fixed two minor points in handling the maximum signature value
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f56dc0e8a7
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171ccbd26f
@ -21,7 +21,7 @@
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#define XMSS_SIGN xmssmt_sign
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#define XMSS_SIGN_OPEN xmssmt_sign_open
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#define XMSS_VARIANT "XMSSMT-SHA2_20/2_256"
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#define XMSS_SIGNATURES 1 << 20
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#define XMSS_SIGNATURES (1 << 20)
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#else
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#define XMSS_PARSE_OID xmss_parse_oid
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#define XMSS_STR_TO_OID xmss_str_to_oid
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@ -29,7 +29,7 @@
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#define XMSS_SIGN xmss_sign
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#define XMSS_SIGN_OPEN xmss_sign_open
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#define XMSS_VARIANT "XMSS-SHA2_10_256"
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#define XMSS_SIGNATURES 1 << 10
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#define XMSS_SIGNATURES (1 << 10)
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#endif
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int main()
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@ -72,26 +72,27 @@ int main()
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}
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if(ret == 0)
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printf("As expected, return code was 0\n");
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i++;
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printf(" - iteration #%d:\n", i);
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for (; i < (XMSS_SIGNATURES) + 2; i++) {
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printf(" - iteration #%d:\n", i);
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return_code = XMSS_SIGN(sk, sm, &smlen, m, XMSS_MLEN);
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return_code = XMSS_SIGN(sk, sm, &smlen, m, XMSS_MLEN);
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if (return_code == 0) {
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printf(" Error! Return code was %d\n",return_code);
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ret = -1;
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if (return_code == 0) {
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printf(" Error! Return code was %d\n",return_code);
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ret = -1;
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}
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else {
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printf("Return code as expected [%d].\n", return_code);
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}
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idx = (unsigned long)bytes_to_ull(sk, params.index_bytes);
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printf("Index: %llu\n", idx);
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printf("Secret key: %llu\n", idx);
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for (j = 0; j < XMSS_OID_LEN + params.sk_bytes;j++)
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printf("%d ", sk[j]);
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printf("\n");
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}
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else {
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printf("Return code as expected [%d].\n", return_code);
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}
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idx = (unsigned long)bytes_to_ull(sk, params.index_bytes);
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printf("Index: %llu\n", idx);
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printf("Secret key: %llu\n", idx);
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for (j = 0; j < XMSS_OID_LEN + params.sk_bytes;j++)
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printf("%d ", sk[j]);
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printf("\n");
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free(m);
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free(sm);
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@ -222,14 +222,11 @@ int xmssmt_core_sign(const xmss_params *params,
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if (idx >= ((1ULL << params->full_height) - 1)) {
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// Delete secret key here. We only do this in memory, production code
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// has to make sure that this happens on disk.
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sk[0] = 255;
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sk[1] = 255;
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sk[2] = 255;
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sk[3] = 255;
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memset(sk, 0xFF, params->index_bytes);
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memset(sk + params->index_bytes, 0, (params->sk_bytes - params->index_bytes));
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if (idx > ((1ULL << params->full_height) - 1))
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return -2; // We already used all one-time keys
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if ((params->full_height == 64) && (idx = ((1ULL << params->full_height) - 1)))
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if ((params->full_height == 64) && (idx == ((1ULL << params->full_height) - 1)))
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return -2; // We already used all one-time keys
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}
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@ -615,14 +615,11 @@ int xmss_core_sign(const xmss_params *params,
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if (idx >= ((1ULL << params->full_height) - 1)) {
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// Delete secret key here. We only do this in memory, production code
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// has to make sure that this happens on disk.
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sk[0] = 255;
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sk[1] = 255;
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sk[2] = 255;
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sk[3] = 255;
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memset(sk, 0xFF, params->index_bytes);
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memset(sk + params->index_bytes, 0, (params->sk_bytes - params->index_bytes));
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if (idx > ((1ULL << params->full_height) - 1))
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return -2; // We already used all one-time keys
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if ((params->full_height == 64) && (idx = ((1ULL << params->full_height) - 1)))
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if ((params->full_height == 64) && (idx == ((1ULL << params->full_height) - 1)))
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return -2; // We already used all one-time keys
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}
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@ -839,14 +836,11 @@ int xmssmt_core_sign(const xmss_params *params,
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if (idx >= ((1ULL << params->full_height) - 1)) {
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// Delete secret key here. We only do this in memory, production code
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// has to make sure that this happens on disk.
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sk[0] = 255;
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sk[1] = 255;
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sk[2] = 255;
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sk[3] = 255;
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memset(sk, 0xFF, params->index_bytes);
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memset(sk + params->index_bytes, 0, (params->sk_bytes - params->index_bytes));
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if (idx > ((1ULL << params->full_height) - 1))
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return -2; // We already used all one-time keys
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if ((params->full_height == 64) && (idx = ((1ULL << params->full_height) - 1)))
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if ((params->full_height == 64) && (idx == ((1ULL << params->full_height) - 1)))
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return -2; // We already used all one-time keys
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}
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