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@ -3,7 +3,7 @@ use errors::*;
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pub fn solve(input: &str) -> Result<String> {
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Ok(input.lines()
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.map(|x| IP7::new(x))
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.filter(IP7::supports_tls)
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.filter(IP7::supports_ssl)
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.count()
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.to_string())
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}
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@ -40,15 +40,36 @@ impl IP7 {
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}
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}
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fn supports_tls(&self) -> bool {
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pub fn supports_tls(&self) -> bool {
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self.supernets.iter().any(|x| Self::abba(x)) &&
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self.hypernets.iter().all(|x| !Self::abba(x))
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}
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fn supports_ssl(&self) -> bool {
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let abas: Vec<String> =
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self.supernets.iter().flat_map(|x| {
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Self::abas(x).iter().map(|aba| {
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let mut c = aba.chars();
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let a = c.next().unwrap();
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let b = c.next().unwrap();
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format!("{}{}{}", b, a, b)
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}).collect::<Vec<_>>()
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}).collect();
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self.hypernets.iter().any(|x| abas.iter().any(|y| x.contains(y)))
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}
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fn abba(s: &str) -> bool {
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let v: Vec<_> = s.chars().collect();
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v.windows(4).any(|w| (w[0] != w[1]) && (w[0] == w[3]) && (w[1] == w[2]))
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}
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fn abas(s: &str) -> Vec<String> {
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let v: Vec<_> = s.chars().collect();
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v.windows(3)
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.filter(|w| (w[0] != w[1]) && (w[0] == w[2]))
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.map(|w| w.iter().map(|&x| x).collect())
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.collect()
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}
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}
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#[cfg(test)]
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@ -75,4 +96,18 @@ mod tests {
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assert_eq!(IP7::new("aaaa[qwer]tyui").supports_tls(), false);
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assert_eq!(IP7::new("ioxxoj[asdfgh]zxcvbn").supports_tls(), true);
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}
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#[test]
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fn test_abas() {
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assert_eq!(IP7::abas("zazbz"),
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vec!["zaz".to_string(), "zbz".to_string()]);
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}
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#[test]
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fn test_supports_ssl() {
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assert!(IP7::new("aba[bab]xyz").supports_ssl());
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assert!(!IP7::new("xyx[xyx]xyx").supports_ssl());
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assert!(IP7::new("aaa[kek]eke").supports_ssl());
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assert!(IP7::new("zazbz[bzb]cdb").supports_ssl());
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}
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}
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