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456120cfac
MD5 is structurally very similar to all the SHA-1 and SHA-2 hashes (with the main difference being that the message schedule consists of just repeating the 32-bit words of the message four times in different permutations, instead of transforming them via an LFSR-style process). So it helps legibility and maintainability if all the implementations of these hashes are coded in a similar style - for example, that way, the next time I need to make a change to the ssh_hash API, I can do it the same way in all these modules without having to think everything out again. After the SHA-512 rewrite earlier today, all the hashes in that family had been updated to a consistent new style as a side effect of adding optional hardware acceleration, except for MD5, because there's no hardware-accelerated version of it. (And not much chance of anyone ever needing one, I hope!) So this is a purely stylistic update which reworks MD5 so that it looks just like all the SHA-1 and SHA-2 hash implementations. No functional change.
246 lines
7.1 KiB
C
246 lines
7.1 KiB
C
/*
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* MD5 implementation for PuTTY. Written directly from the spec by
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* Simon Tatham.
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*/
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#include <assert.h>
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#include "ssh.h"
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static const uint32_t md5_initial_state[] = {
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0x67452301, 0xefcdab89, 0x98badcfe, 0x10325476,
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};
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static const struct md5_round_constant {
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uint32_t addition, rotation, msg_index;
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} md5_round_constants[] = {
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{ 0xd76aa478, 7, 0 }, { 0xe8c7b756, 12, 1 },
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{ 0x242070db, 17, 2 }, { 0xc1bdceee, 22, 3 },
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{ 0xf57c0faf, 7, 4 }, { 0x4787c62a, 12, 5 },
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{ 0xa8304613, 17, 6 }, { 0xfd469501, 22, 7 },
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{ 0x698098d8, 7, 8 }, { 0x8b44f7af, 12, 9 },
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{ 0xffff5bb1, 17, 10 }, { 0x895cd7be, 22, 11 },
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{ 0x6b901122, 7, 12 }, { 0xfd987193, 12, 13 },
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{ 0xa679438e, 17, 14 }, { 0x49b40821, 22, 15 },
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{ 0xf61e2562, 5, 1 }, { 0xc040b340, 9, 6 },
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{ 0x265e5a51, 14, 11 }, { 0xe9b6c7aa, 20, 0 },
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{ 0xd62f105d, 5, 5 }, { 0x02441453, 9, 10 },
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{ 0xd8a1e681, 14, 15 }, { 0xe7d3fbc8, 20, 4 },
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{ 0x21e1cde6, 5, 9 }, { 0xc33707d6, 9, 14 },
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{ 0xf4d50d87, 14, 3 }, { 0x455a14ed, 20, 8 },
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{ 0xa9e3e905, 5, 13 }, { 0xfcefa3f8, 9, 2 },
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{ 0x676f02d9, 14, 7 }, { 0x8d2a4c8a, 20, 12 },
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{ 0xfffa3942, 4, 5 }, { 0x8771f681, 11, 8 },
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{ 0x6d9d6122, 16, 11 }, { 0xfde5380c, 23, 14 },
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{ 0xa4beea44, 4, 1 }, { 0x4bdecfa9, 11, 4 },
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{ 0xf6bb4b60, 16, 7 }, { 0xbebfbc70, 23, 10 },
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{ 0x289b7ec6, 4, 13 }, { 0xeaa127fa, 11, 0 },
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{ 0xd4ef3085, 16, 3 }, { 0x04881d05, 23, 6 },
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{ 0xd9d4d039, 4, 9 }, { 0xe6db99e5, 11, 12 },
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{ 0x1fa27cf8, 16, 15 }, { 0xc4ac5665, 23, 2 },
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{ 0xf4292244, 6, 0 }, { 0x432aff97, 10, 7 },
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{ 0xab9423a7, 15, 14 }, { 0xfc93a039, 21, 5 },
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{ 0x655b59c3, 6, 12 }, { 0x8f0ccc92, 10, 3 },
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{ 0xffeff47d, 15, 10 }, { 0x85845dd1, 21, 1 },
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{ 0x6fa87e4f, 6, 8 }, { 0xfe2ce6e0, 10, 15 },
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{ 0xa3014314, 15, 6 }, { 0x4e0811a1, 21, 13 },
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{ 0xf7537e82, 6, 4 }, { 0xbd3af235, 10, 11 },
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{ 0x2ad7d2bb, 15, 2 }, { 0xeb86d391, 21, 9 },
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};
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typedef struct md5_block md5_block;
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struct md5_block {
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uint8_t block[64];
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size_t used;
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uint64_t len;
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};
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static inline void md5_block_setup(md5_block *blk)
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{
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blk->used = 0;
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blk->len = 0;
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}
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static inline bool md5_block_write(
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md5_block *blk, const void **vdata, size_t *len)
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{
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size_t blkleft = sizeof(blk->block) - blk->used;
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size_t chunk = *len < blkleft ? *len : blkleft;
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const uint8_t *p = *vdata;
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memcpy(blk->block + blk->used, p, chunk);
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*vdata = p + chunk;
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*len -= chunk;
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blk->used += chunk;
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blk->len += chunk;
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if (blk->used == sizeof(blk->block)) {
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blk->used = 0;
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return true;
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}
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return false;
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}
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static inline void md5_block_pad(md5_block *blk, BinarySink *bs)
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{
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uint64_t final_len = blk->len << 3;
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size_t pad = 63 & (55 - blk->used);
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put_byte(bs, 0x80);
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put_padding(bs, pad, 0);
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unsigned char buf[8];
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PUT_64BIT_LSB_FIRST(buf, final_len);
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put_data(bs, buf, 8);
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smemclr(buf, 8);
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assert(blk->used == 0 && "Should have exactly hit a block boundary");
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}
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static inline uint32_t rol(uint32_t x, unsigned y)
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{
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return (x << (31 & y)) | (x >> (31 & -y));
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}
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static inline uint32_t Ch(uint32_t ctrl, uint32_t if1, uint32_t if0)
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{
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return if0 ^ (ctrl & (if1 ^ if0));
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}
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/* Parameter functions for the four MD5 round types */
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static inline uint32_t F(uint32_t x, uint32_t y, uint32_t z)
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{ return Ch(x, y, z); }
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static inline uint32_t G(uint32_t x, uint32_t y, uint32_t z)
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{ return Ch(z, x, y); }
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static inline uint32_t H(uint32_t x, uint32_t y, uint32_t z)
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{ return x ^ y ^ z; }
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static inline uint32_t I(uint32_t x, uint32_t y, uint32_t z)
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{ return y ^ (x | ~z); }
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static inline void md5_round(
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unsigned round_index, const uint32_t *message,
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uint32_t *a, uint32_t *b, uint32_t *c, uint32_t *d,
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uint32_t (*f)(uint32_t, uint32_t, uint32_t))
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{
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struct md5_round_constant rc = md5_round_constants[round_index];
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*a = *b + rol(*a + f(*b, *c, *d) + message[rc.msg_index] + rc.addition,
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rc.rotation);
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}
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static void md5_do_block(uint32_t *core, const uint8_t *block)
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{
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uint32_t message_words[16];
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for (size_t i = 0; i < 16; i++)
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message_words[i] = GET_32BIT_LSB_FIRST(block + 4*i);
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uint32_t a = core[0], b = core[1], c = core[2], d = core[3];
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size_t t = 0;
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for (size_t u = 0; u < 4; u++) {
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md5_round(t++, message_words, &a, &b, &c, &d, F);
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md5_round(t++, message_words, &d, &a, &b, &c, F);
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md5_round(t++, message_words, &c, &d, &a, &b, F);
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md5_round(t++, message_words, &b, &c, &d, &a, F);
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}
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for (size_t u = 0; u < 4; u++) {
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md5_round(t++, message_words, &a, &b, &c, &d, G);
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md5_round(t++, message_words, &d, &a, &b, &c, G);
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md5_round(t++, message_words, &c, &d, &a, &b, G);
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md5_round(t++, message_words, &b, &c, &d, &a, G);
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}
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for (size_t u = 0; u < 4; u++) {
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md5_round(t++, message_words, &a, &b, &c, &d, H);
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md5_round(t++, message_words, &d, &a, &b, &c, H);
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md5_round(t++, message_words, &c, &d, &a, &b, H);
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md5_round(t++, message_words, &b, &c, &d, &a, H);
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}
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for (size_t u = 0; u < 4; u++) {
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md5_round(t++, message_words, &a, &b, &c, &d, I);
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md5_round(t++, message_words, &d, &a, &b, &c, I);
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md5_round(t++, message_words, &c, &d, &a, &b, I);
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md5_round(t++, message_words, &b, &c, &d, &a, I);
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}
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core[0] += a;
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core[1] += b;
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core[2] += c;
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core[3] += d;
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smemclr(message_words, sizeof(message_words));
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}
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typedef struct md5 {
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uint32_t core[4];
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md5_block blk;
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BinarySink_IMPLEMENTATION;
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ssh_hash hash;
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} md5;
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static void md5_write(BinarySink *bs, const void *vp, size_t len);
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static ssh_hash *md5_new(const ssh_hashalg *alg)
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{
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md5 *s = snew(md5);
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s->hash.vt = alg;
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BinarySink_INIT(s, md5_write);
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BinarySink_DELEGATE_INIT(&s->hash, s);
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return &s->hash;
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}
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static void md5_reset(ssh_hash *hash)
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{
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md5 *s = container_of(hash, md5, hash);
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memcpy(s->core, md5_initial_state, sizeof(s->core));
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md5_block_setup(&s->blk);
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}
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static void md5_copyfrom(ssh_hash *hcopy, ssh_hash *horig)
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{
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md5 *copy = container_of(hcopy, md5, hash);
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md5 *orig = container_of(horig, md5, hash);
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memcpy(copy, orig, sizeof(*copy));
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BinarySink_COPIED(copy);
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BinarySink_DELEGATE_INIT(©->hash, copy);
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}
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static void md5_free(ssh_hash *hash)
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{
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md5 *s = container_of(hash, md5, hash);
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smemclr(s, sizeof(*s));
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sfree(s);
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}
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static void md5_write(BinarySink *bs, const void *vp, size_t len)
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{
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md5 *s = BinarySink_DOWNCAST(bs, md5);
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while (len > 0)
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if (md5_block_write(&s->blk, &vp, &len))
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md5_do_block(s->core, s->blk.block);
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}
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static void md5_digest(ssh_hash *hash, uint8_t *digest)
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{
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md5 *s = container_of(hash, md5, hash);
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md5_block_pad(&s->blk, BinarySink_UPCAST(s));
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for (size_t i = 0; i < 4; i++)
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PUT_32BIT_LSB_FIRST(digest + 4*i, s->core[i]);
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}
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const ssh_hashalg ssh_md5 = {
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.new = md5_new,
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.reset = md5_reset,
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.copyfrom = md5_copyfrom,
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.digest = md5_digest,
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.free = md5_free,
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.hlen = 16,
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.blocklen = 64,
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HASHALG_NAMES_BARE("MD5"),
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};
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