# This Python module is part of the PyRate software package. # # Copyright 2020 Geoscience Australia # # Licensed under the Apache License, Version 2.0 (the "License"); # you may not use this file except in compliance with the License. # You may obtain a copy of the License at # # http://www.apache.org/licenses/LICENSE-2.0 # # Unless required by applicable law or agreed to in writing, software # distributed under the License is distributed on an "AS IS" BASIS, # WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. # See the License for the specific language governing permissions and # limitations under the License. """ This Python module contains fixtures for use in the PyRate test suite. """ import shutil import random import string import tempfile import pytest import pyrate.constants as C from pyrate.constants import PYRATEPATH from pyrate.core import mpiops, shared from pyrate.configuration import Configuration from tests.common import TEST_CONF_ROIPAC, TEST_CONF_GAMMA, SML_TEST_DEM_TIF, MEXICO_CROPA_CONF from tests.common import ROIPAC_SYSTEM_CONF, GAMMA_SYSTEM_CONF, GEOTIF_SYSTEM_CONF, SML_TEST_COH_LIST @pytest.fixture def tempdir(): """ tempdir for tests """ def tmpdir(): return tempfile.mkdtemp() return tmpdir @pytest.fixture(params=[ROIPAC_SYSTEM_CONF, GEOTIF_SYSTEM_CONF, GAMMA_SYSTEM_CONF]) def system_conf(request): params = Configuration(request.param).__dict__ yield request.param shutil.rmtree(params[C.OUT_DIR], ignore_errors=True) @pytest.fixture def random_filename(tmp_path_factory): def make_random_filename(ext=''): fname = ''.join(random.choice(string.ascii_lowercase) for _ in range(10)) return tmp_path_factory.mktemp(basename='pyrate-').joinpath(fname + ext) return make_random_filename # Make sure all MPI tests use this fixure @pytest.fixture() def mpisync(request): mpiops.comm.barrier() def fin(): mpiops.comm.barrier() request.addfinalizer(fin) return mpiops.comm @pytest.fixture(params=[0, 1]) def coh_mask(request): return request.param @pytest.fixture(params=[1, 2]) def ref_est_method(request): return request.param @pytest.fixture(params=[(-1, -1), (150.941666654, -34.218333314)]) def ref_pixel(request): return request.param @pytest.fixture(params=[1, 3]) def orbfit_lks(request): return request.param @pytest.fixture(params=C.ORB_METHOD_NAMES.keys()) def orbfit_method(request): return request.param @pytest.fixture(params=C.ORB_DEGREE_NAMES.keys()) def orbfit_degrees(request): return request.param @pytest.fixture(params=[1, 3]) def get_lks(request): return request.param @pytest.fixture(params=[1, 4]) def get_crop(request): return request.param @pytest.fixture() def get_config(): def params(conf_file): params_ = Configuration(conf_file).__dict__ return params_ return params @pytest.fixture def gamma_params(): params = Configuration(TEST_CONF_GAMMA).__dict__ shared.mkdir_p(params[C.OUT_DIR]) yield params shutil.rmtree(params[C.OUT_DIR], ignore_errors=True) @pytest.fixture def roipac_params(): params = Configuration(TEST_CONF_ROIPAC).__dict__ yield params shutil.rmtree(params[C.OUT_DIR], ignore_errors=True) @pytest.fixture def mexico_cropa_params(): params = Configuration(MEXICO_CROPA_CONF).__dict__ yield params shutil.rmtree(params[C.OUT_DIR], ignore_errors=True) @pytest.fixture(params=[TEST_CONF_GAMMA, TEST_CONF_ROIPAC]) def roipac_or_gamma_conf(request): return request.param @pytest.fixture(params=[TEST_CONF_GAMMA], scope='session') def gamma_conf(request): params = Configuration(TEST_CONF_GAMMA).__dict__ yield request.param shutil.rmtree(params[C.OUT_DIR], ignore_errors=True) @pytest.fixture def coh_list_file(): return SML_TEST_COH_LIST @pytest.fixture def dem(): d = shared.dem_or_ifg(SML_TEST_DEM_TIF) d.open() return d @pytest.fixture(params=[TEST_CONF_GAMMA, MEXICO_CROPA_CONF], scope='session') def gamma_or_mexicoa_conf(request): params = Configuration(request.param).__dict__ yield request.param shutil.rmtree(params[C.OUT_DIR], ignore_errors=True) @pytest.fixture(params=range(5)) def run_number(request): return request.param GEOTIFF = PYRATEPATH.joinpath('tests', 'test_data', 'geotiffs') @pytest.fixture def geotiffs(): tifs = [u.as_posix() for u in GEOTIFF.glob('*_unw.tif')] tifs.sort() return tifs @pytest.fixture def ten_geotiffs(): tifs = [u.as_posix() for u in GEOTIFF.glob('*_unw.tif')] tifs.sort() return tifs[:10] @pytest.fixture def cropa_geotifs(mexico_cropa_params): m_paths = mexico_cropa_params[C.INTERFEROGRAM_FILES] return [m.converted_path for m in m_paths]