382 lines
12 KiB
Rust
382 lines
12 KiB
Rust
use cloudflare::{Instance, CloudflareDnsType};
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use reqwest::blocking::get;
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use serde_derive::{Deserialize, Serialize};
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use std::{fs, thread::{sleep}};
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use chrono::{Utc, Duration};
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use log::{info, warn, error, LevelFilter};
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use systemd_journal_logger::JournalLog;
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mod config;
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mod cloudflare;
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fn default_key() -> String {
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return "".to_string();
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}
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#[derive(Clone)]
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struct ChangeTracker {
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created: u16,
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updated: u16,
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unchanged: u16,
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error: u16
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}
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impl ChangeTracker {
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fn new() -> ChangeTracker {
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ChangeTracker {
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created: 0,
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updated: 0,
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unchanged: 0,
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error: 0
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}
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}
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fn print(&self, f: &str) {
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match f {
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"" => {
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self.print("simple");
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}
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"simple" => {
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println!("{} created", self.created);
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println!("{} updated", self.updated);
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println!("{} unchanged", self.unchanged);
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println!("{} errors", self.error);
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}
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&_ => {
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println!("unknown format pattern '{}', defaulting to 'simple'", f);
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self.print("simple");
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}
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}
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}
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}
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#[derive(Serialize, Deserialize)]
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struct DnsEntry {
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name: String,
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type4: bool,
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type6: bool,
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interface: Option<String>,
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}
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impl DnsEntry {
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/// Updates a single DNS Entry
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///
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/// * `change4` : IPv4 DNS change tracker, used to print details about the results of the update run after it concludes
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/// * `change6` : Same as `change4` but for IPv6
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/// * `ips` : Enum of current IPv4 and IPv6 base, used to check against and update the DNS record
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/// * `agent` : Cloudflare Auth Agent, provides the needed Authentication headers for the API Calls
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/// * `zone_id` : Cloudfalre ID of the Zone this DNS entry resides in, needed for the API Calls
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///
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/// * `return` : Returns true if the DNS Update failed due to an Error, otherwise returns false
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fn update(
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&self,
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change4: &mut ChangeTracker,
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change6: &mut ChangeTracker,
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ips: &Ips,
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agent: &Instance,
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zone_id: &String
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) -> bool {
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let mut found4 = false;
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let mut found6 = false;
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// Loops over every Entry in the List fetched from the Cloudflare API
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// If the entry is in this List we need to update it, if not it needs to be created
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for cloudflare_entry in &agent.dns_entries {
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if cloudflare_entry.is_equal(&self.name) {
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// Update IPv4 Entry
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if cloudflare_entry.r#type == CloudflareDnsType::A && self.type4 {
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found4 = true;
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if cloudflare_entry.is_ip_new(&ips.ipv4) {
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match agent.update_entry(cloudflare_entry, &ips.ipv4) {
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Ok(success) => {
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if success {
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change4.updated += 1;
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}
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else {
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change4.error += 1;
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}
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},
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Err(_e) => { return true } // if an error is detected any subsequent calls are likely to fail as well
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};
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}
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else {
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change4.unchanged += 1;
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}
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}
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// Update IPv6 Entry
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else if cloudflare_entry.r#type == CloudflareDnsType::AAAA && self.type6 {
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found6 = true;
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let ipv6 = ips.ipv6base.clone() + self.interface.as_ref().unwrap();
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if cloudflare_entry.is_ip_new(&ipv6) {
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match agent.update_entry(cloudflare_entry, &ipv6) {
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Ok(success) => {
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if success {
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change6.updated += 1
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}
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else {
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change6.error += 1
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}
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},
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Err(_e) => { return true } // if an error is detected any subsequent calls are likely to fail as well
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};
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}
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else {
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change6.unchanged += 1;
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}
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}
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// ignore otherwise
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else {}
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}
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}
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if !found4 && self.type4 {
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match agent.create_entry(zone_id, "A", &self.name, &ips.ipv4) {
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Ok(success) => {
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if success {
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change4.created += 1;
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}
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else {
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change4.error += 1;
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};
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},
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Err(_e) => { return true } // early return since if an error is detected any subsequent calls are likely to fail as well
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}
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}
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if !found6 && self.type6 {
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let ipv6 = ips.ipv6base.clone() + self.interface.as_ref().unwrap();
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match agent.create_entry(zone_id, "AAAA", &self.name, &ipv6) {
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Ok(success) => {
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if success {
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change6.created += 1;
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}
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else {
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change6.error += 1;
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};
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},
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Err(_e) => { return true } // if an error is detected any subsequent calls are likely to fail as well
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};
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}
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return false; // If this point is reached no error has been caught therefore returning false
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}
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}
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#[derive(Serialize, Deserialize)]
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struct DnsZone {
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email: String,
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name: String,
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id: String,
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dns_entries: Vec<DnsEntry>,
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}
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impl DnsZone {
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/// Attempts to Update the DNS Entries of the Zone with a new IP
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///
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/// * `change4` : IPv4 DNS change tracker, used to print details about the results of the update run after it concludes
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/// * `change6` : Same as `change4` but for IPv6
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/// * `ips` : Enum of current IPv4 and IPv6 base, used to check against and update the DNS record
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/// * `key` : API Key needed to create the Auth Agent for the API
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///
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/// * `return` : Returns true if the DNS Updates failed due to an Error, false otherwise
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fn update(
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&self,
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change4: &mut ChangeTracker,
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change6: &mut ChangeTracker,
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ips: &Ips,
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key: &String
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) -> bool {
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let mut agent = Instance::new(key);
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match agent.load_entries(&self.email, &self.id) {
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Ok(_) => {
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let mut results = Vec::<bool>::new();
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for entry in &self.dns_entries {
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let result = entry.update(change4, change6, &ips, &agent, &self.id);
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results.append(&mut vec!(result));
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if result {
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break; // if one update fails all others are likely to fail as well
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}
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}
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let result = results.contains(&true);
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return result;
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},
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Err(_e) => { return true }, // Early return since an Error likely means subsequent calls will also fail
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}
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}
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}
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#[derive(Serialize, Deserialize)]
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struct DnsConfig {
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ipv6_interface: String,
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#[serde(default = "default_key")]
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api_key: String,
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zones: Vec<DnsZone>,
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}
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impl DnsConfig {
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fn new() -> DnsConfig {
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DnsConfig {
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ipv6_interface: "".to_string(),
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api_key: "".to_string(),
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zones: Vec::new(),
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}
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}
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fn load(&mut self) {
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let file_contents = match fs::read_to_string("config.json") {
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Ok(data) => data,
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Err(e) => panic!("{:#?}", e),
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};
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let config_parse: DnsConfig = match serde_json::from_str(&file_contents) {
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Ok(data) => data,
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Err(e) => panic!("{:#?}", e),
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};
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let key_file_contents = match fs::read_to_string("api-key.json") {
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Ok(data) => data,
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Err(e) => panic!("{:#?}", e),
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};
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let api_key_parse: serde_json::Value = match serde_json::from_str(&key_file_contents) {
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Ok(data) => data,
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Err(e) => panic!("{:#?}", e),
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};
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*self = config_parse;
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self.api_key = api_key_parse["api_key"].as_str().unwrap().to_owned();
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}
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}
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struct Ips {
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ipv4: String,
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ipv6base: String,
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}
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impl Ips {
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fn new() -> Ips {
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Ips {
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ipv4: "0.0.0.0".to_string(),
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ipv6base: ":".to_string(),
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}
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}
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/// Get the current IPv4 address and IPv6 prefix from Mullvad API
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///
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/// Returns true if the get succeeded and false if it failed.
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/// The IPv6 Prefix is generated by removing the IPv6 Interface from the fetched IPv6 address
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fn get(&mut self, ipv6_interface: &str) -> bool {
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let ipv4uri = "https://am.i.mullvad.net/ip";
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let ipv6uri = "https://ipv6.am.i.mullvad.net/ip";
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let mut ret;
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match get(ipv4uri) {
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Ok(data) => {
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if data.status() == 200 {
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self.ipv4 = data.text().expect("0.0.0.0").trim_end().to_owned();
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ret = true;
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}
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else {
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ret = false;
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}
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},
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Err(_e) => {
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println!("Could not fetch IPv4");
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ret = false;
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return ret; // Early return since a fail on IPv4 means a likely fail on IPv6
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}
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}
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match get(ipv6uri) {
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Ok(data) => {
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if data.status() == 200 {
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let ipv6 = match data.text() {
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Ok(ip) => {ip},
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Err(_) => {panic!("Expected IP, found none")},
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};
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let stripped = match ipv6.trim_end().strip_suffix(ipv6_interface) {
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Some(string) => string.to_string(),
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None => ":".to_string(),
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};
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self.ipv6base = stripped;
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ret = true && ret; // Only set ret to true if previous ret is also true
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}
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else {
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ret = false;
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}
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}
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Err(_e) => {
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println!("Could not fetch IPv6");
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ret = false;
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}
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}
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return ret;
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}
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}
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/// Loops over all DNS Entries in the config and calls an update on them
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fn update_dns() {
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let mut config = DnsConfig::new();
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config.load();
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let mut ips = Ips::new();
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if ips.get(&config.ipv6_interface) {
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println!("Current IPv4: {}", ips.ipv4);
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println!("Current IPv6: {}{}", ips.ipv6base, &config.ipv6_interface);
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let mut change4 = ChangeTracker::new();
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let mut change6 = ChangeTracker::new();
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let mut update_results = Vec::<bool>::new();
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// Iterator does not work here
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for zone in &config.zones {
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let error = zone.update(&mut change4, &mut change6, &ips, &config.api_key);
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update_results.append(&mut vec!(error));
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if error {
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break; // if one update fails all others are likely to fail as well
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}
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}
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if update_results.contains(&true) {
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println!("DNS Update failed due to Network Error")
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}
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else {
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println!("++++A Records+++");
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change4.print("simple");
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println!("++AAAA Records++");
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change6.print("simple")
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}
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}
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}
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fn main() {
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JournalLog::new().expect("Systemd-Logger crate error").install().expect("Systemd-Logger crate error");
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log::set_max_level(LevelFilter::Info);
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let mut now = Utc::now() - Duration::seconds(59);
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let mut current = now;
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let ifaces = config::InterfaceConfig::load().unwrap();
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let zone_cfgs= config::ZoneConfig::load().unwrap();
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now = Utc::now();
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if now >= current + Duration::seconds(60) {
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current = now;
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print!("\x1B[2J\x1B[1;1H");
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println!("Starting DNS Update at {} {}", now.format("%H:%M:%S"), now.timezone());
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update_dns();
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}
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else {
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sleep(std::time::Duration::from_millis(500));
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}
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}
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}
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