitative_comprehension import (
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QuantComprehension,
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comprehend_quantitative,
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to_relational_metric,
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)
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def _comp(text: str) -> QuantComprehension:
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comp = comprehend_quantitative(text)
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assert isinstance(comp, QuantComprehension), comp
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return comp
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def test_fact_and_more_than_build_binding_graph() -> None:
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comp = _comp("Liam has 6 stickers. Mia has 4 more stickers than Liam. How many stickers does Mia have?")
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g = comp.binding_graph
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assert isinstance(g, SemanticSymbolicBindingGraph)
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assert {f.symbol_id: f.value for f in g.facts} == {"liam": "6"}
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eq = next(e for e in g.equations if e.lhs_symbol_id == "mia")
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assert eq.operation_kind == "add"
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assert eq.rhs_canonical == "liam + 4"
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assert eq.admissibility_status == "admitted" # from the REAL check, not stamped
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assert comp.query.entity == "mia"
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def test_count_nouns_resolve_to_item_dimension() -> None:
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# Unknown sortal nouns become the count dimension (item); admissibility admits.
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comp = _comp("Kim has 2 marbles. Leo has 3 more marbles than Kim. How many marbles does Leo have?")
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units = {s.symbol_id: s.unit for s in comp.binding_graph.symbols}
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assert units["kim"] == "item" and units["leo"] == "item"
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def test_known_unit_is_used_verbatim() -> None:
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comp = _comp("Iris has 100 dollars. Jack has 250 more dollars than Iris. How many dollars does Jack have?")
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units = {s.symbol_id: s.unit for s in comp.binding_graph.symbols}
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assert units["iris"] == "dollars" # parse_unit depluralizes dollars -> dollar (money)
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def test_fewer_than_is_subtract() -> None:
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comp = _comp("Noah has 15 cards. Olivia has 6 fewer cards than Noah. How many cards does Olivia have?")
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eq = next(e for e in comp.binding_graph.equations if e.lhs_symbol_id == "olivia")
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assert eq.operation_kind == "subtract" and eq.rhs_canonical == "noah - 6"
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def test_sum_query_synthesizes_total() -> None:
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comp = _comp("Dan has 7 coins. Eva has 9 more coins than Dan. How many coins do Dan and Eva have?")
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assert comp.query.entity == "total"
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total_eq = next(e for e in comp.binding_graph.equations if e.lhs_symbol_id == "total")
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assert total_eq.operation_kind == "add"
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assert set(total_eq.dependencies) == {"dan", "eva"}
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def test_projection_shape() -> None:
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comp = _comp("Liam has 6 stickers. Mia has 4 more stickers than Liam. How many stickers does Mia have?")
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projected = to_relational_metric(comp)
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assert projected is not None
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relations, query = projected
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assert {"kind": "fact", "entity": "liam", "value": 6} in relations
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assert {"kind": "more_than", "entity": "mia", "ref": "liam", "delta": 4} in relations
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assert query["entity"] == "mia"
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# --------------------------------------------------------------------------- #
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# Admissibility is REAL, not stamped (the reviewer's load-bearing guard)
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# --------------------------------------------------------------------------- #
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def test_mixed_unit_sum_refuses_via_admissibility() -> None:
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# count (stickers -> item) + money (dollars) cannot be summed: the REAL
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# admissibility check must REFUSE, not fabricate a total.
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comp = comprehend_quantitative(
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"Liam has 6 stickers. Mia has 4 dollars. How many things do Liam and Mia have?"
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)
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assert isinstance(comp, Refusal)
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assert comp.reason == "admissibility_refused"
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assert "unit_mismatch" in comp.detail
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def test_non_digit_quantity_refuses() -> None:
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comp = comprehend_quantitative("Liam has several stickers. How many stickers does Liam have?")
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assert isinstance(comp, Refusal)
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assert comp.reason == "non_digit_quantity"
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def test_unreadable_clause_refuses() -> None:
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comp = comprehend_quantitative("The weather is nice today.")
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assert isinstance(comp, Refusal)
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