Separate definition of padding length
The reference implemention of XMSS currently assumes that n bytes of padding is used for the prefix in the functions prf, hash_message, thash_h, and thash_f. While this is the case for all of the parameter sets in RFC 8391, the draft version of NIST Special Publication 800-208 specifies paramter sets in which the amount of padding is different than n. This commit allows for the padding length for a parameter set to be specified separately from n.
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fb7e3f8edc
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7793c40c07
40
hash.c
40
hash.c
@ -50,13 +50,13 @@ int prf(const xmss_params *params,
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unsigned char *out, const unsigned char in[32],
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const unsigned char *key)
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{
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unsigned char buf[2*params->n + 32];
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unsigned char buf[params->padding_len + params->n + 32];
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ull_to_bytes(buf, params->n, XMSS_HASH_PADDING_PRF);
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memcpy(buf + params->n, key, params->n);
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memcpy(buf + 2*params->n, in, 32);
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ull_to_bytes(buf, params->padding_len, XMSS_HASH_PADDING_PRF);
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memcpy(buf + params->padding_len, key, params->n);
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memcpy(buf + params->padding_len + params->n, in, 32);
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return core_hash(params, out, buf, 2*params->n + 32);
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return core_hash(params, out, buf, params->padding_len + params->n + 32);
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}
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/*
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@ -72,12 +72,12 @@ int hash_message(const xmss_params *params, unsigned char *out,
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{
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/* We're creating a hash using input of the form:
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toByte(X, 32) || R || root || index || M */
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ull_to_bytes(m_with_prefix, params->n, XMSS_HASH_PADDING_HASH);
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memcpy(m_with_prefix + params->n, R, params->n);
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memcpy(m_with_prefix + 2*params->n, root, params->n);
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ull_to_bytes(m_with_prefix + 3*params->n, params->n, idx);
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ull_to_bytes(m_with_prefix, params->padding_len, XMSS_HASH_PADDING_HASH);
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memcpy(m_with_prefix + params->padding_len, R, params->n);
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memcpy(m_with_prefix + params->padding_len + params->n, root, params->n);
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ull_to_bytes(m_with_prefix + params->padding_len + 2*params->n, params->n, idx);
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return core_hash(params, out, m_with_prefix, mlen + 4*params->n);
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return core_hash(params, out, m_with_prefix, mlen + params->padding_len + 3*params->n);
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}
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/**
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@ -87,18 +87,18 @@ int thash_h(const xmss_params *params,
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unsigned char *out, const unsigned char *in,
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const unsigned char *pub_seed, uint32_t addr[8])
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{
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unsigned char buf[4 * params->n];
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unsigned char buf[params->padding_len + 3 * params->n];
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unsigned char bitmask[2 * params->n];
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unsigned char addr_as_bytes[32];
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unsigned int i;
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/* Set the function padding. */
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ull_to_bytes(buf, params->n, XMSS_HASH_PADDING_H);
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ull_to_bytes(buf, params->padding_len, XMSS_HASH_PADDING_H);
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/* Generate the n-byte key. */
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set_key_and_mask(addr, 0);
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addr_to_bytes(addr_as_bytes, addr);
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prf(params, buf + params->n, addr_as_bytes, pub_seed);
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prf(params, buf + params->padding_len, addr_as_bytes, pub_seed);
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/* Generate the 2n-byte mask. */
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set_key_and_mask(addr, 1);
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@ -110,27 +110,27 @@ int thash_h(const xmss_params *params,
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prf(params, bitmask + params->n, addr_as_bytes, pub_seed);
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for (i = 0; i < 2 * params->n; i++) {
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buf[2*params->n + i] = in[i] ^ bitmask[i];
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buf[params->padding_len + params->n + i] = in[i] ^ bitmask[i];
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}
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return core_hash(params, out, buf, 4 * params->n);
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return core_hash(params, out, buf, params->padding_len + 3 * params->n);
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}
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int thash_f(const xmss_params *params,
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unsigned char *out, const unsigned char *in,
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const unsigned char *pub_seed, uint32_t addr[8])
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{
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unsigned char buf[3 * params->n];
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unsigned char buf[params->padding_len + 2 * params->n];
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unsigned char bitmask[params->n];
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unsigned char addr_as_bytes[32];
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unsigned int i;
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/* Set the function padding. */
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ull_to_bytes(buf, params->n, XMSS_HASH_PADDING_F);
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ull_to_bytes(buf, params->padding_len, XMSS_HASH_PADDING_F);
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/* Generate the n-byte key. */
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set_key_and_mask(addr, 0);
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addr_to_bytes(addr_as_bytes, addr);
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prf(params, buf + params->n, addr_as_bytes, pub_seed);
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prf(params, buf + params->padding_len, addr_as_bytes, pub_seed);
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/* Generate the n-byte mask. */
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set_key_and_mask(addr, 1);
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@ -138,7 +138,7 @@ int thash_f(const xmss_params *params,
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prf(params, bitmask, addr_as_bytes, pub_seed);
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for (i = 0; i < params->n; i++) {
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buf[2*params->n + i] = in[i] ^ bitmask[i];
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buf[params->padding_len + params->n + i] = in[i] ^ bitmask[i];
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}
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return core_hash(params, out, buf, 3 * params->n);
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return core_hash(params, out, buf, params->padding_len + 2 * params->n);
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}
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4
params.c
4
params.c
@ -185,6 +185,7 @@ int xmss_parse_oid(xmss_params *params, const uint32_t oid)
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case 0x00000008:
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case 0x00000009:
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params->n = 32;
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params->padding_len = 32;
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break;
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case 0x00000004:
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@ -195,6 +196,7 @@ int xmss_parse_oid(xmss_params *params, const uint32_t oid)
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case 0x0000000b:
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case 0x0000000c:
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params->n = 64;
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params->padding_len = 64;
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break;
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default:
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@ -298,6 +300,7 @@ int xmssmt_parse_oid(xmss_params *params, const uint32_t oid)
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case 0x00000017:
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case 0x00000018:
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params->n = 32;
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params->padding_len = 32;
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break;
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case 0x00000009:
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@ -318,6 +321,7 @@ int xmssmt_parse_oid(xmss_params *params, const uint32_t oid)
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case 0x0000001f:
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case 0x00000020:
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params->n = 64;
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params->padding_len = 64;
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break;
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default:
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