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base64_ng/
alphabet.rs

1//! Base64 alphabets and custom alphabet validation.
2
3use crate::{ct_mask_eq_u8, ct_mask_lt_u8};
4
5/// Alphabet validation error.
6#[derive(Clone, Copy, Debug, Eq, PartialEq)]
7pub enum AlphabetError {
8    /// The alphabet contains a non-visible-ASCII byte.
9    InvalidByte {
10        /// Byte index in the alphabet table.
11        index: usize,
12        /// Invalid byte value.
13        byte: u8,
14    },
15    /// The alphabet contains the padding byte `=`.
16    PaddingByte {
17        /// Byte index in the alphabet table.
18        index: usize,
19    },
20    /// The alphabet maps more than one value to the same byte.
21    DuplicateByte {
22        /// First byte index.
23        first: usize,
24        /// Second byte index.
25        second: usize,
26        /// Duplicated byte value.
27        byte: u8,
28    },
29}
30
31impl core::fmt::Display for AlphabetError {
32    fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
33        match self {
34            Self::InvalidByte { index, byte } => {
35                write!(
36                    f,
37                    "invalid base64 alphabet byte 0x{byte:02x} at index {index}"
38                )
39            }
40            Self::PaddingByte { index } => {
41                write!(f, "base64 alphabet contains padding byte at index {index}")
42            }
43            Self::DuplicateByte {
44                first,
45                second,
46                byte,
47            } => write!(
48                f,
49                "base64 alphabet byte 0x{byte:02x} is duplicated at indexes {first} and {second}"
50            ),
51        }
52    }
53}
54
55#[cfg(feature = "std")]
56impl std::error::Error for AlphabetError {}
57
58/// Defines a custom [`Alphabet`] from a 64-byte string literal.
59///
60/// The generated alphabet is validated at compile time with
61/// [`validate_alphabet`]. Invalid, duplicate, or padding bytes fail the build
62/// instead of creating a malformed runtime profile.
63///
64/// The generated implementation uses the conservative default
65/// [`Alphabet::encode`] behavior: every emitted Base64 byte performs a fixed
66/// 64-entry scan to avoid secret-indexed table lookups. Built-in alphabets use
67/// optimized arithmetic mappers.
68///
69/// The generated [`Alphabet::decode`] implementation delegates to
70/// [`decode_alphabet_byte`]. The constant-time-oriented [`ct`](crate::ct)
71/// module scans the generated `ENCODE` table directly and does not call the
72/// generated `decode` method.
73///
74/// # Examples
75///
76/// ```
77/// base64_ng::define_alphabet! {
78///     struct DotSlash = b"./ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789";
79/// }
80///
81/// let engine = base64_ng::Engine::<DotSlash, false>::new();
82/// let mut encoded = [0u8; 4];
83/// let written = engine.encode_slice(&[0xff, 0xff, 0xff], &mut encoded).unwrap();
84/// assert_eq!(&encoded[..written], b"9999");
85/// ```
86///
87/// Invalid alphabets fail during compilation:
88///
89/// ```compile_fail
90/// base64_ng::define_alphabet! {
91///     struct Bad = b"AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA";
92/// }
93/// ```
94#[macro_export]
95macro_rules! define_alphabet {
96    ($(#[$meta:meta])* $vis:vis struct $name:ident = $encode:expr;) => {
97        $(#[$meta])*
98        #[derive(Clone, Copy, Debug, Default, Eq, PartialEq)]
99        $vis struct $name;
100
101        impl $crate::Alphabet for $name {
102            const ENCODE: [u8; 64] = *$encode;
103
104            #[inline]
105            fn decode(byte: u8) -> Option<u8> {
106                $crate::decode_alphabet_byte(byte, &Self::ENCODE)
107            }
108        }
109
110        const _: [(); 1] = [(); match $crate::validate_alphabet(
111            &<$name as $crate::Alphabet>::ENCODE,
112        ) {
113            Ok(()) => 1,
114            Err(_) => 0,
115        }];
116    };
117}
118
119/// Validates a 64-byte Base64 alphabet table.
120///
121/// A valid alphabet must contain exactly 64 unique visible ASCII bytes and must
122/// not contain the padding byte `=`.
123///
124/// # Examples
125///
126/// ```
127/// use base64_ng::{Alphabet, Standard, validate_alphabet};
128///
129/// validate_alphabet(&Standard::ENCODE).unwrap();
130/// ```
131pub const fn validate_alphabet(encode: &[u8; 64]) -> Result<(), AlphabetError> {
132    let mut index = 0;
133    while index < encode.len() {
134        let byte = encode[index];
135        if !is_visible_ascii(byte) {
136            return Err(AlphabetError::InvalidByte { index, byte });
137        }
138        if byte == b'=' {
139            return Err(AlphabetError::PaddingByte { index });
140        }
141
142        let mut duplicate = index + 1;
143        while duplicate < encode.len() {
144            if encode[duplicate] == byte {
145                return Err(AlphabetError::DuplicateByte {
146                    first: index,
147                    second: duplicate,
148                    byte,
149                });
150            }
151            duplicate += 1;
152        }
153
154        index += 1;
155    }
156
157    Ok(())
158}
159
160/// Decodes one byte by scanning a caller-provided alphabet table.
161///
162/// This helper is intended for custom [`Alphabet`] implementations. Validate
163/// the table with [`validate_alphabet`] before trusting the alphabet in a
164/// protocol or public API. The scan always visits all 64 entries before
165/// returning so the match position does not create an early-return timing
166/// signal in the source-level implementation.
167///
168/// # Security
169///
170/// This helper is part of the normal strict decoder path, not the
171/// constant-time-oriented [`ct`](crate::ct) module. It is a `const fn` so it
172/// does not use the optimizer barriers, volatile accumulator reads, or
173/// generated-code evidence hooks used by the private `ct` scanner. Do not rely
174/// on this helper for military or cryptographic constant-time guarantees under
175/// LTO or future compiler rewrites. For secret-bearing custom alphabets, use
176/// [`Engine::ct_decoder`](crate::Engine::ct_decoder) or the [`ct`](crate::ct)
177/// module, which scans [`Alphabet::ENCODE`] directly and does not call
178/// [`Alphabet::decode`].
179///
180/// # Examples
181///
182/// ```
183/// use base64_ng::{Alphabet, decode_alphabet_byte};
184///
185/// struct DotSlash;
186///
187/// impl Alphabet for DotSlash {
188///     const ENCODE: [u8; 64] =
189///         *b"./ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789";
190///
191///     fn decode(byte: u8) -> Option<u8> {
192///         decode_alphabet_byte(byte, &Self::ENCODE)
193///     }
194/// }
195///
196/// assert_eq!(DotSlash::decode(b'.'), Some(0));
197/// assert_eq!(DotSlash::decode(b'9'), Some(63));
198/// ```
199#[must_use]
200pub const fn decode_alphabet_byte(byte: u8, encode: &[u8; 64]) -> Option<u8> {
201    let mut index = 0;
202    let mut candidate = 0;
203    let mut decoded = 0;
204    let mut valid = 0;
205    while index < encode.len() {
206        let matches = ct_mask_eq_u8(byte, encode[index]);
207        decoded |= candidate & matches;
208        valid |= matches;
209        index += 1;
210        candidate += 1;
211    }
212
213    if valid == 0 { None } else { Some(decoded) }
214}
215
216/// A Base64 alphabet.
217///
218/// # Security
219///
220/// The default [`Alphabet::encode`] implementation is constant-time-oriented:
221/// it scans all 64 alphabet entries instead of using `ENCODE[value as usize]`.
222/// Direct callers that override `encode` with a table lookup make those direct
223/// calls timing-sensitive with respect to the selected 6-bit value. Public
224/// [`Engine`](crate::Engine) encoding does not call this overridable method:
225/// [`Alphabet::ENCODE`] is its sole output definition for const, scalar, SIMD,
226/// wrapped, and in-place surfaces.
227///
228/// The normal strict decode path calls [`Alphabet::decode`] and is not a
229/// constant-time decoder. The [`ct`](crate::ct) module does not call
230/// [`Alphabet::decode`]; it scans [`Alphabet::ENCODE`] directly with its own
231/// fixed 64-entry mapper. A custom non-constant-time `decode` implementation
232/// therefore affects normal strict decode diagnostics and timing, but not the
233/// `ct` module's symbol-mapping loop.
234pub trait Alphabet {
235    /// Encoding table indexed by 6-bit values.
236    const ENCODE: [u8; 64];
237
238    /// Encode one 6-bit value into an alphabet byte.
239    ///
240    /// The default implementation scans the alphabet table instead of using a
241    /// secret-indexed table lookup. Built-in alphabets override this with the
242    /// branch-minimized ASCII arithmetic mapper. Custom alphabets that keep the
243    /// default method prioritize timing posture over throughput for direct
244    /// calls. This method is retained as a public low-level mapping helper for
245    /// API compatibility; [`Engine`](crate::Engine) uses [`Self::ENCODE`]
246    /// directly and is unaffected by overrides.
247    #[must_use]
248    fn encode(value: u8) -> u8 {
249        encode_alphabet_value(value, &Self::ENCODE)
250    }
251
252    /// Decode one byte into a 6-bit value.
253    ///
254    /// Implementations that want conservative custom-alphabet timing posture
255    /// should delegate to [`decode_alphabet_byte`], which scans all 64 entries
256    /// before returning. The `ct` module ignores this method and scans
257    /// [`Self::ENCODE`] directly.
258    fn decode(byte: u8) -> Option<u8>;
259}
260
261const fn is_visible_ascii(byte: u8) -> bool {
262    byte >= 0x21 && byte <= 0x7e
263}
264
265/// The RFC 4648 standard Base64 alphabet.
266#[derive(Clone, Copy, Debug, Default, Eq, PartialEq)]
267pub struct Standard;
268
269impl Alphabet for Standard {
270    const ENCODE: [u8; 64] = *b"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
271
272    #[inline]
273    fn encode(value: u8) -> u8 {
274        encode_ascii_base64(value, Self::ENCODE[62], Self::ENCODE[63])
275    }
276
277    #[inline]
278    fn decode(byte: u8) -> Option<u8> {
279        decode_ascii_base64(byte, Self::ENCODE[62], Self::ENCODE[63])
280    }
281}
282
283/// The RFC 4648 URL-safe Base64 alphabet.
284#[derive(Clone, Copy, Debug, Default, Eq, PartialEq)]
285pub struct UrlSafe;
286
287impl Alphabet for UrlSafe {
288    const ENCODE: [u8; 64] = *b"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789-_";
289
290    #[inline]
291    fn encode(value: u8) -> u8 {
292        encode_ascii_base64(value, Self::ENCODE[62], Self::ENCODE[63])
293    }
294
295    #[inline]
296    fn decode(byte: u8) -> Option<u8> {
297        decode_ascii_base64(byte, Self::ENCODE[62], Self::ENCODE[63])
298    }
299}
300
301/// The bcrypt Base64 alphabet.
302///
303/// This alphabet is commonly used by bcrypt hash strings. It is provided as an
304/// alphabet/profile building block; `base64-ng` does not parse or verify full
305/// bcrypt password-hash records.
306///
307/// # Security
308///
309/// The strict [`Alphabet::decode`] implementation delegates to
310/// [`decode_alphabet_byte`]. That helper scans the full alphabet, but it is a
311/// `const fn` and does not use the additional optimizer barriers used by the
312/// [`ct`](crate::ct) module. Do not use strict `Engine<Bcrypt, _>` decode as a
313/// token, key, or password-hash verifier. Use [`crate::ct::CtEngine`] with this
314/// alphabet for secret-bearing comparison workflows.
315#[derive(Clone, Copy, Debug, Default, Eq, PartialEq)]
316pub struct Bcrypt;
317
318impl Alphabet for Bcrypt {
319    const ENCODE: [u8; 64] = *b"./ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789";
320
321    #[inline]
322    fn decode(byte: u8) -> Option<u8> {
323        decode_alphabet_byte(byte, &Self::ENCODE)
324    }
325}
326
327/// The Unix `crypt(3)` Base64 alphabet.
328///
329/// This alphabet is provided as an explicit legacy interoperability profile.
330/// `base64-ng` does not parse or verify complete password-hash records.
331///
332/// # Security
333///
334/// The strict [`Alphabet::decode`] implementation delegates to
335/// [`decode_alphabet_byte`]. That helper scans the full alphabet, but it is a
336/// `const fn` and does not use the additional optimizer barriers used by the
337/// [`ct`](crate::ct) module. Do not use strict `Engine<Crypt, _>` decode as a
338/// token, key, or password-hash verifier. Use [`crate::ct::CtEngine`] with this
339/// alphabet for secret-bearing comparison workflows.
340#[derive(Clone, Copy, Debug, Default, Eq, PartialEq)]
341pub struct Crypt;
342
343impl Alphabet for Crypt {
344    const ENCODE: [u8; 64] = *b"./0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz";
345
346    #[inline]
347    fn decode(byte: u8) -> Option<u8> {
348        decode_alphabet_byte(byte, &Self::ENCODE)
349    }
350}
351
352#[inline]
353pub(crate) const fn encode_base64_value<A: Alphabet>(value: u8) -> u8 {
354    encode_alphabet_value(value, &A::ENCODE)
355}
356
357#[derive(Clone, Copy)]
358pub(crate) enum RuntimeEncodeMapper {
359    StandardFamily { value_62: u8, value_63: u8 },
360    ScannedTable,
361}
362
363impl RuntimeEncodeMapper {
364    pub(crate) const fn for_alphabet<A: Alphabet>() -> Self {
365        const STANDARD_PREFIX: [u8; 62] =
366            *b"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789";
367
368        let mut index = 0;
369        while index < STANDARD_PREFIX.len() {
370            if A::ENCODE[index] != STANDARD_PREFIX[index] {
371                return Self::ScannedTable;
372            }
373            index += 1;
374        }
375
376        let value_62 = A::ENCODE[62];
377        let value_63 = A::ENCODE[63];
378        if (value_62 == b'+' && value_63 == b'/') || (value_62 == b'-' && value_63 == b'_') {
379            Self::StandardFamily { value_62, value_63 }
380        } else {
381            Self::ScannedTable
382        }
383    }
384
385    #[inline]
386    pub(crate) fn encode<A: Alphabet>(self, value: u8) -> u8 {
387        match self {
388            Self::StandardFamily { value_62, value_63 } => {
389                encode_ascii_base64(value, value_62, value_63)
390            }
391            Self::ScannedTable => encode_alphabet_value(value, &A::ENCODE),
392        }
393    }
394}
395
396pub(crate) struct RuntimeEncodeMapperFor<A: Alphabet>(core::marker::PhantomData<A>);
397
398impl<A: Alphabet> RuntimeEncodeMapperFor<A> {
399    pub(crate) const VALUE: RuntimeEncodeMapper = RuntimeEncodeMapper::for_alphabet::<A>();
400}
401
402#[inline]
403const fn encode_alphabet_value(value: u8, encode: &[u8; 64]) -> u8 {
404    let mut output = 0;
405    let mut index = 0;
406    let mut candidate = 0;
407    while index < encode.len() {
408        output |= encode[index] & ct_mask_eq_u8(value, candidate);
409        index += 1;
410        candidate += 1;
411    }
412    output
413}
414
415#[inline]
416const fn encode_ascii_base64(value: u8, value_62_byte: u8, value_63_byte: u8) -> u8 {
417    let upper = ct_mask_lt_u8(value, 26);
418    let lower = ct_mask_lt_u8(value.wrapping_sub(26), 26);
419    let digit = ct_mask_lt_u8(value.wrapping_sub(52), 10);
420    let value_62 = ct_mask_eq_u8(value, 0x3e);
421    let value_63 = ct_mask_eq_u8(value, 0x3f);
422
423    (value.wrapping_add(b'A') & upper)
424        | (value.wrapping_sub(26).wrapping_add(b'a') & lower)
425        | (value.wrapping_sub(52).wrapping_add(b'0') & digit)
426        | (value_62_byte & value_62)
427        | (value_63_byte & value_63)
428}
429
430#[inline]
431fn decode_ascii_base64(byte: u8, value_62_byte: u8, value_63_byte: u8) -> Option<u8> {
432    let upper = ct_mask_lt_u8(byte.wrapping_sub(b'A'), 26);
433    let lower = ct_mask_lt_u8(byte.wrapping_sub(b'a'), 26);
434    let digit = ct_mask_lt_u8(byte.wrapping_sub(b'0'), 10);
435    let value_62 = ct_mask_eq_u8(byte, value_62_byte);
436    let value_63 = ct_mask_eq_u8(byte, value_63_byte);
437    let valid = upper | lower | digit | value_62 | value_63;
438
439    let decoded = (byte.wrapping_sub(b'A') & upper)
440        | (byte.wrapping_sub(b'a').wrapping_add(26) & lower)
441        | (byte.wrapping_sub(b'0').wrapping_add(52) & digit)
442        | (0x3e & value_62)
443        | (0x3f & value_63);
444
445    if valid == 0 { None } else { Some(decoded) }
446}