This patch implements the infrastructure for return attributes on function/call operations, a little of the common infrastructure for arg attributes on the same, and 4 return attributes lowering: noundef nonnull dereferenceable align These 4 common attributes are all pretty reasonable/common, so these will change a lot of tests. This patch chooses to just use the LLVM-IR-Dialect variant of these attributes (as a NamedAttr), which means no changes to the dialect or lowering are necessary.
87 lines
3.9 KiB
C++
87 lines
3.9 KiB
C++
// RUN: %clang_cc1 -std=c++17 -triple x86_64-unknown-linux-gnu -fclangir -emit-cir %s -o %t.cir
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// RUN: FileCheck --input-file=%t.cir %s --check-prefix=CIR
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// RUN: %clang_cc1 -std=c++17 -triple x86_64-unknown-linux-gnu -fclangir -emit-llvm %s -o %t-cir.ll
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// RUN: FileCheck --input-file=%t-cir.ll %s --check-prefix=LLVM
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// RUN: %clang_cc1 -std=c++17 -triple x86_64-unknown-linux-gnu -emit-llvm %s -o %t.ll
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// RUN: FileCheck --input-file=%t.ll %s --check-prefix=OGCG
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int make_int();
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int test() {
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const int &x = make_int();
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return x;
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}
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// CIR: cir.func {{.*}} @_Z4testv()
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// CIR: %[[TEMP_SLOT:.*]] = cir.alloca !s32i, !cir.ptr<!s32i>, ["ref.tmp0", init]
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// CIR-NEXT: %[[X:.*]] = cir.alloca !cir.ptr<!s32i>, !cir.ptr<!cir.ptr<!s32i>>, ["x", init, const]
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// CIR-NEXT: %[[TEMP_VALUE:.*]] = cir.call @_Z8make_intv() : () -> (!s32i {llvm.noundef})
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// CIR-NEXT: cir.store{{.*}} %[[TEMP_VALUE]], %[[TEMP_SLOT]]
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// CIR-NEXT: cir.store{{.*}} %[[TEMP_SLOT]], %[[X]]
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// LLVM: define {{.*}} i32 @_Z4testv()
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// LLVM: %[[RETVAL:.*]] = alloca i32
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// LLVM: %[[TEMP_SLOT:.*]] = alloca i32
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// LLVM: %[[X:.*]] = alloca ptr
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// LLVM: %[[TEMP_VALUE:.*]] = call noundef i32 @_Z8make_intv()
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// LLVM: store i32 %[[TEMP_VALUE]], ptr %[[TEMP_SLOT]]
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// LLVM: store ptr %[[TEMP_SLOT]], ptr %[[X]]
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// OGCG: define {{.*}} i32 @_Z4testv()
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// OGCG: %[[X:.*]] = alloca ptr
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// OGCG: %[[TEMP_SLOT:.*]] = alloca i32
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// OGCG: %[[TEMP_VALUE:.*]] = call noundef i32 @_Z8make_intv()
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// OGCG: store i32 %[[TEMP_VALUE]], ptr %[[TEMP_SLOT]]
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// OGCG: store ptr %[[TEMP_SLOT]], ptr %[[X]]
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int test_scoped() {
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int x = make_int();
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{
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const int &y = make_int();
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x = y;
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}
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return x;
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}
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// CIR: cir.func {{.*}} @_Z11test_scopedv()
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// CIR: %[[X:.*]] = cir.alloca !s32i, !cir.ptr<!s32i>, ["x", init]
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// CIR: cir.scope {
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// CIR-NEXT: %[[TEMP_SLOT:.*]] = cir.alloca !s32i, !cir.ptr<!s32i>, ["ref.tmp0", init]
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// CIR-NEXT: %[[Y_ADDR:.*]] = cir.alloca !cir.ptr<!s32i>, !cir.ptr<!cir.ptr<!s32i>>, ["y", init, const]
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// CIR-NEXT: %[[TEMP_VALUE:.*]] = cir.call @_Z8make_intv() : () -> (!s32i {llvm.noundef})
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// CIR-NEXT: cir.store{{.*}} %[[TEMP_VALUE]], %[[TEMP_SLOT]] : !s32i, !cir.ptr<!s32i>
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// CIR-NEXT: cir.store{{.*}} %[[TEMP_SLOT]], %[[Y_ADDR]] : !cir.ptr<!s32i>, !cir.ptr<!cir.ptr<!s32i>>
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// CIR-NEXT: %[[Y_REF:.*]] = cir.load %[[Y_ADDR]] : !cir.ptr<!cir.ptr<!s32i>>, !cir.ptr<!s32i>
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// CIR-NEXT: %[[Y_VALUE:.*]] = cir.load{{.*}} %[[Y_REF]] : !cir.ptr<!s32i>, !s32i
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// CIR-NEXT: cir.store{{.*}} %[[Y_VALUE]], %[[X]] : !s32i, !cir.ptr<!s32i>
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// CIR-NEXT: }
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// LLVM: define {{.*}} i32 @_Z11test_scopedv()
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// LLVM: %[[TEMP_SLOT:.*]] = alloca i32
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// LLVM: %[[Y_ADDR:.*]] = alloca ptr
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// LLVM: %[[RETVAL:.*]] = alloca i32
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// LLVM: %[[X:.*]] = alloca i32
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// LLVM: %[[TEMP_VALUE1:.*]] = call noundef i32 @_Z8make_intv()
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// LLVM: store i32 %[[TEMP_VALUE1]], ptr %[[X]]
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// LLVM: br label %[[SCOPE_LABEL:.*]]
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// LLVM: [[SCOPE_LABEL]]:
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// LLVM: %[[TEMP_VALUE2:.*]] = call noundef i32 @_Z8make_intv()
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// LLVM: store i32 %[[TEMP_VALUE2]], ptr %[[TEMP_SLOT]]
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// LLVM: store ptr %[[TEMP_SLOT]], ptr %[[Y_ADDR]]
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// LLVM: %[[Y_REF:.*]] = load ptr, ptr %[[Y_ADDR]]
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// LLVM: %[[Y_VALUE:.*]] = load i32, ptr %[[Y_REF]]
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// LLVM: store i32 %[[Y_VALUE]], ptr %[[X]]
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// OGCG: define {{.*}} i32 @_Z11test_scopedv()
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// OGCG: %[[X:.*]] = alloca i32
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// OGCG: %[[Y_ADDR:.*]] = alloca ptr
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// OGCG: %[[TEMP_SLOT:.*]] = alloca i32
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// OGCG: %[[TEMP_VALUE1:.*]] = call noundef i32 @_Z8make_intv()
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// OGCG: store i32 %[[TEMP_VALUE1]], ptr %[[X]]
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// OGCG: %[[TEMP_VALUE2:.*]] = call noundef i32 @_Z8make_intv()
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// OGCG: store i32 %[[TEMP_VALUE2]], ptr %[[TEMP_SLOT]]
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// OGCG: store ptr %[[TEMP_SLOT]], ptr %[[Y_ADDR]]
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// OGCG: %[[Y_REF:.*]] = load ptr, ptr %[[Y_ADDR]]
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// OGCG: %[[Y_VALUE:.*]] = load i32, ptr %[[Y_REF]]
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// OGCG: store i32 %[[Y_VALUE]], ptr %[[X]]
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