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crypto: replace rand<T>()%N idiom with unbiased rand_idx(N)
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@ -33,7 +33,7 @@
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#include <stdlib.h>
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#include "include_base_utils.h"
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#include "common/threadpool.h"
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#include <random>
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#include "crypto/crypto.h"
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#include <boost/thread/mutex.hpp>
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#include <boost/algorithm/string/join.hpp>
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#include <boost/optional.hpp>
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@ -517,10 +517,7 @@ bool load_txt_records_from_dns(std::vector<std::string> &good_records, const std
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std::vector<std::vector<std::string> > records;
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records.resize(dns_urls.size());
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std::random_device rd;
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std::mt19937 gen(rd());
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std::uniform_int_distribution<int> dis(0, dns_urls.size() - 1);
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size_t first_index = dis(gen);
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size_t first_index = crypto::rand_idx(dns_urls.size());
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// send all requests in parallel
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std::deque<bool> avail(dns_urls.size(), false), valid(dns_urls.size(), false);
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@ -35,6 +35,7 @@
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#include <boost/optional.hpp>
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#include <type_traits>
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#include <vector>
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#include <random>
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#include "common/pod-class.h"
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#include "memwipe.h"
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@ -162,6 +163,32 @@ namespace crypto {
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return res;
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}
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/* UniformRandomBitGenerator using crypto::rand<uint64_t>()
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*/
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struct random_device
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{
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typedef uint64_t result_type;
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static constexpr result_type min() { return 0; }
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static constexpr result_type max() { return result_type(-1); }
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result_type operator()() const { return crypto::rand<result_type>(); }
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};
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/* Generate a random value between range_min and range_max
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*/
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template<typename T>
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typename std::enable_if<std::is_integral<T>::value, T>::type rand_range(T range_min, T range_max) {
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crypto::random_device rd;
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std::uniform_int_distribution<T> dis(range_min, range_max);
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return dis(rd);
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}
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/* Generate a random index between 0 and sz-1
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*/
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template<typename T>
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typename std::enable_if<std::is_unsigned<T>::value, T>::type rand_idx(T sz) {
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return crypto::rand_range<T>(0, sz-1);
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}
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/* Generate a new key pair
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*/
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inline secret_key generate_keys(public_key &pub, secret_key &sec, const secret_key& recovery_key = secret_key(), bool recover = false) {
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@ -1259,7 +1259,7 @@ namespace nodetool
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}
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}
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else
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random_index = crypto::rand<size_t>() % filtered.size();
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random_index = crypto::rand_idx(filtered.size());
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CHECK_AND_ASSERT_MES(random_index < filtered.size(), false, "random_index < filtered.size() failed!!");
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random_index = filtered[random_index];
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@ -1313,7 +1313,7 @@ namespace nodetool
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return true;
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size_t try_count = 0;
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size_t current_index = crypto::rand<size_t>()%m_seed_nodes.size();
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size_t current_index = crypto::rand_idx(m_seed_nodes.size());
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const net_server& server = m_network_zones.at(epee::net_utils::zone::public_).m_net_server;
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while(true)
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{
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@ -398,7 +398,7 @@ namespace nodetool
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return false;
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}
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size_t random_index = crypto::rand<size_t>() % m_peers_gray.size();
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size_t random_index = crypto::rand_idx(m_peers_gray.size());
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peers_indexed::index<by_time>::type& by_time_index = m_peers_gray.get<by_time>();
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pe = *epee::misc_utils::move_it_backward(--by_time_index.end(), random_index);
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@ -5719,7 +5719,7 @@ namespace
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{
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CHECK_AND_ASSERT_MES(!vec.empty(), T(), "Vector must be non-empty");
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size_t idx = crypto::rand<size_t>() % vec.size();
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size_t idx = crypto::rand_idx(vec.size());
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return pop_index (vec, idx);
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}
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@ -5822,7 +5822,7 @@ size_t wallet2::pop_best_value_from(const transfer_container &transfers, std::ve
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}
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else
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{
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idx = crypto::rand<size_t>() % candidates.size();
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idx = crypto::rand_idx(candidates.size());
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}
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return pop_index (unused_indices, candidates[idx]);
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}
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@ -7474,7 +7474,7 @@ void wallet2::get_outs(std::vector<std::vector<tools::wallet2::get_outs_entry>>
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if (n_rct == 0)
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return rct_offsets[block_offset] ? rct_offsets[block_offset] - 1 : 0;
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MDEBUG("Picking 1/" << n_rct << " in " << (last_block_offset - first_block_offset + 1) << " blocks centered around " << block_offset + rct_start_height);
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return first_rct + crypto::rand<uint64_t>() % n_rct;
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return first_rct + crypto::rand_idx(n_rct);
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};
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size_t num_selected_transfers = 0;
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@ -9603,7 +9603,7 @@ std::vector<wallet2::pending_tx> wallet2::create_transactions_all(uint64_t below
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if (unused_transfer_dust_indices_per_subaddr.count(0) == 1 && unused_transfer_dust_indices_per_subaddr.size() > 1)
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unused_transfer_dust_indices_per_subaddr.erase(0);
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auto i = unused_transfer_dust_indices_per_subaddr.begin();
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std::advance(i, crypto::rand<size_t>() % unused_transfer_dust_indices_per_subaddr.size());
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std::advance(i, crypto::rand_idx(unused_transfer_dust_indices_per_subaddr.size()));
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unused_transfers_indices = i->second.first;
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unused_dust_indices = i->second.second;
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LOG_PRINT_L2("Spending from subaddress index " << i->first);
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