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debuginfo: Emit ZST struct debuginfo for unit type when CPP-like debuginfo is enabled (instead of custom basic type).
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@ -437,11 +437,9 @@ pub fn type_di_node<'ll, 'tcx>(cx: &CodegenCx<'ll, 'tcx>, t: Ty<'tcx>) -> &'ll D
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let DINodeCreationResult { di_node, already_stored_in_typemap } = match *t.kind() {
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let DINodeCreationResult { di_node, already_stored_in_typemap } = match *t.kind() {
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ty::Never | ty::Bool | ty::Char | ty::Int(_) | ty::Uint(_) | ty::Float(_) => {
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ty::Never | ty::Bool | ty::Char | ty::Int(_) | ty::Uint(_) | ty::Float(_) => {
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DINodeCreationResult::new(build_basic_type_di_node(cx, t), false)
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build_basic_type_di_node(cx, t)
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}
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ty::Tuple(elements) if elements.is_empty() => {
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DINodeCreationResult::new(build_basic_type_di_node(cx, t), false)
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}
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}
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ty::Tuple(elements) if elements.is_empty() => build_basic_type_di_node(cx, t),
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ty::Array(..) => build_fixed_size_array_di_node(cx, unique_type_id, t),
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ty::Array(..) => build_fixed_size_array_di_node(cx, unique_type_id, t),
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ty::Slice(_) | ty::Str => build_slice_type_di_node(cx, t, unique_type_id),
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ty::Slice(_) | ty::Str => build_slice_type_di_node(cx, t, unique_type_id),
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ty::Dynamic(..) => build_dyn_type_di_node(cx, t, unique_type_id),
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ty::Dynamic(..) => build_dyn_type_di_node(cx, t, unique_type_id),
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@ -640,7 +638,10 @@ impl MsvcBasicName for ty::FloatTy {
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}
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}
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}
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}
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fn build_basic_type_di_node<'ll, 'tcx>(cx: &CodegenCx<'ll, 'tcx>, t: Ty<'tcx>) -> &'ll DIType {
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fn build_basic_type_di_node<'ll, 'tcx>(
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cx: &CodegenCx<'ll, 'tcx>,
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t: Ty<'tcx>,
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) -> DINodeCreationResult<'ll> {
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debug!("build_basic_type_di_node: {:?}", t);
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debug!("build_basic_type_di_node: {:?}", t);
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// When targeting MSVC, emit MSVC style type names for compatibility with
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// When targeting MSVC, emit MSVC style type names for compatibility with
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@ -649,7 +650,13 @@ fn build_basic_type_di_node<'ll, 'tcx>(cx: &CodegenCx<'ll, 'tcx>, t: Ty<'tcx>) -
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let (name, encoding) = match t.kind() {
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let (name, encoding) = match t.kind() {
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ty::Never => ("!", DW_ATE_unsigned),
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ty::Never => ("!", DW_ATE_unsigned),
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ty::Tuple(elements) if elements.is_empty() => ("()", DW_ATE_unsigned),
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ty::Tuple(elements) if elements.is_empty() => {
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if cpp_like_debuginfo {
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return build_tuple_type_di_node(cx, UniqueTypeId::for_ty(cx.tcx, t));
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} else {
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("()", DW_ATE_unsigned)
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}
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}
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ty::Bool => ("bool", DW_ATE_boolean),
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ty::Bool => ("bool", DW_ATE_boolean),
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ty::Char => ("char", DW_ATE_UTF),
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ty::Char => ("char", DW_ATE_UTF),
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ty::Int(int_ty) if cpp_like_debuginfo => (int_ty.msvc_basic_name(), DW_ATE_signed),
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ty::Int(int_ty) if cpp_like_debuginfo => (int_ty.msvc_basic_name(), DW_ATE_signed),
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@ -672,14 +679,14 @@ fn build_basic_type_di_node<'ll, 'tcx>(cx: &CodegenCx<'ll, 'tcx>, t: Ty<'tcx>) -
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};
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};
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if !cpp_like_debuginfo {
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if !cpp_like_debuginfo {
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return ty_di_node;
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return DINodeCreationResult::new(ty_di_node, false);
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}
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}
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let typedef_name = match t.kind() {
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let typedef_name = match t.kind() {
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ty::Int(int_ty) => int_ty.name_str(),
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ty::Int(int_ty) => int_ty.name_str(),
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ty::Uint(uint_ty) => uint_ty.name_str(),
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ty::Uint(uint_ty) => uint_ty.name_str(),
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ty::Float(float_ty) => float_ty.name_str(),
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ty::Float(float_ty) => float_ty.name_str(),
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_ => return ty_di_node,
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_ => return DINodeCreationResult::new(ty_di_node, false),
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};
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};
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let typedef_di_node = unsafe {
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let typedef_di_node = unsafe {
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@ -694,7 +701,7 @@ fn build_basic_type_di_node<'ll, 'tcx>(cx: &CodegenCx<'ll, 'tcx>, t: Ty<'tcx>) -
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)
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)
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};
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};
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typedef_di_node
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DINodeCreationResult::new(typedef_di_node, false)
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}
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}
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fn build_foreign_type_di_node<'ll, 'tcx>(
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fn build_foreign_type_di_node<'ll, 'tcx>(
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71
src/test/debuginfo/unit-type.rs
Normal file
71
src/test/debuginfo/unit-type.rs
Normal file
@ -0,0 +1,71 @@
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// compile-flags:-g
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// We only test Rust-aware versions of GDB:
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// min-gdb-version: 8.2
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// === GDB TESTS ===================================================================================
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// gdb-command: run
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// gdb-command: print _ref
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// gdb-check: $1 = (*mut ()) 0x[...]
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// gdb-command: print _ptr
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// gdb-check: $2 = (*mut ()) 0x[...]
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// gdb-command: print _local
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// gdb-check: $3 = ()
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// gdb-command: print _field
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// gdb-check: $4 = unit_type::_TypeContainingUnitField {_a: 123, _unit: (), _b: 456}
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// Check that we can cast "void pointers" to their actual type in the debugger
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// gdb-command: print /x *(_ptr as *const u64)
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// gdb-check: $5 = 0x1122334455667788
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// === CDB TESTS ===================================================================================
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// cdb-command: g
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// cdb-check: Breakpoint 0 hit
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// cdb-command: dx _ref
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// cdb-check: _ref : 0x[...] : () [Type: tuple$<> *]
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// cdb-command: dx _ptr
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// cdb-check: _ptr : 0x[...] : () [Type: tuple$<> *]
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// cdb-command: dx _local
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// cdb-check: _local : () [Type: tuple$<>]
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// cdb-command: dx _field,d
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// cdb-check: _field,d [Type: unit_type::_TypeContainingUnitField]
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// cdb-check: [+0x[...]] _a : 123 [Type: unsigned int]
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// cdb-check: [+0x[...]] _unit : () [Type: tuple$<>]
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// cdb-check: [+0x[...]] _b : 456 [Type: unsigned __int64]
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// Check that we can cast "void pointers" to their actual type in the debugger
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// cdb-command: dx ((__int64 *)_ptr),x
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// cdb-check: ((__int64 *)_ptr),x : 0x[...] : 0x1122334455667788 [Type: __int64 *]
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// cdb-check: 0x1122334455667788 [Type: __int64]
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struct _TypeContainingUnitField {
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_a: u32,
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_unit: (),
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_b: u64,
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}
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fn foo(_ref: &(), _ptr: *const ()) {
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let _local = ();
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let _field = _TypeContainingUnitField { _a: 123, _unit: (), _b: 456 };
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zzz(); // #break
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}
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fn main() {
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let pointee = 0x1122_3344_5566_7788i64;
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foo(&(), &pointee as *const i64 as *const ());
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}
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#[inline(never)]
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fn zzz() {}
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