diff options
Diffstat (limited to 'src/lib/libc')
| -rw-r--r-- | src/lib/libc/crypt/arc4random.c | 204 | ||||
| -rw-r--r-- | src/lib/libc/crypt/chacha_private.h | 220 |
2 files changed, 326 insertions, 98 deletions
diff --git a/src/lib/libc/crypt/arc4random.c b/src/lib/libc/crypt/arc4random.c index f00f5ee9f1..356e231815 100644 --- a/src/lib/libc/crypt/arc4random.c +++ b/src/lib/libc/crypt/arc4random.c | |||
| @@ -1,8 +1,9 @@ | |||
| 1 | /* $OpenBSD: arc4random.c,v 1.24 2013/06/11 16:59:50 deraadt Exp $ */ | 1 | /* $OpenBSD: arc4random.c,v 1.25 2013/10/01 18:34:57 markus Exp $ */ |
| 2 | 2 | ||
| 3 | /* | 3 | /* |
| 4 | * Copyright (c) 1996, David Mazieres <dm@uun.org> | 4 | * Copyright (c) 1996, David Mazieres <dm@uun.org> |
| 5 | * Copyright (c) 2008, Damien Miller <djm@openbsd.org> | 5 | * Copyright (c) 2008, Damien Miller <djm@openbsd.org> |
| 6 | * Copyright (c) 2013, Markus Friedl <markus@openbsd.org> | ||
| 6 | * | 7 | * |
| 7 | * Permission to use, copy, modify, and distribute this software for any | 8 | * Permission to use, copy, modify, and distribute this software for any |
| 8 | * purpose with or without fee is hereby granted, provided that the above | 9 | * purpose with or without fee is hereby granted, provided that the above |
| @@ -18,20 +19,13 @@ | |||
| 18 | */ | 19 | */ |
| 19 | 20 | ||
| 20 | /* | 21 | /* |
| 21 | * Arc4 random number generator for OpenBSD. | 22 | * ChaCha based random number generator for OpenBSD. |
| 22 | * | ||
| 23 | * This code is derived from section 17.1 of Applied Cryptography, | ||
| 24 | * second edition, which describes a stream cipher allegedly | ||
| 25 | * compatible with RSA Labs "RC4" cipher (the actual description of | ||
| 26 | * which is a trade secret). The same algorithm is used as a stream | ||
| 27 | * cipher called "arcfour" in Tatu Ylonen's ssh package. | ||
| 28 | * | ||
| 29 | * RC4 is a registered trademark of RSA Laboratories. | ||
| 30 | */ | 23 | */ |
| 31 | 24 | ||
| 32 | #include <fcntl.h> | 25 | #include <fcntl.h> |
| 33 | #include <limits.h> | 26 | #include <limits.h> |
| 34 | #include <stdlib.h> | 27 | #include <stdlib.h> |
| 28 | #include <string.h> | ||
| 35 | #include <unistd.h> | 29 | #include <unistd.h> |
| 36 | #include <sys/types.h> | 30 | #include <sys/types.h> |
| 37 | #include <sys/param.h> | 31 | #include <sys/param.h> |
| @@ -39,64 +33,43 @@ | |||
| 39 | #include <sys/sysctl.h> | 33 | #include <sys/sysctl.h> |
| 40 | #include "thread_private.h" | 34 | #include "thread_private.h" |
| 41 | 35 | ||
| 36 | #define KEYSTREAM_ONLY | ||
| 37 | #include "chacha_private.h" | ||
| 38 | |||
| 42 | #ifdef __GNUC__ | 39 | #ifdef __GNUC__ |
| 43 | #define inline __inline | 40 | #define inline __inline |
| 44 | #else /* !__GNUC__ */ | 41 | #else /* !__GNUC__ */ |
| 45 | #define inline | 42 | #define inline |
| 46 | #endif /* !__GNUC__ */ | 43 | #endif /* !__GNUC__ */ |
| 47 | 44 | ||
| 48 | struct arc4_stream { | 45 | #define KEYSZ 32 |
| 49 | u_int8_t i; | 46 | #define IVSZ 8 |
| 50 | u_int8_t j; | 47 | #define BLOCKSZ 64 |
| 51 | u_int8_t s[256]; | 48 | #define RSBUFSZ (16*BLOCKSZ) |
| 52 | }; | ||
| 53 | |||
| 54 | static int rs_initialized; | 49 | static int rs_initialized; |
| 55 | static struct arc4_stream rs; | 50 | static pid_t rs_stir_pid; |
| 56 | static pid_t arc4_stir_pid; | 51 | static chacha_ctx rs; /* chacha context for random keystream */ |
| 57 | static int arc4_count; | 52 | static u_char rs_buf[RSBUFSZ]; /* keystream blocks */ |
| 58 | 53 | static size_t rs_have; /* valid bytes at end of rs_buf */ | |
| 59 | static inline u_int8_t arc4_getbyte(void); | 54 | static size_t rs_count; /* bytes till reseed */ |
| 60 | 55 | ||
| 61 | static inline void | 56 | static inline void _rs_rekey(u_char *dat, size_t datlen); |
| 62 | arc4_init(void) | ||
| 63 | { | ||
| 64 | int n; | ||
| 65 | |||
| 66 | for (n = 0; n < 256; n++) | ||
| 67 | rs.s[n] = n; | ||
| 68 | rs.i = 0; | ||
| 69 | rs.j = 0; | ||
| 70 | } | ||
| 71 | 57 | ||
| 72 | static inline void | 58 | static inline void |
| 73 | arc4_addrandom(u_char *dat, int datlen) | 59 | _rs_init(u_char *buf, size_t n) |
| 74 | { | 60 | { |
| 75 | int n; | 61 | if (n < KEYSZ + IVSZ) |
| 76 | u_int8_t si; | 62 | return; |
| 77 | 63 | chacha_keysetup(&rs, buf, KEYSZ * 8, 0); | |
| 78 | rs.i--; | 64 | chacha_ivsetup(&rs, buf + KEYSZ); |
| 79 | for (n = 0; n < 256; n++) { | ||
| 80 | rs.i = (rs.i + 1); | ||
| 81 | si = rs.s[rs.i]; | ||
| 82 | rs.j = (rs.j + si + dat[n % datlen]); | ||
| 83 | rs.s[rs.i] = rs.s[rs.j]; | ||
| 84 | rs.s[rs.j] = si; | ||
| 85 | } | ||
| 86 | rs.j = rs.i; | ||
| 87 | } | 65 | } |
| 88 | 66 | ||
| 89 | static void | 67 | static void |
| 90 | arc4_stir(void) | 68 | _rs_stir(void) |
| 91 | { | 69 | { |
| 92 | int i, mib[2]; | 70 | int mib[2]; |
| 93 | size_t len; | 71 | size_t len; |
| 94 | u_char rnd[128]; | 72 | u_char rnd[KEYSZ + IVSZ]; |
| 95 | |||
| 96 | if (!rs_initialized) { | ||
| 97 | arc4_init(); | ||
| 98 | rs_initialized = 1; | ||
| 99 | } | ||
| 100 | 73 | ||
| 101 | mib[0] = CTL_KERN; | 74 | mib[0] = CTL_KERN; |
| 102 | mib[1] = KERN_ARND; | 75 | mib[1] = KERN_ARND; |
| @@ -104,68 +77,109 @@ arc4_stir(void) | |||
| 104 | len = sizeof(rnd); | 77 | len = sizeof(rnd); |
| 105 | sysctl(mib, 2, rnd, &len, NULL, 0); | 78 | sysctl(mib, 2, rnd, &len, NULL, 0); |
| 106 | 79 | ||
| 107 | arc4_addrandom(rnd, sizeof(rnd)); | 80 | if (!rs_initialized) { |
| 81 | rs_initialized = 1; | ||
| 82 | _rs_init(rnd, sizeof(rnd)); | ||
| 83 | } else | ||
| 84 | _rs_rekey(rnd, sizeof(rnd)); | ||
| 85 | memset(rnd, 0, sizeof(rnd)); | ||
| 108 | 86 | ||
| 109 | /* | 87 | /* invalidate rs_buf */ |
| 110 | * Discard early keystream, as per recommendations in: | 88 | rs_have = 0; |
| 111 | * http://www.wisdom.weizmann.ac.il/~itsik/RC4/Papers/Rc4_ksa.ps | 89 | memset(rs_buf, 0, RSBUFSZ); |
| 112 | */ | 90 | |
| 113 | for (i = 0; i < 256; i++) | 91 | rs_count = 1600000; |
| 114 | (void)arc4_getbyte(); | ||
| 115 | arc4_count = 1600000; | ||
| 116 | } | 92 | } |
| 117 | 93 | ||
| 118 | static void | 94 | static inline void |
| 119 | arc4_stir_if_needed(void) | 95 | _rs_stir_if_needed(size_t len) |
| 120 | { | 96 | { |
| 121 | pid_t pid = getpid(); | 97 | pid_t pid = getpid(); |
| 122 | 98 | ||
| 123 | if (arc4_count <= 0 || !rs_initialized || arc4_stir_pid != pid) { | 99 | if (rs_count <= len || !rs_initialized || rs_stir_pid != pid) { |
| 124 | arc4_stir_pid = pid; | 100 | rs_stir_pid = pid; |
| 125 | arc4_stir(); | 101 | _rs_stir(); |
| 102 | } else | ||
| 103 | rs_count -= len; | ||
| 104 | } | ||
| 105 | |||
| 106 | static inline void | ||
| 107 | _rs_rekey(u_char *dat, size_t datlen) | ||
| 108 | { | ||
| 109 | #ifndef KEYSTREAM_ONLY | ||
| 110 | memset(rs_buf, 0,RSBUFSZ); | ||
| 111 | #endif | ||
| 112 | /* fill rs_buf with the keystream */ | ||
| 113 | chacha_encrypt_bytes(&rs, rs_buf, rs_buf, RSBUFSZ); | ||
| 114 | /* mix in optional user provided data */ | ||
| 115 | if (dat) { | ||
| 116 | size_t i, m; | ||
| 117 | |||
| 118 | m = MIN(datlen, KEYSZ + IVSZ); | ||
| 119 | for (i = 0; i < m; i++) | ||
| 120 | rs_buf[i] ^= dat[i]; | ||
| 126 | } | 121 | } |
| 122 | /* immediately reinit for backtracking resistance */ | ||
| 123 | _rs_init(rs_buf, KEYSZ + IVSZ); | ||
| 124 | memset(rs_buf, 0, KEYSZ + IVSZ); | ||
| 125 | rs_have = RSBUFSZ - KEYSZ - IVSZ; | ||
| 127 | } | 126 | } |
| 128 | 127 | ||
| 129 | static inline u_int8_t | 128 | static inline void |
| 130 | arc4_getbyte(void) | 129 | _rs_random_buf(void *_buf, size_t n) |
| 131 | { | 130 | { |
| 132 | u_int8_t si, sj; | 131 | u_char *buf = (u_char *)_buf; |
| 133 | 132 | size_t m; | |
| 134 | rs.i = (rs.i + 1); | 133 | |
| 135 | si = rs.s[rs.i]; | 134 | _rs_stir_if_needed(n); |
| 136 | rs.j = (rs.j + si); | 135 | while (n > 0) { |
| 137 | sj = rs.s[rs.j]; | 136 | if (rs_have > 0) { |
| 138 | rs.s[rs.i] = sj; | 137 | m = MIN(n, rs_have); |
| 139 | rs.s[rs.j] = si; | 138 | memcpy(buf, rs_buf + RSBUFSZ - rs_have, m); |
| 140 | return (rs.s[(si + sj) & 0xff]); | 139 | memset(rs_buf + RSBUFSZ - rs_have, 0, m); |
| 140 | buf += m; | ||
| 141 | n -= m; | ||
| 142 | rs_have -= m; | ||
| 143 | } | ||
| 144 | if (rs_have == 0) | ||
| 145 | _rs_rekey(NULL, 0); | ||
| 146 | } | ||
| 141 | } | 147 | } |
| 142 | 148 | ||
| 143 | static inline u_int32_t | 149 | static inline void |
| 144 | arc4_getword(void) | 150 | _rs_random_u32(u_int32_t *val) |
| 145 | { | 151 | { |
| 146 | u_int32_t val; | 152 | _rs_stir_if_needed(sizeof(*val)); |
| 147 | val = arc4_getbyte() << 24; | 153 | if (rs_have < sizeof(*val)) |
| 148 | val |= arc4_getbyte() << 16; | 154 | _rs_rekey(NULL, 0); |
| 149 | val |= arc4_getbyte() << 8; | 155 | memcpy(val, rs_buf + RSBUFSZ - rs_have, sizeof(*val)); |
| 150 | val |= arc4_getbyte(); | 156 | memset(rs_buf + RSBUFSZ - rs_have, 0, sizeof(*val)); |
| 151 | return val; | 157 | rs_have -= sizeof(*val); |
| 158 | return; | ||
| 152 | } | 159 | } |
| 153 | 160 | ||
| 154 | void | 161 | void |
| 155 | arc4random_stir(void) | 162 | arc4random_stir(void) |
| 156 | { | 163 | { |
| 157 | _ARC4_LOCK(); | 164 | _ARC4_LOCK(); |
| 158 | arc4_stir(); | 165 | _rs_stir(); |
| 159 | _ARC4_UNLOCK(); | 166 | _ARC4_UNLOCK(); |
| 160 | } | 167 | } |
| 161 | 168 | ||
| 162 | void | 169 | void |
| 163 | arc4random_addrandom(u_char *dat, int datlen) | 170 | arc4random_addrandom(u_char *dat, int datlen) |
| 164 | { | 171 | { |
| 172 | int m; | ||
| 173 | |||
| 165 | _ARC4_LOCK(); | 174 | _ARC4_LOCK(); |
| 166 | if (!rs_initialized) | 175 | if (!rs_initialized) |
| 167 | arc4_stir(); | 176 | _rs_stir(); |
| 168 | arc4_addrandom(dat, datlen); | 177 | while (datlen > 0) { |
| 178 | m = MIN(datlen, KEYSZ + IVSZ); | ||
| 179 | _rs_rekey(dat, m); | ||
| 180 | dat += m; | ||
| 181 | datlen -= m; | ||
| 182 | } | ||
| 169 | _ARC4_UNLOCK(); | 183 | _ARC4_UNLOCK(); |
| 170 | } | 184 | } |
| 171 | 185 | ||
| @@ -173,25 +187,18 @@ u_int32_t | |||
| 173 | arc4random(void) | 187 | arc4random(void) |
| 174 | { | 188 | { |
| 175 | u_int32_t val; | 189 | u_int32_t val; |
| 190 | |||
| 176 | _ARC4_LOCK(); | 191 | _ARC4_LOCK(); |
| 177 | arc4_count -= 4; | 192 | _rs_random_u32(&val); |
| 178 | arc4_stir_if_needed(); | ||
| 179 | val = arc4_getword(); | ||
| 180 | _ARC4_UNLOCK(); | 193 | _ARC4_UNLOCK(); |
| 181 | return val; | 194 | return val; |
| 182 | } | 195 | } |
| 183 | 196 | ||
| 184 | void | 197 | void |
| 185 | arc4random_buf(void *_buf, size_t n) | 198 | arc4random_buf(void *buf, size_t n) |
| 186 | { | 199 | { |
| 187 | u_char *buf = (u_char *)_buf; | ||
| 188 | _ARC4_LOCK(); | 200 | _ARC4_LOCK(); |
| 189 | arc4_stir_if_needed(); | 201 | _rs_random_buf(buf, n); |
| 190 | while (n--) { | ||
| 191 | if (--arc4_count <= 0) | ||
| 192 | arc4_stir(); | ||
| 193 | buf[n] = arc4_getbyte(); | ||
| 194 | } | ||
| 195 | _ARC4_UNLOCK(); | 202 | _ARC4_UNLOCK(); |
| 196 | } | 203 | } |
| 197 | 204 | ||
| @@ -249,5 +256,6 @@ main(int argc, char **argv) | |||
| 249 | v /= iter; | 256 | v /= iter; |
| 250 | 257 | ||
| 251 | printf("%qd cycles\n", v); | 258 | printf("%qd cycles\n", v); |
| 259 | exit(0); | ||
| 252 | } | 260 | } |
| 253 | #endif | 261 | #endif |
diff --git a/src/lib/libc/crypt/chacha_private.h b/src/lib/libc/crypt/chacha_private.h new file mode 100644 index 0000000000..fa085fb6ae --- /dev/null +++ b/src/lib/libc/crypt/chacha_private.h | |||
| @@ -0,0 +1,220 @@ | |||
| 1 | /* | ||
| 2 | chacha-merged.c version 20080118 | ||
| 3 | D. J. Bernstein | ||
| 4 | Public domain. | ||
| 5 | */ | ||
| 6 | |||
| 7 | typedef unsigned char u8; | ||
| 8 | typedef unsigned int u32; | ||
| 9 | |||
| 10 | typedef struct | ||
| 11 | { | ||
| 12 | u32 input[16]; /* could be compressed */ | ||
| 13 | } chacha_ctx; | ||
| 14 | |||
| 15 | #define U8C(v) (v##U) | ||
| 16 | #define U32C(v) (v##U) | ||
| 17 | |||
| 18 | #define U8V(v) ((u8)(v) & U8C(0xFF)) | ||
| 19 | #define U32V(v) ((u32)(v) & U32C(0xFFFFFFFF)) | ||
| 20 | |||
| 21 | #define ROTL32(v, n) \ | ||
| 22 | (U32V((v) << (n)) | ((v) >> (32 - (n)))) | ||
| 23 | |||
| 24 | #define U8TO32_LITTLE(p) \ | ||
| 25 | (((u32)((p)[0]) ) | \ | ||
| 26 | ((u32)((p)[1]) << 8) | \ | ||
| 27 | ((u32)((p)[2]) << 16) | \ | ||
| 28 | ((u32)((p)[3]) << 24)) | ||
| 29 | |||
| 30 | #define U32TO8_LITTLE(p, v) \ | ||
| 31 | do { \ | ||
| 32 | (p)[0] = U8V((v) ); \ | ||
| 33 | (p)[1] = U8V((v) >> 8); \ | ||
| 34 | (p)[2] = U8V((v) >> 16); \ | ||
| 35 | (p)[3] = U8V((v) >> 24); \ | ||
| 36 | } while (0) | ||
| 37 | |||
| 38 | #define ROTATE(v,c) (ROTL32(v,c)) | ||
| 39 | #define XOR(v,w) ((v) ^ (w)) | ||
| 40 | #define PLUS(v,w) (U32V((v) + (w))) | ||
| 41 | #define PLUSONE(v) (PLUS((v),1)) | ||
| 42 | |||
| 43 | #define QUARTERROUND(a,b,c,d) \ | ||
| 44 | a = PLUS(a,b); d = ROTATE(XOR(d,a),16); \ | ||
| 45 | c = PLUS(c,d); b = ROTATE(XOR(b,c),12); \ | ||
| 46 | a = PLUS(a,b); d = ROTATE(XOR(d,a), 8); \ | ||
| 47 | c = PLUS(c,d); b = ROTATE(XOR(b,c), 7); | ||
| 48 | |||
| 49 | static const char sigma[16] = "expand 32-byte k"; | ||
| 50 | static const char tau[16] = "expand 16-byte k"; | ||
| 51 | |||
| 52 | static void | ||
| 53 | chacha_keysetup(chacha_ctx *x,const u8 *k,u32 kbits,u32 ivbits) | ||
| 54 | { | ||
| 55 | const char *constants; | ||
| 56 | |||
| 57 | x->input[4] = U8TO32_LITTLE(k + 0); | ||
| 58 | x->input[5] = U8TO32_LITTLE(k + 4); | ||
| 59 | x->input[6] = U8TO32_LITTLE(k + 8); | ||
| 60 | x->input[7] = U8TO32_LITTLE(k + 12); | ||
| 61 | if (kbits == 256) { /* recommended */ | ||
| 62 | k += 16; | ||
| 63 | constants = sigma; | ||
| 64 | } else { /* kbits == 128 */ | ||
| 65 | constants = tau; | ||
| 66 | } | ||
| 67 | x->input[8] = U8TO32_LITTLE(k + 0); | ||
| 68 | x->input[9] = U8TO32_LITTLE(k + 4); | ||
| 69 | x->input[10] = U8TO32_LITTLE(k + 8); | ||
| 70 | x->input[11] = U8TO32_LITTLE(k + 12); | ||
| 71 | x->input[0] = U8TO32_LITTLE(constants + 0); | ||
| 72 | x->input[1] = U8TO32_LITTLE(constants + 4); | ||
| 73 | x->input[2] = U8TO32_LITTLE(constants + 8); | ||
| 74 | x->input[3] = U8TO32_LITTLE(constants + 12); | ||
| 75 | } | ||
| 76 | |||
| 77 | static void | ||
| 78 | chacha_ivsetup(chacha_ctx *x,const u8 *iv) | ||
| 79 | { | ||
| 80 | x->input[12] = 0; | ||
| 81 | x->input[13] = 0; | ||
| 82 | x->input[14] = U8TO32_LITTLE(iv + 0); | ||
| 83 | x->input[15] = U8TO32_LITTLE(iv + 4); | ||
| 84 | } | ||
| 85 | |||
| 86 | static void | ||
| 87 | chacha_encrypt_bytes(chacha_ctx *x,const u8 *m,u8 *c,u32 bytes) | ||
| 88 | { | ||
| 89 | u32 x0, x1, x2, x3, x4, x5, x6, x7, x8, x9, x10, x11, x12, x13, x14, x15; | ||
| 90 | u32 j0, j1, j2, j3, j4, j5, j6, j7, j8, j9, j10, j11, j12, j13, j14, j15; | ||
| 91 | u8 *ctarget; | ||
| 92 | u8 tmp[64]; | ||
| 93 | int i; | ||
| 94 | |||
| 95 | if (!bytes) return; | ||
| 96 | |||
| 97 | j0 = x->input[0]; | ||
| 98 | j1 = x->input[1]; | ||
| 99 | j2 = x->input[2]; | ||
| 100 | j3 = x->input[3]; | ||
| 101 | j4 = x->input[4]; | ||
| 102 | j5 = x->input[5]; | ||
| 103 | j6 = x->input[6]; | ||
| 104 | j7 = x->input[7]; | ||
| 105 | j8 = x->input[8]; | ||
| 106 | j9 = x->input[9]; | ||
| 107 | j10 = x->input[10]; | ||
| 108 | j11 = x->input[11]; | ||
| 109 | j12 = x->input[12]; | ||
| 110 | j13 = x->input[13]; | ||
| 111 | j14 = x->input[14]; | ||
| 112 | j15 = x->input[15]; | ||
| 113 | |||
| 114 | for (;;) { | ||
| 115 | if (bytes < 64) { | ||
| 116 | for (i = 0;i < bytes;++i) tmp[i] = m[i]; | ||
| 117 | m = tmp; | ||
| 118 | ctarget = c; | ||
| 119 | c = tmp; | ||
| 120 | } | ||
| 121 | x0 = j0; | ||
| 122 | x1 = j1; | ||
| 123 | x2 = j2; | ||
| 124 | x3 = j3; | ||
| 125 | x4 = j4; | ||
| 126 | x5 = j5; | ||
| 127 | x6 = j6; | ||
| 128 | x7 = j7; | ||
| 129 | x8 = j8; | ||
| 130 | x9 = j9; | ||
| 131 | x10 = j10; | ||
| 132 | x11 = j11; | ||
| 133 | x12 = j12; | ||
| 134 | x13 = j13; | ||
| 135 | x14 = j14; | ||
| 136 | x15 = j15; | ||
| 137 | for (i = 20;i > 0;i -= 2) { | ||
| 138 | QUARTERROUND( x0, x4, x8,x12) | ||
| 139 | QUARTERROUND( x1, x5, x9,x13) | ||
| 140 | QUARTERROUND( x2, x6,x10,x14) | ||
| 141 | QUARTERROUND( x3, x7,x11,x15) | ||
| 142 | QUARTERROUND( x0, x5,x10,x15) | ||
| 143 | QUARTERROUND( x1, x6,x11,x12) | ||
| 144 | QUARTERROUND( x2, x7, x8,x13) | ||
| 145 | QUARTERROUND( x3, x4, x9,x14) | ||
| 146 | } | ||
| 147 | x0 = PLUS(x0,j0); | ||
| 148 | x1 = PLUS(x1,j1); | ||
| 149 | x2 = PLUS(x2,j2); | ||
| 150 | x3 = PLUS(x3,j3); | ||
| 151 | x4 = PLUS(x4,j4); | ||
| 152 | x5 = PLUS(x5,j5); | ||
| 153 | x6 = PLUS(x6,j6); | ||
| 154 | x7 = PLUS(x7,j7); | ||
| 155 | x8 = PLUS(x8,j8); | ||
| 156 | x9 = PLUS(x9,j9); | ||
| 157 | x10 = PLUS(x10,j10); | ||
| 158 | x11 = PLUS(x11,j11); | ||
| 159 | x12 = PLUS(x12,j12); | ||
| 160 | x13 = PLUS(x13,j13); | ||
| 161 | x14 = PLUS(x14,j14); | ||
| 162 | x15 = PLUS(x15,j15); | ||
| 163 | |||
| 164 | #ifndef KEYSTREAM_ONLY | ||
| 165 | x0 = XOR(x0,U8TO32_LITTLE(m + 0)); | ||
| 166 | x1 = XOR(x1,U8TO32_LITTLE(m + 4)); | ||
| 167 | x2 = XOR(x2,U8TO32_LITTLE(m + 8)); | ||
| 168 | x3 = XOR(x3,U8TO32_LITTLE(m + 12)); | ||
| 169 | x4 = XOR(x4,U8TO32_LITTLE(m + 16)); | ||
| 170 | x5 = XOR(x5,U8TO32_LITTLE(m + 20)); | ||
| 171 | x6 = XOR(x6,U8TO32_LITTLE(m + 24)); | ||
| 172 | x7 = XOR(x7,U8TO32_LITTLE(m + 28)); | ||
| 173 | x8 = XOR(x8,U8TO32_LITTLE(m + 32)); | ||
| 174 | x9 = XOR(x9,U8TO32_LITTLE(m + 36)); | ||
| 175 | x10 = XOR(x10,U8TO32_LITTLE(m + 40)); | ||
| 176 | x11 = XOR(x11,U8TO32_LITTLE(m + 44)); | ||
| 177 | x12 = XOR(x12,U8TO32_LITTLE(m + 48)); | ||
| 178 | x13 = XOR(x13,U8TO32_LITTLE(m + 52)); | ||
| 179 | x14 = XOR(x14,U8TO32_LITTLE(m + 56)); | ||
| 180 | x15 = XOR(x15,U8TO32_LITTLE(m + 60)); | ||
| 181 | #endif | ||
| 182 | |||
| 183 | j12 = PLUSONE(j12); | ||
| 184 | if (!j12) { | ||
| 185 | j13 = PLUSONE(j13); | ||
| 186 | /* stopping at 2^70 bytes per nonce is user's responsibility */ | ||
| 187 | } | ||
| 188 | |||
| 189 | U32TO8_LITTLE(c + 0,x0); | ||
| 190 | U32TO8_LITTLE(c + 4,x1); | ||
| 191 | U32TO8_LITTLE(c + 8,x2); | ||
| 192 | U32TO8_LITTLE(c + 12,x3); | ||
| 193 | U32TO8_LITTLE(c + 16,x4); | ||
| 194 | U32TO8_LITTLE(c + 20,x5); | ||
| 195 | U32TO8_LITTLE(c + 24,x6); | ||
| 196 | U32TO8_LITTLE(c + 28,x7); | ||
| 197 | U32TO8_LITTLE(c + 32,x8); | ||
| 198 | U32TO8_LITTLE(c + 36,x9); | ||
| 199 | U32TO8_LITTLE(c + 40,x10); | ||
| 200 | U32TO8_LITTLE(c + 44,x11); | ||
| 201 | U32TO8_LITTLE(c + 48,x12); | ||
| 202 | U32TO8_LITTLE(c + 52,x13); | ||
| 203 | U32TO8_LITTLE(c + 56,x14); | ||
| 204 | U32TO8_LITTLE(c + 60,x15); | ||
| 205 | |||
| 206 | if (bytes <= 64) { | ||
| 207 | if (bytes < 64) { | ||
| 208 | for (i = 0;i < bytes;++i) ctarget[i] = c[i]; | ||
| 209 | } | ||
| 210 | x->input[12] = j12; | ||
| 211 | x->input[13] = j13; | ||
| 212 | return; | ||
| 213 | } | ||
| 214 | bytes -= 64; | ||
| 215 | c += 64; | ||
| 216 | #ifndef KEYSTREAM_ONLY | ||
| 217 | m += 64; | ||
| 218 | #endif | ||
| 219 | } | ||
| 220 | } | ||
