add adler32 checksum algorithm
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@ -430,6 +430,8 @@
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#define LTC_HKDF
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#endif /* LTC_NO_HKDF */
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#define LTC_ADLER32
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#endif /* LTC_NO_MISC */
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/* cleanup */
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@ -69,6 +69,17 @@ void init_GMP(void);
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#endif
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*/
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#ifdef LTC_ADLER32
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typedef struct adler32_state_s
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{
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unsigned short s[2];
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} adler32_state;
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void adler32_init(adler32_state *ctx);
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void adler32_update(adler32_state *ctx, const unsigned char *input, unsigned long length);
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void adler32_finish(adler32_state *ctx, void *hash, unsigned long size);
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int adler32_test(void);
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#endif
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/* $Source$ */
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/* $Revision$ */
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135
src/misc/adler32.c
Normal file
135
src/misc/adler32.c
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@ -0,0 +1,135 @@
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/* LibTomCrypt, modular cryptographic library -- Tom St Denis
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*
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* LibTomCrypt is a library that provides various cryptographic
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* algorithms in a highly modular and flexible manner.
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*
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* The library is free for all purposes without any express
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* guarantee it works.
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*
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* Tom St Denis, tomstdenis@gmail.com, http://libtom.org
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*/
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#include "tomcrypt.h"
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/**
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@file adler32.c
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Adler-32 checksum algorithm
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Written and placed in the public domain by Wei Dai
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Adapted for libtomcrypt by Steffen Jaeckel
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*/
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#ifdef LTC_ADLER32
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static const unsigned long _adler32_base = 65521;
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void adler32_init(adler32_state *ctx)
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{
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LTC_ARGCHKVD(ctx != NULL);
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ctx->s[0] = 1;
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ctx->s[1] = 0;
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}
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void adler32_update(adler32_state *ctx, const unsigned char *input, unsigned long length)
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{
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LTC_ARGCHKVD(ctx != NULL);
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LTC_ARGCHKVD(input != NULL);
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unsigned long s1 = ctx->s[0];
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unsigned long s2 = ctx->s[1];
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if (length % 8 != 0) {
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do {
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s1 += *input++;
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s2 += s1;
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length--;
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} while (length % 8 != 0);
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if (s1 >= _adler32_base)
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s1 -= _adler32_base;
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s2 %= _adler32_base;
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}
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while (length > 0) {
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s1 += input[0];
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s2 += s1;
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s1 += input[1];
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s2 += s1;
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s1 += input[2];
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s2 += s1;
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s1 += input[3];
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s2 += s1;
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s1 += input[4];
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s2 += s1;
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s1 += input[5];
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s2 += s1;
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s1 += input[6];
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s2 += s1;
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s1 += input[7];
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s2 += s1;
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length -= 8;
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input += 8;
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if (s1 >= _adler32_base)
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s1 -= _adler32_base;
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s2 %= _adler32_base;
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}
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LTC_ARGCHKVD(s1 < _adler32_base);
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LTC_ARGCHKVD(s2 < _adler32_base);
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ctx->s[0] = (unsigned short)s1;
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ctx->s[1] = (unsigned short)s2;
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}
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void adler32_finish(adler32_state *ctx, void *hash, unsigned long size)
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{
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LTC_ARGCHKVD(ctx != NULL);
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LTC_ARGCHKVD(hash != NULL);
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unsigned char* h = hash;
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switch (size) {
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default:
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h[3] = ctx->s[0] & 0x0ff;
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/* no break */
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case 3:
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h[2] = (ctx->s[0] >> 8) & 0x0ff;
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/* no break */
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case 2:
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h[1] = ctx->s[1] & 0x0ff;
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/* no break */
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case 1:
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h[0] = (ctx->s[1] >> 8) & 0x0ff;
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/* no break */
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case 0:
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;
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}
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}
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int adler32_test(void)
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{
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#ifndef LTC_TEST
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return CRYPT_NOP;
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#else
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const void* in = "libtomcrypt";
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const unsigned char adler32[] = { 0x1b, 0xe8, 0x04, 0xba };
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unsigned char out[4];
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adler32_state ctx;
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adler32_init(&ctx);
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adler32_update(&ctx, in, strlen(in));
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adler32_finish(&ctx, &out, 4);
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if (XMEMCMP(adler32, out, 4)) {
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#ifdef LTC_TEST_DBG
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ulong32 _out, _adler32;
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LOAD32H(_out, out);
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LOAD32H(_adler32, adler32);
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printf("adler32 fail! Is: 0x%x Should: 0x%x\n", _out, _adler32);
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#endif
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return CRYPT_FAIL_TESTVECTOR;
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}
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return CRYPT_OK;
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#endif
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}
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#endif
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/* $Source$ */
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/* $Revision$ */
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/* $Date$ */
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@ -322,6 +322,9 @@ const char *crypt_build_settings =
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#endif
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"\nVarious others: "
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#if defined(LTC_ADLER32)
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" ADLER32 "
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#endif
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#if defined(LTC_BASE64)
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" BASE64 "
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#endif
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@ -231,6 +231,10 @@ static const crypt_size _crypt_sizes[] = {
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#endif
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// sprng has no state as it uses other potentially available sources
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// like /dev/random. See Developers Guide for more info.
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#ifdef LTC_ADLER32
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_SZ_STRINGIFY_T(adler32_state),
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#endif
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};
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/* crypt_get_size()
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@ -10,6 +10,9 @@ int misc_test(void)
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#endif
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#ifdef LTC_BASE64
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DO(base64_test());
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#endif
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#ifdef LTC_ADLER32
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DO(adler32_test());
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#endif
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return 0;
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}
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