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henrike@webrtc.orgf0488722014-05-13 18:00:26 +00001/*
2 * Copyright 2004 The WebRTC Project Authors. All rights reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
11#include "webrtc/base/virtualsocketserver.h"
12
13#include <errno.h>
14#include <math.h>
15
16#include <algorithm>
17#include <map>
18#include <vector>
19
20#include "webrtc/base/common.h"
21#include "webrtc/base/logging.h"
22#include "webrtc/base/physicalsocketserver.h"
23#include "webrtc/base/socketaddresspair.h"
24#include "webrtc/base/thread.h"
25#include "webrtc/base/timeutils.h"
26
27namespace rtc {
28#if defined(WEBRTC_WIN)
29const in_addr kInitialNextIPv4 = { {0x01, 0, 0, 0} };
30#else
31// This value is entirely arbitrary, hence the lack of concern about endianness.
32const in_addr kInitialNextIPv4 = { 0x01000000 };
33#endif
34// Starts at ::2 so as to not cause confusion with ::1.
35const in6_addr kInitialNextIPv6 = { { {
36 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 2
37 } } };
38
39const uint16 kFirstEphemeralPort = 49152;
40const uint16 kLastEphemeralPort = 65535;
41const uint16 kEphemeralPortCount = kLastEphemeralPort - kFirstEphemeralPort + 1;
42const uint32 kDefaultNetworkCapacity = 64 * 1024;
43const uint32 kDefaultTcpBufferSize = 32 * 1024;
44
45const uint32 UDP_HEADER_SIZE = 28; // IP + UDP headers
46const uint32 TCP_HEADER_SIZE = 40; // IP + TCP headers
47const uint32 TCP_MSS = 1400; // Maximum segment size
48
49// Note: The current algorithm doesn't work for sample sizes smaller than this.
50const int NUM_SAMPLES = 1000;
51
52enum {
53 MSG_ID_PACKET,
guoweis@webrtc.org4fba2932014-12-18 04:45:05 +000054 MSG_ID_ADDRESS_BOUND,
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000055 MSG_ID_CONNECT,
56 MSG_ID_DISCONNECT,
57};
58
59// Packets are passed between sockets as messages. We copy the data just like
60// the kernel does.
61class Packet : public MessageData {
62 public:
63 Packet(const char* data, size_t size, const SocketAddress& from)
64 : size_(size), consumed_(0), from_(from) {
65 ASSERT(NULL != data);
66 data_ = new char[size_];
67 memcpy(data_, data, size_);
68 }
69
kwiberg@webrtc.org67186fe2015-03-09 22:21:53 +000070 ~Packet() override {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +000071 delete[] data_;
72 }
73
74 const char* data() const { return data_ + consumed_; }
75 size_t size() const { return size_ - consumed_; }
76 const SocketAddress& from() const { return from_; }
77
78 // Remove the first size bytes from the data.
79 void Consume(size_t size) {
80 ASSERT(size + consumed_ < size_);
81 consumed_ += size;
82 }
83
84 private:
85 char* data_;
86 size_t size_, consumed_;
87 SocketAddress from_;
88};
89
90struct MessageAddress : public MessageData {
91 explicit MessageAddress(const SocketAddress& a) : addr(a) { }
92 SocketAddress addr;
93};
94
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +000095VirtualSocket::VirtualSocket(VirtualSocketServer* server,
96 int family,
97 int type,
98 bool async)
99 : server_(server),
100 family_(family),
101 type_(type),
102 async_(async),
103 state_(CS_CLOSED),
104 error_(0),
105 listen_queue_(NULL),
106 write_enabled_(false),
107 network_size_(0),
108 recv_buffer_size_(0),
109 bound_(false),
110 was_any_(false) {
111 ASSERT((type_ == SOCK_DGRAM) || (type_ == SOCK_STREAM));
112 ASSERT(async_ || (type_ != SOCK_STREAM)); // We only support async streams
113}
114
115VirtualSocket::~VirtualSocket() {
116 Close();
117
118 for (RecvBuffer::iterator it = recv_buffer_.begin(); it != recv_buffer_.end();
119 ++it) {
120 delete *it;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000121 }
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000122}
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000123
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000124SocketAddress VirtualSocket::GetLocalAddress() const {
125 if (!alternative_local_addr_.IsNil())
126 return alternative_local_addr_;
127 return local_addr_;
128}
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000129
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000130SocketAddress VirtualSocket::GetRemoteAddress() const {
131 return remote_addr_;
132}
133
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000134void VirtualSocket::SetLocalAddress(const SocketAddress& addr) {
135 local_addr_ = addr;
136}
137
guoweis@webrtc.org4fba2932014-12-18 04:45:05 +0000138void VirtualSocket::SetAlternativeLocalAddress(const SocketAddress& addr) {
139 alternative_local_addr_ = addr;
140}
141
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000142int VirtualSocket::Bind(const SocketAddress& addr) {
143 if (!local_addr_.IsNil()) {
144 error_ = EINVAL;
145 return -1;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000146 }
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000147 local_addr_ = addr;
148 int result = server_->Bind(this, &local_addr_);
149 if (result != 0) {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000150 local_addr_.Clear();
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000151 error_ = EADDRINUSE;
152 } else {
153 bound_ = true;
154 was_any_ = addr.IsAnyIP();
guoweis@webrtc.org4fba2932014-12-18 04:45:05 +0000155 // Post a message here such that test case could have chance to
156 // process the local address. (i.e. SetAlternativeLocalAddress).
157 server_->msg_queue_->Post(this, MSG_ID_ADDRESS_BOUND);
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000158 }
159 return result;
160}
161
162int VirtualSocket::Connect(const SocketAddress& addr) {
163 return InitiateConnect(addr, true);
164}
165
166int VirtualSocket::Close() {
167 if (!local_addr_.IsNil() && bound_) {
168 // Remove from the binding table.
169 server_->Unbind(local_addr_, this);
170 bound_ = false;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000171 }
172
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000173 if (SOCK_STREAM == type_) {
174 // Cancel pending sockets
175 if (listen_queue_) {
176 while (!listen_queue_->empty()) {
177 SocketAddress addr = listen_queue_->front();
178
179 // Disconnect listening socket.
180 server_->Disconnect(server_->LookupBinding(addr));
181 listen_queue_->pop_front();
182 }
183 delete listen_queue_;
184 listen_queue_ = NULL;
185 }
186 // Disconnect stream sockets
187 if (CS_CONNECTED == state_) {
188 // Disconnect remote socket, check if it is a child of a server socket.
189 VirtualSocket* socket =
190 server_->LookupConnection(local_addr_, remote_addr_);
191 if (!socket) {
192 // Not a server socket child, then see if it is bound.
193 // TODO(tbd): If this is indeed a server socket that has no
194 // children this will cause the server socket to be
195 // closed. This might lead to unexpected results, how to fix this?
196 socket = server_->LookupBinding(remote_addr_);
197 }
198 server_->Disconnect(socket);
199
200 // Remove mapping for both directions.
201 server_->RemoveConnection(remote_addr_, local_addr_);
202 server_->RemoveConnection(local_addr_, remote_addr_);
203 }
204 // Cancel potential connects
205 MessageList msgs;
206 if (server_->msg_queue_) {
207 server_->msg_queue_->Clear(this, MSG_ID_CONNECT, &msgs);
208 }
209 for (MessageList::iterator it = msgs.begin(); it != msgs.end(); ++it) {
210 ASSERT(NULL != it->pdata);
211 MessageAddress* data = static_cast<MessageAddress*>(it->pdata);
212
213 // Lookup remote side.
214 VirtualSocket* socket =
215 server_->LookupConnection(local_addr_, data->addr);
216 if (socket) {
217 // Server socket, remote side is a socket retreived by
218 // accept. Accepted sockets are not bound so we will not
219 // find it by looking in the bindings table.
220 server_->Disconnect(socket);
221 server_->RemoveConnection(local_addr_, data->addr);
222 } else {
223 server_->Disconnect(server_->LookupBinding(data->addr));
224 }
225 delete data;
226 }
227 // Clear incoming packets and disconnect messages
228 if (server_->msg_queue_) {
229 server_->msg_queue_->Clear(this);
230 }
231 }
232
233 state_ = CS_CLOSED;
234 local_addr_.Clear();
235 remote_addr_.Clear();
236 return 0;
237}
238
239int VirtualSocket::Send(const void* pv, size_t cb) {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000240 if (CS_CONNECTED != state_) {
241 error_ = ENOTCONN;
242 return -1;
243 }
244 if (SOCK_DGRAM == type_) {
245 return SendUdp(pv, cb, remote_addr_);
246 } else {
247 return SendTcp(pv, cb);
248 }
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000249}
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000250
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000251int VirtualSocket::SendTo(const void* pv,
252 size_t cb,
253 const SocketAddress& addr) {
254 if (SOCK_DGRAM == type_) {
255 return SendUdp(pv, cb, addr);
256 } else {
257 if (CS_CONNECTED != state_) {
258 error_ = ENOTCONN;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000259 return -1;
260 }
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000261 return SendTcp(pv, cb);
262 }
263}
264
265int VirtualSocket::Recv(void* pv, size_t cb) {
266 SocketAddress addr;
267 return RecvFrom(pv, cb, &addr);
268}
269
270int VirtualSocket::RecvFrom(void* pv, size_t cb, SocketAddress* paddr) {
271 // If we don't have a packet, then either error or wait for one to arrive.
272 if (recv_buffer_.empty()) {
273 if (async_) {
274 error_ = EAGAIN;
275 return -1;
276 }
277 while (recv_buffer_.empty()) {
278 Message msg;
279 server_->msg_queue_->Get(&msg);
280 server_->msg_queue_->Dispatch(&msg);
281 }
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000282 }
283
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000284 // Return the packet at the front of the queue.
285 Packet* packet = recv_buffer_.front();
andresp@webrtc.orgff689be2015-02-12 11:54:26 +0000286 size_t data_read = std::min(cb, packet->size());
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000287 memcpy(pv, packet->data(), data_read);
288 *paddr = packet->from();
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000289
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000290 if (data_read < packet->size()) {
291 packet->Consume(data_read);
292 } else {
293 recv_buffer_.pop_front();
294 delete packet;
295 }
296
297 if (SOCK_STREAM == type_) {
298 bool was_full = (recv_buffer_size_ == server_->recv_buffer_capacity_);
299 recv_buffer_size_ -= data_read;
300 if (was_full) {
301 VirtualSocket* sender = server_->LookupBinding(remote_addr_);
302 ASSERT(NULL != sender);
303 server_->SendTcp(sender);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000304 }
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000305 }
306
307 return static_cast<int>(data_read);
308}
309
310int VirtualSocket::Listen(int backlog) {
311 ASSERT(SOCK_STREAM == type_);
312 ASSERT(CS_CLOSED == state_);
313 if (local_addr_.IsNil()) {
314 error_ = EINVAL;
315 return -1;
316 }
317 ASSERT(NULL == listen_queue_);
318 listen_queue_ = new ListenQueue;
319 state_ = CS_CONNECTING;
320 return 0;
321}
322
323VirtualSocket* VirtualSocket::Accept(SocketAddress* paddr) {
324 if (NULL == listen_queue_) {
325 error_ = EINVAL;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000326 return NULL;
327 }
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000328 while (!listen_queue_->empty()) {
329 VirtualSocket* socket = new VirtualSocket(server_, AF_INET, type_, async_);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000330
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000331 // Set the new local address to the same as this server socket.
332 socket->SetLocalAddress(local_addr_);
333 // Sockets made from a socket that 'was Any' need to inherit that.
334 socket->set_was_any(was_any_);
335 SocketAddress remote_addr(listen_queue_->front());
336 int result = socket->InitiateConnect(remote_addr, false);
337 listen_queue_->pop_front();
338 if (result != 0) {
339 delete socket;
340 continue;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000341 }
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000342 socket->CompleteConnect(remote_addr, false);
343 if (paddr) {
344 *paddr = remote_addr;
345 }
346 return socket;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000347 }
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000348 error_ = EWOULDBLOCK;
349 return NULL;
350}
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000351
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000352int VirtualSocket::GetError() const {
353 return error_;
354}
355
356void VirtualSocket::SetError(int error) {
357 error_ = error;
358}
359
360Socket::ConnState VirtualSocket::GetState() const {
361 return state_;
362}
363
364int VirtualSocket::GetOption(Option opt, int* value) {
365 OptionsMap::const_iterator it = options_map_.find(opt);
366 if (it == options_map_.end()) {
367 return -1;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000368 }
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000369 *value = it->second;
370 return 0; // 0 is success to emulate getsockopt()
371}
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000372
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000373int VirtualSocket::SetOption(Option opt, int value) {
374 options_map_[opt] = value;
375 return 0; // 0 is success to emulate setsockopt()
376}
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000377
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000378int VirtualSocket::EstimateMTU(uint16* mtu) {
379 if (CS_CONNECTED != state_)
380 return ENOTCONN;
381 else
382 return 65536;
383}
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000384
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000385void VirtualSocket::OnMessage(Message* pmsg) {
386 if (pmsg->message_id == MSG_ID_PACKET) {
387 // ASSERT(!local_addr_.IsAny());
388 ASSERT(NULL != pmsg->pdata);
389 Packet* packet = static_cast<Packet*>(pmsg->pdata);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000390
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000391 recv_buffer_.push_back(packet);
392
393 if (async_) {
394 SignalReadEvent(this);
395 }
396 } else if (pmsg->message_id == MSG_ID_CONNECT) {
397 ASSERT(NULL != pmsg->pdata);
398 MessageAddress* data = static_cast<MessageAddress*>(pmsg->pdata);
399 if (listen_queue_ != NULL) {
400 listen_queue_->push_back(data->addr);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000401 if (async_) {
402 SignalReadEvent(this);
403 }
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000404 } else if ((SOCK_STREAM == type_) && (CS_CONNECTING == state_)) {
405 CompleteConnect(data->addr, true);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000406 } else {
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000407 LOG(LS_VERBOSE) << "Socket at " << local_addr_ << " is not listening";
408 server_->Disconnect(server_->LookupBinding(data->addr));
409 }
410 delete data;
411 } else if (pmsg->message_id == MSG_ID_DISCONNECT) {
412 ASSERT(SOCK_STREAM == type_);
413 if (CS_CLOSED != state_) {
414 int error = (CS_CONNECTING == state_) ? ECONNREFUSED : 0;
415 state_ = CS_CLOSED;
416 remote_addr_.Clear();
417 if (async_) {
418 SignalCloseEvent(this, error);
419 }
420 }
guoweis@webrtc.org4fba2932014-12-18 04:45:05 +0000421 } else if (pmsg->message_id == MSG_ID_ADDRESS_BOUND) {
422 SignalAddressReady(this, GetLocalAddress());
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000423 } else {
424 ASSERT(false);
425 }
426}
427
428int VirtualSocket::InitiateConnect(const SocketAddress& addr, bool use_delay) {
429 if (!remote_addr_.IsNil()) {
430 error_ = (CS_CONNECTED == state_) ? EISCONN : EINPROGRESS;
431 return -1;
432 }
433 if (local_addr_.IsNil()) {
434 // If there's no local address set, grab a random one in the correct AF.
435 int result = 0;
436 if (addr.ipaddr().family() == AF_INET) {
437 result = Bind(SocketAddress("0.0.0.0", 0));
438 } else if (addr.ipaddr().family() == AF_INET6) {
439 result = Bind(SocketAddress("::", 0));
440 }
441 if (result != 0) {
442 return result;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000443 }
444 }
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000445 if (type_ == SOCK_DGRAM) {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000446 remote_addr_ = addr;
447 state_ = CS_CONNECTED;
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000448 } else {
449 int result = server_->Connect(this, addr, use_delay);
450 if (result != 0) {
451 error_ = EHOSTUNREACH;
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000452 return -1;
453 }
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000454 state_ = CS_CONNECTING;
455 }
456 return 0;
457}
458
459void VirtualSocket::CompleteConnect(const SocketAddress& addr, bool notify) {
460 ASSERT(CS_CONNECTING == state_);
461 remote_addr_ = addr;
462 state_ = CS_CONNECTED;
463 server_->AddConnection(remote_addr_, local_addr_, this);
464 if (async_ && notify) {
465 SignalConnectEvent(this);
466 }
467}
468
469int VirtualSocket::SendUdp(const void* pv,
470 size_t cb,
471 const SocketAddress& addr) {
472 // If we have not been assigned a local port, then get one.
473 if (local_addr_.IsNil()) {
474 local_addr_ = EmptySocketAddressWithFamily(addr.ipaddr().family());
475 int result = server_->Bind(this, &local_addr_);
476 if (result != 0) {
477 local_addr_.Clear();
478 error_ = EADDRINUSE;
479 return result;
480 }
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000481 }
482
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000483 // Send the data in a message to the appropriate socket.
484 return server_->SendUdp(this, static_cast<const char*>(pv), cb, addr);
485}
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000486
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000487int VirtualSocket::SendTcp(const void* pv, size_t cb) {
488 size_t capacity = server_->send_buffer_capacity_ - send_buffer_.size();
489 if (0 == capacity) {
490 write_enabled_ = true;
491 error_ = EWOULDBLOCK;
492 return -1;
493 }
andresp@webrtc.orgff689be2015-02-12 11:54:26 +0000494 size_t consumed = std::min(cb, capacity);
guoweis@webrtc.org0eb6eec2014-12-17 22:03:33 +0000495 const char* cpv = static_cast<const char*>(pv);
496 send_buffer_.insert(send_buffer_.end(), cpv, cpv + consumed);
497 server_->SendTcp(this);
498 return static_cast<int>(consumed);
499}
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000500
501VirtualSocketServer::VirtualSocketServer(SocketServer* ss)
502 : server_(ss), server_owned_(false), msg_queue_(NULL), stop_on_idle_(false),
503 network_delay_(Time()), next_ipv4_(kInitialNextIPv4),
504 next_ipv6_(kInitialNextIPv6), next_port_(kFirstEphemeralPort),
505 bindings_(new AddressMap()), connections_(new ConnectionMap()),
506 bandwidth_(0), network_capacity_(kDefaultNetworkCapacity),
507 send_buffer_capacity_(kDefaultTcpBufferSize),
508 recv_buffer_capacity_(kDefaultTcpBufferSize),
509 delay_mean_(0), delay_stddev_(0), delay_samples_(NUM_SAMPLES),
510 delay_dist_(NULL), drop_prob_(0.0) {
511 if (!server_) {
512 server_ = new PhysicalSocketServer();
513 server_owned_ = true;
514 }
515 UpdateDelayDistribution();
516}
517
518VirtualSocketServer::~VirtualSocketServer() {
519 delete bindings_;
520 delete connections_;
521 delete delay_dist_;
522 if (server_owned_) {
523 delete server_;
524 }
525}
526
527IPAddress VirtualSocketServer::GetNextIP(int family) {
528 if (family == AF_INET) {
529 IPAddress next_ip(next_ipv4_);
530 next_ipv4_.s_addr =
531 HostToNetwork32(NetworkToHost32(next_ipv4_.s_addr) + 1);
532 return next_ip;
533 } else if (family == AF_INET6) {
534 IPAddress next_ip(next_ipv6_);
535 uint32* as_ints = reinterpret_cast<uint32*>(&next_ipv6_.s6_addr);
536 as_ints[3] += 1;
537 return next_ip;
538 }
539 return IPAddress();
540}
541
542uint16 VirtualSocketServer::GetNextPort() {
543 uint16 port = next_port_;
544 if (next_port_ < kLastEphemeralPort) {
545 ++next_port_;
546 } else {
547 next_port_ = kFirstEphemeralPort;
548 }
549 return port;
550}
551
552Socket* VirtualSocketServer::CreateSocket(int type) {
553 return CreateSocket(AF_INET, type);
554}
555
556Socket* VirtualSocketServer::CreateSocket(int family, int type) {
557 return CreateSocketInternal(family, type);
558}
559
560AsyncSocket* VirtualSocketServer::CreateAsyncSocket(int type) {
561 return CreateAsyncSocket(AF_INET, type);
562}
563
564AsyncSocket* VirtualSocketServer::CreateAsyncSocket(int family, int type) {
565 return CreateSocketInternal(family, type);
566}
567
568VirtualSocket* VirtualSocketServer::CreateSocketInternal(int family, int type) {
569 return new VirtualSocket(this, family, type, true);
570}
571
572void VirtualSocketServer::SetMessageQueue(MessageQueue* msg_queue) {
573 msg_queue_ = msg_queue;
574 if (msg_queue_) {
575 msg_queue_->SignalQueueDestroyed.connect(this,
576 &VirtualSocketServer::OnMessageQueueDestroyed);
577 }
578}
579
580bool VirtualSocketServer::Wait(int cmsWait, bool process_io) {
581 ASSERT(msg_queue_ == Thread::Current());
582 if (stop_on_idle_ && Thread::Current()->empty()) {
583 return false;
584 }
585 return socketserver()->Wait(cmsWait, process_io);
586}
587
588void VirtualSocketServer::WakeUp() {
589 socketserver()->WakeUp();
590}
591
592bool VirtualSocketServer::ProcessMessagesUntilIdle() {
593 ASSERT(msg_queue_ == Thread::Current());
594 stop_on_idle_ = true;
595 while (!msg_queue_->empty()) {
596 Message msg;
andresp@webrtc.org53d90122015-02-09 14:19:09 +0000597 if (msg_queue_->Get(&msg, Thread::kForever)) {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000598 msg_queue_->Dispatch(&msg);
599 }
600 }
601 stop_on_idle_ = false;
602 return !msg_queue_->IsQuitting();
603}
604
jiayl@webrtc.org22406fc2014-09-09 15:44:05 +0000605void VirtualSocketServer::SetNextPortForTesting(uint16 port) {
606 next_port_ = port;
607}
608
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000609int VirtualSocketServer::Bind(VirtualSocket* socket,
610 const SocketAddress& addr) {
611 ASSERT(NULL != socket);
612 // Address must be completely specified at this point
613 ASSERT(!IPIsUnspec(addr.ipaddr()));
614 ASSERT(addr.port() != 0);
615
616 // Normalize the address (turns v6-mapped addresses into v4-addresses).
617 SocketAddress normalized(addr.ipaddr().Normalized(), addr.port());
618
619 AddressMap::value_type entry(normalized, socket);
620 return bindings_->insert(entry).second ? 0 : -1;
621}
622
623int VirtualSocketServer::Bind(VirtualSocket* socket, SocketAddress* addr) {
624 ASSERT(NULL != socket);
625
guoweis@webrtc.orgd3b453b2015-02-14 00:43:41 +0000626 if (!IPIsUnspec(addr->ipaddr())) {
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000627 addr->SetIP(addr->ipaddr().Normalized());
628 } else {
629 ASSERT(false);
630 }
631
632 if (addr->port() == 0) {
633 for (int i = 0; i < kEphemeralPortCount; ++i) {
634 addr->SetPort(GetNextPort());
635 if (bindings_->find(*addr) == bindings_->end()) {
636 break;
637 }
638 }
639 }
640
641 return Bind(socket, *addr);
642}
643
644VirtualSocket* VirtualSocketServer::LookupBinding(const SocketAddress& addr) {
645 SocketAddress normalized(addr.ipaddr().Normalized(),
646 addr.port());
647 AddressMap::iterator it = bindings_->find(normalized);
648 return (bindings_->end() != it) ? it->second : NULL;
649}
650
651int VirtualSocketServer::Unbind(const SocketAddress& addr,
652 VirtualSocket* socket) {
653 SocketAddress normalized(addr.ipaddr().Normalized(),
654 addr.port());
655 ASSERT((*bindings_)[normalized] == socket);
656 bindings_->erase(bindings_->find(normalized));
657 return 0;
658}
659
660void VirtualSocketServer::AddConnection(const SocketAddress& local,
661 const SocketAddress& remote,
662 VirtualSocket* remote_socket) {
663 // Add this socket pair to our routing table. This will allow
664 // multiple clients to connect to the same server address.
665 SocketAddress local_normalized(local.ipaddr().Normalized(),
666 local.port());
667 SocketAddress remote_normalized(remote.ipaddr().Normalized(),
668 remote.port());
669 SocketAddressPair address_pair(local_normalized, remote_normalized);
670 connections_->insert(std::pair<SocketAddressPair,
671 VirtualSocket*>(address_pair, remote_socket));
672}
673
674VirtualSocket* VirtualSocketServer::LookupConnection(
675 const SocketAddress& local,
676 const SocketAddress& remote) {
677 SocketAddress local_normalized(local.ipaddr().Normalized(),
678 local.port());
679 SocketAddress remote_normalized(remote.ipaddr().Normalized(),
680 remote.port());
681 SocketAddressPair address_pair(local_normalized, remote_normalized);
682 ConnectionMap::iterator it = connections_->find(address_pair);
683 return (connections_->end() != it) ? it->second : NULL;
684}
685
686void VirtualSocketServer::RemoveConnection(const SocketAddress& local,
687 const SocketAddress& remote) {
688 SocketAddress local_normalized(local.ipaddr().Normalized(),
689 local.port());
690 SocketAddress remote_normalized(remote.ipaddr().Normalized(),
691 remote.port());
692 SocketAddressPair address_pair(local_normalized, remote_normalized);
693 connections_->erase(address_pair);
694}
695
696static double Random() {
697 return static_cast<double>(rand()) / RAND_MAX;
698}
699
700int VirtualSocketServer::Connect(VirtualSocket* socket,
701 const SocketAddress& remote_addr,
702 bool use_delay) {
703 uint32 delay = use_delay ? GetRandomTransitDelay() : 0;
704 VirtualSocket* remote = LookupBinding(remote_addr);
705 if (!CanInteractWith(socket, remote)) {
706 LOG(LS_INFO) << "Address family mismatch between "
707 << socket->GetLocalAddress() << " and " << remote_addr;
708 return -1;
709 }
710 if (remote != NULL) {
711 SocketAddress addr = socket->GetLocalAddress();
712 msg_queue_->PostDelayed(delay, remote, MSG_ID_CONNECT,
713 new MessageAddress(addr));
714 } else {
715 LOG(LS_INFO) << "No one listening at " << remote_addr;
716 msg_queue_->PostDelayed(delay, socket, MSG_ID_DISCONNECT);
717 }
718 return 0;
719}
720
721bool VirtualSocketServer::Disconnect(VirtualSocket* socket) {
722 if (socket) {
723 // Remove the mapping.
bjornv@webrtc.org95a32ec2015-02-07 06:46:56 +0000724 msg_queue_->Post(socket, MSG_ID_DISCONNECT);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000725 return true;
726 }
727 return false;
728}
729
730int VirtualSocketServer::SendUdp(VirtualSocket* socket,
731 const char* data, size_t data_size,
732 const SocketAddress& remote_addr) {
733 // See if we want to drop this packet.
734 if (Random() < drop_prob_) {
735 LOG(LS_VERBOSE) << "Dropping packet: bad luck";
736 return static_cast<int>(data_size);
737 }
738
739 VirtualSocket* recipient = LookupBinding(remote_addr);
740 if (!recipient) {
741 // Make a fake recipient for address family checking.
742 scoped_ptr<VirtualSocket> dummy_socket(
743 CreateSocketInternal(AF_INET, SOCK_DGRAM));
744 dummy_socket->SetLocalAddress(remote_addr);
745 if (!CanInteractWith(socket, dummy_socket.get())) {
746 LOG(LS_VERBOSE) << "Incompatible address families: "
747 << socket->GetLocalAddress() << " and " << remote_addr;
748 return -1;
749 }
750 LOG(LS_VERBOSE) << "No one listening at " << remote_addr;
751 return static_cast<int>(data_size);
752 }
753
754 if (!CanInteractWith(socket, recipient)) {
755 LOG(LS_VERBOSE) << "Incompatible address families: "
756 << socket->GetLocalAddress() << " and " << remote_addr;
757 return -1;
758 }
759
760 CritScope cs(&socket->crit_);
761
762 uint32 cur_time = Time();
763 PurgeNetworkPackets(socket, cur_time);
764
765 // Determine whether we have enough bandwidth to accept this packet. To do
766 // this, we need to update the send queue. Once we know it's current size,
767 // we know whether we can fit this packet.
768 //
769 // NOTE: There are better algorithms for maintaining such a queue (such as
770 // "Derivative Random Drop"); however, this algorithm is a more accurate
771 // simulation of what a normal network would do.
772
773 size_t packet_size = data_size + UDP_HEADER_SIZE;
774 if (socket->network_size_ + packet_size > network_capacity_) {
775 LOG(LS_VERBOSE) << "Dropping packet: network capacity exceeded";
776 return static_cast<int>(data_size);
777 }
778
779 AddPacketToNetwork(socket, recipient, cur_time, data, data_size,
780 UDP_HEADER_SIZE, false);
781
782 return static_cast<int>(data_size);
783}
784
785void VirtualSocketServer::SendTcp(VirtualSocket* socket) {
786 // TCP can't send more data than will fill up the receiver's buffer.
787 // We track the data that is in the buffer plus data in flight using the
788 // recipient's recv_buffer_size_. Anything beyond that must be stored in the
789 // sender's buffer. We will trigger the buffered data to be sent when data
790 // is read from the recv_buffer.
791
792 // Lookup the local/remote pair in the connections table.
793 VirtualSocket* recipient = LookupConnection(socket->local_addr_,
794 socket->remote_addr_);
795 if (!recipient) {
796 LOG(LS_VERBOSE) << "Sending data to no one.";
797 return;
798 }
799
800 CritScope cs(&socket->crit_);
801
802 uint32 cur_time = Time();
803 PurgeNetworkPackets(socket, cur_time);
804
805 while (true) {
806 size_t available = recv_buffer_capacity_ - recipient->recv_buffer_size_;
andresp@webrtc.orgff689be2015-02-12 11:54:26 +0000807 size_t max_data_size =
808 std::min<size_t>(available, TCP_MSS - TCP_HEADER_SIZE);
809 size_t data_size = std::min(socket->send_buffer_.size(), max_data_size);
henrike@webrtc.orgf0488722014-05-13 18:00:26 +0000810 if (0 == data_size)
811 break;
812
813 AddPacketToNetwork(socket, recipient, cur_time, &socket->send_buffer_[0],
814 data_size, TCP_HEADER_SIZE, true);
815 recipient->recv_buffer_size_ += data_size;
816
817 size_t new_buffer_size = socket->send_buffer_.size() - data_size;
818 // Avoid undefined access beyond the last element of the vector.
819 // This only happens when new_buffer_size is 0.
820 if (data_size < socket->send_buffer_.size()) {
821 // memmove is required for potentially overlapping source/destination.
822 memmove(&socket->send_buffer_[0], &socket->send_buffer_[data_size],
823 new_buffer_size);
824 }
825 socket->send_buffer_.resize(new_buffer_size);
826 }
827
828 if (socket->write_enabled_
829 && (socket->send_buffer_.size() < send_buffer_capacity_)) {
830 socket->write_enabled_ = false;
831 socket->SignalWriteEvent(socket);
832 }
833}
834
835void VirtualSocketServer::AddPacketToNetwork(VirtualSocket* sender,
836 VirtualSocket* recipient,
837 uint32 cur_time,
838 const char* data,
839 size_t data_size,
840 size_t header_size,
841 bool ordered) {
842 VirtualSocket::NetworkEntry entry;
843 entry.size = data_size + header_size;
844
845 sender->network_size_ += entry.size;
846 uint32 send_delay = SendDelay(static_cast<uint32>(sender->network_size_));
847 entry.done_time = cur_time + send_delay;
848 sender->network_.push_back(entry);
849
850 // Find the delay for crossing the many virtual hops of the network.
851 uint32 transit_delay = GetRandomTransitDelay();
852
853 // Post the packet as a message to be delivered (on our own thread)
854 Packet* p = new Packet(data, data_size, sender->local_addr_);
855 uint32 ts = TimeAfter(send_delay + transit_delay);
856 if (ordered) {
857 // Ensure that new packets arrive after previous ones
858 // TODO: consider ordering on a per-socket basis, since this
859 // introduces artifical delay.
860 ts = TimeMax(ts, network_delay_);
861 }
862 msg_queue_->PostAt(ts, recipient, MSG_ID_PACKET, p);
863 network_delay_ = TimeMax(ts, network_delay_);
864}
865
866void VirtualSocketServer::PurgeNetworkPackets(VirtualSocket* socket,
867 uint32 cur_time) {
868 while (!socket->network_.empty() &&
869 (socket->network_.front().done_time <= cur_time)) {
870 ASSERT(socket->network_size_ >= socket->network_.front().size);
871 socket->network_size_ -= socket->network_.front().size;
872 socket->network_.pop_front();
873 }
874}
875
876uint32 VirtualSocketServer::SendDelay(uint32 size) {
877 if (bandwidth_ == 0)
878 return 0;
879 else
880 return 1000 * size / bandwidth_;
881}
882
883#if 0
884void PrintFunction(std::vector<std::pair<double, double> >* f) {
885 return;
886 double sum = 0;
887 for (uint32 i = 0; i < f->size(); ++i) {
888 std::cout << (*f)[i].first << '\t' << (*f)[i].second << std::endl;
889 sum += (*f)[i].second;
890 }
891 if (!f->empty()) {
892 const double mean = sum / f->size();
893 double sum_sq_dev = 0;
894 for (uint32 i = 0; i < f->size(); ++i) {
895 double dev = (*f)[i].second - mean;
896 sum_sq_dev += dev * dev;
897 }
898 std::cout << "Mean = " << mean << " StdDev = "
899 << sqrt(sum_sq_dev / f->size()) << std::endl;
900 }
901}
902#endif // <unused>
903
904void VirtualSocketServer::UpdateDelayDistribution() {
905 Function* dist = CreateDistribution(delay_mean_, delay_stddev_,
906 delay_samples_);
907 // We take a lock just to make sure we don't leak memory.
908 {
909 CritScope cs(&delay_crit_);
910 delete delay_dist_;
911 delay_dist_ = dist;
912 }
913}
914
915static double PI = 4 * atan(1.0);
916
917static double Normal(double x, double mean, double stddev) {
918 double a = (x - mean) * (x - mean) / (2 * stddev * stddev);
919 return exp(-a) / (stddev * sqrt(2 * PI));
920}
921
922#if 0 // static unused gives a warning
923static double Pareto(double x, double min, double k) {
924 if (x < min)
925 return 0;
926 else
927 return k * std::pow(min, k) / std::pow(x, k+1);
928}
929#endif
930
931VirtualSocketServer::Function* VirtualSocketServer::CreateDistribution(
932 uint32 mean, uint32 stddev, uint32 samples) {
933 Function* f = new Function();
934
935 if (0 == stddev) {
936 f->push_back(Point(mean, 1.0));
937 } else {
938 double start = 0;
939 if (mean >= 4 * static_cast<double>(stddev))
940 start = mean - 4 * static_cast<double>(stddev);
941 double end = mean + 4 * static_cast<double>(stddev);
942
943 for (uint32 i = 0; i < samples; i++) {
944 double x = start + (end - start) * i / (samples - 1);
945 double y = Normal(x, mean, stddev);
946 f->push_back(Point(x, y));
947 }
948 }
949 return Resample(Invert(Accumulate(f)), 0, 1, samples);
950}
951
952uint32 VirtualSocketServer::GetRandomTransitDelay() {
953 size_t index = rand() % delay_dist_->size();
954 double delay = (*delay_dist_)[index].second;
955 //LOG_F(LS_INFO) << "random[" << index << "] = " << delay;
956 return static_cast<uint32>(delay);
957}
958
959struct FunctionDomainCmp {
960 bool operator()(const VirtualSocketServer::Point& p1,
961 const VirtualSocketServer::Point& p2) {
962 return p1.first < p2.first;
963 }
964 bool operator()(double v1, const VirtualSocketServer::Point& p2) {
965 return v1 < p2.first;
966 }
967 bool operator()(const VirtualSocketServer::Point& p1, double v2) {
968 return p1.first < v2;
969 }
970};
971
972VirtualSocketServer::Function* VirtualSocketServer::Accumulate(Function* f) {
973 ASSERT(f->size() >= 1);
974 double v = 0;
975 for (Function::size_type i = 0; i < f->size() - 1; ++i) {
976 double dx = (*f)[i + 1].first - (*f)[i].first;
977 double avgy = ((*f)[i + 1].second + (*f)[i].second) / 2;
978 (*f)[i].second = v;
979 v = v + dx * avgy;
980 }
981 (*f)[f->size()-1].second = v;
982 return f;
983}
984
985VirtualSocketServer::Function* VirtualSocketServer::Invert(Function* f) {
986 for (Function::size_type i = 0; i < f->size(); ++i)
987 std::swap((*f)[i].first, (*f)[i].second);
988
989 std::sort(f->begin(), f->end(), FunctionDomainCmp());
990 return f;
991}
992
993VirtualSocketServer::Function* VirtualSocketServer::Resample(
994 Function* f, double x1, double x2, uint32 samples) {
995 Function* g = new Function();
996
997 for (size_t i = 0; i < samples; i++) {
998 double x = x1 + (x2 - x1) * i / (samples - 1);
999 double y = Evaluate(f, x);
1000 g->push_back(Point(x, y));
1001 }
1002
1003 delete f;
1004 return g;
1005}
1006
1007double VirtualSocketServer::Evaluate(Function* f, double x) {
1008 Function::iterator iter =
1009 std::lower_bound(f->begin(), f->end(), x, FunctionDomainCmp());
1010 if (iter == f->begin()) {
1011 return (*f)[0].second;
1012 } else if (iter == f->end()) {
1013 ASSERT(f->size() >= 1);
1014 return (*f)[f->size() - 1].second;
1015 } else if (iter->first == x) {
1016 return iter->second;
1017 } else {
1018 double x1 = (iter - 1)->first;
1019 double y1 = (iter - 1)->second;
1020 double x2 = iter->first;
1021 double y2 = iter->second;
1022 return y1 + (y2 - y1) * (x - x1) / (x2 - x1);
1023 }
1024}
1025
1026bool VirtualSocketServer::CanInteractWith(VirtualSocket* local,
1027 VirtualSocket* remote) {
1028 if (!local || !remote) {
1029 return false;
1030 }
1031 IPAddress local_ip = local->GetLocalAddress().ipaddr();
1032 IPAddress remote_ip = remote->GetLocalAddress().ipaddr();
1033 IPAddress local_normalized = local_ip.Normalized();
1034 IPAddress remote_normalized = remote_ip.Normalized();
1035 // Check if the addresses are the same family after Normalization (turns
1036 // mapped IPv6 address into IPv4 addresses).
1037 // This will stop unmapped V6 addresses from talking to mapped V6 addresses.
1038 if (local_normalized.family() == remote_normalized.family()) {
1039 return true;
1040 }
1041
1042 // If ip1 is IPv4 and ip2 is :: and ip2 is not IPV6_V6ONLY.
1043 int remote_v6_only = 0;
1044 remote->GetOption(Socket::OPT_IPV6_V6ONLY, &remote_v6_only);
1045 if (local_ip.family() == AF_INET && !remote_v6_only && IPIsAny(remote_ip)) {
1046 return true;
1047 }
1048 // Same check, backwards.
1049 int local_v6_only = 0;
1050 local->GetOption(Socket::OPT_IPV6_V6ONLY, &local_v6_only);
1051 if (remote_ip.family() == AF_INET && !local_v6_only && IPIsAny(local_ip)) {
1052 return true;
1053 }
1054
1055 // Check to see if either socket was explicitly bound to IPv6-any.
1056 // These sockets can talk with anyone.
1057 if (local_ip.family() == AF_INET6 && local->was_any()) {
1058 return true;
1059 }
1060 if (remote_ip.family() == AF_INET6 && remote->was_any()) {
1061 return true;
1062 }
1063
1064 return false;
1065}
1066
1067} // namespace rtc