#![stable(feature = "rust1", since = "1.0.0")]
use self::pattern::Pattern;
use self::pattern::{Searcher, ReverseSearcher, DoubleEndedSearcher};
use char;
use convert::TryFrom;
use fmt;
use iter::{Map, Cloned, FusedIterator};
use slice::{self, SliceIndex};
use mem;
pub mod pattern;
#[stable(feature = "rust1", since = "1.0.0")]
pub trait FromStr: Sized {
#[stable(feature = "rust1", since = "1.0.0")]
type Err;
#[stable(feature = "rust1", since = "1.0.0")]
fn from_str(s: &str) -> Result<Self, Self::Err>;
}
#[stable(feature = "rust1", since = "1.0.0")]
impl FromStr for bool {
type Err = ParseBoolError;
#[inline]
fn from_str(s: &str) -> Result<bool, ParseBoolError> {
match s {
"true" => Ok(true),
"false" => Ok(false),
_ => Err(ParseBoolError { _priv: () }),
}
}
}
#[derive(Debug, Clone, PartialEq, Eq)]
#[stable(feature = "rust1", since = "1.0.0")]
pub struct ParseBoolError { _priv: () }
#[stable(feature = "rust1", since = "1.0.0")]
impl fmt::Display for ParseBoolError {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
"provided string was not `true` or `false`".fmt(f)
}
}
#[derive(Copy, Eq, PartialEq, Clone, Debug)]
#[stable(feature = "rust1", since = "1.0.0")]
pub struct Utf8Error {
valid_up_to: usize,
error_len: Option<u8>,
}
impl Utf8Error {
#[stable(feature = "utf8_error", since = "1.5.0")]
pub fn valid_up_to(&self) -> usize { self.valid_up_to }
#[unstable(feature = "utf8_error_error_len", reason ="new", issue = "40494")]
pub fn error_len(&self) -> Option<usize> {
self.error_len.map(|len| len as usize)
}
}
#[stable(feature = "rust1", since = "1.0.0")]
pub fn from_utf8(v: &[u8]) -> Result<&str, Utf8Error> {
run_utf8_validation(v)?;
Ok(unsafe { from_utf8_unchecked(v) })
}
#[unstable(feature = "str_mut_extras", issue = "41119")]
pub fn from_utf8_mut(v: &mut [u8]) -> Result<&mut str, Utf8Error> {
run_utf8_validation(v)?;
Ok(unsafe { from_utf8_unchecked_mut(v) })
}
unsafe fn from_raw_parts_mut<'a>(p: *mut u8, len: usize) -> &'a mut str {
from_utf8_unchecked_mut(slice::from_raw_parts_mut(p, len))
}
#[inline(always)]
#[stable(feature = "rust1", since = "1.0.0")]
pub unsafe fn from_utf8_unchecked(v: &[u8]) -> &str {
mem::transmute(v)
}
#[inline(always)]
#[unstable(feature = "str_mut_extras", issue = "41119")]
pub unsafe fn from_utf8_unchecked_mut(v: &mut [u8]) -> &mut str {
mem::transmute(v)
}
#[stable(feature = "rust1", since = "1.0.0")]
impl fmt::Display for Utf8Error {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
if let Some(error_len) = self.error_len {
write!(f, "invalid utf-8 sequence of {} bytes from index {}",
error_len, self.valid_up_to)
} else {
write!(f, "incomplete utf-8 byte sequence from index {}", self.valid_up_to)
}
}
}
#[derive(Clone, Debug)]
#[stable(feature = "rust1", since = "1.0.0")]
pub struct Chars<'a> {
iter: slice::Iter<'a, u8>
}
#[inline]
fn utf8_first_byte(byte: u8, width: u32) -> u32 { (byte & (0x7F >> width)) as u32 }
#[inline]
fn utf8_acc_cont_byte(ch: u32, byte: u8) -> u32 { (ch << 6) | (byte & CONT_MASK) as u32 }
#[inline]
fn utf8_is_cont_byte(byte: u8) -> bool { (byte & !CONT_MASK) == TAG_CONT_U8 }
#[inline]
fn unwrap_or_0(opt: Option<&u8>) -> u8 {
match opt {
Some(&byte) => byte,
None => 0,
}
}
#[unstable(feature = "str_internals", issue = "0")]
#[inline]
pub fn next_code_point<'a, I: Iterator<Item = &'a u8>>(bytes: &mut I) -> Option<u32> {
let x = match bytes.next() {
None => return None,
Some(&next_byte) if next_byte < 128 => return Some(next_byte as u32),
Some(&next_byte) => next_byte,
};
let init = utf8_first_byte(x, 2);
let y = unwrap_or_0(bytes.next());
let mut ch = utf8_acc_cont_byte(init, y);
if x >= 0xE0 {
let z = unwrap_or_0(bytes.next());
let y_z = utf8_acc_cont_byte((y & CONT_MASK) as u32, z);
ch = init << 12 | y_z;
if x >= 0xF0 {
let w = unwrap_or_0(bytes.next());
ch = (init & 7) << 18 | utf8_acc_cont_byte(y_z, w);
}
}
Some(ch)
}
#[inline]
fn next_code_point_reverse<'a, I>(bytes: &mut I) -> Option<u32>
where I: DoubleEndedIterator<Item = &'a u8>,
{
let w = match bytes.next_back() {
None => return None,
Some(&next_byte) if next_byte < 128 => return Some(next_byte as u32),
Some(&back_byte) => back_byte,
};
let mut ch;
let z = unwrap_or_0(bytes.next_back());
ch = utf8_first_byte(z, 2);
if utf8_is_cont_byte(z) {
let y = unwrap_or_0(bytes.next_back());
ch = utf8_first_byte(y, 3);
if utf8_is_cont_byte(y) {
let x = unwrap_or_0(bytes.next_back());
ch = utf8_first_byte(x, 4);
ch = utf8_acc_cont_byte(ch, y);
}
ch = utf8_acc_cont_byte(ch, z);
}
ch = utf8_acc_cont_byte(ch, w);
Some(ch)
}
#[stable(feature = "rust1", since = "1.0.0")]
impl<'a> Iterator for Chars<'a> {
type Item = char;
#[inline]
fn next(&mut self) -> Option<char> {
next_code_point(&mut self.iter).map(|ch| {
unsafe {
char::from_u32_unchecked(ch)
}
})
}
#[inline]
fn count(self) -> usize {
let bytes_len = self.iter.len();
let mut cont_bytes = 0;
for &byte in self.iter {
cont_bytes += utf8_is_cont_byte(byte) as usize;
}
bytes_len - cont_bytes
}
#[inline]
fn size_hint(&self) -> (usize, Option<usize>) {
let len = self.iter.len();
((len + 3) / 4, Some(len))
}
#[inline]
fn last(mut self) -> Option<char> {
self.next_back()
}
}
#[stable(feature = "rust1", since = "1.0.0")]
impl<'a> DoubleEndedIterator for Chars<'a> {
#[inline]
fn next_back(&mut self) -> Option<char> {
next_code_point_reverse(&mut self.iter).map(|ch| {
unsafe {
char::from_u32_unchecked(ch)
}
})
}
}
#[unstable(feature = "fused", issue = "35602")]
impl<'a> FusedIterator for Chars<'a> {}
impl<'a> Chars<'a> {
#[stable(feature = "iter_to_slice", since = "1.4.0")]
#[inline]
pub fn as_str(&self) -> &'a str {
unsafe { from_utf8_unchecked(self.iter.as_slice()) }
}
}
#[derive(Clone, Debug)]
#[stable(feature = "rust1", since = "1.0.0")]
pub struct CharIndices<'a> {
front_offset: usize,
iter: Chars<'a>,
}
#[stable(feature = "rust1", since = "1.0.0")]
impl<'a> Iterator for CharIndices<'a> {
type Item = (usize, char);
#[inline]
fn next(&mut self) -> Option<(usize, char)> {
let pre_len = self.iter.iter.len();
match self.iter.next() {
None => None,
Some(ch) => {
let index = self.front_offset;
let len = self.iter.iter.len();
self.front_offset += pre_len - len;
Some((index, ch))
}
}
}
#[inline]
fn count(self) -> usize {
self.iter.count()
}
#[inline]
fn size_hint(&self) -> (usize, Option<usize>) {
self.iter.size_hint()
}
#[inline]
fn last(mut self) -> Option<(usize, char)> {
self.next_back()
}
}
#[stable(feature = "rust1", since = "1.0.0")]
impl<'a> DoubleEndedIterator for CharIndices<'a> {
#[inline]
fn next_back(&mut self) -> Option<(usize, char)> {
match self.iter.next_back() {
None => None,
Some(ch) => {
let index = self.front_offset + self.iter.iter.len();
Some((index, ch))
}
}
}
}
#[unstable(feature = "fused", issue = "35602")]
impl<'a> FusedIterator for CharIndices<'a> {}
impl<'a> CharIndices<'a> {
#[stable(feature = "iter_to_slice", since = "1.4.0")]
#[inline]
pub fn as_str(&self) -> &'a str {
self.iter.as_str()
}
}
#[stable(feature = "rust1", since = "1.0.0")]
#[derive(Clone, Debug)]
pub struct Bytes<'a>(Cloned<slice::Iter<'a, u8>>);
#[stable(feature = "rust1", since = "1.0.0")]
impl<'a> Iterator for Bytes<'a> {
type Item = u8;
#[inline]
fn next(&mut self) -> Option<u8> {
self.0.next()
}
#[inline]
fn size_hint(&self) -> (usize, Option<usize>) {
self.0.size_hint()
}
#[inline]
fn count(self) -> usize {
self.0.count()
}
#[inline]
fn last(self) -> Option<Self::Item> {
self.0.last()
}
#[inline]
fn nth(&mut self, n: usize) -> Option<Self::Item> {
self.0.nth(n)
}
}
#[stable(feature = "rust1", since = "1.0.0")]
impl<'a> DoubleEndedIterator for Bytes<'a> {
#[inline]
fn next_back(&mut self) -> Option<u8> {
self.0.next_back()
}
}
#[stable(feature = "rust1", since = "1.0.0")]
impl<'a> ExactSizeIterator for Bytes<'a> {
#[inline]
fn len(&self) -> usize {
self.0.len()
}
#[inline]
fn is_empty(&self) -> bool {
self.0.is_empty()
}
}
#[unstable(feature = "fused", issue = "35602")]
impl<'a> FusedIterator for Bytes<'a> {}
macro_rules! derive_pattern_clone {
(clone $t:ident with |$s:ident| $e:expr) => {
impl<'a, P: Pattern<'a>> Clone for $t<'a, P>
where P::Searcher: Clone
{
fn clone(&self) -> Self {
let $s = self;
$e
}
}
}
}
macro_rules! generate_pattern_iterators {
{
forward:
$(#[$forward_iterator_attribute:meta])*
struct $forward_iterator:ident;
reverse:
$(#[$reverse_iterator_attribute:meta])*
struct $reverse_iterator:ident;
stability:
$(#[$common_stability_attribute:meta])*
internal:
$internal_iterator:ident yielding ($iterty:ty);
delegate $($t:tt)*
} => {
$(#[$forward_iterator_attribute])*
$(#[$common_stability_attribute])*
pub struct $forward_iterator<'a, P: Pattern<'a>>($internal_iterator<'a, P>);
$(#[$common_stability_attribute])*
impl<'a, P: Pattern<'a>> fmt::Debug for $forward_iterator<'a, P>
where P::Searcher: fmt::Debug
{
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
f.debug_tuple(stringify!($forward_iterator))
.field(&self.0)
.finish()
}
}
$(#[$common_stability_attribute])*
impl<'a, P: Pattern<'a>> Iterator for $forward_iterator<'a, P> {
type Item = $iterty;
#[inline]
fn next(&mut self) -> Option<$iterty> {
self.0.next()
}
}
$(#[$common_stability_attribute])*
impl<'a, P: Pattern<'a>> Clone for $forward_iterator<'a, P>
where P::Searcher: Clone
{
fn clone(&self) -> Self {
$forward_iterator(self.0.clone())
}
}
$(#[$reverse_iterator_attribute])*
$(#[$common_stability_attribute])*
pub struct $reverse_iterator<'a, P: Pattern<'a>>($internal_iterator<'a, P>);
$(#[$common_stability_attribute])*
impl<'a, P: Pattern<'a>> fmt::Debug for $reverse_iterator<'a, P>
where P::Searcher: fmt::Debug
{
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
f.debug_tuple(stringify!($reverse_iterator))
.field(&self.0)
.finish()
}
}
$(#[$common_stability_attribute])*
impl<'a, P: Pattern<'a>> Iterator for $reverse_iterator<'a, P>
where P::Searcher: ReverseSearcher<'a>
{
type Item = $iterty;
#[inline]
fn next(&mut self) -> Option<$iterty> {
self.0.next_back()
}
}
$(#[$common_stability_attribute])*
impl<'a, P: Pattern<'a>> Clone for $reverse_iterator<'a, P>
where P::Searcher: Clone
{
fn clone(&self) -> Self {
$reverse_iterator(self.0.clone())
}
}
#[unstable(feature = "fused", issue = "35602")]
impl<'a, P: Pattern<'a>> FusedIterator for $forward_iterator<'a, P> {}
#[unstable(feature = "fused", issue = "35602")]
impl<'a, P: Pattern<'a>> FusedIterator for $reverse_iterator<'a, P>
where P::Searcher: ReverseSearcher<'a> {}
generate_pattern_iterators!($($t)* with $(#[$common_stability_attribute])*,
$forward_iterator,
$reverse_iterator, $iterty);
};
{
double ended; with $(#[$common_stability_attribute:meta])*,
$forward_iterator:ident,
$reverse_iterator:ident, $iterty:ty
} => {
$(#[$common_stability_attribute])*
impl<'a, P: Pattern<'a>> DoubleEndedIterator for $forward_iterator<'a, P>
where P::Searcher: DoubleEndedSearcher<'a>
{
#[inline]
fn next_back(&mut self) -> Option<$iterty> {
self.0.next_back()
}
}
$(#[$common_stability_attribute])*
impl<'a, P: Pattern<'a>> DoubleEndedIterator for $reverse_iterator<'a, P>
where P::Searcher: DoubleEndedSearcher<'a>
{
#[inline]
fn next_back(&mut self) -> Option<$iterty> {
self.0.next()
}
}
};
{
single ended; with $(#[$common_stability_attribute:meta])*,
$forward_iterator:ident,
$reverse_iterator:ident, $iterty:ty
} => {}
}
derive_pattern_clone!{
clone SplitInternal
with |s| SplitInternal { matcher: s.matcher.clone(), ..*s }
}
struct SplitInternal<'a, P: Pattern<'a>> {
start: usize,
end: usize,
matcher: P::Searcher,
allow_trailing_empty: bool,
finished: bool,
}
impl<'a, P: Pattern<'a>> fmt::Debug for SplitInternal<'a, P> where P::Searcher: fmt::Debug {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
f.debug_struct("SplitInternal")
.field("start", &self.start)
.field("end", &self.end)
.field("matcher", &self.matcher)
.field("allow_trailing_empty", &self.allow_trailing_empty)
.field("finished", &self.finished)
.finish()
}
}
impl<'a, P: Pattern<'a>> SplitInternal<'a, P> {
#[inline]
fn get_end(&mut self) -> Option<&'a str> {
if !self.finished && (self.allow_trailing_empty || self.end - self.start > 0) {
self.finished = true;
unsafe {
let string = self.matcher.haystack().slice_unchecked(self.start, self.end);
Some(string)
}
} else {
None
}
}
#[inline]
fn next(&mut self) -> Option<&'a str> {
if self.finished { return None }
let haystack = self.matcher.haystack();
match self.matcher.next_match() {
Some((a, b)) => unsafe {
let elt = haystack.slice_unchecked(self.start, a);
self.start = b;
Some(elt)
},
None => self.get_end(),
}
}
#[inline]
fn next_back(&mut self) -> Option<&'a str>
where P::Searcher: ReverseSearcher<'a>
{
if self.finished { return None }
if !self.allow_trailing_empty {
self.allow_trailing_empty = true;
match self.next_back() {
Some(elt) if !elt.is_empty() => return Some(elt),
_ => if self.finished { return None }
}
}
let haystack = self.matcher.haystack();
match self.matcher.next_match_back() {
Some((a, b)) => unsafe {
let elt = haystack.slice_unchecked(b, self.end);
self.end = a;
Some(elt)
},
None => unsafe {
self.finished = true;
Some(haystack.slice_unchecked(self.start, self.end))
},
}
}
}
generate_pattern_iterators! {
forward:
struct Split;
reverse:
struct RSplit;
stability:
#[stable(feature = "rust1", since = "1.0.0")]
internal:
SplitInternal yielding (&'a str);
delegate double ended;
}
generate_pattern_iterators! {
forward:
struct SplitTerminator;
reverse:
struct RSplitTerminator;
stability:
#[stable(feature = "rust1", since = "1.0.0")]
internal:
SplitInternal yielding (&'a str);
delegate double ended;
}
derive_pattern_clone!{
clone SplitNInternal
with |s| SplitNInternal { iter: s.iter.clone(), ..*s }
}
struct SplitNInternal<'a, P: Pattern<'a>> {
iter: SplitInternal<'a, P>,
count: usize,
}
impl<'a, P: Pattern<'a>> fmt::Debug for SplitNInternal<'a, P> where P::Searcher: fmt::Debug {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
f.debug_struct("SplitNInternal")
.field("iter", &self.iter)
.field("count", &self.count)
.finish()
}
}
impl<'a, P: Pattern<'a>> SplitNInternal<'a, P> {
#[inline]
fn next(&mut self) -> Option<&'a str> {
match self.count {
0 => None,
1 => { self.count = 0; self.iter.get_end() }
_ => { self.count -= 1; self.iter.next() }
}
}
#[inline]
fn next_back(&mut self) -> Option<&'a str>
where P::Searcher: ReverseSearcher<'a>
{
match self.count {
0 => None,
1 => { self.count = 0; self.iter.get_end() }
_ => { self.count -= 1; self.iter.next_back() }
}
}
}
generate_pattern_iterators! {
forward:
struct SplitN;
reverse:
struct RSplitN;
stability:
#[stable(feature = "rust1", since = "1.0.0")]
internal:
SplitNInternal yielding (&'a str);
delegate single ended;
}
derive_pattern_clone!{
clone MatchIndicesInternal
with |s| MatchIndicesInternal(s.0.clone())
}
struct MatchIndicesInternal<'a, P: Pattern<'a>>(P::Searcher);
impl<'a, P: Pattern<'a>> fmt::Debug for MatchIndicesInternal<'a, P> where P::Searcher: fmt::Debug {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
f.debug_tuple("MatchIndicesInternal")
.field(&self.0)
.finish()
}
}
impl<'a, P: Pattern<'a>> MatchIndicesInternal<'a, P> {
#[inline]
fn next(&mut self) -> Option<(usize, &'a str)> {
self.0.next_match().map(|(start, end)| unsafe {
(start, self.0.haystack().slice_unchecked(start, end))
})
}
#[inline]
fn next_back(&mut self) -> Option<(usize, &'a str)>
where P::Searcher: ReverseSearcher<'a>
{
self.0.next_match_back().map(|(start, end)| unsafe {
(start, self.0.haystack().slice_unchecked(start, end))
})
}
}
generate_pattern_iterators! {
forward:
struct MatchIndices;
reverse:
struct RMatchIndices;
stability:
#[stable(feature = "str_match_indices", since = "1.5.0")]
internal:
MatchIndicesInternal yielding ((usize, &'a str));
delegate double ended;
}
derive_pattern_clone!{
clone MatchesInternal
with |s| MatchesInternal(s.0.clone())
}
struct MatchesInternal<'a, P: Pattern<'a>>(P::Searcher);
impl<'a, P: Pattern<'a>> fmt::Debug for MatchesInternal<'a, P> where P::Searcher: fmt::Debug {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
f.debug_tuple("MatchesInternal")
.field(&self.0)
.finish()
}
}
impl<'a, P: Pattern<'a>> MatchesInternal<'a, P> {
#[inline]
fn next(&mut self) -> Option<&'a str> {
self.0.next_match().map(|(a, b)| unsafe {
self.0.haystack().slice_unchecked(a, b)
})
}
#[inline]
fn next_back(&mut self) -> Option<&'a str>
where P::Searcher: ReverseSearcher<'a>
{
self.0.next_match_back().map(|(a, b)| unsafe {
self.0.haystack().slice_unchecked(a, b)
})
}
}
generate_pattern_iterators! {
forward:
struct Matches;
reverse:
struct RMatches;
stability:
#[stable(feature = "str_matches", since = "1.2.0")]
internal:
MatchesInternal yielding (&'a str);
delegate double ended;
}
#[stable(feature = "rust1", since = "1.0.0")]
#[derive(Clone, Debug)]
pub struct Lines<'a>(Map<SplitTerminator<'a, char>, LinesAnyMap>);
#[stable(feature = "rust1", since = "1.0.0")]
impl<'a> Iterator for Lines<'a> {
type Item = &'a str;
#[inline]
fn next(&mut self) -> Option<&'a str> {
self.0.next()
}
#[inline]
fn size_hint(&self) -> (usize, Option<usize>) {
self.0.size_hint()
}
}
#[stable(feature = "rust1", since = "1.0.0")]
impl<'a> DoubleEndedIterator for Lines<'a> {
#[inline]
fn next_back(&mut self) -> Option<&'a str> {
self.0.next_back()
}
}
#[unstable(feature = "fused", issue = "35602")]
impl<'a> FusedIterator for Lines<'a> {}
#[stable(feature = "rust1", since = "1.0.0")]
#[rustc_deprecated(since = "1.4.0", reason = "use lines()/Lines instead now")]
#[derive(Clone, Debug)]
#[allow(deprecated)]
pub struct LinesAny<'a>(Lines<'a>);
#[derive(Clone)]
struct LinesAnyMap;
impl<'a> Fn<(&'a str,)> for LinesAnyMap {
#[inline]
extern "rust-call" fn call(&self, (line,): (&'a str,)) -> &'a str {
let l = line.len();
if l > 0 && line.as_bytes()[l - 1] == b'\r' { &line[0 .. l - 1] }
else { line }
}
}
impl<'a> FnMut<(&'a str,)> for LinesAnyMap {
#[inline]
extern "rust-call" fn call_mut(&mut self, (line,): (&'a str,)) -> &'a str {
Fn::call(&*self, (line,))
}
}
impl<'a> FnOnce<(&'a str,)> for LinesAnyMap {
type Output = &'a str;
#[inline]
extern "rust-call" fn call_once(self, (line,): (&'a str,)) -> &'a str {
Fn::call(&self, (line,))
}
}
#[stable(feature = "rust1", since = "1.0.0")]
#[allow(deprecated)]
impl<'a> Iterator for LinesAny<'a> {
type Item = &'a str;
#[inline]
fn next(&mut self) -> Option<&'a str> {
self.0.next()
}
#[inline]
fn size_hint(&self) -> (usize, Option<usize>) {
self.0.size_hint()
}
}
#[stable(feature = "rust1", since = "1.0.0")]
#[allow(deprecated)]
impl<'a> DoubleEndedIterator for LinesAny<'a> {
#[inline]
fn next_back(&mut self) -> Option<&'a str> {
self.0.next_back()
}
}
#[unstable(feature = "fused", issue = "35602")]
#[allow(deprecated)]
impl<'a> FusedIterator for LinesAny<'a> {}
#[lang = "str_eq"]
#[inline]
fn eq_slice(a: &str, b: &str) -> bool {
a.as_bytes() == b.as_bytes()
}
const NONASCII_MASK: usize = 0x80808080_80808080u64 as usize;
#[inline]
fn contains_nonascii(x: usize) -> bool {
(x & NONASCII_MASK) != 0
}
#[inline(always)]
fn run_utf8_validation(v: &[u8]) -> Result<(), Utf8Error> {
let mut index = 0;
let len = v.len();
let usize_bytes = mem::size_of::<usize>();
let ascii_block_size = 2 * usize_bytes;
let blocks_end = if len >= ascii_block_size { len - ascii_block_size + 1 } else { 0 };
while index < len {
let old_offset = index;
macro_rules! err {
($error_len: expr) => {
return Err(Utf8Error {
valid_up_to: old_offset,
error_len: $error_len,
})
}
}
macro_rules! next { () => {{
index += 1;
if index >= len {
err!(None)
}
v[index]
}}}
let first = v[index];
if first >= 128 {
let w = UTF8_CHAR_WIDTH[first as usize];
match w {
2 => if next!() & !CONT_MASK != TAG_CONT_U8 {
err!(Some(1))
},
3 => {
match (first, next!()) {
(0xE0 , 0xA0 ... 0xBF) |
(0xE1 ... 0xEC, 0x80 ... 0xBF) |
(0xED , 0x80 ... 0x9F) |
(0xEE ... 0xEF, 0x80 ... 0xBF) => {}
_ => err!(Some(1))
}
if next!() & !CONT_MASK != TAG_CONT_U8 {
err!(Some(2))
}
}
4 => {
match (first, next!()) {
(0xF0 , 0x90 ... 0xBF) |
(0xF1 ... 0xF3, 0x80 ... 0xBF) |
(0xF4 , 0x80 ... 0x8F) => {}
_ => err!(Some(1))
}
if next!() & !CONT_MASK != TAG_CONT_U8 {
err!(Some(2))
}
if next!() & !CONT_MASK != TAG_CONT_U8 {
err!(Some(3))
}
}
_ => err!(Some(1))
}
index += 1;
} else {
let ptr = v.as_ptr();
let align = (ptr as usize + index) & (usize_bytes - 1);
if align == 0 {
while index < blocks_end {
unsafe {
let block = ptr.offset(index as isize) as *const usize;
let zu = contains_nonascii(*block);
let zv = contains_nonascii(*block.offset(1));
if zu | zv {
break;
}
}
index += ascii_block_size;
}
while index < len && v[index] < 128 {
index += 1;
}
} else {
index += 1;
}
}
}
Ok(())
}
static UTF8_CHAR_WIDTH: [u8; 256] = [
1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,2,2,2,2,2,2,2,2,2,2,2,2,2,2,
2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2, 3,3,3,3,3,3,3,3,3,3,3,3,3,3,3,3, 4,4,4,4,4,0,0,0,0,0,0,0,0,0,0,0, ];
#[unstable(feature = "str_internals", issue = "0")]
#[inline]
pub fn utf8_char_width(b: u8) -> usize {
return UTF8_CHAR_WIDTH[b as usize] as usize;
}
const CONT_MASK: u8 = 0b0011_1111;
const TAG_CONT_U8: u8 = 0b1000_0000;
mod traits {
use cmp::Ordering;
use ops;
use slice::{self, SliceIndex};
use str::eq_slice;
#[stable(feature = "rust1", since = "1.0.0")]
impl Ord for str {
#[inline]
fn cmp(&self, other: &str) -> Ordering {
self.as_bytes().cmp(other.as_bytes())
}
}
#[stable(feature = "rust1", since = "1.0.0")]
impl PartialEq for str {
#[inline]
fn eq(&self, other: &str) -> bool {
eq_slice(self, other)
}
#[inline]
fn ne(&self, other: &str) -> bool { !(*self).eq(other) }
}
#[stable(feature = "rust1", since = "1.0.0")]
impl Eq for str {}
#[stable(feature = "rust1", since = "1.0.0")]
impl PartialOrd for str {
#[inline]
fn partial_cmp(&self, other: &str) -> Option<Ordering> {
Some(self.cmp(other))
}
}
#[stable(feature = "rust1", since = "1.0.0")]
impl ops::Index<ops::Range<usize>> for str {
type Output = str;
#[inline]
fn index(&self, index: ops::Range<usize>) -> &str {
index.index(self)
}
}
#[stable(feature = "derefmut_for_string", since = "1.2.0")]
impl ops::IndexMut<ops::Range<usize>> for str {
#[inline]
fn index_mut(&mut self, index: ops::Range<usize>) -> &mut str {
index.index_mut(self)
}
}
#[stable(feature = "rust1", since = "1.0.0")]
impl ops::Index<ops::RangeTo<usize>> for str {
type Output = str;
#[inline]
fn index(&self, index: ops::RangeTo<usize>) -> &str {
if self.is_char_boundary(index.end) {
unsafe { self.slice_unchecked(0, index.end) }
} else {
super::slice_error_fail(self, 0, index.end)
}
}
}
#[stable(feature = "derefmut_for_string", since = "1.2.0")]
impl ops::IndexMut<ops::RangeTo<usize>> for str {
#[inline]
fn index_mut(&mut self, index: ops::RangeTo<usize>) -> &mut str {
if self.is_char_boundary(index.end) {
unsafe { self.slice_mut_unchecked(0, index.end) }
} else {
super::slice_error_fail(self, 0, index.end)
}
}
}
#[stable(feature = "rust1", since = "1.0.0")]
impl ops::Index<ops::RangeFrom<usize>> for str {
type Output = str;
#[inline]
fn index(&self, index: ops::RangeFrom<usize>) -> &str {
if self.is_char_boundary(index.start) {
unsafe { self.slice_unchecked(index.start, self.len()) }
} else {
super::slice_error_fail(self, index.start, self.len())
}
}
}
#[stable(feature = "derefmut_for_string", since = "1.2.0")]
impl ops::IndexMut<ops::RangeFrom<usize>> for str {
#[inline]
fn index_mut(&mut self, index: ops::RangeFrom<usize>) -> &mut str {
if self.is_char_boundary(index.start) {
let len = self.len();
unsafe { self.slice_mut_unchecked(index.start, len) }
} else {
super::slice_error_fail(self, index.start, self.len())
}
}
}
#[stable(feature = "rust1", since = "1.0.0")]
impl ops::Index<ops::RangeFull> for str {
type Output = str;
#[inline]
fn index(&self, _index: ops::RangeFull) -> &str {
self
}
}
#[stable(feature = "derefmut_for_string", since = "1.2.0")]
impl ops::IndexMut<ops::RangeFull> for str {
#[inline]
fn index_mut(&mut self, _index: ops::RangeFull) -> &mut str {
self
}
}
#[unstable(feature = "inclusive_range",
reason = "recently added, follows RFC",
issue = "28237")]
impl ops::Index<ops::RangeInclusive<usize>> for str {
type Output = str;
#[inline]
fn index(&self, index: ops::RangeInclusive<usize>) -> &str {
match index {
ops::RangeInclusive::Empty { .. } => "",
ops::RangeInclusive::NonEmpty { end, .. } if end == usize::max_value() =>
panic!("attempted to index slice up to maximum usize"),
ops::RangeInclusive::NonEmpty { start, end } =>
self.index(start .. end+1)
}
}
}
#[unstable(feature = "inclusive_range",
reason = "recently added, follows RFC",
issue = "28237")]
impl ops::Index<ops::RangeToInclusive<usize>> for str {
type Output = str;
#[inline]
fn index(&self, index: ops::RangeToInclusive<usize>) -> &str {
self.index(0...index.end)
}
}
#[unstable(feature = "inclusive_range",
reason = "recently added, follows RFC",
issue = "28237")]
impl ops::IndexMut<ops::RangeInclusive<usize>> for str {
#[inline]
fn index_mut(&mut self, index: ops::RangeInclusive<usize>) -> &mut str {
match index {
ops::RangeInclusive::Empty { .. } => &mut self[0..0], ops::RangeInclusive::NonEmpty { end, .. } if end == usize::max_value() =>
panic!("attempted to index str up to maximum usize"),
ops::RangeInclusive::NonEmpty { start, end } =>
self.index_mut(start .. end+1)
}
}
}
#[unstable(feature = "inclusive_range",
reason = "recently added, follows RFC",
issue = "28237")]
impl ops::IndexMut<ops::RangeToInclusive<usize>> for str {
#[inline]
fn index_mut(&mut self, index: ops::RangeToInclusive<usize>) -> &mut str {
self.index_mut(0...index.end)
}
}
#[unstable(feature = "str_checked_slicing", issue = "39932")]
impl SliceIndex<str> for ops::RangeFull {
type Output = str;
#[inline]
fn get(self, slice: &str) -> Option<&Self::Output> {
Some(slice)
}
#[inline]
fn get_mut(self, slice: &mut str) -> Option<&mut Self::Output> {
Some(slice)
}
#[inline]
unsafe fn get_unchecked(self, slice: &str) -> &Self::Output {
slice
}
#[inline]
unsafe fn get_unchecked_mut(self, slice: &mut str) -> &mut Self::Output {
slice
}
#[inline]
fn index(self, slice: &str) -> &Self::Output {
slice
}
#[inline]
fn index_mut(self, slice: &mut str) -> &mut Self::Output {
slice
}
}
#[unstable(feature = "str_checked_slicing", issue = "39932")]
impl SliceIndex<str> for ops::Range<usize> {
type Output = str;
#[inline]
fn get(self, slice: &str) -> Option<&Self::Output> {
if self.start <= self.end &&
slice.is_char_boundary(self.start) &&
slice.is_char_boundary(self.end) {
Some(unsafe { self.get_unchecked(slice) })
} else {
None
}
}
#[inline]
fn get_mut(self, slice: &mut str) -> Option<&mut Self::Output> {
if self.start <= self.end &&
slice.is_char_boundary(self.start) &&
slice.is_char_boundary(self.end) {
Some(unsafe { self.get_unchecked_mut(slice) })
} else {
None
}
}
#[inline]
unsafe fn get_unchecked(self, slice: &str) -> &Self::Output {
let ptr = slice.as_ptr().offset(self.start as isize);
let len = self.end - self.start;
super::from_utf8_unchecked(slice::from_raw_parts(ptr, len))
}
#[inline]
unsafe fn get_unchecked_mut(self, slice: &mut str) -> &mut Self::Output {
let ptr = slice.as_ptr().offset(self.start as isize);
let len = self.end - self.start;
super::from_utf8_unchecked_mut(slice::from_raw_parts_mut(ptr as *mut u8, len))
}
#[inline]
fn index(self, slice: &str) -> &Self::Output {
let (start, end) = (self.start, self.end);
self.get(slice).unwrap_or_else(|| super::slice_error_fail(slice, start, end))
}
#[inline]
fn index_mut(self, slice: &mut str) -> &mut Self::Output {
if self.start <= self.end &&
slice.is_char_boundary(self.start) &&
slice.is_char_boundary(self.end) {
unsafe { self.get_unchecked_mut(slice) }
} else {
super::slice_error_fail(slice, self.start, self.end)
}
}
}
#[unstable(feature = "str_checked_slicing", issue = "39932")]
impl SliceIndex<str> for ops::RangeTo<usize> {
type Output = str;
#[inline]
fn get(self, slice: &str) -> Option<&Self::Output> {
if slice.is_char_boundary(self.end) {
Some(unsafe { self.get_unchecked(slice) })
} else {
None
}
}
#[inline]
fn get_mut(self, slice: &mut str) -> Option<&mut Self::Output> {
if slice.is_char_boundary(self.end) {
Some(unsafe { self.get_unchecked_mut(slice) })
} else {
None
}
}
#[inline]
unsafe fn get_unchecked(self, slice: &str) -> &Self::Output {
let ptr = slice.as_ptr();
super::from_utf8_unchecked(slice::from_raw_parts(ptr, self.end))
}
#[inline]
unsafe fn get_unchecked_mut(self, slice: &mut str) -> &mut Self::Output {
let ptr = slice.as_ptr();
super::from_utf8_unchecked_mut(slice::from_raw_parts_mut(ptr as *mut u8, self.end))
}
#[inline]
fn index(self, slice: &str) -> &Self::Output {
let end = self.end;
self.get(slice).unwrap_or_else(|| super::slice_error_fail(slice, 0, end))
}
#[inline]
fn index_mut(self, slice: &mut str) -> &mut Self::Output {
if slice.is_char_boundary(self.end) {
unsafe { self.get_unchecked_mut(slice) }
} else {
super::slice_error_fail(slice, 0, self.end)
}
}
}
#[unstable(feature = "str_checked_slicing", issue = "39932")]
impl SliceIndex<str> for ops::RangeFrom<usize> {
type Output = str;
#[inline]
fn get(self, slice: &str) -> Option<&Self::Output> {
if slice.is_char_boundary(self.start) {
Some(unsafe { self.get_unchecked(slice) })
} else {
None
}
}
#[inline]
fn get_mut(self, slice: &mut str) -> Option<&mut Self::Output> {
if slice.is_char_boundary(self.start) {
Some(unsafe { self.get_unchecked_mut(slice) })
} else {
None
}
}
#[inline]
unsafe fn get_unchecked(self, slice: &str) -> &Self::Output {
let ptr = slice.as_ptr().offset(self.start as isize);
let len = slice.len() - self.start;
super::from_utf8_unchecked(slice::from_raw_parts(ptr, len))
}
#[inline]
unsafe fn get_unchecked_mut(self, slice: &mut str) -> &mut Self::Output {
let ptr = slice.as_ptr().offset(self.start as isize);
let len = slice.len() - self.start;
super::from_utf8_unchecked_mut(slice::from_raw_parts_mut(ptr as *mut u8, len))
}
#[inline]
fn index(self, slice: &str) -> &Self::Output {
let (start, end) = (self.start, slice.len());
self.get(slice).unwrap_or_else(|| super::slice_error_fail(slice, start, end))
}
#[inline]
fn index_mut(self, slice: &mut str) -> &mut Self::Output {
if slice.is_char_boundary(self.start) {
unsafe { self.get_unchecked_mut(slice) }
} else {
super::slice_error_fail(slice, self.start, slice.len())
}
}
}
#[unstable(feature = "str_checked_slicing", issue = "39932")]
impl SliceIndex<str> for ops::RangeInclusive<usize> {
type Output = str;
#[inline]
fn get(self, slice: &str) -> Option<&Self::Output> {
match self {
ops::RangeInclusive::Empty { .. } => 0..0,
ops::RangeInclusive::NonEmpty { start, end } => start..end+1,
}.get(slice)
}
#[inline]
fn get_mut(self, slice: &mut str) -> Option<&mut Self::Output> {
match self {
ops::RangeInclusive::Empty { .. } => 0..0,
ops::RangeInclusive::NonEmpty { start, end } => start..end+1,
}.get_mut(slice)
}
#[inline]
unsafe fn get_unchecked(self, slice: &str) -> &Self::Output {
match self {
ops::RangeInclusive::Empty { .. } => 0..0,
ops::RangeInclusive::NonEmpty { start, end } => start..end+1,
}.get_unchecked(slice)
}
#[inline]
unsafe fn get_unchecked_mut(self, slice: &mut str) -> &mut Self::Output {
match self {
ops::RangeInclusive::Empty { .. } => 0..0,
ops::RangeInclusive::NonEmpty { start, end } => start..end+1,
}.get_unchecked_mut(slice)
}
#[inline]
fn index(self, slice: &str) -> &Self::Output {
match self {
ops::RangeInclusive::Empty { .. } => 0..0,
ops::RangeInclusive::NonEmpty { start, end } => start..end+1,
}.index(slice)
}
#[inline]
fn index_mut(self, slice: &mut str) -> &mut Self::Output {
match self {
ops::RangeInclusive::Empty { .. } => 0..0,
ops::RangeInclusive::NonEmpty { start, end } => start..end+1,
}.index_mut(slice)
}
}
#[unstable(feature = "str_checked_slicing", issue = "39932")]
impl SliceIndex<str> for ops::RangeToInclusive<usize> {
type Output = str;
#[inline]
fn get(self, slice: &str) -> Option<&Self::Output> {
if slice.is_char_boundary(self.end + 1) {
Some(unsafe { self.get_unchecked(slice) })
} else {
None
}
}
#[inline]
fn get_mut(self, slice: &mut str) -> Option<&mut Self::Output> {
if slice.is_char_boundary(self.end + 1) {
Some(unsafe { self.get_unchecked_mut(slice) })
} else {
None
}
}
#[inline]
unsafe fn get_unchecked(self, slice: &str) -> &Self::Output {
let ptr = slice.as_ptr();
super::from_utf8_unchecked(slice::from_raw_parts(ptr, self.end + 1))
}
#[inline]
unsafe fn get_unchecked_mut(self, slice: &mut str) -> &mut Self::Output {
let ptr = slice.as_ptr();
super::from_utf8_unchecked_mut(slice::from_raw_parts_mut(ptr as *mut u8, self.end + 1))
}
#[inline]
fn index(self, slice: &str) -> &Self::Output {
let end = self.end + 1;
self.get(slice).unwrap_or_else(|| super::slice_error_fail(slice, 0, end))
}
#[inline]
fn index_mut(self, slice: &mut str) -> &mut Self::Output {
if slice.is_char_boundary(self.end) {
unsafe { self.get_unchecked_mut(slice) }
} else {
super::slice_error_fail(slice, 0, self.end + 1)
}
}
}
}
#[allow(missing_docs)]
#[doc(hidden)]
#[unstable(feature = "core_str_ext",
reason = "stable interface provided by `impl str` in later crates",
issue = "32110")]
pub trait StrExt {
#[stable(feature = "core", since = "1.6.0")]
fn contains<'a, P: Pattern<'a>>(&'a self, pat: P) -> bool;
#[stable(feature = "core", since = "1.6.0")]
fn chars(&self) -> Chars;
#[stable(feature = "core", since = "1.6.0")]
fn bytes(&self) -> Bytes;
#[stable(feature = "core", since = "1.6.0")]
fn char_indices(&self) -> CharIndices;
#[stable(feature = "core", since = "1.6.0")]
fn split<'a, P: Pattern<'a>>(&'a self, pat: P) -> Split<'a, P>;
#[stable(feature = "core", since = "1.6.0")]
fn rsplit<'a, P: Pattern<'a>>(&'a self, pat: P) -> RSplit<'a, P>
where P::Searcher: ReverseSearcher<'a>;
#[stable(feature = "core", since = "1.6.0")]
fn splitn<'a, P: Pattern<'a>>(&'a self, count: usize, pat: P) -> SplitN<'a, P>;
#[stable(feature = "core", since = "1.6.0")]
fn rsplitn<'a, P: Pattern<'a>>(&'a self, count: usize, pat: P) -> RSplitN<'a, P>
where P::Searcher: ReverseSearcher<'a>;
#[stable(feature = "core", since = "1.6.0")]
fn split_terminator<'a, P: Pattern<'a>>(&'a self, pat: P) -> SplitTerminator<'a, P>;
#[stable(feature = "core", since = "1.6.0")]
fn rsplit_terminator<'a, P: Pattern<'a>>(&'a self, pat: P) -> RSplitTerminator<'a, P>
where P::Searcher: ReverseSearcher<'a>;
#[stable(feature = "core", since = "1.6.0")]
fn matches<'a, P: Pattern<'a>>(&'a self, pat: P) -> Matches<'a, P>;
#[stable(feature = "core", since = "1.6.0")]
fn rmatches<'a, P: Pattern<'a>>(&'a self, pat: P) -> RMatches<'a, P>
where P::Searcher: ReverseSearcher<'a>;
#[stable(feature = "core", since = "1.6.0")]
fn match_indices<'a, P: Pattern<'a>>(&'a self, pat: P) -> MatchIndices<'a, P>;
#[stable(feature = "core", since = "1.6.0")]
fn rmatch_indices<'a, P: Pattern<'a>>(&'a self, pat: P) -> RMatchIndices<'a, P>
where P::Searcher: ReverseSearcher<'a>;
#[stable(feature = "core", since = "1.6.0")]
fn lines(&self) -> Lines;
#[stable(feature = "core", since = "1.6.0")]
#[rustc_deprecated(since = "1.6.0", reason = "use lines() instead now")]
#[allow(deprecated)]
fn lines_any(&self) -> LinesAny;
#[unstable(feature = "str_checked_slicing", issue = "39932")]
fn get<I: SliceIndex<str>>(&self, i: I) -> Option<&I::Output>;
#[unstable(feature = "str_checked_slicing", issue = "39932")]
fn get_mut<I: SliceIndex<str>>(&mut self, i: I) -> Option<&mut I::Output>;
#[unstable(feature = "str_checked_slicing", issue = "39932")]
unsafe fn get_unchecked<I: SliceIndex<str>>(&self, i: I) -> &I::Output;
#[unstable(feature = "str_checked_slicing", issue = "39932")]
unsafe fn get_unchecked_mut<I: SliceIndex<str>>(&mut self, i: I) -> &mut I::Output;
#[stable(feature = "core", since = "1.6.0")]
unsafe fn slice_unchecked(&self, begin: usize, end: usize) -> &str;
#[stable(feature = "core", since = "1.6.0")]
unsafe fn slice_mut_unchecked(&mut self, begin: usize, end: usize) -> &mut str;
#[stable(feature = "core", since = "1.6.0")]
fn starts_with<'a, P: Pattern<'a>>(&'a self, pat: P) -> bool;
#[stable(feature = "core", since = "1.6.0")]
fn ends_with<'a, P: Pattern<'a>>(&'a self, pat: P) -> bool
where P::Searcher: ReverseSearcher<'a>;
#[stable(feature = "core", since = "1.6.0")]
fn trim_matches<'a, P: Pattern<'a>>(&'a self, pat: P) -> &'a str
where P::Searcher: DoubleEndedSearcher<'a>;
#[stable(feature = "core", since = "1.6.0")]
fn trim_left_matches<'a, P: Pattern<'a>>(&'a self, pat: P) -> &'a str;
#[stable(feature = "core", since = "1.6.0")]
fn trim_right_matches<'a, P: Pattern<'a>>(&'a self, pat: P) -> &'a str
where P::Searcher: ReverseSearcher<'a>;
#[stable(feature = "is_char_boundary", since = "1.9.0")]
fn is_char_boundary(&self, index: usize) -> bool;
#[stable(feature = "core", since = "1.6.0")]
fn as_bytes(&self) -> &[u8];
#[unstable(feature = "str_mut_extras", issue = "0")]
unsafe fn as_bytes_mut(&mut self) -> &mut [u8];
#[stable(feature = "core", since = "1.6.0")]
fn find<'a, P: Pattern<'a>>(&'a self, pat: P) -> Option<usize>;
#[stable(feature = "core", since = "1.6.0")]
fn rfind<'a, P: Pattern<'a>>(&'a self, pat: P) -> Option<usize>
where P::Searcher: ReverseSearcher<'a>;
fn find_str<'a, P: Pattern<'a>>(&'a self, pat: P) -> Option<usize>;
#[stable(feature = "core", since = "1.6.0")]
fn split_at(&self, mid: usize) -> (&str, &str);
#[stable(feature = "core", since = "1.6.0")]
fn split_at_mut(&mut self, mid: usize) -> (&mut str, &mut str);
#[stable(feature = "core", since = "1.6.0")]
fn as_ptr(&self) -> *const u8;
#[stable(feature = "core", since = "1.6.0")]
fn len(&self) -> usize;
#[stable(feature = "core", since = "1.6.0")]
fn is_empty(&self) -> bool;
#[stable(feature = "core", since = "1.6.0")]
fn parse<'a, T: TryFrom<&'a str>>(&'a self) -> Result<T, T::Error>;
}
fn truncate_to_char_boundary(s: &str, mut max: usize) -> (bool, &str) {
if max >= s.len() {
(false, s)
} else {
while !s.is_char_boundary(max) {
max -= 1;
}
(true, &s[..max])
}
}
#[inline(never)]
#[cold]
fn slice_error_fail(s: &str, begin: usize, end: usize) -> ! {
panic!("slice_error_fail")
}
#[stable(feature = "core", since = "1.6.0")]
impl StrExt for str {
#[inline]
fn contains<'a, P: Pattern<'a>>(&'a self, pat: P) -> bool {
pat.is_contained_in(self)
}
#[inline]
fn chars(&self) -> Chars {
Chars{iter: self.as_bytes().iter()}
}
#[inline]
fn bytes(&self) -> Bytes {
Bytes(self.as_bytes().iter().cloned())
}
#[inline]
fn char_indices(&self) -> CharIndices {
CharIndices { front_offset: 0, iter: self.chars() }
}
#[inline]
fn split<'a, P: Pattern<'a>>(&'a self, pat: P) -> Split<'a, P> {
Split(SplitInternal {
start: 0,
end: self.len(),
matcher: pat.into_searcher(self),
allow_trailing_empty: true,
finished: false,
})
}
#[inline]
fn rsplit<'a, P: Pattern<'a>>(&'a self, pat: P) -> RSplit<'a, P>
where P::Searcher: ReverseSearcher<'a>
{
RSplit(self.split(pat).0)
}
#[inline]
fn splitn<'a, P: Pattern<'a>>(&'a self, count: usize, pat: P) -> SplitN<'a, P> {
SplitN(SplitNInternal {
iter: self.split(pat).0,
count: count,
})
}
#[inline]
fn rsplitn<'a, P: Pattern<'a>>(&'a self, count: usize, pat: P) -> RSplitN<'a, P>
where P::Searcher: ReverseSearcher<'a>
{
RSplitN(self.splitn(count, pat).0)
}
#[inline]
fn split_terminator<'a, P: Pattern<'a>>(&'a self, pat: P) -> SplitTerminator<'a, P> {
SplitTerminator(SplitInternal {
allow_trailing_empty: false,
..self.split(pat).0
})
}
#[inline]
fn rsplit_terminator<'a, P: Pattern<'a>>(&'a self, pat: P) -> RSplitTerminator<'a, P>
where P::Searcher: ReverseSearcher<'a>
{
RSplitTerminator(self.split_terminator(pat).0)
}
#[inline]
fn matches<'a, P: Pattern<'a>>(&'a self, pat: P) -> Matches<'a, P> {
Matches(MatchesInternal(pat.into_searcher(self)))
}
#[inline]
fn rmatches<'a, P: Pattern<'a>>(&'a self, pat: P) -> RMatches<'a, P>
where P::Searcher: ReverseSearcher<'a>
{
RMatches(self.matches(pat).0)
}
#[inline]
fn match_indices<'a, P: Pattern<'a>>(&'a self, pat: P) -> MatchIndices<'a, P> {
MatchIndices(MatchIndicesInternal(pat.into_searcher(self)))
}
#[inline]
fn rmatch_indices<'a, P: Pattern<'a>>(&'a self, pat: P) -> RMatchIndices<'a, P>
where P::Searcher: ReverseSearcher<'a>
{
RMatchIndices(self.match_indices(pat).0)
}
#[inline]
fn lines(&self) -> Lines {
Lines(self.split_terminator('\n').map(LinesAnyMap))
}
#[inline]
#[allow(deprecated)]
fn lines_any(&self) -> LinesAny {
LinesAny(self.lines())
}
#[inline]
fn get<I: SliceIndex<str>>(&self, i: I) -> Option<&I::Output> {
i.get(self)
}
#[inline]
fn get_mut<I: SliceIndex<str>>(&mut self, i: I) -> Option<&mut I::Output> {
i.get_mut(self)
}
#[inline]
unsafe fn get_unchecked<I: SliceIndex<str>>(&self, i: I) -> &I::Output {
i.get_unchecked(self)
}
#[inline]
unsafe fn get_unchecked_mut<I: SliceIndex<str>>(&mut self, i: I) -> &mut I::Output {
i.get_unchecked_mut(self)
}
#[inline]
unsafe fn slice_unchecked(&self, begin: usize, end: usize) -> &str {
(begin..end).get_unchecked(self)
}
#[inline]
unsafe fn slice_mut_unchecked(&mut self, begin: usize, end: usize) -> &mut str {
(begin..end).get_unchecked_mut(self)
}
#[inline]
fn starts_with<'a, P: Pattern<'a>>(&'a self, pat: P) -> bool {
pat.is_prefix_of(self)
}
#[inline]
fn ends_with<'a, P: Pattern<'a>>(&'a self, pat: P) -> bool
where P::Searcher: ReverseSearcher<'a>
{
pat.is_suffix_of(self)
}
#[inline]
fn trim_matches<'a, P: Pattern<'a>>(&'a self, pat: P) -> &'a str
where P::Searcher: DoubleEndedSearcher<'a>
{
let mut i = 0;
let mut j = 0;
let mut matcher = pat.into_searcher(self);
if let Some((a, b)) = matcher.next_reject() {
i = a;
j = b; }
if let Some((_, b)) = matcher.next_reject_back() {
j = b;
}
unsafe {
self.slice_unchecked(i, j)
}
}
#[inline]
fn trim_left_matches<'a, P: Pattern<'a>>(&'a self, pat: P) -> &'a str {
let mut i = self.len();
let mut matcher = pat.into_searcher(self);
if let Some((a, _)) = matcher.next_reject() {
i = a;
}
unsafe {
self.slice_unchecked(i, self.len())
}
}
#[inline]
fn trim_right_matches<'a, P: Pattern<'a>>(&'a self, pat: P) -> &'a str
where P::Searcher: ReverseSearcher<'a>
{
let mut j = 0;
let mut matcher = pat.into_searcher(self);
if let Some((_, b)) = matcher.next_reject_back() {
j = b;
}
unsafe {
self.slice_unchecked(0, j)
}
}
#[inline]
fn is_char_boundary(&self, index: usize) -> bool {
if index == 0 || index == self.len() { return true; }
match self.as_bytes().get(index) {
None => false,
Some(&b) => (b as i8) >= -0x40,
}
}
#[inline]
fn as_bytes(&self) -> &[u8] {
unsafe { mem::transmute(self) }
}
#[inline]
unsafe fn as_bytes_mut(&mut self) -> &mut [u8] {
mem::transmute(self)
}
fn find<'a, P: Pattern<'a>>(&'a self, pat: P) -> Option<usize> {
pat.into_searcher(self).next_match().map(|(i, _)| i)
}
fn rfind<'a, P: Pattern<'a>>(&'a self, pat: P) -> Option<usize>
where P::Searcher: ReverseSearcher<'a>
{
pat.into_searcher(self).next_match_back().map(|(i, _)| i)
}
fn find_str<'a, P: Pattern<'a>>(&'a self, pat: P) -> Option<usize> {
self.find(pat)
}
#[inline]
fn split_at(&self, mid: usize) -> (&str, &str) {
if self.is_char_boundary(mid) {
unsafe {
(self.slice_unchecked(0, mid),
self.slice_unchecked(mid, self.len()))
}
} else {
slice_error_fail(self, 0, mid)
}
}
fn split_at_mut(&mut self, mid: usize) -> (&mut str, &mut str) {
if self.is_char_boundary(mid) {
let len = self.len();
let ptr = self.as_ptr() as *mut u8;
unsafe {
(from_raw_parts_mut(ptr, mid),
from_raw_parts_mut(ptr.offset(mid as isize), len - mid))
}
} else {
slice_error_fail(self, 0, mid)
}
}
#[inline]
fn as_ptr(&self) -> *const u8 {
self as *const str as *const u8
}
#[inline]
fn len(&self) -> usize {
self.as_bytes().len()
}
#[inline]
fn is_empty(&self) -> bool { self.len() == 0 }
#[inline]
fn parse<'a, T>(&'a self) -> Result<T, T::Error> where T: TryFrom<&'a str> {
T::try_from(self)
}
}
#[stable(feature = "rust1", since = "1.0.0")]
impl AsRef<[u8]> for str {
#[inline]
fn as_ref(&self) -> &[u8] {
self.as_bytes()
}
}
#[stable(feature = "rust1", since = "1.0.0")]
impl<'a> Default for &'a str {
fn default() -> &'a str { "" }
}