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-rw-r--r--src/p2p/net_node.inl69
1 files changed, 41 insertions, 28 deletions
diff --git a/src/p2p/net_node.inl b/src/p2p/net_node.inl
index 3454e112c..ee4a10789 100644
--- a/src/p2p/net_node.inl
+++ b/src/p2p/net_node.inl
@@ -259,53 +259,66 @@ namespace nodetool
std::vector<std::vector<std::string>> dns_results;
dns_results.resize(m_seed_nodes_list.size());
- std::unique_ptr<std::atomic_flag[]> dns_finished(new std::atomic_flag[m_seed_nodes_list.size()]);
-
- // set each flag, thread will release when finished
- for (uint64_t i = 0; i < m_seed_nodes_list.size(); ++i)
- dns_finished[i].test_and_set();
-
+ std::list<boost::thread*> dns_threads;
uint64_t result_index = 0;
for (const std::string& addr_str : m_seed_nodes_list)
{
-
- uint64_t result_index_capture = result_index++;
- boost::thread t([&]
+ boost::thread* th = new boost::thread([=, &dns_results, &addr_str]
{
+ LOG_PRINT_L4("dns_threads[" << result_index << "] created for: " << addr_str)
// TODO: care about dnssec avail/valid
bool avail, valid;
- std::vector<std::string> addr_list = tools::DNSResolver().get_ipv4(addr_str, avail, valid);
-
- dns_results[result_index_capture] = addr_list;
- dns_finished[result_index_capture].clear();
+ std::vector<std::string> addr_list;
+
+ try
+ {
+ addr_list = tools::DNSResolver().get_ipv4(addr_str, avail, valid);
+ LOG_PRINT_L4("dns_threads[" << result_index << "] DNS resolve done");
+ boost::this_thread::interruption_point();
+ }
+ catch(const boost::thread_interrupted&)
+ {
+ // thread interruption request
+ // even if we now have results, finish thread without setting
+ // result variables, which are now out of scope in main thread
+ LOG_PRINT_L4("dns_threads[" << result_index << "] interrupted");
+ return;
+ }
+
+ LOG_PRINT_L4("dns_threads[" << result_index << "] addr_str: " << addr_str << " number of results: " << addr_list.size());
+ dns_results[result_index] = addr_list;
});
+ dns_threads.push_back(th);
+ ++result_index;
}
- uint64_t sleep_count = 0;
- uint64_t sleep_interval_ms = 100;
- while (sleep_count++ * sleep_interval_ms < CRYPTONOTE_DNS_TIMEOUT_MS)
+ LOG_PRINT_L4("dns_threads created, now waiting for completion or timeout of " << CRYPTONOTE_DNS_TIMEOUT_MS << "ms");
+ boost::chrono::system_clock::time_point deadline = boost::chrono::system_clock::now() + boost::chrono::milliseconds(CRYPTONOTE_DNS_TIMEOUT_MS);
+ uint64_t i = 0;
+ for (boost::thread* th : dns_threads)
{
- boost::this_thread::sleep(boost::posix_time::milliseconds(sleep_interval_ms));
- bool all_done = false;
- for (uint64_t i = 0; i < m_seed_nodes_list.size(); ++i)
+ if (! th->try_join_until(deadline))
{
- if (dns_finished[i].test_and_set())
- break;
- else
- dns_finished[i].clear();
- all_done = true;
+ LOG_PRINT_L4("dns_threads[" << i << "] timed out, sending interrupt");
+ th->interrupt();
}
- if (all_done)
- break;
+ ++i;
}
+ i = 0;
for (const auto& result : dns_results)
{
- for (const auto& addr_string : result)
+ LOG_PRINT_L4("DNS lookup for " << m_seed_nodes_list[i] << ": " << result.size() << " results");
+ // if no results for node, thread's lookup likely timed out
+ if (result.size())
{
- append_net_address(m_seed_nodes, addr_string + ":18080");
+ for (const auto& addr_string : result)
+ {
+ append_net_address(m_seed_nodes, addr_string + ":18080");
+ }
}
+ ++i;
}
if (!m_seed_nodes.size())