commit
e4378ed8aa
@ -132,3 +132,77 @@ void keccak1600(const uint8_t *in, size_t inlen, uint8_t *md)
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{
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{
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keccak(in, inlen, md, sizeof(state_t));
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keccak(in, inlen, md, sizeof(state_t));
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}
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}
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#define KECCAK_FINALIZED 0x80000000
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#define KECCAK_BLOCKLEN 136
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#define KECCAK_WORDS 17
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#define KECCAK_DIGESTSIZE 32
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#define IS_ALIGNED_64(p) (0 == (7 & ((const char*)(p) - (const char*)0)))
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#define KECCAK_PROCESS_BLOCK(st, block) { \
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for (int i_ = 0; i_ < KECCAK_WORDS; i_++){ \
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((st))[i_] ^= ((block))[i_]; \
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}; \
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keccakf(st, KECCAK_ROUNDS); }
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void keccak_init(KECCAK_CTX * ctx){
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memset(ctx, 0, sizeof(KECCAK_CTX));
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}
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void keccak_update(KECCAK_CTX * ctx, const uint8_t *in, size_t inlen){
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if (ctx->rest & KECCAK_FINALIZED) {
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local_abort("Bad keccak use");
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}
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const size_t idx = ctx->rest;
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ctx->rest = (ctx->rest + inlen) % KECCAK_BLOCKLEN;
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// fill partial block
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if (idx) {
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size_t left = KECCAK_BLOCKLEN - idx;
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memcpy((char*)ctx->message + idx, in, (inlen < left ? inlen : left));
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if (inlen < left) return;
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KECCAK_PROCESS_BLOCK(ctx->hash, ctx->message);
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in += left;
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inlen -= left;
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}
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const bool is_aligned = IS_ALIGNED_64(in);
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while (inlen >= KECCAK_BLOCKLEN) {
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const uint64_t* aligned_message_block;
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if (is_aligned) {
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aligned_message_block = (uint64_t*)in;
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} else {
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memcpy(ctx->message, in, KECCAK_BLOCKLEN);
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aligned_message_block = ctx->message;
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}
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KECCAK_PROCESS_BLOCK(ctx->hash, aligned_message_block);
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in += KECCAK_BLOCKLEN;
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inlen -= KECCAK_BLOCKLEN;
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}
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if (inlen) {
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memcpy(ctx->message, in, inlen);
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}
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}
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void keccak_finish(KECCAK_CTX * ctx, uint8_t *md){
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if (!(ctx->rest & KECCAK_FINALIZED))
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{
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// clear the rest of the data queue
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memset((char*)ctx->message + ctx->rest, 0, KECCAK_BLOCKLEN - ctx->rest);
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((char*)ctx->message)[ctx->rest] |= 0x01;
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((char*)ctx->message)[KECCAK_BLOCKLEN - 1] |= 0x80;
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// process final block
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KECCAK_PROCESS_BLOCK(ctx->hash, ctx->message);
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ctx->rest = KECCAK_FINALIZED; // mark context as finalized
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}
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static_assert(KECCAK_BLOCKLEN > KECCAK_DIGESTSIZE, "");
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if (md) {
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memcpy(md, ctx->hash, KECCAK_DIGESTSIZE);
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}
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}
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@ -15,6 +15,17 @@
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#define ROTL64(x, y) (((x) << (y)) | ((x) >> (64 - (y))))
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#define ROTL64(x, y) (((x) << (y)) | ((x) >> (64 - (y))))
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#endif
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#endif
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// SHA3 Algorithm context.
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typedef struct KECCAK_CTX
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{
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// 1600 bits algorithm hashing state
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uint64_t hash[25];
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// 1088-bit buffer for leftovers, block size = 136 B for 256-bit keccak
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uint64_t message[17];
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// count of bytes in the message[] buffer
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size_t rest;
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} KECCAK_CTX;
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// compute a keccak hash (md) of given byte length from "in"
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// compute a keccak hash (md) of given byte length from "in"
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void keccak(const uint8_t *in, size_t inlen, uint8_t *md, int mdlen);
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void keccak(const uint8_t *in, size_t inlen, uint8_t *md, int mdlen);
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@ -23,4 +34,7 @@ void keccakf(uint64_t st[25], int norounds);
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void keccak1600(const uint8_t *in, size_t inlen, uint8_t *md);
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void keccak1600(const uint8_t *in, size_t inlen, uint8_t *md);
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void keccak_init(KECCAK_CTX * ctx);
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void keccak_update(KECCAK_CTX * ctx, const uint8_t *in, size_t inlen);
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void keccak_finish(KECCAK_CTX * ctx, uint8_t *md);
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#endif
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#endif
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