Make flags more explicit, add runtime checks.
Signed-off-by: Rusty Russell <rusty@rustcorp.com.au>
This commit is contained in:
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1a3e03a348
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1a368980c8
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@ -148,11 +148,20 @@ typedef int (*secp256k1_nonce_function)(
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# endif
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/** Flags to pass to secp256k1_context_create. */
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# define SECP256K1_CONTEXT_VERIFY (1 << 0)
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# define SECP256K1_CONTEXT_SIGN (1 << 1)
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# define SECP256K1_CONTEXT_VERIFY (SECP256K1_CONTEXT_VERIFY_BIT|SECP256K1_CONTEXT_CHECK_BIT)
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# define SECP256K1_CONTEXT_SIGN (SECP256K1_CONTEXT_SIGN_BIT|SECP256K1_CONTEXT_CHECK_BIT)
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# define SECP256K1_CONTEXT_NONE (SECP256K1_CONTEXT_CHECK_BIT)
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# define SECP256K1_CONTEXT_VERIFY_BIT (1 << 2)
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# define SECP256K1_CONTEXT_SIGN_BIT (2 << 2)
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# define SECP256K1_CONTEXT_CHECK_BIT (1)
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/** Flag to pass to secp256k1_ec_pubkey_serialize and secp256k1_ec_privkey_export. */
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# define SECP256K1_EC_COMPRESSED (1 << 0)
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# define SECP256K1_EC_COMPRESSED (SECP256K1_EC_COMPRESSED_BIT|SECP256K1_EC_CHECK_BIT)
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# define SECP256K1_EC_UNCOMPRESSED (SECP256K1_EC_CHECK_BIT)
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# define SECP256K1_EC_COMPRESSED_BIT (1 << 2)
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# define SECP256K1_EC_CHECK_BIT (2)
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/** Create a secp256k1 context object.
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*
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@ -261,7 +270,7 @@ SECP256K1_API SECP256K1_WARN_UNUSED_RESULT int secp256k1_ec_pubkey_parse(
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* In: pubkey: a pointer to a secp256k1_pubkey containing an initialized
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* public key.
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* flags: SECP256K1_EC_COMPRESSED if serialization should be in
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* compressed format.
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* compressed format, otherwise SECP256K1_EC_UNCOMPRESSED.
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*/
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SECP256K1_API int secp256k1_ec_pubkey_serialize(
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const secp256k1_context* ctx,
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@ -40,7 +40,7 @@ static int secp256k1_eckey_pubkey_serialize(secp256k1_ge *elem, unsigned char *p
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secp256k1_fe_normalize_var(&elem->x);
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secp256k1_fe_normalize_var(&elem->y);
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secp256k1_fe_get_b32(&pub[1], &elem->x);
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if (flags & SECP256K1_EC_COMPRESSED) {
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if (flags & SECP256K1_EC_COMPRESSED_BIT) {
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*size = 33;
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pub[0] = 0x02 | (secp256k1_fe_is_odd(&elem->y) ? 0x01 : 0x00);
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} else {
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@ -62,13 +62,20 @@ secp256k1_context* secp256k1_context_create(unsigned int flags) {
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ret->illegal_callback = default_illegal_callback;
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ret->error_callback = default_error_callback;
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if (EXPECT(!(flags & SECP256K1_CONTEXT_CHECK_BIT), 0)) {
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secp256k1_callback_call(&ret->illegal_callback,
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"Invalid flags");
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free(ret);
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return NULL;
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}
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secp256k1_ecmult_context_init(&ret->ecmult_ctx);
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secp256k1_ecmult_gen_context_init(&ret->ecmult_gen_ctx);
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if (flags & SECP256K1_CONTEXT_SIGN) {
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if (flags & SECP256K1_CONTEXT_SIGN_BIT) {
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secp256k1_ecmult_gen_context_build(&ret->ecmult_gen_ctx, &ret->error_callback);
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}
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if (flags & SECP256K1_CONTEXT_VERIFY) {
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if (flags & SECP256K1_CONTEXT_VERIFY_BIT) {
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secp256k1_ecmult_context_build(&ret->ecmult_ctx, &ret->error_callback);
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}
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@ -166,6 +173,7 @@ int secp256k1_ec_pubkey_serialize(const secp256k1_context* ctx, unsigned char *o
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ARG_CHECK(output != NULL);
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ARG_CHECK(outputlen != NULL);
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ARG_CHECK(pubkey != NULL);
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ARG_CHECK(flags & SECP256K1_EC_CHECK_BIT);
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return (secp256k1_pubkey_load(ctx, &Q, pubkey) &&
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secp256k1_eckey_pubkey_serialize(&Q, output, outputlen, flags));
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}
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22
src/tests.c
22
src/tests.c
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@ -139,7 +139,7 @@ void run_context_tests(void) {
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unsigned char ctmp[32];
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int32_t ecount;
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int32_t ecount2;
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secp256k1_context *none = secp256k1_context_create(0);
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secp256k1_context *none = secp256k1_context_create(SECP256K1_CONTEXT_NONE);
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secp256k1_context *sign = secp256k1_context_create(SECP256K1_CONTEXT_SIGN);
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secp256k1_context *vrfy = secp256k1_context_create(SECP256K1_CONTEXT_VERIFY);
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secp256k1_context *both = secp256k1_context_create(SECP256K1_CONTEXT_SIGN | SECP256K1_CONTEXT_VERIFY);
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@ -1544,9 +1544,9 @@ void test_point_times_order(const secp256k1_gej *point) {
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secp256k1_ge_set_gej(&res3, &res1);
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CHECK(secp256k1_ge_is_infinity(&res3));
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CHECK(secp256k1_ge_is_valid_var(&res3) == 0);
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CHECK(secp256k1_eckey_pubkey_serialize(&res3, pub, &psize, 0) == 0);
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CHECK(secp256k1_eckey_pubkey_serialize(&res3, pub, &psize, SECP256K1_EC_UNCOMPRESSED) == 0);
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psize = 65;
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CHECK(secp256k1_eckey_pubkey_serialize(&res3, pub, &psize, 1) == 0);
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CHECK(secp256k1_eckey_pubkey_serialize(&res3, pub, &psize, SECP256K1_EC_COMPRESSED) == 0);
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/* check zero/one edge cases */
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secp256k1_ecmult(&ctx->ecmult_ctx, &res1, point, &zero, &zero);
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secp256k1_ge_set_gej(&res3, &res1);
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@ -1964,7 +1964,7 @@ void ec_pubkey_parse_pointtest(const unsigned char *input, int xvalid, int yvali
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VG_CHECK(&pubkey, sizeof(pubkey));
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outl = 65;
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VG_UNDEF(pubkeyo, 65);
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CHECK(secp256k1_ec_pubkey_serialize(ctx, pubkeyo, &outl, &pubkey, 0) == 1);
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CHECK(secp256k1_ec_pubkey_serialize(ctx, pubkeyo, &outl, &pubkey, SECP256K1_EC_UNCOMPRESSED) == 1);
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VG_CHECK(pubkeyo, outl);
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CHECK(outl == 65);
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CHECK(pubkeyo[0] == 4);
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@ -2575,12 +2575,12 @@ void test_ecdsa_end_to_end(void) {
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CHECK(secp256k1_ec_pubkey_create(ctx, &pubkey, privkey) == 1);
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/* Verify exporting and importing public key. */
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CHECK(secp256k1_ec_pubkey_serialize(ctx, pubkeyc, &pubkeyclen, &pubkey, secp256k1_rand_bits(1)) == 1);
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CHECK(secp256k1_ec_pubkey_serialize(ctx, pubkeyc, &pubkeyclen, &pubkey, secp256k1_rand_bits(1) == 1 ? SECP256K1_EC_COMPRESSED : SECP256K1_EC_UNCOMPRESSED));
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memset(&pubkey, 0, sizeof(pubkey));
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CHECK(secp256k1_ec_pubkey_parse(ctx, &pubkey, pubkeyc, pubkeyclen) == 1);
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/* Verify private key import and export. */
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CHECK(secp256k1_ec_privkey_export_der(ctx, seckey, &seckeylen, privkey, secp256k1_rand_bits(1) == 1) ? SECP256K1_EC_COMPRESSED : 0);
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CHECK(secp256k1_ec_privkey_export_der(ctx, seckey, &seckeylen, privkey, secp256k1_rand_bits(1) == 1 ? SECP256K1_EC_COMPRESSED : SECP256K1_EC_UNCOMPRESSED));
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CHECK(secp256k1_ec_privkey_import_der(ctx, privkey2, seckey, seckeylen) == 1);
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CHECK(memcmp(privkey, privkey2, 32) == 0);
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@ -2698,7 +2698,7 @@ void test_random_pubkeys(void) {
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size_t size = len;
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firstb = in[0];
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/* If the pubkey can be parsed, it should round-trip... */
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CHECK(secp256k1_eckey_pubkey_serialize(&elem, out, &size, (len == 33) ? SECP256K1_EC_COMPRESSED : 0));
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CHECK(secp256k1_eckey_pubkey_serialize(&elem, out, &size, (len == 33) ? SECP256K1_EC_COMPRESSED : SECP256K1_EC_UNCOMPRESSED));
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CHECK(size == len);
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CHECK(memcmp(&in[1], &out[1], len-1) == 0);
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/* ... except for the type of hybrid inputs. */
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@ -2706,7 +2706,7 @@ void test_random_pubkeys(void) {
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CHECK(in[0] == out[0]);
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}
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size = 65;
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CHECK(secp256k1_eckey_pubkey_serialize(&elem, in, &size, 0));
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CHECK(secp256k1_eckey_pubkey_serialize(&elem, in, &size, SECP256K1_EC_UNCOMPRESSED));
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CHECK(size == 65);
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CHECK(secp256k1_eckey_pubkey_parse(&elem2, in, size));
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ge_equals_ge(&elem,&elem2);
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@ -2722,7 +2722,7 @@ void test_random_pubkeys(void) {
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}
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if (res) {
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ge_equals_ge(&elem,&elem2);
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CHECK(secp256k1_eckey_pubkey_serialize(&elem, out, &size, 0));
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CHECK(secp256k1_eckey_pubkey_serialize(&elem, out, &size, SECP256K1_EC_UNCOMPRESSED));
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CHECK(memcmp(&in[1], &out[1], 64) == 0);
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}
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}
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@ -3399,7 +3399,7 @@ void test_ecdsa_edge_cases(void) {
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0xbf, 0xd2, 0x5e, 0x8c, 0xd0, 0x36, 0x41, 0x41,
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};
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size_t outlen = 300;
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CHECK(!secp256k1_ec_privkey_export_der(ctx, privkey, &outlen, seckey, 0));
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CHECK(!secp256k1_ec_privkey_export_der(ctx, privkey, &outlen, seckey, SECP256K1_EC_UNCOMPRESSED));
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outlen = 300;
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CHECK(!secp256k1_ec_privkey_export_der(ctx, privkey, &outlen, seckey, SECP256K1_EC_COMPRESSED));
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}
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@ -3416,7 +3416,7 @@ EC_KEY *get_openssl_key(const secp256k1_scalar *key) {
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const unsigned char* pbegin = privkey;
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int compr = secp256k1_rand_bits(1);
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EC_KEY *ec_key = EC_KEY_new_by_curve_name(NID_secp256k1);
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CHECK(secp256k1_eckey_privkey_serialize(&ctx->ecmult_gen_ctx, privkey, &privkeylen, key, compr ? SECP256K1_EC_COMPRESSED : 0));
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CHECK(secp256k1_eckey_privkey_serialize(&ctx->ecmult_gen_ctx, privkey, &privkeylen, key, compr ? SECP256K1_EC_COMPRESSED : SECP256K1_EC_UNCOMPRESSED));
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CHECK(d2i_ECPrivateKey(&ec_key, &pbegin, privkeylen));
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CHECK(EC_KEY_check_key(ec_key));
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return ec_key;
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