mirror of
https://github.com/TheAlgorithms/Python.git
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2d5dd6f132
* MAINT: Used f-string method Updated the code with f-string methods wherever required for a better and cleaner understanding of the code. * Updated files with f-string method * Update rsa_key_generator.py * Update rsa_key_generator.py * Update elgamal_key_generator.py * Update lru_cache.py I don't think this change is efficient but it might tackle the error as the error was due to using long character lines. * Update lru_cache.py * Update lru_cache.py Co-authored-by: cyai <seriesscar@gmail.com> Co-authored-by: Christian Clauss <cclauss@me.com>
130 lines
4.0 KiB
Python
130 lines
4.0 KiB
Python
"""
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Algorithm for calculating the most cost-efficient sequence for converting one string
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into another.
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The only allowed operations are
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--- Cost to copy a character is copy_cost
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--- Cost to replace a character is replace_cost
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--- Cost to delete a character is delete_cost
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--- Cost to insert a character is insert_cost
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"""
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def compute_transform_tables(
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source_string: str,
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destination_string: str,
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copy_cost: int,
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replace_cost: int,
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delete_cost: int,
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insert_cost: int,
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) -> tuple[list[list[int]], list[list[str]]]:
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source_seq = list(source_string)
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destination_seq = list(destination_string)
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len_source_seq = len(source_seq)
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len_destination_seq = len(destination_seq)
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costs = [
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[0 for _ in range(len_destination_seq + 1)] for _ in range(len_source_seq + 1)
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]
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ops = [
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["0" for _ in range(len_destination_seq + 1)] for _ in range(len_source_seq + 1)
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]
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for i in range(1, len_source_seq + 1):
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costs[i][0] = i * delete_cost
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ops[i][0] = f"D{source_seq[i - 1]:c}"
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for i in range(1, len_destination_seq + 1):
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costs[0][i] = i * insert_cost
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ops[0][i] = f"I{destination_seq[i - 1]:c}"
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for i in range(1, len_source_seq + 1):
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for j in range(1, len_destination_seq + 1):
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if source_seq[i - 1] == destination_seq[j - 1]:
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costs[i][j] = costs[i - 1][j - 1] + copy_cost
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ops[i][j] = f"C{source_seq[i - 1]:c}"
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else:
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costs[i][j] = costs[i - 1][j - 1] + replace_cost
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ops[i][j] = f"R{source_seq[i - 1]:c}" + str(destination_seq[j - 1])
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if costs[i - 1][j] + delete_cost < costs[i][j]:
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costs[i][j] = costs[i - 1][j] + delete_cost
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ops[i][j] = f"D{source_seq[i - 1]:c}"
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if costs[i][j - 1] + insert_cost < costs[i][j]:
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costs[i][j] = costs[i][j - 1] + insert_cost
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ops[i][j] = f"I{destination_seq[j - 1]:c}"
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return costs, ops
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def assemble_transformation(ops: list[list[str]], i: int, j: int) -> list[str]:
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if i == 0 and j == 0:
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return []
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else:
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if ops[i][j][0] == "C" or ops[i][j][0] == "R":
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seq = assemble_transformation(ops, i - 1, j - 1)
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seq.append(ops[i][j])
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return seq
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elif ops[i][j][0] == "D":
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seq = assemble_transformation(ops, i - 1, j)
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seq.append(ops[i][j])
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return seq
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else:
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seq = assemble_transformation(ops, i, j - 1)
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seq.append(ops[i][j])
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return seq
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if __name__ == "__main__":
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_, operations = compute_transform_tables("Python", "Algorithms", -1, 1, 2, 2)
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m = len(operations)
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n = len(operations[0])
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sequence = assemble_transformation(operations, m - 1, n - 1)
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string = list("Python")
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i = 0
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cost = 0
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with open("min_cost.txt", "w") as file:
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for op in sequence:
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print("".join(string))
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if op[0] == "C":
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file.write("%-16s" % "Copy %c" % op[1])
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file.write("\t\t\t" + "".join(string))
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file.write("\r\n")
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cost -= 1
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elif op[0] == "R":
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string[i] = op[2]
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file.write("%-16s" % ("Replace %c" % op[1] + " with " + str(op[2])))
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file.write("\t\t" + "".join(string))
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file.write("\r\n")
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cost += 1
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elif op[0] == "D":
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string.pop(i)
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file.write("%-16s" % "Delete %c" % op[1])
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file.write("\t\t\t" + "".join(string))
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file.write("\r\n")
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cost += 2
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else:
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string.insert(i, op[1])
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file.write("%-16s" % "Insert %c" % op[1])
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file.write("\t\t\t" + "".join(string))
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file.write("\r\n")
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cost += 2
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i += 1
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print("".join(string))
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print("Cost: ", cost)
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file.write("\r\nMinimum cost: " + str(cost))
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