Move pointMult function to highlevelcrypto
Copy pointMult function from class_addressGenerator.py to highlevelcrypto.py
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@ -1,5 +1,5 @@
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import pyelliptic
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import pyelliptic
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from pyelliptic import arithmetic as a
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from pyelliptic import arithmetic as a, OpenSSL
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def makeCryptor(privkey):
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def makeCryptor(privkey):
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privkey_bin = '\x02\xca\x00 '+a.changebase(privkey,16,256,minlen=32)
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privkey_bin = '\x02\xca\x00 '+a.changebase(privkey,16,256,minlen=32)
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pubkey = a.changebase(a.privtopub(privkey),16,256,minlen=65)[1:]
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pubkey = a.changebase(a.privtopub(privkey),16,256,minlen=65)[1:]
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@ -31,3 +31,23 @@ def sign(msg,hexPrivkey):
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# Verifies with hex public key
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# Verifies with hex public key
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def verify(msg,sig,hexPubkey):
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def verify(msg,sig,hexPubkey):
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return makePubCryptor(hexPubkey).verify(sig,msg)
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return makePubCryptor(hexPubkey).verify(sig,msg)
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# Does an EC point multiplication; turns a private key into a public key.
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def pointMult(secret):
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k = OpenSSL.EC_KEY_new_by_curve_name(OpenSSL.get_curve('secp256k1'))
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priv_key = OpenSSL.BN_bin2bn(secret, 32, None)
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group = OpenSSL.EC_KEY_get0_group(k)
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pub_key = OpenSSL.EC_POINT_new(group)
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OpenSSL.EC_POINT_mul(group, pub_key, priv_key, None, None, None)
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OpenSSL.EC_KEY_set_private_key(k, priv_key)
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OpenSSL.EC_KEY_set_public_key(k, pub_key)
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size = OpenSSL.i2o_ECPublicKey(k, None)
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mb = OpenSSL.create_string_buffer(size)
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OpenSSL.i2o_ECPublicKey(k, OpenSSL.byref(OpenSSL.pointer(mb)))
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OpenSSL.EC_POINT_free(pub_key)
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OpenSSL.BN_free(priv_key)
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OpenSSL.EC_KEY_free(k)
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return mb.raw
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