blob: 6c5d19845e406d05e6860069b00ae6a9c6520176 [file] [log] [blame]
use core::num::{IntErrorKind, NonZeroI32, NonZeroI8, NonZeroU32, NonZeroU8};
use core::option::Option::{self, None, Some};
use std::mem::size_of;
#[test]
fn test_create_nonzero_instance() {
let _a = unsafe { NonZeroU32::new_unchecked(21) };
}
#[test]
fn test_size_nonzero_in_option() {
assert_eq!(size_of::<NonZeroU32>(), size_of::<Option<NonZeroU32>>());
assert_eq!(size_of::<NonZeroI32>(), size_of::<Option<NonZeroI32>>());
}
#[test]
fn test_match_on_nonzero_option() {
let a = Some(unsafe { NonZeroU32::new_unchecked(42) });
match a {
Some(val) => assert_eq!(val.get(), 42),
None => panic!("unexpected None while matching on Some(NonZeroU32(_))"),
}
match unsafe { Some(NonZeroU32::new_unchecked(43)) } {
Some(val) => assert_eq!(val.get(), 43),
None => panic!("unexpected None while matching on Some(NonZeroU32(_))"),
}
}
#[test]
fn test_match_option_empty_vec() {
let a: Option<Vec<isize>> = Some(vec![]);
match a {
None => panic!("unexpected None while matching on Some(vec![])"),
_ => {}
}
}
#[test]
fn test_match_option_vec() {
let a = Some(vec![1, 2, 3, 4]);
match a {
Some(v) => assert_eq!(v, [1, 2, 3, 4]),
None => panic!("unexpected None while matching on Some(vec![1, 2, 3, 4])"),
}
}
#[test]
fn test_match_option_rc() {
use std::rc::Rc;
let five = Rc::new(5);
match Some(five) {
Some(r) => assert_eq!(*r, 5),
None => panic!("unexpected None while matching on Some(Rc::new(5))"),
}
}
#[test]
fn test_match_option_arc() {
use std::sync::Arc;
let five = Arc::new(5);
match Some(five) {
Some(a) => assert_eq!(*a, 5),
None => panic!("unexpected None while matching on Some(Arc::new(5))"),
}
}
#[test]
fn test_match_option_empty_string() {
let a = Some(String::new());
match a {
None => panic!("unexpected None while matching on Some(String::new())"),
_ => {}
}
}
#[test]
fn test_match_option_string() {
let five = "Five".to_string();
match Some(five) {
Some(s) => assert_eq!(s, "Five"),
None => panic!("unexpected None while matching on Some(String { ... })"),
}
}
mod atom {
use core::num::NonZeroU32;
#[derive(PartialEq, Eq)]
pub struct Atom {
index: NonZeroU32, // private
}
pub const FOO_ATOM: Atom = Atom { index: unsafe { NonZeroU32::new_unchecked(7) } };
}
macro_rules! atom {
("foo") => {
atom::FOO_ATOM
};
}
#[test]
fn test_match_nonzero_const_pattern() {
match atom!("foo") {
// Using as a pattern is supported by the compiler:
atom!("foo") => {}
_ => panic!("Expected the const item as a pattern to match."),
}
}
#[test]
fn test_from_nonzero() {
let nz = NonZeroU32::new(1).unwrap();
let num: u32 = nz.into();
assert_eq!(num, 1u32);
}
#[test]
fn test_from_signed_nonzero() {
let nz = NonZeroI32::new(1).unwrap();
let num: i32 = nz.into();
assert_eq!(num, 1i32);
}
#[test]
fn test_from_str() {
assert_eq!("123".parse::<NonZeroU8>(), Ok(NonZeroU8::new(123).unwrap()));
assert_eq!("0".parse::<NonZeroU8>().err().map(|e| e.kind().clone()), Some(IntErrorKind::Zero));
assert_eq!(
"-1".parse::<NonZeroU8>().err().map(|e| e.kind().clone()),
Some(IntErrorKind::InvalidDigit)
);
assert_eq!(
"-129".parse::<NonZeroI8>().err().map(|e| e.kind().clone()),
Some(IntErrorKind::Underflow)
);
assert_eq!(
"257".parse::<NonZeroU8>().err().map(|e| e.kind().clone()),
Some(IntErrorKind::Overflow)
);
}