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https://git.wownero.com/wownero/wownero.git
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ipv4 and ipv6 resolution working
IPv4 and IPv6 name resolution working. Unit tests written (and passing). net_node.{h,inl} code modified to use DNS seeds.
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@ -27,29 +27,110 @@
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// THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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#include "common/dns_utils.h"
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#include <ldns/rr.h> // for RR type and class defs
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#include <unbound.h>
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#include <arpa/inet.h> // for inet_ntoa (bytes to text for IPs)
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namespace tools
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{
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namespace dns
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struct DNSResolverData
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{
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ub_ctx* m_ub_context;
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};
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std::vector<std::string> get_ipv4(const std::string& uri)
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DNSResolver::DNSResolver() : m_data(new DNSResolverData())
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{
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// init libunbound context
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m_data->m_ub_context = ub_ctx_create();
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// look for "/etc/resolv.conf" and "/etc/hosts" or platform equivalent
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ub_ctx_resolvconf(m_data->m_ub_context, "");
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ub_ctx_hosts(m_data->m_ub_context, "");
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}
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DNSResolver::~DNSResolver()
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{
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if (m_data)
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{
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std::vector<std::string retval;
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return retval;
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if (m_data->m_ub_context != NULL)
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{
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ub_ctx_delete(m_data->m_ub_context);
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}
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delete m_data;
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}
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}
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std::vector<std::string> DNSResolver::get_ipv4(const std::string& url)
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{
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ub_result* result = NULL;
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std::vector<std::string> retval;
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// call DNS resolver, blocking. if return value not zero, something went wrong
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if (!ub_resolve(m_data->m_ub_context, url.c_str(), LDNS_RR_TYPE_A, LDNS_RR_CLASS_IN, &result))
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{
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if (result->havedata)
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{
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for (int i=0; result->data[i] != NULL; i++)
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{
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char as_str[INET_ADDRSTRLEN];
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// convert bytes to string, append if no error
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if (inet_ntop(AF_INET, result->data[0], as_str, sizeof(as_str)))
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{
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retval.push_back(as_str);
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}
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}
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}
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}
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std::vector<std::string> get_ipv6(const std::string& uri)
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// cleanup
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ub_resolve_free(result);
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return retval;
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}
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std::vector<std::string> DNSResolver::get_ipv6(const std::string& url)
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{
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ub_result* result = NULL;
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std::vector<std::string> retval;
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// call DNS resolver, blocking. if return value not zero, something went wrong
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if (!ub_resolve(m_data->m_ub_context, url.c_str(), LDNS_RR_TYPE_AAAA, LDNS_RR_CLASS_IN, &result))
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{
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std::vector<std::string retval;
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return retval;
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if (result->havedata)
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{
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for (int i=0; result->data[i] != NULL; i++)
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{
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char as_str[INET6_ADDRSTRLEN];
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// convert bytes to string, append if no error
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if (inet_ntop(AF_INET6, result->data[0], as_str, sizeof(as_str)))
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{
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retval.push_back(as_str);
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}
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}
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}
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}
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std::string get_payment_address(const std::string& uri)
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{
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std::string retval;
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return retval;
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}
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// cleanup
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ub_resolve_free(result);
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return retval;
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}
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std::string DNSResolver::get_payment_address(const std::string& url)
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{
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std::string retval;
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return retval;
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}
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DNSResolver& DNSResolver::instance()
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{
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static DNSResolver* staticInstance = NULL;
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if (staticInstance == NULL)
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{
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staticInstance = new DNSResolver();
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}
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return *staticInstance;
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}
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} // namespace dns
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} // namespace tools
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@ -32,6 +32,8 @@
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namespace tools
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{
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struct DNSResolverData;
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/**
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* @brief Provides high-level access to DNS resolution
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*
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@ -44,43 +46,64 @@ class DNSResolver
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public:
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/**
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* @brief Constructs and sets the URI to be resolved
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* @brief Constructs an instance of DNSResolver
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*
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* @param uri the URI to be resolved
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* Constructs a class instance and does setup stuff for the backend resolver.
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*/
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DNSResolver(const std::string& uri);
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DNSResolver();
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/**
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* @brief gets ipv4 addresses from DNS query
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* @brief takes care of freeing C pointers and such
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*/
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~DNSResolver();
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/**
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* @brief gets ipv4 addresses from DNS query of a URL
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*
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* returns a vector of all IPv4 "A" records for given URI.
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* returns a vector of all IPv4 "A" records for given URL.
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* If no "A" records found, returns an empty vector.
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*
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* @param url A string containing a URL to query for
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*
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* @return vector of strings containing ipv4 addresses
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*/
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std::vector<std::string> get_ipv4();
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std::vector<std::string> get_ipv4(const std::string& url);
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/**
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* @brief gets ipv6 addresses from DNS query
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*
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* returns a vector of all IPv6 "A" records for given URI.
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* returns a vector of all IPv6 "A" records for given URL.
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* If no "A" records found, returns an empty vector.
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*
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* @param url A string containing a URL to query for
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*
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* @return vector of strings containing ipv6 addresses
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*/
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std::vector<std::string> get_ipv6();
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std::vector<std::string> get_ipv6(const std::string& url);
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/**
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* @brief gets a monero address from the TXT record of the DNS query response
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*
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* returns a monero address string from the TXT record associated with URI
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* returns a monero address string from the TXT record associated with URL
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* if no TXT record present, or no valid monero address in TXT,
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* returns an empty string.
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*
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* @param url A string containing a URL to query for
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*
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* @return
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*/
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std::string get_payment_address();
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std::string get_payment_address(const std::string& url);
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/**
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* @brief Gets the singleton instance of DNSResolver
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*
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* @return returns a pointer to the singleton
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*/
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static DNSResolver& instance();
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private:
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DNSResolverData *m_data;
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}; // class DNSResolver
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} // namespace tools
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@ -112,6 +112,13 @@ namespace nodetool
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size_t get_outgoing_connections_count();
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peerlist_manager& get_peerlist_manager(){return m_peerlist;}
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private:
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const std::vector<std::string> m_seed_nodes_list =
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{ "seeds.moneroseeds.se"
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, "seeds.moneroseeds.ae.org"
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, "seeds.moneroseeds.ch"
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, "seeds.moneroseeds.li"
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};
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typedef COMMAND_REQUEST_STAT_INFO_T<typename t_payload_net_handler::stat_info> COMMAND_REQUEST_STAT_INFO;
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CHAIN_LEVIN_INVOKE_MAP2(p2p_connection_context); //move levin_commands_handler interface invoke(...) callbacks into invoke map
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@ -245,17 +245,33 @@ namespace nodetool
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}
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else
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{
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add_hardcoded_seed_node(m_seed_nodes, "62.210.78.186:18080");
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add_hardcoded_seed_node(m_seed_nodes, "195.12.60.154:18080");
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add_hardcoded_seed_node(m_seed_nodes, "54.241.246.125:18080");
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add_hardcoded_seed_node(m_seed_nodes, "107.170.157.169:18080");
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add_hardcoded_seed_node(m_seed_nodes, "54.207.112.216:18080");
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add_hardcoded_seed_node(m_seed_nodes, "78.27.112.54:18080");
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add_hardcoded_seed_node(m_seed_nodes, "209.222.30.57:18080");
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add_hardcoded_seed_node(m_seed_nodes, "80.71.13.55:18080");
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add_hardcoded_seed_node(m_seed_nodes, "107.178.112.126:18080");
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add_hardcoded_seed_node(m_seed_nodes, "107.158.233.98:18080");
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add_hardcoded_seed_node(m_seed_nodes, "64.22.111.2:18080");
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// for each hostname in the seed nodes list, attempt to DNS resolve and
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// add the result addresses as seed nodes
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// TODO: at some point add IPv6 support, but that won't be relevant
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// for some time yet.
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for (const std::string& addr_str : m_seed_nodes_list)
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{
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std::vector<std::string> addr_list = tools::DNSResolver::instance().get_ipv4(addr_str);
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for (const std::string& a : addr_list)
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{
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append_net_address(m_seed_nodes, a + ":18080");
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}
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}
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if (!m_seed_nodes.size())
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{
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add_hardcoded_seed_node(m_seed_nodes, "62.210.78.186:18080");
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add_hardcoded_seed_node(m_seed_nodes, "195.12.60.154:18080");
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add_hardcoded_seed_node(m_seed_nodes, "54.241.246.125:18080");
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add_hardcoded_seed_node(m_seed_nodes, "107.170.157.169:18080");
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add_hardcoded_seed_node(m_seed_nodes, "54.207.112.216:18080");
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add_hardcoded_seed_node(m_seed_nodes, "78.27.112.54:18080");
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add_hardcoded_seed_node(m_seed_nodes, "209.222.30.57:18080");
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add_hardcoded_seed_node(m_seed_nodes, "80.71.13.55:18080");
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add_hardcoded_seed_node(m_seed_nodes, "107.178.112.126:18080");
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add_hardcoded_seed_node(m_seed_nodes, "107.158.233.98:18080");
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add_hardcoded_seed_node(m_seed_nodes, "64.22.111.2:18080");
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}
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}
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bool res = handle_command_line(vm, testnet);
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65
tests/unit_tests/dns_resolver.cpp
Normal file
65
tests/unit_tests/dns_resolver.cpp
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#include "gtest/gtest.h"
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#include "common/dns_utils.h"
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TEST(DNSResolver, IPv4Success)
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{
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tools::DNSResolver resolver;
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auto ips = resolver.get_ipv4("example.com");
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ASSERT_EQ(1, ips.size());
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ASSERT_STREQ("93.184.216.119", ips[0].c_str());
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ips = tools::DNSResolver::instance().get_ipv4("example.com");
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ASSERT_EQ(1, ips.size());
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ASSERT_STREQ("93.184.216.119", ips[0].c_str());
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}
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TEST(DNSResolver, IPv4Failure)
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{
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// guaranteed by IANA/ICANN/RFC to be invalid
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tools::DNSResolver resolver;
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auto ips = resolver.get_ipv4("example.invalid");
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ASSERT_EQ(0, ips.size());
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ips = tools::DNSResolver::instance().get_ipv4("example.invalid");
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ASSERT_EQ(0, ips.size());
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}
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TEST(DNSResolver, IPv6Success)
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{
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tools::DNSResolver resolver;
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auto ips = resolver.get_ipv6("example.com");
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ASSERT_EQ(1, ips.size());
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ASSERT_STREQ("2606:2800:220:6d:26bf:1447:1097:aa7", ips[0].c_str());
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ips = tools::DNSResolver::instance().get_ipv6("example.com");
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ASSERT_EQ(1, ips.size());
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ASSERT_STREQ("2606:2800:220:6d:26bf:1447:1097:aa7", ips[0].c_str());
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}
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TEST(DNSResolver, IPv6Failure)
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{
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// guaranteed by IANA/ICANN/RFC to be invalid
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tools::DNSResolver resolver;
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auto ips = resolver.get_ipv6("example.invalid");
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ASSERT_EQ(0, ips.size());
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ips = tools::DNSResolver::instance().get_ipv6("example.invalid");
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ASSERT_EQ(0, ips.size());
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}
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