Add crypto_core_ed25519_scalar_complement(), _negate(), _add(), _sub()
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@ -15,7 +15,9 @@ not to be detected.
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- Test vectors from Project Wycheproof have been added.
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- Test vectors from Project Wycheproof have been added.
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- New low-level APIs for arithmetic mod the order of the prime order group:
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- New low-level APIs for arithmetic mod the order of the prime order group:
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`crypto_core_ed25519_scalar_random()`, `crypto_core_ed25519_scalar_reduce()`,
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`crypto_core_ed25519_scalar_random()`, `crypto_core_ed25519_scalar_reduce()`,
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and `crypto_core_ed25519_scalar_invert()`.
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`crypto_core_ed25519_scalar_invert()`, `crypto_core_ed25519_scalar_negate()`,
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`crypto_core_ed25519_scalar_complement()`, `crypto_core_ed25519_scalar_add()`
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and `crypto_core_ed25519_scalar_sub()`.
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- New low-level APIs for scalar multiplication without clamping:
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- New low-level APIs for scalar multiplication without clamping:
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`crypto_scalarmult_ed25519_base_noclamp()`,
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`crypto_scalarmult_ed25519_base_noclamp()`,
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and `crypto_scalarmult_ed25519_noclamp()`. These new APIs are
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and `crypto_scalarmult_ed25519_noclamp()`. These new APIs are
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@ -1,4 +1,6 @@
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#include <stdint.h>
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#include "crypto_core_ed25519.h"
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#include "crypto_core_ed25519.h"
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#include "private/common.h"
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#include "private/common.h"
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#include "private/ed25519_ref10.h"
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#include "private/ed25519_ref10.h"
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@ -86,6 +88,88 @@ crypto_core_ed25519_scalar_invert(unsigned char *recip, const unsigned char *s)
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return - sodium_is_zero(s, crypto_core_ed25519_SCALARBYTES);
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return - sodium_is_zero(s, crypto_core_ed25519_SCALARBYTES);
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}
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}
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void
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crypto_core_ed25519_scalar_negate(unsigned char *neg, const unsigned char *s)
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{
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/* 2^252+27742317777372353535851937790883648493 */
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static const unsigned char L[32] = {
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0xed, 0xd3, 0xf5, 0x5c, 0x1a, 0x63, 0x12, 0x58, 0xd6, 0x9c, 0xf7,
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0xa2, 0xde, 0xf9, 0xde, 0x14, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x10
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};
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uint_fast16_t c = 0U;
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unsigned char r = 0U;
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size_t i;
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for (i = 0; i < crypto_core_ed25519_SCALARBYTES; i++) {
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r |= s[i];
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c = (uint_fast16_t) L[i] - (uint_fast16_t) s[i] - c;
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neg[i] = (unsigned char) c;
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c = (c >> 8) & 1U;
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}
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r = ~(r - 1U) >> 8;
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for (i = 0; i < crypto_core_ed25519_SCALARBYTES; i++) {
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neg[i] &= r;
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}
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}
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void
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crypto_core_ed25519_scalar_complement(unsigned char *comp, const unsigned char *s)
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{
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/* 2^252+27742317777372353535851937790883648493 + 1 */
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static const unsigned char L1[32] = {
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0xee, 0xd3, 0xf5, 0x5c, 0x1a, 0x63, 0x12, 0x58, 0xd6, 0x9c, 0xf7,
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0xa2, 0xde, 0xf9, 0xde, 0x14, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x10
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};
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uint_fast16_t c = 0U;
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unsigned char q = 0U;
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unsigned char r = 0U;
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size_t i;
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q |= s[0] ^ 1U;
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r |= s[0];
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c = (uint_fast16_t) L1[0] - (uint_fast16_t) s[0] - c;
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comp[0] = (unsigned char) c;
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c = (c >> 8) & 1U;
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for (i = 1U; i < crypto_core_ed25519_SCALARBYTES; i++) {
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q |= s[i];
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r |= s[i];
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c = (uint_fast16_t) L1[i] - (uint_fast16_t) s[i] - c;
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comp[i] = (unsigned char) c;
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c = (c >> 8) & 1U;
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}
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q = ~(q - 1U) >> 8;
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r = ~(r - 1U) >> 8;
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for (i = 0; i < crypto_core_ed25519_SCALARBYTES; i++) {
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comp[i] &= q & r;
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}
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comp[0] |= (~r) & 1U;
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}
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void
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crypto_core_ed25519_scalar_add(unsigned char *z, const unsigned char *x,
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const unsigned char *y)
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{
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unsigned char x_[crypto_core_ed25519_NONREDUCEDSCALARBYTES] = { 0U };
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unsigned char y_[crypto_core_ed25519_NONREDUCEDSCALARBYTES] = { 0U };
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memcpy(x_, x, crypto_core_ed25519_SCALARBYTES);
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memcpy(y_, y, crypto_core_ed25519_SCALARBYTES);
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sodium_add(x_, y_, crypto_core_ed25519_SCALARBYTES);
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crypto_core_ed25519_scalar_reduce(z, x_);
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}
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void
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crypto_core_ed25519_scalar_sub(unsigned char *z, const unsigned char *x,
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const unsigned char *y)
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{
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unsigned char yn[crypto_core_ed25519_SCALARBYTES];
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crypto_core_ed25519_scalar_negate(yn, y);
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crypto_core_ed25519_scalar_add(z, x, yn);
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}
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void
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void
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crypto_core_ed25519_scalar_reduce(unsigned char *r,
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crypto_core_ed25519_scalar_reduce(unsigned char *r,
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const unsigned char *s)
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const unsigned char *s)
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@ -50,6 +50,24 @@ SODIUM_EXPORT
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int crypto_core_ed25519_scalar_invert(unsigned char *recip, const unsigned char *s)
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int crypto_core_ed25519_scalar_invert(unsigned char *recip, const unsigned char *s)
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__attribute__ ((nonnull));
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__attribute__ ((nonnull));
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SODIUM_EXPORT
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void crypto_core_ed25519_scalar_negate(unsigned char *neg, const unsigned char *s)
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__attribute__ ((nonnull));
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SODIUM_EXPORT
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void crypto_core_ed25519_scalar_complement(unsigned char *comp, const unsigned char *s)
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__attribute__ ((nonnull));
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SODIUM_EXPORT
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void crypto_core_ed25519_scalar_add(unsigned char *z, const unsigned char *x,
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const unsigned char *y)
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__attribute__ ((nonnull));
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SODIUM_EXPORT
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void crypto_core_ed25519_scalar_sub(unsigned char *z, const unsigned char *x,
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const unsigned char *y)
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__attribute__ ((nonnull));
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/*
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/*
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* The interval `s` is sampled from should be at least 317 bits to ensure almost
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* The interval `s` is sampled from should be at least 317 bits to ensure almost
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* uniformity of `r` over `L`.
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* uniformity of `r` over `L`.
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@ -174,6 +174,43 @@ main(void)
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printf("crypto_core_ed25519_scalar_reduce() failed\n");
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printf("crypto_core_ed25519_scalar_reduce() failed\n");
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}
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}
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randombytes_buf(h, crypto_core_ed25519_UNIFORMBYTES);
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crypto_core_ed25519_from_uniform(p, h);
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memcpy(p2, p, crypto_core_ed25519_BYTES);
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crypto_core_ed25519_scalar_random(sc);
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if (crypto_scalarmult_ed25519_noclamp(p, sc, p) != 0) {
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printf("crypto_scalarmult_ed25519_noclamp() failed (1)\n");
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}
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crypto_core_ed25519_scalar_complement(sc, sc);
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if (crypto_scalarmult_ed25519_noclamp(p2, sc, p2) != 0) {
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printf("crypto_scalarmult_ed25519_noclamp() failed (2)\n");
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}
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crypto_core_ed25519_add(p3, p, p2);
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crypto_core_ed25519_from_uniform(p, h);
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crypto_core_ed25519_sub(p, p, p3);
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assert(p[0] == 0x01);
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for (i = 1; i < crypto_core_ed25519_BYTES; i++) {
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assert(p[i] == 0);
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}
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randombytes_buf(h, crypto_core_ed25519_UNIFORMBYTES);
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crypto_core_ed25519_from_uniform(p, h);
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memcpy(p2, p, crypto_core_ed25519_BYTES);
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crypto_core_ed25519_scalar_random(sc);
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if (crypto_scalarmult_ed25519_noclamp(p, sc, p) != 0) {
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printf("crypto_scalarmult_ed25519_noclamp() failed (3)\n");
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}
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crypto_core_ed25519_scalar_negate(sc, sc);
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if (crypto_scalarmult_ed25519_noclamp(p2, sc, p2) != 0) {
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printf("crypto_scalarmult_ed25519_noclamp() failed (4)\n");
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}
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crypto_core_ed25519_add(p, p, p2);
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assert(p[0] == 0x01);
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for (i = 1; i < crypto_core_ed25519_BYTES; i++) {
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assert(p[i] == 0);
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}
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sodium_free(sc64);
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sodium_free(sc);
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sodium_free(sc);
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sodium_free(p3);
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sodium_free(p3);
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sodium_free(p2);
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sodium_free(p2);
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