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| 1 // Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file | 1 // Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file |
| 2 // for details. All rights reserved. Use of this source code is governed by a | 2 // for details. All rights reserved. Use of this source code is governed by a |
| 3 // BSD-style license that can be found in the LICENSE file. | 3 // BSD-style license that can be found in the LICENSE file. |
| 4 | 4 |
| 5 #include "platform/globals.h" | 5 #include "platform/globals.h" |
| 6 #if defined(TARGET_OS_ANDROID) | 6 #if defined(TARGET_OS_ANDROID) |
| 7 | 7 |
| 8 #include "bin/process.h" | 8 #include "bin/process.h" |
| 9 | 9 |
| 10 #include <errno.h> // NOLINT | 10 #include <errno.h> // NOLINT |
| 11 #include <fcntl.h> // NOLINT | 11 #include <fcntl.h> // NOLINT |
| 12 #include <poll.h> // NOLINT | 12 #include <poll.h> // NOLINT |
| 13 #include <signal.h> // NOLINT | |
| 14 #include <stdio.h> // NOLINT | 13 #include <stdio.h> // NOLINT |
| 15 #include <stdlib.h> // NOLINT | 14 #include <stdlib.h> // NOLINT |
| 16 #include <string.h> // NOLINT | 15 #include <string.h> // NOLINT |
| 17 #include <sys/wait.h> // NOLINT | 16 #include <sys/wait.h> // NOLINT |
| 18 #include <unistd.h> // NOLINT | 17 #include <unistd.h> // NOLINT |
| 19 | 18 |
| 20 #include "bin/fdutils.h" | 19 #include "bin/fdutils.h" |
| 21 #include "bin/log.h" | 20 #include "bin/log.h" |
| 22 #include "bin/thread.h" | 21 #include "bin/thread.h" |
| 23 | 22 |
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| 104 // Mutex protecting all accesses to the linked list of active | 103 // Mutex protecting all accesses to the linked list of active |
| 105 // processes. | 104 // processes. |
| 106 static dart::Mutex* mutex_; | 105 static dart::Mutex* mutex_; |
| 107 }; | 106 }; |
| 108 | 107 |
| 109 | 108 |
| 110 ProcessInfo* ProcessInfoList::active_processes_ = NULL; | 109 ProcessInfo* ProcessInfoList::active_processes_ = NULL; |
| 111 dart::Mutex* ProcessInfoList::mutex_ = new dart::Mutex(); | 110 dart::Mutex* ProcessInfoList::mutex_ = new dart::Mutex(); |
| 112 | 111 |
| 113 | 112 |
| 114 // The exit code handler sets up a separate thread which is signalled | 113 // The exit code handler sets up a separate thread which waits for child |
| 115 // on SIGCHLD. That separate thread can then get the exit code from | 114 // processes to terminate. That separate thread can then get the exit code from |
| 116 // processes that have exited and communicate it to Dart through the | 115 // processes that have exited and communicate it to Dart through the |
| 117 // event loop. | 116 // event loop. |
| 118 class ExitCodeHandler { | 117 class ExitCodeHandler { |
| 119 public: | 118 public: |
| 120 // Ensure that the ExitCodeHandler has been initialized. | 119 // Notify the ExitCodeHandler that another process exists. |
| 121 static bool EnsureInitialized() { | 120 static void ProcessStarted() { |
| 122 // Multiple isolates could be starting processes at the same | 121 // Multiple isolates could be starting processes at the same |
| 123 // time. Make sure that only one of them initializes the | 122 // time. Make sure that only one ExitCodeHandler thread exists. |
| 124 // ExitCodeHandler. | 123 MonitorLocker locker(monitor_); |
| 125 MutexLocker locker(mutex_); | 124 process_count_++; |
| 126 if (initialized_) { | 125 |
| 127 return true; | 126 monitor_->Notify(); |
| 127 |
| 128 if (running_) { |
| 129 return; |
| 128 } | 130 } |
| 129 | 131 |
| 130 // Allocate a pipe that the signal handler can write a byte to and | 132 // Start thread that handles process exits when wait returns. |
| 131 // that the exit handler thread can poll. | 133 int result = dart::Thread::Start(ExitCodeHandlerEntry, 0); |
| 132 int result = TEMP_FAILURE_RETRY(pipe(sig_chld_fds_)); | |
| 133 if (result < 0) { | |
| 134 return false; | |
| 135 } | |
| 136 FDUtils::SetCloseOnExec(sig_chld_fds_[0]); | |
| 137 FDUtils::SetCloseOnExec(sig_chld_fds_[1]); | |
| 138 | |
| 139 // Start thread that polls the pipe and handles process exits when | |
| 140 // data is received on the pipe. | |
| 141 result = dart::Thread::Start(ExitCodeHandlerEntry, sig_chld_fds_[0]); | |
| 142 if (result != 0) { | 134 if (result != 0) { |
| 143 FATAL1("Failed to start exit code handler worker thread %d", result); | 135 FATAL1("Failed to start exit code handler worker thread %d", result); |
| 144 } | 136 } |
| 145 | 137 |
| 146 // Mark write end non-blocking. | 138 running_ = true; |
| 147 FDUtils::SetNonBlocking(sig_chld_fds_[1]); | |
| 148 | |
| 149 // Thread started and the ExitCodeHandler is initialized. | |
| 150 initialized_ = true; | |
| 151 return true; | |
| 152 } | |
| 153 | |
| 154 // Get the write end of the pipe. | |
| 155 static int WakeUpFd() { | |
| 156 return sig_chld_fds_[1]; | |
| 157 } | 139 } |
| 158 | 140 |
| 159 static void TerminateExitCodeThread() { | 141 static void TerminateExitCodeThread() { |
| 160 MutexLocker locker(mutex_); | 142 MonitorLocker locker(monitor_); |
| 161 if (!initialized_) { | 143 |
| 144 if (!running_) { |
| 162 return; | 145 return; |
| 163 } | 146 } |
| 164 | 147 |
| 165 uint8_t data = kThreadTerminateByte; | 148 // Set terminate_done_ to false, so we can use it as a guard for our |
| 166 ssize_t result = | 149 // monitor. |
| 167 TEMP_FAILURE_RETRY(write(ExitCodeHandler::WakeUpFd(), &data, 1)); | 150 running_ = false; |
| 168 if (result < 1) { | 151 |
| 169 perror("Failed to write to wake-up fd to terminate exit code thread"); | 152 // Fork to wake up waitpid. |
| 153 if (TEMP_FAILURE_RETRY(fork()) == 0) { |
| 154 exit(0); |
| 170 } | 155 } |
| 171 | 156 |
| 172 { | 157 monitor_->Notify(); |
| 173 MonitorLocker terminate_locker(thread_terminate_monitor_); | 158 |
| 174 while (!thread_terminated_) { | 159 while (!terminate_done_) { |
| 175 terminate_locker.Wait(); | 160 monitor_->Wait(dart::Monitor::kNoTimeout); |
| 161 } |
| 162 } |
| 163 |
| 164 private: |
| 165 // Entry point for the separate exit code handler thread started by |
| 166 // the ExitCodeHandler. |
| 167 static void ExitCodeHandlerEntry(uword param) { |
| 168 pid_t pid = 0; |
| 169 int status = 0; |
| 170 while (true) { |
| 171 { |
| 172 MonitorLocker locker(monitor_); |
| 173 while (running_ && process_count_ == 0) { |
| 174 monitor_->Wait(dart::Monitor::kNoTimeout); |
| 175 } |
| 176 if (!running_) { |
| 177 terminate_done_ = true; |
| 178 monitor_->Notify(); |
| 179 return; |
| 180 } |
| 181 } |
| 182 |
| 183 if ((pid = TEMP_FAILURE_RETRY(wait(&status))) > 0) { |
| 184 int exit_code = 0; |
| 185 int negative = 0; |
| 186 if (WIFEXITED(status)) { |
| 187 exit_code = WEXITSTATUS(status); |
| 188 } |
| 189 if (WIFSIGNALED(status)) { |
| 190 exit_code = WTERMSIG(status); |
| 191 negative = 1; |
| 192 } |
| 193 intptr_t exit_code_fd = ProcessInfoList::LookupProcessExitFd(pid); |
| 194 if (exit_code_fd != 0) { |
| 195 int message[2] = { exit_code, negative }; |
| 196 ssize_t result = |
| 197 FDUtils::WriteToBlocking(exit_code_fd, &message, sizeof(message)); |
| 198 // If the process has been closed, the read end of the exit |
| 199 // pipe has been closed. It is therefore not a problem that |
| 200 // write fails with a broken pipe error. Other errors should |
| 201 // not happen. |
| 202 if (result != -1 && result != sizeof(message)) { |
| 203 FATAL("Failed to write entire process exit message"); |
| 204 } else if (result == -1 && errno != EPIPE) { |
| 205 FATAL1("Failed to write exit code: %d", errno); |
| 206 } |
| 207 ProcessInfoList::RemoveProcess(pid); |
| 208 { |
| 209 MonitorLocker locker(monitor_); |
| 210 process_count_--; |
| 211 } |
| 212 } |
| 176 } | 213 } |
| 177 } | 214 } |
| 178 } | 215 } |
| 179 | 216 |
| 180 static void ExitCodeThreadTerminated() { | 217 static bool terminate_done_; |
| 181 MonitorLocker locker(thread_terminate_monitor_); | 218 static int process_count_; |
| 182 thread_terminated_ = true; | 219 static bool running_; |
| 183 locker.Notify(); | 220 static dart::Monitor* monitor_; |
| 184 } | |
| 185 | |
| 186 private: | |
| 187 static const uint8_t kThreadTerminateByte = 1; | |
| 188 | |
| 189 // GetProcessExitCodes is called on a separate thread when a SIGCHLD | |
| 190 // signal is received to retrieve the exit codes and post them to | |
| 191 // dart. | |
| 192 static void GetProcessExitCodes() { | |
| 193 pid_t pid = 0; | |
| 194 int status = 0; | |
| 195 while ((pid = TEMP_FAILURE_RETRY(waitpid(-1, &status, WNOHANG))) > 0) { | |
| 196 int exit_code = 0; | |
| 197 int negative = 0; | |
| 198 if (WIFEXITED(status)) { | |
| 199 exit_code = WEXITSTATUS(status); | |
| 200 } | |
| 201 if (WIFSIGNALED(status)) { | |
| 202 exit_code = WTERMSIG(status); | |
| 203 negative = 1; | |
| 204 } | |
| 205 intptr_t exit_code_fd = ProcessInfoList::LookupProcessExitFd(pid); | |
| 206 if (exit_code_fd != 0) { | |
| 207 int message[2] = { exit_code, negative }; | |
| 208 ssize_t result = | |
| 209 FDUtils::WriteToBlocking(exit_code_fd, &message, sizeof(message)); | |
| 210 // If the process has been closed, the read end of the exit | |
| 211 // pipe has been closed. It is therefore not a problem that | |
| 212 // write fails with a broken pipe error. Other errors should | |
| 213 // not happen. | |
| 214 if (result != -1 && result != sizeof(message)) { | |
| 215 FATAL("Failed to write entire process exit message"); | |
| 216 } else if (result == -1 && errno != EPIPE) { | |
| 217 FATAL1("Failed to write exit code: %d", errno); | |
| 218 } | |
| 219 ProcessInfoList::RemoveProcess(pid); | |
| 220 } | |
| 221 } | |
| 222 } | |
| 223 | |
| 224 | |
| 225 // Entry point for the separate exit code handler thread started by | |
| 226 // the ExitCodeHandler. | |
| 227 static void ExitCodeHandlerEntry(uword param) { | |
| 228 struct pollfd pollfds; | |
| 229 pollfds.fd = param; | |
| 230 pollfds.events = POLLIN; | |
| 231 while (true) { | |
| 232 int result = TEMP_FAILURE_RETRY(poll(&pollfds, 1, -1)); | |
| 233 if (result == -1) { | |
| 234 ASSERT(EAGAIN == EWOULDBLOCK); | |
| 235 if (errno != EWOULDBLOCK) { | |
| 236 perror("ExitCodeHandler poll failed"); | |
| 237 } | |
| 238 } else { | |
| 239 // Read the byte from the wake-up fd. | |
| 240 ASSERT(result = 1); | |
| 241 intptr_t data = 0; | |
| 242 ssize_t read_bytes = FDUtils::ReadFromBlocking(pollfds.fd, &data, 1); | |
| 243 if (read_bytes < 1) { | |
| 244 perror("Failed to read from wake-up fd in exit-code handler"); | |
| 245 } | |
| 246 if (data == ExitCodeHandler::kThreadTerminateByte) { | |
| 247 ExitCodeThreadTerminated(); | |
| 248 return; | |
| 249 } | |
| 250 // Get the exit code from all processes that have died. | |
| 251 GetProcessExitCodes(); | |
| 252 } | |
| 253 } | |
| 254 } | |
| 255 | |
| 256 static dart::Mutex* mutex_; | |
| 257 static bool initialized_; | |
| 258 static int sig_chld_fds_[2]; | |
| 259 static bool thread_terminated_; | |
| 260 static dart::Monitor* thread_terminate_monitor_; | |
| 261 }; | 221 }; |
| 262 | 222 |
| 263 | 223 |
| 264 dart::Mutex* ExitCodeHandler::mutex_ = new dart::Mutex(); | 224 bool ExitCodeHandler::running_ = false; |
| 265 bool ExitCodeHandler::initialized_ = false; | 225 int ExitCodeHandler::process_count_ = 0; |
| 266 int ExitCodeHandler::sig_chld_fds_[2] = { 0, 0 }; | 226 bool ExitCodeHandler::terminate_done_ = false; |
| 267 bool ExitCodeHandler::thread_terminated_ = false; | 227 dart::Monitor* ExitCodeHandler::monitor_ = new dart::Monitor(); |
| 268 dart::Monitor* ExitCodeHandler::thread_terminate_monitor_ = new dart::Monitor(); | |
| 269 | 228 |
| 270 | 229 |
| 271 static void SetChildOsErrorMessage(char** os_error_message) { | 230 static void SetChildOsErrorMessage(char** os_error_message) { |
| 272 const int kBufferSize = 1024; | 231 const int kBufferSize = 1024; |
| 273 char error_message[kBufferSize]; | 232 char error_message[kBufferSize]; |
| 274 strerror_r(errno, error_message, kBufferSize); | 233 strerror_r(errno, error_message, kBufferSize); |
| 275 *os_error_message = strdup(error_message); | 234 *os_error_message = strdup(error_message); |
| 276 } | 235 } |
| 277 | 236 |
| 278 | 237 |
| 279 static void SigChldHandler(int process_signal, siginfo_t* siginfo, void* tmp) { | |
| 280 // Save errno so it can be restored at the end. | |
| 281 int entry_errno = errno; | |
| 282 // Signal the exit code handler where the actual processing takes | |
| 283 // place. | |
| 284 ssize_t result = | |
| 285 TEMP_FAILURE_RETRY(write(ExitCodeHandler::WakeUpFd(), "", 1)); | |
| 286 if (result < 1) { | |
| 287 perror("Failed to write to wake-up fd in SIGCHLD handler"); | |
| 288 } | |
| 289 // Restore errno. | |
| 290 errno = entry_errno; | |
| 291 } | |
| 292 | |
| 293 | |
| 294 static void ReportChildError(int exec_control_fd) { | 238 static void ReportChildError(int exec_control_fd) { |
| 295 // In the case of failure in the child process write the errno and | 239 // In the case of failure in the child process write the errno and |
| 296 // the OS error message to the exec control pipe and exit. | 240 // the OS error message to the exec control pipe and exit. |
| 297 int child_errno = errno; | 241 int child_errno = errno; |
| 298 const int kBufferSize = 1024; | 242 const int kBufferSize = 1024; |
| 299 char os_error_message[kBufferSize]; | 243 char os_error_message[kBufferSize]; |
| 300 strerror_r(errno, os_error_message, kBufferSize); | 244 strerror_r(errno, os_error_message, kBufferSize); |
| 301 ASSERT(sizeof(child_errno) == sizeof(errno)); | 245 ASSERT(sizeof(child_errno) == sizeof(errno)); |
| 302 int bytes_written = | 246 int bytes_written = |
| 303 FDUtils::WriteToBlocking( | 247 FDUtils::WriteToBlocking( |
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| 323 intptr_t* id, | 267 intptr_t* id, |
| 324 intptr_t* exit_event, | 268 intptr_t* exit_event, |
| 325 char** os_error_message) { | 269 char** os_error_message) { |
| 326 pid_t pid; | 270 pid_t pid; |
| 327 int read_in[2]; // Pipe for stdout to child process. | 271 int read_in[2]; // Pipe for stdout to child process. |
| 328 int read_err[2]; // Pipe for stderr to child process. | 272 int read_err[2]; // Pipe for stderr to child process. |
| 329 int write_out[2]; // Pipe for stdin to child process. | 273 int write_out[2]; // Pipe for stdin to child process. |
| 330 int exec_control[2]; // Pipe to get the result from exec. | 274 int exec_control[2]; // Pipe to get the result from exec. |
| 331 int result; | 275 int result; |
| 332 | 276 |
| 333 bool initialized = ExitCodeHandler::EnsureInitialized(); | |
| 334 if (!initialized) { | |
| 335 SetChildOsErrorMessage(os_error_message); | |
| 336 Log::PrintErr("Error initializing exit code handler: %s\n", | |
| 337 *os_error_message); | |
| 338 return errno; | |
| 339 } | |
| 340 | |
| 341 result = TEMP_FAILURE_RETRY(pipe(read_in)); | 277 result = TEMP_FAILURE_RETRY(pipe(read_in)); |
| 342 if (result < 0) { | 278 if (result < 0) { |
| 343 SetChildOsErrorMessage(os_error_message); | 279 SetChildOsErrorMessage(os_error_message); |
| 344 Log::PrintErr("Error pipe creation failed: %s\n", *os_error_message); | 280 Log::PrintErr("Error pipe creation failed: %s\n", *os_error_message); |
| 345 return errno; | 281 return errno; |
| 346 } | 282 } |
| 347 FDUtils::SetCloseOnExec(read_in[0]); | 283 FDUtils::SetCloseOnExec(read_in[0]); |
| 348 | 284 |
| 349 result = TEMP_FAILURE_RETRY(pipe(read_err)); | 285 result = TEMP_FAILURE_RETRY(pipe(read_err)); |
| 350 if (result < 0) { | 286 if (result < 0) { |
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| 406 | 342 |
| 407 char** program_environment = NULL; | 343 char** program_environment = NULL; |
| 408 if (environment != NULL) { | 344 if (environment != NULL) { |
| 409 program_environment = new char*[environment_length + 1]; | 345 program_environment = new char*[environment_length + 1]; |
| 410 for (int i = 0; i < environment_length; i++) { | 346 for (int i = 0; i < environment_length; i++) { |
| 411 program_environment[i] = environment[i]; | 347 program_environment[i] = environment[i]; |
| 412 } | 348 } |
| 413 program_environment[environment_length] = NULL; | 349 program_environment[environment_length] = NULL; |
| 414 } | 350 } |
| 415 | 351 |
| 416 struct sigaction act; | |
| 417 bzero(&act, sizeof(act)); | |
| 418 act.sa_sigaction = SigChldHandler; | |
| 419 act.sa_flags = SA_NOCLDSTOP | SA_SIGINFO; | |
| 420 if (sigaction(SIGCHLD, &act, 0) != 0) { | |
| 421 perror("Process start: setting signal handler failed"); | |
| 422 } | |
| 423 pid = TEMP_FAILURE_RETRY(fork()); | 352 pid = TEMP_FAILURE_RETRY(fork()); |
| 424 if (pid < 0) { | 353 if (pid < 0) { |
| 425 SetChildOsErrorMessage(os_error_message); | 354 SetChildOsErrorMessage(os_error_message); |
| 426 delete[] program_arguments; | 355 delete[] program_arguments; |
| 427 TEMP_FAILURE_RETRY(close(read_in[0])); | 356 TEMP_FAILURE_RETRY(close(read_in[0])); |
| 428 TEMP_FAILURE_RETRY(close(read_in[1])); | 357 TEMP_FAILURE_RETRY(close(read_in[1])); |
| 429 TEMP_FAILURE_RETRY(close(read_err[0])); | 358 TEMP_FAILURE_RETRY(close(read_err[0])); |
| 430 TEMP_FAILURE_RETRY(close(read_err[1])); | 359 TEMP_FAILURE_RETRY(close(read_err[1])); |
| 431 TEMP_FAILURE_RETRY(close(write_out[0])); | 360 TEMP_FAILURE_RETRY(close(write_out[0])); |
| 432 TEMP_FAILURE_RETRY(close(write_out[1])); | 361 TEMP_FAILURE_RETRY(close(write_out[1])); |
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| 556 FDUtils::SetNonBlocking(read_in[0]); | 485 FDUtils::SetNonBlocking(read_in[0]); |
| 557 *in = read_in[0]; | 486 *in = read_in[0]; |
| 558 TEMP_FAILURE_RETRY(close(read_in[1])); | 487 TEMP_FAILURE_RETRY(close(read_in[1])); |
| 559 FDUtils::SetNonBlocking(write_out[1]); | 488 FDUtils::SetNonBlocking(write_out[1]); |
| 560 *out = write_out[1]; | 489 *out = write_out[1]; |
| 561 TEMP_FAILURE_RETRY(close(write_out[0])); | 490 TEMP_FAILURE_RETRY(close(write_out[0])); |
| 562 FDUtils::SetNonBlocking(read_err[0]); | 491 FDUtils::SetNonBlocking(read_err[0]); |
| 563 *err = read_err[0]; | 492 *err = read_err[0]; |
| 564 TEMP_FAILURE_RETRY(close(read_err[1])); | 493 TEMP_FAILURE_RETRY(close(read_err[1])); |
| 565 | 494 |
| 495 // Be sure to listen for exit-codes, now we have a child-process. |
| 496 ExitCodeHandler::ProcessStarted(); |
| 497 |
| 566 *id = pid; | 498 *id = pid; |
| 567 return 0; | 499 return 0; |
| 568 } | 500 } |
| 569 | 501 |
| 570 | 502 |
| 571 class BufferList: public BufferListBase { | 503 class BufferList: public BufferListBase { |
| 572 public: | 504 public: |
| 573 bool Read(int fd, intptr_t available) { | 505 bool Read(int fd, intptr_t available) { |
| 574 // Read all available bytes. | 506 // Read all available bytes. |
| 575 while (available > 0) { | 507 while (available > 0) { |
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| 696 | 628 |
| 697 | 629 |
| 698 intptr_t Process::CurrentProcessId() { | 630 intptr_t Process::CurrentProcessId() { |
| 699 return static_cast<intptr_t>(getpid()); | 631 return static_cast<intptr_t>(getpid()); |
| 700 } | 632 } |
| 701 | 633 |
| 702 } // namespace bin | 634 } // namespace bin |
| 703 } // namespace dart | 635 } // namespace dart |
| 704 | 636 |
| 705 #endif // defined(TARGET_OS_ANDROID) | 637 #endif // defined(TARGET_OS_ANDROID) |
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