blob: a7bf5166eb43d64ce5dcf90ed5a53d27d4d926f3 [file] [log] [blame]
//#![feature(trace_macros)]
#![allow(dead_code)]
#![cfg_attr(feature = "cargo-clippy", allow(redundant_closure))]
#[macro_use]
extern crate nom;
use nom::{character::{is_digit, streaming::space1 as space}, Err, IResult, Needed, error::ErrorKind, number::streaming::le_u64};
#[allow(dead_code)]
struct Range {
start: char,
end: char,
}
pub fn take_char(input: &[u8]) -> IResult<&[u8], char> {
if !input.is_empty() {
Ok((&input[1..], input[0] as char))
} else {
Err(Err::Incomplete(Needed::Size(1)))
}
}
//trace_macros!(true);
#[allow(dead_code)]
named!(range<&[u8], Range>,
alt!(
do_parse!(
start: take_char >>
tag!("-") >>
end: take_char >>
(Range {
start: start,
end: end,
})
) |
map!(
take_char,
|c| {
Range {
start: c,
end: c,
}
}
)
)
);
#[allow(dead_code)]
named!(literal<&[u8], Vec<char> >,
map!(
many1!(take_char),
|cs| {
cs
}
)
);
#[test]
fn issue_58() {
let _ = range(&b"abcd"[..]);
let _ = literal(&b"abcd"[..]);
}
//trace_macros!(false);
#[cfg(feature = "std")]
mod parse_int {
use nom::HexDisplay;
use nom::{IResult, character::streaming::{digit1 as digit, space1 as space}};
use std::str;
named!(parse_ints<Vec<i32>>, many0!(spaces_or_int));
fn spaces_or_int(input: &[u8]) -> IResult<&[u8], i32> {
println!("{}", input.to_hex(8));
do_parse!(
input,
opt!(complete!(space)) >> res: map!(complete!(digit), |x| {
println!("x: {:?}", x);
let result = str::from_utf8(x).unwrap();
println!("Result: {}", result);
println!("int is empty?: {}", x.is_empty());
match result.parse() {
Ok(i) => i,
Err(e) => panic!("UH OH! NOT A DIGIT! {:?}", e),
}
}) >> (res)
)
}
#[test]
fn issue_142() {
let subject = parse_ints(&b"12 34 5689a"[..]);
let expected = Ok((&b"a"[..], vec![12, 34, 5689]));
assert_eq!(subject, expected);
let subject = parse_ints(&b"12 34 5689 "[..]);
let expected = Ok((&b" "[..], vec![12, 34, 5689]));
assert_eq!(subject, expected)
}
}
#[test]
fn usize_length_bytes_issue() {
use nom::number::streaming::be_u16;
let _: IResult<&[u8], &[u8], (&[u8], ErrorKind)> = length_data!(b"012346", be_u16);
}
/*
DOES NOT COMPILE
#[test]
fn issue_152() {
named!(take4, take!(4));
named!(xyz, tag!("XYZ"));
named!(abc, tag!("abc"));
named!(sw,
switch!(take4,
b"abcd" => xyz |
b"efgh" => abc
)
);
}
*/
#[test]
fn take_till_issue() {
named!(nothing, take_till!(call!(|_| true)));
assert_eq!(nothing(b""), Err(Err::Incomplete(Needed::Size(1))));
assert_eq!(nothing(b"abc"), Ok((&b"abc"[..], &b""[..])));
}
named!(
issue_498<Vec<&[u8]>>,
separated_nonempty_list!(opt!(space), tag!("abcd"))
);
named!(issue_308(&str) -> bool,
do_parse! (
tag! ("foo") >>
b: alt! (
complete!(map! (tag! ("1"), |_: &str|->bool {true})) |
value! (false)
) >>
(b) ));
#[cfg(feature = "alloc")]
fn issue_302(input: &[u8]) -> IResult<&[u8], Option<Vec<u64>>> {
do_parse!(input, entries: cond!(true, count!(le_u64, 3)) >> (entries))
}
#[test]
fn issue_655() {
use nom::character::streaming::{line_ending, not_line_ending};
named!(twolines(&str) -> (&str, &str),
do_parse!(
l1 : not_line_ending >>
line_ending >>
l2 : not_line_ending >>
line_ending >>
((l1, l2))
)
);
assert_eq!(twolines("foo\nbar\n"), Ok(("", ("foo", "bar"))));
assert_eq!(twolines("féo\nbar\n"), Ok(("", ("féo", "bar"))));
assert_eq!(twolines("foé\nbar\n"), Ok(("", ("foé", "bar"))));
assert_eq!(twolines("foé\r\nbar\n"), Ok(("", ("foé", "bar"))));
}
#[test]
fn issue_721() {
named!(f1<&str, u16>, parse_to!(u16));
named!(f2<&str, String>, parse_to!(String));
assert_eq!(f1("1234"), Ok(("", 1234)));
assert_eq!(f2("foo"), Ok(("", "foo".to_string())));
//assert_eq!(parse_to!("1234", u16), Ok(("", 1234)));
//assert_eq!(parse_to!("foo", String), Ok(("", "foo".to_string())));
}
#[cfg(feature = "alloc")]
named!(issue_717<&[u8], Vec<&[u8]> >,
separated_list!(tag!([0x0]), is_not!([0x0u8]))
);
struct NoPartialEq {
value: i32,
}
named!(issue_724<&str, i32>,
do_parse!(
metadata: permutation!(
map!(tag!("hello"), |_| NoPartialEq { value: 1 }),
map!(tag!("world"), |_| NoPartialEq { value: 2 })
) >>
(metadata.0.value + metadata.1.value)
)
);
#[test]
fn issue_752() {
assert_eq!(
Err::Error(("ab", nom::error::ErrorKind::ParseTo)),
parse_to!("ab", usize).unwrap_err()
)
}
fn atom_specials(c: u8) -> bool {
c == b'q'
}
named!(
capability<&str>,
do_parse!(tag!(" ") >> _atom: map_res!(take_till1!(atom_specials), std::str::from_utf8) >> ("a"))
);
#[test]
fn issue_759() {
assert_eq!(capability(b" abcqd"), Ok((&b"qd"[..], "a")));
}
named_args!(issue_771(count: usize)<Vec<u32>>,
length_count!(value!(count), call!(nom::number::streaming::be_u32))
);
/// This test is in a separate module to check that all required symbols are imported in
/// `escaped_transform!()`. Without the module, the `use`-es of the current module would
/// mask the error ('"Use of undeclared type or module `Needed`" in escaped_transform!').
mod issue_780 {
named!(issue_780<&str, String>,
escaped_transform!(call!(::nom::character::streaming::alpha1), '\\', tag!("n"))
);
}
// issue 617
named!(digits, take_while1!( is_digit ));
named!(multi_617<&[u8], () >, fold_many0!( digits, (), |_, _| {}));
// Sad :(
named!(multi_617_fails<&[u8], () >, fold_many0!( take_while1!( is_digit ), (), |_, _| {}));
mod issue_647 {
use nom::{Err, number::streaming::be_f64, error::ErrorKind};
pub type Input<'a> = &'a [u8];
#[derive(PartialEq, Debug, Clone)]
struct Data {
c: f64,
v: Vec<f64>
}
fn list<'a,'b>(input: Input<'a>, _cs: &'b f64) -> Result<(Input<'a>,Vec<f64>), Err<(&'a [u8], ErrorKind)>> {
separated_list!(input, complete!(tag!(",")), complete!(be_f64))
}
named!(data<Input,Data>, map!(
do_parse!(
c: be_f64 >>
tag!("\n") >>
v: call!(list,&c) >>
(c,v)
), |(c,v)| {
Data {
c: c,
v: v
}
}
));
}
named!(issue_775, take_till1!(|_| true));
#[test]
fn issue_848_overflow_incomplete_bits_to_bytes() {
named!(take, take!(0x2000000000000000));
named!(parser<&[u8], &[u8]>, bits!(bytes!(take)));
assert_eq!(parser(&b""[..]), Err(Err::Failure(error_position!(&b""[..], ErrorKind::TooLarge))));
}
#[test]
fn issue_942() {
use nom::error::ParseError;
pub fn parser<'a, E: ParseError<&'a str>>(i: &'a str) -> IResult<&'a str, usize, E> {
use nom::{character::complete::char, error::context, multi::many0_count};
many0_count(context("char_a", char('a')))(i)
}
assert_eq!(parser::<()>("aaa"), Ok(("", 3)));
}