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carbon-lang/explorer/testdata/destructor/virtual_destructor_nested.carbon
T
Adrien Leravat df289efac4 Explorer: Add virtual destructor support (#2695)
### Features

* Add virtual `destructor`s support (Closes #2521)
* Check virtual override for virtual destructors
* Error if attempting to `Delete` a class that does not have virtual destructors from a base class pointer 

### Implementation

* Update parser to support virtual override introducers for destructors
* Check virtual override for class destructor and add to class vtable if necessary
* Add corresponding tests

### Notes

Contrary to initial implementation, this implementation leverages the `Address` structure and implements a new `Address::DowncastedAddress()` method to get address from child most class from a base class address. This avoids the need to use `GetAllocationId` and its issues when it comes to having multiple values for an `AllocationId`.

### Next work

Following this PR, we need to:

* Check when using `Delete` that the class was allocated with `New` (WIP)
* Drop the old `GetAllocationId(Value*)` in favor of a better system (WIP)
2023-03-22 09:58:30 -07:00

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// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
// Exceptions. See /LICENSE for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
//
// AUTOUPDATE
// RUN: %{explorer-run}
// RUN: %{explorer-run-trace}
// CHECK:STDOUT: Allocate D
// CHECK:STDOUT: DESTRUCTOR B
// CHECK:STDOUT: DESTRUCTOR A
// CHECK:STDOUT: DESTRUCTOR D
// CHECK:STDOUT: DESTRUCTOR C
// CHECK:STDOUT: Delete B from A*
// CHECK:STDOUT: DESTRUCTOR B
// CHECK:STDOUT: DESTRUCTOR A
// CHECK:STDOUT: Delete D from C*
// CHECK:STDOUT: DESTRUCTOR D
// CHECK:STDOUT: DESTRUCTOR C
// CHECK:STDOUT: result: 0
package ExplorerTest api;
base class A {
virtual destructor[self: Self] {
Print("DESTRUCTOR A");
}
}
class B extends A {
fn Create() -> Self{
return {.base={}};
}
impl destructor[self: Self] {
Print("DESTRUCTOR B");
}
}
base class C {
virtual destructor[self: Self] {
Print("DESTRUCTOR C");
}
}
class D extends C {
fn Create() -> Self{
return {.base={}, .d_pa=heap.New(B.Create())};
}
impl destructor[self: Self] {
Print("DESTRUCTOR D");
}
var d_pa: A*;
}
fn Main() -> i32 {
Print("Allocate D");
var pd: D* = heap.New(D.Create());
var pc: C* = pd;
Print("Delete B from A*");
heap.Delete(pd->d_pa);
Print("Delete D from C*");
heap.Delete(pc);
return 0;
}