Files
clang-p2996/libc/startup/linux/aarch64/start.cpp
Schrodinger ZHU Yifan 6c1f56fdb5 [libc] expose aux vector (#75806)
This patch lifts aux vector related definitions to app.h. Because
startup's refactoring is in progress, this patch still contains
duplicated changes. This problem will be addressed very soon in an
incoming patch.
2023-12-18 12:27:30 -08:00

230 lines
8.4 KiB
C++

//===-- Implementation of crt for aarch64 ---------------------------------===//
//
// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
// See https://llvm.org/LICENSE.txt for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
//
//===----------------------------------------------------------------------===//
#include "config/linux/app.h"
#include "src/__support/OSUtil/syscall.h"
#include "src/__support/threads/thread.h"
#include "src/stdlib/atexit.h"
#include "src/stdlib/exit.h"
#include "src/string/memory_utils/inline_memcpy.h"
#include <arm_acle.h>
#include <linux/auxvec.h>
#include <linux/elf.h>
#include <stdint.h>
#include <sys/mman.h>
#include <sys/syscall.h>
#include <unistd.h>
extern "C" int main(int, char **, char **);
// Source documentation:
// https://github.com/ARM-software/abi-aa/tree/main/sysvabi64
namespace LIBC_NAMESPACE {
#ifdef SYS_mmap2
static constexpr long MMAP_SYSCALL_NUMBER = SYS_mmap2;
#elif SYS_mmap
static constexpr long MMAP_SYSCALL_NUMBER = SYS_mmap;
#else
#error "mmap and mmap2 syscalls not available."
#endif
AppProperties app;
static ThreadAttributes main_thread_attrib;
void init_tls(TLSDescriptor &tls_descriptor) {
if (app.tls.size == 0) {
tls_descriptor.size = 0;
tls_descriptor.tp = 0;
return;
}
// aarch64 follows the variant 1 TLS layout:
//
// 1. First entry is the dynamic thread vector pointer
// 2. Second entry is a 8-byte reserved word.
// 3. Padding for alignment.
// 4. The TLS data from the ELF image.
//
// The thread pointer points to the first entry.
const uintptr_t size_of_pointers = 2 * sizeof(uintptr_t);
uintptr_t padding = 0;
const uintptr_t ALIGNMENT_MASK = app.tls.align - 1;
uintptr_t diff = size_of_pointers & ALIGNMENT_MASK;
if (diff != 0)
padding += (ALIGNMENT_MASK - diff) + 1;
uintptr_t alloc_size = size_of_pointers + padding + app.tls.size;
// We cannot call the mmap function here as the functions set errno on
// failure. Since errno is implemented via a thread local variable, we cannot
// use errno before TLS is setup.
long mmap_ret_val = LIBC_NAMESPACE::syscall_impl<long>(
MMAP_SYSCALL_NUMBER, nullptr, alloc_size, PROT_READ | PROT_WRITE,
MAP_ANONYMOUS | MAP_PRIVATE, -1, 0);
// We cannot check the return value with MAP_FAILED as that is the return
// of the mmap function and not the mmap syscall.
if (mmap_ret_val < 0 && static_cast<uintptr_t>(mmap_ret_val) > -app.page_size)
LIBC_NAMESPACE::syscall_impl<long>(SYS_exit, 1);
uintptr_t thread_ptr = uintptr_t(reinterpret_cast<uintptr_t *>(mmap_ret_val));
uintptr_t tls_addr = thread_ptr + size_of_pointers + padding;
LIBC_NAMESPACE::inline_memcpy(reinterpret_cast<char *>(tls_addr),
reinterpret_cast<const char *>(app.tls.address),
app.tls.init_size);
tls_descriptor.size = alloc_size;
tls_descriptor.addr = thread_ptr;
tls_descriptor.tp = thread_ptr;
}
void cleanup_tls(uintptr_t addr, uintptr_t size) {
if (size == 0)
return;
LIBC_NAMESPACE::syscall_impl<long>(SYS_munmap, addr, size);
}
static void set_thread_ptr(uintptr_t val) { __arm_wsr64("tpidr_el0", val); }
using InitCallback = void(int, char **, char **);
using FiniCallback = void(void);
extern "C" {
// These arrays are present in the .init_array and .fini_array sections.
// The symbols are inserted by linker when it sees references to them.
extern uintptr_t __preinit_array_start[];
extern uintptr_t __preinit_array_end[];
extern uintptr_t __init_array_start[];
extern uintptr_t __init_array_end[];
extern uintptr_t __fini_array_start[];
extern uintptr_t __fini_array_end[];
}
static void call_init_array_callbacks(int argc, char **argv, char **env) {
size_t preinit_array_size = __preinit_array_end - __preinit_array_start;
for (size_t i = 0; i < preinit_array_size; ++i)
reinterpret_cast<InitCallback *>(__preinit_array_start[i])(argc, argv, env);
size_t init_array_size = __init_array_end - __init_array_start;
for (size_t i = 0; i < init_array_size; ++i)
reinterpret_cast<InitCallback *>(__init_array_start[i])(argc, argv, env);
}
static void call_fini_array_callbacks() {
size_t fini_array_size = __fini_array_end - __fini_array_start;
for (size_t i = fini_array_size; i > 0; --i)
reinterpret_cast<FiniCallback *>(__fini_array_start[i - 1])();
}
} // namespace LIBC_NAMESPACE
using LIBC_NAMESPACE::app;
using LIBC_NAMESPACE::AuxEntry;
__attribute__((noinline)) static void do_start() {
auto tid = LIBC_NAMESPACE::syscall_impl<long>(SYS_gettid);
if (tid <= 0)
LIBC_NAMESPACE::syscall_impl<long>(SYS_exit, 1);
LIBC_NAMESPACE::main_thread_attrib.tid = static_cast<int>(tid);
// After the argv array, is a 8-byte long NULL value before the array of env
// values. The end of the env values is marked by another 8-byte long NULL
// value. We step over it (the "+ 1" below) to get to the env values.
uint64_t *env_ptr = app.args->argv + app.args->argc + 1;
uint64_t *env_end_marker = env_ptr;
app.env_ptr = env_ptr;
while (*env_end_marker)
++env_end_marker;
// Initialize the POSIX global declared in unistd.h
environ = reinterpret_cast<char **>(env_ptr);
// After the env array, is the aux-vector. The end of the aux-vector is
// denoted by an AT_NULL entry.
Elf64_Phdr *program_hdr_table = nullptr;
uintptr_t program_hdr_count;
app.auxv_ptr = reinterpret_cast<AuxEntry *>(env_end_marker + 1);
for (auto *aux_entry = app.auxv_ptr; aux_entry->id != AT_NULL; ++aux_entry) {
switch (aux_entry->id) {
case AT_PHDR:
program_hdr_table = reinterpret_cast<Elf64_Phdr *>(aux_entry->value);
break;
case AT_PHNUM:
program_hdr_count = aux_entry->value;
break;
case AT_PAGESZ:
app.page_size = aux_entry->value;
break;
default:
break; // TODO: Read other useful entries from the aux vector.
}
}
app.tls.size = 0;
for (uintptr_t i = 0; i < program_hdr_count; ++i) {
Elf64_Phdr *phdr = program_hdr_table + i;
if (phdr->p_type != PT_TLS)
continue;
// TODO: p_vaddr value has to be adjusted for static-pie executables.
app.tls.address = phdr->p_vaddr;
app.tls.size = phdr->p_memsz;
app.tls.init_size = phdr->p_filesz;
app.tls.align = phdr->p_align;
}
// This descriptor has to be static since its cleanup function cannot
// capture the context.
static LIBC_NAMESPACE::TLSDescriptor tls;
LIBC_NAMESPACE::init_tls(tls);
if (tls.size != 0)
LIBC_NAMESPACE::set_thread_ptr(tls.tp);
LIBC_NAMESPACE::self.attrib = &LIBC_NAMESPACE::main_thread_attrib;
LIBC_NAMESPACE::main_thread_attrib.atexit_callback_mgr =
LIBC_NAMESPACE::internal::get_thread_atexit_callback_mgr();
// We register the cleanup_tls function to be the last atexit callback to be
// invoked. It will tear down the TLS. Other callbacks may depend on TLS (such
// as the stack protector canary).
LIBC_NAMESPACE::atexit(
[]() { LIBC_NAMESPACE::cleanup_tls(tls.tp, tls.size); });
// We want the fini array callbacks to be run after other atexit
// callbacks are run. So, we register them before running the init
// array callbacks as they can potentially register their own atexit
// callbacks.
LIBC_NAMESPACE::atexit(&LIBC_NAMESPACE::call_fini_array_callbacks);
LIBC_NAMESPACE::call_init_array_callbacks(
static_cast<int>(app.args->argc),
reinterpret_cast<char **>(app.args->argv),
reinterpret_cast<char **>(env_ptr));
int retval = main(static_cast<int>(app.args->argc),
reinterpret_cast<char **>(app.args->argv),
reinterpret_cast<char **>(env_ptr));
LIBC_NAMESPACE::exit(retval);
}
extern "C" void _start() {
// Skip the Frame Pointer and the Link Register
// https://github.com/ARM-software/abi-aa/blob/main/aapcs64/aapcs64.rst
// Section 6.2.3. Note that this only works if the current function
// is not using any callee-saved registers (x19 to x28). If the
// function uses such registers, then their value is pushed on to the
// stack before the frame pointer an link register values. That breaks
// the assumption that stepping over the frame pointer and link register
// will take us to the previous stack pointer. That is the reason why the
// actual business logic of the startup code is pushed into a non-inline
// function do_start so that this function is free of any stack usage.
app.args = reinterpret_cast<LIBC_NAMESPACE::Args *>(
reinterpret_cast<uintptr_t *>(__builtin_frame_address(0)) + 2);
do_start();
}