PIVX Core  5.6.99
P2P Digital Currency
mapport.cpp
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1 // Copyright (c) 2011-2020 The Bitcoin Core developers
2 // Copyright (c) 2021 The PIVX Core developers
3 // Distributed under the MIT software license, see the accompanying
4 // file COPYING or http://www.opensource.org/licenses/mit-license.php.
5 
6 #if defined(HAVE_CONFIG_H)
7 #include "config/pivx-config.h"
8 #endif
9 
10 #include "mapport.h"
11 
12 #include "clientversion.h"
13 #include "logging.h"
14 #include "net.h"
15 #include "netaddress.h"
16 #include "netbase.h"
17 #include "threadinterrupt.h"
18 #include "util/system.h"
19 
20 #ifdef USE_NATPMP
21 #include <compat.h>
22 #include <natpmp.h>
23 #endif // USE_NATPMP
24 
25 #ifdef USE_UPNP
26 #include <miniupnpc/miniupnpc.h>
27 #include <miniupnpc/upnpcommands.h>
28 #include <miniupnpc/upnperrors.h>
29 // The minimum supported miniUPnPc API version is set to 10. This keeps compatibility
30 // with Ubuntu 16.04 LTS and Debian 8 libminiupnpc-dev packages.
31 static_assert(MINIUPNPC_API_VERSION >= 10, "miniUPnPc API version >= 10 assumed");
32 #endif // USE_UPNP
33 
34 #include <atomic>
35 #include <cassert>
36 #include <chrono>
37 #include <functional>
38 #include <string>
39 #include <thread>
40 
41 #if defined(USE_NATPMP) || defined(USE_UPNP)
42 static CThreadInterrupt g_mapport_interrupt;
43 static std::thread g_mapport_thread;
44 static std::atomic_uint g_mapport_enabled_protos{MapPortProtoFlag::NONE};
45 static std::atomic<MapPortProtoFlag> g_mapport_current_proto{MapPortProtoFlag::NONE};
46 
47 static constexpr auto PORT_MAPPING_REANNOUNCE_PERIOD = std::chrono::minutes(20);
48 static constexpr auto PORT_MAPPING_RETRY_PERIOD = std::chrono::minutes(5);
49 
50 #ifdef USE_NATPMP
51 static uint16_t g_mapport_external_port = 0;
52 static bool NatpmpInit(natpmp_t* natpmp)
53 {
54  const int r_init = initnatpmp(natpmp, /* detect gateway automatically */ 0, /* forced gateway - NOT APPLIED*/ 0);
55  if (r_init == 0) return true;
56  LogPrintf("natpmp: initnatpmp() failed with %d error.\n", r_init);
57  return false;
58 }
59 
60 static bool NatpmpDiscover(natpmp_t* natpmp, struct in_addr& external_ipv4_addr)
61 {
62  const int r_send = sendpublicaddressrequest(natpmp);
63  if (r_send == 2 /* OK */) {
64  int r_read;
65  natpmpresp_t response;
66  do {
67  r_read = readnatpmpresponseorretry(natpmp, &response);
68  } while (r_read == NATPMP_TRYAGAIN);
69 
70  if (r_read == 0) {
71  external_ipv4_addr = response.pnu.publicaddress.addr;
72  return true;
73  } else if (r_read == NATPMP_ERR_NOGATEWAYSUPPORT) {
74  LogPrintf("natpmp: The gateway does not support NAT-PMP.\n");
75  } else {
76  LogPrintf("natpmp: readnatpmpresponseorretry() for public address failed with %d error.\n", r_read);
77  }
78  } else {
79  LogPrintf("natpmp: sendpublicaddressrequest() failed with %d error.\n", r_send);
80  }
81 
82  return false;
83 }
84 
85 static bool NatpmpMapping(natpmp_t* natpmp, const struct in_addr& external_ipv4_addr, uint16_t private_port, bool& external_ip_discovered)
86 {
87  const uint16_t suggested_external_port = g_mapport_external_port ? g_mapport_external_port : private_port;
88  const int r_send = sendnewportmappingrequest(natpmp, NATPMP_PROTOCOL_TCP, private_port, suggested_external_port, 3600 /*seconds*/);
89  if (r_send == 12 /* OK */) {
90  int r_read;
91  natpmpresp_t response;
92  do {
93  r_read = readnatpmpresponseorretry(natpmp, &response);
94  } while (r_read == NATPMP_TRYAGAIN);
95 
96  if (r_read == 0) {
97  auto pm = response.pnu.newportmapping;
98  if (private_port == pm.privateport && pm.lifetime > 0) {
99  g_mapport_external_port = pm.mappedpublicport;
100  const CService external{external_ipv4_addr, pm.mappedpublicport};
101  if (!external_ip_discovered && fDiscover) {
102  AddLocal(external, LOCAL_MAPPED);
103  external_ip_discovered = true;
104  }
105  LogPrintf("natpmp: Port mapping successful. External address = %s\n", external.ToString());
106  return true;
107  } else {
108  LogPrintf("natpmp: Port mapping failed.\n");
109  }
110  } else if (r_read == NATPMP_ERR_NOGATEWAYSUPPORT) {
111  LogPrintf("natpmp: The gateway does not support NAT-PMP.\n");
112  } else {
113  LogPrintf("natpmp: readnatpmpresponseorretry() for port mapping failed with %d error.\n", r_read);
114  }
115  } else {
116  LogPrintf("natpmp: sendnewportmappingrequest() failed with %d error.\n", r_send);
117  }
118 
119  return false;
120 }
121 
122 static bool ProcessNatpmp()
123 {
124  bool ret = false;
125  natpmp_t natpmp;
126  struct in_addr external_ipv4_addr{};
127  if (NatpmpInit(&natpmp) && NatpmpDiscover(&natpmp, external_ipv4_addr)) {
128  bool external_ip_discovered = false;
129  const uint16_t private_port = GetListenPort();
130  do {
131  ret = NatpmpMapping(&natpmp, external_ipv4_addr, private_port, external_ip_discovered);
132  } while (ret && g_mapport_interrupt.sleep_for(PORT_MAPPING_REANNOUNCE_PERIOD));
133  g_mapport_interrupt.reset();
134 
135  const int r_send = sendnewportmappingrequest(&natpmp, NATPMP_PROTOCOL_TCP, private_port, g_mapport_external_port, /* remove a port mapping */ 0);
136  g_mapport_external_port = 0;
137  if (r_send == 12 /* OK */) {
138  LogPrintf("natpmp: Port mapping removed successfully.\n");
139  } else {
140  LogPrintf("natpmp: sendnewportmappingrequest(0) failed with %d error.\n", r_send);
141  }
142  }
143 
144  closenatpmp(&natpmp);
145  return ret;
146 }
147 #endif // USE_NATPMP
148 
149 #ifdef USE_UPNP
150 static bool ProcessUpnp()
151 {
152  bool ret = false;
153  std::string port = strprintf("%u", GetListenPort());
154  const char* multicastif = nullptr;
155  const char* minissdpdpath = nullptr;
156  struct UPNPDev* devlist = nullptr;
157  char lanaddr[64];
158 
159  int error = 0;
160 #if MINIUPNPC_API_VERSION < 14
161  devlist = upnpDiscover(2000, multicastif, minissdpdpath, 0, 0, &error);
162 #else
163  devlist = upnpDiscover(2000, multicastif, minissdpdpath, 0, 0, 2, &error);
164 #endif
165 
166  struct UPNPUrls urls{};
167  struct IGDdatas data{};
168  int r;
169 #if MINIUPNPC_API_VERSION <= 17
170  r = UPNP_GetValidIGD(devlist, &urls, &data, lanaddr, sizeof(lanaddr));
171 #else
172  r = UPNP_GetValidIGD(devlist, &urls, &data, lanaddr, sizeof(lanaddr), nullptr, 0);
173 #endif
174  if (r == 1) {
175  if (fDiscover) {
176  char externalIPAddress[40];
177  r = UPNP_GetExternalIPAddress(urls.controlURL, data.first.servicetype, externalIPAddress);
178  if (r != UPNPCOMMAND_SUCCESS) {
179  LogPrintf("UPnP: GetExternalIPAddress() returned %d\n", r);
180  } else {
181  if (externalIPAddress[0]) {
182  CNetAddr resolved;
183  if (LookupHost(externalIPAddress, resolved, false)) {
184  LogPrintf("UPnP: ExternalIPAddress = %s\n", resolved.ToString().c_str());
185  AddLocal(resolved, LOCAL_MAPPED);
186  }
187  } else {
188  LogPrintf("UPnP: GetExternalIPAddress failed.\n");
189  }
190  }
191  }
192 
193  std::string strDesc = PACKAGE_NAME " " + FormatFullVersion();
194 
195  do {
196  r = UPNP_AddPortMapping(urls.controlURL, data.first.servicetype, port.c_str(), port.c_str(), lanaddr, strDesc.c_str(), "TCP", nullptr, "0");
197 
198  if (r != UPNPCOMMAND_SUCCESS) {
199  ret = false;
200  LogPrintf("AddPortMapping(%s, %s, %s) failed with code %d (%s)\n", port, port, lanaddr, r, strupnperror(r));
201  break;
202  } else {
203  ret = true;
204  LogPrintf("UPnP Port Mapping successful.\n");
205  }
206  } while (g_mapport_interrupt.sleep_for(PORT_MAPPING_REANNOUNCE_PERIOD));
207  g_mapport_interrupt.reset();
208 
209  r = UPNP_DeletePortMapping(urls.controlURL, data.first.servicetype, port.c_str(), "TCP", nullptr);
210  LogPrintf("UPNP_DeletePortMapping() returned: %d\n", r);
211  freeUPNPDevlist(devlist); devlist = nullptr;
212  FreeUPNPUrls(&urls);
213  } else {
214  LogPrintf("No valid UPnP IGDs found\n");
215  freeUPNPDevlist(devlist);
216  devlist = nullptr;
217  if (r != 0)
218  FreeUPNPUrls(&urls);
219  }
220 
221  return ret;
222 }
223 #endif // USE_UPNP
224 
225 static void ThreadMapPort()
226 {
227  bool ok;
228  do {
229  ok = false;
230 
231 #ifdef USE_UPNP
232  // High priority protocol.
233  if (g_mapport_enabled_protos & MapPortProtoFlag::UPNP) {
234  g_mapport_current_proto = MapPortProtoFlag::UPNP;
235  ok = ProcessUpnp();
236  if (ok) continue;
237  }
238 #endif // USE_UPNP
239 
240 #ifdef USE_NATPMP
241  // Low priority protocol.
242  if (g_mapport_enabled_protos & MapPortProtoFlag::NAT_PMP) {
243  g_mapport_current_proto = MapPortProtoFlag::NAT_PMP;
244  ok = ProcessNatpmp();
245  if (ok) continue;
246  }
247 #endif // USE_NATPMP
248 
249  g_mapport_current_proto = MapPortProtoFlag::NONE;
250  if (g_mapport_enabled_protos == MapPortProtoFlag::NONE) {
251  return;
252  }
253 
254  } while (ok || g_mapport_interrupt.sleep_for(PORT_MAPPING_RETRY_PERIOD));
255 }
256 
257 void StartThreadMapPort()
258 {
259  if (!g_mapport_thread.joinable()) {
260  assert(!g_mapport_interrupt);
261  g_mapport_thread = std::thread(std::bind(&TraceThread<void (*)()>, "mapport", &ThreadMapPort));
262  }
263 }
264 
265 static void DispatchMapPort()
266 {
267  if (g_mapport_current_proto == MapPortProtoFlag::NONE && g_mapport_enabled_protos == MapPortProtoFlag::NONE) {
268  return;
269  }
270 
271  if (g_mapport_current_proto == MapPortProtoFlag::NONE && g_mapport_enabled_protos != MapPortProtoFlag::NONE) {
272  StartThreadMapPort();
273  return;
274  }
275 
276  if (g_mapport_current_proto != MapPortProtoFlag::NONE && g_mapport_enabled_protos == MapPortProtoFlag::NONE) {
278  StopMapPort();
279  return;
280  }
281 
282  if (g_mapport_enabled_protos & g_mapport_current_proto) {
283  // Enabling another protocol does not cause switching from the currently used one.
284  return;
285  }
286 
287  assert(g_mapport_thread.joinable());
288  assert(!g_mapport_interrupt);
289  // Interrupt a protocol-specific loop in the ThreadUpnp() or in the ThreadNatpmp()
290  // to force trying the next protocol in the ThreadMapPort() loop.
291  g_mapport_interrupt();
292 }
293 
294 static void MapPortProtoSetEnabled(MapPortProtoFlag proto, bool enabled)
295 {
296  if (enabled) {
297  g_mapport_enabled_protos |= proto;
298  } else {
299  g_mapport_enabled_protos &= ~proto;
300  }
301 }
302 
303 void StartMapPort(bool use_upnp, bool use_natpmp)
304 {
305  MapPortProtoSetEnabled(MapPortProtoFlag::UPNP, use_upnp);
306  MapPortProtoSetEnabled(MapPortProtoFlag::NAT_PMP, use_natpmp);
307  DispatchMapPort();
308 }
309 
310 void InterruptMapPort()
311 {
312  g_mapport_enabled_protos = MapPortProtoFlag::NONE;
313  if (g_mapport_thread.joinable()) {
314  g_mapport_interrupt();
315  }
316 }
317 
318 void StopMapPort()
319 {
320  if (g_mapport_thread.joinable()) {
321  g_mapport_thread.join();
322  g_mapport_interrupt.reset();
323  }
324 }
325 
326 #else // #if defined(USE_NATPMP) || defined(USE_UPNP)
327 void StartMapPort(bool use_upnp, bool use_natpmp)
328 {
329  // Intentionally left blank.
330 }
332 {
333  // Intentionally left blank.
334 }
336 {
337  // Intentionally left blank.
338 }
339 #endif // #if defined(USE_NATPMP) || defined(USE_UPNP)
Network address.
Definition: netaddress.h:120
std::string ToString() const
Definition: netaddress.cpp:568
A combination of a network address (CNetAddr) and a (TCP) port.
Definition: netaddress.h:484
bool sleep_for(std::chrono::milliseconds rel_time)
std::string FormatFullVersion()
void StartMapPort(bool use_upnp, bool use_natpmp)
Definition: mapport.cpp:327
void StopMapPort()
Definition: mapport.cpp:335
void InterruptMapPort()
Definition: mapport.cpp:331
MapPortProtoFlag
Definition: mapport.h:21
@ UPNP
Definition: mapport.h:23
@ NAT_PMP
Definition: mapport.h:24
@ NONE
Definition: mapport.h:22
uint16_t GetListenPort()
Definition: net.cpp:104
bool fDiscover
Definition: net.cpp:89
bool AddLocal(const CService &addr, int nScore)
Definition: net.cpp:206
@ LOCAL_MAPPED
Definition: net.h:538
bool LookupHost(const std::string &name, std::vector< CNetAddr > &vIP, unsigned int nMaxSolutions, bool fAllowLookup)
Definition: netbase.cpp:149
#define PACKAGE_NAME
Definition: pivx-config.h:366
bool error(const char *fmt, const Args &... args)
Definition: system.h:77
void TraceThread(const std::string name, Callable func)
Definition: system.h:271
#define strprintf
Definition: tinyformat.h:1056