Kernel: Fix wait syscall to report status of exited children
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b6c964c444
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1c67b5e812
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@ -219,8 +219,6 @@ namespace Kernel
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// Load elf from a file
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static BAN::ErrorOr<BAN::UniqPtr<LibELF::LoadableELF>> load_elf_for_exec(const Credentials&, BAN::StringView file_path, const BAN::String& cwd, Kernel::PageTable&);
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BAN::ErrorOr<int> block_until_exit(pid_t pid);
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BAN::ErrorOr<void> validate_string_access(const char*);
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BAN::ErrorOr<void> validate_pointer_access_check(const void*, size_t);
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BAN::ErrorOr<void> validate_pointer_access(const void*, size_t);
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@ -255,12 +253,12 @@ namespace Kernel
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}
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private:
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struct ExitStatus
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struct ChildExitStatus
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{
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ThreadBlocker thread_blocker;
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int exit_code { 0 };
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BAN::Atomic<bool> exited { false };
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BAN::Atomic<int> waiting { 0 };
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pid_t pid { 0 };
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pid_t pgrp { 0 };
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int exit_code { 0 };
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bool exited { false };
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};
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Credentials m_credentials;
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@ -292,7 +290,10 @@ namespace Kernel
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bool m_is_userspace { false };
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userspace_info_t m_userspace_info;
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ExitStatus m_exit_status;
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SpinLock m_child_exit_lock;
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BAN::Vector<ChildExitStatus> m_child_exit_statuses;
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ThreadBlocker m_child_exit_blocker;
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bool m_has_called_exec { false };
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@ -49,6 +49,8 @@ namespace Kernel
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bool add_signal(int signal);
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// blocks current thread and returns either on unblock, eintr, spuriously or after timeout
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BAN::ErrorOr<void> sleep_or_eintr_ms(uint64_t ms) { return sleep_or_eintr_ns(ms * 1'000'000); }
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BAN::ErrorOr<void> sleep_or_eintr_ns(uint64_t ns);
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BAN::ErrorOr<void> block_or_eintr_indefinite(ThreadBlocker& thread_blocker);
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BAN::ErrorOr<void> block_or_eintr_or_timeout_ms(ThreadBlocker& thread_blocker, uint64_t timeout_ms, bool etimedout) { return block_or_eintr_or_timeout_ns(thread_blocker, timeout_ms * 1'000'000, etimedout); }
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BAN::ErrorOr<void> block_or_eintr_or_waketime_ms(ThreadBlocker& thread_blocker, uint64_t wake_time_ms, bool etimedout) { return block_or_eintr_or_waketime_ns(thread_blocker, wake_time_ms * 1'000'000, etimedout); }
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@ -185,7 +185,6 @@ namespace Kernel
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ASSERT(m_threads.empty());
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ASSERT(m_mapped_regions.empty());
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ASSERT(!m_loadable_elf);
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ASSERT(m_exit_status.waiting == 0);
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ASSERT(&PageTable::current() != m_page_table.ptr());
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}
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@ -201,21 +200,15 @@ namespace Kernel
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SpinLockGuard _(s_process_lock);
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for (size_t i = 0; i < s_processes.size(); i++)
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{
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if (m_parent && s_processes[i]->pid() == m_parent)
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s_processes[i]->add_pending_signal(SIGCHLD);
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if (s_processes[i] == this)
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s_processes.remove(i);
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if (s_processes[i] != this)
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continue;
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s_processes.remove(i);
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break;
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}
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}
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ProcFileSystem::get().on_process_delete(*this);
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m_exit_status.exited = true;
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m_exit_status.thread_blocker.unblock();
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while (m_exit_status.waiting > 0)
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Processor::yield();
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m_process_lock.lock();
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m_open_file_descriptors.close_all();
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@ -252,7 +245,35 @@ namespace Kernel
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void Process::exit(int status, int signal)
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{
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m_exit_status.exit_code = __WGENEXITCODE(status, signal);
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if (m_parent)
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{
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for_each_process(
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[&](Process& parent) -> BAN::Iteration
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{
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if (parent.pid() != m_parent)
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return BAN::Iteration::Continue;
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for (auto& child : parent.m_child_exit_statuses)
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{
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if (child.pid != pid())
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continue;
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child.exit_code = __WGENEXITCODE(status, signal);
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child.exited = true;
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parent.add_pending_signal(SIGCHLD);
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Processor::scheduler().unblock_thread(parent.m_threads.front());
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parent.m_child_exit_blocker.unblock();
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break;
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}
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return BAN::Iteration::Break;
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}
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);
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}
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while (!m_threads.empty())
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m_threads.front()->on_exit();
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}
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@ -397,6 +418,20 @@ namespace Kernel
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LockGuard _(m_process_lock);
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ChildExitStatus* child_exit_status = nullptr;
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for (auto& child : m_child_exit_statuses)
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{
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if (child.pid != 0)
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continue;
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child_exit_status = &child;
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break;
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}
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if (child_exit_status == nullptr)
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{
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TRY(m_child_exit_statuses.emplace_back());
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child_exit_status = &m_child_exit_statuses.back();
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}
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BAN::String working_directory;
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TRY(working_directory.append(m_working_directory));
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@ -422,6 +457,10 @@ namespace Kernel
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forked->m_has_called_exec = false;
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memcpy(forked->m_signal_handlers, m_signal_handlers, sizeof(m_signal_handlers));
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*child_exit_status = {};
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child_exit_status->pid = forked->pid();
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child_exit_status->pgrp = forked->pgrp();
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ASSERT(this == &Process::current());
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// FIXME: this should be able to fail
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Thread* thread = MUST(Thread::current().clone(forked, sp, ip));
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@ -541,58 +580,72 @@ namespace Kernel
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ASSERT_NOT_REACHED();
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}
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BAN::ErrorOr<int> Process::block_until_exit(pid_t pid)
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{
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ASSERT(this->pid() != pid);
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Process* target = nullptr;
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for_each_process(
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[pid, &target](Process& process)
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{
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if (process.pid() == pid)
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{
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process.m_exit_status.waiting++;
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target = &process;
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return BAN::Iteration::Break;
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}
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return BAN::Iteration::Continue;
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}
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);
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if (target == nullptr)
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return BAN::Error::from_errno(ECHILD);
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while (!target->m_exit_status.exited)
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{
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if (auto ret = Thread::current().block_or_eintr_indefinite(target->m_exit_status.thread_blocker); ret.is_error())
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{
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target->m_exit_status.waiting--;
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return ret.release_error();
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}
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}
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int exit_status = target->m_exit_status.exit_code;
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target->m_exit_status.waiting--;
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return exit_status;
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}
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BAN::ErrorOr<long> Process::sys_wait(pid_t pid, int* stat_loc, int options)
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{
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{
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LockGuard _(m_process_lock);
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TRY(validate_pointer_access(stat_loc, sizeof(int)));
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}
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// FIXME: support options
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if (options)
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if (options & ~(WCONTINUED | WNOHANG | WUNTRACED))
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return BAN::Error::from_errno(EINVAL);
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int stat = TRY(block_until_exit(pid));
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if (stat_loc)
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*stat_loc = stat;
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// FIXME: support options stopped processes
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if (options & ~(WCONTINUED | WUNTRACED))
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return BAN::Error::from_errno(ENOTSUP);
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return pid;
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const auto pid_matches =
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[&](const ChildExitStatus& child)
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{
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if (pid == -1)
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return true;
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if (pid == 0)
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return child.pgrp == pgrp();
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if (pid < 0)
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return child.pgrp == -pid;
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return child.pid == pid;
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};
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for (;;)
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{
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pid_t exited_pid = 0;
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int exit_code = 0;
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{
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SpinLockGuard _(m_child_exit_lock);
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bool found = false;
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for (auto& child : m_child_exit_statuses)
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{
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if (!pid_matches(child))
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continue;
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found = true;
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if (!child.exited)
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continue;
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exited_pid = child.pid;
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exit_code = child.exit_code;
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child = {};
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break;
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}
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if (!found)
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return BAN::Error::from_errno(ECHILD);
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}
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if (exited_pid != 0)
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{
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if (stat_loc)
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{
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LockGuard _(m_process_lock);
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TRY(validate_pointer_access(stat_loc, sizeof(stat_loc)));
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*stat_loc = exit_code;
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}
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remove_pending_signal(SIGCHLD);
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return exited_pid;
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}
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if (Thread::current().is_interrupted_by_signal())
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return BAN::Error::from_errno(EINTR);
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if (options & WNOHANG)
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return 0;
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m_child_exit_blocker.block_indefinite();
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}
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}
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BAN::ErrorOr<long> Process::sys_sleep(int seconds)
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@ -1289,7 +1342,7 @@ namespace Kernel
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break;
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LockFreeGuard free(m_process_lock);
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SystemTimer::get().sleep_ms(1);
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TRY(Thread::current().sleep_or_eintr_ms(1));
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}
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if (arguments->readfds)
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@ -423,6 +423,16 @@ namespace Kernel
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return false;
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}
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BAN::ErrorOr<void> Thread::sleep_or_eintr_ns(uint64_t ns)
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{
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if (is_interrupted_by_signal())
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return BAN::Error::from_errno(EINTR);
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SystemTimer::get().sleep_ns(ns);
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if (is_interrupted_by_signal())
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return BAN::Error::from_errno(EINTR);
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return {};
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}
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BAN::ErrorOr<void> Thread::block_or_eintr_indefinite(ThreadBlocker& thread_blocker)
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{
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if (is_interrupted_by_signal())
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@ -147,7 +147,7 @@ BAN::Optional<BAN::String> parse_dollar(BAN::StringView command, size_t& i)
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close(fds[0]);
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int status;
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if (waitpid(pid, &status, 0) == -1 && errno != ECHILD)
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if (waitpid(pid, &status, 0) == -1)
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ERROR_RETURN("waitpid", {});
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while (!output.empty() && output.back() == '\n')
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