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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_MACOS) | 6 #if defined(TARGET_OS_MACOS) |
| 7 | 7 |
| 8 #include "bin/process.h" | 8 #include "bin/process.h" |
| 9 | 9 |
| 10 #include <errno.h> // NOLINT | 10 #include <errno.h> // NOLINT |
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| 560 VOID_TEMP_FAILURE_RETRY(close(write_out[0])); | 560 VOID_TEMP_FAILURE_RETRY(close(write_out[0])); |
| 561 FDUtils::SetNonBlocking(read_err[0]); | 561 FDUtils::SetNonBlocking(read_err[0]); |
| 562 *err = read_err[0]; | 562 *err = read_err[0]; |
| 563 VOID_TEMP_FAILURE_RETRY(close(read_err[1])); | 563 VOID_TEMP_FAILURE_RETRY(close(read_err[1])); |
| 564 | 564 |
| 565 *id = pid; | 565 *id = pid; |
| 566 return 0; | 566 return 0; |
| 567 } | 567 } |
| 568 | 568 |
| 569 | 569 |
| 570 static bool ReadProcessBuffer(uint8_t** buffer, | 570 class BufferList: public BufferListBase { |
| 571 intptr_t* buffer_length, | 571 public: |
| 572 intptr_t available, | 572 bool Read(int fd, intptr_t available) { |
| 573 int fd) { | 573 // Read all available bytes. |
| 574 uint8_t* tmp = new uint8_t[*buffer_length + available]; | 574 while (available > 0) { |
| 575 if (tmp == NULL) FATAL("Allocation failed"); | 575 if (free_size_ == 0) Allocate(); |
| 576 memmove(tmp, *buffer, *buffer_length); | 576 ASSERT(free_size_ > 0); |
| 577 delete[] *buffer; | 577 ASSERT(free_size_ <= kBufferSize); |
| 578 *buffer = tmp; | 578 intptr_t block_size = dart::Utils::Minimum(free_size_, available); |
| 579 intptr_t bytes = TEMP_FAILURE_RETRY(read( | 579 intptr_t bytes = TEMP_FAILURE_RETRY(read( |
| 580 fd, | 580 fd, |
| 581 reinterpret_cast<void*>(*buffer + *buffer_length), | 581 reinterpret_cast<void*>(tail_->data_ + (kBufferSize - free_size_)), |
| 582 available)); | 582 block_size)); |
| 583 if (bytes < 0) return false; | 583 if (bytes < 0) return false; |
| 584 *buffer_length += bytes; | 584 data_size_ += bytes; |
| 585 return true; | 585 free_size_ -= bytes; |
| 586 } | 586 available -= bytes; |
| 587 } |
| 588 return true; |
| 589 } |
| 590 }; |
| 587 | 591 |
| 588 | 592 |
| 589 static bool CloseProcessBuffers(struct pollfd fds[3]) { | 593 static bool CloseProcessBuffers(struct pollfd fds[3]) { |
| 590 int e = errno; | 594 int e = errno; |
| 591 VOID_TEMP_FAILURE_RETRY(close(fds[0].fd)); | 595 VOID_TEMP_FAILURE_RETRY(close(fds[0].fd)); |
| 592 VOID_TEMP_FAILURE_RETRY(close(fds[1].fd)); | 596 VOID_TEMP_FAILURE_RETRY(close(fds[1].fd)); |
| 593 VOID_TEMP_FAILURE_RETRY(close(fds[2].fd)); | 597 VOID_TEMP_FAILURE_RETRY(close(fds[2].fd)); |
| 594 errno = e; | 598 errno = e; |
| 595 return false; | 599 return false; |
| 596 } | 600 } |
| 597 | 601 |
| 598 | 602 |
| 599 bool Process::Wait(intptr_t pid, | 603 bool Process::Wait(intptr_t pid, |
| 600 intptr_t in, | 604 intptr_t in, |
| 601 intptr_t out, | 605 intptr_t out, |
| 602 intptr_t err, | 606 intptr_t err, |
| 603 intptr_t exit_event, | 607 intptr_t exit_event, |
| 604 ProcessResult* result) { | 608 ProcessResult* result) { |
| 605 // Close input to the process right away. | 609 // Close input to the process right away. |
| 606 VOID_TEMP_FAILURE_RETRY(close(in)); | 610 VOID_TEMP_FAILURE_RETRY(close(in)); |
| 607 | 611 |
| 608 uint8_t* out_data = NULL; | 612 // There is no return from this function using Dart_PropagateError |
| 609 intptr_t out_data_length = 0; | 613 // as memory used by the buffer lists is freed through their |
| 610 uint8_t* err_data = NULL; | 614 // destructors. |
| 611 intptr_t err_data_length = 0; | 615 BufferList out_data; |
| 616 BufferList err_data; |
| 612 union { | 617 union { |
| 613 uint8_t bytes[8]; | 618 uint8_t bytes[8]; |
| 614 int32_t ints[2]; | 619 int32_t ints[2]; |
| 615 } exit_code_data; | 620 } exit_code_data; |
| 616 | 621 |
| 617 struct pollfd fds[3]; | 622 struct pollfd fds[3]; |
| 618 fds[0].fd = out; | 623 fds[0].fd = out; |
| 619 fds[1].fd = err; | 624 fds[1].fd = err; |
| 620 fds[2].fd = exit_event; | 625 fds[2].fd = exit_event; |
| 621 | 626 |
| 622 for (int i = 0; i < 3; i++) { | 627 for (int i = 0; i < 3; i++) { |
| 623 fds[i].events = POLLIN; | 628 fds[i].events = POLLIN; |
| 624 } | 629 } |
| 625 | 630 |
| 626 int alive = 3; | 631 int alive = 3; |
| 627 while (alive > 0) { | 632 while (alive > 0) { |
| 628 // Blocking call waiting for events from the child process. | 633 // Blocking call waiting for events from the child process. |
| 629 if (TEMP_FAILURE_RETRY(poll(fds, alive, -1)) <= 0) { | 634 if (TEMP_FAILURE_RETRY(poll(fds, alive, -1)) <= 0) { |
| 630 return CloseProcessBuffers(fds); | 635 return CloseProcessBuffers(fds); |
| 631 } | 636 } |
| 637 |
| 638 // Process incoming data. |
| 632 for (int i = 0; i < alive; i++) { | 639 for (int i = 0; i < alive; i++) { |
| 633 if (fds[i].revents & POLLIN) { | 640 if (fds[i].revents & POLLIN) { |
| 634 intptr_t avail = FDUtils::AvailableBytes(fds[i].fd); | 641 intptr_t avail = FDUtils::AvailableBytes(fds[i].fd); |
| 635 // On Mac OS POLLIN can be set with zero available | 642 // On Mac OS POLLIN can be set with zero available |
| 636 // bytes. POLLHUP is most likely also set in this case. | 643 // bytes. POLLHUP is most likely also set in this case. |
| 637 if (avail > 0) { | 644 if (avail > 0) { |
| 638 if (fds[i].fd == out) { | 645 if (fds[i].fd == out) { |
| 639 if (!ReadProcessBuffer(&out_data, &out_data_length, avail, out)) { | 646 if (!out_data.Read(out, avail)) { |
| 640 return CloseProcessBuffers(fds); | 647 return CloseProcessBuffers(fds); |
| 641 } | 648 } |
| 642 } else if (fds[i].fd == err) { | 649 } else if (fds[i].fd == err) { |
| 643 if (!ReadProcessBuffer(&err_data, &err_data_length, avail, err)) { | 650 if (!err_data.Read(err, avail)) { |
| 644 return CloseProcessBuffers(fds); | 651 return CloseProcessBuffers(fds); |
| 645 } | 652 } |
| 646 } else if (fds[i].fd == exit_event) { | 653 } else if (fds[i].fd == exit_event) { |
| 647 intptr_t avail = FDUtils::AvailableBytes(fds[i].fd); | |
| 648 if (avail == 8) { | 654 if (avail == 8) { |
| 649 intptr_t b = TEMP_FAILURE_RETRY(read(fds[i].fd, | 655 intptr_t b = TEMP_FAILURE_RETRY(read(fds[i].fd, |
| 650 exit_code_data.bytes, 8)); | 656 exit_code_data.bytes, 8)); |
| 651 if (b != 8) { | 657 if (b != 8) { |
| 652 return CloseProcessBuffers(fds); | 658 return CloseProcessBuffers(fds); |
| 653 } | 659 } |
| 654 } | 660 } |
| 655 } else { | 661 } else { |
| 656 UNREACHABLE(); | 662 UNREACHABLE(); |
| 657 } | 663 } |
| 658 continue; | |
| 659 } | 664 } |
| 660 } | 665 } |
| 666 } |
| 661 | 667 |
| 668 // Process closed. |
| 669 for (int i = 0; i < alive; i++) { |
| 662 if (fds[i].revents & POLLHUP) { | 670 if (fds[i].revents & POLLHUP) { |
| 663 VOID_TEMP_FAILURE_RETRY(close(fds[i].fd)); | 671 VOID_TEMP_FAILURE_RETRY(close(fds[i].fd)); |
| 664 alive--; | 672 alive--; |
| 665 if (i < alive) { | 673 if (i < alive) { |
| 666 fds[i] = fds[alive]; | 674 fds[i] = fds[alive]; |
| 667 } | 675 } |
| 668 } | 676 } |
| 669 } | 677 } |
| 670 } | 678 } |
| 671 | 679 |
| 672 // All handles closed and all data read. | 680 // All handles closed and all data read. |
| 673 result->SetStdoutData(out_data, out_data_length); | 681 result->set_stdout_data(out_data.GetData()); |
| 674 result->SetStderrData(err_data, err_data_length); | 682 result->set_stderr_data(err_data.GetData()); |
| 675 | 683 |
| 676 // Calculate the exit code. | 684 // Calculate the exit code. |
| 677 intptr_t exit_code = exit_code_data.ints[0]; | 685 intptr_t exit_code = exit_code_data.ints[0]; |
| 678 intptr_t negative = exit_code_data.ints[1]; | 686 intptr_t negative = exit_code_data.ints[1]; |
| 679 if (negative) exit_code = -exit_code; | 687 if (negative) exit_code = -exit_code; |
| 680 result->set_exit_code(exit_code); | 688 result->set_exit_code(exit_code); |
| 681 | 689 |
| 682 return true; | 690 return true; |
| 683 } | 691 } |
| 684 | 692 |
| 685 | 693 |
| 686 bool Process::Kill(intptr_t id, int signal) { | 694 bool Process::Kill(intptr_t id, int signal) { |
| 687 return (TEMP_FAILURE_RETRY(kill(id, signal)) != -1); | 695 return (TEMP_FAILURE_RETRY(kill(id, signal)) != -1); |
| 688 } | 696 } |
| 689 | 697 |
| 690 | 698 |
| 691 void Process::TerminateExitCodeHandler() { | 699 void Process::TerminateExitCodeHandler() { |
| 692 ExitCodeHandler::TerminateExitCodeThread(); | 700 ExitCodeHandler::TerminateExitCodeThread(); |
| 693 } | 701 } |
| 694 | 702 |
| 695 | 703 |
| 696 intptr_t Process::CurrentProcessId() { | 704 intptr_t Process::CurrentProcessId() { |
| 697 return static_cast<intptr_t>(getpid()); | 705 return static_cast<intptr_t>(getpid()); |
| 698 } | 706 } |
| 699 | 707 |
| 700 } // namespace bin | 708 } // namespace bin |
| 701 } // namespace dart | 709 } // namespace dart |
| 702 | 710 |
| 703 #endif // defined(TARGET_OS_MACOS) | 711 #endif // defined(TARGET_OS_MACOS) |
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