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lib_unknown/crypto/
base.rs

1//! 自研密码原语实现:SBox 表、雪崩混合函数、轻量流式哈希与 `mse`/`imse` 加解密。
2//!
3//! 需要启用 `"crypto"` 特性。
4#![allow(unused)]
5#![no_std]
6pub static SBOX_BASE: [[u8; 256]; 2] = [
7    // SBOX 0
8    [
9        0x63, 0x7c, 0x77, 0x7b, 0xf2, 0x6b, 0x6f, 0xc5, 0x30, 0x01, 0x67, 0x2b, 0xfe, 0xd7, 0xab,
10        0x76, 0xca, 0x82, 0xc9, 0x7d, 0xfa, 0x59, 0x47, 0xf0, 0xad, 0xd4, 0xa2, 0xaf, 0x9c, 0xa4,
11        0x72, 0xc0, 0xb7, 0xfd, 0x93, 0x26, 0x36, 0x3f, 0xf7, 0xcc, 0x34, 0xa5, 0xe5, 0xf1, 0x71,
12        0xd8, 0x31, 0x15, 0x04, 0xc7, 0x23, 0xc3, 0x18, 0x96, 0x05, 0x9a, 0x07, 0x12, 0x80, 0xe2,
13        0xeb, 0x27, 0xb2, 0x75, 0x09, 0x83, 0x2c, 0x1a, 0x1b, 0x6e, 0x5a, 0xa0, 0x52, 0x3b, 0xd6,
14        0xb3, 0x29, 0xe3, 0x2f, 0x84, 0x53, 0xd1, 0x00, 0xed, 0x20, 0xfc, 0xb1, 0x5b, 0x6a, 0xcb,
15        0xbe, 0x39, 0x4a, 0x4c, 0x58, 0xcf, 0xd0, 0xef, 0xaa, 0xfb, 0x43, 0x4d, 0x33, 0x85, 0x45,
16        0xf9, 0x02, 0x7f, 0x50, 0x3c, 0x9f, 0xa8, 0x51, 0xa3, 0x40, 0x8f, 0x92, 0x9d, 0x38, 0xf5,
17        0xbc, 0xb6, 0xda, 0x21, 0x10, 0xff, 0xf3, 0xd2, 0xcd, 0x0c, 0x13, 0xec, 0x5f, 0x97, 0x44,
18        0x17, 0xc4, 0xa7, 0x7e, 0x3d, 0x64, 0x5d, 0x19, 0x73, 0x60, 0x81, 0x4f, 0xdc, 0x22, 0x2a,
19        0x90, 0x88, 0x46, 0xee, 0xb8, 0x14, 0xde, 0x5e, 0x0b, 0xdb, 0xe0, 0x32, 0x3a, 0x0a, 0x49,
20        0x06, 0x24, 0x5c, 0xc2, 0xd3, 0xac, 0x62, 0x91, 0x95, 0xe4, 0x79, 0xe7, 0xc8, 0x37, 0x6d,
21        0x8d, 0xd5, 0x4e, 0xa9, 0x6c, 0x56, 0xf4, 0xea, 0x65, 0x7a, 0xae, 0x08, 0xba, 0x78, 0x25,
22        0x2e, 0x1c, 0xa6, 0xb4, 0xc6, 0xe8, 0xdd, 0x74, 0x1f, 0x4b, 0xbd, 0x8b, 0x8a, 0x70, 0x3e,
23        0xb5, 0x66, 0x48, 0x03, 0xf6, 0x0e, 0x61, 0x35, 0x57, 0xb9, 0x86, 0xc1, 0x1d, 0x9e, 0xe1,
24        0xf8, 0x98, 0x11, 0x69, 0xd9, 0x8e, 0x94, 0x9b, 0x1e, 0x87, 0xe9, 0xce, 0x55, 0x28, 0xdf,
25        0x8c, 0xa1, 0x89, 0x0d, 0xbf, 0xe6, 0x42, 0x68, 0x41, 0x99, 0x2d, 0x0f, 0xb0, 0x54, 0xbb,
26        0x16,
27    ],
28    // SBOX 1
29    [
30        0x52, 0x09, 0x6a, 0xd5, 0x30, 0x36, 0xa5, 0x38, 0xbf, 0x40, 0xa3, 0x9e, 0x81, 0xf3, 0xd7,
31        0xfb, 0x7c, 0xe3, 0x39, 0x82, 0x9b, 0x2f, 0xff, 0x87, 0x34, 0x8e, 0x43, 0x44, 0xc4, 0xde,
32        0xe9, 0xcb, 0x54, 0x7b, 0x94, 0x32, 0xa6, 0xc2, 0x23, 0x3d, 0xee, 0x4c, 0x95, 0x0b, 0x42,
33        0xfa, 0xc3, 0x4e, 0x08, 0x2e, 0xa1, 0x66, 0x28, 0xd9, 0x24, 0xb2, 0x76, 0x5b, 0xa2, 0x49,
34        0x6d, 0x8b, 0xd1, 0x25, 0x72, 0xf8, 0xf6, 0x64, 0x86, 0x68, 0x98, 0x16, 0xd4, 0xa4, 0x5c,
35        0xcc, 0x5d, 0x65, 0xb6, 0x92, 0x6c, 0x70, 0x48, 0x50, 0xfd, 0xed, 0xb9, 0xda, 0x5e, 0x15,
36        0x46, 0x57, 0xa7, 0x8d, 0x9d, 0x84, 0x90, 0xd8, 0xab, 0x00, 0x8c, 0xbc, 0xd3, 0x0a, 0xf7,
37        0xe4, 0x58, 0x05, 0xb8, 0xb3, 0x45, 0x06, 0xd0, 0x2c, 0x1e, 0x8f, 0xca, 0x3f, 0x0f, 0x02,
38        0xc1, 0xaf, 0xbd, 0x03, 0x01, 0x13, 0x8a, 0x6b, 0x3a, 0x91, 0x11, 0x41, 0x4f, 0x67, 0xdc,
39        0xea, 0x97, 0xf2, 0xcf, 0xce, 0xf0, 0xb4, 0xe6, 0x73, 0x96, 0xac, 0x74, 0x22, 0xe7, 0xad,
40        0x35, 0x85, 0xe2, 0xf9, 0x37, 0xe8, 0x1c, 0x75, 0xdf, 0x6e, 0x47, 0xf1, 0x1a, 0x71, 0x1d,
41        0x29, 0xc5, 0x89, 0x6f, 0xb7, 0x62, 0x0e, 0xaa, 0x18, 0xbe, 0x1b, 0xfc, 0x56, 0x3e, 0x4b,
42        0xc6, 0xd2, 0x79, 0x20, 0x9a, 0xdb, 0xc0, 0xfe, 0x78, 0xcd, 0x5a, 0xf4, 0x1f, 0xdd, 0xa8,
43        0x33, 0x88, 0x07, 0xc7, 0x31, 0xb1, 0x12, 0x10, 0x59, 0x27, 0x80, 0xec, 0x5f, 0x60, 0x51,
44        0x7f, 0xa9, 0x19, 0xb5, 0x4a, 0x0d, 0x2d, 0xe5, 0x7a, 0x9f, 0x93, 0xc9, 0x9c, 0xef, 0xa0,
45        0xe0, 0x3b, 0x4d, 0xae, 0x2a, 0xf5, 0xb0, 0xc8, 0xeb, 0xbb, 0x3c, 0x83, 0x53, 0x99, 0x61,
46        0x17, 0x2b, 0x04, 0x7e, 0xba, 0x77, 0xd6, 0x26, 0xe1, 0x69, 0x14, 0x63, 0x55, 0x21, 0x0c,
47        0x7d,
48    ],
49];
50
51/// 步进一次并混合,`mix64(x + GOLDEN)` 的便捷封装。
52///
53/// # Feature Requirement
54///
55/// 需要启用 `"crypto"` 特性。
56///
57/// # Examples
58///
59/// ```rust
60/// use lib_unknown::crypto::base::mix64_next;
61///
62/// let y = mix64_next(0);
63/// assert_ne!(y, 0);
64/// ```
65pub fn mix64_next(mut x: u64) -> u64 {
66    x = x.wrapping_add(0x9e3779b97f4a7c15);
67    mix64(x)
68}
69
70/// 带 SBox 头尾扰动和前馈的不可逆 64 位雪崩混合函数。
71///
72///
73/// # Feature Requirement
74///
75/// 需要启用 `"crypto"` 特性。
76///
77/// # Examples
78///
79/// ```rust
80/// use lib_unknown::crypto::base::mix64;
81///
82/// assert_ne!(mix64(0), mix64(1));
83/// ```
84pub fn mix64(mut x: u64) -> u64 {
85    let o1 = x;
86    let s1 = s8(x as u8, &SBOX_BASE[0]); // s-box
87    let s2 = s8((x >> 56) as u8, &SBOX_BASE[0]);
88    x ^= s1 as u64;
89    x ^= (s2 as u64) << 56;
90
91    x = (x ^ (x >> 30)).wrapping_mul(0xbf58476d1ce4e5b9);
92    let o2 = x;
93    x = (x ^ (x >> 27)).wrapping_mul(0x94d049bb133111eb);
94    x = x ^ (x >> 31);
95
96    x = x.wrapping_add(o2);
97    x ^= o1;
98
99    x
100}
101
102pub struct LightHasher {
103    hash: u64,
104    buf: [u8; 8],
105    buf_len: u8, // 0..=7
106}
107
108impl LightHasher {
109    #[inline(always)]
110    pub fn new(seed: u64) -> Self {
111        Self {
112            hash: seed,
113            buf: [0; 8],
114            buf_len: 0,
115        }
116    }
117
118    #[inline(always)]
119    fn next_input(hash: u64, i: u64) -> u64 {
120        let i = i.wrapping_mul(0x517cc1b727220a95).wrapping_pow(2);
121        hash.rotate_left(5) ^ i
122    }
123
124    #[inline(always)]
125    fn add_to_hash(&mut self, i: u64) {
126        self.hash = Self::next_input(self.hash, i);
127    }
128
129    #[inline(always)]
130    fn write_bytes(&mut self, mut bytes: &[u8]) {
131        let buf_len = self.buf_len as usize;
132        if buf_len > 0 {
133            let take = (8 - buf_len).min(bytes.len());
134            self.buf[buf_len..buf_len + take].copy_from_slice(&bytes[..take]);
135            self.buf_len = (buf_len + take) as u8;
136            bytes = &bytes[take..];
137
138            if self.buf_len == 8 {
139                let chunk = u64::from_le_bytes(self.buf);
140                self.add_to_hash(chunk);
141                self.buf_len = 0;
142            }
143        }
144
145        while bytes.len() >= 8 {
146            let chunk = u64::from_le_bytes(bytes[..8].try_into().unwrap());
147            self.add_to_hash(chunk);
148            bytes = &bytes[8..];
149        }
150
151        if !bytes.is_empty() {
152            self.buf[..bytes.len()].copy_from_slice(bytes);
153            self.buf_len = bytes.len() as u8;
154        }
155    }
156}
157
158impl core::hash::Hasher for LightHasher {
159    #[inline(always)]
160    fn finish(&self) -> u64 {
161        let mut hash = self.hash;
162
163        let mut remaining = [0_u8; 8];
164        let len = self.buf_len as usize;
165        remaining[..len].copy_from_slice(&self.buf[..len]);
166
167        hash = Self::next_input(hash, u64::from_le_bytes(remaining));
168        mix64(hash)
169    }
170
171    #[inline(always)]
172    fn write(&mut self, bytes: &[u8]) {
173        self.write_bytes(bytes);
174    }
175
176    #[inline(always)]
177    fn write_u8(&mut self, i: u8) {
178        self.write_bytes(&[i]);
179    }
180
181    #[inline(always)]
182    fn write_u32(&mut self, i: u32) {
183        self.write_bytes(&i.to_le_bytes());
184    }
185
186    #[inline(always)]
187    fn write_u64(&mut self, i: u64) {
188        if self.buf_len == 0 {
189            self.add_to_hash(i);
190        } else {
191            self.write_bytes(&i.to_le_bytes());
192        }
193    }
194
195    #[inline(always)]
196    fn write_usize(&mut self, i: usize) {
197        self.write_u64(i as u64);
198    }
199}
200
201pub fn derive<T: core::hash::Hash>(value: T) -> u64 {
202    let mut hasher = LightHasher::new(u32::MAX as u64);
203    use core::hash::Hasher;
204    value.hash(&mut hasher);
205    hasher.finish()
206}
207#[inline(never)]
208pub fn shuffle_with<T, U>(mut table: U, mut seed: u64) -> U
209where
210    U: AsMut<[T]>,
211{
212    let slice = table.as_mut();
213    let len = slice.len();
214    if len <= 1 {
215        return table;
216    }
217
218    let ptr = slice.as_mut_ptr();
219
220    for i in (1..len).rev() {
221        let bound = (i + 1) as u64;
222
223        seed = mix64_next(seed);
224        let mut m = (seed as u128) * (bound as u128);
225        let mut l = m as u64;
226
227        if l < bound {
228            let t = bound.wrapping_neg() % bound;
229            while l < t {
230                seed = mix64_next(seed);
231                m = (seed as u128) * (bound as u128);
232                l = m as u64;
233            }
234        }
235
236        let j = (m >> 64) as usize;
237        // SAFETY: `ptr` 来自非空切片,`i/j < len`(`j` 为 Lemire 无偏约减结果,恒小于 `bound = i+1 <= len`),
238        // 两指针均在同一分配内且 `T` 可移动,调用期间无其他借用。
239        unsafe {
240            core::ptr::swap(ptr.add(i), ptr.add(j));
241        }
242    }
243    table
244}
245
246#[inline]
247pub fn p8(x: u8, s: &[u8]) -> u8 {
248    assert_eq!(s.len(), 8);
249    let mut out = 0u8;
250    for (dst, &src) in s.iter().enumerate().take(8) {
251        assert!(src < 8);
252        let bit = (x >> src) & 1;
253        out |= bit << dst;
254    }
255    out
256}
257
258#[inline]
259pub fn s8(x: u8, s: &[u8]) -> u8 {
260    assert_eq!(s.len(), 256);
261    s[x as usize]
262}
263
264// pub fn s64(x: u64, s: &[u8]) -> u64 {
265//     assert_eq!(s.len(), 256);
266//     let mut bytes = x.to_le_bytes();
267//     for b in &mut bytes {
268//         *b = s[*b as usize];
269//     }
270//     u64::from_le_bytes(bytes)
271// }
272#[inline(never)]
273pub fn inv_p(s: &[u8]) -> Option<[u8; 8]> {
274    if s.len() != 8 {
275        return None;
276    }
277
278    let mut inv = [0u8; 8];
279    let mut seen = [false; 8];
280
281    for (dst, &src) in s.iter().enumerate() {
282        if src >= 8 {
283            return None;
284        }
285        if seen[src as usize] {
286            return None;
287        }
288        seen[src as usize] = true;
289        inv[src as usize] = dst as u8;
290    }
291    Some(inv)
292}
293#[inline(never)]
294pub fn inv_s(s: &[u8]) -> Option<[u8; 256]> {
295    if s.len() != 256 {
296        return None;
297    }
298
299    let mut inv = [0u8; 256];
300    let mut seen = [false; 256];
301
302    for (i, &val) in s.iter().enumerate() {
303        if seen[val as usize] {
304            return None;
305        }
306        seen[val as usize] = true;
307        inv[val as usize] = i as u8;
308    }
309
310    Some(inv)
311}
312
313pub fn gen_p(seed: u64) -> [u8; 8] {
314    shuffle_with([0, 1, 2, 3, 4, 5, 6, 7], seed)
315}
316
317pub fn gen_s(seed: u64) -> [u8; 256] {
318    shuffle_with(core::array::from_fn(|i| i as u8), seed)
319}
320
321#[inline]
322pub fn inv_mul8(m: u8) -> u8 {
323    debug_assert!(m & 1 == 1, "m 必须是奇数才有逆元");
324    let mut inv = m; // 对 mod 2 成立
325    inv = inv.wrapping_mul(2u8.wrapping_sub(m.wrapping_mul(inv))); // 2 bits
326    inv = inv.wrapping_mul(2u8.wrapping_sub(m.wrapping_mul(inv))); // 4 bits
327    inv = inv.wrapping_mul(2u8.wrapping_sub(m.wrapping_mul(inv))); // 8 bits
328    inv
329}
330
331/// x: 明文字节
332/// l: 上一字节对应的密文
333/// i: 当前字节的序号/轮数
334/// k: 密钥
335/// p: 当前轮使用的 8 元素比特置换表
336/// s: 当前轮使用的 256 元素字节替换表
337#[inline(never)]
338pub fn r8<K: Into<u128>>(
339    mut x: u8,
340    l: u8,
341    i: usize,
342    k: K,
343    mut p: Option<&mut [u8]>,
344    mut s: Option<&mut [u8]>,
345) -> u8 {
346    let k = k.into();
347    let ki = k.rotate_right(i as u32) as u8;
348    let r = mix64(
349        k.rotate_right(l as u32) as u64 ^ (l as u64).rotate_left(17) ^ (i as u64).rotate_left(31),
350    );
351    x ^= l ^ !(i as u8) ^ ki ^ r as u8;
352
353    if let Some(p_box) = &mut p {
354        x = p8(x, p_box);
355
356        let val1 = (r & 0b111) as u8;
357        let val2 = ((r >> 3) & 0b111) as u8;
358        let pos1 = p_box.iter().position(|&v| v == val1).unwrap();
359        let pos2 = p_box.iter().position(|&v| v == val2).unwrap();
360        p_box.swap(pos1, pos2);
361    }
362
363    x = x.wrapping_mul(inv_mul8(ki | 1));
364    x = x.wrapping_mul(inv_mul8(mix64_next(r) as u8 | 1));
365
366    if let Some(s_box) = &mut s {
367        x = s8(x, s_box);
368        let idx1 = ((r >> 8) & 0xFF) as usize;
369        let idx2 = ((r >> 16) & 0xFF) as usize;
370        s_box.swap(idx1, idx2);
371    }
372
373    x = x.rotate_right(!ki as u32);
374
375    x
376}
377#[inline(never)]
378pub fn ir8<K: Into<u128>>(
379    mut y: u8,
380    l: u8,
381    i: usize,
382    k: K,
383    mut p_inv: Option<&mut [u8]>,
384    mut s_inv: Option<&mut [u8]>,
385) -> u8 {
386    let k = k.into();
387    let ki = k.rotate_right(i as u32) as u8;
388    let r = mix64(
389        k.rotate_right(l as u32) as u64 ^ (l as u64).rotate_left(17) ^ (i as u64).rotate_left(31),
390    );
391
392    y = y.rotate_left(!ki as u32);
393
394    if let Some(s_inv_box) = &mut s_inv {
395        y = s8(y, s_inv_box);
396
397        let idx1 = ((r >> 8) & 0xFF) as u8;
398        let idx2 = ((r >> 16) & 0xFF) as u8;
399        let pos1 = s_inv_box.iter().position(|&v| v == idx1).unwrap();
400        let pos2 = s_inv_box.iter().position(|&v| v == idx2).unwrap();
401        s_inv_box.swap(pos1, pos2);
402    }
403
404    y = y.wrapping_mul(mix64_next(r) as u8 | 1);
405    y = y.wrapping_mul(ki | 1);
406
407    if let Some(p_inv_box) = &mut p_inv {
408        y = p8(y, p_inv_box);
409
410        let idx1 = (r & 0b111) as usize;
411        let idx2 = ((r >> 3) & 0b111) as usize;
412        p_inv_box.swap(idx1, idx2);
413    }
414
415    y ^ l ^ !(i as u8) ^ ki ^ r as u8
416}
417
418pub fn mse_no_s<K: Into<u128>, D: AsMut<[u8]>>(mut data: D, key: K, iv: u8) {
419    let key = key.into();
420    let data = data.as_mut();
421    let mut prev = iv;
422    let mut p = gen_p((key ^ key >> 64) as u64);
423
424    for (i, pt) in data.iter_mut().enumerate() {
425        let ct = r8(*pt, prev, i, key, Some(&mut p), None);
426        prev = ct;
427        *pt = ct;
428    }
429}
430pub fn imse_no_s<K: Into<u128>, D: AsMut<[u8]>>(mut data: D, key: K, iv: u8) {
431    let key = key.into();
432    let data = data.as_mut();
433    let mut prev = iv;
434
435    let p_inv = gen_p((key ^ key >> 64) as u64);
436    let mut p = inv_p(&p_inv).expect("P-Box generation failed");
437
438    for (i, pt) in data.iter_mut().enumerate() {
439        let ct = ir8(*pt, prev, i, key, Some(&mut p), None);
440        prev = *pt;
441        *pt = ct;
442    }
443}
444
445pub fn mse_no_ps<K: Into<u128>, D: AsMut<[u8]>>(mut data: D, key: K, iv: u8) {
446    let key = key.into();
447    let data = data.as_mut();
448    let mut prev = iv;
449
450    for (i, pt) in data.iter_mut().enumerate() {
451        let ct = r8(*pt, prev, i, key, None, None);
452        prev = ct;
453        *pt = ct;
454    }
455}
456pub fn imse_no_ps<K: Into<u128>, D: AsMut<[u8]>>(mut data: D, key: K, iv: u8) {
457    let key = key.into();
458    let data = data.as_mut();
459    let mut prev = iv;
460
461    for (i, pt) in data.iter_mut().enumerate() {
462        let ct = ir8(*pt, prev, i, key, None, None);
463        prev = *pt;
464        *pt = ct;
465    }
466}
467
468pub fn mse<K: Into<u128>, D: AsMut<[u8]>>(mut data: D, key: K, iv: u8) {
469    let key = key.into();
470    let data = data.as_mut();
471    let mut prev = iv;
472
473    let seed_p = (key ^ (key >> 64)) as u64;
474    let seed_s = mix64(seed_p);
475
476    let mut p = gen_p(seed_p);
477    let mut s = gen_s(seed_s);
478
479    for (i, pt) in data.iter_mut().enumerate() {
480        let ct = r8(*pt, prev, i, key, Some(&mut p), Some(&mut s));
481        prev = ct;
482        *pt = ct;
483    }
484}
485
486pub fn imse<K: Into<u128>, D: AsMut<[u8]>>(mut data: D, key: K, iv: u8) {
487    let key = key.into();
488    let data = data.as_mut();
489    let mut prev = iv;
490
491    let seed_p = (key ^ (key >> 64)) as u64;
492    let seed_s = mix64(seed_p);
493
494    let p_box = gen_p(seed_p);
495    let s_box = gen_s(seed_s);
496
497    let mut p_inv = inv_p(&p_box).expect("P-Box generation failed");
498    let mut s_inv = inv_s(&s_box).expect("S-Box generation failed");
499
500    for (i, pt) in data.iter_mut().enumerate() {
501        let ct = ir8(*pt, prev, i, key, Some(&mut p_inv), Some(&mut s_inv));
502        prev = *pt;
503        *pt = ct;
504    }
505}
506
507#[cfg(test)]
508#[allow(clippy::unwrap_used, clippy::expect_used)]
509mod tests {
510    use super::*;
511    use crate::rand::{fill_bytes, next};
512
513    #[test]
514    fn test_sbox_base_inverse() {
515        let inv = inv_s(&SBOX_BASE[0]).expect("SBOX_BASE[0] 应该具备逆矩阵");
516        assert_eq!(inv, SBOX_BASE[1], "硬编码的逆矩阵有误");
517
518        // 验证双射性
519        for i in 0..=255u8 {
520            let encrypted = s8(i, &SBOX_BASE[0]);
521            let decrypted = s8(encrypted, &SBOX_BASE[1]);
522            assert_eq!(i, decrypted);
523        }
524    }
525
526    #[test]
527    fn test_inv_mul8() {
528        // 验证所有奇数在 mod 256 下的乘法逆元是否正确
529        for m in (1..=255).step_by(2) {
530            let inv = inv_mul8(m);
531            assert_eq!(m.wrapping_mul(inv), 1, "{} 的逆元计算错误: {}", m, inv);
532        }
533    }
534
535    #[test]
536    fn test_shuffle_with() {
537        let original = [0, 1, 2, 3, 4, 5, 6, 7];
538        let shuffled = shuffle_with(original, 12345);
539
540        assert_eq!(original.len(), shuffled.len());
541    }
542
543    #[test]
544    fn test_gen_and_inv_boxes() {
545        let seed = 998244353;
546
547        // 测试 P-Box
548        let p_box = gen_p(seed);
549        let p_inv = inv_p(&p_box).expect("生成的 P-box 不是合法的置换");
550        for x in 0..=255u8 {
551            let p = p8(x, &p_box);
552            let original = p8(p, &p_inv);
553            assert_eq!(x, original, "P-Box 还原失败");
554        }
555
556        // 测试 S-Box
557        let s_box = gen_s(seed);
558        let s_inv = inv_s(&s_box).expect("生成的 S-box 不是合法的置换");
559        for x in 0..=255u8 {
560            let s = s8(x, &s_box);
561            let original = s8(s, &s_inv);
562            assert_eq!(x, original, "S-Box 还原失败");
563        }
564    }
565
566    #[test]
567    fn test_light_hasher() {
568        let hash1 = derive("Hello, World!");
569        let hash2 = derive("Hello, World!");
570        let hash3 = derive("Hello, Rust!");
571
572        assert_eq!(hash1, hash2);
573        assert_ne!(hash1, hash3);
574    }
575
576    #[test]
577    fn test_r8_ir8_without_boxes() {
578        let pt = 0x42; // 明文
579        let l = 0xAA; // 模拟上一个密文
580        let i = 5; // 轮数
581        let k = 0x1234567890ABCDEF_u128; // 密钥
582
583        let ct = r8(pt, l, i, k, None, None);
584        let decrypted = ir8(ct, l, i, k, None, None);
585
586        assert_eq!(pt, decrypted, "无Box情况下的核心加解密失败");
587    }
588
589    #[test]
590    fn test_r8_ir8_with_dynamic_boxes() {
591        let pt = 0x7F;
592        let l = 0x11;
593        let i = 10;
594        let k = 0x1234567890ABCDEF_u128;
595
596        let mut p_box = gen_p(111);
597        let mut s_box = gen_s(222);
598
599        let mut p_inv = inv_p(&p_box).unwrap();
600        let mut s_inv = inv_s(&s_box).unwrap();
601
602        let ct = r8(pt, l, i, k, Some(&mut p_box), Some(&mut s_box));
603
604        let decrypted = ir8(ct, l, i, k, Some(&mut p_inv), Some(&mut s_inv));
605
606        assert_eq!(pt, decrypted, "动态Box情况下的核心解密失败");
607
608        let expected_p_inv = inv_p(&p_box).unwrap();
609        let expected_s_inv = inv_s(&s_box).unwrap();
610
611        assert_eq!(
612            p_inv, expected_p_inv,
613            "加密/解密后 P-Box 的内部状态发生错乱不同步"
614        );
615        assert_eq!(
616            s_inv, expected_s_inv,
617            "加密/解密后 S-Box 的内部状态发生错乱不同步"
618        );
619    }
620
621    // fill_bytes 9.29µs
622    // enc 346.743µs
623    // dec 1.0083ms
624    #[cfg(feature = "std")]
625    #[test]
626    fn test_end_to_end_buffer_encryption() {
627        use std::collections::HashSet;
628        use std::time::Instant;
629        let mut plaintext = vec![0; 1024];
630        let _start = Instant::now();
631        fill_bytes(&mut plaintext);
632        println!("fill_bytes {:?}", _start.elapsed());
633
634        let key = 0x9988776655443322;
635
636        let mut p_box = gen_p(key);
637        let mut s_box = gen_s(key);
638
639        let mut p_inv = inv_p(&p_box).unwrap();
640        let mut s_inv = inv_s(&s_box).unwrap();
641
642        let mut ciphertext = Vec::with_capacity(plaintext.len());
643        let mut prev_c = 0u8; // 初始 IV
644
645        let _start = Instant::now();
646        for (i, &pt) in plaintext.iter().enumerate() {
647            let ct = r8(pt, prev_c, i, key, Some(&mut p_box), Some(&mut s_box));
648            ciphertext.push(ct);
649            prev_c = ct;
650        }
651        println!("enc {:?}", _start.elapsed());
652
653        let mut decrypted = Vec::with_capacity(ciphertext.len());
654        prev_c = 0u8;
655
656        let _start = Instant::now();
657        for (i, &ct) in ciphertext.iter().enumerate() {
658            let pt = ir8(ct, prev_c, i, key, Some(&mut p_inv), Some(&mut s_inv));
659            decrypted.push(pt);
660            prev_c = ct;
661        }
662        println!("dec {:?}", _start.elapsed());
663
664        println!("ciphertext: {:?}", ciphertext);
665
666        assert_eq!(
667            plaintext, decrypted,
668            "长文本流连续加解密失败,状态未能正确传递"
669        );
670
671        mse_no_ps(&mut decrypted, key, 0);
672        imse_no_ps(&mut decrypted, key, 0);
673        assert_eq!(plaintext, decrypted, "mse_no_sp,imse_no_sp失败");
674
675        mse_no_s(&mut decrypted, key, 0);
676        imse_no_s(&mut decrypted, key, 0);
677        assert_eq!(plaintext, decrypted, "mse_no_s,imse_no_s失败");
678
679        mse(&mut decrypted, key, 0);
680        imse(&mut decrypted, key, 0);
681        assert_eq!(plaintext, decrypted, "mse_no_s,imse_no_s失败");
682    }
683    #[cfg(feature = "std")]
684    #[test]
685    fn test_mix() {
686        use std::collections::HashSet;
687        use std::time::Instant;
688        let mut s = 0;
689        for _ in 0..1000 {
690            let t = Instant::now();
691            s = mix64_next(s);
692            println!("took: {:<10.2?} {s}", t.elapsed());
693        }
694    }
695}