dm secu
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parent
2dd5eedd00
commit
fbe4f314f9
2 changed files with 47 additions and 2 deletions
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@ -1,4 +1,9 @@
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use std::{collections::HashMap, error::Error, ops::AddAssign, path::PathBuf};
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use std::{
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collections::{HashMap, HashSet},
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error::Error,
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ops::AddAssign,
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path::PathBuf,
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};
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use clap::{Parser, Subcommand};
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use etherparse::{NetSlice, SlicedPacket};
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@ -24,6 +29,8 @@ fn main() -> Result<(), Box<dyn Error>> {
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let mut first_timestamp = None;
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let mut last_timestamp = None;
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let mut protocols = HashMap::new();
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let mut sources = HashMap::new();
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let mut destinations = HashSet::new();
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while let Ok(packet) = pcap.next_packet() {
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total += 1;
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@ -39,9 +46,15 @@ fn main() -> Result<(), Box<dyn Error>> {
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};
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if let Some(NetSlice::Ipv4(ipv4)) = packet.net {
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total_ipv4 += 1;
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let protocol = ipv4.header().protocol();
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protocols.entry(protocol).or_insert(0).add_assign(1);
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total_ipv4 += 1;
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let entry = sources.entry(ipv4.header().source()).or_insert((0, 0));
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entry.0 += 1;
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entry.1 += ipv4.payload().payload.len();
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destinations.insert(ipv4.header().destination());
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}
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}
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@ -56,6 +69,7 @@ fn main() -> Result<(), Box<dyn Error>> {
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let avg_packet = (last_timestamp - first_timestamp) / total as f64;
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println!("Avg packet rate: {avg_packet: >14.4}");
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println!("Errors: {errs: >14}");
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println!();
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let mut protocols: Vec<_> = protocols.into_iter().collect();
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protocols.sort_by_key(|(_, count)| *count);
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@ -64,6 +78,16 @@ fn main() -> Result<(), Box<dyn Error>> {
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let contrib = (count as f64 / total as f64) * 100.;
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println!("- {num:?} {count: >14} ({contrib:>6.2}%)");
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}
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println!();
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let unique_sources = sources.len();
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println!("Unique sources: {unique_sources: >14.4}");
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let unique_dests = destinations.len();
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println!("Unique destinations: {unique_dests: >14.4}");
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let most_bytes = sources.iter().max_by_key(|(_, (_, bytes))| bytes).map(|(addr, _)| addr);
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println!("Source with most bytes: {most_bytes:?}");
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let most_packets = sources.iter().max_by_key(|(_, (packs, _))| packs).map(|(addr, _)| addr);
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println!("Source with most packets: {most_packets:?}");
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}
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}
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@ -170,6 +170,8 @@ pcap_analyzer ./trace2.pcap stats
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# Last timestamp: 1474309098.10
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# Avg packet rate: 0.0014
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# Errors: 1717607
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# Main Protocols:
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# - 6 (TCP - Transmission Control) 28893393 ( 94.39%)
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```
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La trace contient 28 893 393 paquets IPv4.
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@ -185,3 +187,22 @@ Le timestamp du premier paquet de la trace est 1 474 265 898.92 secondes.
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#### What is the average packet rate (in packets per second to two decimal places) of the trace (as Avg packet rate:)?
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Le taux de paquets de la trace est 0.0014 paquet par seconde.
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#### What is the packet protocol distribution? (A table showing the 5 top protocols and their respective contributions is fine.)
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94.39% des paquets sont des paquets TCP. Les autres paquets n'ont pas d'entête IPv4.
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#### Plot a histogram of the packet size distribution (the Python numpy and matplot packages are installed on the Labtainer).
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...
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#### How many unique IPv4 source addresses are present in the trace (as Unique sources:)?
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#### How many unique IPv4 destination addresses are present in the trace (as Unique destinations:)?
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#### Create a cumulative distribution function (CDF) plot. The x-axis is the number of bytes sent and the y-axis is the cumulative fraction of sources.
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...
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#### Which source sent the most bytes (as Source with most bytes:)?
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#### Which source sent the most packets (as Source with most packets:)? Based on your analysis of the trace:
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#### List 3 characteristics of the traffic that seem unusual to you.
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#### Provide a reasonable explanation for what traffic the trace represents, taking into account the unusual characteristics you have identified.
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