The llvm versions of these functions do that, so we must to so as well. Practically this meant that were were unable to correctly un-simplify the names of some types when using type units, which resulted in type lookup errors.
51 lines
1.6 KiB
C++
51 lines
1.6 KiB
C++
// Test lldb is able to compute the fully qualified names on templates with
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// -gsimple-template-names and -fdebug-types-section.
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// REQUIRES: lld
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// Test against logging to see if we print the fully qualified names correctly.
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// RUN: %clangxx --target=x86_64-pc-linux -g -gsimple-template-names %s -c -o %t1.o
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// RUN: ld.lld %t1.o -o %t1
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// RUN: %lldb %t1 -o "log enable dwarf comp" -o "target variable v3" -o exit | FileCheck %s --check-prefix=LOG
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// Test that we following DW_AT_signature correctly. If not, lldb might confuse the types of v1 and v2.
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// RUN: %clangxx --target=x86_64-pc-linux -g -gsimple-template-names -fdebug-types-section %s -c -o %t2.o
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// RUN: ld.lld %t2.o -o %t2
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// RUN: %lldb %t2 -o "target variable v1 v2" \
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// RUN: -o "type lookup t2<outer_struct1>" -o "type lookup t2<outer_struct2>" \
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// RUN: -o exit | FileCheck %s --check-prefix=TYPE
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// LOG: unique name: t3<t2<int> >::t4
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// TYPE-LABEL: target variable v1 v2
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// TYPE: (t2<outer_struct1::t1<int> >) v1 = {}
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// TYPE: (t2<outer_struct2::t1<int> >) v2 = {}
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// TYPE-LABEL: type lookup t2<outer_struct1>
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// TYPE: template<> struct t2<outer_struct1> {
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// TYPE-NEXT: }
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// TYPE-LABEL: type lookup t2<outer_struct2>
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// TYPE: template<> struct t2<outer_struct2> {
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// TYPE-NEXT: }
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struct outer_struct1 {
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template <typename> struct t1 {};
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};
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struct outer_struct2 {
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template <typename> struct t1 {};
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};
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template <typename> struct t2 {};
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t2<outer_struct1::t1<int>> v1;
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t2<outer_struct2::t1<int>> v2;
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t2<outer_struct1> v1_1;
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t2<outer_struct2> v1_2;
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template <typename> struct t3 {
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struct t4 {};
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};
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t3<t2<int>>::t4 v3;
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