Files
base64
bitflags
bytes
case
cfg_if
derive_error
encoding_rs
fnv
foreign_types
foreign_types_shared
form_urlencoded
futures_channel
futures_core
futures_sink
futures_task
futures_util
h2
hashbrown
http
http_body
httparse
httpdate
hyper
hyper_tls
idna
indexmap
instant
ipnet
itoa
lazy_static
libc
lock_api
log
matches
memchr
mime
mio
native_tls
num_cpus
once_cell
openssl
openssl_probe
openssl_sys
parking_lot
parking_lot_core
percent_encoding
pin_project
pin_project_internal
pin_project_lite
pin_utils
proc_macro2
rapr
reqwest
ryu
scopeguard
serde
serde_json
serde_urlencoded
signal_hook_registry
slab
smallvec
socket2
tinyvec
tinyvec_macros
tokio
fs
future
io
loom
macros
net
park
process
runtime
signal
sync
task
time
util
tokio_macros
tokio_native_tls
tokio_util
tower_service
tracing
tracing_core
try_lock
unicode_bidi
unicode_normalization
url
want
  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
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
mod exponent;
mod mantissa;

use self::exponent::*;
use self::mantissa::*;
use crate::common;
use crate::d2s::{self, *};
use crate::f2s::*;
use core::{mem, ptr};
#[cfg(feature = "no-panic")]
use no_panic::no_panic;

/// Print f64 to the given buffer and return number of bytes written.
///
/// At most 24 bytes will be written.
///
/// ## Special cases
///
/// This function **does not** check for NaN or infinity. If the input
/// number is not a finite float, the printed representation will be some
/// correctly formatted but unspecified numerical value.
///
/// Please check [`is_finite`] yourself before calling this function, or
/// check [`is_nan`] and [`is_infinite`] and handle those cases yourself.
///
/// [`is_finite`]: https://doc.rust-lang.org/std/primitive.f64.html#method.is_finite
/// [`is_nan`]: https://doc.rust-lang.org/std/primitive.f64.html#method.is_nan
/// [`is_infinite`]: https://doc.rust-lang.org/std/primitive.f64.html#method.is_infinite
///
/// ## Safety
///
/// The `result` pointer argument must point to sufficiently many writable bytes
/// to hold Ryū's representation of `f`.
///
/// ## Example
///
/// ```
/// use std::{mem::MaybeUninit, slice, str};
///
/// let f = 1.234f64;
///
/// unsafe {
///     let mut buffer = [MaybeUninit::<u8>::uninit(); 24];
///     let len = ryu::raw::format64(f, buffer.as_mut_ptr() as *mut u8);
///     let slice = slice::from_raw_parts(buffer.as_ptr() as *const u8, len);
///     let print = str::from_utf8_unchecked(slice);
///     assert_eq!(print, "1.234");
/// }
/// ```
#[must_use]
#[cfg_attr(feature = "no-panic", no_panic)]
pub unsafe fn format64(f: f64, result: *mut u8) -> usize {
    let bits = mem::transmute::<f64, u64>(f);
    let sign = ((bits >> (DOUBLE_MANTISSA_BITS + DOUBLE_EXPONENT_BITS)) & 1) != 0;
    let ieee_mantissa = bits & ((1u64 << DOUBLE_MANTISSA_BITS) - 1);
    let ieee_exponent =
        (bits >> DOUBLE_MANTISSA_BITS) as u32 & ((1u32 << DOUBLE_EXPONENT_BITS) - 1);

    let mut index = 0isize;
    if sign {
        *result = b'-';
        index += 1;
    }

    if ieee_exponent == 0 && ieee_mantissa == 0 {
        ptr::copy_nonoverlapping(b"0.0".as_ptr(), result.offset(index), 3);
        return sign as usize + 3;
    }

    let v = d2d(ieee_mantissa, ieee_exponent);

    let length = d2s::decimal_length17(v.mantissa) as isize;
    let k = v.exponent as isize;
    let kk = length + k; // 10^(kk-1) <= v < 10^kk
    debug_assert!(k >= -324);

    if 0 <= k && kk <= 16 {
        // 1234e7 -> 12340000000.0
        write_mantissa_long(v.mantissa, result.offset(index + length));
        for i in length..kk {
            *result.offset(index + i) = b'0';
        }
        *result.offset(index + kk) = b'.';
        *result.offset(index + kk + 1) = b'0';
        index as usize + kk as usize + 2
    } else if 0 < kk && kk <= 16 {
        // 1234e-2 -> 12.34
        write_mantissa_long(v.mantissa, result.offset(index + length + 1));
        ptr::copy(result.offset(index + 1), result.offset(index), kk as usize);
        *result.offset(index + kk) = b'.';
        index as usize + length as usize + 1
    } else if -5 < kk && kk <= 0 {
        // 1234e-6 -> 0.001234
        *result.offset(index) = b'0';
        *result.offset(index + 1) = b'.';
        let offset = 2 - kk;
        for i in 2..offset {
            *result.offset(index + i) = b'0';
        }
        write_mantissa_long(v.mantissa, result.offset(index + length + offset));
        index as usize + length as usize + offset as usize
    } else if length == 1 {
        // 1e30
        *result.offset(index) = b'0' + v.mantissa as u8;
        *result.offset(index + 1) = b'e';
        index as usize + 2 + write_exponent3(kk - 1, result.offset(index + 2))
    } else {
        // 1234e30 -> 1.234e33
        write_mantissa_long(v.mantissa, result.offset(index + length + 1));
        *result.offset(index) = *result.offset(index + 1);
        *result.offset(index + 1) = b'.';
        *result.offset(index + length + 1) = b'e';
        index as usize
            + length as usize
            + 2
            + write_exponent3(kk - 1, result.offset(index + length + 2))
    }
}

/// Print f32 to the given buffer and return number of bytes written.
///
/// At most 16 bytes will be written.
///
/// ## Special cases
///
/// This function **does not** check for NaN or infinity. If the input
/// number is not a finite float, the printed representation will be some
/// correctly formatted but unspecified numerical value.
///
/// Please check [`is_finite`] yourself before calling this function, or
/// check [`is_nan`] and [`is_infinite`] and handle those cases yourself.
///
/// [`is_finite`]: https://doc.rust-lang.org/std/primitive.f32.html#method.is_finite
/// [`is_nan`]: https://doc.rust-lang.org/std/primitive.f32.html#method.is_nan
/// [`is_infinite`]: https://doc.rust-lang.org/std/primitive.f32.html#method.is_infinite
///
/// ## Safety
///
/// The `result` pointer argument must point to sufficiently many writable bytes
/// to hold Ryū's representation of `f`.
///
/// ## Example
///
/// ```
/// use std::{mem::MaybeUninit, slice, str};
///
/// let f = 1.234f32;
///
/// unsafe {
///     let mut buffer = [MaybeUninit::<u8>::uninit(); 16];
///     let len = ryu::raw::format32(f, buffer.as_mut_ptr() as *mut u8);
///     let slice = slice::from_raw_parts(buffer.as_ptr() as *const u8, len);
///     let print = str::from_utf8_unchecked(slice);
///     assert_eq!(print, "1.234");
/// }
/// ```
#[must_use]
#[cfg_attr(feature = "no-panic", no_panic)]
pub unsafe fn format32(f: f32, result: *mut u8) -> usize {
    let bits = mem::transmute::<f32, u32>(f);
    let sign = ((bits >> (FLOAT_MANTISSA_BITS + FLOAT_EXPONENT_BITS)) & 1) != 0;
    let ieee_mantissa = bits & ((1u32 << FLOAT_MANTISSA_BITS) - 1);
    let ieee_exponent =
        ((bits >> FLOAT_MANTISSA_BITS) & ((1u32 << FLOAT_EXPONENT_BITS) - 1)) as u32;

    let mut index = 0isize;
    if sign {
        *result = b'-';
        index += 1;
    }

    if ieee_exponent == 0 && ieee_mantissa == 0 {
        ptr::copy_nonoverlapping(b"0.0".as_ptr(), result.offset(index), 3);
        return sign as usize + 3;
    }

    let v = f2d(ieee_mantissa, ieee_exponent);

    let length = common::decimal_length9(v.mantissa) as isize;
    let k = v.exponent as isize;
    let kk = length + k; // 10^(kk-1) <= v < 10^kk
    debug_assert!(k >= -45);

    if 0 <= k && kk <= 13 {
        // 1234e7 -> 12340000000.0
        write_mantissa(v.mantissa, result.offset(index + length));
        for i in length..kk {
            *result.offset(index + i) = b'0';
        }
        *result.offset(index + kk) = b'.';
        *result.offset(index + kk + 1) = b'0';
        index as usize + kk as usize + 2
    } else if 0 < kk && kk <= 13 {
        // 1234e-2 -> 12.34
        write_mantissa(v.mantissa, result.offset(index + length + 1));
        ptr::copy(result.offset(index + 1), result.offset(index), kk as usize);
        *result.offset(index + kk) = b'.';
        index as usize + length as usize + 1
    } else if -6 < kk && kk <= 0 {
        // 1234e-6 -> 0.001234
        *result.offset(index) = b'0';
        *result.offset(index + 1) = b'.';
        let offset = 2 - kk;
        for i in 2..offset {
            *result.offset(index + i) = b'0';
        }
        write_mantissa(v.mantissa, result.offset(index + length + offset));
        index as usize + length as usize + offset as usize
    } else if length == 1 {
        // 1e30
        *result.offset(index) = b'0' + v.mantissa as u8;
        *result.offset(index + 1) = b'e';
        index as usize + 2 + write_exponent2(kk - 1, result.offset(index + 2))
    } else {
        // 1234e30 -> 1.234e33
        write_mantissa(v.mantissa, result.offset(index + length + 1));
        *result.offset(index) = *result.offset(index + 1);
        *result.offset(index + 1) = b'.';
        *result.offset(index + length + 1) = b'e';
        index as usize
            + length as usize
            + 2
            + write_exponent2(kk - 1, result.offset(index + length + 2))
    }
}