Add CLAUDE.md defining the Palladium master notebook conventions and Red Panda Approval criteria, plus a review-notebook slash command for LLM-driven notebook review. Expand .gitignore to block client/engagement documents and generated exports, keeping masters client-clean while allowing text/image sources. Normalize slider widget numeric values from floats to integers in notebook JSON.
164 lines
5.5 KiB
Python
164 lines
5.5 KiB
Python
"""Repo-level notebook validation — structure only, kernel-free.
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Layer 0 of the testing story (see CLAUDE.md and the pattern docs): runs
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from the ROOT venv against every master's committed ``.ipynb``. Content
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and engine pins live in each master's own ``tests/``.
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Tiers (defined in ``nbcheck.py``):
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structural — every notebook: parses, python3 kernel, no error outputs,
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cleanly executed top-to-bottom, no duplicate claimed-unique
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tags.
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notebook-first — NOTEBOOK_FIRST masters only: the tagged-cell taxonomy
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(topic-bank / engagement-data / gate / data-appendix) with
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its uniqueness and position rules. GRANDFATHERED notebooks
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skip this tier with their recorded reason (``pytest -rs``).
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"""
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from __future__ import annotations
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import pytest
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from .nbcheck import (
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ALL_CLASSIFIED,
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GRANDFATHERED,
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NOTEBOOK_FIRST,
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UNIQUE_TAGS,
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cell_tags,
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cells_tagged,
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discover,
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error_outputs,
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execution_problem,
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load,
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)
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def notebook_first_only(rel: str) -> None:
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if rel in GRANDFATHERED:
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pytest.skip(GRANDFATHERED[rel])
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# ── Classification is complete — a new master cannot dodge the suite ──
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def test_every_notebook_on_disk_is_classified():
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on_disk = set(discover())
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classified = set(ALL_CLASSIFIED)
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assert on_disk == classified, (
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f"unclassified notebooks: {sorted(on_disk - classified)}; "
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f"classified but missing from disk: {sorted(classified - on_disk)} — "
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"add each notebook to NOTEBOOK_FIRST or GRANDFATHERED (with a reason) "
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"in tests/nbcheck.py"
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)
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assert not (NOTEBOOK_FIRST & set(GRANDFATHERED)), "a notebook is in both tiers"
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# ── Structural tier — every notebook ─────────────────────────────────
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@pytest.mark.parametrize("rel", ALL_CLASSIFIED)
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def test_parses_as_nbformat_4(rel):
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nb = load(rel)
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assert nb.nbformat == 4
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@pytest.mark.parametrize("rel", ALL_CLASSIFIED)
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def test_kernel_is_python3(rel):
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nb = load(rel)
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assert nb.metadata.get("kernelspec", {}).get("name") == "python3"
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@pytest.mark.parametrize("rel", ALL_CLASSIFIED)
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def test_no_error_outputs(rel):
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assert error_outputs(load(rel)) == []
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@pytest.mark.parametrize("rel", ALL_CLASSIFIED)
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def test_executed_cleanly_top_to_bottom(rel):
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problem = execution_problem(load(rel))
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assert problem is None, problem
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@pytest.mark.parametrize("rel", ALL_CLASSIFIED)
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def test_no_duplicate_unique_tags(rel):
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nb = load(rel)
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for tag in UNIQUE_TAGS:
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hits = cells_tagged(nb, tag)
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assert len(hits) <= 1, f"tag {tag!r} appears in cells {hits}"
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# ── Notebook-first tier — the Assessment Pattern tagged-cell taxonomy ─
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@pytest.mark.parametrize("rel", ALL_CLASSIFIED)
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def test_has_exactly_one_topic_bank(rel):
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notebook_first_only(rel)
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assert len(cells_tagged(load(rel), "topic-bank")) == 1
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@pytest.mark.parametrize("rel", ALL_CLASSIFIED)
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def test_engagement_data_present_and_above_widgets(rel):
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notebook_first_only(rel)
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nb = load(rel)
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hits = cells_tagged(nb, "engagement-data")
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assert len(hits) == 1
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# Position: client data must never re-run on a sidebar change, so the
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# cell precedes the widget-defining presentation cell (identified by a
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# widget constructor in its source; if a master builds widgets another
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# way, its own tests carry the precise rule).
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widget_cells = [
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i
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for i, c in enumerate(nb.cells)
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if c.cell_type == "code"
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and "presentation" in cell_tags(c)
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and "mr.Select(" in c.source
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]
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if widget_cells:
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assert hits[0] < min(widget_cells), (
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"engagement-data cell must sit above the widget cell"
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)
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@pytest.mark.parametrize("rel", ALL_CLASSIFIED)
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def test_has_one_gate_with_asserts(rel):
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notebook_first_only(rel)
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nb = load(rel)
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hits = cells_tagged(nb, "gate")
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assert len(hits) == 1
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assert "assert" in nb.cells[hits[0]].source, "gate cell carries no assert"
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@pytest.mark.parametrize("rel", ALL_CLASSIFIED)
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def test_data_appendix_is_last_code_cell(rel):
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notebook_first_only(rel)
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nb = load(rel)
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hits = cells_tagged(nb, "data-appendix")
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assert len(hits) == 1
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last_code = max(
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i for i, c in enumerate(nb.cells) if c.cell_type == "code"
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)
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assert hits[0] == last_code, "data-appendix must be the last code cell"
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@pytest.mark.parametrize("rel", ALL_CLASSIFIED)
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def test_presentation_cells_do_not_print(rel):
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notebook_first_only(rel)
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nb = load(rel)
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for i in cells_tagged(nb, "presentation"):
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streams = [
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o for o in nb.cells[i].get("outputs", [])
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if o.get("output_type") == "stream"
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]
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assert not streams, (
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f"presentation cell {i} emits stream output — route diagnostics "
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"through backstage()"
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)
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@pytest.mark.parametrize("rel", ALL_CLASSIFIED)
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def test_content_cells_are_exec_safe(rel):
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# topic-bank / engagement-data are exec'd by tag in per-master tests
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# and by scripts — magics or shell escapes would break that contract.
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notebook_first_only(rel)
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nb = load(rel)
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for tag in ("topic-bank", "engagement-data"):
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for i in cells_tagged(nb, tag):
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for line in nb.cells[i].source.splitlines():
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stripped = line.lstrip()
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assert not stripped.startswith(("%", "!")), (
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f"{tag} cell {i} uses a magic/shell escape: {line!r}"
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)
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