Пример #1
0
    def test_scenario5(self):
        """
            Scenario: Successfully comparing projections for PCAs:
                Given I create a data source uploading a "<data>" file
                And I wait until the source is ready less than <time_1> secs
                And I create a dataset
                And I wait until the dataset is ready less than <time_2> secs
                And I create a PCA with "<params>"
                And I wait until the PCA is ready less than <time_3> secs
                And I create a local PCA
                When I create a projection for "<input_data>"
                Then the projection is "<projection>"
                And I create a local projection for "<data_input>"
                Then the local projection is "<projection>"

                Examples:
                | data             | time_1  | time_2 | time_3 | input_data  | projection | params


        """
        examples = [
            [
                'data/iris.csv', '30', '30', '120', '{}',
                '{"PC2": 0, "PC3": 0, "PC1": 0, "PC6": 0, "PC4": 5e-05, "PC5": 0}',
                '{}'
            ],
            [
                'data/iris.csv', '30', '30', '120', '{"petal length": 1}',
                '{"PC2": 0.08708, "PC3": 0.20929, "PC1": 1.56084, "PC6": -1.34463, "PC4": 0.7295, "PC5": -1.00876}',
                '{}'
            ],
            [
                'data/iris.csv', '30', '30', '120',
                '{"species": "Iris-versicolor"}',
                '{"PC2": 1.8602, "PC3": -2.00864, "PC1": -0.61116, "PC6": -0.66983, "PC4": -2.44618, "PC5": 0.43414}',
                '{}'
            ],
            [
                'data/iris.csv', '30', '30', '120',
                '{"petal length": 1, "sepal length": 0, "petal width": 0, "sepal width": 0, "species": "Iris-versicolor"}',
                '{"PC2": 7.18009, "PC3": 6.51511, "PC1": 2.78155, "PC6": 0.21372, "PC4": -1.94865, "PC5": 0.57646}',
                '{}'
            ]
        ]
        show_doc(self.test_scenario5, examples)

        for example in examples:
            print "\nTesting with:\n", example
            source_create.i_upload_a_file(self, example[0])
            source_create.the_source_is_finished(self, example[1])
            dataset_create.i_create_a_dataset(self)
            dataset_create.the_dataset_is_finished_in_less_than(
                self, example[2])
            pca_create.i_create_a_pca_with_params(self, example[6])
            pca_create.the_pca_is_finished_in_less_than(self, example[3])
            compare_predictions.create_local_pca(self)
            projection_create.i_create_a_projection(self, example[4])
            projection_create.the_projection_is(self, example[5])
            compare_predictions.i_create_a_local_projection(self, example[4])
            compare_predictions.the_local_projection_is(self, example[5])
Пример #2
0
    def test_scenario6(self):
        """
            Scenario: Successfully comparing projections for PCAs:
                Given I create a data source uploading a "<data>" file
                And I wait until the source is ready less than <time_1> secs
                And I create a dataset
                And I wait until the dataset is ready less than <time_2> secs
                And I create a PCA with "<params>"
                And I wait until the PCA is ready less than <time_3> secs
                And I create a local PCA
                When I create a projection for "<input_data>"
                Then the projection is "<projection>"
                And I create a local projection for "<data_input>"
                Then the local projection is "<projection>"

                Examples:
                | data             | time_1  | time_2 | time_3 | input_data  | projection | params


        """
        examples = [
            [
                'data/spam_tiny.csv', '30', '30', '30',
                '{"fields": {"000001": {"optype": "text", "term_analysis": {"token_mode": "all"}}}}',
                '{"Message": "early"}', '{}',
                '{"PC40": 0.00416, "PC38": 0.08267, "PC39": 0.00033, "PC18": 0.28094, "PC19": -0.15056, "PC14": 0.20643, "PC15": 0.23931, "PC16": 0.03251, "PC17": 0.02776, "PC10": 0.1424, "PC11": 0.4059, "PC12": -0.1238, "PC13": 0.15131, "PC43": 0.29617, "PC42": 1.0091, "PC41": 0, "PC25": 0.07164, "PC24": -0.29904, "PC27": -0.1331, "PC26": -0.18572, "PC21": 0.25616, "PC20": 0.30424, "PC23": -0.45775, "PC22": -0.3362, "PC47": -0.13757, "PC49": 0.01864, "PC48": 0.04742, "PC29": -0.16286, "PC28": 0.42207, "PC32": -0.05917, "PC46": -0.05018, "PC31": -0.13973, "PC45": -0.05015, "PC36": 0.03017, "PC44": 0, "PC37": -0.06093, "PC34": 0.25821, "PC35": -0.22194, "PC33": -0.23398, "PC8": 0.01159, "PC9": -0.16042, "PC2": -0.09202, "PC3": 0.14371, "PC1": 0.65114, "PC6": -0.43034, "PC7": -0.02563, "PC4": -0.04947, "PC5": -0.07796, "PC50": -0.00769, "PC30": 0.07813}'
            ],
            [
                'data/spam_tiny.csv', '30', '30', '30',
                '{"fields": {"000001": {"optype": "text", "term_analysis": {"token_mode": "all"}}}}',
                '{"Message": "mobile call"}', '{}',
                '{"PC40": 0.31818, "PC38": 0.06912, "PC39": -0.14342, "PC18": 0.22382, "PC19": 0.18518, "PC14": 0.89231, "PC15": 0.05046, "PC16": -0.00241, "PC17": 0.54501, "PC10": -0.26463, "PC11": 0.30251, "PC12": 1.16327, "PC13": 0.16973, "PC43": 0.11952, "PC42": 1.05499, "PC41": 0.51263, "PC25": 0.02467, "PC24": -0.65128, "PC27": 0.48916, "PC26": -0.45228, "PC21": -0.44167, "PC20": 0.76896, "PC23": 0.29398, "PC22": 0.06425, "PC47": 0.70416, "PC49": -0.30313, "PC48": 0.12976, "PC29": -0.34, "PC28": 0.17406, "PC32": -0.06411, "PC46": 0.69257, "PC31": 0.07523, "PC45": -0.03461, "PC36": 0.29732, "PC44": 0.14516, "PC37": -0.19109, "PC34": 0.58399, "PC35": 0.37608, "PC33": -0.00378, "PC8": -0.88156, "PC9": 0.38233, "PC2": -0.56685, "PC3": 0.56321, "PC1": 0.49171, "PC6": -0.09854, "PC7": -1.24639, "PC4": 1.50134, "PC5": -0.03161, "PC50": 0.17349, "PC30": -1.29612}'
            ]
        ]
        show_doc(self.test_scenario6, examples)
        for example in examples:
            print "\nTesting with:\n", example
            source_create.i_upload_a_file(self, example[0])
            source_create.the_source_is_finished(self, example[1])
            source_create.i_update_source_with(self, example[4])
            dataset_create.i_create_a_dataset(self)
            dataset_create.the_dataset_is_finished_in_less_than(
                self, example[2])
            pca_create.i_create_a_pca_with_params(self, example[6])
            pca_create.the_pca_is_finished_in_less_than(self, example[3])
            projection_create.i_create_a_projection(self, example[5])
            projection_create.the_projection_is(self, example[7])
            compare_predictions.create_local_pca(self)
            compare_predictions.i_create_a_local_projection(self, example[5])
            compare_predictions.the_local_projection_is(self, example[7])
    def test_scenario5(self):
        """
            Scenario: Successfully comparing projections for PCAs:
                Given I create a data source uploading a "<data>" file
                And I wait until the source is ready less than <time_1> secs
                And I create a dataset
                And I wait until the dataset is ready less than <time_2> secs
                And I create a PCA with "<params>"
                And I wait until the PCA is ready less than <time_3> secs
                And I create a local PCA
                When I create a projection for "<input_data>"
                Then the projection is "<projection>"
                And I create a local projection for "<data_input>"
                Then the local projection is "<projection>"

                Examples:
                | data             | time_1  | time_2 | time_3 | input_data  | projection | params


        """
        examples = [
            ['data/iris.csv', '30', '30', '120', '{}',
             '{"PC2": 0, "PC3": 0, "PC1": 0, "PC6": 0, "PC4": 5e-05, "PC5": 0}', '{}'],
            ['data/iris.csv', '30', '30', '120', '{"petal length": 1}',
             '{"PC2": 0.08708, "PC3": 0.20929, "PC1": 1.56084, "PC6": -1.34463, "PC4": 0.7295, "PC5": -1.00876}', '{}'],
            ['data/iris.csv', '30', '30', '120', '{"species": "Iris-versicolor"}',
             '{"PC2": 1.8602, "PC3": -2.00864, "PC1": -0.61116, "PC6": -0.66983, "PC4": -2.44618, "PC5": 0.43414}', '{}'],
            ['data/iris.csv', '30', '30', '120', '{"petal length": 1, "sepal length": 0, "petal width": 0, "sepal width": 0, "species": "Iris-versicolor"}',
             '{"PC2": 7.18009, "PC3": 6.51511, "PC1": 2.78155, "PC6": 0.21372, "PC4": -1.94865, "PC5": 0.57646}', '{}']]
        show_doc(self.test_scenario5, examples)

        for example in examples:
            print "\nTesting with:\n", example
            source_create.i_upload_a_file(self, example[0])
            source_create.the_source_is_finished(self, example[1])
            dataset_create.i_create_a_dataset(self)
            dataset_create.the_dataset_is_finished_in_less_than(self, example[2])
            pca_create.i_create_a_pca_with_params(self, example[6])
            pca_create.the_pca_is_finished_in_less_than(self, example[3])
            compare_predictions.create_local_pca(self)
            projection_create.i_create_a_projection(self, example[4])
            projection_create.the_projection_is(self, example[5])
            compare_predictions.i_create_a_local_projection(self, example[4])
            compare_predictions.the_local_projection_is(self, example[5])
    def test_scenario6(self):
        """
            Scenario: Successfully comparing projections for PCAs:
                Given I create a data source uploading a "<data>" file
                And I wait until the source is ready less than <time_1> secs
                And I create a dataset
                And I wait until the dataset is ready less than <time_2> secs
                And I create a PCA with "<params>"
                And I wait until the PCA is ready less than <time_3> secs
                And I create a local PCA
                When I create a projection for "<input_data>"
                Then the projection is "<projection>"
                And I create a local projection for "<data_input>"
                Then the local projection is "<projection>"

                Examples:
                | data             | time_1  | time_2 | time_3 | input_data  | projection | params


        """
        examples = [
    ['data/spam_tiny.csv', '30', '30', '30', '{"fields": {"000001": {"optype": "text", "term_analysis": {"token_mode": "all"}}}}', '{"Message": "early"}', '{}', '{"PC40": 0.00416, "PC38": 0.08267, "PC39": 0.00033, "PC18": 0.28094, "PC19": -0.15056, "PC14": 0.20643, "PC15": 0.23931, "PC16": 0.03251, "PC17": 0.02776, "PC10": 0.1424, "PC11": 0.4059, "PC12": -0.1238, "PC13": 0.15131, "PC43": 0.29617, "PC42": 1.0091, "PC41": 0, "PC25": 0.07164, "PC24": -0.29904, "PC27": -0.1331, "PC26": -0.18572, "PC21": 0.25616, "PC20": 0.30424, "PC23": -0.45775, "PC22": -0.3362, "PC47": -0.13757, "PC49": 0.01864, "PC48": 0.04742, "PC29": -0.16286, "PC28": 0.42207, "PC32": -0.05917, "PC46": -0.05018, "PC31": -0.13973, "PC45": -0.05015, "PC36": 0.03017, "PC44": 0, "PC37": -0.06093, "PC34": 0.25821, "PC35": -0.22194, "PC33": -0.23398, "PC8": 0.01159, "PC9": -0.16042, "PC2": -0.09202, "PC3": 0.14371, "PC1": 0.65114, "PC6": -0.43034, "PC7": -0.02563, "PC4": -0.04947, "PC5": -0.07796, "PC50": -0.00769, "PC30": 0.07813}'],
    ['data/spam_tiny.csv', '30', '30', '30', '{"fields": {"000001": {"optype": "text", "term_analysis": {"token_mode": "all"}}}}', '{"Message": "mobile call"}', '{}', '{"PC40": 0.31818, "PC38": 0.06912, "PC39": -0.14342, "PC18": 0.22382, "PC19": 0.18518, "PC14": 0.89231, "PC15": 0.05046, "PC16": -0.00241, "PC17": 0.54501, "PC10": -0.26463, "PC11": 0.30251, "PC12": 1.16327, "PC13": 0.16973, "PC43": 0.11952, "PC42": 1.05499, "PC41": 0.51263, "PC25": 0.02467, "PC24": -0.65128, "PC27": 0.48916, "PC26": -0.45228, "PC21": -0.44167, "PC20": 0.76896, "PC23": 0.29398, "PC22": 0.06425, "PC47": 0.70416, "PC49": -0.30313, "PC48": 0.12976, "PC29": -0.34, "PC28": 0.17406, "PC32": -0.06411, "PC46": 0.69257, "PC31": 0.07523, "PC45": -0.03461, "PC36": 0.29732, "PC44": 0.14516, "PC37": -0.19109, "PC34": 0.58399, "PC35": 0.37608, "PC33": -0.00378, "PC8": -0.88156, "PC9": 0.38233, "PC2": -0.56685, "PC3": 0.56321, "PC1": 0.49171, "PC6": -0.09854, "PC7": -1.24639, "PC4": 1.50134, "PC5": -0.03161, "PC50": 0.17349, "PC30": -1.29612}']]
        show_doc(self.test_scenario6, examples)
        for example in examples:
            print "\nTesting with:\n", example
            source_create.i_upload_a_file(self, example[0])
            source_create.the_source_is_finished(self, example[1])
            source_create.i_update_source_with(self, example[4])
            dataset_create.i_create_a_dataset(self)
            dataset_create.the_dataset_is_finished_in_less_than(self, example[2])
            pca_create.i_create_a_pca_with_params(self, example[6])
            pca_create.the_pca_is_finished_in_less_than(self, example[3])
            projection_create.i_create_a_projection(self, example[5])
            projection_create.the_projection_is(self, example[7])
            compare_predictions.create_local_pca(self)
            compare_predictions.i_create_a_local_projection(self, example[5])
            compare_predictions.the_local_projection_is(self, example[7])
Пример #5
0
    def test_scenario7(self):
        """
            Scenario: Successfully comparing remote and local predictions
                      with raw date input for PCAs:
                Given I create a data source uploading a "<data>" file
                And I wait until the source is ready less than <time_1> secs
                And I create a dataset
                And I wait until the dataset is ready less than <time_2> secs
                And I create a PC
                And I wait until the PCA is ready less than <time_3> secs
                And I create a local PCA
                When I create a projection for "<input_data>"
                Then the projection is "<projection>"
                And I create a local projection for "<data_input>"
                Then the local projection is "<projection>"

                Examples:
                | data | time_1  | time_2 | time_3 | input_data | projection


        """
        examples = [
            [
                'data/dates2.csv', '20', '30', '60',
                '{"time-1":"1910-05-08T19:10:23.106","cat-0":"cat2","target-2":0.4}',
                '{"PC8": -1.54293, "PC9": -0.94836, "PC2": 0.78176, "PC3": -0.62082,\
              "PC1": 0.89614, "PC10": 1.06575, "PC11": 1.3211, "PC4": 1.90088, \
              "PC5": 0.24197, "PC7": -0.37701, "PC6": 2.25007}'
            ],
            [
                'data/dates2.csv', '20', '30', '60',
                '{"time-1":"1920-06-30T20:21:20.320","cat-0":"cat1","target-2":0.2}',
                '{"PC8": 0.3148, "PC9": -0.61742, "PC2": 0.93411, "PC3": 1.80286,\
               "PC1": 0.36425, "PC10": 0.7364, "PC11": 2.25863, "PC4": -1.50319,\
               "PC5": 0.17088, "PC7": 0.51738, "PC6": 0.42403}'
            ],
            [
                'data/dates2.csv', '20', '30', '60',
                '{"time-1":"1932-01-30T19:24:11.440","cat-0":"cat2","target-2":0.1}',
                '{"PC8": -0.86728, "PC9": -1.85164, "PC2": 2.13206, "PC3": 0.58449,\
               "PC1": 0.28379, "PC10": 2.05465, "PC11": 0.44372, "PC4": 1.27236,\
               "PC5": 0.99468, "PC7": -0.32496, "PC6": 0.52217}'
            ],
            [
                'data/dates2.csv', '20', '30', '60',
                '{"time-1":"1950-11-06T05:34:05.602","cat-0":"cat1" ,"target-2":0.9}',
                '{"PC8": 2.49563, "PC9": -0.57774, "PC2": -0.76354, "PC3": 0.19215,\
               "PC1": 0.99197, "PC10": -1.21017, "PC11": 1.55778, "PC4": -0.24013,\
               "PC5": -0.38492, "PC7": 1.82607, "PC6": 0.3736}'
            ],
            [
                'data/dates2.csv', '20', '30', '60',
                '{"time-1":"1969-7-14 17:36","cat-0":"cat2","target-2":0.9}',
                '{"PC8": -0.41111, "PC9": -5.32959, "PC2": -1.25322, "PC3": 2.93113,\
               "PC1": 2.07444, "PC10": 4.8808, "PC11": 0.4185, "PC4": 3.13876,\
               "PC5": 3.70259, "PC7": 0.55665, "PC6": 5.16873}'
            ],
            [
                'data/dates2.csv', '20', '30', '60',
                '{"time-1":"2001-01-05T23:04:04.693","cat-0":"cat2","target-2":0.01}',
                '{"PC8": -1.10654, "PC9": -0.34137, "PC2": 1.73362, "PC3": -0.34799,\
               "PC1": 2.32583, "PC10": 0.94566, "PC11": 0.53787, "PC4": 2.77385,\
               "PC5": -0.1017, "PC7": 0.20156, "PC6": -0.44476}'
            ],
            [
                'data/dates2.csv', '20', '30', '60',
                '{"time-1":"2011-04-01T00:16:45.747","cat-0":"cat2","target-2":0.32}',
                '{"PC8": -0.514, "PC9": 0.38349, "PC2": -0.27037, "PC3": -1.82588,\
               "PC1": 1.05737, "PC10": 0.08607, "PC11": -0.97078, "PC4": 2.10426,\
               "PC5": 1.86843, "PC7": 1.55632, "PC6": 0.42395}'
            ],
            [
                'data/dates2.csv', '20', '30', '60',
                '{"time-1":"1969-W29-1T17:36:39Z","cat-0":"cat1","target-2":0.87}',
                '{"PC8": 2.05525, "PC9": 1.50754, "PC2": 6.27524, "PC3": 7.74224,\
               "PC1": 5.30354, "PC10": -6.40442, "PC11": 6.90365, "PC4": -1.44431,\
               "PC5": 2.16179, "PC7": 1.35718, "PC6": 5.02426}'
            ]
        ]
        show_doc(self.test_scenario7, examples)
        for example in examples:
            print "\nTesting with:\n", example
            source_create.i_upload_a_file(self, example[0])
            source_create.the_source_is_finished(self, example[1])
            dataset_create.i_create_a_dataset(self)
            dataset_create.the_dataset_is_finished_in_less_than(
                self, example[2])
            pca_create.i_create_a_pca(self)
            pca_create.the_pca_is_finished_in_less_than(self, example[3])
            projection_create.i_create_a_projection(self, example[4])
            projection_create.the_projection_is(self, example[5])
            compare_predictions.create_local_pca(self)
            compare_predictions.i_create_a_local_projection(self, example[4])
            compare_predictions.the_local_projection_is(self, example[5])