forked from OSchip/llvm-project
151 lines
5.7 KiB
C++
151 lines
5.7 KiB
C++
//===-- Implementation of crt for x86_64 ----------------------------------===//
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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 "config/linux/app.h"
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#include "src/__support/OSUtil/syscall.h"
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#include "src/string/memory_utils/memcpy_implementations.h"
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#include <asm/prctl.h>
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#include <linux/auxvec.h>
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#include <linux/elf.h>
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#include <stdint.h>
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#include <sys/mman.h>
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#include <sys/syscall.h>
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extern "C" int main(int, char **, char **);
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namespace __llvm_libc {
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#ifdef SYS_mmap2
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static constexpr long mmapSyscallNumber = SYS_mmap2;
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#elif SYS_mmap
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static constexpr long mmapSyscallNumber = SYS_mmap;
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#else
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#error "Target platform does not have SYS_mmap or SYS_mmap2 defined"
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#endif
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AppProperties app;
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// TODO: The function is x86_64 specific. Move it to config/linux/app.h
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// and generalize it. Also, dynamic loading is not handled currently.
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void initTLS() {
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if (app.tls.size == 0)
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return;
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// We will assume the alignment is always a power of two.
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uintptr_t tlsSize = app.tls.size & -app.tls.align;
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if (tlsSize != app.tls.size)
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tlsSize += app.tls.align;
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// Per the x86_64 TLS ABI, the entry pointed to by the thread pointer is the
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// address of the TLS block. So, we add more size to accomodate this address
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// entry.
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size_t tlsSizeWithAddr = tlsSize + sizeof(uintptr_t);
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// We cannot call the mmap function here as the functions set errno on
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// failure. Since errno is implemented via a thread local variable, we cannot
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// use errno before TLS is setup.
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long mmapRetVal = __llvm_libc::syscall(
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mmapSyscallNumber, nullptr, tlsSizeWithAddr, PROT_READ | PROT_WRITE,
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MAP_ANONYMOUS | MAP_PRIVATE, -1, 0);
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// We cannot check the return value with MAP_FAILED as that is the return
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// of the mmap function and not the mmap syscall.
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if (mmapRetVal < 0 && static_cast<uintptr_t>(mmapRetVal) > -app.pageSize)
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__llvm_libc::syscall(SYS_exit, 1);
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uintptr_t *tlsAddr = reinterpret_cast<uintptr_t *>(mmapRetVal);
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// x86_64 TLS faces down from the thread pointer with the first entry
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// pointing to the address of the first real TLS byte.
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uintptr_t endPtr = reinterpret_cast<uintptr_t>(tlsAddr) + tlsSize;
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*reinterpret_cast<uintptr_t *>(endPtr) = endPtr;
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__llvm_libc::inline_memcpy(reinterpret_cast<char *>(tlsAddr),
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reinterpret_cast<const char *>(app.tls.address),
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app.tls.size);
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if (__llvm_libc::syscall(SYS_arch_prctl, ARCH_SET_FS, endPtr) == -1)
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__llvm_libc::syscall(SYS_exit, 1);
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}
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} // namespace __llvm_libc
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using __llvm_libc::app;
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// TODO: Would be nice to use the aux entry structure from elf.h when available.
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struct AuxEntry {
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uint64_t type;
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uint64_t value;
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};
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extern "C" void _start() {
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// This TU is compiled with -fno-omit-frame-pointer. Hence, the previous value
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// of the base pointer is pushed on to the stack. So, we step over it (the
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// "+ 1" below) to get to the args.
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app.args = reinterpret_cast<__llvm_libc::Args *>(
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reinterpret_cast<uintptr_t *>(__builtin_frame_address(0)) + 1);
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// The x86_64 ABI requires that the stack pointer is aligned to a 16-byte
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// boundary. We align it here but we cannot use any local variables created
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// before the following alignment. Best would be to not create any local
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// variables before the alignment. Also, note that we are aligning the stack
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// downwards as the x86_64 stack grows downwards. This ensures that we don't
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// tread on argc, argv etc.
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// NOTE: Compiler attributes for alignment do not help here as the stack
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// pointer on entry to this _start function is controlled by the OS. In fact,
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// compilers can generate code assuming the alignment as required by the ABI.
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// If the stack pointers as setup by the OS are already aligned, then the
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// following code is a NOP.
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__asm__ __volatile__("andq $0xfffffffffffffff0, %%rsp\n\t" ::: "%rsp");
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__asm__ __volatile__("andq $0xfffffffffffffff0, %%rbp\n\t" ::: "%rbp");
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// After the argv array, is a 8-byte long NULL value before the array of env
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// values. The end of the env values is marked by another 8-byte long NULL
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// value. We step over it (the "+ 1" below) to get to the env values.
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uint64_t *env_ptr = app.args->argv + app.args->argc + 1;
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uint64_t *env_end_marker = env_ptr;
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app.envPtr = env_ptr;
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while (*env_end_marker)
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++env_end_marker;
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// After the env array, is the aux-vector. The end of the aux-vector is
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// denoted by an AT_NULL entry.
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Elf64_Phdr *programHdrTable = nullptr;
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uintptr_t programHdrCount;
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for (AuxEntry *aux_entry = reinterpret_cast<AuxEntry *>(env_end_marker + 1);
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aux_entry->type != AT_NULL; ++aux_entry) {
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switch (aux_entry->type) {
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case AT_PHDR:
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programHdrTable = reinterpret_cast<Elf64_Phdr *>(aux_entry->value);
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break;
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case AT_PHNUM:
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programHdrCount = aux_entry->value;
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break;
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case AT_PAGESZ:
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app.pageSize = aux_entry->value;
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break;
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default:
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break; // TODO: Read other useful entries from the aux vector.
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}
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}
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for (uintptr_t i = 0; i < programHdrCount; ++i) {
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Elf64_Phdr *phdr = programHdrTable + i;
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if (phdr->p_type != PT_TLS)
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continue;
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// TODO: p_vaddr value has to be adjusted for static-pie executables.
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app.tls.address = phdr->p_vaddr;
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app.tls.size = phdr->p_memsz;
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app.tls.align = phdr->p_align;
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}
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__llvm_libc::initTLS();
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__llvm_libc::syscall(SYS_exit, main(app.args->argc,
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reinterpret_cast<char **>(app.args->argv),
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reinterpret_cast<char **>(env_ptr)));
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}
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