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b055f536ea
This will be used to avoid problematic includes from WorkerPrivate.h, and it matches the behavior of RefPtr<> and WeakPtr<>. Differential Revision: https://phabricator.services.mozilla.com/D140658
128 lines
3.8 KiB
C++
128 lines
3.8 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=8 sts=2 et sw=2 tw=80: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "mozilla/RefPtr.h"
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#include "mozilla/ThreadSafeWeakPtr.h"
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using mozilla::SupportsThreadSafeWeakPtr;
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using mozilla::ThreadSafeWeakPtr;
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// To have a class C support weak pointers, inherit from
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// SupportsThreadSafeWeakPtr<C>.
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class C : public SupportsThreadSafeWeakPtr<C> {
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public:
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MOZ_DECLARE_REFCOUNTED_TYPENAME(C)
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int mNum;
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C() : mNum(0) {}
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~C() {
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// Setting mNum in the destructor allows us to test against use-after-free
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// below
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mNum = 0xDEAD;
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}
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void act() {}
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};
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// Test that declaring a ThreadSafeWeakPtr pointing to an incomplete type
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// builds.
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class Incomplete;
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class D {
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ThreadSafeWeakPtr<Incomplete> mMember;
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};
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int main() {
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RefPtr<C> c1 = new C;
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MOZ_RELEASE_ASSERT(c1->mNum == 0);
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// Get weak pointers to c1. The first time,
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// a reference-counted ThreadSafeWeakReference object is created that
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// can live beyond the lifetime of 'c1'. The ThreadSafeWeakReference
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// object will be notified of 'c1's destruction.
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ThreadSafeWeakPtr<C> w1(c1);
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{
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RefPtr<C> s1(w1);
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// Test a weak pointer for validity before using it.
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MOZ_RELEASE_ASSERT(s1);
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MOZ_RELEASE_ASSERT(s1 == c1);
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s1->mNum = 1;
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s1->act();
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}
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// Test taking another ThreadSafeWeakPtr<C> to c1
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ThreadSafeWeakPtr<C> w2(c1);
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{
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RefPtr<C> s2(w2);
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MOZ_RELEASE_ASSERT(s2);
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MOZ_RELEASE_ASSERT(s2 == c1);
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MOZ_RELEASE_ASSERT(w1 == s2);
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MOZ_RELEASE_ASSERT(s2->mNum == 1);
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}
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// Test that when a ThreadSafeWeakPtr is destroyed, it does not destroy the
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// object that it points to, and it does not affect other ThreadSafeWeakPtrs
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// pointing to the same object (e.g. it does not destroy the
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// ThreadSafeWeakReference object).
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{
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ThreadSafeWeakPtr<C> w4local(c1);
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MOZ_RELEASE_ASSERT(w4local == c1);
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}
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// Now w4local has gone out of scope. If that had destroyed c1, then the
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// following would fail for sure (see C::~C()).
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MOZ_RELEASE_ASSERT(c1->mNum == 1);
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// Check that w4local going out of scope hasn't affected other
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// ThreadSafeWeakPtr's pointing to c1
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MOZ_RELEASE_ASSERT(w1 == c1);
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MOZ_RELEASE_ASSERT(w2 == c1);
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// Now construct another C object and test changing what object a
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// ThreadSafeWeakPtr points to
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RefPtr<C> c2 = new C;
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c2->mNum = 2;
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{
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RefPtr<C> s2(w2);
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MOZ_RELEASE_ASSERT(s2->mNum == 1); // w2 was pointing to c1
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}
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w2 = c2;
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{
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RefPtr<C> s2(w2);
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MOZ_RELEASE_ASSERT(s2);
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MOZ_RELEASE_ASSERT(s2 == c2);
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MOZ_RELEASE_ASSERT(s2 != c1);
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MOZ_RELEASE_ASSERT(w1 != s2);
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MOZ_RELEASE_ASSERT(s2->mNum == 2);
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}
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// Destroying the underlying object clears weak pointers to it.
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// It should not affect pointers that are not currently pointing to it.
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c1 = nullptr;
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{
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RefPtr<C> s1(w1);
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MOZ_RELEASE_ASSERT(
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!s1, "Deleting an object should clear ThreadSafeWeakPtr's to it.");
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MOZ_RELEASE_ASSERT(w1.IsDead(), "The weak pointer is now dead");
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MOZ_RELEASE_ASSERT(!w1.IsNull(), "The weak pointer isn't null");
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RefPtr<C> s2(w2);
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MOZ_RELEASE_ASSERT(s2,
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"Deleting an object should not clear ThreadSafeWeakPtr "
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"that are not pointing to it.");
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MOZ_RELEASE_ASSERT(!w2.IsDead(), "The weak pointer isn't dead");
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MOZ_RELEASE_ASSERT(!w2.IsNull(), "The weak pointer isn't null");
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}
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c2 = nullptr;
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{
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RefPtr<C> s2(w2);
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MOZ_RELEASE_ASSERT(
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!s2, "Deleting an object should clear ThreadSafeWeakPtr's to it.");
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MOZ_RELEASE_ASSERT(w2.IsDead(), "The weak pointer is now dead");
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MOZ_RELEASE_ASSERT(!w2.IsNull(), "The weak pointer isn't null");
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}
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}
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