#![allow(non_snake_case)]
#![doc(primitive = "char")]
use iter::Iterator;
use mem::transmute;
use ops::FnMut;
use option::Option::{None, Some};
use option::Option;
use slice::SliceExt;
static TAG_CONT: u8 = 0b1000_0000u8;
static TAG_TWO_B: u8 = 0b1100_0000u8;
static TAG_THREE_B: u8 = 0b1110_0000u8;
static TAG_FOUR_B: u8 = 0b1111_0000u8;
static MAX_ONE_B: u32 = 0x80u32;
static MAX_TWO_B: u32 = 0x800u32;
static MAX_THREE_B: u32 = 0x10000u32;
#[stable]
pub const MAX: char = '\u{10ffff}';
#[inline]
#[unstable = "pending decisions about costructors for primitives"]
pub fn from_u32(i: u32) -> Option<char> {
if (i > MAX as u32) || (i >= 0xD800 && i <= 0xDFFF) {
None
} else {
Some(unsafe { transmute(i) })
}
}
#[inline]
#[deprecated = "use the Char::is_digit method"]
pub fn is_digit_radix(c: char, radix: uint) -> bool {
c.is_digit(radix)
}
#[inline]
#[deprecated = "use the Char::to_digit method"]
pub fn to_digit(c: char, radix: uint) -> Option<uint> {
c.to_digit(radix)
}
#[inline]
#[unstable = "pending decisions about costructors for primitives"]
pub fn from_digit(num: uint, radix: uint) -> Option<char> {
if radix > 36 {
panic!("from_digit: radix is too high (maximum 36)");
}
if num < radix {
unsafe {
if num < 10 {
Some(transmute(('0' as uint + num) as u32))
} else {
Some(transmute(('a' as uint + num - 10u) as u32))
}
}
} else {
None
}
}
#[deprecated = "use the Char::escape_unicode method"]
pub fn escape_unicode<F>(c: char, mut f: F) where F: FnMut(char) {
for char in c.escape_unicode() {
f(char);
}
}
#[deprecated = "use the Char::escape_default method"]
pub fn escape_default<F>(c: char, mut f: F) where F: FnMut(char) {
for c in c.escape_default() {
f(c);
}
}
#[inline]
#[deprecated = "use the Char::len_utf8 method"]
pub fn len_utf8_bytes(c: char) -> uint {
c.len_utf8()
}
#[experimental = "trait organization may change"]
pub trait Char {
#[deprecated = "use is_digit"]
fn is_digit_radix(self, radix: uint) -> bool;
#[unstable = "pending error conventions"]
fn is_digit(self, radix: uint) -> bool;
#[unstable = "pending error conventions, trait organization"]
fn to_digit(self, radix: uint) -> Option<uint>;
#[deprecated = "use the char::from_digit free function"]
fn from_digit(num: uint, radix: uint) -> Option<Self>;
#[deprecated = "use the char::from_u32 free function"]
fn from_u32(i: u32) -> Option<char>;
#[unstable = "pending error conventions, trait organization"]
fn escape_unicode(self) -> EscapeUnicode;
#[unstable = "pending error conventions, trait organization"]
fn escape_default(self) -> EscapeDefault;
#[deprecated = "use len_utf8"]
fn len_utf8_bytes(self) -> uint;
#[unstable = "pending trait organization"]
fn len_utf8(self) -> uint;
#[unstable = "pending trait organization"]
fn len_utf16(self) -> uint;
#[unstable = "pending trait organization"]
fn encode_utf8(&self, dst: &mut [u8]) -> Option<uint>;
#[unstable = "pending trait organization"]
fn encode_utf16(&self, dst: &mut [u16]) -> Option<uint>;
}
#[experimental = "trait is experimental"]
impl Char for char {
#[deprecated = "use is_digit"]
fn is_digit_radix(self, radix: uint) -> bool { self.is_digit(radix) }
#[unstable = "pending trait organization"]
fn is_digit(self, radix: uint) -> bool {
match self.to_digit(radix) {
Some(_) => true,
None => false,
}
}
#[unstable = "pending trait organization"]
fn to_digit(self, radix: uint) -> Option<uint> {
if radix > 36 {
panic!("to_digit: radix is too high (maximum 36)");
}
let val = match self {
'0' ... '9' => self as uint - ('0' as uint),
'a' ... 'z' => self as uint + 10u - ('a' as uint),
'A' ... 'Z' => self as uint + 10u - ('A' as uint),
_ => return None,
};
if val < radix { Some(val) }
else { None }
}
#[deprecated = "use the char::from_digit free function"]
fn from_digit(num: uint, radix: uint) -> Option<char> { from_digit(num, radix) }
#[inline]
#[deprecated = "use the char::from_u32 free function"]
fn from_u32(i: u32) -> Option<char> { from_u32(i) }
#[unstable = "pending error conventions, trait organization"]
fn escape_unicode(self) -> EscapeUnicode {
EscapeUnicode { c: self, state: EscapeUnicodeState::Backslash }
}
#[unstable = "pending error conventions, trait organization"]
fn escape_default(self) -> EscapeDefault {
let init_state = match self {
'\t' => EscapeDefaultState::Backslash('t'),
'\r' => EscapeDefaultState::Backslash('r'),
'\n' => EscapeDefaultState::Backslash('n'),
'\\' => EscapeDefaultState::Backslash('\\'),
'\'' => EscapeDefaultState::Backslash('\''),
'"' => EscapeDefaultState::Backslash('"'),
'\x20' ... '\x7e' => EscapeDefaultState::Char(self),
_ => EscapeDefaultState::Unicode(self.escape_unicode())
};
EscapeDefault { state: init_state }
}
#[inline]
#[deprecated = "use len_utf8"]
fn len_utf8_bytes(self) -> uint { self.len_utf8() }
#[inline]
#[unstable = "pending trait organization"]
fn len_utf8(self) -> uint {
let code = self as u32;
match () {
_ if code < MAX_ONE_B => 1u,
_ if code < MAX_TWO_B => 2u,
_ if code < MAX_THREE_B => 3u,
_ => 4u,
}
}
#[inline]
#[unstable = "pending trait organization"]
fn len_utf16(self) -> uint {
let ch = self as u32;
if (ch & 0xFFFF_u32) == ch { 1 } else { 2 }
}
#[inline]
#[unstable = "pending error conventions, trait organization"]
fn encode_utf8<'a>(&self, dst: &'a mut [u8]) -> Option<uint> {
let code = *self as u32;
if code < MAX_ONE_B && dst.len() >= 1 {
dst[0] = code as u8;
Some(1)
} else if code < MAX_TWO_B && dst.len() >= 2 {
dst[0] = (code >> 6u & 0x1F_u32) as u8 | TAG_TWO_B;
dst[1] = (code & 0x3F_u32) as u8 | TAG_CONT;
Some(2)
} else if code < MAX_THREE_B && dst.len() >= 3 {
dst[0] = (code >> 12u & 0x0F_u32) as u8 | TAG_THREE_B;
dst[1] = (code >> 6u & 0x3F_u32) as u8 | TAG_CONT;
dst[2] = (code & 0x3F_u32) as u8 | TAG_CONT;
Some(3)
} else if dst.len() >= 4 {
dst[0] = (code >> 18u & 0x07_u32) as u8 | TAG_FOUR_B;
dst[1] = (code >> 12u & 0x3F_u32) as u8 | TAG_CONT;
dst[2] = (code >> 6u & 0x3F_u32) as u8 | TAG_CONT;
dst[3] = (code & 0x3F_u32) as u8 | TAG_CONT;
Some(4)
} else {
None
}
}
#[inline]
#[unstable = "pending error conventions, trait organization"]
fn encode_utf16(&self, dst: &mut [u16]) -> Option<uint> {
let mut ch = *self as u32;
if (ch & 0xFFFF_u32) == ch && dst.len() >= 1 {
dst[0] = ch as u16;
Some(1)
} else if dst.len() >= 2 {
ch -= 0x1_0000_u32;
dst[0] = 0xD800_u16 | ((ch >> 10) as u16);
dst[1] = 0xDC00_u16 | ((ch as u16) & 0x3FF_u16);
Some(2)
} else {
None
}
}
}
#[deriving(Clone)]
pub struct EscapeUnicode {
c: char,
state: EscapeUnicodeState
}
#[deriving(Clone)]
enum EscapeUnicodeState {
Backslash,
Type,
LeftBrace,
Value(uint),
RightBrace,
Done,
}
impl Iterator<char> for EscapeUnicode {
fn next(&mut self) -> Option<char> {
match self.state {
EscapeUnicodeState::Backslash => {
self.state = EscapeUnicodeState::Type;
Some('\\')
}
EscapeUnicodeState::Type => {
self.state = EscapeUnicodeState::LeftBrace;
Some('u')
}
EscapeUnicodeState::LeftBrace => {
let mut n = 0u;
while (self.c as u32) >> (4 * (n + 1)) != 0 {
n += 1;
}
self.state = EscapeUnicodeState::Value(n);
Some('{')
}
EscapeUnicodeState::Value(offset) => {
let v = match ((self.c as i32) >> (offset * 4)) & 0xf {
i @ 0 ... 9 => '0' as i32 + i,
i => 'a' as i32 + (i - 10)
};
if offset == 0 {
self.state = EscapeUnicodeState::RightBrace;
} else {
self.state = EscapeUnicodeState::Value(offset - 1);
}
Some(unsafe { transmute(v) })
}
EscapeUnicodeState::RightBrace => {
self.state = EscapeUnicodeState::Done;
Some('}')
}
EscapeUnicodeState::Done => None,
}
}
}
#[deriving(Clone)]
pub struct EscapeDefault {
state: EscapeDefaultState
}
#[deriving(Clone)]
enum EscapeDefaultState {
Backslash(char),
Char(char),
Done,
Unicode(EscapeUnicode),
}
impl Iterator<char> for EscapeDefault {
fn next(&mut self) -> Option<char> {
match self.state {
EscapeDefaultState::Backslash(c) => {
self.state = EscapeDefaultState::Char(c);
Some('\\')
}
EscapeDefaultState::Char(c) => {
self.state = EscapeDefaultState::Done;
Some(c)
}
EscapeDefaultState::Done => None,
EscapeDefaultState::Unicode(ref mut iter) => iter.next()
}
}
}