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[email protected]774bdcc2012-01-19 03:44:381// Copyright (c) 2012 The Chromium Authors. All rights reserved.
[email protected]0840cc72009-11-24 16:14:532// Use of this source code is governed by a BSD-style license that can be
3// found in the LICENSE file.
4
5#include "base/sync_socket.h"
[email protected]532e9bd2012-01-25 12:04:176
[email protected]0840cc72009-11-24 16:14:537#include "base/logging.h"
[email protected]532e9bd2012-01-25 12:04:178#include "base/win/scoped_handle.h"
[email protected]0840cc72009-11-24 16:14:539
[email protected]0840cc72009-11-24 16:14:5310namespace base {
11
[email protected]532e9bd2012-01-25 12:04:1712using win::ScopedHandle;
13
[email protected]0840cc72009-11-24 16:14:5314namespace {
[email protected]774bdcc2012-01-19 03:44:3815// IMPORTANT: do not change how this name is generated because it will break
16// in sandboxed scenarios as we might have by-name policies that allow pipe
17// creation. Also keep the secure random number generation.
18const wchar_t kPipeNameFormat[] = L"\\\\.\\pipe\\chrome.sync.%u.%u.%lu";
19const size_t kPipePathMax = arraysize(kPipeNameFormat) + (3 * 10) + 1;
[email protected]0840cc72009-11-24 16:14:5320
21// To avoid users sending negative message lengths to Send/Receive
22// we clamp message lengths, which are size_t, to no more than INT_MAX.
23const size_t kMaxMessageLength = static_cast<size_t>(INT_MAX);
24
25const int kOutBufferSize = 4096;
26const int kInBufferSize = 4096;
27const int kDefaultTimeoutMilliSeconds = 1000;
28
[email protected]532e9bd2012-01-25 12:04:1729bool CreatePairImpl(HANDLE* socket_a, HANDLE* socket_b, bool overlapped) {
30 DCHECK(socket_a != socket_b);
31 DCHECK(*socket_a == SyncSocket::kInvalidHandle);
32 DCHECK(*socket_b == SyncSocket::kInvalidHandle);
[email protected]0840cc72009-11-24 16:14:5333
34 wchar_t name[kPipePathMax];
[email protected]532e9bd2012-01-25 12:04:1735 ScopedHandle handle_a;
36 DWORD flags = PIPE_ACCESS_DUPLEX | FILE_FLAG_FIRST_PIPE_INSTANCE;
37 if (overlapped)
38 flags |= FILE_FLAG_OVERLAPPED;
39
[email protected]0840cc72009-11-24 16:14:5340 do {
41 unsigned int rnd_name;
42 if (rand_s(&rnd_name) != 0)
43 return false;
[email protected]532e9bd2012-01-25 12:04:1744
[email protected]774bdcc2012-01-19 03:44:3845 swprintf(name, kPipePathMax,
46 kPipeNameFormat,
47 GetCurrentProcessId(),
48 GetCurrentThreadId(),
[email protected]0840cc72009-11-24 16:14:5349 rnd_name);
[email protected]532e9bd2012-01-25 12:04:1750
51 handle_a.Set(CreateNamedPipeW(
[email protected]0840cc72009-11-24 16:14:5352 name,
[email protected]532e9bd2012-01-25 12:04:1753 flags,
[email protected]0840cc72009-11-24 16:14:5354 PIPE_TYPE_BYTE | PIPE_READMODE_BYTE,
55 1,
56 kOutBufferSize,
57 kInBufferSize,
58 kDefaultTimeoutMilliSeconds,
[email protected]532e9bd2012-01-25 12:04:1759 NULL));
60 } while (!handle_a.IsValid() &&
[email protected]774bdcc2012-01-19 03:44:3861 (GetLastError() == ERROR_PIPE_BUSY));
62
[email protected]532e9bd2012-01-25 12:04:1763 if (!handle_a.IsValid()) {
[email protected]774bdcc2012-01-19 03:44:3864 NOTREACHED();
65 return false;
66 }
[email protected]532e9bd2012-01-25 12:04:1767
68 // The SECURITY_ANONYMOUS flag means that the server side (handle_a) cannot
69 // impersonate the client (handle_b). This allows us not to care which side
[email protected]774bdcc2012-01-19 03:44:3870 // ends up in which side of a privilege boundary.
[email protected]532e9bd2012-01-25 12:04:1771 flags = SECURITY_SQOS_PRESENT | SECURITY_ANONYMOUS;
72 if (overlapped)
73 flags |= FILE_FLAG_OVERLAPPED;
74
75 ScopedHandle handle_b(CreateFileW(name,
76 GENERIC_READ | GENERIC_WRITE,
77 0, // no sharing.
78 NULL, // default security attributes.
79 OPEN_EXISTING, // opens existing pipe.
80 flags,
81 NULL)); // no template file.
82 if (!handle_b.IsValid()) {
83 DPLOG(ERROR) << "CreateFileW failed";
[email protected]0840cc72009-11-24 16:14:5384 return false;
85 }
[email protected]532e9bd2012-01-25 12:04:1786
87 if (!ConnectNamedPipe(handle_a, NULL)) {
[email protected]0840cc72009-11-24 16:14:5388 DWORD error = GetLastError();
89 if (error != ERROR_PIPE_CONNECTED) {
[email protected]532e9bd2012-01-25 12:04:1790 DPLOG(ERROR) << "ConnectNamedPipe failed";
[email protected]0840cc72009-11-24 16:14:5391 return false;
92 }
93 }
[email protected]532e9bd2012-01-25 12:04:1794
95 *socket_a = handle_a.Take();
96 *socket_b = handle_b.Take();
97
[email protected]0840cc72009-11-24 16:14:5398 return true;
99}
100
[email protected]532e9bd2012-01-25 12:04:17101// Inline helper to avoid having the cast everywhere.
102DWORD GetNextChunkSize(size_t current_pos, size_t max_size) {
103 // The following statement is for 64 bit portability.
104 return static_cast<DWORD>(((max_size - current_pos) <= UINT_MAX) ?
105 (max_size - current_pos) : UINT_MAX);
106}
107
108// Template function that supports calling ReadFile or WriteFile in an
109// overlapped fashion and waits for IO completion. The function also waits
110// on an event that can be used to cancel the operation. If the operation
111// is cancelled, the function returns and closes the relevant socket object.
112template <typename BufferType, typename Function>
113size_t CancelableFileOperation(Function operation, HANDLE file,
114 BufferType* buffer, size_t length,
115 base::WaitableEvent* io_event,
116 base::WaitableEvent* cancel_event,
[email protected]5d272092012-04-19 10:23:03117 CancelableSyncSocket* socket,
118 DWORD timeout_in_ms) {
[email protected]532e9bd2012-01-25 12:04:17119 // The buffer must be byte size or the length check won't make much sense.
120 COMPILE_ASSERT(sizeof(buffer[0]) == sizeof(char), incorrect_buffer_type);
121 DCHECK_LE(length, kMaxMessageLength);
122
123 OVERLAPPED ol = {0};
124 ol.hEvent = io_event->handle();
125 size_t count = 0;
126 while (count < length) {
127 DWORD chunk = GetNextChunkSize(count, length);
128 // This is either the ReadFile or WriteFile call depending on whether
129 // we're receiving or sending data.
[email protected]23bf6982012-02-03 12:44:44130 DWORD len = 0;
[email protected]532e9bd2012-01-25 12:04:17131 BOOL ok = operation(file, static_cast<BufferType*>(buffer) + count, chunk,
132 &len, &ol);
133 if (!ok) {
134 if (::GetLastError() == ERROR_IO_PENDING) {
[email protected]5d272092012-04-19 10:23:03135 HANDLE events[] = { io_event->handle(), cancel_event->handle() };
136 int wait_result = WaitForMultipleObjects(
137 arraysize(events), events, FALSE, timeout_in_ms);
138 if (wait_result == (WAIT_OBJECT_0 + 0)) {
139 GetOverlappedResult(file, &ol, &len, TRUE);
140 } else if (wait_result == (WAIT_OBJECT_0 + 1)) {
[email protected]532e9bd2012-01-25 12:04:17141 VLOG(1) << "Shutdown was signaled. Closing socket.";
[email protected]23bf6982012-02-03 12:44:44142 CancelIo(file);
[email protected]532e9bd2012-01-25 12:04:17143 socket->Close();
[email protected]23bf6982012-02-03 12:44:44144 count = 0;
[email protected]532e9bd2012-01-25 12:04:17145 break;
146 } else {
[email protected]5d272092012-04-19 10:23:03147 // Timeout happened.
148 DCHECK_EQ(WAIT_TIMEOUT, wait_result);
149 if (!CancelIo(file)){
150 DLOG(WARNING) << "CancelIo() failed";
151 }
152 break;
[email protected]532e9bd2012-01-25 12:04:17153 }
154 } else {
[email protected]5d272092012-04-19 10:23:03155 break;
[email protected]532e9bd2012-01-25 12:04:17156 }
157 }
[email protected]5d272092012-04-19 10:23:03158
[email protected]532e9bd2012-01-25 12:04:17159 count += len;
[email protected]5d272092012-04-19 10:23:03160
161 // Quit the operation if we can't write/read anymore.
162 if (len != chunk)
163 break;
[email protected]0840cc72009-11-24 16:14:53164 }
[email protected]5d272092012-04-19 10:23:03165
166 return (count > 0) ? count : 0;
[email protected]532e9bd2012-01-25 12:04:17167}
168
169} // namespace
170
[email protected]0f248ef2013-05-23 04:34:11171#if defined(COMPONENT_BUILD)
[email protected]532e9bd2012-01-25 12:04:17172const SyncSocket::Handle SyncSocket::kInvalidHandle = INVALID_HANDLE_VALUE;
[email protected]0f248ef2013-05-23 04:34:11173#endif
[email protected]532e9bd2012-01-25 12:04:17174
175SyncSocket::SyncSocket() : handle_(kInvalidHandle) {}
176
177SyncSocket::~SyncSocket() {
178 Close();
179}
180
181// static
182bool SyncSocket::CreatePair(SyncSocket* socket_a, SyncSocket* socket_b) {
183 return CreatePairImpl(&socket_a->handle_, &socket_b->handle_, false);
184}
185
186bool SyncSocket::Close() {
187 if (handle_ == kInvalidHandle)
188 return false;
189
[email protected]0840cc72009-11-24 16:14:53190 BOOL retval = CloseHandle(handle_);
191 handle_ = kInvalidHandle;
192 return retval ? true : false;
193}
194
195size_t SyncSocket::Send(const void* buffer, size_t length) {
[email protected]d7a93ad2011-04-22 13:13:07196 DCHECK_LE(length, kMaxMessageLength);
[email protected]0840cc72009-11-24 16:14:53197 size_t count = 0;
198 while (count < length) {
199 DWORD len;
[email protected]532e9bd2012-01-25 12:04:17200 DWORD chunk = GetNextChunkSize(count, length);
[email protected]0840cc72009-11-24 16:14:53201 if (WriteFile(handle_, static_cast<const char*>(buffer) + count,
202 chunk, &len, NULL) == FALSE) {
203 return (0 < count) ? count : 0;
204 }
205 count += len;
206 }
207 return count;
208}
209
210size_t SyncSocket::Receive(void* buffer, size_t length) {
[email protected]d7a93ad2011-04-22 13:13:07211 DCHECK_LE(length, kMaxMessageLength);
[email protected]0840cc72009-11-24 16:14:53212 size_t count = 0;
213 while (count < length) {
214 DWORD len;
[email protected]532e9bd2012-01-25 12:04:17215 DWORD chunk = GetNextChunkSize(count, length);
[email protected]0840cc72009-11-24 16:14:53216 if (ReadFile(handle_, static_cast<char*>(buffer) + count,
217 chunk, &len, NULL) == FALSE) {
218 return (0 < count) ? count : 0;
219 }
220 count += len;
221 }
222 return count;
223}
224
[email protected]d8b65912009-12-04 22:53:22225size_t SyncSocket::Peek() {
226 DWORD available = 0;
227 PeekNamedPipe(handle_, NULL, 0, NULL, &available, NULL);
228 return available;
229}
230
[email protected]532e9bd2012-01-25 12:04:17231CancelableSyncSocket::CancelableSyncSocket()
232 : shutdown_event_(true, false), file_operation_(true, false) {
233}
234
235CancelableSyncSocket::CancelableSyncSocket(Handle handle)
236 : SyncSocket(handle), shutdown_event_(true, false),
237 file_operation_(true, false) {
238}
239
240bool CancelableSyncSocket::Shutdown() {
241 // This doesn't shut down the pipe immediately, but subsequent Receive or Send
242 // methods will fail straight away.
243 shutdown_event_.Signal();
244 return true;
245}
246
247bool CancelableSyncSocket::Close() {
248 bool ret = SyncSocket::Close();
249 shutdown_event_.Reset();
250 return ret;
251}
252
253size_t CancelableSyncSocket::Send(const void* buffer, size_t length) {
[email protected]5d272092012-04-19 10:23:03254 static const DWORD kWaitTimeOutInMs = 500;
255 return CancelableFileOperation(
256 &WriteFile, handle_, reinterpret_cast<const char*>(buffer),
257 length, &file_operation_, &shutdown_event_, this, kWaitTimeOutInMs);
[email protected]532e9bd2012-01-25 12:04:17258}
259
260size_t CancelableSyncSocket::Receive(void* buffer, size_t length) {
261 return CancelableFileOperation(&ReadFile, handle_,
262 reinterpret_cast<char*>(buffer), length, &file_operation_,
[email protected]5d272092012-04-19 10:23:03263 &shutdown_event_, this, INFINITE);
[email protected]532e9bd2012-01-25 12:04:17264}
265
266// static
267bool CancelableSyncSocket::CreatePair(CancelableSyncSocket* socket_a,
268 CancelableSyncSocket* socket_b) {
269 return CreatePairImpl(&socket_a->handle_, &socket_b->handle_, true);
270}
271
272
[email protected]0840cc72009-11-24 16:14:53273} // namespace base