main #14
1
.gitignore
vendored
1
.gitignore
vendored
@ -8,3 +8,4 @@ example.py
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ReEncrypt.py
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src/temp_message_file
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src/temp_key_file
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src/client.db
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@ -10,6 +10,7 @@ The project uses the Chinese national standard cryptography algorithm to impleme
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.
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├── basedockerfile (being used to build base iamge)
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├── dockerfile (being used to build application)
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├── doc (development documents)
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├── include (gmssl header)
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├── lib (gmssl shared object)
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├── LICENSE
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@ -1,6 +1,8 @@
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FROM python:3.11
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COPY src /app
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COPY requirements.txt /app/
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COPY lib/* /lib/
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WORKDIR /app
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7
doc/README_app_en.md
Normal file
7
doc/README_app_en.md
Normal file
@ -0,0 +1,7 @@
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# APP Doc
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## Client router
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/request_node
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get method
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pr
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@ -1 +1,3 @@
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gmssl-python
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gmssl-python
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fastapi
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uvicorn
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3
src/client.ini
Normal file
3
src/client.ini
Normal file
@ -0,0 +1,3 @@
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[settings]
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server_address = "127.0.0.1:8000"
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version = 1.0
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197
src/client.py
197
src/client.py
@ -0,0 +1,197 @@
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from fastapi import FastAPI, HTTPException
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import requests
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import os
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from typing import Tuple
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from tpre import *
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import sqlite3
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from contextlib import asynccontextmanager
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@asynccontextmanager
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async def lifespan(app: FastAPI):
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init()
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yield
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clean_env()
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app = FastAPI(lifespan=lifespan)
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pk = point
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sk = int
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server_address = str
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def init():
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global pk, sk, server_address
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init_db()
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pk, sk = GenerateKeyPair()
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init_config()
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get_node_list(6, server_address) # type: ignore
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def init_db():
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with sqlite3.connect("client.db") as db:
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# message table
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db.execute(
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"""
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CREATE TABLE IF NOT EXISTS message (
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id INTEGER PRIMARY KEY,
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capsule TEXT,
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ct TEXT,
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senderip TEXT
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);
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"""
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)
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# node ip table
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db.execute(
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"""
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CREATE TABLE IF NOT EXISTS node (
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id INTEGER PRIMARY KEY,
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nodeip TEXT
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);
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"""
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)
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# sender info table
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db.execute(
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"""
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CREATE TABLE IF NOT EXISTS senderinfo (
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id INTEGER PRIMARY KEY,
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ip TEXT,
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publickey TEXT,
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threshold INTEGER
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)
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"""
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)
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db.commit()
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print("Init Database Successful")
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def init_config():
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import configparser
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global server_address
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config = configparser.ConfigParser()
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config.read("client.ini")
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server_address = config["settings"]["server_address"]
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# execute on exit
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def clean_env():
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print("Exit app")
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# main page
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@app.get("/")
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async def read_root():
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return {"message": "Hello, World!"}
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# receive messages from node
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@app.post("/receive_messages")
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async def receive_messages(C: Tuple[capsule, int], ip: str):
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"""
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receive capsule and ip from nodes
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params:
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C: capsule and ct
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ip: sender ip
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return:
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status_code
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"""
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if not C or not ip:
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raise HTTPException(status_code=400, detail="Invalid input data")
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capsule, ct = C
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if not Checkcapsule(capsule):
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raise HTTPException(status_code=400, detail="Invalid capsule")
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# insert record into database
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with sqlite3.connect("message.db") as db:
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try:
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db.execute(
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"INSERT INTO message (capsule_column, ct_column, ip_column) VALUES (?, ?, ?)",
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(capsule, ct, ip),
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)
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db.commit()
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await check_merge(db, ct, ip)
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return HTTPException(status_code=200, detail="Message received")
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except Exception as e:
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print(f"Error occurred: {e}")
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db.rollback()
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return HTTPException(status_code=400, detail="Database error")
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# check record count
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async def check_merge(db, ct: int, ip: str):
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global sk, pk
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# Check if the combination of ct_column and ip_column appears more than once.
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cursor = db.execute(
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"""
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SELECT capsule, ct
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FROM message
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WHERE ct = ? AND senderip = ?
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""",
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(ct, ip),
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)
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# [(capsule, ct), ...]
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cfrag_cts = cursor.fetchall()
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# get N
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cursor = db.execute(
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"""
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SELECT publickey, threshold
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FROM senderinfo
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WHERE senderip = ?
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""",
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(ip),
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)
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result = cursor.fetchall()
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pk_sender, T = result[0]
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if len(cfrag_cts) >= T:
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cfrags = mergecfrag(cfrag_cts)
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m = DecryptFrags(sk, pk, pk_sender, cfrags) # type: ignore
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# send message to node
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@app.post("/send_message")
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async def send_message(ip: tuple[str, ...]):
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return 0
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# request message from others
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@app.post("/request_message")
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async def request_message(ip):
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return 0
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# get node list from central server
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def get_node_list(count: int, server_addr: str):
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url = "http://" + server_addr + "/server/send_nodes_list"
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payload = {"count": count}
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response = requests.post(url, json=payload)
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# Checking the response
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if response.status_code == 200:
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print("Success get node list")
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node_ip = response.text
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# insert node ip to database
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with sqlite3.connect("client.db") as db:
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db.executemany(
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"""
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INSERT INTO node
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nodeip
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VALUE (?)
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""",
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node_ip,
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)
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db.commit()
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print("Success add node ip")
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else:
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print("Failed:", response.status_code, response.text)
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if __name__ == "__main__":
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import uvicorn # pylint: disable=e0401
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uvicorn.run("client:app", host="0.0.0.0", port=8003)
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26
src/demo.py
26
src/demo.py
@ -1,30 +1,50 @@
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from tpre import *
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import time
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# 1
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start_time = time.time()
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pk_a, sk_a = GenerateKeyPair()
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m = b"hello world"
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end_time = time.time()
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elapsed_time = end_time - start_time
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print(f"代码块1运行时间:{elapsed_time}秒")
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# 2
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start_time = time.time()
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capsule_ct = Encrypt(pk_a, m)
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end_time = time.time()
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elapsed_time = end_time - start_time
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print(f"代码块2运行时间:{elapsed_time}秒")
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# 3
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pk_b, sk_b = GenerateKeyPair()
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N = 70
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T = 49
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N = 10
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T = 5
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# 5
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start_time = time.time()
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rekeys = GenerateReKey(sk_a, pk_b, N, T)
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end_time = time.time()
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elapsed_time = end_time - start_time
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print(f"代码块5运行时间:{elapsed_time}秒")
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# 7
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start_time = time.time()
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cfrag_cts = []
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for rekey in rekeys:
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cfrag_ct = ReEncrypt(rekey, capsule_ct)
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cfrag_cts.append(cfrag_ct)
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end_time = time.time()
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elapsed_time = end_time - start_time
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print(f"代码块7运行时间:{elapsed_time}秒")
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# 9
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start_time = time.time()
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cfrags = mergecfrag(cfrag_cts)
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m = DecryptFrags(sk_b, pk_b, pk_a, cfrags)
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end_time = time.time()
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elapsed_time = end_time - start_time
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print(f"代码块9运行时间:{elapsed_time}秒")
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print(m)
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