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Always require OS randomness when generating secret keys
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@ -374,7 +374,8 @@ endif
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bitcoin_cli_LDADD = \
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$(LIBBITCOIN_CLI) \
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$(LIBUNIVALUE) \
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$(LIBBITCOIN_UTIL)
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$(LIBBITCOIN_UTIL) \
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$(LIBBITCOIN_CRYPTO)
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bitcoin_cli_LDADD += $(BOOST_LIBS) $(SSL_LIBS) $(CRYPTO_LIBS) $(EVENT_LIBS)
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#
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@ -1401,8 +1401,6 @@ bool AppInit2(boost::thread_group& threadGroup, CScheduler& scheduler)
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if (!strErrors.str().empty())
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return InitError(strErrors.str());
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RandAddSeedPerfmon();
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//// debug print
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LogPrintf("mapBlockIndex.size() = %u\n", mapBlockIndex.size());
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LogPrintf("nBestHeight = %d\n", chainActive.Height());
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@ -124,9 +124,8 @@ bool CKey::Check(const unsigned char *vch) {
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}
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void CKey::MakeNewKey(bool fCompressedIn) {
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RandAddSeedPerfmon();
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do {
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GetRandBytes(vch, sizeof(vch));
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GetStrongRandBytes(vch, sizeof(vch));
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} while (!Check(vch));
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fValid = true;
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fCompressed = fCompressedIn;
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@ -4547,7 +4547,6 @@ void static ProcessGetData(CNode* pfrom, const Consensus::Params& consensusParam
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bool static ProcessMessage(CNode* pfrom, string strCommand, CDataStream& vRecv, int64_t nTimeReceived, const CChainParams& chainparams)
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{
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RandAddSeedPerfmon();
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LogPrint("net", "received: %s (%u bytes) peer=%d\n", SanitizeString(strCommand), vRecv.size(), pfrom->id);
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if (mapArgs.count("-dropmessagestest") && GetRand(atoi(mapArgs["-dropmessagestest"])) == 0)
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{
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@ -5,9 +5,11 @@
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#include "random.h"
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#include "crypto/sha512.h"
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#include "support/cleanse.h"
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#ifdef WIN32
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#include "compat.h" // for Windows API
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#include <wincrypt.h>
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#endif
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#include "serialize.h" // for begin_ptr(vec)
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#include "util.h" // for LogPrint()
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@ -43,7 +45,7 @@ void RandAddSeed()
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memory_cleanse((void*)&nCounter, sizeof(nCounter));
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}
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void RandAddSeedPerfmon()
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static void RandAddSeedPerfmon()
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{
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RandAddSeed();
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@ -83,6 +85,29 @@ void RandAddSeedPerfmon()
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#endif
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}
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/** Get 32 bytes of system entropy. */
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static void GetOSRand(unsigned char *ent32)
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{
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#ifdef WIN32
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HCRYPTPROV hProvider;
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int ret = CryptAcquireContextW(&hProvider, NULL, NULL, PROV_RSA_FULL, CRYPT_VERIFYCONTEXT);
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assert(ret);
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ret = CryptGenRandom(hProvider, 32, ent32);
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assert(ret);
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CryptReleaseContext(hProvider, 0);
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#else
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int f = open("/dev/urandom", O_RDONLY);
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assert(f != -1);
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int have = 0;
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do {
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ssize_t n = read(f, ent32 + have, 32 - have);
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assert(n > 0 && n <= 32 - have);
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have += n;
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} while (have < 32);
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close(f);
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#endif
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}
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void GetRandBytes(unsigned char* buf, int num)
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{
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if (RAND_bytes(buf, num) != 1) {
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@ -91,6 +116,27 @@ void GetRandBytes(unsigned char* buf, int num)
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}
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}
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void GetStrongRandBytes(unsigned char* out, int num)
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{
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assert(num <= 32);
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CSHA512 hasher;
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unsigned char buf[64];
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// First source: OpenSSL's RNG
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RandAddSeedPerfmon();
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GetRandBytes(buf, 32);
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hasher.Write(buf, 32);
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// Second source: OS RNG
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GetOSRand(buf);
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hasher.Write(buf, 32);
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// Produce output
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hasher.Finalize(buf);
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memcpy(out, buf, num);
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memory_cleanse(buf, 64);
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}
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uint64_t GetRand(uint64_t nMax)
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{
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if (nMax == 0)
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11
src/random.h
11
src/random.h
@ -10,11 +10,8 @@
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#include <stdint.h>
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/**
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* Seed OpenSSL PRNG with additional entropy data
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*/
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/* Seed OpenSSL PRNG with additional entropy data */
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void RandAddSeed();
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void RandAddSeedPerfmon();
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/**
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* Functions to gather random data via the OpenSSL PRNG
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@ -24,6 +21,12 @@ uint64_t GetRand(uint64_t nMax);
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int GetRandInt(int nMax);
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uint256 GetRandHash();
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/**
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* Function to gather random data from multiple sources, failing whenever any
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* of those source fail to provide a result.
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*/
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void GetStrongRandBytes(unsigned char* buf, int num);
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/**
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* Seed insecure_rand using the random pool.
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* @param Deterministic Use a deterministic seed
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@ -509,16 +509,14 @@ bool CWallet::EncryptWallet(const SecureString& strWalletPassphrase)
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return false;
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CKeyingMaterial vMasterKey;
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RandAddSeedPerfmon();
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vMasterKey.resize(WALLET_CRYPTO_KEY_SIZE);
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GetRandBytes(&vMasterKey[0], WALLET_CRYPTO_KEY_SIZE);
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GetStrongRandBytes(&vMasterKey[0], WALLET_CRYPTO_KEY_SIZE);
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CMasterKey kMasterKey;
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RandAddSeedPerfmon();
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kMasterKey.vchSalt.resize(WALLET_CRYPTO_SALT_SIZE);
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GetRandBytes(&kMasterKey.vchSalt[0], WALLET_CRYPTO_SALT_SIZE);
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GetStrongRandBytes(&kMasterKey.vchSalt[0], WALLET_CRYPTO_SALT_SIZE);
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CCrypter crypter;
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int64_t nStartTime = GetTimeMillis();
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@ -3147,8 +3145,6 @@ bool CWallet::InitLoadWallet()
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if (fFirstRun)
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{
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// Create new keyUser and set as default key
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RandAddSeedPerfmon();
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CPubKey newDefaultKey;
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if (walletInstance->GetKeyFromPool(newDefaultKey)) {
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walletInstance->SetDefaultKey(newDefaultKey);
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