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0cdc758a563 Merge bitcoin-core/secp256k1#1631: release: prepare for 0.6.0 39d5dfd542a release: prepare for 0.6.0 df2eceb2790 build: add ellswift.md and musig.md to release tarball a306bb7e903 tools: fix check-abi.sh after cmake out locations were changed 145868a84d2 Do not export `secp256k1_musig_nonce_gen_internal` b161bffb8bf Merge bitcoin-core/secp256k1#1579: Clear sensitive memory without getting optimized out (revival of #636) a38d879a1a6 Merge bitcoin-core/secp256k1#1628: Name public API structs 7d48f5ed02e Merge bitcoin-core/secp256k1#1581: test, ci: Lower default iteration count to 16 694342fdb71 Name public API structs 0f73caf7c62 test, ci: Lower default iteration count to 16 9a8db52f4e9 Merge bitcoin-core/secp256k1#1582: cmake, test: Add `secp256k1_` prefix to test names 765ef53335a Clear _gej instances after point multiplication to avoid potential leaks 349e6ab916b Introduce separate _clear functions for hash module 99cc9fd6d01 Don't rely on memset to set signed integers to 0 97c57f42ba8 Implement various _clear() functions with secp256k1_memclear() 9bb368d1466 Use secp256k1_memclear() to clear stack memory instead of memset() e3497bbf001 Separate between clearing memory and setting to zero in tests d79a6ccd43a Separate secp256k1_fe_set_int( . , 0 ) from secp256k1_fe_clear() 1c081262227 Add secp256k1_memclear() for clearing secret data 1464f15c812 Merge bitcoin-core/secp256k1#1625: util: Remove unused (u)int64_t formatting macros 980c08df80a util: Remove unused (u)int64_t formatting macros 9b7c59cbb90 Merge bitcoin-core/secp256k1#1624: ci: Update macOS image 096e3e23f63 ci: Update macOS image e7d384488e8 Don't clear secrets in pippenger implementation 68b55209f1b Merge bitcoin-core/secp256k1#1619: musig: ctimetests: fix _declassify range for generated nonce points f0868a9b3d8 Merge bitcoin-core/secp256k1#1595: build: 45839th attempt to fix symbol visibility on Windows 1fae76f50c0 Merge bitcoin-core/secp256k1#1620: Remove unused scratch space from API 8be3839fb2e Remove unused scratch space from API 57eda3ba300 musig: ctimetests: fix _declassify range for generated nonce points 87384f5c0f2 cmake, test: Add `secp256k1_` prefix to test names e59158b6eb7 Merge bitcoin-core/secp256k1#1553: cmake: Set top-level target output locations 18f9b967c25 Merge bitcoin-core/secp256k1#1616: examples: do not retry generating seckey randomness in musig 5bab8f6d3c4 examples: make key generation doc consistent e8908221a45 examples: do not retry generating seckey randomness in musig 70b6be1834e extrakeys: improve doc of keypair_create (don't suggest retry) 01b5893389e Merge bitcoin-core/secp256k1#1599: #1570 improve examples: remove key generation loop cd4f84f3ba8 Improve examples/documentation: remove key generation loops a88aa935063 Merge bitcoin-core/secp256k1#1603: f can never equal -m 3660fe5e2a9 Merge bitcoin-core/secp256k1#1479: Add module "musig" that implements MuSig2 multi-signatures (BIP 327) 168c92011f5 build: allow enabling the musig module in cmake f411841a46b Add module "musig" that implements MuSig2 multi-signatures (BIP 327) 0be79660f38 util: add constant-time is_zero_array function c8fbdb1b972 group: add ge_to_bytes_ext and ge_from_bytes_ext ef7ff03407f f can never equal -m c232486d84e Revert "cmake: Set `ENVIRONMENT` property for examples on Windows" 26e4a7c2146 cmake: Set top-level target output locations 4c57c7a5a95 Merge bitcoin-core/secp256k1#1554: cmake: Clean up testing code 447334cb06d include: Avoid visibility("default") on Windows 472faaa8ee6 Merge bitcoin-core/secp256k1#1604: doc: fix typos in `secp256k1_ecdsa_{recoverable_,}signature` API description 292310fbb24 doc: fix typos in `secp256k1_ecdsa_{recoverable_,}signature` API description 85e224dd97f group: add ge_to_bytes and ge_from_bytes 7c987ec89e6 cmake: Call `enable_testing()` unconditionally 6aa576515ef cmake: Delete `CTest` module git-subtree-dir: src/secp256k1 git-subtree-split: 0cdc758a56360bf58a851fe91085a327ec97685a
191 lines
8.0 KiB
C
191 lines
8.0 KiB
C
#ifndef SECP256K1_SCHNORRSIG_H
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#define SECP256K1_SCHNORRSIG_H
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#include "secp256k1.h"
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#include "secp256k1_extrakeys.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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/** This module implements a variant of Schnorr signatures compliant with
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* Bitcoin Improvement Proposal 340 "Schnorr Signatures for secp256k1"
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* (https://github.com/bitcoin/bips/blob/master/bip-0340.mediawiki).
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*/
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/** A pointer to a function to deterministically generate a nonce.
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*
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* Same as secp256k1_nonce function with the exception of accepting an
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* additional pubkey argument and not requiring an attempt argument. The pubkey
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* argument can protect signature schemes with key-prefixed challenge hash
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* inputs against reusing the nonce when signing with the wrong precomputed
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* pubkey.
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*
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* Returns: 1 if a nonce was successfully generated. 0 will cause signing to
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* return an error.
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* Out: nonce32: pointer to a 32-byte array to be filled by the function
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* In: msg: the message being verified. Is NULL if and only if msglen
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* is 0.
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* msglen: the length of the message
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* key32: pointer to a 32-byte secret key (will not be NULL)
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* xonly_pk32: the 32-byte serialized xonly pubkey corresponding to key32
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* (will not be NULL)
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* algo: pointer to an array describing the signature
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* algorithm (will not be NULL)
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* algolen: the length of the algo array
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* data: arbitrary data pointer that is passed through
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*
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* Except for test cases, this function should compute some cryptographic hash of
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* the message, the key, the pubkey, the algorithm description, and data.
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*/
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typedef int (*secp256k1_nonce_function_hardened)(
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unsigned char *nonce32,
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const unsigned char *msg,
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size_t msglen,
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const unsigned char *key32,
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const unsigned char *xonly_pk32,
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const unsigned char *algo,
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size_t algolen,
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void *data
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);
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/** An implementation of the nonce generation function as defined in Bitcoin
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* Improvement Proposal 340 "Schnorr Signatures for secp256k1"
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* (https://github.com/bitcoin/bips/blob/master/bip-0340.mediawiki).
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*
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* If a data pointer is passed, it is assumed to be a pointer to 32 bytes of
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* auxiliary random data as defined in BIP-340. If the data pointer is NULL,
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* the nonce derivation procedure follows BIP-340 by setting the auxiliary
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* random data to zero. The algo argument must be non-NULL, otherwise the
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* function will fail and return 0. The hash will be tagged with algo.
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* Therefore, to create BIP-340 compliant signatures, algo must be set to
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* "BIP0340/nonce" and algolen to 13.
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*/
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SECP256K1_API const secp256k1_nonce_function_hardened secp256k1_nonce_function_bip340;
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/** Data structure that contains additional arguments for schnorrsig_sign_custom.
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*
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* A schnorrsig_extraparams structure object can be initialized correctly by
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* setting it to SECP256K1_SCHNORRSIG_EXTRAPARAMS_INIT.
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*
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* Members:
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* magic: set to SECP256K1_SCHNORRSIG_EXTRAPARAMS_MAGIC at initialization
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* and has no other function than making sure the object is
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* initialized.
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* noncefp: pointer to a nonce generation function. If NULL,
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* secp256k1_nonce_function_bip340 is used
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* ndata: pointer to arbitrary data used by the nonce generation function
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* (can be NULL). If it is non-NULL and
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* secp256k1_nonce_function_bip340 is used, then ndata must be a
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* pointer to 32-byte auxiliary randomness as per BIP-340.
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*/
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typedef struct secp256k1_schnorrsig_extraparams {
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unsigned char magic[4];
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secp256k1_nonce_function_hardened noncefp;
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void *ndata;
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} secp256k1_schnorrsig_extraparams;
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#define SECP256K1_SCHNORRSIG_EXTRAPARAMS_MAGIC { 0xda, 0x6f, 0xb3, 0x8c }
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#define SECP256K1_SCHNORRSIG_EXTRAPARAMS_INIT {\
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SECP256K1_SCHNORRSIG_EXTRAPARAMS_MAGIC,\
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NULL,\
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NULL\
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}
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/** Create a Schnorr signature.
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*
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* Does _not_ strictly follow BIP-340 because it does not verify the resulting
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* signature. Instead, you can manually use secp256k1_schnorrsig_verify and
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* abort if it fails.
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*
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* This function only signs 32-byte messages. If you have messages of a
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* different size (or the same size but without a context-specific tag
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* prefix), it is recommended to create a 32-byte message hash with
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* secp256k1_tagged_sha256 and then sign the hash. Tagged hashing allows
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* providing an context-specific tag for domain separation. This prevents
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* signatures from being valid in multiple contexts by accident.
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*
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* Returns 1 on success, 0 on failure.
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* Args: ctx: pointer to a context object (not secp256k1_context_static).
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* Out: sig64: pointer to a 64-byte array to store the serialized signature.
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* In: msg32: the 32-byte message being signed.
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* keypair: pointer to an initialized keypair.
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* aux_rand32: 32 bytes of fresh randomness. While recommended to provide
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* this, it is only supplemental to security and can be NULL. A
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* NULL argument is treated the same as an all-zero one. See
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* BIP-340 "Default Signing" for a full explanation of this
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* argument and for guidance if randomness is expensive.
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*/
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SECP256K1_API int secp256k1_schnorrsig_sign32(
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const secp256k1_context *ctx,
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unsigned char *sig64,
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const unsigned char *msg32,
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const secp256k1_keypair *keypair,
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const unsigned char *aux_rand32
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) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3) SECP256K1_ARG_NONNULL(4);
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/** Same as secp256k1_schnorrsig_sign32, but DEPRECATED. Will be removed in
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* future versions. */
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SECP256K1_API int secp256k1_schnorrsig_sign(
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const secp256k1_context *ctx,
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unsigned char *sig64,
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const unsigned char *msg32,
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const secp256k1_keypair *keypair,
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const unsigned char *aux_rand32
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) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3) SECP256K1_ARG_NONNULL(4)
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SECP256K1_DEPRECATED("Use secp256k1_schnorrsig_sign32 instead");
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/** Create a Schnorr signature with a more flexible API.
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*
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* Same arguments as secp256k1_schnorrsig_sign except that it allows signing
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* variable length messages and accepts a pointer to an extraparams object that
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* allows customizing signing by passing additional arguments.
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*
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* Equivalent to secp256k1_schnorrsig_sign32(..., aux_rand32) if msglen is 32
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* and extraparams is initialized as follows:
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* ```
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* secp256k1_schnorrsig_extraparams extraparams = SECP256K1_SCHNORRSIG_EXTRAPARAMS_INIT;
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* extraparams.ndata = (unsigned char*)aux_rand32;
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* ```
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*
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* Returns 1 on success, 0 on failure.
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* Args: ctx: pointer to a context object (not secp256k1_context_static).
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* Out: sig64: pointer to a 64-byte array to store the serialized signature.
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* In: msg: the message being signed. Can only be NULL if msglen is 0.
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* msglen: length of the message.
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* keypair: pointer to an initialized keypair.
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* extraparams: pointer to an extraparams object (can be NULL).
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*/
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SECP256K1_API int secp256k1_schnorrsig_sign_custom(
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const secp256k1_context *ctx,
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unsigned char *sig64,
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const unsigned char *msg,
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size_t msglen,
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const secp256k1_keypair *keypair,
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secp256k1_schnorrsig_extraparams *extraparams
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) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(5);
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/** Verify a Schnorr signature.
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*
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* Returns: 1: correct signature
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* 0: incorrect signature
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* Args: ctx: pointer to a context object.
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* In: sig64: pointer to the 64-byte signature to verify.
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* msg: the message being verified. Can only be NULL if msglen is 0.
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* msglen: length of the message
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* pubkey: pointer to an x-only public key to verify with
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*/
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SECP256K1_API SECP256K1_WARN_UNUSED_RESULT int secp256k1_schnorrsig_verify(
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const secp256k1_context *ctx,
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const unsigned char *sig64,
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const unsigned char *msg,
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size_t msglen,
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const secp256k1_xonly_pubkey *pubkey
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) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(5);
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#ifdef __cplusplus
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}
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#endif
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#endif /* SECP256K1_SCHNORRSIG_H */
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