221 lines
6 KiB
Rust
221 lines
6 KiB
Rust
use alloc::ffi::CString;
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use alloc::rc::Rc;
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use alloc::sync::Arc;
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use core::assert_matches::assert_matches;
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use core::ffi::{CStr, FromBytesUntilNulError, c_char};
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#[allow(deprecated)]
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use core::hash::SipHasher13 as DefaultHasher;
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use core::hash::{Hash, Hasher};
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#[test]
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fn c_to_rust() {
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let data = b"123\0";
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let ptr = data.as_ptr() as *const c_char;
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unsafe {
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assert_eq!(CStr::from_ptr(ptr).to_bytes(), b"123");
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assert_eq!(CStr::from_ptr(ptr).to_bytes_with_nul(), b"123\0");
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}
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}
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#[test]
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fn simple() {
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let s = CString::new("1234").unwrap();
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assert_eq!(s.as_bytes(), b"1234");
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assert_eq!(s.as_bytes_with_nul(), b"1234\0");
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}
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#[test]
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fn build_with_zero1() {
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assert!(CString::new(&b"\0"[..]).is_err());
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}
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#[test]
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fn build_with_zero2() {
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assert!(CString::new(vec![0]).is_err());
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}
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#[test]
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fn borrowed() {
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unsafe {
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let s = CStr::from_ptr(b"12\0".as_ptr() as *const _);
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assert_eq!(s.to_bytes(), b"12");
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assert_eq!(s.to_bytes_with_nul(), b"12\0");
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}
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}
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#[test]
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fn to_owned() {
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let data = b"123\0";
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let ptr = data.as_ptr() as *const c_char;
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let owned = unsafe { CStr::from_ptr(ptr).to_owned() };
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assert_eq!(owned.as_bytes_with_nul(), data);
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}
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#[test]
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fn equal_hash() {
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let data = b"123\xE2\xFA\xA6\0";
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let ptr = data.as_ptr() as *const c_char;
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let cstr: &'static CStr = unsafe { CStr::from_ptr(ptr) };
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#[allow(deprecated)]
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let mut s = DefaultHasher::new();
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cstr.hash(&mut s);
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let cstr_hash = s.finish();
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#[allow(deprecated)]
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let mut s = DefaultHasher::new();
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CString::new(&data[..data.len() - 1]).unwrap().hash(&mut s);
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let cstring_hash = s.finish();
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assert_eq!(cstr_hash, cstring_hash);
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}
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#[test]
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fn from_bytes_with_nul() {
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let data = b"123\0";
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let cstr = CStr::from_bytes_with_nul(data);
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assert_eq!(cstr.map(CStr::to_bytes), Ok(&b"123"[..]));
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let cstr = CStr::from_bytes_with_nul(data);
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assert_eq!(cstr.map(CStr::to_bytes_with_nul), Ok(&b"123\0"[..]));
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unsafe {
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let cstr = CStr::from_bytes_with_nul(data);
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let cstr_unchecked = CStr::from_bytes_with_nul_unchecked(data);
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assert_eq!(cstr, Ok(cstr_unchecked));
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}
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}
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#[test]
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fn from_bytes_with_nul_unterminated() {
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let data = b"123";
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let cstr = CStr::from_bytes_with_nul(data);
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assert!(cstr.is_err());
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}
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#[test]
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fn from_bytes_with_nul_interior() {
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let data = b"1\023\0";
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let cstr = CStr::from_bytes_with_nul(data);
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assert!(cstr.is_err());
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}
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#[test]
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fn cstr_from_bytes_until_nul() {
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// Test an empty slice. This should fail because it
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// does not contain a nul byte.
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let b = b"";
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assert_matches!(CStr::from_bytes_until_nul(&b[..]), Err(FromBytesUntilNulError { .. }));
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// Test a non-empty slice, that does not contain a nul byte.
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let b = b"hello";
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assert_matches!(CStr::from_bytes_until_nul(&b[..]), Err(FromBytesUntilNulError { .. }));
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// Test an empty nul-terminated string
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let b = b"\0";
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let r = CStr::from_bytes_until_nul(&b[..]).unwrap();
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assert_eq!(r.to_bytes(), b"");
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// Test a slice with the nul byte in the middle
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let b = b"hello\0world!";
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let r = CStr::from_bytes_until_nul(&b[..]).unwrap();
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assert_eq!(r.to_bytes(), b"hello");
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// Test a slice with the nul byte at the end
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let b = b"hello\0";
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let r = CStr::from_bytes_until_nul(&b[..]).unwrap();
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assert_eq!(r.to_bytes(), b"hello");
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// Test a slice with two nul bytes at the end
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let b = b"hello\0\0";
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let r = CStr::from_bytes_until_nul(&b[..]).unwrap();
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assert_eq!(r.to_bytes(), b"hello");
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// Test a slice containing lots of nul bytes
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let b = b"\0\0\0\0";
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let r = CStr::from_bytes_until_nul(&b[..]).unwrap();
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assert_eq!(r.to_bytes(), b"");
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}
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#[test]
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fn into_boxed() {
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let orig: &[u8] = b"Hello, world!\0";
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let cstr = CStr::from_bytes_with_nul(orig).unwrap();
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let boxed: Box<CStr> = Box::from(cstr);
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let cstring = cstr.to_owned().into_boxed_c_str().into_c_string();
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assert_eq!(cstr, &*boxed);
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assert_eq!(&*boxed, &*cstring);
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assert_eq!(&*cstring, cstr);
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}
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#[test]
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fn boxed_default() {
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let boxed = <Box<CStr>>::default();
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assert_eq!(boxed.to_bytes_with_nul(), &[0]);
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}
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#[test]
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fn test_c_str_clone_into() {
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let mut c_string = c"lorem".to_owned();
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let c_ptr = c_string.as_ptr();
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let c_str = CStr::from_bytes_with_nul(b"ipsum\0").unwrap();
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c_str.clone_into(&mut c_string);
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assert_eq!(c_str, c_string.as_c_str());
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// The exact same size shouldn't have needed to move its allocation
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assert_eq!(c_ptr, c_string.as_ptr());
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}
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#[test]
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fn into_rc() {
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let orig: &[u8] = b"Hello, world!\0";
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let cstr = CStr::from_bytes_with_nul(orig).unwrap();
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let rc: Rc<CStr> = Rc::from(cstr);
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let arc: Arc<CStr> = Arc::from(cstr);
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assert_eq!(&*rc, cstr);
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assert_eq!(&*arc, cstr);
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let rc2: Rc<CStr> = Rc::from(cstr.to_owned());
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let arc2: Arc<CStr> = Arc::from(cstr.to_owned());
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assert_eq!(&*rc2, cstr);
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assert_eq!(&*arc2, cstr);
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}
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#[test]
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fn cstr_const_constructor() {
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const CSTR: &CStr = unsafe { CStr::from_bytes_with_nul_unchecked(b"Hello, world!\0") };
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assert_eq!(CSTR.to_str().unwrap(), "Hello, world!");
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}
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#[test]
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fn cstr_index_from() {
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let original = b"Hello, world!\0";
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let cstr = CStr::from_bytes_with_nul(original).unwrap();
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let result = CStr::from_bytes_with_nul(&original[7..]).unwrap();
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assert_eq!(&cstr[7..], result);
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}
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#[test]
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#[should_panic]
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fn cstr_index_from_empty() {
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let original = b"Hello, world!\0";
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let cstr = CStr::from_bytes_with_nul(original).unwrap();
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let _ = &cstr[original.len()..];
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}
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#[test]
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fn c_string_from_empty_string() {
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let original = "";
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let cstring = CString::new(original).unwrap();
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assert_eq!(original.as_bytes(), cstring.as_bytes());
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assert_eq!([b'\0'], cstring.as_bytes_with_nul());
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}
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#[test]
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fn c_str_from_empty_string() {
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let original = b"\0";
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let cstr = CStr::from_bytes_with_nul(original).unwrap();
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assert_eq!([] as [u8; 0], cstr.to_bytes());
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assert_eq!([b'\0'], cstr.to_bytes_with_nul());
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}
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