Files
a0_basic_app
a1_vehicle
a2_async_sim
ab_glyph
ab_glyph_rasterizer
adler
adler32
agents
aho_corasick
anyhow
approx
aquamarine
ash
atty
bitflags
bytemuck
byteorder
cache_padded
cfg_if
chrono
color_quant
crc32fast
crossbeam_channel
crossbeam_deque
crossbeam_epoch
crossbeam_utils
deflate
draw2d
either
flexi_logger
generic_array
gif
glfw
glfw_sys
glob
image
indoc
itertools
jpeg_decoder
lazy_static
libc
libloading
log
matrixmultiply
memchr
memoffset
miniz_oxide
nalgebra
base
geometry
linalg
third_party
num_complex
num_cpus
num_integer
num_iter
num_rational
num_traits
owned_ttf_parser
paste
png
proc_macro2
proc_macro_error
proc_macro_error_attr
quote
raw_window_handle
rawpointer
rayon
rayon_core
regex
regex_syntax
scoped_threadpool
scopeguard
semver
semver_parser
serde
serde_derive
simba
smawk
spin_sleep
syn
terminal_size
textwrap
thiserror
thiserror_impl
tiff
time
triple_buffer
ttf_parser
typenum
unicode_width
unicode_xid
unindent
vk_sys
weezl
yansi
  1
  2
  3
  4
  5
  6
  7
  8
  9
 10
 11
 12
 13
 14
 15
 16
 17
 18
 19
 20
 21
 22
 23
 24
 25
 26
 27
 28
 29
 30
 31
 32
 33
 34
 35
 36
 37
 38
 39
 40
 41
 42
 43
 44
 45
 46
 47
 48
 49
 50
 51
 52
 53
 54
 55
 56
 57
 58
 59
 60
 61
 62
 63
 64
 65
 66
 67
 68
 69
 70
 71
 72
 73
 74
 75
 76
 77
 78
 79
 80
 81
 82
 83
 84
 85
 86
 87
 88
 89
 90
 91
 92
 93
 94
 95
 96
 97
 98
 99
100
101
102
103
104
105
//! Generic array are commonly used as a return value for hash digests, so
//! it's a good idea to allow to hexlify them easily. This module implements
//! `std::fmt::LowerHex` and `std::fmt::UpperHex` traits.
//!
//! Example:
//!
//! ```rust
//! # #[macro_use]
//! # extern crate generic_array;
//! # extern crate typenum;
//! # fn main() {
//! let array = arr![u8; 10, 20, 30];
//! assert_eq!(format!("{:x}", array), "0a141e");
//! # }
//! ```
//!

use core::{fmt, str, ops::Add, cmp::min};

use typenum::*;

use crate::{ArrayLength, GenericArray};

static LOWER_CHARS: &'static [u8] = b"0123456789abcdef";
static UPPER_CHARS: &'static [u8] = b"0123456789ABCDEF";

impl<T: ArrayLength<u8>> fmt::LowerHex for GenericArray<u8, T>
where
    T: Add<T>,
    <T as Add<T>>::Output: ArrayLength<u8>,
{
    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
        let max_digits = f.precision().unwrap_or_else(|| self.len() * 2);
        let max_hex = (max_digits >> 1) + (max_digits & 1);

        if T::USIZE < 1024 {
            // For small arrays use a stack allocated
            // buffer of 2x number of bytes
            let mut res = GenericArray::<u8, Sum<T, T>>::default();

            self.iter().take(max_hex).enumerate().for_each(|(i, c)| {
                res[i * 2] = LOWER_CHARS[(c >> 4) as usize];
                res[i * 2 + 1] = LOWER_CHARS[(c & 0xF) as usize];
            });

            f.write_str(unsafe { str::from_utf8_unchecked(&res[..max_digits]) })?;
        } else {
            // For large array use chunks of up to 1024 bytes (2048 hex chars)
            let mut buf = [0u8; 2048];
            let mut digits_left = max_digits;

            for chunk in self[..max_hex].chunks(1024) {
                chunk.iter().enumerate().for_each(|(i, c)| {
                    buf[i * 2] = LOWER_CHARS[(c >> 4) as usize];
                    buf[i * 2 + 1] = LOWER_CHARS[(c & 0xF) as usize];
                });

                let n = min(chunk.len() * 2, digits_left);
                f.write_str(unsafe { str::from_utf8_unchecked(&buf[..n]) })?;
                digits_left -= n;
            }
        }
        Ok(())
    }
}

impl<T: ArrayLength<u8>> fmt::UpperHex for GenericArray<u8, T>
where
    T: Add<T>,
    <T as Add<T>>::Output: ArrayLength<u8>,
{
    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
        let max_digits = f.precision().unwrap_or_else(|| self.len() * 2);
        let max_hex = (max_digits >> 1) + (max_digits & 1);

        if T::USIZE < 1024 {
            // For small arrays use a stack allocated
            // buffer of 2x number of bytes
            let mut res = GenericArray::<u8, Sum<T, T>>::default();

            self.iter().take(max_hex).enumerate().for_each(|(i, c)| {
                res[i * 2] = UPPER_CHARS[(c >> 4) as usize];
                res[i * 2 + 1] = UPPER_CHARS[(c & 0xF) as usize];
            });

            f.write_str(unsafe { str::from_utf8_unchecked(&res[..max_digits]) })?;
        } else {
            // For large array use chunks of up to 1024 bytes (2048 hex chars)
            let mut buf = [0u8; 2048];
            let mut digits_left = max_digits;

            for chunk in self[..max_hex].chunks(1024) {
                chunk.iter().enumerate().for_each(|(i, c)| {
                    buf[i * 2] = UPPER_CHARS[(c >> 4) as usize];
                    buf[i * 2 + 1] = UPPER_CHARS[(c & 0xF) as usize];
                });

                let n = min(chunk.len() * 2, digits_left);
                f.write_str(unsafe { str::from_utf8_unchecked(&buf[..n]) })?;
                digits_left -= n;
            }
        }
        Ok(())
    }
}