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			182 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			182 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| /*
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|  * Copyright (c) Atmosphère-NX
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|  *
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|  * This program is free software; you can redistribute it and/or modify it
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|  * under the terms and conditions of the GNU General Public License,
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|  * version 2, as published by the Free Software Foundation.
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|  *
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|  * This program is distributed in the hope it will be useful, but WITHOUT
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|  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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|  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
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|  * more details.
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|  *
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|  * You should have received a copy of the GNU General Public License
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|  * along with this program.  If not, see <http://www.gnu.org/licenses/>.
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|  */
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| #include <mesosphere.hpp>
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| 
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| namespace ams::kern {
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| 
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|     namespace {
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| 
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|         KDynamicPageManager g_resource_manager_page_manager;
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| 
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|         template<typename T>
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|         ALWAYS_INLINE void PrintMemoryRegion(const char *prefix, const T &extents) {
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|             static_assert(std::is_same<decltype(extents.GetAddress()),     uintptr_t>::value);
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|             static_assert(std::is_same<decltype(extents.GetLastAddress()), uintptr_t>::value);
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|             if constexpr (std::is_same<uintptr_t, unsigned int>::value) {
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|                 MESOSPHERE_LOG("%-24s0x%08x - 0x%08x\n", prefix, extents.GetAddress(), extents.GetLastAddress());
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|             } else if constexpr (std::is_same<uintptr_t, unsigned long>::value) {
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|                 MESOSPHERE_LOG("%-24s0x%016lx - 0x%016lx\n", prefix, extents.GetAddress(), extents.GetLastAddress());
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|             } else if constexpr (std::is_same<uintptr_t, unsigned long long>::value) {
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|                 MESOSPHERE_LOG("%-24s0x%016llx - 0x%016llx\n", prefix, extents.GetAddress(), extents.GetLastAddress());
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|             } else {
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|                 static_assert(!std::is_same<T, T>::value, "Unknown uintptr_t width!");
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|             }
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|         }
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| 
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|     }
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| 
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|     void Kernel::InitializeCoreLocalRegion(s32 core_id) {
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|         /* The core local region no longer exists, so just clear the current thread. */
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|         AMS_UNUSED(core_id);
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|         SetCurrentThread(nullptr);
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|     }
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| 
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|     void Kernel::InitializeMainAndIdleThreads(s32 core_id) {
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|         /* This function wants to setup the main thread and the idle thread. */
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|         KThread *main_thread       = std::addressof(Kernel::GetMainThread(core_id));
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|         void    *main_thread_stack = GetVoidPointer(KMemoryLayout::GetMainStackTopAddress(core_id));
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|         KThread *idle_thread       = std::addressof(Kernel::GetIdleThread(core_id));
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|         void    *idle_thread_stack = GetVoidPointer(KMemoryLayout::GetIdleStackTopAddress(core_id));
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|         KAutoObject::Create<KThread>(main_thread);
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|         KAutoObject::Create<KThread>(idle_thread);
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|         main_thread->Initialize(nullptr, 0, main_thread_stack, 0, KThread::MainThreadPriority, core_id, nullptr, KThread::ThreadType_Main);
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|         idle_thread->Initialize(nullptr, 0, idle_thread_stack, 0, KThread::IdleThreadPriority, core_id, nullptr, KThread::ThreadType_Main);
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| 
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|         /* Set the current thread to be the main thread, and we have no processes running yet. */
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|         SetCurrentThread(main_thread);
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| 
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|         /* Initialize the interrupt manager, hardware timer, and scheduler */
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|         GetInterruptManager().Initialize(core_id);
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|         GetHardwareTimer().Initialize();
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|         GetScheduler().Initialize(idle_thread);
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|     }
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| 
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|     void Kernel::InitializeResourceManagers(KVirtualAddress address, size_t size) {
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|         /* Ensure that the buffer is suitable for our use. */
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|         MESOSPHERE_ABORT_UNLESS(util::IsAligned(GetInteger(address), PageSize));
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|         MESOSPHERE_ABORT_UNLESS(util::IsAligned(size, PageSize));
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| 
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|         /* Ensure that we have space for our reference counts. */
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|         const size_t rc_size = util::AlignUp(KPageTableSlabHeap::CalculateReferenceCountSize(size), PageSize);
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|         MESOSPHERE_ABORT_UNLESS(rc_size < size);
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|         size -= rc_size;
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| 
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|         /* Determine dynamic page managers. */
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|         KDynamicPageManager * const app_dynamic_page_manager = nullptr;
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|         KDynamicPageManager * const sys_dynamic_page_manager = KTargetSystem::IsDynamicResourceLimitsEnabled() ? std::addressof(g_resource_manager_page_manager) : nullptr;
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| 
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|         /* Initialize the resource managers' shared page manager. */
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|         g_resource_manager_page_manager.Initialize(address, size, std::max<size_t>(PageSize, KPageBufferSlabHeap::BufferSize));
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| 
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|         /* Initialize the KPageBuffer slab heap. */
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|         KPageBuffer::InitializeSlabHeap(g_resource_manager_page_manager);
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| 
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|         /* Initialize the block info heap. */
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|         s_block_info_heap.Initialize(std::addressof(g_resource_manager_page_manager), BlockInfoSlabHeapSize);
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| 
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|         /* Initialize the system slab managers. */
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|         s_sys_block_info_manager.Initialize(sys_dynamic_page_manager, std::addressof(s_block_info_heap));
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|         s_sys_memory_block_heap.Initialize(std::addressof(g_resource_manager_page_manager), SystemMemoryBlockSlabHeapSize);
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|         s_sys_memory_block_manager.Initialize(sys_dynamic_page_manager, std::addressof(s_sys_memory_block_heap));
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| 
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|         /* Initialize the application slab managers. */
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|         s_app_block_info_manager.Initialize(app_dynamic_page_manager, std::addressof(s_block_info_heap));
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|         s_app_memory_block_heap.Initialize(std::addressof(g_resource_manager_page_manager), ApplicationMemoryBlockSlabHeapSize);
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|         s_app_memory_block_manager.Initialize(app_dynamic_page_manager, std::addressof(s_app_memory_block_heap));
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| 
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|         /* Reserve all but a fixed number of remaining pages for the page table heap. */
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|         const size_t num_pt_pages = g_resource_manager_page_manager.GetCount() - g_resource_manager_page_manager.GetUsed() - ReservedDynamicPageCount;
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|         s_page_table_heap.Initialize(std::addressof(g_resource_manager_page_manager), num_pt_pages, GetPointer<KPageTableManager::RefCount>(address + size));
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| 
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|         /* Create and initialize the system system resource. */
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|         s_sys_page_table_manager.Initialize(sys_dynamic_page_manager, std::addressof(s_page_table_heap));
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|         KAutoObject::Create<KSystemResource>(std::addressof(s_sys_system_resource));
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|         s_sys_system_resource.SetManagers(s_sys_memory_block_manager, s_sys_block_info_manager, s_sys_page_table_manager);
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| 
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|         /* Create and initialize the application system resource. */
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|         s_app_page_table_manager.Initialize(app_dynamic_page_manager, std::addressof(s_page_table_heap));
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|         KAutoObject::Create<KSystemResource>(std::addressof(s_app_system_resource));
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|         s_app_system_resource.SetManagers(s_app_memory_block_manager, s_app_block_info_manager, s_app_page_table_manager);
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| 
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|         /* Check that we have the correct number of dynamic pages available. */
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|         MESOSPHERE_ABORT_UNLESS(g_resource_manager_page_manager.GetCount() - g_resource_manager_page_manager.GetUsed() == ReservedDynamicPageCount);
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|     }
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| 
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|     void Kernel::PrintLayout() {
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|         const auto target_fw = kern::GetTargetFirmware();
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| 
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|         /* Print out the kernel version. */
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|         MESOSPHERE_LOG("Horizon Kernel (Mesosphere)\n");
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|         MESOSPHERE_LOG("Built:                  %s %s\n", __DATE__, __TIME__);
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|         MESOSPHERE_LOG("Atmosphere version:     %d.%d.%d-%s\n", ATMOSPHERE_RELEASE_VERSION, ATMOSPHERE_GIT_REVISION);
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|         MESOSPHERE_LOG("Target Firmware:        %d.%d.%d\n", (target_fw >> 24) & 0xFF, (target_fw >> 16) & 0xFF, (target_fw >> 8) & 0xFF);
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|         MESOSPHERE_LOG("Supported OS version:   %d.%d.%d\n", ATMOSPHERE_SUPPORTED_HOS_VERSION_MAJOR, ATMOSPHERE_SUPPORTED_HOS_VERSION_MINOR, ATMOSPHERE_SUPPORTED_HOS_VERSION_MICRO);
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|         MESOSPHERE_LOG("\n");
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| 
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|         /* Print relative memory usage. */
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|         const auto [total, kernel] = KMemoryLayout::GetTotalAndKernelMemorySizes();
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|         MESOSPHERE_LOG("Kernel Memory Usage:    %zu/%zu MB\n", util::AlignUp(kernel, 1_MB) / 1_MB, util::AlignUp(total, 1_MB) / 1_MB);
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|         MESOSPHERE_LOG("\n");
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| 
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|         /* Print out important memory layout regions. */
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|         MESOSPHERE_LOG("Virtual Memory Layout\n");
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|         PrintMemoryRegion("    KernelRegion",       KMemoryLayout::GetKernelRegionExtents());
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|         PrintMemoryRegion("        Code",           KMemoryLayout::GetKernelCodeRegionExtents());
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|         PrintMemoryRegion("        Stack",          KMemoryLayout::GetKernelStackRegionExtents());
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|         PrintMemoryRegion("        Misc",           KMemoryLayout::GetKernelMiscRegionExtents());
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|         PrintMemoryRegion("        Slab",           KMemoryLayout::GetKernelSlabRegionExtents());
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|         PrintMemoryRegion("    LinearRegion",       KMemoryLayout::GetLinearRegionVirtualExtents());
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|         MESOSPHERE_LOG("\n");
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| 
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|         MESOSPHERE_LOG("Physical Memory Layout\n");
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|         PrintMemoryRegion("    LinearRegion",       KMemoryLayout::GetLinearRegionPhysicalExtents());
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|         PrintMemoryRegion("    CarveoutRegion",     KMemoryLayout::GetCarveoutRegionExtents());
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|         MESOSPHERE_LOG("\n");
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|         PrintMemoryRegion("    KernelRegion",       KMemoryLayout::GetKernelRegionPhysicalExtents());
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|         PrintMemoryRegion("        Code",           KMemoryLayout::GetKernelCodeRegionPhysicalExtents());
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|         PrintMemoryRegion("        Slab",           KMemoryLayout::GetKernelSlabRegionPhysicalExtents());
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|         if constexpr (KSystemControl::SecureAppletMemorySize > 0) {
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|             PrintMemoryRegion("        SecureApplet", KMemoryLayout::GetKernelSecureAppletMemoryRegionPhysicalExtents());
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|         }
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|         PrintMemoryRegion("        PageTableHeap",  KMemoryLayout::GetKernelPageTableHeapRegionPhysicalExtents());
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|         PrintMemoryRegion("        InitPageTable",  KMemoryLayout::GetKernelInitPageTableRegionPhysicalExtents());
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|         if constexpr (IsKTraceEnabled) {
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|             MESOSPHERE_LOG("    DebugRegion\n");
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|             PrintMemoryRegion("        Trace Buffer",   KMemoryLayout::GetKernelTraceBufferRegionPhysicalExtents());
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|         }
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|         PrintMemoryRegion("    MemoryPoolRegion",   KMemoryLayout::GetKernelPoolPartitionRegionPhysicalExtents());
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|         if (GetTargetFirmware() >= TargetFirmware_5_0_0) {
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|             PrintMemoryRegion("        Management",     KMemoryLayout::GetKernelPoolManagementRegionPhysicalExtents());
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|             PrintMemoryRegion("        System",         KMemoryLayout::GetKernelSystemPoolRegionPhysicalExtents());
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|             if (KMemoryLayout::HasKernelSystemNonSecurePoolRegion()) {
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|                 PrintMemoryRegion("        SystemUnsafe",   KMemoryLayout::GetKernelSystemNonSecurePoolRegionPhysicalExtents());
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|             }
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|             if (KMemoryLayout::HasKernelAppletPoolRegion()) {
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|                 PrintMemoryRegion("        Applet",         KMemoryLayout::GetKernelAppletPoolRegionPhysicalExtents());
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|             }
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|             if (KMemoryLayout::HasKernelApplicationPoolRegion()) {
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|                 PrintMemoryRegion("        Application",    KMemoryLayout::GetKernelApplicationPoolRegionPhysicalExtents());
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|             }
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|         } else {
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|             PrintMemoryRegion("        Management", KMemoryLayout::GetKernelPoolManagementRegionPhysicalExtents());
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|             PrintMemoryRegion("        Secure",     KMemoryLayout::GetKernelSystemPoolRegionPhysicalExtents());
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|             PrintMemoryRegion("        Unsafe",     KMemoryLayout::GetKernelApplicationPoolRegionPhysicalExtents());
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|         }
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|         MESOSPHERE_LOG("\n");
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|     }
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| 
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| }
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