cb424d7448
verify-patch-sanity.py validates every active recipe .patch has internally- consistent hunk line counts — catching the 'malformed patch at line N' failure at commit/CI/preflight time instead of hours into a cook. This cycle hit that class three times (qtwaylandscanner, sddm, xwayland), each only discovered when cookbook tried to apply the patch. Running it across the repo found 29 latent malformed patches (validated against GNU patch: e.g. relibc/P3-sysv-ipc reproduces 'malformed patch at line 22'). They were harmless only because they sit in vendored recipes (baked, not re- applied) — but would fail on any version-bump re-derivation. --fix recounts the hunk headers (body untouched) and repaired all 29. Wired into build-preflight.sh (Phase 1.0D) and redbear-ci.yml, with a unit test (test-patch-sanity.sh). Skips archived/legacy trees and unvalidatable formats (empty placeholders, bare-@@ git hunks).
288 lines
9.9 KiB
C++
288 lines
9.9 KiB
C++
//===-- lib/runtime/execute.cpp ---------------------------------*- C++ -*-===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "flang/Runtime/execute.h"
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#include "flang-rt/runtime/descriptor.h"
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#include "flang-rt/runtime/environment.h"
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#include "flang-rt/runtime/stat.h"
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#include "flang-rt/runtime/terminator.h"
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#include "flang-rt/runtime/tools.h"
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#include <cstdlib>
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#include <errno.h>
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#include <future>
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#include <limits>
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#ifdef _WIN32
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#include "flang/Common/windows-include.h"
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#else
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#include <signal.h>
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#include <sys/wait.h>
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#include <unistd.h>
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#endif
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namespace Fortran::runtime {
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// cmdstat specified in 16.9.73
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// −1 if the processor does not support command line execution,
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// a processor-dependent positive value if an error condition occurs
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// −2 if no error condition occurs but WAIT is present with the value false
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// and the processor does not support asynchronous execution. Otherwise it is
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// assigned the value 0
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enum CMD_STAT {
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ASYNC_NO_SUPPORT_ERR = -2, // system returns -1 with ENOENT
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NO_SUPPORT_ERR = -1, // Linux setsid() returns -1
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CMD_EXECUTED = 0, // command executed with no error
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FORK_ERR = 1, // Linux fork() returns < 0
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EXECL_ERR = 2, // system returns -1 with other errno
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COMMAND_EXECUTION_ERR = 3, // exit code 1
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COMMAND_CANNOT_EXECUTE_ERR = 4, // Linux exit code 126
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COMMAND_NOT_FOUND_ERR = 5, // Linux exit code 127
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INVALID_CL_ERR = 6, // cover all other non-zero exit code
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SIGNAL_ERR = 7
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};
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// Override CopyCharsToDescriptor in tools.h, pass string directly
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void CopyCharsToDescriptor(const Descriptor &value, const char *rawValue) {
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CopyCharsToDescriptor(value, rawValue, std::strlen(rawValue));
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}
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void CheckAndCopyCharsToDescriptor(
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const Descriptor *value, const char *rawValue) {
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if (value) {
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CopyCharsToDescriptor(*value, rawValue);
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}
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}
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void CheckAndStoreIntToDescriptor(
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const Descriptor *intVal, std::int64_t value, Terminator &terminator) {
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if (intVal) {
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StoreIntToDescriptor(intVal, value, terminator);
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}
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}
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// If a condition occurs that would assign a nonzero value to CMDSTAT but
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// the CMDSTAT variable is not present, error termination is initiated.
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std::int64_t TerminationCheck(std::int64_t status, const Descriptor *cmdstat,
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const Descriptor *cmdmsg, Terminator &terminator) {
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// On both Windows and Linux, errno is set when system returns -1.
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if (status == -1) {
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// On Windows, ENOENT means the command interpreter can't be found.
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// On Linux, system calls execl with filepath "/bin/sh", ENOENT means the
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// file pathname does not exist.
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if (errno == ENOENT) {
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if (!cmdstat) {
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terminator.Crash("Command line execution is not supported, system "
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"returns -1 with errno ENOENT.");
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} else {
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StoreIntToDescriptor(cmdstat, NO_SUPPORT_ERR, terminator);
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CheckAndCopyCharsToDescriptor(cmdmsg,
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"Command line execution is not supported, system returns -1 with "
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"errno ENOENT.");
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}
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} else {
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char err_buffer[30];
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char msg[]{"Execution error with system status code: -1, errno: "};
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#ifdef _WIN32
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if (strerror_s(err_buffer, sizeof(err_buffer), errno) != 0)
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#else
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if (strerror_r(errno, err_buffer, sizeof(err_buffer)) != 0)
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#endif
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terminator.Crash("errno to char msg failed.");
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char *newMsg{static_cast<char *>(AllocateMemoryOrCrash(
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terminator, std::strlen(msg) + std::strlen(err_buffer) + 1))};
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std::strcat(newMsg, err_buffer);
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if (!cmdstat) {
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terminator.Crash(newMsg);
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} else {
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StoreIntToDescriptor(cmdstat, EXECL_ERR, terminator);
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CheckAndCopyCharsToDescriptor(cmdmsg, newMsg);
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}
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FreeMemory(newMsg);
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}
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}
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#ifdef _WIN32
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// On WIN32 API std::system returns exit status directly
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std::int64_t exitStatusVal{status};
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if (exitStatusVal != 0) {
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if (!cmdstat) {
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terminator.Crash(
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"Invalid command quit with exit status code: %d", exitStatusVal);
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} else {
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StoreIntToDescriptor(cmdstat, INVALID_CL_ERR, terminator);
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CheckAndCopyCharsToDescriptor(cmdmsg, "Invalid command line");
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}
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}
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#else
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std::int64_t exitStatusVal{WEXITSTATUS(status)};
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if (exitStatusVal == 1) {
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if (!cmdstat) {
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terminator.Crash("Command line execution failed with exit code: 1.");
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} else {
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StoreIntToDescriptor(cmdstat, COMMAND_EXECUTION_ERR, terminator);
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CheckAndCopyCharsToDescriptor(
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cmdmsg, "Command line execution failed with exit code: 1.");
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}
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} else if (exitStatusVal == 126) {
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if (!cmdstat) {
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terminator.Crash("Command cannot be executed with exit code: 126.");
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} else {
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StoreIntToDescriptor(cmdstat, COMMAND_CANNOT_EXECUTE_ERR, terminator);
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CheckAndCopyCharsToDescriptor(
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cmdmsg, "Command cannot be executed with exit code: 126.");
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}
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} else if (exitStatusVal == 127) {
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if (!cmdstat) {
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terminator.Crash("Command not found with exit code: 127.");
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} else {
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StoreIntToDescriptor(cmdstat, COMMAND_NOT_FOUND_ERR, terminator);
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CheckAndCopyCharsToDescriptor(
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cmdmsg, "Command not found with exit code: 127.");
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}
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// capture all other nonzero exit code
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} else if (exitStatusVal != 0) {
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if (!cmdstat) {
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terminator.Crash(
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"Invalid command quit with exit status code: %d", exitStatusVal);
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} else {
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StoreIntToDescriptor(cmdstat, INVALID_CL_ERR, terminator);
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CheckAndCopyCharsToDescriptor(cmdmsg, "Invalid command line");
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}
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}
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#endif
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#if defined(WIFSIGNALED) && defined(WTERMSIG)
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if (WIFSIGNALED(status)) {
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if (!cmdstat) {
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terminator.Crash("Killed by signal: %d", WTERMSIG(status));
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} else {
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StoreIntToDescriptor(cmdstat, SIGNAL_ERR, terminator);
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CheckAndCopyCharsToDescriptor(cmdmsg, "Killed by signal");
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}
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}
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#endif
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#if defined(WIFSTOPPED) && defined(WSTOPSIG)
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if (WIFSTOPPED(status)) {
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if (!cmdstat) {
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terminator.Crash("Stopped by signal: %d", WSTOPSIG(status));
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} else {
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StoreIntToDescriptor(cmdstat, SIGNAL_ERR, terminator);
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CheckAndCopyCharsToDescriptor(cmdmsg, "Stopped by signal");
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}
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}
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#endif
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return exitStatusVal;
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}
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void RTNAME(ExecuteCommandLine)(const Descriptor &command, bool wait,
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const Descriptor *exitstat, const Descriptor *cmdstat,
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const Descriptor *cmdmsg, const char *sourceFile, int line) {
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Terminator terminator{sourceFile, line};
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char *newCmd{EnsureNullTerminated(
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command.OffsetElement(), command.ElementBytes(), terminator)};
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if (exitstat) {
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RUNTIME_CHECK(terminator, IsValidIntDescriptor(exitstat));
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}
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if (cmdstat) {
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RUNTIME_CHECK(terminator, IsValidIntDescriptor(cmdstat));
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// Assigned 0 as specifed in standard, if error then overwrite
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StoreIntToDescriptor(cmdstat, CMD_EXECUTED, terminator);
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}
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if (cmdmsg) {
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RUNTIME_CHECK(terminator, IsValidCharDescriptor(cmdmsg));
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}
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if (wait) {
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// either wait is not specified or wait is true: synchronous mode
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std::int64_t status{std::system(newCmd)};
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std::int64_t exitStatusVal{
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TerminationCheck(status, cmdstat, cmdmsg, terminator)};
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// If sync, assigned processor-dependent exit status. Otherwise unchanged
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CheckAndStoreIntToDescriptor(exitstat, exitStatusVal, terminator);
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} else {
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// Asynchronous mode
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#ifdef _WIN32
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STARTUPINFO si;
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PROCESS_INFORMATION pi;
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ZeroMemory(&si, sizeof(si));
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si.cb = sizeof(si);
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ZeroMemory(&pi, sizeof(pi));
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// add "cmd.exe /c " to the beginning of command
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const char *prefix{"cmd.exe /c "};
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char *newCmdWin{static_cast<char *>(AllocateMemoryOrCrash(
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terminator, std::strlen(prefix) + std::strlen(newCmd) + 1))};
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std::strcpy(newCmdWin, prefix);
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std::strcat(newCmdWin, newCmd);
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// Convert the char to wide char
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const size_t sizeNeeded{mbstowcs(NULL, newCmdWin, 0) + 1};
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wchar_t *wcmd{static_cast<wchar_t *>(
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AllocateMemoryOrCrash(terminator, sizeNeeded * sizeof(wchar_t)))};
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if (std::mbstowcs(wcmd, newCmdWin, sizeNeeded) == static_cast<size_t>(-1)) {
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terminator.Crash("Char to wide char failed for newCmd");
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}
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FreeMemory(newCmdWin);
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if (CreateProcess(nullptr, wcmd, nullptr, nullptr, FALSE, 0, nullptr,
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nullptr, &si, &pi)) {
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// Close handles so it will be removed when terminated
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CloseHandle(pi.hProcess);
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CloseHandle(pi.hThread);
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} else {
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if (!cmdstat) {
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terminator.Crash(
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"CreateProcess failed with error code: %lu.", GetLastError());
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} else {
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StoreIntToDescriptor(cmdstat, ASYNC_NO_SUPPORT_ERR, terminator);
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CheckAndCopyCharsToDescriptor(cmdmsg, "CreateProcess failed.");
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}
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}
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FreeMemory(wcmd);
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#else
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pid_t pid{fork()};
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if (pid < 0) {
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if (!cmdstat) {
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terminator.Crash("Fork failed with pid: %d.", pid);
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} else {
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StoreIntToDescriptor(cmdstat, FORK_ERR, terminator);
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CheckAndCopyCharsToDescriptor(cmdmsg, "Fork failed");
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}
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} else if (pid == 0) {
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// Create a new session, let init process take care of zombie child
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if (setsid() == -1) {
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if (!cmdstat) {
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terminator.Crash("setsid() failed with errno: %d, asynchronous "
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"process initiation failed.",
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errno);
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} else {
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StoreIntToDescriptor(cmdstat, ASYNC_NO_SUPPORT_ERR, terminator);
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CheckAndCopyCharsToDescriptor(cmdmsg,
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"setsid() failed, asynchronous process initiation failed.");
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}
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exit(EXIT_FAILURE);
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}
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std::int64_t status{std::system(newCmd)};
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TerminationCheck(status, cmdstat, cmdmsg, terminator);
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exit(status);
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}
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#endif
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}
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// Deallocate memory if EnsureNullTerminated dynamically allocated memory
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if (newCmd != command.OffsetElement()) {
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FreeMemory(newCmd);
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}
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}
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} // namespace Fortran::runtime
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