2013-08-10 19:23:38 +00:00
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
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# implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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2013-12-25 05:55:24 +00:00
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import os
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import pytest
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def check_for_iface(name, iface, item):
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if name in item.keywords and "backend" in item.funcargs:
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if not isinstance(item.funcargs["backend"], iface):
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pytest.skip("{0} backend does not support {1}".format(
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item.funcargs["backend"], name
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))
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2013-08-09 04:32:30 +00:00
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2013-12-27 02:19:34 +00:00
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def check_backend_support(item):
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2013-12-27 02:13:45 +00:00
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supported = item.keywords.get("supported")
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if supported and "backend" in item.funcargs:
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if not supported.kwargs["only_if"](item.funcargs["backend"]):
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2014-01-03 05:16:14 +00:00
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pytest.skip("{0} ({1})".format(
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supported.kwargs["skip_message"], item.funcargs["backend"]
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))
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2013-12-27 02:13:45 +00:00
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elif supported:
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2013-12-27 21:51:40 +00:00
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raise ValueError("This mark is only available on methods that take a "
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"backend")
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2013-12-27 02:13:45 +00:00
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2013-11-12 02:43:52 +00:00
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def load_vectors_from_file(filename, loader):
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base = os.path.join(
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os.path.dirname(__file__), "hazmat", "primitives", "vectors",
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)
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with open(os.path.join(base, filename), "r") as vector_file:
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return loader(vector_file)
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2013-11-11 22:46:20 +00:00
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def load_nist_vectors(vector_data):
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2013-11-19 00:12:41 +00:00
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test_data = None
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data = []
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2013-08-09 04:32:30 +00:00
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for line in vector_data:
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line = line.strip()
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2013-11-19 00:12:41 +00:00
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# Blank lines, comments, and section headers are ignored
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if not line or line.startswith("#") or (line.startswith("[")
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and line.endswith("]")):
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2013-11-11 22:25:59 +00:00
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continue
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2013-11-12 21:35:49 +00:00
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if line.strip() == "FAIL":
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2013-11-19 00:12:41 +00:00
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test_data["fail"] = True
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2013-11-12 21:35:49 +00:00
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continue
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2013-08-09 04:32:30 +00:00
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# Build our data using a simple Key = Value format
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2013-11-12 21:35:49 +00:00
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name, value = [c.strip() for c in line.split("=")]
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2013-08-09 04:32:30 +00:00
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# COUNT is a special token that indicates a new block of data
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if name.upper() == "COUNT":
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2013-11-19 00:12:41 +00:00
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test_data = {}
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data.append(test_data)
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continue
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2013-08-09 04:32:30 +00:00
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# For all other tokens we simply want the name, value stored in
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# the dictionary
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else:
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2013-11-19 00:12:41 +00:00
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test_data[name.lower()] = value.encode("ascii")
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2013-08-09 04:32:30 +00:00
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2013-11-19 00:12:41 +00:00
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return data
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2013-08-09 04:32:30 +00:00
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2013-09-15 17:05:43 +00:00
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def load_cryptrec_vectors(vector_data):
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2013-09-27 16:26:01 +00:00
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cryptrec_list = []
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2013-09-15 17:05:43 +00:00
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for line in vector_data:
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line = line.strip()
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# Blank lines and comments are ignored
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if not line or line.startswith("#"):
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continue
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if line.startswith("K"):
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2013-09-27 16:26:01 +00:00
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key = line.split(" : ")[1].replace(" ", "").encode("ascii")
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2013-09-15 17:05:43 +00:00
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elif line.startswith("P"):
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2013-09-27 16:26:01 +00:00
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pt = line.split(" : ")[1].replace(" ", "").encode("ascii")
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2013-09-15 17:05:43 +00:00
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elif line.startswith("C"):
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2013-09-27 16:26:01 +00:00
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ct = line.split(" : ")[1].replace(" ", "").encode("ascii")
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# after a C is found the K+P+C tuple is complete
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# there are many P+C pairs for each K
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2013-10-16 18:59:17 +00:00
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cryptrec_list.append({
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"key": key,
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"plaintext": pt,
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"ciphertext": ct
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})
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2013-10-19 23:33:06 +00:00
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else:
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raise ValueError("Invalid line in file '{}'".format(line))
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2013-09-15 17:05:43 +00:00
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return cryptrec_list
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2013-09-24 21:50:21 +00:00
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def load_openssl_vectors(vector_data):
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vectors = []
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2013-09-15 17:05:43 +00:00
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for line in vector_data:
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line = line.strip()
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# Blank lines and comments are ignored
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if not line or line.startswith("#"):
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continue
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vector = line.split(":")
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2013-10-16 21:16:04 +00:00
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vectors.append({
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"key": vector[1].encode("ascii"),
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"iv": vector[2].encode("ascii"),
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"plaintext": vector[3].encode("ascii"),
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"ciphertext": vector[4].encode("ascii"),
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})
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2013-09-24 21:50:21 +00:00
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return vectors
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2013-10-18 22:28:39 +00:00
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def load_hash_vectors(vector_data):
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vectors = []
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2013-10-27 22:00:14 +00:00
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key = None
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msg = None
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md = None
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2013-10-18 22:28:39 +00:00
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for line in vector_data:
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line = line.strip()
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2013-10-18 23:01:26 +00:00
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if not line or line.startswith("#") or line.startswith("["):
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2013-10-18 22:28:39 +00:00
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continue
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if line.startswith("Len"):
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length = int(line.split(" = ")[1])
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2013-10-28 22:34:27 +00:00
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elif line.startswith("Key"):
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"""
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HMAC vectors contain a key attribute. Hash vectors do not.
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"""
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key = line.split(" = ")[1].encode("ascii")
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2013-10-18 22:28:39 +00:00
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elif line.startswith("Msg"):
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"""
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In the NIST vectors they have chosen to represent an empty
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string as hex 00, which is of course not actually an empty
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string. So we parse the provided length and catch this edge case.
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"""
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msg = line.split(" = ")[1].encode("ascii") if length > 0 else b""
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elif line.startswith("MD"):
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md = line.split(" = ")[1]
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2013-10-28 22:34:27 +00:00
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# after MD is found the Msg+MD (+ potential key) tuple is complete
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2013-10-23 14:41:49 +00:00
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if key is not None:
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2013-10-28 22:34:27 +00:00
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vectors.append((msg, md, key))
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2013-10-27 22:00:14 +00:00
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key = None
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msg = None
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md = None
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2013-10-23 14:41:49 +00:00
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else:
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2013-10-28 22:34:27 +00:00
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vectors.append((msg, md))
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2013-10-27 22:00:14 +00:00
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msg = None
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md = None
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2013-10-18 22:28:39 +00:00
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else:
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raise ValueError("Unknown line in hash vector")
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return vectors
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