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Update other codegens to use tcx managed vtable allocations.
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commit
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@ -233,7 +233,7 @@ pub(crate) struct FunctionCx<'m, 'clif, 'tcx: 'm> {
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pub(crate) module: &'m mut dyn Module,
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pub(crate) tcx: TyCtxt<'tcx>,
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pub(crate) pointer_type: Type, // Cached from module
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pub(crate) vtables: FxHashMap<(Ty<'tcx>, Option<ty::PolyExistentialTraitRef<'tcx>>), DataId>,
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pub(crate) vtables: FxHashMap<(Ty<'tcx>, Option<ty::PolyExistentialTraitRef<'tcx>>), Pointer>,
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pub(crate) constants_cx: ConstantCx,
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pub(crate) instance: Instance<'tcx>,
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@ -249,7 +249,7 @@ pub(crate) fn codegen_const_value<'tcx>(
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}
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}
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fn pointer_for_allocation<'tcx>(
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pub(crate) fn pointer_for_allocation<'tcx>(
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fx: &mut FunctionCx<'_, '_, 'tcx>,
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alloc: &'tcx Allocation,
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) -> crate::pointer::Pointer {
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@ -98,7 +98,7 @@ mod prelude {
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pub(crate) use cranelift_codegen::isa::{self, CallConv};
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pub(crate) use cranelift_codegen::Context;
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pub(crate) use cranelift_frontend::{FunctionBuilder, FunctionBuilderContext, Variable};
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pub(crate) use cranelift_module::{self, DataContext, DataId, FuncId, Linkage, Module};
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pub(crate) use cranelift_module::{self, DataContext, FuncId, Linkage, Module};
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pub(crate) use crate::abi::*;
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pub(crate) use crate::base::{codegen_operand, codegen_place};
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@ -31,9 +31,7 @@ pub(crate) fn unsized_info<'tcx>(
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// change to the vtable.
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old_info.expect("unsized_info: missing old info for trait upcast")
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}
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(_, &ty::Dynamic(ref data, ..)) => {
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crate::vtable::get_vtable(fx, fx.layout_of(source), data.principal())
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}
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(_, &ty::Dynamic(ref data, ..)) => crate::vtable::get_vtable(fx, source, data.principal()),
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_ => bug!("unsized_info: invalid unsizing {:?} -> {:?}", source, target),
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}
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}
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108
src/vtable.rs
108
src/vtable.rs
@ -4,7 +4,7 @@
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// FIXME dedup this logic between miri, cg_llvm and cg_clif
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use crate::prelude::*;
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use ty::VtblEntry;
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use super::constant::pointer_for_allocation;
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fn vtable_memflags() -> MemFlags {
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let mut flags = MemFlags::trusted(); // A vtable access is always aligned and will never trap.
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@ -66,105 +66,19 @@ pub(crate) fn get_ptr_and_method_ref<'tcx>(
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pub(crate) fn get_vtable<'tcx>(
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fx: &mut FunctionCx<'_, '_, 'tcx>,
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layout: TyAndLayout<'tcx>,
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ty: Ty<'tcx>,
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trait_ref: Option<ty::PolyExistentialTraitRef<'tcx>>,
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) -> Value {
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let data_id = if let Some(data_id) = fx.vtables.get(&(layout.ty, trait_ref)) {
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*data_id
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let vtable_ptr = if let Some(vtable_ptr) = fx.vtables.get(&(ty, trait_ref)) {
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*vtable_ptr
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} else {
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let data_id = build_vtable(fx, layout, trait_ref);
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fx.vtables.insert((layout.ty, trait_ref), data_id);
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data_id
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let vtable_alloc_id = fx.tcx.vtable_allocation(ty, trait_ref);
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let vtable_allocation = fx.tcx.global_alloc(vtable_alloc_id).unwrap_memory();
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let vtable_ptr = pointer_for_allocation(fx, vtable_allocation);
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fx.vtables.insert((ty, trait_ref), vtable_ptr);
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vtable_ptr
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};
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let local_data_id = fx.module.declare_data_in_func(data_id, &mut fx.bcx.func);
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fx.bcx.ins().global_value(fx.pointer_type, local_data_id)
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}
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fn build_vtable<'tcx>(
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fx: &mut FunctionCx<'_, '_, 'tcx>,
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layout: TyAndLayout<'tcx>,
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trait_ref: Option<ty::PolyExistentialTraitRef<'tcx>>,
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) -> DataId {
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let tcx = fx.tcx;
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let usize_size = fx.layout_of(fx.tcx.types.usize).size.bytes() as usize;
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let drop_in_place_fn = import_function(
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tcx,
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fx.module,
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Instance::resolve_drop_in_place(tcx, layout.ty).polymorphize(fx.tcx),
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);
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let vtable_entries = if let Some(trait_ref) = trait_ref {
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tcx.vtable_entries(trait_ref.with_self_ty(tcx, layout.ty))
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} else {
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ty::COMMON_VTABLE_ENTRIES
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};
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let mut data_ctx = DataContext::new();
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let mut data = ::std::iter::repeat(0u8)
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.take(vtable_entries.len() * usize_size)
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.collect::<Vec<u8>>()
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.into_boxed_slice();
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for (idx, entry) in vtable_entries.iter().enumerate() {
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match entry {
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VtblEntry::MetadataSize => {
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write_usize(fx.tcx, &mut data, idx, layout.size.bytes());
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}
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VtblEntry::MetadataAlign => {
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write_usize(fx.tcx, &mut data, idx, layout.align.abi.bytes());
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}
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VtblEntry::MetadataDropInPlace | VtblEntry::Vacant | VtblEntry::Method(_, _) => {}
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}
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}
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data_ctx.define(data);
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for (idx, entry) in vtable_entries.iter().enumerate() {
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match entry {
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VtblEntry::MetadataDropInPlace => {
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let func_ref = fx.module.declare_func_in_data(drop_in_place_fn, &mut data_ctx);
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data_ctx.write_function_addr((idx * usize_size) as u32, func_ref);
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}
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VtblEntry::Method(def_id, substs) => {
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let func_id = import_function(
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tcx,
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fx.module,
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Instance::resolve_for_vtable(tcx, ParamEnv::reveal_all(), *def_id, substs)
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.unwrap()
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.polymorphize(fx.tcx),
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);
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let func_ref = fx.module.declare_func_in_data(func_id, &mut data_ctx);
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data_ctx.write_function_addr((idx * usize_size) as u32, func_ref);
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}
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VtblEntry::MetadataSize | VtblEntry::MetadataAlign | VtblEntry::Vacant => {}
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}
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}
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data_ctx.set_align(fx.tcx.data_layout.pointer_align.pref.bytes());
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let data_id = fx.module.declare_anonymous_data(false, false).unwrap();
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fx.module.define_data(data_id, &data_ctx).unwrap();
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data_id
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}
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fn write_usize(tcx: TyCtxt<'_>, buf: &mut [u8], idx: usize, num: u64) {
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let pointer_size =
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tcx.layout_of(ParamEnv::reveal_all().and(tcx.types.usize)).unwrap().size.bytes() as usize;
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let target = &mut buf[idx * pointer_size..(idx + 1) * pointer_size];
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match tcx.data_layout.endian {
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rustc_target::abi::Endian::Little => match pointer_size {
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4 => target.copy_from_slice(&(num as u32).to_le_bytes()),
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8 => target.copy_from_slice(&(num as u64).to_le_bytes()),
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_ => todo!("pointer size {} is not yet supported", pointer_size),
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},
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rustc_target::abi::Endian::Big => match pointer_size {
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4 => target.copy_from_slice(&(num as u32).to_be_bytes()),
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8 => target.copy_from_slice(&(num as u64).to_be_bytes()),
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_ => todo!("pointer size {} is not yet supported", pointer_size),
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},
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}
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vtable_ptr.get_addr(fx)
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}
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