271 lines
10 KiB
Rust
271 lines
10 KiB
Rust
//! Main evaluator loop and setting up the initial stack frame.
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use rand::rngs::StdRng;
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use rand::SeedableRng;
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use rustc::hir::def_id::DefId;
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use rustc::ty::layout::{Align, LayoutOf, Size};
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use rustc::ty::{self, TyCtxt};
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use syntax::source_map::DUMMY_SP;
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use crate::{
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struct_error, EnvVars, Evaluator, FnVal, HelpersEvalContextExt, InterpCx, InterpError,
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InterpResult, MemoryExtra, MiriMemoryKind, Pointer, Scalar, StackPopCleanup, Tag,
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TlsEvalContextExt,
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};
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/// Configuration needed to spawn a Miri instance.
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#[derive(Clone)]
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pub struct MiriConfig {
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/// Determine if validity checking and Stacked Borrows are enabled.
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pub validate: bool,
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/// Determines if communication with the host environment is enabled.
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pub communicate: bool,
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/// Environment variables that should always be isolated from the host.
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pub excluded_env_vars: Vec<String>,
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/// Command-line arguments passed to the interpreted program.
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pub args: Vec<String>,
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/// The seed to use when non-determinism or randomness are required (e.g. ptr-to-int cast, `getrandom()`).
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pub seed: Option<u64>,
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}
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// Used by priroda.
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pub fn create_ecx<'mir, 'tcx: 'mir>(
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tcx: TyCtxt<'tcx>,
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main_id: DefId,
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config: MiriConfig,
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) -> InterpResult<'tcx, InterpCx<'mir, 'tcx, Evaluator<'tcx>>> {
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let mut ecx = InterpCx::new(
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tcx.at(syntax::source_map::DUMMY_SP),
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ty::ParamEnv::reveal_all(),
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Evaluator::new(config.communicate),
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MemoryExtra::new(
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StdRng::seed_from_u64(config.seed.unwrap_or(0)),
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config.validate,
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),
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);
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// Complete initialization.
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EnvVars::init(&mut ecx, config.excluded_env_vars);
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// Setup first stack-frame
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let main_instance = ty::Instance::mono(ecx.tcx.tcx, main_id);
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let main_mir = ecx.load_mir(main_instance.def, None)?;
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if !main_mir.return_ty().is_unit() || main_mir.arg_count != 0 {
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throw_unsup_format!("miri does not support main functions without `fn()` type signatures");
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}
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let start_id = tcx.lang_items().start_fn().unwrap();
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let main_ret_ty = tcx.fn_sig(main_id).output();
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let main_ret_ty = main_ret_ty.no_bound_vars().unwrap();
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let start_instance = ty::Instance::resolve(
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ecx.tcx.tcx,
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ty::ParamEnv::reveal_all(),
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start_id,
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ecx.tcx
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.mk_substs(::std::iter::once(ty::subst::GenericArg::from(main_ret_ty))),
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)
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.unwrap();
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let start_mir = ecx.load_mir(start_instance.def, None)?;
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if start_mir.arg_count != 3 {
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bug!(
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"'start' lang item should have three arguments, but has {}",
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start_mir.arg_count
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);
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}
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// Return value (in static memory so that it does not count as leak).
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let ret = ecx.layout_of(start_mir.return_ty())?;
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let ret_ptr = ecx.allocate(ret, MiriMemoryKind::Static.into());
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// Push our stack frame.
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ecx.push_stack_frame(
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start_instance,
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// There is no call site.
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DUMMY_SP,
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start_mir,
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Some(ret_ptr.into()),
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StackPopCleanup::None { cleanup: true },
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)?;
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let mut args = ecx.frame().body.args_iter();
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// First argument: pointer to `main()`.
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let main_ptr = ecx
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.memory
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.create_fn_alloc(FnVal::Instance(main_instance));
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let dest = ecx.local_place(args.next().unwrap())?;
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ecx.write_scalar(Scalar::Ptr(main_ptr), dest)?;
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// Second argument (argc): `1`.
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let dest = ecx.local_place(args.next().unwrap())?;
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let argc = Scalar::from_uint(config.args.len() as u128, dest.layout.size);
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ecx.write_scalar(argc, dest)?;
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// Store argc for macOS's `_NSGetArgc`.
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{
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let argc_place = ecx.allocate(dest.layout, MiriMemoryKind::Env.into());
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ecx.write_scalar(argc, argc_place.into())?;
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ecx.machine.argc = Some(argc_place.ptr.to_ptr()?);
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}
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// Third argument (`argv`): created from `config.args`.
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let dest = ecx.local_place(args.next().unwrap())?;
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// For Windows, construct a command string with all the aguments.
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let mut cmd = String::new();
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for arg in config.args.iter() {
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if !cmd.is_empty() {
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cmd.push(' ');
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}
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cmd.push_str(&*shell_escape::windows::escape(arg.as_str().into()));
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}
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// Don't forget `0` terminator.
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cmd.push(std::char::from_u32(0).unwrap());
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// Collect the pointers to the individual strings.
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let mut argvs = Vec::<Pointer<Tag>>::new();
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for arg in config.args {
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// Add `0` terminator.
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let mut arg = arg.into_bytes();
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arg.push(0);
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argvs.push(
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ecx.memory
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.allocate_static_bytes(arg.as_slice(), MiriMemoryKind::Static.into()),
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);
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}
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// Make an array with all these pointers, in the Miri memory.
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let argvs_layout = ecx.layout_of(
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ecx.tcx
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.mk_array(ecx.tcx.mk_imm_ptr(ecx.tcx.types.u8), argvs.len() as u64),
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)?;
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let argvs_place = ecx.allocate(argvs_layout, MiriMemoryKind::Env.into());
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for (idx, arg) in argvs.into_iter().enumerate() {
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let place = ecx.mplace_field(argvs_place, idx as u64)?;
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ecx.write_scalar(Scalar::Ptr(arg), place.into())?;
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}
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ecx.memory
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.mark_immutable(argvs_place.ptr.assert_ptr().alloc_id)?;
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// Write a pointer to that place as the argument.
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let argv = argvs_place.ptr;
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ecx.write_scalar(argv, dest)?;
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// Store `argv` for macOS `_NSGetArgv`.
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{
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let argv_place = ecx.allocate(dest.layout, MiriMemoryKind::Env.into());
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ecx.write_scalar(argv, argv_place.into())?;
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ecx.machine.argv = Some(argv_place.ptr.to_ptr()?);
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}
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// Store command line as UTF-16 for Windows `GetCommandLineW`.
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{
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let cmd_utf16: Vec<u16> = cmd.encode_utf16().collect();
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let cmd_ptr = ecx.memory.allocate(
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Size::from_bytes(cmd_utf16.len() as u64 * 2),
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Align::from_bytes(2).unwrap(),
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MiriMemoryKind::Env.into(),
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);
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ecx.machine.cmd_line = Some(cmd_ptr);
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// Store the UTF-16 string. We just allocated so we know the bounds are fine.
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let char_size = Size::from_bytes(2);
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let cmd_alloc = ecx.memory.get_mut(cmd_ptr.alloc_id)?;
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let mut cur_ptr = cmd_ptr;
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for &c in cmd_utf16.iter() {
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cmd_alloc.write_scalar(
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&*ecx.tcx,
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cur_ptr,
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Scalar::from_uint(c, char_size).into(),
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char_size,
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)?;
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cur_ptr = cur_ptr.offset(char_size, &*ecx.tcx)?;
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}
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}
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assert!(
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args.next().is_none(),
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"start lang item has more arguments than expected"
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);
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// Set the last_error to 0
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let errno_layout = ecx.layout_of(ecx.tcx.types.u32)?;
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let errno_place = ecx.allocate(errno_layout, MiriMemoryKind::Static.into());
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ecx.write_scalar(Scalar::from_u32(0), errno_place.into())?;
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let errno_ptr = ecx.check_mplace_access(errno_place.into(), Some(Size::from_bits(32)))?;
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ecx.machine.last_error = errno_ptr;
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Ok(ecx)
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}
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pub fn eval_main<'tcx>(tcx: TyCtxt<'tcx>, main_id: DefId, config: MiriConfig) {
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let mut ecx = match create_ecx(tcx, main_id, config) {
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Ok(ecx) => ecx,
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Err(mut err) => {
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err.print_backtrace();
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panic!("Miri initialziation error: {}", err.kind)
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}
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};
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// Perform the main execution.
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let res: InterpResult<'_> = (|| {
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ecx.run()?;
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ecx.run_tls_dtors()
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})();
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// Process the result.
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match res {
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Ok(()) => {
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let leaks = ecx.memory.leak_report();
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// Disable the leak test on some platforms where we do not
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// correctly implement TLS destructors.
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let target_os = ecx.tcx.tcx.sess.target.target.target_os.to_lowercase();
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let ignore_leaks = target_os == "windows" || target_os == "macos";
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if !ignore_leaks && leaks != 0 {
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tcx.sess.err("the evaluated program leaked memory");
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}
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}
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Err(mut e) => {
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// Special treatment for some error kinds
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let msg = match e.kind {
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InterpError::Exit(code) => std::process::exit(code),
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err_unsup!(NoMirFor(..)) =>
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format!("{}. Did you set `MIRI_SYSROOT` to a Miri-enabled sysroot? You can prepare one with `cargo miri setup`.", e),
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_ => e.to_string()
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};
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e.print_backtrace();
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if let Some(frame) = ecx.stack().last() {
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let block = &frame.body.basic_blocks()[frame.block];
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let span = if frame.stmt < block.statements.len() {
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block.statements[frame.stmt].source_info.span
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} else {
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block.terminator().source_info.span
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};
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let msg = format!("Miri evaluation error: {}", msg);
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let mut err = struct_error(ecx.tcx.tcx.at(span), msg.as_str());
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let frames = ecx.generate_stacktrace(None);
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err.span_label(span, msg);
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// We iterate with indices because we need to look at the next frame (the caller).
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for idx in 0..frames.len() {
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let frame_info = &frames[idx];
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let call_site_is_local = frames.get(idx + 1).map_or(false, |caller_info| {
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caller_info.instance.def_id().is_local()
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});
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if call_site_is_local {
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err.span_note(frame_info.call_site, &frame_info.to_string());
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} else {
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err.note(&frame_info.to_string());
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}
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}
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err.emit();
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} else {
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ecx.tcx.sess.err(&msg);
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}
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for (i, frame) in ecx.stack().iter().enumerate() {
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trace!("-------------------");
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trace!("Frame {}", i);
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trace!(" return: {:?}", frame.return_place.map(|p| *p));
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for (i, local) in frame.locals.iter().enumerate() {
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trace!(" local {}: {:?}", i, local.value);
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}
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}
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}
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}
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}
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