Coverage Report

Created: 2025-06-22 06:30

/src/qpdf/libqpdf/sha2.c
Line
Count
Source (jump to first uncovered line)
1
/* clang-format off */
2
/* $Id: sha2.c 227 2010-06-16 17:28:38Z tp $ */
3
/*
4
 * SHA-224 / SHA-256 implementation.
5
 *
6
 * ==========================(LICENSE BEGIN)============================
7
 *
8
 * Copyright (c) 2007-2010  Projet RNRT SAPHIR
9
 * 
10
 * Permission is hereby granted, free of charge, to any person obtaining
11
 * a copy of this software and associated documentation files (the
12
 * "Software"), to deal in the Software without restriction, including
13
 * without limitation the rights to use, copy, modify, merge, publish,
14
 * distribute, sublicense, and/or sell copies of the Software, and to
15
 * permit persons to whom the Software is furnished to do so, subject to
16
 * the following conditions:
17
 * 
18
 * The above copyright notice and this permission notice shall be
19
 * included in all copies or substantial portions of the Software.
20
 * 
21
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
22
 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
23
 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
24
 * IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
25
 * CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
26
 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
27
 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
28
 *
29
 * ===========================(LICENSE END)=============================
30
 *
31
 * @author   Thomas Pornin <thomas.pornin@cryptolog.com>
32
 */
33
34
#include <stddef.h>
35
#include <string.h>
36
37
#include "sph/sph_sha2.h"
38
39
#if SPH_SMALL_FOOTPRINT && !defined SPH_SMALL_FOOTPRINT_SHA2
40
#define SPH_SMALL_FOOTPRINT_SHA2   1
41
#endif
42
43
#define CH(X, Y, Z)    ((((Y) ^ (Z)) & (X)) ^ (Z))
44
#define MAJ(X, Y, Z)   (((Y) & (Z)) | (((Y) | (Z)) & (X)))
45
46
#define ROTR    SPH_ROTR32
47
48
#define BSG2_0(x)      (ROTR(x, 2) ^ ROTR(x, 13) ^ ROTR(x, 22))
49
#define BSG2_1(x)      (ROTR(x, 6) ^ ROTR(x, 11) ^ ROTR(x, 25))
50
#define SSG2_0(x)      (ROTR(x, 7) ^ ROTR(x, 18) ^ SPH_T32((x) >> 3))
51
#define SSG2_1(x)      (ROTR(x, 17) ^ ROTR(x, 19) ^ SPH_T32((x) >> 10))
52
53
static const sph_u32 H224[8] = {
54
        SPH_C32(0xC1059ED8), SPH_C32(0x367CD507), SPH_C32(0x3070DD17),
55
        SPH_C32(0xF70E5939), SPH_C32(0xFFC00B31), SPH_C32(0x68581511),
56
        SPH_C32(0x64F98FA7), SPH_C32(0xBEFA4FA4)
57
};
58
59
static const sph_u32 H256[8] = {
60
        SPH_C32(0x6A09E667), SPH_C32(0xBB67AE85), SPH_C32(0x3C6EF372),
61
        SPH_C32(0xA54FF53A), SPH_C32(0x510E527F), SPH_C32(0x9B05688C),
62
        SPH_C32(0x1F83D9AB), SPH_C32(0x5BE0CD19)
63
};
64
65
/*
66
 * The SHA2_ROUND_BODY defines the body for a SHA-224 / SHA-256
67
 * compression function implementation. The "in" parameter should
68
 * evaluate, when applied to a numerical input parameter from 0 to 15,
69
 * to an expression which yields the corresponding input block. The "r"
70
 * parameter should evaluate to an array or pointer expression
71
 * designating the array of 8 words which contains the input and output
72
 * of the compression function.
73
 */
74
75
#if SPH_SMALL_FOOTPRINT_SHA2
76
77
static const sph_u32 K[64] = {
78
        SPH_C32(0x428A2F98), SPH_C32(0x71374491),
79
        SPH_C32(0xB5C0FBCF), SPH_C32(0xE9B5DBA5),
80
        SPH_C32(0x3956C25B), SPH_C32(0x59F111F1),
81
        SPH_C32(0x923F82A4), SPH_C32(0xAB1C5ED5),
82
        SPH_C32(0xD807AA98), SPH_C32(0x12835B01),
83
        SPH_C32(0x243185BE), SPH_C32(0x550C7DC3),
84
        SPH_C32(0x72BE5D74), SPH_C32(0x80DEB1FE),
85
        SPH_C32(0x9BDC06A7), SPH_C32(0xC19BF174),
86
        SPH_C32(0xE49B69C1), SPH_C32(0xEFBE4786),
87
        SPH_C32(0x0FC19DC6), SPH_C32(0x240CA1CC),
88
        SPH_C32(0x2DE92C6F), SPH_C32(0x4A7484AA),
89
        SPH_C32(0x5CB0A9DC), SPH_C32(0x76F988DA),
90
        SPH_C32(0x983E5152), SPH_C32(0xA831C66D),
91
        SPH_C32(0xB00327C8), SPH_C32(0xBF597FC7),
92
        SPH_C32(0xC6E00BF3), SPH_C32(0xD5A79147),
93
        SPH_C32(0x06CA6351), SPH_C32(0x14292967),
94
        SPH_C32(0x27B70A85), SPH_C32(0x2E1B2138),
95
        SPH_C32(0x4D2C6DFC), SPH_C32(0x53380D13),
96
        SPH_C32(0x650A7354), SPH_C32(0x766A0ABB),
97
        SPH_C32(0x81C2C92E), SPH_C32(0x92722C85),
98
        SPH_C32(0xA2BFE8A1), SPH_C32(0xA81A664B),
99
        SPH_C32(0xC24B8B70), SPH_C32(0xC76C51A3),
100
        SPH_C32(0xD192E819), SPH_C32(0xD6990624),
101
        SPH_C32(0xF40E3585), SPH_C32(0x106AA070),
102
        SPH_C32(0x19A4C116), SPH_C32(0x1E376C08),
103
        SPH_C32(0x2748774C), SPH_C32(0x34B0BCB5),
104
        SPH_C32(0x391C0CB3), SPH_C32(0x4ED8AA4A),
105
        SPH_C32(0x5B9CCA4F), SPH_C32(0x682E6FF3),
106
        SPH_C32(0x748F82EE), SPH_C32(0x78A5636F),
107
        SPH_C32(0x84C87814), SPH_C32(0x8CC70208),
108
        SPH_C32(0x90BEFFFA), SPH_C32(0xA4506CEB),
109
        SPH_C32(0xBEF9A3F7), SPH_C32(0xC67178F2)
110
};
111
112
#define SHA2_MEXP1(in, pc)   do { \
113
                W[pc] = in(pc); \
114
        } while (0)
115
116
#define SHA2_MEXP2(in, pc)   do { \
117
                W[(pc) & 0x0F] = SPH_T32(SSG2_1(W[((pc) - 2) & 0x0F]) \
118
                        + W[((pc) - 7) & 0x0F] \
119
                        + SSG2_0(W[((pc) - 15) & 0x0F]) + W[(pc) & 0x0F]); \
120
        } while (0)
121
122
#define SHA2_STEPn(n, a, b, c, d, e, f, g, h, in, pc)   do { \
123
                sph_u32 t1, t2; \
124
                SHA2_MEXP ## n(in, pc); \
125
                t1 = SPH_T32(h + BSG2_1(e) + CH(e, f, g) \
126
                        + K[pcount + (pc)] + W[(pc) & 0x0F]); \
127
                t2 = SPH_T32(BSG2_0(a) + MAJ(a, b, c)); \
128
                d = SPH_T32(d + t1); \
129
                h = SPH_T32(t1 + t2); \
130
        } while (0)
131
132
#define SHA2_STEP1(a, b, c, d, e, f, g, h, in, pc) \
133
        SHA2_STEPn(1, a, b, c, d, e, f, g, h, in, pc)
134
#define SHA2_STEP2(a, b, c, d, e, f, g, h, in, pc) \
135
        SHA2_STEPn(2, a, b, c, d, e, f, g, h, in, pc)
136
137
#define SHA2_ROUND_BODY(in, r)   do { \
138
                sph_u32 A, B, C, D, E, F, G, H; \
139
                sph_u32 W[16]; \
140
                unsigned pcount; \
141
 \
142
                A = (r)[0]; \
143
                B = (r)[1]; \
144
                C = (r)[2]; \
145
                D = (r)[3]; \
146
                E = (r)[4]; \
147
                F = (r)[5]; \
148
                G = (r)[6]; \
149
                H = (r)[7]; \
150
                pcount = 0; \
151
                SHA2_STEP1(A, B, C, D, E, F, G, H, in,  0); \
152
                SHA2_STEP1(H, A, B, C, D, E, F, G, in,  1); \
153
                SHA2_STEP1(G, H, A, B, C, D, E, F, in,  2); \
154
                SHA2_STEP1(F, G, H, A, B, C, D, E, in,  3); \
155
                SHA2_STEP1(E, F, G, H, A, B, C, D, in,  4); \
156
                SHA2_STEP1(D, E, F, G, H, A, B, C, in,  5); \
157
                SHA2_STEP1(C, D, E, F, G, H, A, B, in,  6); \
158
                SHA2_STEP1(B, C, D, E, F, G, H, A, in,  7); \
159
                SHA2_STEP1(A, B, C, D, E, F, G, H, in,  8); \
160
                SHA2_STEP1(H, A, B, C, D, E, F, G, in,  9); \
161
                SHA2_STEP1(G, H, A, B, C, D, E, F, in, 10); \
162
                SHA2_STEP1(F, G, H, A, B, C, D, E, in, 11); \
163
                SHA2_STEP1(E, F, G, H, A, B, C, D, in, 12); \
164
                SHA2_STEP1(D, E, F, G, H, A, B, C, in, 13); \
165
                SHA2_STEP1(C, D, E, F, G, H, A, B, in, 14); \
166
                SHA2_STEP1(B, C, D, E, F, G, H, A, in, 15); \
167
                for (pcount = 16; pcount < 64; pcount += 16) { \
168
                        SHA2_STEP2(A, B, C, D, E, F, G, H, in,  0); \
169
                        SHA2_STEP2(H, A, B, C, D, E, F, G, in,  1); \
170
                        SHA2_STEP2(G, H, A, B, C, D, E, F, in,  2); \
171
                        SHA2_STEP2(F, G, H, A, B, C, D, E, in,  3); \
172
                        SHA2_STEP2(E, F, G, H, A, B, C, D, in,  4); \
173
                        SHA2_STEP2(D, E, F, G, H, A, B, C, in,  5); \
174
                        SHA2_STEP2(C, D, E, F, G, H, A, B, in,  6); \
175
                        SHA2_STEP2(B, C, D, E, F, G, H, A, in,  7); \
176
                        SHA2_STEP2(A, B, C, D, E, F, G, H, in,  8); \
177
                        SHA2_STEP2(H, A, B, C, D, E, F, G, in,  9); \
178
                        SHA2_STEP2(G, H, A, B, C, D, E, F, in, 10); \
179
                        SHA2_STEP2(F, G, H, A, B, C, D, E, in, 11); \
180
                        SHA2_STEP2(E, F, G, H, A, B, C, D, in, 12); \
181
                        SHA2_STEP2(D, E, F, G, H, A, B, C, in, 13); \
182
                        SHA2_STEP2(C, D, E, F, G, H, A, B, in, 14); \
183
                        SHA2_STEP2(B, C, D, E, F, G, H, A, in, 15); \
184
                } \
185
                (r)[0] = SPH_T32((r)[0] + A); \
186
                (r)[1] = SPH_T32((r)[1] + B); \
187
                (r)[2] = SPH_T32((r)[2] + C); \
188
                (r)[3] = SPH_T32((r)[3] + D); \
189
                (r)[4] = SPH_T32((r)[4] + E); \
190
                (r)[5] = SPH_T32((r)[5] + F); \
191
                (r)[6] = SPH_T32((r)[6] + G); \
192
                (r)[7] = SPH_T32((r)[7] + H); \
193
        } while (0)
194
195
#else
196
197
1.43M
#define SHA2_ROUND_BODY(in, r)   do { \
198
1.43M
                sph_u32 A, B, C, D, E, F, G, H, T1, T2; \
199
1.43M
                sph_u32 W00, W01, W02, W03, W04, W05, W06, W07; \
200
1.43M
                sph_u32 W08, W09, W10, W11, W12, W13, W14, W15; \
201
1.43M
 \
202
1.43M
                A = (r)[0]; \
203
1.43M
                B = (r)[1]; \
204
1.43M
                C = (r)[2]; \
205
1.43M
                D = (r)[3]; \
206
1.43M
                E = (r)[4]; \
207
1.43M
                F = (r)[5]; \
208
1.43M
                G = (r)[6]; \
209
1.43M
                H = (r)[7]; \
210
1.43M
                W00 = in(0); \
211
1.43M
                T1 = SPH_T32(H + BSG2_1(E) + CH(E, F, G) \
212
1.43M
                        + SPH_C32(0x428A2F98) + W00); \
213
1.43M
                T2 = SPH_T32(BSG2_0(A) + MAJ(A, B, C)); \
214
1.43M
                D = SPH_T32(D + T1); \
215
1.43M
                H = SPH_T32(T1 + T2); \
216
1.43M
                W01 = in(1); \
217
1.43M
                T1 = SPH_T32(G + BSG2_1(D) + CH(D, E, F) \
218
1.43M
                        + SPH_C32(0x71374491) + W01); \
219
1.43M
                T2 = SPH_T32(BSG2_0(H) + MAJ(H, A, B)); \
220
1.43M
                C = SPH_T32(C + T1); \
221
1.43M
                G = SPH_T32(T1 + T2); \
222
1.43M
                W02 = in(2); \
223
1.43M
                T1 = SPH_T32(F + BSG2_1(C) + CH(C, D, E) \
224
1.43M
                        + SPH_C32(0xB5C0FBCF) + W02); \
225
1.43M
                T2 = SPH_T32(BSG2_0(G) + MAJ(G, H, A)); \
226
1.43M
                B = SPH_T32(B + T1); \
227
1.43M
                F = SPH_T32(T1 + T2); \
228
1.43M
                W03 = in(3); \
229
1.43M
                T1 = SPH_T32(E + BSG2_1(B) + CH(B, C, D) \
230
1.43M
                        + SPH_C32(0xE9B5DBA5) + W03); \
231
1.43M
                T2 = SPH_T32(BSG2_0(F) + MAJ(F, G, H)); \
232
1.43M
                A = SPH_T32(A + T1); \
233
1.43M
                E = SPH_T32(T1 + T2); \
234
1.43M
                W04 = in(4); \
235
1.43M
                T1 = SPH_T32(D + BSG2_1(A) + CH(A, B, C) \
236
1.43M
                        + SPH_C32(0x3956C25B) + W04); \
237
1.43M
                T2 = SPH_T32(BSG2_0(E) + MAJ(E, F, G)); \
238
1.43M
                H = SPH_T32(H + T1); \
239
1.43M
                D = SPH_T32(T1 + T2); \
240
1.43M
                W05 = in(5); \
241
1.43M
                T1 = SPH_T32(C + BSG2_1(H) + CH(H, A, B) \
242
1.43M
                        + SPH_C32(0x59F111F1) + W05); \
243
1.43M
                T2 = SPH_T32(BSG2_0(D) + MAJ(D, E, F)); \
244
1.43M
                G = SPH_T32(G + T1); \
245
1.43M
                C = SPH_T32(T1 + T2); \
246
1.43M
                W06 = in(6); \
247
1.43M
                T1 = SPH_T32(B + BSG2_1(G) + CH(G, H, A) \
248
1.43M
                        + SPH_C32(0x923F82A4) + W06); \
249
1.43M
                T2 = SPH_T32(BSG2_0(C) + MAJ(C, D, E)); \
250
1.43M
                F = SPH_T32(F + T1); \
251
1.43M
                B = SPH_T32(T1 + T2); \
252
1.43M
                W07 = in(7); \
253
1.43M
                T1 = SPH_T32(A + BSG2_1(F) + CH(F, G, H) \
254
1.43M
                        + SPH_C32(0xAB1C5ED5) + W07); \
255
1.43M
                T2 = SPH_T32(BSG2_0(B) + MAJ(B, C, D)); \
256
1.43M
                E = SPH_T32(E + T1); \
257
1.43M
                A = SPH_T32(T1 + T2); \
258
1.43M
                W08 = in(8); \
259
1.43M
                T1 = SPH_T32(H + BSG2_1(E) + CH(E, F, G) \
260
1.43M
                        + SPH_C32(0xD807AA98) + W08); \
261
1.43M
                T2 = SPH_T32(BSG2_0(A) + MAJ(A, B, C)); \
262
1.43M
                D = SPH_T32(D + T1); \
263
1.43M
                H = SPH_T32(T1 + T2); \
264
1.43M
                W09 = in(9); \
265
1.43M
                T1 = SPH_T32(G + BSG2_1(D) + CH(D, E, F) \
266
1.43M
                        + SPH_C32(0x12835B01) + W09); \
267
1.43M
                T2 = SPH_T32(BSG2_0(H) + MAJ(H, A, B)); \
268
1.43M
                C = SPH_T32(C + T1); \
269
1.43M
                G = SPH_T32(T1 + T2); \
270
1.43M
                W10 = in(10); \
271
1.43M
                T1 = SPH_T32(F + BSG2_1(C) + CH(C, D, E) \
272
1.43M
                        + SPH_C32(0x243185BE) + W10); \
273
1.43M
                T2 = SPH_T32(BSG2_0(G) + MAJ(G, H, A)); \
274
1.43M
                B = SPH_T32(B + T1); \
275
1.43M
                F = SPH_T32(T1 + T2); \
276
1.43M
                W11 = in(11); \
277
1.43M
                T1 = SPH_T32(E + BSG2_1(B) + CH(B, C, D) \
278
1.43M
                        + SPH_C32(0x550C7DC3) + W11); \
279
1.43M
                T2 = SPH_T32(BSG2_0(F) + MAJ(F, G, H)); \
280
1.43M
                A = SPH_T32(A + T1); \
281
1.43M
                E = SPH_T32(T1 + T2); \
282
1.43M
                W12 = in(12); \
283
1.43M
                T1 = SPH_T32(D + BSG2_1(A) + CH(A, B, C) \
284
1.43M
                        + SPH_C32(0x72BE5D74) + W12); \
285
1.43M
                T2 = SPH_T32(BSG2_0(E) + MAJ(E, F, G)); \
286
1.43M
                H = SPH_T32(H + T1); \
287
1.43M
                D = SPH_T32(T1 + T2); \
288
1.43M
                W13 = in(13); \
289
1.43M
                T1 = SPH_T32(C + BSG2_1(H) + CH(H, A, B) \
290
1.43M
                        + SPH_C32(0x80DEB1FE) + W13); \
291
1.43M
                T2 = SPH_T32(BSG2_0(D) + MAJ(D, E, F)); \
292
1.43M
                G = SPH_T32(G + T1); \
293
1.43M
                C = SPH_T32(T1 + T2); \
294
1.43M
                W14 = in(14); \
295
1.43M
                T1 = SPH_T32(B + BSG2_1(G) + CH(G, H, A) \
296
1.43M
                        + SPH_C32(0x9BDC06A7) + W14); \
297
1.43M
                T2 = SPH_T32(BSG2_0(C) + MAJ(C, D, E)); \
298
1.43M
                F = SPH_T32(F + T1); \
299
1.43M
                B = SPH_T32(T1 + T2); \
300
1.43M
                W15 = in(15); \
301
1.43M
                T1 = SPH_T32(A + BSG2_1(F) + CH(F, G, H) \
302
1.43M
                        + SPH_C32(0xC19BF174) + W15); \
303
1.43M
                T2 = SPH_T32(BSG2_0(B) + MAJ(B, C, D)); \
304
1.43M
                E = SPH_T32(E + T1); \
305
1.43M
                A = SPH_T32(T1 + T2); \
306
1.43M
                W00 = SPH_T32(SSG2_1(W14) + W09 + SSG2_0(W01) + W00); \
307
1.43M
                T1 = SPH_T32(H + BSG2_1(E) + CH(E, F, G) \
308
1.43M
                        + SPH_C32(0xE49B69C1) + W00); \
309
1.43M
                T2 = SPH_T32(BSG2_0(A) + MAJ(A, B, C)); \
310
1.43M
                D = SPH_T32(D + T1); \
311
1.43M
                H = SPH_T32(T1 + T2); \
312
1.43M
                W01 = SPH_T32(SSG2_1(W15) + W10 + SSG2_0(W02) + W01); \
313
1.43M
                T1 = SPH_T32(G + BSG2_1(D) + CH(D, E, F) \
314
1.43M
                        + SPH_C32(0xEFBE4786) + W01); \
315
1.43M
                T2 = SPH_T32(BSG2_0(H) + MAJ(H, A, B)); \
316
1.43M
                C = SPH_T32(C + T1); \
317
1.43M
                G = SPH_T32(T1 + T2); \
318
1.43M
                W02 = SPH_T32(SSG2_1(W00) + W11 + SSG2_0(W03) + W02); \
319
1.43M
                T1 = SPH_T32(F + BSG2_1(C) + CH(C, D, E) \
320
1.43M
                        + SPH_C32(0x0FC19DC6) + W02); \
321
1.43M
                T2 = SPH_T32(BSG2_0(G) + MAJ(G, H, A)); \
322
1.43M
                B = SPH_T32(B + T1); \
323
1.43M
                F = SPH_T32(T1 + T2); \
324
1.43M
                W03 = SPH_T32(SSG2_1(W01) + W12 + SSG2_0(W04) + W03); \
325
1.43M
                T1 = SPH_T32(E + BSG2_1(B) + CH(B, C, D) \
326
1.43M
                        + SPH_C32(0x240CA1CC) + W03); \
327
1.43M
                T2 = SPH_T32(BSG2_0(F) + MAJ(F, G, H)); \
328
1.43M
                A = SPH_T32(A + T1); \
329
1.43M
                E = SPH_T32(T1 + T2); \
330
1.43M
                W04 = SPH_T32(SSG2_1(W02) + W13 + SSG2_0(W05) + W04); \
331
1.43M
                T1 = SPH_T32(D + BSG2_1(A) + CH(A, B, C) \
332
1.43M
                        + SPH_C32(0x2DE92C6F) + W04); \
333
1.43M
                T2 = SPH_T32(BSG2_0(E) + MAJ(E, F, G)); \
334
1.43M
                H = SPH_T32(H + T1); \
335
1.43M
                D = SPH_T32(T1 + T2); \
336
1.43M
                W05 = SPH_T32(SSG2_1(W03) + W14 + SSG2_0(W06) + W05); \
337
1.43M
                T1 = SPH_T32(C + BSG2_1(H) + CH(H, A, B) \
338
1.43M
                        + SPH_C32(0x4A7484AA) + W05); \
339
1.43M
                T2 = SPH_T32(BSG2_0(D) + MAJ(D, E, F)); \
340
1.43M
                G = SPH_T32(G + T1); \
341
1.43M
                C = SPH_T32(T1 + T2); \
342
1.43M
                W06 = SPH_T32(SSG2_1(W04) + W15 + SSG2_0(W07) + W06); \
343
1.43M
                T1 = SPH_T32(B + BSG2_1(G) + CH(G, H, A) \
344
1.43M
                        + SPH_C32(0x5CB0A9DC) + W06); \
345
1.43M
                T2 = SPH_T32(BSG2_0(C) + MAJ(C, D, E)); \
346
1.43M
                F = SPH_T32(F + T1); \
347
1.43M
                B = SPH_T32(T1 + T2); \
348
1.43M
                W07 = SPH_T32(SSG2_1(W05) + W00 + SSG2_0(W08) + W07); \
349
1.43M
                T1 = SPH_T32(A + BSG2_1(F) + CH(F, G, H) \
350
1.43M
                        + SPH_C32(0x76F988DA) + W07); \
351
1.43M
                T2 = SPH_T32(BSG2_0(B) + MAJ(B, C, D)); \
352
1.43M
                E = SPH_T32(E + T1); \
353
1.43M
                A = SPH_T32(T1 + T2); \
354
1.43M
                W08 = SPH_T32(SSG2_1(W06) + W01 + SSG2_0(W09) + W08); \
355
1.43M
                T1 = SPH_T32(H + BSG2_1(E) + CH(E, F, G) \
356
1.43M
                        + SPH_C32(0x983E5152) + W08); \
357
1.43M
                T2 = SPH_T32(BSG2_0(A) + MAJ(A, B, C)); \
358
1.43M
                D = SPH_T32(D + T1); \
359
1.43M
                H = SPH_T32(T1 + T2); \
360
1.43M
                W09 = SPH_T32(SSG2_1(W07) + W02 + SSG2_0(W10) + W09); \
361
1.43M
                T1 = SPH_T32(G + BSG2_1(D) + CH(D, E, F) \
362
1.43M
                        + SPH_C32(0xA831C66D) + W09); \
363
1.43M
                T2 = SPH_T32(BSG2_0(H) + MAJ(H, A, B)); \
364
1.43M
                C = SPH_T32(C + T1); \
365
1.43M
                G = SPH_T32(T1 + T2); \
366
1.43M
                W10 = SPH_T32(SSG2_1(W08) + W03 + SSG2_0(W11) + W10); \
367
1.43M
                T1 = SPH_T32(F + BSG2_1(C) + CH(C, D, E) \
368
1.43M
                        + SPH_C32(0xB00327C8) + W10); \
369
1.43M
                T2 = SPH_T32(BSG2_0(G) + MAJ(G, H, A)); \
370
1.43M
                B = SPH_T32(B + T1); \
371
1.43M
                F = SPH_T32(T1 + T2); \
372
1.43M
                W11 = SPH_T32(SSG2_1(W09) + W04 + SSG2_0(W12) + W11); \
373
1.43M
                T1 = SPH_T32(E + BSG2_1(B) + CH(B, C, D) \
374
1.43M
                        + SPH_C32(0xBF597FC7) + W11); \
375
1.43M
                T2 = SPH_T32(BSG2_0(F) + MAJ(F, G, H)); \
376
1.43M
                A = SPH_T32(A + T1); \
377
1.43M
                E = SPH_T32(T1 + T2); \
378
1.43M
                W12 = SPH_T32(SSG2_1(W10) + W05 + SSG2_0(W13) + W12); \
379
1.43M
                T1 = SPH_T32(D + BSG2_1(A) + CH(A, B, C) \
380
1.43M
                        + SPH_C32(0xC6E00BF3) + W12); \
381
1.43M
                T2 = SPH_T32(BSG2_0(E) + MAJ(E, F, G)); \
382
1.43M
                H = SPH_T32(H + T1); \
383
1.43M
                D = SPH_T32(T1 + T2); \
384
1.43M
                W13 = SPH_T32(SSG2_1(W11) + W06 + SSG2_0(W14) + W13); \
385
1.43M
                T1 = SPH_T32(C + BSG2_1(H) + CH(H, A, B) \
386
1.43M
                        + SPH_C32(0xD5A79147) + W13); \
387
1.43M
                T2 = SPH_T32(BSG2_0(D) + MAJ(D, E, F)); \
388
1.43M
                G = SPH_T32(G + T1); \
389
1.43M
                C = SPH_T32(T1 + T2); \
390
1.43M
                W14 = SPH_T32(SSG2_1(W12) + W07 + SSG2_0(W15) + W14); \
391
1.43M
                T1 = SPH_T32(B + BSG2_1(G) + CH(G, H, A) \
392
1.43M
                        + SPH_C32(0x06CA6351) + W14); \
393
1.43M
                T2 = SPH_T32(BSG2_0(C) + MAJ(C, D, E)); \
394
1.43M
                F = SPH_T32(F + T1); \
395
1.43M
                B = SPH_T32(T1 + T2); \
396
1.43M
                W15 = SPH_T32(SSG2_1(W13) + W08 + SSG2_0(W00) + W15); \
397
1.43M
                T1 = SPH_T32(A + BSG2_1(F) + CH(F, G, H) \
398
1.43M
                        + SPH_C32(0x14292967) + W15); \
399
1.43M
                T2 = SPH_T32(BSG2_0(B) + MAJ(B, C, D)); \
400
1.43M
                E = SPH_T32(E + T1); \
401
1.43M
                A = SPH_T32(T1 + T2); \
402
1.43M
                W00 = SPH_T32(SSG2_1(W14) + W09 + SSG2_0(W01) + W00); \
403
1.43M
                T1 = SPH_T32(H + BSG2_1(E) + CH(E, F, G) \
404
1.43M
                        + SPH_C32(0x27B70A85) + W00); \
405
1.43M
                T2 = SPH_T32(BSG2_0(A) + MAJ(A, B, C)); \
406
1.43M
                D = SPH_T32(D + T1); \
407
1.43M
                H = SPH_T32(T1 + T2); \
408
1.43M
                W01 = SPH_T32(SSG2_1(W15) + W10 + SSG2_0(W02) + W01); \
409
1.43M
                T1 = SPH_T32(G + BSG2_1(D) + CH(D, E, F) \
410
1.43M
                        + SPH_C32(0x2E1B2138) + W01); \
411
1.43M
                T2 = SPH_T32(BSG2_0(H) + MAJ(H, A, B)); \
412
1.43M
                C = SPH_T32(C + T1); \
413
1.43M
                G = SPH_T32(T1 + T2); \
414
1.43M
                W02 = SPH_T32(SSG2_1(W00) + W11 + SSG2_0(W03) + W02); \
415
1.43M
                T1 = SPH_T32(F + BSG2_1(C) + CH(C, D, E) \
416
1.43M
                        + SPH_C32(0x4D2C6DFC) + W02); \
417
1.43M
                T2 = SPH_T32(BSG2_0(G) + MAJ(G, H, A)); \
418
1.43M
                B = SPH_T32(B + T1); \
419
1.43M
                F = SPH_T32(T1 + T2); \
420
1.43M
                W03 = SPH_T32(SSG2_1(W01) + W12 + SSG2_0(W04) + W03); \
421
1.43M
                T1 = SPH_T32(E + BSG2_1(B) + CH(B, C, D) \
422
1.43M
                        + SPH_C32(0x53380D13) + W03); \
423
1.43M
                T2 = SPH_T32(BSG2_0(F) + MAJ(F, G, H)); \
424
1.43M
                A = SPH_T32(A + T1); \
425
1.43M
                E = SPH_T32(T1 + T2); \
426
1.43M
                W04 = SPH_T32(SSG2_1(W02) + W13 + SSG2_0(W05) + W04); \
427
1.43M
                T1 = SPH_T32(D + BSG2_1(A) + CH(A, B, C) \
428
1.43M
                        + SPH_C32(0x650A7354) + W04); \
429
1.43M
                T2 = SPH_T32(BSG2_0(E) + MAJ(E, F, G)); \
430
1.43M
                H = SPH_T32(H + T1); \
431
1.43M
                D = SPH_T32(T1 + T2); \
432
1.43M
                W05 = SPH_T32(SSG2_1(W03) + W14 + SSG2_0(W06) + W05); \
433
1.43M
                T1 = SPH_T32(C + BSG2_1(H) + CH(H, A, B) \
434
1.43M
                        + SPH_C32(0x766A0ABB) + W05); \
435
1.43M
                T2 = SPH_T32(BSG2_0(D) + MAJ(D, E, F)); \
436
1.43M
                G = SPH_T32(G + T1); \
437
1.43M
                C = SPH_T32(T1 + T2); \
438
1.43M
                W06 = SPH_T32(SSG2_1(W04) + W15 + SSG2_0(W07) + W06); \
439
1.43M
                T1 = SPH_T32(B + BSG2_1(G) + CH(G, H, A) \
440
1.43M
                        + SPH_C32(0x81C2C92E) + W06); \
441
1.43M
                T2 = SPH_T32(BSG2_0(C) + MAJ(C, D, E)); \
442
1.43M
                F = SPH_T32(F + T1); \
443
1.43M
                B = SPH_T32(T1 + T2); \
444
1.43M
                W07 = SPH_T32(SSG2_1(W05) + W00 + SSG2_0(W08) + W07); \
445
1.43M
                T1 = SPH_T32(A + BSG2_1(F) + CH(F, G, H) \
446
1.43M
                        + SPH_C32(0x92722C85) + W07); \
447
1.43M
                T2 = SPH_T32(BSG2_0(B) + MAJ(B, C, D)); \
448
1.43M
                E = SPH_T32(E + T1); \
449
1.43M
                A = SPH_T32(T1 + T2); \
450
1.43M
                W08 = SPH_T32(SSG2_1(W06) + W01 + SSG2_0(W09) + W08); \
451
1.43M
                T1 = SPH_T32(H + BSG2_1(E) + CH(E, F, G) \
452
1.43M
                        + SPH_C32(0xA2BFE8A1) + W08); \
453
1.43M
                T2 = SPH_T32(BSG2_0(A) + MAJ(A, B, C)); \
454
1.43M
                D = SPH_T32(D + T1); \
455
1.43M
                H = SPH_T32(T1 + T2); \
456
1.43M
                W09 = SPH_T32(SSG2_1(W07) + W02 + SSG2_0(W10) + W09); \
457
1.43M
                T1 = SPH_T32(G + BSG2_1(D) + CH(D, E, F) \
458
1.43M
                        + SPH_C32(0xA81A664B) + W09); \
459
1.43M
                T2 = SPH_T32(BSG2_0(H) + MAJ(H, A, B)); \
460
1.43M
                C = SPH_T32(C + T1); \
461
1.43M
                G = SPH_T32(T1 + T2); \
462
1.43M
                W10 = SPH_T32(SSG2_1(W08) + W03 + SSG2_0(W11) + W10); \
463
1.43M
                T1 = SPH_T32(F + BSG2_1(C) + CH(C, D, E) \
464
1.43M
                        + SPH_C32(0xC24B8B70) + W10); \
465
1.43M
                T2 = SPH_T32(BSG2_0(G) + MAJ(G, H, A)); \
466
1.43M
                B = SPH_T32(B + T1); \
467
1.43M
                F = SPH_T32(T1 + T2); \
468
1.43M
                W11 = SPH_T32(SSG2_1(W09) + W04 + SSG2_0(W12) + W11); \
469
1.43M
                T1 = SPH_T32(E + BSG2_1(B) + CH(B, C, D) \
470
1.43M
                        + SPH_C32(0xC76C51A3) + W11); \
471
1.43M
                T2 = SPH_T32(BSG2_0(F) + MAJ(F, G, H)); \
472
1.43M
                A = SPH_T32(A + T1); \
473
1.43M
                E = SPH_T32(T1 + T2); \
474
1.43M
                W12 = SPH_T32(SSG2_1(W10) + W05 + SSG2_0(W13) + W12); \
475
1.43M
                T1 = SPH_T32(D + BSG2_1(A) + CH(A, B, C) \
476
1.43M
                        + SPH_C32(0xD192E819) + W12); \
477
1.43M
                T2 = SPH_T32(BSG2_0(E) + MAJ(E, F, G)); \
478
1.43M
                H = SPH_T32(H + T1); \
479
1.43M
                D = SPH_T32(T1 + T2); \
480
1.43M
                W13 = SPH_T32(SSG2_1(W11) + W06 + SSG2_0(W14) + W13); \
481
1.43M
                T1 = SPH_T32(C + BSG2_1(H) + CH(H, A, B) \
482
1.43M
                        + SPH_C32(0xD6990624) + W13); \
483
1.43M
                T2 = SPH_T32(BSG2_0(D) + MAJ(D, E, F)); \
484
1.43M
                G = SPH_T32(G + T1); \
485
1.43M
                C = SPH_T32(T1 + T2); \
486
1.43M
                W14 = SPH_T32(SSG2_1(W12) + W07 + SSG2_0(W15) + W14); \
487
1.43M
                T1 = SPH_T32(B + BSG2_1(G) + CH(G, H, A) \
488
1.43M
                        + SPH_C32(0xF40E3585) + W14); \
489
1.43M
                T2 = SPH_T32(BSG2_0(C) + MAJ(C, D, E)); \
490
1.43M
                F = SPH_T32(F + T1); \
491
1.43M
                B = SPH_T32(T1 + T2); \
492
1.43M
                W15 = SPH_T32(SSG2_1(W13) + W08 + SSG2_0(W00) + W15); \
493
1.43M
                T1 = SPH_T32(A + BSG2_1(F) + CH(F, G, H) \
494
1.43M
                        + SPH_C32(0x106AA070) + W15); \
495
1.43M
                T2 = SPH_T32(BSG2_0(B) + MAJ(B, C, D)); \
496
1.43M
                E = SPH_T32(E + T1); \
497
1.43M
                A = SPH_T32(T1 + T2); \
498
1.43M
                W00 = SPH_T32(SSG2_1(W14) + W09 + SSG2_0(W01) + W00); \
499
1.43M
                T1 = SPH_T32(H + BSG2_1(E) + CH(E, F, G) \
500
1.43M
                        + SPH_C32(0x19A4C116) + W00); \
501
1.43M
                T2 = SPH_T32(BSG2_0(A) + MAJ(A, B, C)); \
502
1.43M
                D = SPH_T32(D + T1); \
503
1.43M
                H = SPH_T32(T1 + T2); \
504
1.43M
                W01 = SPH_T32(SSG2_1(W15) + W10 + SSG2_0(W02) + W01); \
505
1.43M
                T1 = SPH_T32(G + BSG2_1(D) + CH(D, E, F) \
506
1.43M
                        + SPH_C32(0x1E376C08) + W01); \
507
1.43M
                T2 = SPH_T32(BSG2_0(H) + MAJ(H, A, B)); \
508
1.43M
                C = SPH_T32(C + T1); \
509
1.43M
                G = SPH_T32(T1 + T2); \
510
1.43M
                W02 = SPH_T32(SSG2_1(W00) + W11 + SSG2_0(W03) + W02); \
511
1.43M
                T1 = SPH_T32(F + BSG2_1(C) + CH(C, D, E) \
512
1.43M
                        + SPH_C32(0x2748774C) + W02); \
513
1.43M
                T2 = SPH_T32(BSG2_0(G) + MAJ(G, H, A)); \
514
1.43M
                B = SPH_T32(B + T1); \
515
1.43M
                F = SPH_T32(T1 + T2); \
516
1.43M
                W03 = SPH_T32(SSG2_1(W01) + W12 + SSG2_0(W04) + W03); \
517
1.43M
                T1 = SPH_T32(E + BSG2_1(B) + CH(B, C, D) \
518
1.43M
                        + SPH_C32(0x34B0BCB5) + W03); \
519
1.43M
                T2 = SPH_T32(BSG2_0(F) + MAJ(F, G, H)); \
520
1.43M
                A = SPH_T32(A + T1); \
521
1.43M
                E = SPH_T32(T1 + T2); \
522
1.43M
                W04 = SPH_T32(SSG2_1(W02) + W13 + SSG2_0(W05) + W04); \
523
1.43M
                T1 = SPH_T32(D + BSG2_1(A) + CH(A, B, C) \
524
1.43M
                        + SPH_C32(0x391C0CB3) + W04); \
525
1.43M
                T2 = SPH_T32(BSG2_0(E) + MAJ(E, F, G)); \
526
1.43M
                H = SPH_T32(H + T1); \
527
1.43M
                D = SPH_T32(T1 + T2); \
528
1.43M
                W05 = SPH_T32(SSG2_1(W03) + W14 + SSG2_0(W06) + W05); \
529
1.43M
                T1 = SPH_T32(C + BSG2_1(H) + CH(H, A, B) \
530
1.43M
                        + SPH_C32(0x4ED8AA4A) + W05); \
531
1.43M
                T2 = SPH_T32(BSG2_0(D) + MAJ(D, E, F)); \
532
1.43M
                G = SPH_T32(G + T1); \
533
1.43M
                C = SPH_T32(T1 + T2); \
534
1.43M
                W06 = SPH_T32(SSG2_1(W04) + W15 + SSG2_0(W07) + W06); \
535
1.43M
                T1 = SPH_T32(B + BSG2_1(G) + CH(G, H, A) \
536
1.43M
                        + SPH_C32(0x5B9CCA4F) + W06); \
537
1.43M
                T2 = SPH_T32(BSG2_0(C) + MAJ(C, D, E)); \
538
1.43M
                F = SPH_T32(F + T1); \
539
1.43M
                B = SPH_T32(T1 + T2); \
540
1.43M
                W07 = SPH_T32(SSG2_1(W05) + W00 + SSG2_0(W08) + W07); \
541
1.43M
                T1 = SPH_T32(A + BSG2_1(F) + CH(F, G, H) \
542
1.43M
                        + SPH_C32(0x682E6FF3) + W07); \
543
1.43M
                T2 = SPH_T32(BSG2_0(B) + MAJ(B, C, D)); \
544
1.43M
                E = SPH_T32(E + T1); \
545
1.43M
                A = SPH_T32(T1 + T2); \
546
1.43M
                W08 = SPH_T32(SSG2_1(W06) + W01 + SSG2_0(W09) + W08); \
547
1.43M
                T1 = SPH_T32(H + BSG2_1(E) + CH(E, F, G) \
548
1.43M
                        + SPH_C32(0x748F82EE) + W08); \
549
1.43M
                T2 = SPH_T32(BSG2_0(A) + MAJ(A, B, C)); \
550
1.43M
                D = SPH_T32(D + T1); \
551
1.43M
                H = SPH_T32(T1 + T2); \
552
1.43M
                W09 = SPH_T32(SSG2_1(W07) + W02 + SSG2_0(W10) + W09); \
553
1.43M
                T1 = SPH_T32(G + BSG2_1(D) + CH(D, E, F) \
554
1.43M
                        + SPH_C32(0x78A5636F) + W09); \
555
1.43M
                T2 = SPH_T32(BSG2_0(H) + MAJ(H, A, B)); \
556
1.43M
                C = SPH_T32(C + T1); \
557
1.43M
                G = SPH_T32(T1 + T2); \
558
1.43M
                W10 = SPH_T32(SSG2_1(W08) + W03 + SSG2_0(W11) + W10); \
559
1.43M
                T1 = SPH_T32(F + BSG2_1(C) + CH(C, D, E) \
560
1.43M
                        + SPH_C32(0x84C87814) + W10); \
561
1.43M
                T2 = SPH_T32(BSG2_0(G) + MAJ(G, H, A)); \
562
1.43M
                B = SPH_T32(B + T1); \
563
1.43M
                F = SPH_T32(T1 + T2); \
564
1.43M
                W11 = SPH_T32(SSG2_1(W09) + W04 + SSG2_0(W12) + W11); \
565
1.43M
                T1 = SPH_T32(E + BSG2_1(B) + CH(B, C, D) \
566
1.43M
                        + SPH_C32(0x8CC70208) + W11); \
567
1.43M
                T2 = SPH_T32(BSG2_0(F) + MAJ(F, G, H)); \
568
1.43M
                A = SPH_T32(A + T1); \
569
1.43M
                E = SPH_T32(T1 + T2); \
570
1.43M
                W12 = SPH_T32(SSG2_1(W10) + W05 + SSG2_0(W13) + W12); \
571
1.43M
                T1 = SPH_T32(D + BSG2_1(A) + CH(A, B, C) \
572
1.43M
                        + SPH_C32(0x90BEFFFA) + W12); \
573
1.43M
                T2 = SPH_T32(BSG2_0(E) + MAJ(E, F, G)); \
574
1.43M
                H = SPH_T32(H + T1); \
575
1.43M
                D = SPH_T32(T1 + T2); \
576
1.43M
                W13 = SPH_T32(SSG2_1(W11) + W06 + SSG2_0(W14) + W13); \
577
1.43M
                T1 = SPH_T32(C + BSG2_1(H) + CH(H, A, B) \
578
1.43M
                        + SPH_C32(0xA4506CEB) + W13); \
579
1.43M
                T2 = SPH_T32(BSG2_0(D) + MAJ(D, E, F)); \
580
1.43M
                G = SPH_T32(G + T1); \
581
1.43M
                C = SPH_T32(T1 + T2); \
582
1.43M
                W14 = SPH_T32(SSG2_1(W12) + W07 + SSG2_0(W15) + W14); \
583
1.43M
                T1 = SPH_T32(B + BSG2_1(G) + CH(G, H, A) \
584
1.43M
                        + SPH_C32(0xBEF9A3F7) + W14); \
585
1.43M
                T2 = SPH_T32(BSG2_0(C) + MAJ(C, D, E)); \
586
1.43M
                F = SPH_T32(F + T1); \
587
1.43M
                B = SPH_T32(T1 + T2); \
588
1.43M
                W15 = SPH_T32(SSG2_1(W13) + W08 + SSG2_0(W00) + W15); \
589
1.43M
                T1 = SPH_T32(A + BSG2_1(F) + CH(F, G, H) \
590
1.43M
                        + SPH_C32(0xC67178F2) + W15); \
591
1.43M
                T2 = SPH_T32(BSG2_0(B) + MAJ(B, C, D)); \
592
1.43M
                E = SPH_T32(E + T1); \
593
1.43M
                A = SPH_T32(T1 + T2); \
594
1.43M
                (r)[0] = SPH_T32((r)[0] + A); \
595
1.43M
                (r)[1] = SPH_T32((r)[1] + B); \
596
1.43M
                (r)[2] = SPH_T32((r)[2] + C); \
597
1.43M
                (r)[3] = SPH_T32((r)[3] + D); \
598
1.43M
                (r)[4] = SPH_T32((r)[4] + E); \
599
1.43M
                (r)[5] = SPH_T32((r)[5] + F); \
600
1.43M
                (r)[6] = SPH_T32((r)[6] + G); \
601
1.43M
                (r)[7] = SPH_T32((r)[7] + H); \
602
1.43M
        } while (0)
603
604
#endif
605
606
/*
607
 * One round of SHA-224 / SHA-256. The data must be aligned for 32-bit access.
608
 */
609
static void
610
sha2_round(const unsigned char *data, sph_u32 r[8])
611
1.43M
{
612
22.9M
#define SHA2_IN(x)   sph_dec32be_aligned(data + (4 * (x)))
613
22.9M
        SHA2_ROUND_BODY(SHA2_IN, r);
614
1.43M
#undef SHA2_IN
615
1.43M
}
616
617
/* see sph_sha2.h */
618
void
619
sph_sha224_init(void *cc)
620
0
{
621
0
        sph_sha224_context *sc;
622
623
0
        sc = cc;
624
0
        memcpy(sc->val, H224, sizeof H224);
625
0
#if SPH_64
626
0
        sc->count = 0;
627
#else
628
        sc->count_high = sc->count_low = 0;
629
#endif
630
0
}
631
632
/* see sph_sha2.h */
633
void
634
sph_sha256_init(void *cc)
635
42.9k
{
636
42.9k
        sph_sha256_context *sc;
637
638
42.9k
        sc = cc;
639
42.9k
        memcpy(sc->val, H256, sizeof H256);
640
42.9k
#if SPH_64
641
42.9k
        sc->count = 0;
642
#else
643
        sc->count_high = sc->count_low = 0;
644
#endif
645
42.9k
}
646
647
1.43M
#define RFUN   sha2_round
648
#define HASH   sha224
649
#define BE32   1
650
#include "sph/md_helper.c"
651
652
/* see sph_sha2.h */
653
void
654
sph_sha224_close(void *cc, void *dst)
655
0
{
656
0
        sha224_close(cc, dst, 7);
657
0
        sph_sha224_init(cc);
658
0
}
659
660
/* see sph_sha2.h */
661
void
662
sph_sha224_addbits_and_close(void *cc, unsigned ub, unsigned n, void *dst)
663
0
{
664
0
        sha224_addbits_and_close(cc, ub, n, dst, 7);
665
0
        sph_sha224_init(cc);
666
0
}
667
668
/* see sph_sha2.h */
669
void
670
sph_sha256_close(void *cc, void *dst)
671
21.4k
{
672
21.4k
        sha224_close(cc, dst, 8);
673
21.4k
        sph_sha256_init(cc);
674
21.4k
}
675
676
/* see sph_sha2.h */
677
void
678
sph_sha256_addbits_and_close(void *cc, unsigned ub, unsigned n, void *dst)
679
0
{
680
0
        sha224_addbits_and_close(cc, ub, n, dst, 8);
681
0
        sph_sha256_init(cc);
682
0
}
683
684
/* see sph_sha2.h */
685
void
686
sph_sha224_comp(const sph_u32 msg[16], sph_u32 val[8])
687
0
{
688
0
#define SHA2_IN(x)   msg[x]
689
0
        SHA2_ROUND_BODY(SHA2_IN, val);
690
0
#undef SHA2_IN
691
0
}