mirror of
https://github.com/aljazceru/python-teos.git
synced 2025-12-18 06:34:19 +01:00
Removes redundant tests
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@@ -1,7 +1,4 @@
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import pytest
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from uuid import uuid4
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from hashlib import sha256
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from binascii import unhexlify
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from pisa import c_logger
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from pisa.block_processor import BlockProcessor
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@@ -9,19 +6,6 @@ from test.unit.conftest import get_random_value_hex
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c_logger.disabled = True
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APPOINTMENT_COUNT = 100
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TEST_SET_SIZE = 200
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@pytest.fixture(scope="module")
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def txids():
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return [get_random_value_hex(32) for _ in range(APPOINTMENT_COUNT)]
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@pytest.fixture(scope="module")
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def locator_uuid_map(txids):
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return {sha256(unhexlify(txid)).hexdigest(): uuid4().hex for txid in txids}
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@pytest.fixture
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def best_block_hash():
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@@ -52,29 +36,3 @@ def test_get_random_block():
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def test_get_block_count():
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block_count = BlockProcessor.get_block_count()
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assert isinstance(block_count, int) and block_count >= 0
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def test_potential_matches(txids, locator_uuid_map):
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potential_matches = BlockProcessor.get_potential_matches(txids, locator_uuid_map)
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# All the txids must match
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assert locator_uuid_map.keys() == potential_matches.keys()
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def test_potential_matches_random(locator_uuid_map):
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txids = [get_random_value_hex(32) for _ in range(len(locator_uuid_map))]
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potential_matches = BlockProcessor.get_potential_matches(txids, locator_uuid_map)
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# None of the ids should match
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assert len(potential_matches) == 0
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def test_potential_matches_random_data(locator_uuid_map):
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# The likelihood of finding a potential match with random data should be negligible
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txids = [get_random_value_hex(32) for _ in range(TEST_SET_SIZE)]
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potential_matches = BlockProcessor.get_potential_matches(txids, locator_uuid_map)
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# None of the txids should match
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assert len(potential_matches) == 0
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@@ -17,23 +17,3 @@ def test_equal():
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e_blob2 = EncryptedBlob(data)
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assert e_blob1 == e_blob2 and id(e_blob1) != id(e_blob2)
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def test_decrypt():
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# TODO: The decryption tests are assuming the cipher is AES-GCM-128, since EncryptedBlob assumes the same. Fix this.
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key = get_random_value_hex(32)
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encrypted_data = get_random_value_hex(64)
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encrypted_blob = EncryptedBlob(encrypted_data)
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# Trying to decrypt random data (in AES_GCM-128) should result in an InvalidTag exception. Our decrypt function
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# returns None
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hex_tx = encrypted_blob.decrypt(key)
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assert hex_tx is None
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# Valid data should run with no InvalidTag and verify
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data = "6097cdf52309b1b2124efeed36bd34f46dc1c25ad23ac86f28380f746254f777"
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key = "b2e984a570f6f49bc38ace178e09147b0aa296cbb7c92eb01412f7e2d07b5659"
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encrypted_data = "092e93d4a34aac4367075506f2c050ddfa1a201ee6669b65058572904dcea642aeb01ea4b57293618e8c46809dfadadc"
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encrypted_blob = EncryptedBlob(encrypted_data)
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assert encrypted_blob.decrypt(key) == data
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