extern crate time;
use std::str;
use std::fmt;
pub fn from_one_raw_str<T: str::FromStr>(raw: &[Vec<u8>]) -> Option<T> {
if raw.len() != 1 {
return None;
}
match str::from_utf8(&raw[0][]) {
Ok(s) => str::FromStr::from_str(s).ok(),
Err(_) => None
}
}
#[inline]
pub fn from_comma_delimited<T: str::FromStr>(raw: &[Vec<u8>]) -> Option<Vec<T>> {
if raw.len() != 1 {
return None;
}
from_one_comma_delimited(&raw[0][])
}
pub fn from_one_comma_delimited<T: str::FromStr>(raw: &[u8]) -> Option<Vec<T>> {
match str::from_utf8(raw) {
Ok(s) => {
Some(s.as_slice()
.split(',')
.map(|x| x.trim())
.filter_map(|x| x.parse().ok())
.collect())
}
Err(_) => None
}
}
pub fn fmt_comma_delimited<T: fmt::Display>(fmt: &mut fmt::Formatter, parts: &[T]) -> fmt::Result {
let last = parts.len() - 1;
for (i, part) in parts.iter().enumerate() {
try!(write!(fmt, "{}", part));
if i < last {
try!(write!(fmt, ", "));
}
}
Ok(())
}
pub fn tm_from_str(s: &str) -> Option<time::Tm> {
time::strptime(s, "%a, %d %b %Y %T %Z").or_else(|_| {
time::strptime(s, "%A, %d-%b-%y %T %Z")
}).or_else(|_| {
time::strptime(s, "%c")
}).ok()
}