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https://github.com/nelsbrock/fingerprunk.git
synced 2026-08-15 00:16:47 +02:00
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0.1.0
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Generated
+499
-391
File diff suppressed because it is too large
Load Diff
+6
-5
@@ -1,6 +1,6 @@
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[package]
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name = "fingerprunk"
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version = "0.1.0"
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version = "0.2.2"
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authors = ["Niklas Elsbrock <mail@nelsbrock.de>"]
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edition = "2024"
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description = "CLI tool for brute-forcing OpenPGP keys with cool fingerprints"
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@@ -10,10 +10,11 @@ keywords = ["fingerprint", "openpgp", "bruteforce"]
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categories = ["command-line-utilities"]
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[dependencies]
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anyhow = "1.0.100"
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clap = { version = "4.5.50", features = ["derive"] }
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fancy-regex = "0.16.2"
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anyhow = "1.0.102"
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clap = { version = "4.6.0", features = ["derive"] }
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ctrlc = "3.5.2"
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fancy-regex = "0.17.0"
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num-integer = "0.1.46"
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num_cpus = "1.17.0"
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rpassword = "7.4.0"
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sequoia-openpgp = "2.0.0"
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sequoia-openpgp = "2.2.0"
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@@ -13,8 +13,9 @@ cargo install fingerprunk
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## Usage
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Let's say you want to find keys whose fingerprints begin with `C0FFEE` and store them `secret.asc`.
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The regex for this is `^C0FFEE`. Now, simply use the following command to start the search:
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Let's say you want to find keys whose fingerprints begin with `C0FFEE` and store them
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at `secret.asc`. The regex for this is `^C0FFEE`. Now, simply use the following command to start
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the search:
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```sh
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fingerprunk -r '^C0FFEE' >> secret.asc
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@@ -49,25 +50,25 @@ Also see <https://en.wikipedia.org/wiki/Hexspeak> for some further examples of "
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### How long does it take?
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On my machine with an AMD Ryzen 7 5800X Processor, Fingerprunk is able to generate and check about
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43300 keys per second. This means that for finding a fingerprint with a string of *n* specific
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On my machine with an AMD Ryzen 7 5800X processor, Fingerprunk is able to generate and check about
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43500 keys per second. This means that for finding a fingerprint with a string of *n* specific
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hexadecimal digits at a specific place, I could expect the following runtimes until finding the
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first key:
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| *n* | expected tries | expected time |
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| --: | --------------: | ------------: |
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| *n* | 16ⁿ | 43300s / 16ⁿ |
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| 2 | 256 | 0.0059 secs |
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| 3 | 4096 | 0.0946 secs |
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| 4 | 65536 | 1.5 secs |
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| 5 | 1028576 | 24 secs |
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| 6 | 16777216 | 6.5 mins |
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| 7 | 268435456 | 103 mins |
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| 8 | 4294967296 | 27 hours |
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| 9 | 68719476736 | 18 days |
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| 10 | 1099511627776 | 293 days |
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| 11 | 17592186044416 | 13 years |
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| 12 | 281474976710656 | 206 years |
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| *n* | estimate tries | estimate time |
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| --: | ---------------------: | ------------: |
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| 1 | 16 = 16¹ | < 0.1 secs |
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| 2 | 256 = 16² | < 0.1 secs |
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| 3 | 4096 = 16³ | 0.1 secs |
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| 4 | 65536 = 16⁴ | 1.5 secs |
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| 5 | 1048576 = 16⁵ | 24 secs |
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| 6 | 16777216 = 16⁶ | 6 mins |
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| 7 | 268435456 = 16⁷ | 2 hours |
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| 8 | 4294967296 = 16⁸ | 1 days |
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| 9 | 68719476736 = 16⁹ | 18 days |
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| 10 | 1099511627776 = 16¹⁰ | 293 days |
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| 11 | 17592186044416 = 16¹¹ | 13 years |
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| 12 | 281474976710656 = 16¹² | 205 years |
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As you can see, anything above 8 or 9 fixed digits is pretty much unfeasible, at least with
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a normal personal computer.
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As you can see, anything above 10 fixed digits is pretty much unfeasible, at least with a normal
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personal computer.
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+121
-61
@@ -2,10 +2,11 @@
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use std::{
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fmt::{self, Write},
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io::{self},
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io,
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num::NonZeroU64,
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sync::{
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atomic::{AtomicU64, Ordering},
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mpsc::{self, Receiver},
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atomic::{AtomicBool, AtomicU64, Ordering},
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mpsc,
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},
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thread,
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time::{Duration, Instant},
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@@ -14,7 +15,7 @@ use std::{
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use fancy_regex::Regex;
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use num_integer::Integer;
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use sequoia_openpgp::{
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Cert, Packet,
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Cert, Packet, armor,
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crypto::Password,
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packet::{
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Key,
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@@ -22,21 +23,30 @@ use sequoia_openpgp::{
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prelude::SignatureBuilder,
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},
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serialize::Serialize,
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types::{HashAlgorithm, SignatureType, SymmetricAlgorithm},
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types::{Curve, HashAlgorithm, SignatureType, SymmetricAlgorithm},
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};
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type SecretKey = Key<SecretParts, PrimaryRole>;
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#[allow(clippy::large_enum_variant)]
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enum Message {
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Key(SecretKey),
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Stop,
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}
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#[derive(Clone, Debug)]
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pub struct Config {
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pub regex: Regex,
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pub status_enabled: bool,
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pub stop_after: Option<NonZeroU64>,
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pub password: Option<Password>,
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}
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#[derive(Debug)]
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pub struct Fingerprunk {
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config: Config,
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started_instant: Instant,
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stop: AtomicBool,
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counter_tried: AtomicU64,
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counter_found: AtomicU64,
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}
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@@ -52,54 +62,90 @@ impl Fingerprunk {
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pub fn new_from_config(config: Config) -> Self {
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Self {
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config,
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started_instant: Instant::now(),
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stop: AtomicBool::new(false),
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counter_tried: AtomicU64::new(0),
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counter_found: AtomicU64::new(0),
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}
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}
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pub fn run(self) {
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let (tx, rx) = mpsc::channel();
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pub fn run(mut self) -> anyhow::Result<()> {
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self.started_instant = Instant::now();
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let (sender, receiver) = mpsc::sync_channel(16);
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{
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let sender = sender.clone();
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ctrlc::set_handler(move || {
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let _ = sender.send(Message::Stop);
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})?;
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}
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thread::scope(|scope| {
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const THREAD_SPAWN_EXPECT_MSG: &str = "should be able to spawn thread";
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let ref_self = &self;
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if self.config.status_enabled {
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thread::Builder::new()
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.name("status_displayer".to_string())
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.spawn_scoped(scope, move || ref_self.status_displayer_thread())
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.expect(THREAD_SPAWN_EXPECT_MSG);
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}
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let status_displayer = if self.config.status_enabled {
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Some(
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thread::Builder::new()
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.name("status_displayer".to_string())
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.spawn_scoped(scope, move || ref_self.status_displayer_thread())?,
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)
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} else {
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None
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};
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for num in 0..num_cpus::get() {
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let tx = tx.clone();
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let sender = sender.clone();
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thread::Builder::new()
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.name(format!("worker-{num:03}"))
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.spawn_scoped(scope, move || ref_self.worker_thread(tx))
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.expect(THREAD_SPAWN_EXPECT_MSG);
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.spawn_scoped(scope, move || ref_self.worker_thread(sender))?;
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}
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thread::Builder::new()
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.name("finalizer".to_string())
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.spawn_scoped(scope, move || ref_self.finalizer_thread(rx))
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.expect(THREAD_SPAWN_EXPECT_MSG);
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});
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let mut stdout = io::stdout().lock();
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// Receive and process messages from the workers and the ctrl-c handler
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for message in receiver {
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match message {
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Message::Key(key) => {
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let cert = self.key_to_cert(&key)?;
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self.serialize_cert(cert, &mut stdout)?;
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// Increase "found" counter and stop if enough matches have been found
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let prev = self.counter_found.fetch_add(1, Ordering::Relaxed);
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if self.config.stop_after.is_some_and(|s| prev + 1 == s.get()) {
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break;
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}
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}
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Message::Stop => break,
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}
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}
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// Ask all other threads to stop
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self.stop.store(true, Ordering::Relaxed);
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// Unpark the status displayer thread, if existant
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if let Some(status_displayer) = status_displayer {
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status_displayer.thread().unpark();
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}
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Ok(())
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})
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}
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fn worker_thread(&self, matches_tx: mpsc::Sender<SecretKey>) {
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fn worker_thread(&self, sender: mpsc::SyncSender<Message>) {
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let mut fingerprint_hex = String::with_capacity(20 * 2);
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loop {
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let key = Key4::generate_ed25519().expect("should be able to generate key");
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while !self.stop.load(Ordering::Relaxed) {
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let key =
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Key4::generate_ecc(true, Curve::Ed25519).expect("should be able to generate key");
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fingerprint_hex.clear();
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write!(fingerprint_hex, "{:X}", key.fingerprint())
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.expect("should write into string without error");
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if self.check_fingerprint(&fingerprint_hex) {
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matches_tx
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.send(Key::V4(key))
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.expect("should be able to send key");
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// The channel might already be closed here if we're stopping.
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// That is fine, so we just ignore the error.
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let _ = sender.send(Message::Key(Key::V4(key)));
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}
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self.counter_tried.fetch_add(1, Ordering::Relaxed);
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}
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@@ -113,22 +159,6 @@ impl Fingerprunk {
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.expect("should check regex without error")
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}
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fn finalizer_thread(&self, matches_rx: Receiver<SecretKey>) {
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let mut stdout = io::stdout().lock();
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for key in matches_rx {
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let result = self
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.key_to_cert(&key)
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.and_then(|cert| cert.as_tsk().armored().serialize(&mut stdout));
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if let Err(err) = result {
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eprintln!("Error: {err}");
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} else {
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self.counter_found.fetch_add(1, Ordering::Relaxed);
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}
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}
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}
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fn key_to_cert(&self, key: &SecretKey) -> anyhow::Result<Cert> {
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let sig = SignatureBuilder::new(SignatureType::DirectKey)
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.set_hash_algo(HashAlgorithm::SHA512)
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@@ -157,7 +187,45 @@ impl Fingerprunk {
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Cert::try_from(vec![secret_key_packet, Packet::from(sig)])
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}
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fn serialize_cert(&self, cert: Cert, to: impl io::Write) -> anyhow::Result<()> {
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let mut comments = cert.armor_headers();
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comments.push(format!(
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"Generated with Fingerprunk. Regex: {}",
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self.config.regex
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));
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let headers: Vec<_> = comments
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.into_iter()
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.map(|s| ("Comment".to_string(), s))
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.collect();
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let mut writer = armor::Writer::with_headers(to, armor::Kind::SecretKey, headers)?;
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// Set the profile to RFC4880 because we generate v4 keys.
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writer.set_profile(sequoia_openpgp::Profile::RFC4880)?;
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cert.serialize(&mut writer)?;
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writer.finalize()?;
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Ok(())
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}
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fn status_displayer_thread(&self) {
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const UPDATE_INTERVAL: Duration = Duration::from_millis(250);
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eprint!("\n\n\n\n\n");
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while !self.stop.load(Ordering::Relaxed) {
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self.print_status();
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// We are parking the thread instead of sleeping so we can unpark it when we want to
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// stop the program.
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thread::park_timeout(UPDATE_INTERVAL);
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}
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self.print_status();
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}
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fn print_status(&self) {
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struct DurationDhms(Duration);
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impl fmt::Display for DurationDhms {
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@@ -171,28 +239,20 @@ impl Fingerprunk {
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}
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}
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const UPDATE_INTERVAL: Duration = Duration::from_millis(250);
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const FORMAT_WIDTH: usize = 12;
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let start = Instant::now();
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eprint!("\n\n\n\n\n");
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loop {
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let duration = DurationDhms(start.elapsed());
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let keys = self.counter_tried.load(Ordering::Relaxed);
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let keys_per_sec = keys as f64 / duration.0.as_secs_f64();
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let found = self.counter_found.load(Ordering::Relaxed);
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eprint!(
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"\x1b[F\x1b[F\x1b[F\x1b[F\x1b[F\
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let duration = DurationDhms(self.started_instant.elapsed());
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let keys = self.counter_tried.load(Ordering::Relaxed);
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let keys_per_sec = keys as f64 / duration.0.as_secs_f64();
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let found = self.counter_found.load(Ordering::Relaxed);
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eprint!(
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"\x1b[F\x1b[F\x1b[F\x1b[F\x1b[F\
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Time: {duration}\n\
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Tried: {keys: >w$} keys\n\
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Rate: {keys_per_sec: >w$.0} keys/s\n\
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---\n\
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Found: {found: >w$} keys\n",
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w = FORMAT_WIDTH
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);
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thread::sleep(UPDATE_INTERVAL);
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}
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w = FORMAT_WIDTH
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);
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}
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}
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+10
-2
@@ -1,4 +1,7 @@
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use std::io::{self, IsTerminal};
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use std::{
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io::{self, IsTerminal},
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num::NonZeroU64,
|
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};
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|
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use anyhow::{Context as AnyhowContext, anyhow};
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use clap::{ArgAction, Parser, ValueEnum};
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@@ -26,6 +29,10 @@ struct Args {
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#[arg(long, value_enum, default_value_t)]
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status: StatusEnabled,
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/// Stop once the specified number of matching keys has been found.
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#[arg(long)]
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stop_after: Option<NonZeroU64>,
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/// Prompt for a password and use it to encrypt found keys.
|
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///
|
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/// By default, found keys are printed to stdout unencrypted. Use this if you actually plan to
|
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@@ -78,10 +85,11 @@ fn main() -> anyhow::Result<()> {
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let config = fingerprunk::Config {
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regex: args.regex,
|
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status_enabled: args.status.evaluate(),
|
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stop_after: args.stop_after,
|
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password,
|
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};
|
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|
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Fingerprunk::new_from_config(config).run();
|
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Fingerprunk::new_from_config(config).run()?;
|
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Ok(())
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}
|
||||
|
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Reference in New Issue
Block a user