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Use separate in and out pointers in secp256k1_ec_pubkey_decompress
Right now `secp256k1_ec_pubkey_decompress` takes an in/out pointer to a public key and replaces the input key with its decompressed variant. This forces users who store compressed keys in small (<65 byte) fixed size buffers (for example, the Rust bindings do this) to explicitly and wastefully copy their key to a larger buffer. [API BREAK]
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@ -262,18 +262,20 @@ SECP256K1_WARN_UNUSED_RESULT int secp256k1_ec_pubkey_create(
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/** Decompress a public key.
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* In: ctx: pointer to a context object (cannot be NULL)
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* In/Out: pubkey: pointer to a 65-byte array to put the decompressed public key.
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* It must contain a 33-byte or 65-byte public key already (cannot be NULL)
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* pubkeylen: pointer to the size of the public key pointed to by pubkey (cannot be NULL)
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* It will be updated to reflect the new size.
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* Returns: 0: pubkey was invalid
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* 1: pubkey was valid, and was replaced with its decompressed version
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* In: pubkeyin: pointer to a 33-byte or 65-byte public key (cannot be NULL)
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* In/Out: pubkeyout: pointer to a 65-byte array to put the decompressed public key (cannot be NULL)
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* May alias pubkeyin.
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* pubkeylen: pointer to the size of the public key pointed to by pubkeyin (cannot be NULL)
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* It will be updated to reflect the size of the public key in pubkeyout.
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* Returns: 0: pubkeyin was invalid
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* 1: pubkeyin was valid, and pubkeyout is its decompressed version
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*/
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SECP256K1_WARN_UNUSED_RESULT int secp256k1_ec_pubkey_decompress(
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const secp256k1_context_t* ctx,
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unsigned char *pubkey,
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const unsigned char *pubkeyin,
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unsigned char *pubkeyout,
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int *pubkeylen
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) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3);
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) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3) SECP256K1_ARG_NONNULL(4);
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/** Export a private key in DER format.
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* In: ctx: pointer to a context object, initialized for signing (cannot be NULL)
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@ -271,15 +271,16 @@ int secp256k1_ec_pubkey_create(const secp256k1_context_t* ctx, unsigned char *pu
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return ret;
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}
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int secp256k1_ec_pubkey_decompress(const secp256k1_context_t* ctx, unsigned char *pubkey, int *pubkeylen) {
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int secp256k1_ec_pubkey_decompress(const secp256k1_context_t* ctx, const unsigned char *pubkeyin, unsigned char *pubkeyout, int *pubkeylen) {
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secp256k1_ge_t p;
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int ret = 0;
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DEBUG_CHECK(pubkey != NULL);
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DEBUG_CHECK(pubkeyin != NULL);
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DEBUG_CHECK(pubkeyout != NULL);
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DEBUG_CHECK(pubkeylen != NULL);
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(void)ctx;
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if (secp256k1_eckey_pubkey_parse(&p, pubkey, *pubkeylen)) {
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ret = secp256k1_eckey_pubkey_serialize(&p, pubkey, pubkeylen, 0);
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if (secp256k1_eckey_pubkey_parse(&p, pubkeyin, *pubkeylen)) {
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ret = secp256k1_eckey_pubkey_serialize(&p, pubkeyout, pubkeylen, 0);
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}
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return ret;
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}
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14
src/tests.c
14
src/tests.c
@ -1511,7 +1511,19 @@ void test_ecdsa_end_to_end(void) {
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CHECK(secp256k1_ec_seckey_verify(ctx, privkey) == 1);
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CHECK(secp256k1_ec_pubkey_create(ctx, pubkey, &pubkeylen, privkey, (secp256k1_rand32() & 3) != 0) == 1);
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if (secp256k1_rand32() & 1) {
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CHECK(secp256k1_ec_pubkey_decompress(ctx, pubkey, &pubkeylen));
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unsigned char pubkey2[65] = {0};
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int pubkey2len = pubkeylen;
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/* Decompress into a new array */
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CHECK(secp256k1_ec_pubkey_decompress(ctx, pubkey, pubkey2, &pubkey2len));
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/* Check that the key was changed iff it was originally compressed */
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if (pubkeylen == 65) {
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CHECK(memcmp(pubkey, pubkey2, 65) == 0);
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} else {
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CHECK(memcmp(pubkey, pubkey2, 65) != 0);
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}
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/* Decompress in place */
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CHECK(secp256k1_ec_pubkey_decompress(ctx, pubkey, pubkey, &pubkeylen));
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CHECK(memcmp(pubkey, pubkey2, 65) == 0);
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}
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CHECK(secp256k1_ec_pubkey_verify(ctx, pubkey, pubkeylen));
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