================
@@ -0,0 +1,78 @@
+// RUN: %clang_cc1 -std=c++2c -verify %s
+
+
+namespace std {
+ using size_t = decltype(sizeof(0));
+}
+
+void *operator new(std::size_t, void *p) { return p; }
+void* operator new[] (std::size_t, void* p) {return p;}
+
+
+consteval int ok() {
+ int i;
+ new (&i) int(0);
+ new (&i) int[1]{1};
+ new (static_cast<void*>(&i)) int(0);
+ return 0;
+}
+
+consteval int conversion() { // expected-error {{consteval function never
produces a constant expression}}
+ int i;
+ new (static_cast<void*>(&i)) float(0);
+ // expected-note@-1 {{placement new would change type of storage from
'int' to 'float'}}
+ return 0;
+}
+
+consteval int indeterminate() {
+ int * indeterminate;
+ new (indeterminate) int(0);
+ // expected-note@-1 {{read of uninitialized object is not allowed in a
constant expression}}
+ return 0;
+}
+
+consteval int array1() {
+ int i[2];
+ new (&i) int[]{1,2};
+ new (&i) int[]{1};
+ new (&i) int(0);
+ new (static_cast<void*>(&i)) int[]{1,2};
+ new (static_cast<void*>(&i)) int[]{1};
+ return 0;
+}
+
+consteval int array2() { // expected-error {{consteval function never produces
a constant expression}}
+ int i[1];
+ new (&i) int[2];
+ //expected-note@-1 {{placement new would change type of storage from
'int[1]' to 'int[2]'}}
+ return 0;
+}
+
+struct S{
+ int* i;
+ constexpr S() : i(new int(42)) {} // expected-note {{allocation performed
here was not deallocated}}
+ constexpr ~S() {delete i;}
+};
+
+consteval void alloc() {
+ S* s = new S();
+ s->~S();
+ new (s) S();
+ delete s;
+}
+
+
+consteval void alloc_err() {
+ S* s = new S();
+ new (s) S();
+ delete s;
+}
+
----------------
AaronBallman wrote:
Can you also add a test for pointer interconvertible types? Basically, coverage
for:
> the placement argument to the new-expression points to an object that is
> pointer-interconvertible with an object of type T or, if T is an array type,
> with the first element of an object of type T, and
https://github.com/llvm/llvm-project/pull/104586
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