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* ci(pre-commit): Add pep8-naming to `pre-commit` hooks (#7038) * refactor: Fix naming conventions (#7038) * Update arithmetic_analysis/lu_decomposition.py Co-authored-by: Christian Clauss <cclauss@me.com> * [pre-commit.ci] auto fixes from pre-commit.com hooks for more information, see https://pre-commit.ci * refactor(lu_decomposition): Replace `NDArray` with `ArrayLike` (#7038) * chore: Fix naming conventions in doctests (#7038) * fix: Temporarily disable project euler problem 104 (#7069) * chore: Fix naming conventions in doctests (#7038) Co-authored-by: Christian Clauss <cclauss@me.com> Co-authored-by: pre-commit-ci[bot] <66853113+pre-commit-ci[bot]@users.noreply.github.com>
239 lines
4.6 KiB
Python
239 lines
4.6 KiB
Python
import math
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def rearrange(bit_string_32):
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"""[summary]
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Regroups the given binary string.
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Arguments:
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bitString32 {[string]} -- [32 bit binary]
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Raises:
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ValueError -- [if the given string not are 32 bit binary string]
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Returns:
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[string] -- [32 bit binary string]
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>>> rearrange('1234567890abcdfghijklmnopqrstuvw')
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'pqrstuvwhijklmno90abcdfg12345678'
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"""
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if len(bit_string_32) != 32:
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raise ValueError("Need length 32")
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new_string = ""
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for i in [3, 2, 1, 0]:
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new_string += bit_string_32[8 * i : 8 * i + 8]
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return new_string
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def reformat_hex(i):
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"""[summary]
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Converts the given integer into 8-digit hex number.
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Arguments:
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i {[int]} -- [integer]
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>>> reformat_hex(666)
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'9a020000'
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"""
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hexrep = format(i, "08x")
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thing = ""
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for i in [3, 2, 1, 0]:
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thing += hexrep[2 * i : 2 * i + 2]
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return thing
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def pad(bit_string):
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"""[summary]
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Fills up the binary string to a 512 bit binary string
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Arguments:
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bitString {[string]} -- [binary string]
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Returns:
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[string] -- [binary string]
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"""
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start_length = len(bit_string)
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bit_string += "1"
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while len(bit_string) % 512 != 448:
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bit_string += "0"
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last_part = format(start_length, "064b")
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bit_string += rearrange(last_part[32:]) + rearrange(last_part[:32])
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return bit_string
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def get_block(bit_string):
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"""[summary]
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Iterator:
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Returns by each call a list of length 16 with the 32 bit
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integer blocks.
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Arguments:
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bit_string {[string]} -- [binary string >= 512]
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"""
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curr_pos = 0
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while curr_pos < len(bit_string):
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curr_part = bit_string[curr_pos : curr_pos + 512]
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my_splits = []
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for i in range(16):
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my_splits.append(int(rearrange(curr_part[32 * i : 32 * i + 32]), 2))
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yield my_splits
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curr_pos += 512
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def not32(i):
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"""
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>>> not32(34)
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4294967261
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"""
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i_str = format(i, "032b")
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new_str = ""
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for c in i_str:
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new_str += "1" if c == "0" else "0"
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return int(new_str, 2)
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def sum32(a, b):
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return (a + b) % 2**32
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def leftrot32(i, s):
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return (i << s) ^ (i >> (32 - s))
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def md5me(test_string):
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"""[summary]
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Returns a 32-bit hash code of the string 'testString'
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Arguments:
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testString {[string]} -- [message]
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"""
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bs = ""
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for i in test_string:
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bs += format(ord(i), "08b")
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bs = pad(bs)
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tvals = [int(2**32 * abs(math.sin(i + 1))) for i in range(64)]
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a0 = 0x67452301
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b0 = 0xEFCDAB89
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c0 = 0x98BADCFE
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d0 = 0x10325476
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s = [
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7,
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12,
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17,
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22,
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7,
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12,
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17,
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22,
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7,
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12,
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17,
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22,
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7,
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12,
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17,
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22,
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5,
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9,
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14,
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20,
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5,
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9,
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14,
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20,
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5,
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9,
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14,
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20,
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5,
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9,
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14,
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20,
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4,
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11,
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16,
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23,
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4,
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11,
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16,
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23,
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4,
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11,
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16,
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23,
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4,
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11,
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16,
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23,
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6,
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10,
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15,
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21,
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6,
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10,
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15,
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21,
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6,
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10,
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15,
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21,
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6,
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10,
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15,
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21,
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]
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for m in get_block(bs):
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a = a0
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b = b0
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c = c0
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d = d0
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for i in range(64):
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if i <= 15:
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# f = (B & C) | (not32(B) & D)
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f = d ^ (b & (c ^ d))
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g = i
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elif i <= 31:
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# f = (D & B) | (not32(D) & C)
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f = c ^ (d & (b ^ c))
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g = (5 * i + 1) % 16
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elif i <= 47:
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f = b ^ c ^ d
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g = (3 * i + 5) % 16
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else:
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f = c ^ (b | not32(d))
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g = (7 * i) % 16
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dtemp = d
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d = c
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c = b
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b = sum32(b, leftrot32((a + f + tvals[i] + m[g]) % 2**32, s[i]))
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a = dtemp
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a0 = sum32(a0, a)
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b0 = sum32(b0, b)
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c0 = sum32(c0, c)
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d0 = sum32(d0, d)
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digest = reformat_hex(a0) + reformat_hex(b0) + reformat_hex(c0) + reformat_hex(d0)
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return digest
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def test():
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assert md5me("") == "d41d8cd98f00b204e9800998ecf8427e"
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assert (
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md5me("The quick brown fox jumps over the lazy dog")
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== "9e107d9d372bb6826bd81d3542a419d6"
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)
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print("Success.")
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if __name__ == "__main__":
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test()
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import doctest
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doctest.testmod()
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