Ejemplo n.º 1
0
def test_keygenerator_galoiskeys(ctx):
    poly_modulus_degree = helper_poly_modulus_degree(ctx)

    idx = 3
    assert sealapi.GaloisKeys.get_index(idx) == (idx - 1) >> 1

    keygen = sealapi.KeyGenerator(ctx)
    galois_keys = sealapi.GaloisKeys()
    keygen.create_galois_keys(galois_keys)

    assert galois_keys.has_key(idx) is True

    pubkey = galois_keys.key(idx)[0]
    assert pubkey.data().poly_modulus_degree() == poly_modulus_degree

    assert galois_keys.size() > 0
    assert len(galois_keys.data()) == poly_modulus_degree
    assert len(galois_keys.data(sealapi.GaloisKeys.get_index(idx))) > 0

    assert (galois_keys.data(sealapi.GaloisKeys.get_index(idx))
            [0].data().poly_modulus_degree() == poly_modulus_degree)
    assert len(galois_keys.parms_id()) == 4

    def save_load(path):
        gk = sealapi.GaloisKeys()
        keygen.create_galois_keys(gk)
        gk.save(path)
        assert Path(path).stat().st_size > 0

    tmp_file(save_load)
Ejemplo n.º 2
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def test_encryptor_bfv_batch():
    batch = [1, 2, 3, 4, 5]
    poly_modulus_degree = 8192
    plain_modulus = 1032193

    ctx = helper_context_bfv(poly_modulus_degree, plain_modulus)

    keygen = sealapi.KeyGenerator(ctx)
    batchenc = sealapi.BatchEncoder(ctx)
    public_key = keygen.public_key()
    secret_key = keygen.secret_key()

    decryptor = sealapi.Decryptor(ctx, secret_key)

    def _test_encryptor_pk_setup(encryptor):
        ciphertext = sealapi.Ciphertext(ctx)
        plaintext = sealapi.Plaintext()
        batchenc.encode(batch, plaintext)
        encryptor.encrypt(plaintext, ciphertext)
        plaintext_out = sealapi.Plaintext()
        decryptor.decrypt(ciphertext, plaintext_out)
        assert batchenc.decode_int64(plaintext_out)[:len(batch)] == batch
        plaintext_out.set_zero()

    encryptor = sealapi.Encryptor(ctx, public_key)
    _test_encryptor_pk_setup(encryptor)

    encryptor = sealapi.Encryptor(ctx, public_key, secret_key)
    _test_encryptor_pk_setup(encryptor)
Ejemplo n.º 3
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def test_keygenerator_relinkeys(ctx):
    poly_modulus_degree = helper_poly_modulus_degree(ctx)

    index = 4
    assert sealapi.RelinKeys.get_index(index) == index - 2

    keygen = sealapi.KeyGenerator(ctx)
    relin_keys = sealapi.RelinKeys()
    keygen.create_relin_keys(relin_keys)

    assert relin_keys.has_key(2) is True

    pubkey = relin_keys.key(2)[0]
    assert pubkey.data().poly_modulus_degree() == poly_modulus_degree

    assert relin_keys.size() > 0
    assert len(relin_keys.data()) == relin_keys.size()
    assert relin_keys.data(
        0)[0].data().poly_modulus_degree() == helper_poly_modulus_degree(ctx)
    assert len(relin_keys.parms_id()) == 4

    def save_load(path):
        rk = sealapi.RelinKeys()
        keygen.create_relin_keys(rk)
        rk.save(path)
        assert Path(path).stat().st_size > 0

    tmp_file(save_load)
Ejemplo n.º 4
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def test_evaluator_galois():
    parms = sealapi.EncryptionParameters(sealapi.SCHEME_TYPE.BFV)
    parms.set_poly_modulus_degree(8)
    parms.set_plain_modulus(257)
    coeff = sealapi.CoeffModulus.Create(8, [40, 40])
    parms.set_coeff_modulus(coeff)
    ctx = sealapi.SEALContext(parms, False, sealapi.SEC_LEVEL_TYPE.NONE)

    keygen = sealapi.KeyGenerator(ctx)
    public_key = sealapi.PublicKey()
    keygen.create_public_key(public_key)
    secret_key = keygen.secret_key()
    galois_keys = sealapi.GaloisKeys()
    keygen.create_galois_keys([1, 3, 5], galois_keys)

    decryptor = sealapi.Decryptor(ctx, secret_key)
    encryptor = sealapi.Encryptor(ctx, public_key)

    evaluator = sealapi.Evaluator(ctx)

    plain = sealapi.Plaintext("1x^2")
    encrypted = sealapi.Ciphertext(ctx)
    encryptor.encrypt(plain, encrypted)
    evaluator.apply_galois_inplace(encrypted, 1, galois_keys)
    decryptor.decrypt(encrypted, plain)
    assert plain.to_string() == "1x^2"

    out = sealapi.Ciphertext(ctx)
    evaluator.apply_galois(encrypted, 3, galois_keys, out)
    decryptor.decrypt(out, plain)
    assert plain.to_string() == "1x^6"
Ejemplo n.º 5
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def test_keygenerator_relinkeys(ctx):
    poly_modulus_degree = helper_poly_modulus_degree(ctx)

    index = 4
    assert sealapi.RelinKeys.get_index(index) == index - 2

    keygen = sealapi.KeyGenerator(ctx)
    relin_keys = keygen.relin_keys_local()

    assert relin_keys.has_key(2) is True

    pubkey = relin_keys.key(2)[0]
    assert pubkey.data().poly_modulus_degree() == poly_modulus_degree

    assert relin_keys.size() > 0
    assert len(relin_keys.data()) == relin_keys.size()
    assert relin_keys.data(0)[0].data().poly_modulus_degree() == helper_poly_modulus_degree(ctx)
    assert len(relin_keys.parms_id()) == 4

    tmp = NamedTemporaryFile()
    serial = keygen.relin_keys()
    serial.save(tmp.name)
    assert Path(tmp.name).stat().st_size > 0

    tmp = NamedTemporaryFile()
    keygen.relin_keys_local().save(tmp.name)
    save_test = sealapi.RelinKeys()
    assert save_test.has_key(2) is False
    save_test.load(ctx, tmp.name)
    assert save_test.has_key(2) is True
Ejemplo n.º 6
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def test_keygenerator_galoiskeys(ctx):
    poly_modulus_degree = helper_poly_modulus_degree(ctx)

    idx = 3
    assert sealapi.GaloisKeys.get_index(idx) == (idx - 1) >> 1

    keygen = sealapi.KeyGenerator(ctx)
    galois_keys = keygen.galois_keys_local()

    assert galois_keys.has_key(idx) is True

    pubkey = galois_keys.key(idx)[0]
    assert pubkey.data().poly_modulus_degree() == poly_modulus_degree

    assert galois_keys.size() > 0
    assert len(galois_keys.data()) == poly_modulus_degree
    assert len(galois_keys.data(sealapi.GaloisKeys.get_index(idx))) > 0

    assert (
        galois_keys.data(sealapi.GaloisKeys.get_index(idx))[0].data().poly_modulus_degree()
        == poly_modulus_degree
    )
    assert len(galois_keys.parms_id()) == 4

    tmp = NamedTemporaryFile()
    serial = keygen.galois_keys()
    serial.save(tmp.name)
    assert Path(tmp.name).stat().st_size > 0

    tmp = NamedTemporaryFile()
    keygen.galois_keys_local().save(tmp.name)
    save_test = sealapi.GaloisKeys()
    assert save_test.size() == 0
    save_test.load(ctx, tmp.name)
    assert save_test.size() > 0
Ejemplo n.º 7
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def test_valcheck(check):
    ctx = helper_context_bfv(8192)
    other_ctx = helper_context_ckks(8192)
    invalid_ctx = helper_context_invalid()

    ciphertext = sealapi.Ciphertext(ctx)

    assert check(ciphertext, ctx) is True
    assert check(ciphertext, other_ctx) is False
    assert check(ciphertext, invalid_ctx) is False

    assert sealapi.is_buffer_valid(ciphertext) is True

    plaintext = sealapi.Plaintext()

    assert check(plaintext, ctx) is True
    assert check(plaintext, other_ctx) is True
    assert check(plaintext, invalid_ctx) is False

    keygen = sealapi.KeyGenerator(ctx)

    pk = sealapi.PublicKey()
    keygen.create_public_key(pk)

    rk = sealapi.RelinKeys()
    keygen.create_relin_keys(rk)

    gk = sealapi.GaloisKeys()
    keygen.create_galois_keys(gk)

    for key in [pk, keygen.secret_key(), gk, rk]:
        assert check(key, ctx) is True
        assert check(key, other_ctx) is False
        assert check(key, invalid_ctx) is False
        assert sealapi.is_buffer_valid(key) is True
Ejemplo n.º 8
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def test_valcheck(check):
    ctx = helper_context_bfv(8192)
    other_ctx = helper_context_ckks(8192)
    invalid_ctx = helper_context_invalid()

    ciphertext = sealapi.Ciphertext(ctx)

    assert check(ciphertext, ctx) is True
    assert check(ciphertext, other_ctx) is False
    assert check(ciphertext, invalid_ctx) is False

    assert sealapi.is_buffer_valid(ciphertext) is True

    plaintext = sealapi.Plaintext()

    assert check(plaintext, ctx) is True
    assert check(plaintext, other_ctx) is True
    assert check(plaintext, invalid_ctx) is False

    keygen = sealapi.KeyGenerator(ctx)

    for key in [
            keygen.public_key(),
            keygen.secret_key(),
            keygen.galois_keys_local(),
            keygen.relin_keys_local(),
    ]:
        assert check(key, ctx) is True
        assert check(key, other_ctx) is False
        assert check(key, invalid_ctx) is False
        assert sealapi.is_buffer_valid(key) is True
Ejemplo n.º 9
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def test_keygenerator_galoiskeys_with_steps(ctx):
    ctx_data = ctx.key_context_data()
    parms = ctx_data.parms()
    poly_modulus_degree = parms.poly_modulus_degree()

    idx = sealapi.GaloisKeys.get_index(7)

    keygen = sealapi.KeyGenerator(ctx)
    galois_keys = keygen.galois_keys_local([idx])

    assert galois_keys.has_key(idx) is True

    pubkey = galois_keys.key(idx)[0]
    assert pubkey.data().poly_modulus_degree() == poly_modulus_degree

    assert galois_keys.size() > 0
    assert len(galois_keys.data()) == poly_modulus_degree
    assert len(galois_keys.data(sealapi.GaloisKeys.get_index(idx))) > 0

    assert (
        galois_keys.data(sealapi.GaloisKeys.get_index(idx))[0].data().poly_modulus_degree()
        == poly_modulus_degree
    )
    assert len(galois_keys.parms_id()) == 4

    tmp = NamedTemporaryFile()
    serial = keygen.galois_keys([idx])
    serial.save(tmp.name)
    assert Path(tmp.name).stat().st_size > 0
Ejemplo n.º 10
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def test_ckks_encoder(testcase):
    ctx = helper_context_ckks()
    encoder = sealapi.CKKSEncoder(ctx)

    plaintext = sealapi.Plaintext()
    encoder.encode(testcase, 2**40, plaintext)
    out = encoder.decode_double(plaintext)

    is_close_enough(out, testcase)

    keygen = sealapi.KeyGenerator(ctx)
    public_key = keygen.public_key()
    secret_key = keygen.secret_key()

    decryptor = sealapi.Decryptor(ctx, secret_key)
    encryptor = sealapi.Encryptor(ctx, public_key, secret_key)

    plaintext = sealapi.Plaintext()
    ciphertext = sealapi.Ciphertext(ctx)

    encoder.encode(testcase, 2**40, plaintext)
    encryptor.encrypt(plaintext, ciphertext)

    plaintext_out = sealapi.Plaintext()

    decryptor.decrypt(ciphertext, plaintext_out)
    decrypted = encoder.decode_double(plaintext)
    is_close_enough(decrypted, testcase)
Ejemplo n.º 11
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def test_evaluator_rotate_bfv():
    parms = sealapi.EncryptionParameters(sealapi.SCHEME_TYPE.BFV)
    parms.set_poly_modulus_degree(8)
    parms.set_plain_modulus(257)

    coeff = sealapi.CoeffModulus.Create(8, [40, 40])
    parms.set_coeff_modulus(coeff)
    ctx = sealapi.SEALContext.Create(parms, False, sealapi.SEC_LEVEL_TYPE.NONE)

    keygen = sealapi.KeyGenerator(ctx)
    galois_keys = keygen.galois_keys_local()

    decryptor = sealapi.Decryptor(ctx, keygen.secret_key())
    encryptor = sealapi.Encryptor(ctx, keygen.public_key())

    evaluator = sealapi.Evaluator(ctx)
    encoder = sealapi.BatchEncoder(ctx)

    testcase = [1, 2, 3, 4, 5, 6, 7, 8]
    # Input
    # 1, 2, 3, 4,
    # 5, 6, 7, 8

    plain = sealapi.Plaintext()
    encoder.encode(testcase, plain)

    encrypted = sealapi.Ciphertext(ctx)
    encryptor.encrypt(plain, encrypted)

    evaluator.rotate_columns_inplace(encrypted, galois_keys)
    decryptor.decrypt(encrypted, plain)
    # Rotate columns
    # 5, 6, 7, 8,
    # 1, 2, 3, 4

    assert encoder.decode_int64(plain) == [5, 6, 7, 8, 1, 2, 3, 4]

    evaluator.rotate_rows_inplace(encrypted, -1, galois_keys)
    decryptor.decrypt(encrypted, plain)
    # Shift rows -1
    # 8, 5, 6, 7,
    # 4, 1, 2, 3,
    assert encoder.decode_int64(plain) == [8, 5, 6, 7, 4, 1, 2, 3]

    cout = sealapi.Ciphertext(ctx)
    evaluator.rotate_rows(encrypted, 2, galois_keys, cout)
    decryptor.decrypt(cout, plain)
    # Shift rows +2
    # 6, 7, 8, 5,
    # 2, 3, 4, 1,
    assert encoder.decode_int64(plain) == [6, 7, 8, 5, 2, 3, 4, 1]

    evaluator.rotate_columns(cout, galois_keys, encrypted)
    decryptor.decrypt(encrypted, plain)
    # Rotate columns
    # 2, 3, 4, 1,
    # 6, 7, 8, 5,
    assert encoder.decode_int64(plain) == [2, 3, 4, 1, 6, 7, 8, 5]
Ejemplo n.º 12
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def test_evaluator_rotate_vector():
    testcase = [complex(i, i) for i in range(4)]

    slot_size = len(testcase)
    delta = 1 << 30

    parms = sealapi.EncryptionParameters(sealapi.SCHEME_TYPE.CKKS)
    poly_modulus = 2 * slot_size
    parms.set_poly_modulus_degree(poly_modulus)
    parms.set_plain_modulus(0)

    coeff = sealapi.CoeffModulus.Create(poly_modulus, [40, 40, 40, 40])
    parms.set_coeff_modulus(coeff)
    ctx = sealapi.SEALContext(parms, False, sealapi.SEC_LEVEL_TYPE.NONE)

    ctx = helper_context_ckks()

    keygen = sealapi.KeyGenerator(ctx)
    galois_keys = sealapi.GaloisKeys()
    keygen.create_galois_keys(galois_keys)

    pk = sealapi.PublicKey()
    keygen.create_public_key(pk)
    decryptor = sealapi.Decryptor(ctx, keygen.secret_key())
    encryptor = sealapi.Encryptor(ctx, pk)

    evaluator = sealapi.Evaluator(ctx)
    encoder = sealapi.CKKSEncoder(ctx)

    plain = sealapi.Plaintext()
    encoder.encode(testcase, ctx.first_parms_id(), delta, plain)

    encrypted = sealapi.Ciphertext(ctx)
    encryptor.encrypt(plain, encrypted)

    # inplace
    steps = 1
    evaluator.rotate_vector_inplace(encrypted, steps, galois_keys)
    decryptor.decrypt(encrypted, plain)

    decoded = encoder.decode_complex(plain)[:slot_size]

    for idx in range(slot_size):
        off = (idx + steps) % slot_size
        assert abs(testcase[off].real - decoded[idx].real) < 0.1
        assert abs(testcase[off].imag - decoded[idx].imag) < 0.1

    # to another ciphertext
    steps = -steps
    out = sealapi.Ciphertext(ctx)
    evaluator.rotate_vector(encrypted, steps, galois_keys, out)
    decryptor.decrypt(out, plain)

    decoded = encoder.decode_complex(plain)[:slot_size]

    for idx in range(slot_size):
        assert abs(testcase[idx].real - decoded[idx].real) < 0.1
        assert abs(testcase[idx].imag - decoded[idx].imag) < 0.1
Ejemplo n.º 13
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def test_keygenerator_publickey(ctx):
    keygen = sealapi.KeyGenerator(ctx)
    public_key = keygen.public_key()
    assert public_key.data().parms_id() == public_key.parms_id()
    assert public_key.data().poly_modulus_degree() == helper_poly_modulus_degree(ctx)

    tmp = NamedTemporaryFile()
    public_key.save(tmp.name)
    save_test = sealapi.PublicKey()
    save_test.load(ctx, tmp.name)
    assert save_test.parms_id() == public_key.parms_id()
Ejemplo n.º 14
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def helper_generate_evaluator(ctx):
    evaluator = sealapi.Evaluator(ctx)

    keygen = sealapi.KeyGenerator(ctx)
    public_key = keygen.public_key()
    secret_key = keygen.secret_key()
    relin_keys = keygen.relin_keys_local()

    decryptor = sealapi.Decryptor(ctx, secret_key)
    encryptor = sealapi.Encryptor(ctx, public_key, secret_key)

    return evaluator, encryptor, decryptor, relin_keys
Ejemplo n.º 15
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def test_evaluator_conjugate():
    testcase = [complex(i, i) for i in range(32)]

    slot_size = len(testcase)
    delta = 1 << 30

    parms = sealapi.EncryptionParameters(sealapi.SCHEME_TYPE.CKKS)
    poly_modulus = 2 * slot_size
    parms.set_poly_modulus_degree(poly_modulus)
    parms.set_plain_modulus(0)

    coeff = sealapi.CoeffModulus.Create(poly_modulus, [40, 40, 40, 40])
    parms.set_coeff_modulus(coeff)
    ctx = sealapi.SEALContext.Create(parms, False, sealapi.SEC_LEVEL_TYPE.NONE)

    ctx = helper_context_ckks()

    keygen = sealapi.KeyGenerator(ctx)
    galois_keys = keygen.galois_keys_local()

    decryptor = sealapi.Decryptor(ctx, keygen.secret_key())
    encryptor = sealapi.Encryptor(ctx, keygen.public_key())

    evaluator = sealapi.Evaluator(ctx)
    encoder = sealapi.CKKSEncoder(ctx)

    plain = sealapi.Plaintext()
    encoder.encode(testcase, ctx.first_parms_id(), delta, plain)

    encrypted = sealapi.Ciphertext(ctx)
    encryptor.encrypt(plain, encrypted)

    evaluator.complex_conjugate_inplace(encrypted, galois_keys)
    decryptor.decrypt(encrypted, plain)

    decoded = encoder.decode_complex(plain)[:slot_size]

    for idx in range(slot_size):
        assert abs(testcase[idx].real - decoded[idx].real) < 0.1
        assert abs(testcase[idx].imag + decoded[idx].imag) < 0.1

    out = sealapi.Ciphertext(ctx)
    evaluator.complex_conjugate(encrypted, galois_keys, out)
    decryptor.decrypt(out, plain)

    decoded = encoder.decode_complex(plain)[:slot_size]

    for idx in range(slot_size):
        assert abs(testcase[idx].real - decoded[idx].real) < 0.1
        assert abs(testcase[idx].imag - decoded[idx].imag) < 0.1
Ejemplo n.º 16
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def helper_generate_evaluator(ctx):
    evaluator = sealapi.Evaluator(ctx)

    keygen = sealapi.KeyGenerator(ctx)
    public_key = sealapi.PublicKey()
    keygen.create_public_key(public_key)
    secret_key = keygen.secret_key()
    relin_keys = sealapi.RelinKeys()
    keygen.create_relin_keys(relin_keys)

    decryptor = sealapi.Decryptor(ctx, secret_key)
    encryptor = sealapi.Encryptor(ctx, public_key, secret_key)

    return evaluator, encryptor, decryptor, relin_keys
Ejemplo n.º 17
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def test_keygenerator_publickey(ctx):
    keygen = sealapi.KeyGenerator(ctx)
    public_key = keygen.public_key()
    assert public_key.data().parms_id() == public_key.parms_id()
    assert public_key.data().poly_modulus_degree(
    ) == helper_poly_modulus_degree(ctx)

    def save_load(path):
        public_key.save(path)
        save_test = sealapi.PublicKey()
        save_test.load(ctx, path)
        assert save_test.parms_id() == public_key.parms_id()

    tmp_file(save_load)
Ejemplo n.º 18
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def test_ciphertext(testcase, scheme, ctx):
    poly_modulus_degree = helper_poly_modulus_degree(ctx)

    ctx_data = ctx.key_context_data()
    parms = ctx_data.parms()
    coeff_mod_count = len(parms.coeff_modulus())

    keygen = sealapi.KeyGenerator(ctx)

    ciphertext = sealapi.Ciphertext(ctx)
    plaintext = helper_encode(scheme, ctx, testcase)

    pk = sealapi.PublicKey()
    keygen.create_public_key(pk)

    encryptor = sealapi.Encryptor(ctx, pk)
    decryptor = sealapi.Decryptor(ctx, keygen.secret_key())

    encryptor.encrypt(plaintext, ciphertext)

    assert len(ciphertext.parms_id()) > 0
    assert ciphertext.scale > 0
    assert ciphertext.coeff_modulus_size() == coeff_mod_count - 1

    assert ciphertext.poly_modulus_degree() == poly_modulus_degree
    assert ciphertext.dyn_array().size() > 0
    assert ciphertext.size() == 2
    assert ciphertext.size_capacity() == 2
    assert ciphertext.is_transparent() is False
    assert ciphertext.is_ntt_form() is (scheme == sealapi.SCHEME_TYPE.CKKS)

    def save_load(path):
        ciphertext.save(path)
        save_test = sealapi.Ciphertext(ctx)
        save_test.load(ctx, path)
        decryptor.decrypt(save_test, plaintext)
        decoded = helper_decode(scheme, ctx, plaintext)
        is_close_enough(decoded[: len(testcase)], testcase)

    tmp_file(save_load)

    ciphertext.resize(ctx, 10)
    assert ciphertext.size() == 10
    assert ciphertext.size_capacity() == 10

    ciphertext.reserve(15)
    assert ciphertext.size() == 10
    assert ciphertext.size_capacity() == 15
Ejemplo n.º 19
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def test_keygenerator_secretkey(ctx):
    keygen = sealapi.KeyGenerator(ctx)
    secret_key = keygen.secret_key()
    assert secret_key.data().parms_id() == secret_key.parms_id()
    assert secret_key.data().is_ntt_form() is True

    ctx_data = ctx.key_context_data()
    parms = ctx_data.parms()
    poly_modulus_degree = parms.poly_modulus_degree()
    coeff_mod_count = len(parms.coeff_modulus())

    assert secret_key.data().coeff_count() == coeff_mod_count * poly_modulus_degree

    tmp = NamedTemporaryFile()
    secret_key.save(tmp.name)
    save_test = sealapi.SecretKey()
    save_test.load(ctx, tmp.name)
    assert save_test.data().parms_id() == secret_key.parms_id()
Ejemplo n.º 20
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def test_keygenerator_secretkey(ctx):
    keygen = sealapi.KeyGenerator(ctx)
    secret_key = keygen.secret_key()
    assert secret_key.data().parms_id() == secret_key.parms_id()
    assert secret_key.data().is_ntt_form() is True

    ctx_data = ctx.key_context_data()
    parms = ctx_data.parms()
    poly_modulus_degree = parms.poly_modulus_degree()
    coeff_mod_count = len(parms.coeff_modulus())

    assert secret_key.data().coeff_count(
    ) == coeff_mod_count * poly_modulus_degree

    def save_load(path):
        secret_key.save(path)
        save_test = sealapi.SecretKey()
        save_test.load(ctx, path)
        assert save_test.data().parms_id() == secret_key.parms_id()

    tmp_file(save_load)
Ejemplo n.º 21
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def test_keygenerator_galoiskeys_with_steps(ctx):
    ctx_data = ctx.key_context_data()
    parms = ctx_data.parms()
    poly_modulus_degree = parms.poly_modulus_degree()

    idx = sealapi.GaloisKeys.get_index(7)

    keygen = sealapi.KeyGenerator(ctx)
    galois_keys = sealapi.GaloisKeys()
    keygen.create_galois_keys([idx], galois_keys)

    assert galois_keys.has_key(idx) is True

    pubkey = galois_keys.key(idx)[0]
    assert pubkey.data().poly_modulus_degree() == poly_modulus_degree

    assert galois_keys.size() > 0
    assert len(galois_keys.data()) == poly_modulus_degree
    assert len(galois_keys.data(sealapi.GaloisKeys.get_index(idx))) > 0

    assert (galois_keys.data(sealapi.GaloisKeys.get_index(idx))
            [0].data().poly_modulus_degree() == poly_modulus_degree)
    assert len(galois_keys.parms_id()) == 4
Ejemplo n.º 22
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def test_decryptor():
    poly_modulus_degree = 4096
    plain_modulus = 1024
    ctx = helper_context_bfv(poly_modulus_degree, plain_modulus)

    keygen = sealapi.KeyGenerator(ctx)
    intenc = sealapi.IntegerEncoder(ctx)
    public_key = keygen.public_key()
    secret_key = keygen.secret_key()

    decryptor = sealapi.Decryptor(ctx, secret_key)
    encryptor = sealapi.Encryptor(ctx, public_key, secret_key)

    expected_value = 1234
    plaintext = intenc.encode(expected_value)

    ciphertext = sealapi.Ciphertext(ctx)
    encryptor.encrypt(plaintext, ciphertext)
    plaintext_out = sealapi.Plaintext()

    assert decryptor.invariant_noise_budget(ciphertext) > 0

    decryptor.decrypt(ciphertext, plaintext_out)
    assert intenc.decode_int64(plaintext_out) == expected_value
Ejemplo n.º 23
0
def test_encryptor_bfv():
    batch = [1, 2, 3, 4, 5]
    poly_modulus_degree = 8192
    plain_modulus = 1032193

    ctx = helper_context_bfv(poly_modulus_degree, plain_modulus)

    keygen = sealapi.KeyGenerator(ctx)
    batchenc = sealapi.BatchEncoder(ctx)

    public_key = sealapi.PublicKey()
    keygen.create_public_key(public_key)

    secret_key = keygen.secret_key()

    decryptor = sealapi.Decryptor(ctx, secret_key)

    plaintext = sealapi.Plaintext()
    batchenc.encode(batch, plaintext)

    def _test_encryptor_symmetric_setup(encryptor):
        # encrypt symmetric
        ciphertext = sealapi.Ciphertext(ctx)
        encryptor.encrypt_symmetric(plaintext, ciphertext)
        plaintext_out = sealapi.Plaintext()
        decryptor.decrypt(ciphertext, plaintext_out)
        assert batchenc.decode_int64(plaintext_out)[: len(batch)] == batch
        plaintext_out.set_zero()

        def save_load(path):
            serial = encryptor.encrypt_symmetric(plaintext)
            serial.save(path)
            assert Path(path).stat().st_size > 0

        tmp_file(save_load)
        plaintext_out.set_zero()

        # zero symmetric
        ciphertext = sealapi.Ciphertext(ctx)
        encryptor.encrypt_zero_symmetric(ciphertext)
        plaintext_out = sealapi.Plaintext()
        decryptor.decrypt(ciphertext, plaintext_out)
        assert batchenc.decode_int64(plaintext_out)[: len(batch)] == [0] * len(batch)
        plaintext_out.set_zero()

        # zero symmetric parms_id
        ciphertext = sealapi.Ciphertext(ctx)
        encryptor.encrypt_zero_symmetric(ctx.last_parms_id(), ciphertext)
        plaintext_out = sealapi.Plaintext()
        decryptor.decrypt(ciphertext, plaintext_out)
        assert batchenc.decode_int64(plaintext_out)[: len(batch)] == [0] * len(batch)
        plaintext_out.set_zero()

    def _test_encryptor_pk_setup(encryptor):
        ciphertext = sealapi.Ciphertext(ctx)
        encryptor.encrypt(plaintext, ciphertext)
        plaintext_out = sealapi.Plaintext()
        decryptor.decrypt(ciphertext, plaintext_out)
        assert batchenc.decode_int64(plaintext_out)[: len(batch)] == batch
        plaintext_out.set_zero()

        ciphertext = sealapi.Ciphertext(ctx)
        encryptor.encrypt_zero(ciphertext)
        plaintext_out = sealapi.Plaintext()
        decryptor.decrypt(ciphertext, plaintext_out)
        assert batchenc.decode_int64(plaintext_out)[: len(batch)] == [0] * len(batch)
        plaintext_out.set_zero()

        ciphertext = sealapi.Ciphertext(ctx)
        encryptor.encrypt_zero(ctx.last_parms_id(), ciphertext)
        plaintext_out = sealapi.Plaintext()
        decryptor.decrypt(ciphertext, plaintext_out)
        assert batchenc.decode_int64(plaintext_out)[: len(batch)] == [0] * len(batch)
        plaintext_out.set_zero()

    encryptor = sealapi.Encryptor(ctx, public_key)
    _test_encryptor_pk_setup(encryptor)

    encryptor = sealapi.Encryptor(ctx, public_key, secret_key)
    _test_encryptor_symmetric_setup(encryptor)
    _test_encryptor_pk_setup(encryptor)

    encryptor = sealapi.Encryptor(ctx, secret_key)
    _test_encryptor_symmetric_setup(encryptor)

    encryptor = sealapi.Encryptor(ctx, public_key)
    encryptor.set_secret_key(secret_key)
    _test_encryptor_pk_setup(encryptor)
    _test_encryptor_symmetric_setup(encryptor)

    encryptor = sealapi.Encryptor(ctx, secret_key)
    encryptor.set_public_key(public_key)
    _test_encryptor_pk_setup(encryptor)
    _test_encryptor_symmetric_setup(encryptor)
Ejemplo n.º 24
0
def test_evaluator_mod_switch():
    poly_modulus_degree = 8192
    plain_modulus = 1032193

    ctx = helper_context_bfv(poly_modulus_degree, plain_modulus)

    batchenc = sealapi.BatchEncoder(ctx)
    keygen = sealapi.KeyGenerator(ctx)

    public_key = sealapi.PublicKey()
    keygen.create_public_key(public_key)
    secret_key = keygen.secret_key()

    decryptor = sealapi.Decryptor(ctx, secret_key)
    encryptor = sealapi.Encryptor(ctx, public_key)

    evaluator = sealapi.Evaluator(ctx)

    # cphertext mod switch to next
    expected_value = [1, 2, 3, 4, 5]
    plain = sealapi.Plaintext()
    batchenc.encode(expected_value, plain)

    out = sealapi.Plaintext()
    enc = sealapi.Ciphertext(ctx)

    encryptor.encrypt(plain, enc)

    before = decryptor.invariant_noise_budget(enc)
    evaluator.mod_switch_to_next_inplace(enc)
    after = decryptor.invariant_noise_budget(enc)
    assert before > after
    decryptor.decrypt(enc, out)
    assert batchenc.decode_int64(out)[:len(expected_value)] == expected_value

    # ciphertext mod switch to next
    expected_value = [1, 2, 3, 4, 5]
    plain = sealapi.Plaintext()
    batchenc.encode(expected_value, plain)

    out = sealapi.Plaintext()
    enc = sealapi.Ciphertext(ctx)
    cout = sealapi.Ciphertext(ctx)

    encryptor.encrypt(plain, enc)

    before = decryptor.invariant_noise_budget(enc)
    evaluator.mod_switch_to_next(enc, cout)
    after = decryptor.invariant_noise_budget(cout)
    assert before > after
    decryptor.decrypt(cout, out)
    assert batchenc.decode_int64(out)[:len(expected_value)] == expected_value

    # cphertext mod switch to inplace
    parms_id = ctx.last_parms_id()
    expected_value = [1, 2, 3, 4, 5]
    plain = sealapi.Plaintext()
    batchenc.encode(expected_value, plain)

    out = sealapi.Plaintext()
    enc = sealapi.Ciphertext(ctx)
    cout = sealapi.Ciphertext(ctx)

    encryptor.encrypt(plain, enc)

    before = decryptor.invariant_noise_budget(enc)
    evaluator.mod_switch_to_inplace(enc, parms_id)
    after = decryptor.invariant_noise_budget(enc)
    assert before > after
    decryptor.decrypt(enc, out)
    assert batchenc.decode_int64(out)[:len(expected_value)] == expected_value
    assert enc.parms_id() == parms_id

    # ciphertext mod switch to
    parms_id = ctx.last_parms_id()
    expected_value = [1, 2, 3, 4, 5]
    plain = sealapi.Plaintext()
    batchenc.encode(expected_value, plain)

    out = sealapi.Plaintext()
    enc = sealapi.Ciphertext(ctx)
    cout = sealapi.Ciphertext(ctx)

    encryptor.encrypt(plain, enc)

    before = decryptor.invariant_noise_budget(enc)
    evaluator.mod_switch_to(enc, parms_id, cout)
    after = decryptor.invariant_noise_budget(cout)
    assert before > after
    decryptor.decrypt(cout, out)
    assert batchenc.decode_int64(out)[:len(expected_value)] == expected_value
    assert cout.parms_id() == parms_id

    pol_str = "1x^3 + 1x^1 + 3"
    # plaintext mod switch to next inplace
    plain = sealapi.Plaintext(pol_str)
    evaluator.transform_to_ntt_inplace(plain, ctx.first_parms_id())
    assert plain.is_ntt_form() is True
    evaluator.mod_switch_to_next_inplace(plain)
    assert plain.parms_id() != ctx.first_parms_id()

    # plaintext mod switch to next inplace failure
    plain = sealapi.Plaintext(pol_str)
    evaluator.transform_to_ntt_inplace(plain, ctx.last_parms_id())
    assert plain.is_ntt_form() is True
    with pytest.raises(BaseException):
        evaluator.mod_switch_to_next_inplace(plain)

    # plaintext mod switch to inplace
    plain = sealapi.Plaintext(pol_str)
    evaluator.transform_to_ntt_inplace(plain, ctx.first_parms_id())
    assert plain.is_ntt_form() is True
    evaluator.mod_switch_to_inplace(plain, ctx.last_parms_id())
    assert plain.parms_id() == ctx.last_parms_id()

    # plaintext mod switch to next
    plain = sealapi.Plaintext(pol_str)
    plain_out = sealapi.Plaintext()

    evaluator.transform_to_ntt(plain, ctx.first_parms_id(), plain_out)
    assert plain_out.is_ntt_form() is True

    plain_next = sealapi.Plaintext()
    evaluator.mod_switch_to_next(plain_out, plain_next)
    assert plain_out.parms_id() == ctx.first_parms_id()
    assert plain_next.parms_id() != ctx.first_parms_id()

    # plaintext mod switch to
    plain = sealapi.Plaintext(pol_str)
    plain_out = sealapi.Plaintext()

    evaluator.transform_to_ntt(plain, ctx.first_parms_id(), plain_out)
    assert plain_out.is_ntt_form() is True

    plain_next = sealapi.Plaintext()
    evaluator.mod_switch_to(plain_out, ctx.last_parms_id(), plain_next)
    assert plain_out.parms_id() == ctx.first_parms_id()
    assert plain_next.parms_id() == ctx.last_parms_id()
Ejemplo n.º 25
0
def test_evaluator_mod_switch():
    scheme = sealapi.SCHEME_TYPE.BFV
    parms = sealapi.EncryptionParameters(scheme)
    parms.set_poly_modulus_degree(128)
    parms.set_plain_modulus(1 << 6)
    coeff = sealapi.CoeffModulus.Create(128, [30, 30, 30])
    parms.set_coeff_modulus(coeff)
    ctx = sealapi.SEALContext.Create(parms, True, sealapi.SEC_LEVEL_TYPE.NONE)

    intenc = sealapi.IntegerEncoder(ctx)
    keygen = sealapi.KeyGenerator(ctx)
    public_key = keygen.public_key()
    secret_key = keygen.secret_key()

    decryptor = sealapi.Decryptor(ctx, secret_key)
    encryptor = sealapi.Encryptor(ctx, public_key)

    evaluator = sealapi.Evaluator(ctx)

    # cphertext mod switch to next
    expected_value = 1234
    plain = intenc.encode(expected_value)
    out = sealapi.Plaintext()
    enc = sealapi.Ciphertext(ctx)

    encryptor.encrypt(plain, enc)

    before = decryptor.invariant_noise_budget(enc)
    evaluator.mod_switch_to_next_inplace(enc)
    after = decryptor.invariant_noise_budget(enc)
    assert before > after
    decryptor.decrypt(enc, out)
    assert intenc.decode_int64(out) == expected_value

    # ciphertext mod switch to next
    plain = intenc.encode(expected_value)
    out = sealapi.Plaintext()
    enc = sealapi.Ciphertext(ctx)
    cout = sealapi.Ciphertext(ctx)

    encryptor.encrypt(plain, enc)

    before = decryptor.invariant_noise_budget(enc)
    evaluator.mod_switch_to_next(enc, cout)
    after = decryptor.invariant_noise_budget(cout)
    assert before > after
    decryptor.decrypt(cout, out)
    assert intenc.decode_int64(out) == expected_value

    # cphertext mod switch to inplace
    parms_id = ctx.last_parms_id()
    plain = intenc.encode(expected_value)
    out = sealapi.Plaintext()
    enc = sealapi.Ciphertext(ctx)
    cout = sealapi.Ciphertext(ctx)

    encryptor.encrypt(plain, enc)

    before = decryptor.invariant_noise_budget(enc)
    evaluator.mod_switch_to_inplace(enc, parms_id)
    after = decryptor.invariant_noise_budget(enc)
    assert before > after
    decryptor.decrypt(enc, out)
    assert intenc.decode_int64(out) == expected_value
    assert enc.parms_id() == parms_id

    # ciphertext mod switch to
    parms_id = ctx.last_parms_id()
    plain = intenc.encode(expected_value)
    out = sealapi.Plaintext()
    enc = sealapi.Ciphertext(ctx)
    cout = sealapi.Ciphertext(ctx)

    encryptor.encrypt(plain, enc)

    before = decryptor.invariant_noise_budget(enc)
    evaluator.mod_switch_to(enc, parms_id, cout)
    after = decryptor.invariant_noise_budget(cout)
    assert before > after
    decryptor.decrypt(cout, out)
    assert intenc.decode_int64(out) == expected_value
    assert cout.parms_id() == parms_id

    pol_str = "1x^3 + 1x^1 + 3"
    # plaintext mod switch to next inplace
    plain = sealapi.Plaintext(pol_str)
    evaluator.transform_to_ntt_inplace(plain, ctx.first_parms_id())
    assert plain.is_ntt_form() is True
    evaluator.mod_switch_to_next_inplace(plain)
    assert plain.parms_id() != ctx.first_parms_id()

    # plaintext mod switch to next inplace failure
    plain = sealapi.Plaintext(pol_str)
    evaluator.transform_to_ntt_inplace(plain, ctx.last_parms_id())
    assert plain.is_ntt_form() is True
    with pytest.raises(BaseException):
        evaluator.mod_switch_to_next_inplace(plain)

    # plaintext mod switch to inplace
    plain = sealapi.Plaintext(pol_str)
    evaluator.transform_to_ntt_inplace(plain, ctx.first_parms_id())
    assert plain.is_ntt_form() is True
    evaluator.mod_switch_to_inplace(plain, ctx.last_parms_id())
    assert plain.parms_id() == ctx.last_parms_id()

    # plaintext mod switch to next
    plain = sealapi.Plaintext(pol_str)
    plain_out = sealapi.Plaintext()

    evaluator.transform_to_ntt(plain, ctx.first_parms_id(), plain_out)
    assert plain_out.is_ntt_form() is True

    plain_next = sealapi.Plaintext()
    evaluator.mod_switch_to_next(plain_out, plain_next)
    assert plain_out.parms_id() == ctx.first_parms_id()
    assert plain_next.parms_id() != ctx.first_parms_id()

    # plaintext mod switch to
    plain = sealapi.Plaintext(pol_str)
    plain_out = sealapi.Plaintext()

    evaluator.transform_to_ntt(plain, ctx.first_parms_id(), plain_out)
    assert plain_out.is_ntt_form() is True

    plain_next = sealapi.Plaintext()
    evaluator.mod_switch_to(plain_out, ctx.last_parms_id(), plain_next)
    assert plain_out.parms_id() == ctx.first_parms_id()
    assert plain_next.parms_id() == ctx.last_parms_id()
Ejemplo n.º 26
0
def test_encryptor_bfv():
    poly_modulus_degree = 4096
    plain_modulus = 1024
    ctx = helper_context_bfv(poly_modulus_degree, plain_modulus)

    keygen = sealapi.KeyGenerator(ctx)
    intenc = sealapi.IntegerEncoder(ctx)
    public_key = keygen.public_key()
    secret_key = keygen.secret_key()

    decryptor = sealapi.Decryptor(ctx, secret_key)

    expected_value = 1234
    plaintext = intenc.encode(expected_value)

    def _test_encryptor_symmetric_setup(encryptor):
        # encrypt symmetric
        ciphertext = sealapi.Ciphertext(ctx)
        encryptor.encrypt_symmetric(plaintext, ciphertext)
        plaintext_out = sealapi.Plaintext()
        decryptor.decrypt(ciphertext, plaintext_out)
        assert intenc.decode_int64(plaintext_out) == expected_value

        tmp = NamedTemporaryFile()
        serial = encryptor.encrypt_symmetric(plaintext)
        serial.save(tmp.name)
        assert Path(tmp.name).stat().st_size > 0

        plaintext_out.set_zero()

        # zero symmetric
        ciphertext = sealapi.Ciphertext(ctx)
        encryptor.encrypt_zero_symmetric(ciphertext)
        plaintext_out = sealapi.Plaintext()
        decryptor.decrypt(ciphertext, plaintext_out)
        assert intenc.decode_int64(plaintext_out) == 0

        tmp = NamedTemporaryFile()
        serial = encryptor.encrypt_zero_symmetric()
        serial.save(tmp.name)
        assert Path(tmp.name).stat().st_size > 0
        plaintext_out.set_zero()

        # zero symmetric parms_id
        ciphertext = sealapi.Ciphertext(ctx)
        encryptor.encrypt_zero_symmetric(ctx.last_parms_id(), ciphertext)
        plaintext_out = sealapi.Plaintext()
        decryptor.decrypt(ciphertext, plaintext_out)
        assert intenc.decode_int64(plaintext_out) == 0

        tmp = NamedTemporaryFile()
        serial = encryptor.encrypt_zero_symmetric(ctx.last_parms_id())
        serial.save(tmp.name)
        assert Path(tmp.name).stat().st_size > 0

    def _test_encryptor_pk_setup(encryptor):
        ciphertext = sealapi.Ciphertext(ctx)
        encryptor.encrypt(plaintext, ciphertext)
        plaintext_out = sealapi.Plaintext()
        decryptor.decrypt(ciphertext, plaintext_out)
        assert intenc.decode_int64(plaintext_out) == expected_value
        plaintext_out.set_zero()

        ciphertext = sealapi.Ciphertext(ctx)
        encryptor.encrypt_zero(ciphertext)
        plaintext_out = sealapi.Plaintext()
        decryptor.decrypt(ciphertext, plaintext_out)
        assert intenc.decode_int64(plaintext_out) == 0
        plaintext_out.set_zero()

        ciphertext = sealapi.Ciphertext(ctx)
        encryptor.encrypt_zero(ctx.last_parms_id(), ciphertext)
        plaintext_out = sealapi.Plaintext()
        decryptor.decrypt(ciphertext, plaintext_out)
        assert intenc.decode_int64(plaintext_out) == 0
        plaintext_out.set_zero()

    encryptor = sealapi.Encryptor(ctx, public_key)
    _test_encryptor_pk_setup(encryptor)

    encryptor = sealapi.Encryptor(ctx, public_key, secret_key)
    _test_encryptor_symmetric_setup(encryptor)
    _test_encryptor_pk_setup(encryptor)

    encryptor = sealapi.Encryptor(ctx, secret_key)
    _test_encryptor_symmetric_setup(encryptor)

    encryptor = sealapi.Encryptor(ctx, public_key)
    encryptor.set_secret_key(secret_key)
    _test_encryptor_pk_setup(encryptor)
    _test_encryptor_symmetric_setup(encryptor)

    encryptor = sealapi.Encryptor(ctx, secret_key)
    encryptor.set_public_key(public_key)
    _test_encryptor_pk_setup(encryptor)
    _test_encryptor_symmetric_setup(encryptor)