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src/key.cpp
23
src/key.cpp
@ -17,6 +17,22 @@
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static secp256k1_context* secp256k1_context_sign = NULL;
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/** These functions are taken from the libsecp256k1 distribution and are very ugly. */
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/**
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* This parses a format loosely based on a DER encoding of the ECPrivateKey type from
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* section C.4 of SEC 1 <http://www.secg.org/sec1-v2.pdf>, with the following caveats:
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*
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* * The octet-length of the SEQUENCE must be encoded as 1 or 2 octets. It is not
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* required to be encoded as one octet if it is less than 256, as DER would require.
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* * The octet-length of the SEQUENCE must not be greater than the remaining
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* length of the key encoding, but need not match it (i.e. the encoding may contain
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* junk after the encoded SEQUENCE).
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* * The privateKey OCTET STRING is zero-filled on the left to 32 octets.
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* * Anything after the encoding of the privateKey OCTET STRING is ignored, whether
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* or not it is validly encoded DER.
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*
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* out32 must point to an output buffer of length at least 32 bytes.
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*/
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static int ec_privkey_import_der(const secp256k1_context* ctx, unsigned char *out32, const unsigned char *privkey, size_t privkeylen) {
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const unsigned char *end = privkey + privkeylen;
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size_t lenb = 0;
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@ -66,6 +82,13 @@ static int ec_privkey_import_der(const secp256k1_context* ctx, unsigned char *ou
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return 1;
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}
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/**
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* This serializes to a DER encoding of the ECPrivateKey type from section C.4 of SEC 1
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* <http://www.secg.org/sec1-v2.pdf>. The optional parameters and publicKey fields are
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* included.
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*
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* key32 must point to a 32-byte raw private key.
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*/
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static int ec_privkey_export_der(const secp256k1_context *ctx, unsigned char *privkey, size_t *privkeylen, const unsigned char *key32, int compressed) {
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secp256k1_pubkey pubkey;
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size_t pubkeylen = 0;
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@ -174,7 +174,13 @@ bool static IsLowDERSignature(const valtype &vchSig, ScriptError* serror) {
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if (!IsValidSignatureEncoding(vchSig)) {
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return set_error(serror, SCRIPT_ERR_SIG_DER);
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}
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// https://bitcoin.stackexchange.com/a/12556:
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// Also note that inside transaction signatures, an extra hashtype byte
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// follows the actual signature data.
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std::vector<unsigned char> vchSigCopy(vchSig.begin(), vchSig.begin() + vchSig.size() - 1);
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// If the S value is above the order of the curve divided by two, its
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// complement modulo the order could have been used instead, which is
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// one byte shorter when encoded correctly.
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if (!CPubKey::CheckLowS(vchSigCopy)) {
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return set_error(serror, SCRIPT_ERR_SIG_HIGH_S);
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}
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