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@ -42,6 +42,7 @@ bool bSpendZeroConfChange = DEFAULT_SPEND_ZEROCONF_CHANGE; |
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bool fSendFreeTransactions = DEFAULT_SEND_FREE_TRANSACTIONS; |
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bool fSendFreeTransactions = DEFAULT_SEND_FREE_TRANSACTIONS; |
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const char * DEFAULT_WALLET_DAT = "wallet.dat"; |
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const char * DEFAULT_WALLET_DAT = "wallet.dat"; |
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const uint32_t BIP32_HARDENED_KEY_LIMIT = 0x80000000; |
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/**
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/**
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* Fees smaller than this (in satoshi) are considered zero fee (for transaction creation) |
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* Fees smaller than this (in satoshi) are considered zero fee (for transaction creation) |
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@ -112,16 +113,19 @@ CPubKey CWallet::GenerateNewKey() |
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masterKey.SetMaster(key.begin(), key.size()); |
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masterKey.SetMaster(key.begin(), key.size()); |
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// derive m/0'
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// derive m/0'
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// use hardened derivation (child keys > 0x80000000 are hardened after bip32)
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// use hardened derivation (child keys >= 0x80000000 are hardened after bip32)
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masterKey.Derive(accountKey, 0 | 0x80000000); |
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masterKey.Derive(accountKey, BIP32_HARDENED_KEY_LIMIT); |
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// derive m/0'/0'
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// derive m/0'/0'
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accountKey.Derive(externalChainChildKey, 0 | 0x80000000); |
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accountKey.Derive(externalChainChildKey, BIP32_HARDENED_KEY_LIMIT); |
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// derive child key at next index, skip keys already known to the wallet
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// derive child key at next index, skip keys already known to the wallet
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do |
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do |
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{ |
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{ |
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externalChainChildKey.Derive(childKey, hdChain.nExternalChainCounter | 0x80000000); |
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// always derive hardened keys
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// childIndex | BIP32_HARDENED_KEY_LIMIT = derive childIndex in hardened child-index-range
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// example: 1 | BIP32_HARDENED_KEY_LIMIT == 0x80000001 == 2147483649
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externalChainChildKey.Derive(childKey, hdChain.nExternalChainCounter | BIP32_HARDENED_KEY_LIMIT); |
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// increment childkey index
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// increment childkey index
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hdChain.nExternalChainCounter++; |
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hdChain.nExternalChainCounter++; |
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} while(HaveKey(childKey.key.GetPubKey().GetID())); |
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} while(HaveKey(childKey.key.GetPubKey().GetID())); |
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