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kern: implement KThread::Finalize
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parent
3265927ed7
commit
3cf793f87e
4 changed files with 117 additions and 2 deletions
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@ -216,6 +216,7 @@ namespace ams::kern {
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size_t GetTotalNonSystemUserPhysicalMemorySize() const;
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size_t GetTotalNonSystemUserPhysicalMemorySize() const;
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Result CreateThreadLocalRegion(KProcessAddress *out);
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Result CreateThreadLocalRegion(KProcessAddress *out);
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Result DeleteThreadLocalRegion(KProcessAddress addr);
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void *GetThreadLocalRegionPointer(KProcessAddress addr);
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void *GetThreadLocalRegionPointer(KProcessAddress addr);
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constexpr KProcessAddress GetProcessLocalRegionAddress() const { return this->plr_address; }
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constexpr KProcessAddress GetProcessLocalRegionAddress() const { return this->plr_address; }
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@ -1358,7 +1358,31 @@ namespace ams::kern {
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}
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}
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Result KPageTableBase::UnmapPages(KProcessAddress address, size_t num_pages, KMemoryState state) {
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Result KPageTableBase::UnmapPages(KProcessAddress address, size_t num_pages, KMemoryState state) {
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MESOSPHERE_UNIMPLEMENTED();
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/* Check that the unmap is in range. */
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const size_t size = num_pages * PageSize;
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R_UNLESS(this->Contains(address, size), svc::ResultInvalidCurrentMemory());
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/* Lock the table. */
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KScopedLightLock lk(this->general_lock);
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/* Check the memory state. */
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R_TRY(this->CheckMemoryState(address, size, KMemoryState_All, state, KMemoryPermission_None, KMemoryPermission_None, KMemoryAttribute_All, KMemoryAttribute_None));
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/* Create an update allocator. */
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KMemoryBlockManagerUpdateAllocator allocator(this->memory_block_slab_manager);
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R_TRY(allocator.GetResult());
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/* We're going to perform an update, so create a helper. */
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KScopedPageTableUpdater updater(this);
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/* Perform the unmap. */
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const KPageProperties unmap_properties = { KMemoryPermission_None, false, false, false };
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R_TRY(this->Operate(updater.GetPageList(), address, num_pages, Null<KPhysicalAddress>, false, unmap_properties, OperationType_Unmap, false));
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/* Update the blocks. */
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this->memory_block_manager.Update(&allocator, address, num_pages, KMemoryState_Free, KMemoryPermission_None, KMemoryAttribute_None);
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return ResultSuccess();
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}
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}
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Result KPageTableBase::MapPageGroup(KProcessAddress *out_addr, const KPageGroup &pg, KProcessAddress region_start, size_t region_num_pages, KMemoryState state, KMemoryPermission perm) {
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Result KPageTableBase::MapPageGroup(KProcessAddress *out_addr, const KPageGroup &pg, KProcessAddress region_start, size_t region_num_pages, KMemoryState state, KMemoryPermission perm) {
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@ -212,6 +212,54 @@ namespace ams::kern {
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return ResultSuccess();
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return ResultSuccess();
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}
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}
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Result KProcess::DeleteThreadLocalRegion(KProcessAddress addr) {
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KThreadLocalPage *page_to_free = nullptr;
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/* Release the region. */
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{
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KScopedSchedulerLock sl;
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/* Try to find the page in the partially used list. */
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auto it = this->partially_used_tlp_tree.find(KThreadLocalPage(util::AlignDown(GetInteger(addr), PageSize)));
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if (it == this->partially_used_tlp_tree.end()) {
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/* If we don't find it, it has to be in the fully used list. */
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it = this->fully_used_tlp_tree.find(KThreadLocalPage(util::AlignDown(GetInteger(addr), PageSize)));
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R_UNLESS(it != this->fully_used_tlp_tree.end(), svc::ResultInvalidAddress());
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/* Release the region. */
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it->Release(addr);
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/* Move the page out of the fully used list. */
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KThreadLocalPage *tlp = std::addressof(*it);
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this->fully_used_tlp_tree.erase(it);
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if (tlp->IsAllFree()) {
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page_to_free = tlp;
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} else {
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this->partially_used_tlp_tree.insert(*tlp);
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}
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} else {
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/* Release the region. */
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it->Release(addr);
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/* Handle the all-free case. */
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KThreadLocalPage *tlp = std::addressof(*it);
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if (tlp->IsAllFree()) {
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this->partially_used_tlp_tree.erase(it);
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page_to_free = tlp;
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}
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}
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}
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/* If we should free the page it was in, do so. */
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if (page_to_free != nullptr) {
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page_to_free->Finalize();
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KThreadLocalPage::Free(page_to_free);
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}
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return ResultSuccess();
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}
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void *KProcess::GetThreadLocalRegionPointer(KProcessAddress addr) {
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void *KProcess::GetThreadLocalRegionPointer(KProcessAddress addr) {
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KThreadLocalPage *tlp = nullptr;
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KThreadLocalPage *tlp = nullptr;
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{
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{
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@ -251,7 +251,49 @@ namespace ams::kern {
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}
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}
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void KThread::Finalize() {
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void KThread::Finalize() {
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MESOSPHERE_UNIMPLEMENTED();
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MESOSPHERE_ASSERT_THIS();
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/* If the thread has an owner process, unregister it. */
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if (this->parent != nullptr) {
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this->parent->UnregisterThread(this);
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}
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/* If the thread has a local region, delete it. */
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if (this->tls_address != Null<KProcessAddress>) {
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MESOSPHERE_R_ABORT_UNLESS(this->parent->DeleteThreadLocalRegion(this->tls_address));
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}
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/* Release any waiters. */
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{
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MESOSPHERE_ASSERT(this->lock_owner == nullptr);
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KScopedSchedulerLock sl;
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auto it = this->waiter_list.begin();
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while (it != this->waiter_list.end()) {
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/* The thread shouldn't be a kernel waiter. */
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MESOSPHERE_ASSERT(!IsKernelAddressKey(it->GetAddressKey()));
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it->SetLockOwner(nullptr);
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it->SetSyncedObject(nullptr, svc::ResultInvalidState());
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it->Wakeup();
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it = this->waiter_list.erase(it);
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}
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}
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/* Finalize the thread context. */
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this->thread_context.Finalize();
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/* Cleanup the kernel stack. */
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if (this->kernel_stack_top != nullptr) {
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CleanupKernelStack(reinterpret_cast<uintptr_t>(this->kernel_stack_top));
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}
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/* Decrement the parent process's thread count. */
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if (this->parent != nullptr) {
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this->parent->DecrementThreadCount();
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}
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/* Perform inherited finalization. */
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KAutoObjectWithSlabHeapAndContainer<KThread, KSynchronizationObject>::Finalize();
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}
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}
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bool KThread::IsSignaled() const {
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bool KThread::IsSignaled() const {
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