mirror of
https://github.com/fluencelabs/wasmer
synced 2024-12-13 06:15:33 +00:00
430 lines
12 KiB
Rust
430 lines
12 KiB
Rust
use crate::intrinsics::Intrinsics;
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use inkwell::{
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memory_buffer::MemoryBuffer,
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module::Module,
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targets::{CodeModel, FileType, InitializationConfig, RelocMode, Target, TargetMachine},
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OptimizationLevel,
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};
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use libc::{
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c_char, mmap, mprotect, munmap, MAP_ANON, MAP_PRIVATE, PROT_EXEC, PROT_NONE, PROT_READ,
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PROT_WRITE,
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};
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use std::{
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any::Any,
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ffi::{c_void, CString},
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mem,
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ops::Deref,
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ptr::{self, NonNull},
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slice, str,
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sync::{Arc, Once},
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};
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use wasmer_runtime_core::{
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backend::{
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sys::{Memory, Protect},
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CacheGen, RunnableModule,
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},
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cache::Error as CacheError,
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module::ModuleInfo,
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structures::TypedIndex,
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typed_func::{Wasm, WasmTrapInfo},
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types::{LocalFuncIndex, SigIndex},
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vm, vmcalls,
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};
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#[repr(C)]
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struct LLVMModule {
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_private: [u8; 0],
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}
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#[allow(non_camel_case_types, dead_code)]
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#[derive(Debug, Copy, Clone, PartialEq, Eq)]
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#[repr(C)]
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enum MemProtect {
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NONE,
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READ,
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READ_WRITE,
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READ_EXECUTE,
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}
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#[allow(non_camel_case_types, dead_code)]
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#[derive(Debug, Copy, Clone, PartialEq, Eq)]
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#[repr(C)]
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enum LLVMResult {
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OK,
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ALLOCATE_FAILURE,
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PROTECT_FAILURE,
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DEALLOC_FAILURE,
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OBJECT_LOAD_FAILURE,
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}
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#[repr(C)]
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struct Callbacks {
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alloc_memory: extern "C" fn(usize, MemProtect, &mut *mut u8, &mut usize) -> LLVMResult,
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protect_memory: extern "C" fn(*mut u8, usize, MemProtect) -> LLVMResult,
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dealloc_memory: extern "C" fn(*mut u8, usize) -> LLVMResult,
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lookup_vm_symbol: extern "C" fn(*const c_char, usize) -> *const vm::Func,
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visit_fde: extern "C" fn(*mut u8, usize, extern "C" fn(*mut u8)),
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}
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extern "C" {
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fn module_load(
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mem_ptr: *const u8,
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mem_size: usize,
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callbacks: Callbacks,
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module_out: &mut *mut LLVMModule,
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) -> LLVMResult;
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fn module_delete(module: *mut LLVMModule);
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fn get_func_symbol(module: *mut LLVMModule, name: *const c_char) -> *const vm::Func;
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fn throw_trap(ty: i32);
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/// This should be the same as spliting up the fat pointer into two arguments,
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/// but this is cleaner, I think?
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#[cfg_attr(nightly, unwind(allowed))]
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#[allow(improper_ctypes)]
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fn throw_any(data: *mut dyn Any) -> !;
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#[allow(improper_ctypes)]
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fn invoke_trampoline(
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trampoline: unsafe extern "C" fn(*mut vm::Ctx, NonNull<vm::Func>, *const u64, *mut u64),
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vmctx_ptr: *mut vm::Ctx,
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func_ptr: NonNull<vm::Func>,
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params: *const u64,
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results: *mut u64,
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trap_out: *mut WasmTrapInfo,
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invoke_env: Option<NonNull<c_void>>,
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) -> bool;
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}
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fn get_callbacks() -> Callbacks {
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fn round_up_to_page_size(size: usize) -> usize {
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(size + (4096 - 1)) & !(4096 - 1)
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}
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extern "C" fn alloc_memory(
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size: usize,
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protect: MemProtect,
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ptr_out: &mut *mut u8,
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size_out: &mut usize,
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) -> LLVMResult {
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let size = round_up_to_page_size(size);
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let ptr = unsafe {
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mmap(
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ptr::null_mut(),
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size,
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match protect {
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MemProtect::NONE => PROT_NONE,
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MemProtect::READ => PROT_READ,
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MemProtect::READ_WRITE => PROT_READ | PROT_WRITE,
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MemProtect::READ_EXECUTE => PROT_READ | PROT_EXEC,
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},
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MAP_PRIVATE | MAP_ANON,
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-1,
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0,
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)
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};
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if ptr as isize == -1 {
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return LLVMResult::ALLOCATE_FAILURE;
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}
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*ptr_out = ptr as _;
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*size_out = size;
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LLVMResult::OK
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}
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extern "C" fn protect_memory(ptr: *mut u8, size: usize, protect: MemProtect) -> LLVMResult {
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let res = unsafe {
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mprotect(
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ptr as _,
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round_up_to_page_size(size),
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match protect {
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MemProtect::NONE => PROT_NONE,
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MemProtect::READ => PROT_READ,
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MemProtect::READ_WRITE => PROT_READ | PROT_WRITE,
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MemProtect::READ_EXECUTE => PROT_READ | PROT_EXEC,
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},
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)
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};
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if res == 0 {
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LLVMResult::OK
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} else {
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LLVMResult::PROTECT_FAILURE
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}
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}
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extern "C" fn dealloc_memory(ptr: *mut u8, size: usize) -> LLVMResult {
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let res = unsafe { munmap(ptr as _, round_up_to_page_size(size)) };
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if res == 0 {
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LLVMResult::OK
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} else {
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LLVMResult::DEALLOC_FAILURE
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}
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}
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extern "C" fn lookup_vm_symbol(name_ptr: *const c_char, length: usize) -> *const vm::Func {
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#[cfg(target_os = "macos")]
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macro_rules! fn_name {
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($s:literal) => {
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concat!("_", $s)
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};
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}
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#[cfg(not(target_os = "macos"))]
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macro_rules! fn_name {
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($s:literal) => {
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$s
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};
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}
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let name_slice = unsafe { slice::from_raw_parts(name_ptr as *const u8, length) };
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let name = str::from_utf8(name_slice).unwrap();
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match name {
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fn_name!("vm.memory.grow.dynamic.local") => vmcalls::local_dynamic_memory_grow as _,
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fn_name!("vm.memory.size.dynamic.local") => vmcalls::local_dynamic_memory_size as _,
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fn_name!("vm.memory.grow.static.local") => vmcalls::local_static_memory_grow as _,
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fn_name!("vm.memory.size.static.local") => vmcalls::local_static_memory_size as _,
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fn_name!("vm.exception.trap") => throw_trap as _,
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_ => ptr::null(),
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}
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}
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extern "C" fn visit_fde(fde: *mut u8, size: usize, visitor: extern "C" fn(*mut u8)) {
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unsafe {
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crate::platform::visit_fde(fde, size, visitor);
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}
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}
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Callbacks {
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alloc_memory,
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protect_memory,
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dealloc_memory,
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lookup_vm_symbol,
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visit_fde,
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}
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}
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pub enum Buffer {
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LlvmMemory(MemoryBuffer),
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Memory(Memory),
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}
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impl Deref for Buffer {
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type Target = [u8];
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fn deref(&self) -> &[u8] {
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match self {
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Buffer::LlvmMemory(mem_buffer) => mem_buffer.as_slice(),
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Buffer::Memory(memory) => unsafe { memory.as_slice() },
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}
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}
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}
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unsafe impl Send for LLVMBackend {}
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unsafe impl Sync for LLVMBackend {}
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pub struct LLVMBackend {
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module: *mut LLVMModule,
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#[allow(dead_code)]
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buffer: Arc<Buffer>,
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}
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impl LLVMBackend {
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pub fn new(module: Module, _intrinsics: Intrinsics) -> (Self, LLVMCache) {
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Target::initialize_x86(&InitializationConfig {
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asm_parser: true,
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asm_printer: true,
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base: true,
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disassembler: true,
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info: true,
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machine_code: true,
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});
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let triple = TargetMachine::get_default_triple().to_string();
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let target = Target::from_triple(&triple).unwrap();
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let target_machine = target
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.create_target_machine(
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&triple,
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&TargetMachine::get_host_cpu_name().to_string(),
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&TargetMachine::get_host_cpu_features().to_string(),
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OptimizationLevel::Aggressive,
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RelocMode::PIC,
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CodeModel::Default,
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)
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.unwrap();
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let memory_buffer = target_machine
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.write_to_memory_buffer(&module, FileType::Object)
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.unwrap();
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let mem_buf_slice = memory_buffer.as_slice();
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let callbacks = get_callbacks();
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let mut module: *mut LLVMModule = ptr::null_mut();
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let res = unsafe {
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module_load(
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mem_buf_slice.as_ptr(),
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mem_buf_slice.len(),
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callbacks,
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&mut module,
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)
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};
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static SIGNAL_HANDLER_INSTALLED: Once = Once::new();
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SIGNAL_HANDLER_INSTALLED.call_once(|| unsafe {
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crate::platform::install_signal_handler();
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});
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if res != LLVMResult::OK {
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panic!("failed to load object")
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}
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let buffer = Arc::new(Buffer::LlvmMemory(memory_buffer));
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(
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Self {
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module,
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buffer: Arc::clone(&buffer),
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},
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LLVMCache { buffer },
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)
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}
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pub unsafe fn from_buffer(memory: Memory) -> Result<(Self, LLVMCache), String> {
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let callbacks = get_callbacks();
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let mut module: *mut LLVMModule = ptr::null_mut();
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let slice = unsafe { memory.as_slice() };
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let res = module_load(slice.as_ptr(), slice.len(), callbacks, &mut module);
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if res != LLVMResult::OK {
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return Err("failed to load object".to_string());
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}
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static SIGNAL_HANDLER_INSTALLED: Once = Once::new();
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SIGNAL_HANDLER_INSTALLED.call_once(|| unsafe {
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crate::platform::install_signal_handler();
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});
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let buffer = Arc::new(Buffer::Memory(memory));
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Ok((
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Self {
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module,
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buffer: Arc::clone(&buffer),
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},
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LLVMCache { buffer },
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))
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}
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}
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impl Drop for LLVMBackend {
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fn drop(&mut self) {
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unsafe { module_delete(self.module) }
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}
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}
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impl RunnableModule for LLVMBackend {
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fn get_func(
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&self,
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info: &ModuleInfo,
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local_func_index: LocalFuncIndex,
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) -> Option<NonNull<vm::Func>> {
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let index = info.imported_functions.len() + local_func_index.index();
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let name = if cfg!(target_os = "macos") {
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format!("_fn{}", index)
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} else {
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format!("fn{}", index)
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};
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let c_str = CString::new(name).ok()?;
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let ptr = unsafe { get_func_symbol(self.module, c_str.as_ptr()) };
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NonNull::new(ptr as _)
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}
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fn get_trampoline(&self, _: &ModuleInfo, sig_index: SigIndex) -> Option<Wasm> {
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let trampoline: unsafe extern "C" fn(
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*mut vm::Ctx,
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NonNull<vm::Func>,
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*const u64,
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*mut u64,
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) = unsafe {
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let name = if cfg!(target_os = "macos") {
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format!("_trmp{}", sig_index.index())
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} else {
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format!("trmp{}", sig_index.index())
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};
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let c_str = CString::new(name).unwrap();
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let symbol = get_func_symbol(self.module, c_str.as_ptr());
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assert!(!symbol.is_null());
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mem::transmute(symbol)
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};
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Some(unsafe { Wasm::from_raw_parts(trampoline, invoke_trampoline, None) })
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}
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unsafe fn do_early_trap(&self, data: Box<dyn Any>) -> ! {
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throw_any(Box::leak(data))
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}
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}
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unsafe impl Send for LLVMCache {}
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unsafe impl Sync for LLVMCache {}
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pub struct LLVMCache {
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buffer: Arc<Buffer>,
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}
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impl CacheGen for LLVMCache {
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fn generate_cache(&self) -> Result<(Box<[u8]>, Memory), CacheError> {
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let mut memory = Memory::with_size_protect(self.buffer.len(), Protect::ReadWrite)
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.map_err(CacheError::SerializeError)?;
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let buffer = self.buffer.deref();
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unsafe {
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memory.as_slice_mut()[..buffer.len()].copy_from_slice(buffer);
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}
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Ok(([].as_ref().into(), memory))
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}
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}
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#[cfg(feature = "disasm")]
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unsafe fn disass_ptr(ptr: *const u8, size: usize, inst_count: usize) {
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use capstone::arch::BuildsCapstone;
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let mut cs = capstone::Capstone::new() // Call builder-pattern
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.x86() // X86 architecture
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.mode(capstone::arch::x86::ArchMode::Mode64) // 64-bit mode
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.detail(true) // Generate extra instruction details
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.build()
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.expect("Failed to create Capstone object");
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// Get disassembled instructions
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let insns = cs
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.disasm_count(
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std::slice::from_raw_parts(ptr, size),
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ptr as u64,
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inst_count,
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)
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.expect("Failed to disassemble");
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println!("count = {}", insns.len());
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for insn in insns.iter() {
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println!(
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"0x{:x}: {:6} {}",
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insn.address(),
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insn.mnemonic().unwrap_or(""),
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insn.op_str().unwrap_or("")
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);
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}
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}
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