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#[test]
fn empty_regex_empty_match() {
let re = regex!("");
assert_eq!(vec![(0, 0)], findall!(re, ""));
}
#[test]
fn empty_regex_nonempty_match() {
let re = regex!("");
assert_eq!(vec![(0, 0), (1, 1), (2, 2), (3, 3)], findall!(re, "abc"));
}
#[test]
fn one_zero_length_match() {
let re = regex!(r"[0-9]*");
assert_eq!(vec![(0, 0), (1, 2), (3, 4)], findall!(re, "a1b2"));
}
#[test]
fn many_zero_length_match() {
let re = regex!(r"[0-9]*");
assert_eq!(
vec![(0, 0), (1, 2), (3, 3), (4, 4), (5, 6)],
findall!(re, "a1bbb2")
);
}
#[test]
fn many_sequential_zero_length_match() {
let re = regex!(r"[0-9]?");
assert_eq!(
vec![(0, 0), (1, 2), (2, 3), (4, 5), (6, 6)],
findall!(re, "a12b3c")
);
}
#[test]
fn quoted_bracket_set() {
let re = regex!(r"([\x{5b}\x{5d}])");
assert_eq!(vec![(0, 1), (1, 2)], findall!(re, "[]"));
let re = regex!(r"([\[\]])");
assert_eq!(vec![(0, 1), (1, 2)], findall!(re, "[]"));
}
#[test]
fn first_range_starts_with_left_bracket() {
let re = regex!(r"([\[-z])");
assert_eq!(vec![(0, 1), (1, 2)], findall!(re, "[]"));
}
#[test]
fn range_ends_with_escape() {
let re = regex!(r"([\[-\x{5d}])");
assert_eq!(vec![(0, 1), (1, 2)], findall!(re, "[]"));
}
#[test]
fn empty_match_find_iter() {
let re = regex!(r".*?");
assert_eq!(vec![(0, 0), (1, 1), (2, 2), (3, 3)], findall!(re, "abc"));
}
#[test]
fn empty_match_captures_iter() {
let re = regex!(r".*?");
let ms: Vec<_> = re
.captures_iter(text!("abc"))
.map(|c| c.get(0).unwrap())
.map(|m| (m.start(), m.end()))
.collect();
assert_eq!(ms, vec![(0, 0), (1, 1), (2, 2), (3, 3)]);
}
#[test]
fn capture_names() {
let re = regex!(r"(.)(?P<a>.)");
assert_eq!(3, re.captures_len());
assert_eq!((3, Some(3)), re.capture_names().size_hint());
assert_eq!(
vec![None, None, Some("a")],
re.capture_names().collect::<Vec<_>>()
);
}
#[test]
fn regex_string() {
assert_eq!(r"[a-zA-Z0-9]+", regex!(r"[a-zA-Z0-9]+").as_str());
assert_eq!(r"[a-zA-Z0-9]+", &format!("{}", regex!(r"[a-zA-Z0-9]+")));
assert_eq!(r"[a-zA-Z0-9]+", &format!("{:?}", regex!(r"[a-zA-Z0-9]+")));
}
#[test]
fn capture_index() {
let re = regex!(r"^(?P<name>.+)$");
let cap = re.captures(t!("abc")).unwrap();
assert_eq!(&cap[0], t!("abc"));
assert_eq!(&cap[1], t!("abc"));
assert_eq!(&cap["name"], t!("abc"));
}
#[test]
#[should_panic]
#[cfg_attr(all(target_env = "msvc", target_pointer_width = "32"), ignore)]
fn capture_index_panic_usize() {
let re = regex!(r"^(?P<name>.+)$");
let cap = re.captures(t!("abc")).unwrap();
let _ = cap[2];
}
#[test]
#[should_panic]
#[cfg_attr(all(target_env = "msvc", target_pointer_width = "32"), ignore)]
fn capture_index_panic_name() {
let re = regex!(r"^(?P<name>.+)$");
let cap = re.captures(t!("abc")).unwrap();
let _ = cap["bad name"];
}
#[test]
fn capture_index_lifetime() {
// This is a test of whether the types on `caps["..."]` are general
// enough. If not, this will fail to typecheck.
fn inner(s: &str) -> usize {
let re = regex!(r"(?P<number>[0-9]+)");
let caps = re.captures(t!(s)).unwrap();
caps["number"].len()
}
assert_eq!(3, inner("123"));
}
#[test]
fn capture_misc() {
let re = regex!(r"(.)(?P<a>a)?(.)(?P<b>.)");
let cap = re.captures(t!("abc")).unwrap();
assert_eq!(5, cap.len());
assert_eq!((0, 3), {
let m = cap.get(0).unwrap();
(m.start(), m.end())
});
assert_eq!(None, cap.get(2));
assert_eq!((2, 3), {
let m = cap.get(4).unwrap();
(m.start(), m.end())
});
assert_eq!(t!("abc"), match_text!(cap.get(0).unwrap()));
assert_eq!(None, cap.get(2));
assert_eq!(t!("c"), match_text!(cap.get(4).unwrap()));
assert_eq!(None, cap.name("a"));
assert_eq!(t!("c"), match_text!(cap.name("b").unwrap()));
}
#[test]
fn sub_capture_matches() {
let re = regex!(r"([a-z])(([a-z])|([0-9]))");
let cap = re.captures(t!("a5")).unwrap();
let subs: Vec<_> = cap.iter().collect();
assert_eq!(5, subs.len());
assert!(subs[0].is_some());
assert!(subs[1].is_some());
assert!(subs[2].is_some());
assert!(subs[3].is_none());
assert!(subs[4].is_some());
assert_eq!(t!("a5"), match_text!(subs[0].unwrap()));
assert_eq!(t!("a"), match_text!(subs[1].unwrap()));
assert_eq!(t!("5"), match_text!(subs[2].unwrap()));
assert_eq!(t!("5"), match_text!(subs[4].unwrap()));
}
expand!(expand1, r"(?-u)(?P<foo>\w+)", "abc", "$foo", "abc");
expand!(expand2, r"(?-u)(?P<foo>\w+)", "abc", "$0", "abc");
expand!(expand3, r"(?-u)(?P<foo>\w+)", "abc", "$1", "abc");
expand!(expand4, r"(?-u)(?P<foo>\w+)", "abc", "$$1", "$1");
expand!(expand5, r"(?-u)(?P<foo>\w+)", "abc", "$$foo", "$foo");
expand!(expand6, r"(?-u)(?P<a>\w+)\s+(?P<b>\d+)", "abc 123", "$b$a", "123abc");
expand!(expand7, r"(?-u)(?P<a>\w+)\s+(?P<b>\d+)", "abc 123", "z$bz$az", "z");
expand!(
expand8,
r"(?-u)(?P<a>\w+)\s+(?P<b>\d+)",
"abc 123",
".$b.$a.",
".123.abc."
);
expand!(
expand9,
r"(?-u)(?P<a>\w+)\s+(?P<b>\d+)",
"abc 123",
" $b $a ",
" 123 abc "
);
expand!(expand10, r"(?-u)(?P<a>\w+)\s+(?P<b>\d+)", "abc 123", "$bz$az", "");
expand!(expand_name1, r"%(?P<Z>[a-z]+)", "%abc", "$Z%", "abc%");
expand!(expand_name2, r"\[(?P<Z>[a-z]+)", "[abc", "$Z[", "abc[");
expand!(expand_name3, r"\{(?P<Z>[a-z]+)", "{abc", "$Z{", "abc{");
expand!(expand_name4, r"\}(?P<Z>[a-z]+)", "}abc", "$Z}", "abc}");
expand!(expand_name5, r"%([a-z]+)", "%abc", "$1a%", "%");
expand!(expand_name6, r"%([a-z]+)", "%abc", "${1}a%", "abca%");
expand!(expand_name7, r"\[(?P<Z[>[a-z]+)", "[abc", "${Z[}[", "abc[");
expand!(expand_name8, r"\[(?P<Z[>[a-z]+)", "[abc", "${foo}[", "[");
expand!(expand_name9, r"\[(?P<Z[>[a-z]+)", "[abc", "${1a}[", "[");
expand!(expand_name10, r"\[(?P<Z[>[a-z]+)", "[abc", "${#}[", "[");
expand!(expand_name11, r"\[(?P<Z[>[a-z]+)", "[abc", "${$$}[", "[");
split!(
split1,
r"(?-u)\s+",
"a b\nc\td\n\t e",
&[t!("a"), t!("b"), t!("c"), t!("d"), t!("e")]
);
split!(
split2,
r"(?-u)\b",
"a b c",
&[t!(""), t!("a"), t!(" "), t!("b"), t!(" "), t!("c"), t!("")]
);
split!(split3, r"a$", "a", &[t!(""), t!("")]);
split!(split_none, r"-", r"a", &[t!("a")]);
split!(split_trailing_blank, r"-", r"a-", &[t!("a"), t!("")]);
split!(split_trailing_blanks, r"-", r"a--", &[t!("a"), t!(""), t!("")]);
split!(split_empty, r"-", r"", &[t!("")]);
splitn!(splitn_below_limit, r"-", r"a", 2, &[t!("a")]);
splitn!(splitn_at_limit, r"-", r"a-b", 2, &[t!("a"), t!("b")]);
splitn!(splitn_above_limit, r"-", r"a-b-c", 2, &[t!("a"), t!("b-c")]);
splitn!(splitn_zero_limit, r"-", r"a-b", 0, empty_vec!());
splitn!(splitn_trailing_blank, r"-", r"a-", 2, &[t!("a"), t!("")]);
splitn!(splitn_trailing_separator, r"-", r"a--", 2, &[t!("a"), t!("-")]);
splitn!(splitn_empty, r"-", r"", 1, &[t!("")]);