mirror of
https://github.com/henrydcase/pqc.git
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65a6a63e08
* Put AES ctx on the heap This forces people to use the ``ctx_release`` functions, because otherwise there will be leaks * Put fips202 on the heap * Add much more docs for fips202.h * fixup! Put fips202 on the heap * Put SHA2 on the heap-supporting API * Fix clang-tidy warnings * Fix unreachable free() in falcon * Fix McEliece8192128f-sse GNU Makefile
107 lines
5.0 KiB
C
107 lines
5.0 KiB
C
#include <stdint.h>
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#include <string.h>
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#include "address.h"
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#include "hash.h"
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#include "params.h"
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#include "utils.h"
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#include "fips202.h"
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/* For SHAKE256, there is no immediate reason to initialize at the start,
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so this function is an empty operation. */
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void PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_initialize_hash_function(
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hash_state *hash_state_seeded, // NOLINT(readability-non-const-parameter)
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const unsigned char *pub_seed, const unsigned char *sk_seed) {
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(void)hash_state_seeded; /* Suppress an 'unused parameter' warning. */
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(void)pub_seed; /* Suppress an 'unused parameter' warning. */
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(void)sk_seed; /* Suppress an 'unused parameter' warning. */
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}
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/* This is not necessary for SHAKE256, so we don't do anything */
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void PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_destroy_hash_function(
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hash_state *hash_state_seeded) { // NOLINT(readability-non-const-parameter)
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(void)hash_state_seeded;
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}
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/*
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* Computes PRF(key, addr), given a secret key of PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_N bytes and an address
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*/
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void PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_prf_addr(
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unsigned char *out, const unsigned char *key, const uint32_t addr[8],
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const hash_state *hash_state_seeded) {
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unsigned char buf[PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_N + PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_ADDR_BYTES];
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memcpy(buf, key, PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_N);
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PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_addr_to_bytes(buf + PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_N, addr);
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shake256(out, PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_N, buf, PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_N + PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_ADDR_BYTES);
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(void)hash_state_seeded; /* Prevent unused parameter warning. */
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}
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/**
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* Computes the message-dependent randomness R, using a secret seed and an
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* optional randomization value as well as the message.
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*/
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void PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_gen_message_random(
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unsigned char *R,
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const unsigned char *sk_prf, const unsigned char *optrand,
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const unsigned char *m, size_t mlen,
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const hash_state *hash_state_seeded) {
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shake256incctx state;
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shake256_inc_init(&state);
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shake256_inc_absorb(&state, sk_prf, PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_N);
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shake256_inc_absorb(&state, optrand, PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_N);
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shake256_inc_absorb(&state, m, mlen);
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shake256_inc_finalize(&state);
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shake256_inc_squeeze(R, PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_N, &state);
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shake256_inc_ctx_release(&state);
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(void)hash_state_seeded; /* Prevent unused parameter warning. */
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}
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/**
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* Computes the message hash using R, the public key, and the message.
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* Outputs the message digest and the index of the leaf. The index is split in
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* the tree index and the leaf index, for convenient copying to an address.
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*/
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void PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_hash_message(
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unsigned char *digest, uint64_t *tree, uint32_t *leaf_idx,
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const unsigned char *R, const unsigned char *pk,
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const unsigned char *m, size_t mlen,
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const hash_state *hash_state_seeded) {
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#define PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_TREE_BITS (PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_TREE_HEIGHT * (PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_D - 1))
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#define PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_TREE_BYTES ((PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_TREE_BITS + 7) / 8)
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#define PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_LEAF_BITS PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_TREE_HEIGHT
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#define PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_LEAF_BYTES ((PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_LEAF_BITS + 7) / 8)
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#define PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_DGST_BYTES (PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_FORS_MSG_BYTES + PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_TREE_BYTES + PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_LEAF_BYTES)
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unsigned char buf[PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_DGST_BYTES];
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unsigned char *bufp = buf;
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shake256incctx state;
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shake256_inc_init(&state);
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shake256_inc_absorb(&state, R, PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_N);
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shake256_inc_absorb(&state, pk, PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_PK_BYTES);
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shake256_inc_absorb(&state, m, mlen);
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shake256_inc_finalize(&state);
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shake256_inc_squeeze(buf, PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_DGST_BYTES, &state);
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shake256_inc_ctx_release(&state);
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memcpy(digest, bufp, PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_FORS_MSG_BYTES);
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bufp += PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_FORS_MSG_BYTES;
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*tree = PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_bytes_to_ull(
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bufp, PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_TREE_BYTES);
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*tree &= (~(uint64_t)0) >> (64 - PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_TREE_BITS);
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bufp += PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_TREE_BYTES;
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*leaf_idx = (uint32_t)PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_bytes_to_ull(
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bufp, PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_LEAF_BYTES);
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*leaf_idx &= (~(uint32_t)0) >> (32 - PQCLEAN_SPHINCSSHAKE256192FSIMPLE_CLEAN_LEAF_BITS);
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(void)hash_state_seeded; /* Prevent unused parameter warning. */
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}
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