5 pipeline with unit tests #10

Merged
julian merged 14 commits from 5-pipeline-with-unit-tests into master 2026-07-29 20:01:58 +02:00
5 changed files with 130 additions and 4 deletions
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name: CI
on:
push:
branches: ["**"]
pull_request:
branches: ["**"]
jobs:
lint:
runs-on: ubuntu-latest
container:
image: sagemath/sagemath:10.4
steps:
- name: Checkout
uses: actions/checkout@v4
- name: Install ruff
run: sage --pip install ruff
- name: Preparse .sage files
# Turns each *.sage file into real Python (*.sage.py) so ruff can
# parse it, and prepends the `from sage.all import *` that `sage`
# normally injects at runtime, so Sage's globals (ZZ, var, matrix, ...)
# resolve instead of looking like undefined names.
run: |
set -e
for f in $(find . -name "*.sage" -not -path "./playground/*"); do
sage --preparse "$f"
printf 'from sage.all import * # noqa: F401,F403\n%s\n' "$(cat "${f}.py")" > "${f}.py"
done
- name: ruff check
# --no-respect-gitignore: *.sage.py is gitignored (it's generated, see
# the previous step) but that's exactly what we need to lint here.
run: sage --python -m ruff check --no-respect-gitignore .
test:
runs-on: ubuntu-latest
needs: lint
container:
image: sagemath/sagemath:10.4
steps:
- name: Checkout
uses: actions/checkout@v4
- name: Install pytest
run: sage --pip install pytest
- name: Run tests
run: sage --python -m pytest tests/
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# Sage preparser output (regenerated from .sage sources, not hand-maintained)
*.sage.py
# Python / tooling caches
__pycache__/
.mypy_cache/
.ruff_cache/
.pytest_cache/
.venv/
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[tool.ruff]
line-length = 120
target-version = "py311"
[tool.ruff.lint]
select = ["E", "F", "I", "W"]
ignore = [
"E501", # symbolic-math expressions routinely exceed a "normal" line length
]
[tool.ruff.lint.per-file-ignores]
# *.sage.py is generated by `sage --preparse` from *.sage sources.
# - F403/F405/F821/E741: Sage's runtime injects hundreds of globals (ZZ, var,
# matrix, LatticePolytope, ...) via `from sage.all import *` before
# executing these files, so plain static analysis can't see where names
# come from.
# - E402/E702/I001: Sage's preparser itself emits an import-then-semicolon-
# joined-constants preamble (e.g. `_sage_const_1 = Integer(1); ...`) ahead
# of the file's own imports; that's Sage's boilerplate, not this project's
# code style.
# - W291/W293: the preparser replaces every integer literal with
# `_sage_const_N ` (trailing space included) to preserve token boundaries,
# so trailing-whitespace warnings fire mechanically on almost every line
# with a number in it -- not something `ruff format` could fix anyway,
# since it wouldn't change the .sage source that generated it.
"*.sage.py" = ["F403", "F405", "F821", "E741", "E402", "E702", "I001", "W291", "W293"]
# tests/test_smoke.py does `from sage.all import *` and `load(...)` a .sage
# file to get at its classes -- the same dynamic-namespace situation as
# *.sage.py above, just in a hand-written file: ruff can't see that
# Polytope/ToricPolytope/etc. come from the loaded file.
"tests/test_smoke.py" = ["F403", "F405"]
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@@ -2,7 +2,6 @@ import numpy as np
import logging import logging
import os import os
import json import json
from datetime import datetime, timezone
import re import re
# Logger # Logger
@@ -233,7 +232,7 @@ class ToricPolytope(Polytope):
def _setup_discriminant_symbols(self): def _setup_discriminant_symbols(self):
mori_rays = self.Mori_cone.rays() mori_rays = self.Mori_cone.rays()
a_vars = [var("a_{}".format(u), latex_name="a_{{}}".format(u)) for u in (1..len(mori_rays))] a_vars = [var("a_{}".format(u), latex_name="a_{{{}}}".format(u)) for u in (1..len(mori_rays))]
z_vars = var('z', n=len(mori_rays)+1, latex_name='z') # z[0] is superfluous z_vars = var('z', n=len(mori_rays)+1, latex_name='z') # z[0] is superfluous
lambda_vars = var('l', n=len(mori_rays)+1, latex_name='l') # l[0] is superfluous lambda_vars = var('l', n=len(mori_rays)+1, latex_name='l') # l[0] is superfluous
a_row = matrix(a_vars) a_row = matrix(a_vars)
@@ -275,7 +274,7 @@ class ToricPolytope(Polytope):
if polynomials[0] == 0: if polynomials[0] == 0:
polynomials = maxima.eliminate(equation_system, lambda_symbols[:-1]).sage() polynomials = maxima.eliminate(equation_system, lambda_symbols[:-1]).sage()
reverse_solve = True reverse_solve = True
except: except Exception:
# In one-parameter cases there may be nothing to eliminate. # In one-parameter cases there may be nothing to eliminate.
polynomials = equation_system polynomials = equation_system
logger.debug("No elimination needed for the equation system: %s", equation_system) logger.debug("No elimination needed for the equation system: %s", equation_system)
@@ -289,7 +288,7 @@ class ToricPolytope(Polytope):
else: else:
last_lambda = lambda_symbols[-1] last_lambda = lambda_symbols[-1]
polynomials = [poly / last_lambda ** (poly.degree(last_lambda)) for poly in polynomials] polynomials = [poly / last_lambda ** (poly.degree(last_lambda)) for poly in polynomials]
except: except Exception:
pass pass
return polynomials return polynomials
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import os
import pytest
from sage.all import * # noqa: F401,F403
load(os.path.join(os.path.dirname(__file__), "..", "sage", "toric_topdata.sage"))
def test_polytope_rejects_too_few_points():
with pytest.raises(ValueError):
Polytope([[0, 0], [1, 0]]) # 2 points in dimension 2: not enough
def test_mirror_quintic_topdata():
# Vertices e_1, ..., e_4, -e_1-...-e_4 -- the worked example from
# ToricPolytope's own docstring.
points = [
[1, 0, 0, 0],
[0, 1, 0, 0],
[0, 0, 1, 0],
[0, 0, 0, 1],
[-1, -1, -1, -1],
]
polytope = ToricPolytope(points, model_name="ci_smoke_test_quintic")
assert polytope.dimension == 4
assert len(polytope.triangulations) >= 1
polytope.topdata()
assert polytope.cy_dimension == 3
assert polytope.no_divs == 1 # P^4 has Picard rank 1
assert polytope.intersection_numbers_CY == {(0, 0, 0): 5} # classical quintic self-intersection