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Replace std::random_shuffle with std::shuffle
According to [1], std::random_shuffle is deprecated in C++14 and removed in C++17. Since std::shuffle is available since C++11 as a replacement and monero already requires C++11, this is a good replacement. A cryptographically secure random number generator is used in all cases to prevent people from perhaps copying an insecure std::shuffle call over to a place where a secure one would be warranted. A form of defense-in-depth. [1]: https://en.cppreference.com/w/cpp/algorithm/random_shuffle
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@ -354,7 +354,7 @@ namespace cryptonote
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if (shuffle_outs)
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if (shuffle_outs)
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{
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{
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std::shuffle(destinations.begin(), destinations.end(), std::default_random_engine(crypto::rand<unsigned int>()));
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std::shuffle(destinations.begin(), destinations.end(), crypto::random_device{});
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}
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}
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// sort ins by their key image
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// sort ins by their key image
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@ -290,7 +290,7 @@ namespace nodetool
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if (anonymize)
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if (anonymize)
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{
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{
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std::random_shuffle(bs_head.begin(), bs_head.end());
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std::shuffle(bs_head.begin(), bs_head.end(), crypto::random_device{});
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if (bs_head.size() > depth)
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if (bs_head.size() > depth)
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bs_head.resize(depth);
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bs_head.resize(depth);
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for (auto &e: bs_head)
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for (auto &e: bs_head)
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@ -7448,7 +7448,7 @@ void wallet2::light_wallet_get_outs(std::vector<std::vector<tools::wallet2::get_
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order.resize(light_wallet_requested_outputs_count);
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order.resize(light_wallet_requested_outputs_count);
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for (size_t n = 0; n < order.size(); ++n)
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for (size_t n = 0; n < order.size(); ++n)
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order[n] = n;
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order[n] = n;
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std::shuffle(order.begin(), order.end(), std::default_random_engine(crypto::rand<unsigned>()));
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std::shuffle(order.begin(), order.end(), crypto::random_device{});
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LOG_PRINT_L2("Looking for " << (fake_outputs_count+1) << " outputs with amounts " << print_money(td.is_rct() ? 0 : td.amount()));
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LOG_PRINT_L2("Looking for " << (fake_outputs_count+1) << " outputs with amounts " << print_money(td.is_rct() ? 0 : td.amount()));
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@ -8023,7 +8023,7 @@ void wallet2::get_outs(std::vector<std::vector<tools::wallet2::get_outs_entry>>
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order.resize(requested_outputs_count);
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order.resize(requested_outputs_count);
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for (size_t n = 0; n < order.size(); ++n)
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for (size_t n = 0; n < order.size(); ++n)
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order[n] = n;
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order[n] = n;
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std::shuffle(order.begin(), order.end(), std::default_random_engine(crypto::rand<unsigned>()));
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std::shuffle(order.begin(), order.end(), crypto::random_device{});
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LOG_PRINT_L2("Looking for " << (fake_outputs_count+1) << " outputs of size " << print_money(td.is_rct() ? 0 : td.amount()));
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LOG_PRINT_L2("Looking for " << (fake_outputs_count+1) << " outputs of size " << print_money(td.is_rct() ? 0 : td.amount()));
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for (size_t o = 0; o < requested_outputs_count && outs.back().size() < fake_outputs_count + 1; ++o)
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for (size_t o = 0; o < requested_outputs_count && outs.back().size() < fake_outputs_count + 1; ++o)
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@ -779,8 +779,8 @@ TEST(ringct, range_proofs_accept_very_long_simple)
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inputs[n] = n;
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inputs[n] = n;
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outputs[n] = n;
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outputs[n] = n;
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}
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}
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std::random_shuffle(inputs, inputs + N);
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std::shuffle(inputs, inputs + N, crypto::random_device{});
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std::random_shuffle(outputs, outputs + N);
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std::shuffle(outputs, outputs + N, crypto::random_device{});
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EXPECT_TRUE(range_proof_test(true, NELTS(inputs), inputs, NELTS(outputs), outputs, false, true));
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EXPECT_TRUE(range_proof_test(true, NELTS(inputs), inputs, NELTS(outputs), outputs, false, true));
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}
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}
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@ -143,7 +143,7 @@ TEST(rolling_median, order)
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m.insert(random[i]);
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m.insert(random[i]);
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ASSERT_EQ(med, m.median());
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ASSERT_EQ(med, m.median());
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std::shuffle(random.begin(), random.end(), std::default_random_engine(crypto::rand<unsigned>()));
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std::shuffle(random.begin(), random.end(), crypto::random_device{});
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m.clear();
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m.clear();
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for (int i = 0; i < 1000; ++i)
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for (int i = 0; i < 1000; ++i)
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m.insert(random[i]);
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m.insert(random[i]);
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