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- Uses Simple Text Output Protocol and Simple Text Input Protocol - Reading is done one character at a time - Writing is done with max 4096 characters Signed-off-by: Ayush Singh <ayushdevel1325@gmail.com>
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Original file line number | Diff line number | Diff line change |
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use crate::io; | ||
use crate::iter::Iterator; | ||
use crate::mem::MaybeUninit; | ||
use crate::os::uefi; | ||
use crate::ptr::NonNull; | ||
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const MAX_BUFFER_SIZE: usize = 8192; | ||
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pub struct Stdin; | ||
pub struct Stdout; | ||
pub struct Stderr; | ||
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impl Stdin { | ||
pub const fn new() -> Stdin { | ||
Stdin | ||
} | ||
} | ||
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impl io::Read for Stdin { | ||
fn read(&mut self, buf: &mut [u8]) -> io::Result<usize> { | ||
let st: NonNull<r_efi::efi::SystemTable> = uefi::env::system_table().cast(); | ||
let stdin = unsafe { (*st.as_ptr()).con_in }; | ||
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// Try reading any pending data | ||
let inp = match read_key_stroke(stdin) { | ||
Ok(x) => x, | ||
Err(e) if e == r_efi::efi::Status::NOT_READY => { | ||
// Wait for keypress for new data | ||
wait_stdin(stdin)?; | ||
read_key_stroke(stdin).map_err(|x| io::Error::from_raw_os_error(x.as_usize()))? | ||
} | ||
Err(e) => { | ||
return Err(io::Error::from_raw_os_error(e.as_usize())); | ||
} | ||
}; | ||
// SAFETY: Iterator will have only 1 character. | ||
// SAFETY: This character will always be UCS-2 and thus no surrogates. | ||
let ch: char = char::decode_utf16([inp]).next().unwrap().unwrap(); | ||
if ch.len_utf8() > buf.len() { | ||
return Ok(0); | ||
} | ||
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ch.encode_utf8(buf); | ||
reset(stdin)?; | ||
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Ok(ch.len_utf8()) | ||
} | ||
} | ||
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impl Stdout { | ||
pub const fn new() -> Stdout { | ||
Stdout | ||
} | ||
} | ||
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impl io::Write for Stdout { | ||
fn write(&mut self, buf: &[u8]) -> io::Result<usize> { | ||
let st: NonNull<r_efi::efi::SystemTable> = uefi::env::system_table().cast(); | ||
let stdout = unsafe { (*st.as_ptr()).con_out }; | ||
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write(stdout, buf) | ||
} | ||
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fn flush(&mut self) -> io::Result<()> { | ||
Ok(()) | ||
} | ||
} | ||
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impl Stderr { | ||
pub const fn new() -> Stderr { | ||
Stderr | ||
} | ||
} | ||
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impl io::Write for Stderr { | ||
fn write(&mut self, buf: &[u8]) -> io::Result<usize> { | ||
let st: NonNull<r_efi::efi::SystemTable> = uefi::env::system_table().cast(); | ||
let stderr = unsafe { (*st.as_ptr()).std_err }; | ||
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write(stderr, buf) | ||
} | ||
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fn flush(&mut self) -> io::Result<()> { | ||
Ok(()) | ||
} | ||
} | ||
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// UCS-2 character should occupy 3 bytes at most in UTF-8 | ||
pub const STDIN_BUF_SIZE: usize = 3; | ||
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pub fn is_ebadf(_err: &io::Error) -> bool { | ||
true | ||
} | ||
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pub fn panic_output() -> Option<impl io::Write> { | ||
uefi::env::try_system_table().map(|_| Stderr::new()) | ||
} | ||
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fn write( | ||
protocol: *mut r_efi::protocols::simple_text_output::Protocol, | ||
buf: &[u8], | ||
) -> io::Result<usize> { | ||
let mut utf16 = [0; MAX_BUFFER_SIZE / 2]; | ||
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// Get valid UTF-8 buffer | ||
let utf8 = match crate::str::from_utf8(buf) { | ||
Ok(x) => x, | ||
Err(e) => unsafe { crate::str::from_utf8_unchecked(&buf[..e.valid_up_to()]) }, | ||
}; | ||
// Clip UTF-8 buffer to max UTF-16 buffer we support | ||
let utf8 = &utf8[..utf8.floor_char_boundary(utf16.len() - 1)]; | ||
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for (i, ch) in utf8.encode_utf16().enumerate() { | ||
utf16[i] = ch; | ||
} | ||
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unsafe { simple_text_output(protocol, &mut utf16) }?; | ||
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Ok(utf8.len()) | ||
} | ||
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unsafe fn simple_text_output( | ||
protocol: *mut r_efi::protocols::simple_text_output::Protocol, | ||
buf: &mut [u16], | ||
) -> io::Result<()> { | ||
let res = unsafe { ((*protocol).output_string)(protocol, buf.as_mut_ptr()) }; | ||
if res.is_error() { Err(io::Error::from_raw_os_error(res.as_usize())) } else { Ok(()) } | ||
} | ||
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fn wait_stdin(stdin: *mut r_efi::protocols::simple_text_input::Protocol) -> io::Result<()> { | ||
let boot_services: NonNull<r_efi::efi::BootServices> = | ||
uefi::env::boot_services().unwrap().cast(); | ||
let wait_for_event = unsafe { (*boot_services.as_ptr()).wait_for_event }; | ||
let wait_for_key_event = unsafe { (*stdin).wait_for_key }; | ||
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let r = { | ||
let mut x: usize = 0; | ||
(wait_for_event)(1, [wait_for_key_event].as_mut_ptr(), &mut x) | ||
}; | ||
if r.is_error() { Err(io::Error::from_raw_os_error(r.as_usize())) } else { Ok(()) } | ||
} | ||
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fn reset(stdin: *mut r_efi::protocols::simple_text_input::Protocol) -> io::Result<()> { | ||
let r = unsafe { ((*stdin).reset)(stdin, r_efi::efi::Boolean::FALSE) }; | ||
if r.is_error() { Err(io::Error::from_raw_os_error(r.as_usize())) } else { Ok(()) } | ||
} | ||
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fn read_key_stroke( | ||
stdin: *mut r_efi::protocols::simple_text_input::Protocol, | ||
) -> Result<u16, r_efi::efi::Status> { | ||
let mut input_key: MaybeUninit<r_efi::protocols::simple_text_input::InputKey> = | ||
MaybeUninit::uninit(); | ||
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let r = unsafe { ((*stdin).read_key_stroke)(stdin, input_key.as_mut_ptr()) }; | ||
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if r.is_error() { | ||
Err(r) | ||
} else { | ||
let input_key = unsafe { input_key.assume_init() }; | ||
Ok(input_key.unicode_char) | ||
} | ||
} |