Bitcoin Core 28.0.0
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pubkey.cpp
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1// Copyright (c) 2009-2022 The Bitcoin Core developers
2// Copyright (c) 2017 The Zcash developers
3// Distributed under the MIT software license, see the accompanying
4// file COPYING or http://www.opensource.org/licenses/mit-license.php.
5
6#include <pubkey.h>
7
8#include <hash.h>
9#include <secp256k1.h>
10#include <secp256k1_ellswift.h>
11#include <secp256k1_extrakeys.h>
12#include <secp256k1_recovery.h>
14#include <span.h>
15#include <uint256.h>
16#include <util/strencodings.h>
17
18#include <algorithm>
19#include <cassert>
20
21namespace {
22
23struct Secp256k1SelfTester
24{
25 Secp256k1SelfTester() {
26 /* Run libsecp256k1 self-test before using the secp256k1_context_static. */
28 }
29} SECP256K1_SELFTESTER;
30
31} // namespace
32
43int ecdsa_signature_parse_der_lax(secp256k1_ecdsa_signature* sig, const unsigned char *input, size_t inputlen) {
44 size_t rpos, rlen, spos, slen;
45 size_t pos = 0;
46 size_t lenbyte;
47 unsigned char tmpsig[64] = {0};
48 int overflow = 0;
49
50 /* Hack to initialize sig with a correctly-parsed but invalid signature. */
52
53 /* Sequence tag byte */
54 if (pos == inputlen || input[pos] != 0x30) {
55 return 0;
56 }
57 pos++;
58
59 /* Sequence length bytes */
60 if (pos == inputlen) {
61 return 0;
62 }
63 lenbyte = input[pos++];
64 if (lenbyte & 0x80) {
65 lenbyte -= 0x80;
66 if (lenbyte > inputlen - pos) {
67 return 0;
68 }
69 pos += lenbyte;
70 }
71
72 /* Integer tag byte for R */
73 if (pos == inputlen || input[pos] != 0x02) {
74 return 0;
75 }
76 pos++;
77
78 /* Integer length for R */
79 if (pos == inputlen) {
80 return 0;
81 }
82 lenbyte = input[pos++];
83 if (lenbyte & 0x80) {
84 lenbyte -= 0x80;
85 if (lenbyte > inputlen - pos) {
86 return 0;
87 }
88 while (lenbyte > 0 && input[pos] == 0) {
89 pos++;
90 lenbyte--;
91 }
92 static_assert(sizeof(size_t) >= 4, "size_t too small");
93 if (lenbyte >= 4) {
94 return 0;
95 }
96 rlen = 0;
97 while (lenbyte > 0) {
98 rlen = (rlen << 8) + input[pos];
99 pos++;
100 lenbyte--;
101 }
102 } else {
103 rlen = lenbyte;
104 }
105 if (rlen > inputlen - pos) {
106 return 0;
107 }
108 rpos = pos;
109 pos += rlen;
110
111 /* Integer tag byte for S */
112 if (pos == inputlen || input[pos] != 0x02) {
113 return 0;
114 }
115 pos++;
116
117 /* Integer length for S */
118 if (pos == inputlen) {
119 return 0;
120 }
121 lenbyte = input[pos++];
122 if (lenbyte & 0x80) {
123 lenbyte -= 0x80;
124 if (lenbyte > inputlen - pos) {
125 return 0;
126 }
127 while (lenbyte > 0 && input[pos] == 0) {
128 pos++;
129 lenbyte--;
130 }
131 static_assert(sizeof(size_t) >= 4, "size_t too small");
132 if (lenbyte >= 4) {
133 return 0;
134 }
135 slen = 0;
136 while (lenbyte > 0) {
137 slen = (slen << 8) + input[pos];
138 pos++;
139 lenbyte--;
140 }
141 } else {
142 slen = lenbyte;
143 }
144 if (slen > inputlen - pos) {
145 return 0;
146 }
147 spos = pos;
148
149 /* Ignore leading zeroes in R */
150 while (rlen > 0 && input[rpos] == 0) {
151 rlen--;
152 rpos++;
153 }
154 /* Copy R value */
155 if (rlen > 32) {
156 overflow = 1;
157 } else {
158 memcpy(tmpsig + 32 - rlen, input + rpos, rlen);
159 }
160
161 /* Ignore leading zeroes in S */
162 while (slen > 0 && input[spos] == 0) {
163 slen--;
164 spos++;
165 }
166 /* Copy S value */
167 if (slen > 32) {
168 overflow = 1;
169 } else {
170 memcpy(tmpsig + 64 - slen, input + spos, slen);
171 }
172
173 if (!overflow) {
175 }
176 if (overflow) {
177 /* Overwrite the result again with a correctly-parsed but invalid
178 signature if parsing failed. */
179 memset(tmpsig, 0, 64);
181 }
182 return 1;
183}
184
193static const std::vector<unsigned char> NUMS_H_DATA{ParseHex("50929b74c1a04954b78b4b6035e97a5e078a5a0f28ec96d547bfee9ace803ac0")};
195
197{
198 assert(bytes.size() == 32);
199 std::copy(bytes.begin(), bytes.end(), m_keydata.begin());
200}
201
202std::vector<CKeyID> XOnlyPubKey::GetKeyIDs() const
203{
204 std::vector<CKeyID> out;
205 // For now, use the old full pubkey-based key derivation logic. As it is indexed by
206 // Hash160(full pubkey), we need to return both a version prefixed with 0x02, and one
207 // with 0x03.
208 unsigned char b[33] = {0x02};
209 std::copy(m_keydata.begin(), m_keydata.end(), b + 1);
210 CPubKey fullpubkey;
211 fullpubkey.Set(b, b + 33);
212 out.push_back(fullpubkey.GetID());
213 b[0] = 0x03;
214 fullpubkey.Set(b, b + 33);
215 out.push_back(fullpubkey.GetID());
216 return out;
217}
218
220{
221 unsigned char full_key[CPubKey::COMPRESSED_SIZE] = {0x02};
222 std::copy(begin(), end(), full_key + 1);
223 return CPubKey{full_key};
224}
225
231
233{
234 assert(sigbytes.size() == 64);
237 return secp256k1_schnorrsig_verify(secp256k1_context_static, sigbytes.data(), msg.begin(), 32, &pubkey);
238}
239
240static const HashWriter HASHER_TAPTWEAK{TaggedHash("TapTweak")};
241
243{
244 if (merkle_root == nullptr) {
245 // We have no scripts. The actual tweak does not matter, but follow BIP341 here to
246 // allow for reproducible tweaking.
247 return (HashWriter{HASHER_TAPTWEAK} << m_keydata).GetSHA256();
248 } else {
249 return (HashWriter{HASHER_TAPTWEAK} << m_keydata << *merkle_root).GetSHA256();
250 }
251}
252
253bool XOnlyPubKey::CheckTapTweak(const XOnlyPubKey& internal, const uint256& merkle_root, bool parity) const
254{
255 secp256k1_xonly_pubkey internal_key;
256 if (!secp256k1_xonly_pubkey_parse(secp256k1_context_static, &internal_key, internal.data())) return false;
257 uint256 tweak = internal.ComputeTapTweakHash(&merkle_root);
259}
260
261std::optional<std::pair<XOnlyPubKey, bool>> XOnlyPubKey::CreateTapTweak(const uint256* merkle_root) const
262{
263 secp256k1_xonly_pubkey base_point;
264 if (!secp256k1_xonly_pubkey_parse(secp256k1_context_static, &base_point, data())) return std::nullopt;
266 uint256 tweak = ComputeTapTweakHash(merkle_root);
267 if (!secp256k1_xonly_pubkey_tweak_add(secp256k1_context_static, &out, &base_point, tweak.data())) return std::nullopt;
268 int parity = -1;
269 std::pair<XOnlyPubKey, bool> ret;
270 secp256k1_xonly_pubkey out_xonly;
271 if (!secp256k1_xonly_pubkey_from_pubkey(secp256k1_context_static, &out_xonly, &parity, &out)) return std::nullopt;
273 assert(parity == 0 || parity == 1);
274 ret.second = parity;
275 return ret;
276}
277
278
279bool CPubKey::Verify(const uint256 &hash, const std::vector<unsigned char>& vchSig) const {
280 if (!IsValid())
281 return false;
282 secp256k1_pubkey pubkey;
285 return false;
286 }
287 if (!ecdsa_signature_parse_der_lax(&sig, vchSig.data(), vchSig.size())) {
288 return false;
289 }
290 /* libsecp256k1's ECDSA verification requires lower-S signatures, which have
291 * not historically been enforced in Bitcoin, so normalize them first. */
293 return secp256k1_ecdsa_verify(secp256k1_context_static, &sig, hash.begin(), &pubkey);
294}
295
296bool CPubKey::RecoverCompact(const uint256 &hash, const std::vector<unsigned char>& vchSig) {
297 if (vchSig.size() != COMPACT_SIGNATURE_SIZE)
298 return false;
299 int recid = (vchSig[0] - 27) & 3;
300 bool fComp = ((vchSig[0] - 27) & 4) != 0;
301 secp256k1_pubkey pubkey;
304 return false;
305 }
306 if (!secp256k1_ecdsa_recover(secp256k1_context_static, &pubkey, &sig, hash.begin())) {
307 return false;
308 }
309 unsigned char pub[SIZE];
310 size_t publen = SIZE;
312 Set(pub, pub + publen);
313 return true;
314}
315
317 if (!IsValid())
318 return false;
319 secp256k1_pubkey pubkey;
321}
322
324 if (!IsValid())
325 return false;
326 secp256k1_pubkey pubkey;
328 return false;
329 }
330 unsigned char pub[SIZE];
331 size_t publen = SIZE;
333 Set(pub, pub + publen);
334 return true;
335}
336
337bool CPubKey::Derive(CPubKey& pubkeyChild, ChainCode &ccChild, unsigned int nChild, const ChainCode& cc) const {
338 assert(IsValid());
339 assert((nChild >> 31) == 0);
341 unsigned char out[64];
342 BIP32Hash(cc, nChild, *begin(), begin()+1, out);
343 memcpy(ccChild.begin(), out+32, 32);
344 secp256k1_pubkey pubkey;
346 return false;
347 }
349 return false;
350 }
351 unsigned char pub[COMPRESSED_SIZE];
352 size_t publen = COMPRESSED_SIZE;
354 pubkeyChild.Set(pub, pub + publen);
355 return true;
356}
357
359{
360 assert(ellswift.size() == SIZE);
361 std::copy(ellswift.begin(), ellswift.end(), m_pubkey.begin());
362}
363
365{
366 secp256k1_pubkey pubkey;
368
369 size_t sz = CPubKey::COMPRESSED_SIZE;
370 std::array<uint8_t, CPubKey::COMPRESSED_SIZE> vch_bytes;
371
373 assert(sz == vch_bytes.size());
374
375 return CPubKey{vch_bytes.begin(), vch_bytes.end()};
376}
377
378void CExtPubKey::Encode(unsigned char code[BIP32_EXTKEY_SIZE]) const {
379 code[0] = nDepth;
380 memcpy(code+1, vchFingerprint, 4);
381 WriteBE32(code+5, nChild);
382 memcpy(code+9, chaincode.begin(), 32);
384 memcpy(code+41, pubkey.begin(), CPubKey::COMPRESSED_SIZE);
385}
386
387void CExtPubKey::Decode(const unsigned char code[BIP32_EXTKEY_SIZE]) {
388 nDepth = code[0];
389 memcpy(vchFingerprint, code+1, 4);
390 nChild = ReadBE32(code+5);
391 memcpy(chaincode.begin(), code+9, 32);
392 pubkey.Set(code+41, code+BIP32_EXTKEY_SIZE);
393 if ((nDepth == 0 && (nChild != 0 || ReadLE32(vchFingerprint) != 0)) || !pubkey.IsFullyValid()) pubkey = CPubKey();
394}
395
397{
398 memcpy(code, version, 4);
399 Encode(&code[4]);
400}
401
403{
404 memcpy(version, code, 4);
405 Decode(&code[4]);
406}
407
408bool CExtPubKey::Derive(CExtPubKey &out, unsigned int _nChild) const {
409 if (nDepth == std::numeric_limits<unsigned char>::max()) return false;
410 out.nDepth = nDepth + 1;
411 CKeyID id = pubkey.GetID();
412 memcpy(out.vchFingerprint, &id, 4);
413 out.nChild = _nChild;
414 return pubkey.Derive(out.pubkey, out.chaincode, _nChild, chaincode);
415}
416
417/* static */ bool CPubKey::CheckLowS(const std::vector<unsigned char>& vchSig) {
419 if (!ecdsa_signature_parse_der_lax(&sig, vchSig.data(), vchSig.size())) {
420 return false;
421 }
423}
int ret
A reference to a CKey: the Hash160 of its serialized public key.
Definition pubkey.h:24
An encapsulated public key.
Definition pubkey.h:34
bool RecoverCompact(const uint256 &hash, const std::vector< unsigned char > &vchSig)
Recover a public key from a compact signature.
Definition pubkey.cpp:296
CKeyID GetID() const
Get the KeyID of this public key (hash of its serialization)
Definition pubkey.h:164
static constexpr unsigned int COMPRESSED_SIZE
Definition pubkey.h:40
static bool CheckLowS(const std::vector< unsigned char > &vchSig)
Check whether a signature is normalized (lower-S).
Definition pubkey.cpp:417
bool IsValid() const
Definition pubkey.h:189
bool Decompress()
Turn this public key into an uncompressed public key.
Definition pubkey.cpp:323
bool Verify(const uint256 &hash, const std::vector< unsigned char > &vchSig) const
Verify a DER signature (~72 bytes).
Definition pubkey.cpp:279
static constexpr unsigned int SIZE
secp256k1:
Definition pubkey.h:39
bool IsFullyValid() const
fully validate whether this is a valid public key (more expensive than IsValid())
Definition pubkey.cpp:316
unsigned int size() const
Simple read-only vector-like interface to the pubkey data.
Definition pubkey.h:112
const unsigned char * begin() const
Definition pubkey.h:114
unsigned char vch[SIZE]
see www.keylength.com script supports up to 75 for single byte push
Definition pubkey.h:57
bool Derive(CPubKey &pubkeyChild, ChainCode &ccChild, unsigned int nChild, const ChainCode &cc) const
Derive BIP32 child pubkey.
Definition pubkey.cpp:337
static constexpr unsigned int COMPACT_SIGNATURE_SIZE
Definition pubkey.h:42
void Set(const T pbegin, const T pend)
Initialize a public key using begin/end iterators to byte data.
Definition pubkey.h:89
A writer stream (for serialization) that computes a 256-bit hash.
Definition hash.h:101
A Span is an object that can refer to a contiguous sequence of objects.
Definition span.h:98
constexpr std::size_t size() const noexcept
Definition span.h:187
constexpr C * data() const noexcept
Definition span.h:174
constexpr C * begin() const noexcept
Definition span.h:175
constexpr C * end() const noexcept
Definition span.h:176
const unsigned char * end() const
Definition pubkey.h:296
const unsigned char * begin() const
Definition pubkey.h:295
std::optional< std::pair< XOnlyPubKey, bool > > CreateTapTweak(const uint256 *merkle_root) const
Construct a Taproot tweaked output point with this point as internal key.
Definition pubkey.cpp:261
bool CheckTapTweak(const XOnlyPubKey &internal, const uint256 &merkle_root, bool parity) const
Verify that this is a Taproot tweaked output point, against a specified internal key,...
Definition pubkey.cpp:253
const unsigned char * data() const
Definition pubkey.h:294
CPubKey GetEvenCorrespondingCPubKey() const
Definition pubkey.cpp:219
uint256 m_keydata
Definition pubkey.h:233
bool IsFullyValid() const
Determine if this pubkey is fully valid.
Definition pubkey.cpp:226
bool VerifySchnorr(const uint256 &msg, Span< const unsigned char > sigbytes) const
Verify a Schnorr signature against this public key.
Definition pubkey.cpp:232
std::vector< CKeyID > GetKeyIDs() const
Returns a list of CKeyIDs for the CPubKeys that could have been used to create this XOnlyPubKey.
Definition pubkey.cpp:202
static const XOnlyPubKey NUMS_H
Nothing Up My Sleeve point H Used as an internal key for provably disabling the key path spend see BI...
Definition pubkey.h:194
uint256 ComputeTapTweakHash(const uint256 *merkle_root) const
Compute the Taproot tweak as specified in BIP341, with *this as internal key:
Definition pubkey.cpp:242
XOnlyPubKey()=default
Construct an empty x-only pubkey.
constexpr unsigned char * end()
Definition uint256.h:103
constexpr unsigned char * begin()
Definition uint256.h:102
constexpr const unsigned char * data() const
Definition uint256.h:99
256-bit opaque blob.
Definition uint256.h:178
static uint32_t ReadLE32(const unsigned char *ptr)
Definition common.h:20
static void WriteBE32(unsigned char *ptr, uint32_t x)
Definition common.h:73
static uint32_t ReadBE32(const unsigned char *ptr)
Definition common.h:59
void BIP32Hash(const ChainCode &chainCode, unsigned int nChild, unsigned char header, const unsigned char data[32], unsigned char output[64])
Definition hash.cpp:71
HashWriter TaggedHash(const std::string &tag)
Return a HashWriter primed for tagged hashes (as specified in BIP 340).
Definition hash.cpp:85
static const HashWriter HASHER_TAPTWEAK
Definition pubkey.cpp:240
static const std::vector< unsigned char > NUMS_H_DATA
Nothing Up My Sleeve (NUMS) point.
Definition pubkey.cpp:193
int ecdsa_signature_parse_der_lax(secp256k1_ecdsa_signature *sig, const unsigned char *input, size_t inputlen)
This function is taken from the libsecp256k1 distribution and implements DER parsing for ECDSA signat...
Definition pubkey.cpp:43
const unsigned int BIP32_EXTKEY_WITH_VERSION_SIZE
Definition pubkey.h:20
const unsigned int BIP32_EXTKEY_SIZE
Definition pubkey.h:19
SECP256K1_API int secp256k1_ecdsa_signature_parse_compact(const secp256k1_context *ctx, secp256k1_ecdsa_signature *sig, const unsigned char *input64) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3)
Parse an ECDSA signature in compact (64 bytes) format.
Definition secp256k1.c:397
SECP256K1_API int secp256k1_ec_pubkey_serialize(const secp256k1_context *ctx, unsigned char *output, size_t *outputlen, const secp256k1_pubkey *pubkey, unsigned int flags) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3) SECP256K1_ARG_NONNULL(4)
Serialize a pubkey object into a serialized byte sequence.
Definition secp256k1.c:280
SECP256K1_API SECP256K1_WARN_UNUSED_RESULT int secp256k1_ec_pubkey_parse(const secp256k1_context *ctx, secp256k1_pubkey *pubkey, const unsigned char *input, size_t inputlen) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3)
Parse a variable-length public key into the pubkey object.
Definition secp256k1.c:262
SECP256K1_API void secp256k1_selftest(void)
Perform basic self tests (to be used in conjunction with secp256k1_context_static)
Definition secp256k1.c:86
#define SECP256K1_EC_COMPRESSED
Flag to pass to secp256k1_ec_pubkey_serialize.
Definition secp256k1.h:215
SECP256K1_API SECP256K1_WARN_UNUSED_RESULT int secp256k1_ecdsa_verify(const secp256k1_context *ctx, const secp256k1_ecdsa_signature *sig, const unsigned char *msghash32, const secp256k1_pubkey *pubkey) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3) SECP256K1_ARG_NONNULL(4)
Verify an ECDSA signature.
Definition secp256k1.c:462
SECP256K1_API int secp256k1_ecdsa_signature_normalize(const secp256k1_context *ctx, secp256k1_ecdsa_signature *sigout, const secp256k1_ecdsa_signature *sigin) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(3)
Convert a signature to a normalized lower-S form.
Definition secp256k1.c:443
SECP256K1_API SECP256K1_WARN_UNUSED_RESULT int secp256k1_ec_pubkey_tweak_add(const secp256k1_context *ctx, secp256k1_pubkey *pubkey, const unsigned char *tweak32) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3)
Tweak a public key by adding tweak times the generator to it.
Definition secp256k1.c:704
#define SECP256K1_EC_UNCOMPRESSED
Definition secp256k1.h:216
SECP256K1_API const secp256k1_context * secp256k1_context_static
A built-in constant secp256k1 context object with static storage duration, to be used in conjunction ...
Definition secp256k1.h:236
SECP256K1_API int secp256k1_ellswift_decode(const secp256k1_context *ctx, secp256k1_pubkey *pubkey, const unsigned char *ell64) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3)
Decode a 64-bytes ElligatorSwift encoded public key.
Definition main_impl.h:489
SECP256K1_API int secp256k1_xonly_pubkey_serialize(const secp256k1_context *ctx, unsigned char *output32, const secp256k1_xonly_pubkey *pubkey) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3)
Serialize an xonly_pubkey object into a 32-byte sequence.
Definition main_impl.h:44
SECP256K1_API SECP256K1_WARN_UNUSED_RESULT int secp256k1_xonly_pubkey_tweak_add_check(const secp256k1_context *ctx, const unsigned char *tweaked_pubkey32, int tweaked_pk_parity, const secp256k1_xonly_pubkey *internal_pubkey, const unsigned char *tweak32) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(4) SECP256K1_ARG_NONNULL(5)
Checks that a tweaked pubkey is the result of calling secp256k1_xonly_pubkey_tweak_add with internal_...
Definition main_impl.h:135
SECP256K1_API SECP256K1_WARN_UNUSED_RESULT int secp256k1_xonly_pubkey_from_pubkey(const secp256k1_context *ctx, secp256k1_xonly_pubkey *xonly_pubkey, int *pk_parity, const secp256k1_pubkey *pubkey) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(4)
Converts a secp256k1_pubkey into a secp256k1_xonly_pubkey.
Definition main_impl.h:99
SECP256K1_API SECP256K1_WARN_UNUSED_RESULT int secp256k1_xonly_pubkey_tweak_add(const secp256k1_context *ctx, secp256k1_pubkey *output_pubkey, const secp256k1_xonly_pubkey *internal_pubkey, const unsigned char *tweak32) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3) SECP256K1_ARG_NONNULL(4)
Tweak an x-only public key by adding the generator multiplied with tweak32 to it.
Definition main_impl.h:118
SECP256K1_API SECP256K1_WARN_UNUSED_RESULT int secp256k1_xonly_pubkey_parse(const secp256k1_context *ctx, secp256k1_xonly_pubkey *pubkey, const unsigned char *input32) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3)
Parse a 32-byte sequence into a xonly_pubkey object.
Definition main_impl.h:22
SECP256K1_API int secp256k1_ecdsa_recoverable_signature_parse_compact(const secp256k1_context *ctx, secp256k1_ecdsa_recoverable_signature *sig, const unsigned char *input64, int recid) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3)
Parse a compact ECDSA signature (64 bytes + recovery id).
Definition main_impl.h:38
SECP256K1_API SECP256K1_WARN_UNUSED_RESULT int secp256k1_ecdsa_recover(const secp256k1_context *ctx, secp256k1_pubkey *pubkey, const secp256k1_ecdsa_recoverable_signature *sig, const unsigned char *msghash32) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(3) SECP256K1_ARG_NONNULL(4)
Recover an ECDSA public key from a signature.
Definition main_impl.h:137
SECP256K1_API SECP256K1_WARN_UNUSED_RESULT int secp256k1_schnorrsig_verify(const secp256k1_context *ctx, const unsigned char *sig64, const unsigned char *msg, size_t msglen, const secp256k1_xonly_pubkey *pubkey) SECP256K1_ARG_NONNULL(1) SECP256K1_ARG_NONNULL(2) SECP256K1_ARG_NONNULL(5)
Verify a Schnorr signature.
Definition main_impl.h:219
unsigned char * UCharCast(char *c)
Definition span.h:288
std::vector< Byte > ParseHex(std::string_view hex_str)
Like TryParseHex, but returns an empty vector on invalid input.
unsigned char version[4]
Definition pubkey.h:343
void Encode(unsigned char code[BIP32_EXTKEY_SIZE]) const
Definition pubkey.cpp:378
ChainCode chaincode
Definition pubkey.h:347
bool Derive(CExtPubKey &out, unsigned int nChild) const
Definition pubkey.cpp:408
void DecodeWithVersion(const unsigned char code[BIP32_EXTKEY_WITH_VERSION_SIZE])
Definition pubkey.cpp:402
void EncodeWithVersion(unsigned char code[BIP32_EXTKEY_WITH_VERSION_SIZE]) const
Definition pubkey.cpp:396
unsigned char vchFingerprint[4]
Definition pubkey.h:345
unsigned char nDepth
Definition pubkey.h:344
void Decode(const unsigned char code[BIP32_EXTKEY_SIZE])
Definition pubkey.cpp:387
CPubKey pubkey
Definition pubkey.h:348
unsigned int nChild
Definition pubkey.h:346
std::array< std::byte, SIZE > m_pubkey
Definition pubkey.h:313
CPubKey Decode() const
Decode to normal compressed CPubKey (for debugging purposes).
Definition pubkey.cpp:364
EllSwiftPubKey() noexcept=default
Default constructor creates all-zero pubkey (which is valid).
Opaque data structured that holds a parsed ECDSA signature, supporting pubkey recovery.
Opaque data structured that holds a parsed ECDSA signature.
Definition secp256k1.h:87
unsigned char data[64]
Definition secp256k1.h:88
Opaque data structure that holds a parsed and valid public key.
Definition secp256k1.h:74
Opaque data structure that holds a parsed and valid "x-only" public key.
assert(!tx.IsCoinBase())