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https://github.com/RGBCube/serenity
synced 2025-05-31 07:58:11 +00:00
Kernel+LibELF: Expose ELF Auxiliary Vector to Userspace
The AT_* entries are placed after the environment variables, so that they can be found by iterating until the end of the envp array, and then going even further beyond :^)
This commit is contained in:
parent
8b76a1e548
commit
f96b827990
5 changed files with 200 additions and 28 deletions
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@ -33,6 +33,7 @@
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#include <AK/Time.h>
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#include <AK/Types.h>
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#include <Kernel/ACPI/Parser.h>
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#include <Kernel/API/Syscall.h>
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#include <Kernel/Arch/i386/CPU.h>
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#include <Kernel/Console.h>
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#include <Kernel/Devices/BlockDevice.h>
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@ -67,7 +68,6 @@
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#include <Kernel/Scheduler.h>
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#include <Kernel/SharedBuffer.h>
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#include <Kernel/StdLib.h>
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#include <Kernel/API/Syscall.h>
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#include <Kernel/TTY/MasterPTY.h>
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#include <Kernel/TTY/TTY.h>
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#include <Kernel/Thread.h>
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@ -888,7 +888,7 @@ int Process::do_exec(NonnullRefPtr<FileDescription> main_program_description, Ve
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// It also happens to be the static Virtual Addresss offset every static exectuable gets :)
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// Without this, some assumptions by the ELF loading hooks below are severely broken.
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// 0x08000000 is a verified random number chosen by random dice roll https://xkcd.com/221/
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u32 totally_random_offset = interpreter_description ? 0x08000000 : 0;
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m_load_offset = interpreter_description ? 0x08000000 : 0;
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// FIXME: We should be able to load both the PT_INTERP interpreter and the main program... once the RTLD is smart enough
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if (interpreter_description) {
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@ -906,7 +906,7 @@ int Process::do_exec(NonnullRefPtr<FileDescription> main_program_description, Ve
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Region* master_tls_region { nullptr };
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size_t master_tls_size = 0;
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size_t master_tls_alignment = 0;
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u32 entry_eip = 0;
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m_entry_eip = 0;
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MM.enter_process_paging_scope(*this);
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RefPtr<ELF::Loader> loader;
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@ -935,7 +935,7 @@ int Process::do_exec(NonnullRefPtr<FileDescription> main_program_description, Ve
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prot |= PROT_WRITE;
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if (is_executable)
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prot |= PROT_EXEC;
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if (auto* region = allocate_region_with_vmobject(vaddr.offset(totally_random_offset), size, *vmobject, offset_in_image, String(name), prot)) {
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if (auto* region = allocate_region_with_vmobject(vaddr.offset(m_load_offset), size, *vmobject, offset_in_image, String(name), prot)) {
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region->set_shared(true);
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return region->vaddr().as_ptr();
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}
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@ -949,7 +949,7 @@ int Process::do_exec(NonnullRefPtr<FileDescription> main_program_description, Ve
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prot |= PROT_READ;
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if (is_writable)
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prot |= PROT_WRITE;
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if (auto* region = allocate_region(vaddr.offset(totally_random_offset), size, String(name), prot))
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if (auto* region = allocate_region(vaddr.offset(m_load_offset), size, String(name), prot))
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return region->vaddr().as_ptr();
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return nullptr;
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};
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@ -976,15 +976,15 @@ int Process::do_exec(NonnullRefPtr<FileDescription> main_program_description, Ve
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// FIXME: Validate that this virtual address is within executable region,
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// instead of just non-null. You could totally have a DSO with entry point of
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// the beginning of the text segement.
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if (!loader->entry().offset(totally_random_offset).get()) {
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klog() << "do_exec: Failure loading " << path.characters() << ", entry pointer is invalid! (" << loader->entry().offset(totally_random_offset) << ")";
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if (!loader->entry().offset(m_load_offset).get()) {
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klog() << "do_exec: Failure loading " << path.characters() << ", entry pointer is invalid! (" << loader->entry().offset(m_load_offset) << ")";
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return -ENOEXEC;
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}
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rollback_regions_guard.disarm();
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// NOTE: At this point, we've committed to the new executable.
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entry_eip = loader->entry().offset(totally_random_offset).get();
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m_entry_eip = loader->entry().offset(m_load_offset).get();
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kill_threads_except_self();
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@ -1002,6 +1002,7 @@ int Process::do_exec(NonnullRefPtr<FileDescription> main_program_description, Ve
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m_unveiled_paths.clear();
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// Copy of the master TLS region that we will clone for new threads
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// FIXME: Handle this in userspace
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m_master_tls_region = master_tls_region->make_weak_ptr();
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auto main_program_metadata = main_program_description->metadata();
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@ -1042,9 +1043,11 @@ int Process::do_exec(NonnullRefPtr<FileDescription> main_program_description, Ve
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}
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ASSERT(new_main_thread);
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auto auxv = generate_auxiliary_vector();
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// NOTE: We create the new stack before disabling interrupts since it will zero-fault
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// and we don't want to deal with faults after this point.
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u32 new_userspace_esp = new_main_thread->make_userspace_stack_for_main_thread(move(arguments), move(environment));
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u32 new_userspace_esp = new_main_thread->make_userspace_stack_for_main_thread(move(arguments), move(environment), move(auxv));
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// We enter a critical section here because we don't want to get interrupted between do_exec()
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// and Processor::assume_context() or the next context switch.
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@ -1070,13 +1073,13 @@ int Process::do_exec(NonnullRefPtr<FileDescription> main_program_description, Ve
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tss.ss = GDT_SELECTOR_DATA3 | 3;
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tss.fs = GDT_SELECTOR_DATA3 | 3;
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tss.gs = GDT_SELECTOR_TLS | 3;
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tss.eip = entry_eip;
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tss.eip = m_entry_eip;
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tss.esp = new_userspace_esp;
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tss.cr3 = m_page_directory->cr3();
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tss.ss2 = m_pid;
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#ifdef TASK_DEBUG
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klog() << "Process " << VirtualAddress(this) << " thread " << VirtualAddress(new_main_thread) << " exec'd " << path.characters() << " @ " << String::format("%p", entry_eip);
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klog() << "Process " << VirtualAddress(this) << " thread " << VirtualAddress(new_main_thread) << " exec'd " << path.characters() << " @ " << String::format("%p", m_entry_eip);
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#endif
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if (was_profiling)
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@ -1089,6 +1092,42 @@ int Process::do_exec(NonnullRefPtr<FileDescription> main_program_description, Ve
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return 0;
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}
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Vector<AuxiliaryValue> Process::generate_auxiliary_vector() const
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{
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Vector<AuxiliaryValue> auxv;
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// PHDR/EXECFD
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// PH*
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auxv.append({ AuxiliaryValue::PageSize, PAGE_SIZE });
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auxv.append({ AuxiliaryValue::BaseAddress, (void*)m_load_offset });
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// FLAGS
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auxv.append({ AuxiliaryValue::Entry, (void*)m_entry_eip });
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// NOTELF
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auxv.append({ AuxiliaryValue::Uid, (long)m_uid });
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auxv.append({ AuxiliaryValue::EUid, (long)m_euid });
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auxv.append({ AuxiliaryValue::Gid, (long)m_gid });
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auxv.append({ AuxiliaryValue::EGid, (long)m_egid });
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// FIXME: Don't hard code this? We might support other platforms later.. (e.g. x86_64)
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auxv.append({ AuxiliaryValue::Platform, "i386" });
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// FIXME: This is platform specific
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auxv.append({ AuxiliaryValue::HwCap, (long)CPUID(1).edx() });
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auxv.append({ AuxiliaryValue::ClockTick, (long)TimeManagement::the().ticks_per_second() });
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// FIXME: Also take into account things like extended filesystem permissions? That's what linux does...
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auxv.append({ AuxiliaryValue::Secure, ((m_uid != m_euid) || (m_gid != m_egid)) ? 1 : 0 });
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char random_bytes[16] {};
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get_good_random_bytes((u8*)random_bytes, sizeof(random_bytes));
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auxv.append({ AuxiliaryValue::Random, String(random_bytes, sizeof(random_bytes)) });
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auxv.append({ AuxiliaryValue::ExecFilename, m_executable->absolute_path() });
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auxv.append({ AuxiliaryValue::Null, 0L });
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return auxv;
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}
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static KResultOr<Vector<String>> find_shebang_interpreter_for_executable(const char first_page[], int nread)
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{
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int word_start = 2;
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@ -5269,5 +5308,4 @@ int Process::sys$recvfd(int sockfd)
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m_fds[new_fd].set(*received_descriptor_or_error.value(), 0);
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return new_fd;
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}
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}
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@ -33,15 +33,16 @@
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#include <AK/NonnullOwnPtrVector.h>
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#include <AK/String.h>
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#include <AK/WeakPtr.h>
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#include <Kernel/API/Syscall.h>
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#include <Kernel/FileSystem/InodeMetadata.h>
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#include <Kernel/Forward.h>
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#include <Kernel/Lock.h>
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#include <Kernel/StdLib.h>
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#include <Kernel/API/Syscall.h>
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#include <Kernel/Thread.h>
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#include <Kernel/UnixTypes.h>
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#include <Kernel/VM/RangeAllocator.h>
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#include <LibC/signal_numbers.h>
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#include <LibELF/AuxiliaryVector.h>
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namespace ELF {
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class Loader;
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@ -475,6 +476,7 @@ private:
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ssize_t do_write(FileDescription&, const u8*, int data_size);
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KResultOr<NonnullRefPtr<FileDescription>> find_elf_interpreter_for_executable(const String& path, char (&first_page)[PAGE_SIZE], int nread, size_t file_size);
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Vector<AuxiliaryValue> generate_auxiliary_vector() const;
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int alloc_fd(int first_candidate_fd = 0);
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void disown_all_shared_buffers();
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@ -510,6 +512,8 @@ private:
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gid_t m_sgid { 0 };
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pid_t m_exec_tid { 0 };
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FlatPtr m_load_offset { 0U };
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FlatPtr m_entry_eip { 0U };
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static const int m_max_open_file_descriptors { FD_SETSIZE };
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@ -661,8 +665,7 @@ inline void Process::for_each_thread(Callback callback) const
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if (my_pid == 0) {
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// NOTE: Special case the colonel process, since its main thread is not in the global thread table.
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Processor::for_each(
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[&](Processor& proc) -> IterationDecision
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{
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[&](Processor& proc) -> IterationDecision {
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auto idle_thread = proc.idle_thread();
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if (idle_thread != nullptr)
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return callback(*idle_thread);
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@ -196,7 +196,7 @@ void Thread::die_if_needed()
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// actual context switch
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u32 prev_flags;
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Processor::current().clear_critical(prev_flags, false);
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dbg() << "die_if_needed returned form clear_critical!!! in irq: " << Processor::current().in_irq();
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dbg() << "die_if_needed returned form clear_critical!!! in irq: " << Processor::current().in_irq();
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// We should never get here, but the scoped scheduler lock
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// will be released by Scheduler::context_switch again
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ASSERT_NOT_REACHED();
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@ -640,7 +640,7 @@ RegisterState& Thread::get_register_dump_from_stack()
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return *(RegisterState*)(kernel_stack_top() - sizeof(RegisterState));
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}
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u32 Thread::make_userspace_stack_for_main_thread(Vector<String> arguments, Vector<String> environment)
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u32 Thread::make_userspace_stack_for_main_thread(Vector<String> arguments, Vector<String> environment, Vector<AuxiliaryValue> auxv)
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{
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auto* region = m_process.allocate_region(VirtualAddress(), default_userspace_stack_size, "Stack (Main thread)", PROT_READ | PROT_WRITE, false);
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ASSERT(region);
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@ -654,7 +654,8 @@ u32 Thread::make_userspace_stack_for_main_thread(Vector<String> arguments, Vecto
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int argc = arguments.size();
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char** argv = (char**)stack_base;
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char** env = argv + arguments.size() + 1;
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char* bufptr = stack_base + (sizeof(char*) * (arguments.size() + 1)) + (sizeof(char*) * (environment.size() + 1));
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auxv_t* auxvp = (auxv_t*)((char*)(env + environment.size() + 1));
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char* bufptr = stack_base + (sizeof(char*) * (arguments.size() + 1)) + (sizeof(char*) * (environment.size() + 1) + (sizeof(auxv_t) * auxv.size()));
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SmapDisabler disabler;
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}
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env[environment.size()] = nullptr;
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for (size_t i = 0; i < auxv.size(); ++i) {
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*auxvp = auxv[i].auxv;
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if (!auxv[i].optional_string.is_empty()) {
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auxvp->a_un.a_ptr = bufptr;
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memcpy(bufptr, auxv[i].optional_string.characters(), auxv[i].optional_string.length());
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bufptr += auxv[i].optional_string.length();
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*(bufptr++) = '\0';
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}
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++auxvp;
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}
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auto push_on_new_stack = [&new_esp](u32 value) {
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new_esp -= 4;
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u32* stack_ptr = (u32*)new_esp;
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push_on_new_stack((FlatPtr)argv);
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push_on_new_stack((FlatPtr)argc);
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push_on_new_stack(0);
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ASSERT((FlatPtr)new_esp % 16 == 0);
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return new_esp;
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}
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@ -890,7 +905,6 @@ Thread::BlockResult Thread::wait_on(WaitQueue& queue, const char* reason, timeva
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set_state(State::Queued);
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m_wait_reason = reason;
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if (timeout) {
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timer_id = TimerQueue::the().add_timer(*timeout, [&]() {
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ScopedSpinLock sched_lock(g_scheduler_lock);
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#include <Kernel/ThreadTracer.h>
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#include <Kernel/UnixTypes.h>
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#include <LibC/fd_set.h>
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#include <LibELF/AuxiliaryVector.h>
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namespace Kernel {
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class Blocker {
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public:
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virtual ~Blocker() {}
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virtual ~Blocker() { }
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virtual bool should_unblock(Thread&, time_t now_s, long us) = 0;
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virtual const char* state_string() const = 0;
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virtual bool is_reason_signal() const { return false; }
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ShouldUnblockThread dispatch_one_pending_signal();
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ShouldUnblockThread dispatch_signal(u8 signal);
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bool has_unmasked_pending_signals() const { return m_pending_signals & ~m_signal_mask; }
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bool has_unmasked_pending_signals() const { return m_pending_signals & ~m_signal_mask; }
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void terminate_due_to_signal(u8 signal);
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bool should_ignore_signal(u8 signal) const;
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bool has_signal_handler(u8 signal) const;
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void set_default_signal_dispositions();
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void push_value_on_stack(FlatPtr);
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u32 make_userspace_stack_for_main_thread(Vector<String> arguments, Vector<String> environment);
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u32 make_userspace_stack_for_main_thread(Vector<String> arguments, Vector<String> environment, Vector<AuxiliaryValue>);
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void make_thread_specific_region(Badge<Process>);
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bool m_dump_backtrace_on_finalization { false };
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bool m_should_die { false };
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bool m_initialized {false};
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bool m_initialized { false };
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OwnPtr<ThreadTracer> m_tracer;
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116
Libraries/LibELF/AuxiliaryVector.h
Normal file
116
Libraries/LibELF/AuxiliaryVector.h
Normal file
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@ -0,0 +1,116 @@
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/*
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* Copyright (c) 2020, The SerenityOS developers.
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice, this
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* list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation
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* and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
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* SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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* CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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* OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#pragma once
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/* Auxiliary Vector types, from Intel386 ABI ver 1.0 section 2.3.3 */
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typedef struct
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{
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long a_type; /* Note: Extended to long from int, for ease of comaptibility w/64 bit */
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union {
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long a_val;
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void* a_ptr;
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void (*a_fnc)(); /* In spec, not used */
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} a_un;
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} auxv_t;
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#define AT_NULL 0 /* No length, last entry's a_type has this value */
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#define AT_IGNORE 1 /* Entry has no meaning, a_un undefined */
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#define AT_EXECFD 2 /* a_val contains a file descriptor of the main program image */
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#define AT_PHDR 3 /* a_ptr contains pointer to program header table of main program image */
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#define AT_PHENT 4 /* a_val holds size of program header table entries */
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#define AT_PHNUM 5 /* a_val holds number of program header table entries */
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#define AT_PAGESZ 6 /* a_val gives system page size in bytes */
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#define AT_BASE 7 /* a_ptr holds base address that Loader was loaded into memory */
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#define AT_FLAGS 8 /* a_val holds 1 bit flags. Undefined flags are 0 */
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#define AT_ENTRY 9 /* a_ptr holds entry point of application for loader */
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#define AT_NOTELF 10 /* a_val non-zero if the program is not ELF */
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#define AT_UID 11 /* a_val holds real user id of process */
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#define AT_EUID 12 /* a_val holds effective user id of process */
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#define AT_GID 13 /* a_val holds real group id of process */
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#define AT_EGID 14 /* a_val holds effective group id of process */
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#define AT_PLATFORM 15 /* a_val points to a string containing platform name */
|
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#define AT_HWCAP 16 /* a_val contains bitmask of CPU features. Equivalent to CPUID 1.EDX*/
|
||||
#define AT_CLKTCK 17 /* a_val contains frequence at which times() increments. (Re: Spec. What is times()?) */
|
||||
#define AT_SECURE 23 /* a_val holds 1 if program in secure mode (e.g. suid). Otherwise 0 */
|
||||
#define AT_BASE_PLATFORM 24 /* a_ptr points to a string identifying base platform name, which might be different from platform (e.g x86_64 when in i386 compat) */
|
||||
#define AT_RANDOM 25 /* a_ptr points to 16 securely generated random bytes */
|
||||
#define AT_HWCAP2 26 /* a_val holds extended hw feature mask. Currently 0 */
|
||||
#define AT_EXECFN 31 /* a_ptr points to file name of executed program */
|
||||
|
||||
#ifdef __cplusplus
|
||||
# include <AK/String.h>
|
||||
# include <AK/Types.h>
|
||||
|
||||
struct AuxiliaryValue {
|
||||
enum Type {
|
||||
Null = AT_NULL,
|
||||
Ignore = AT_IGNORE,
|
||||
ExecFileDescriptor = AT_EXECFD,
|
||||
Phdr = AT_PHDR,
|
||||
Phent = AT_PHENT,
|
||||
Phnum = AT_PHNUM,
|
||||
PageSize = AT_PAGESZ,
|
||||
BaseAddress = AT_BASE,
|
||||
Flags = AT_FLAGS,
|
||||
Entry = AT_ENTRY,
|
||||
NotELF = AT_NOTELF,
|
||||
Uid = AT_UID,
|
||||
EUid = AT_EUID,
|
||||
Gid = AT_GID,
|
||||
EGid = AT_EGID,
|
||||
Platform = AT_PLATFORM,
|
||||
HwCap = AT_HWCAP,
|
||||
ClockTick = AT_CLKTCK,
|
||||
Secure = AT_SECURE,
|
||||
BasePlatform = AT_BASE_PLATFORM,
|
||||
Random = AT_RANDOM,
|
||||
HwCap2 = AT_HWCAP2,
|
||||
ExecFilename = AT_EXECFN
|
||||
};
|
||||
|
||||
AuxiliaryValue(Type type, long val)
|
||||
{
|
||||
auxv.a_type = type;
|
||||
auxv.a_un.a_val = val;
|
||||
}
|
||||
AuxiliaryValue(Type type, void* ptr)
|
||||
{
|
||||
auxv.a_type = type;
|
||||
auxv.a_un.a_ptr = (void*)ptr;
|
||||
}
|
||||
AuxiliaryValue(Type type, String string)
|
||||
{
|
||||
auxv.a_type = type;
|
||||
auxv.a_un.a_ptr = nullptr;
|
||||
optional_string = string;
|
||||
}
|
||||
|
||||
auxv_t auxv {};
|
||||
String optional_string;
|
||||
};
|
||||
|
||||
#endif /* __cplusplus */
|
Loading…
Add table
Add a link
Reference in a new issue