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			378 lines
		
	
	
		
			20 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			378 lines
		
	
	
		
			20 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| /*
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|  * Copyright (c) 2018-2020 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 <stratosphere.hpp>
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| #include "pm_resource_manager.hpp"
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| 
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| namespace ams::pm::resource {
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| 
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|     namespace {
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| 
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|         constexpr svc::LimitableResource LimitableResources[] = {
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|             svc::LimitableResource_PhysicalMemoryMax,
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|             svc::LimitableResource_ThreadCountMax,
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|             svc::LimitableResource_EventCountMax,
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|             svc::LimitableResource_TransferMemoryCountMax,
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|             svc::LimitableResource_SessionCountMax,
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|         };
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| 
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|         /* Definitions for limit differences over time. */
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|         constexpr size_t ExtraSystemThreadCount400   = 100;
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|         constexpr size_t ExtraSystemMemorySize400    = 10_MB;
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|         constexpr size_t ExtraSystemMemorySize500    = 12_MB;
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|         constexpr size_t ExtraSystemEventCount600    = 100;
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|         constexpr size_t ExtraSystemSessionCount600  = 100;
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|         constexpr size_t ReservedMemorySize600       = 5_MB;
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|         constexpr size_t ExtraSystemSessionCount920  = 33;
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| 
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|         /* Atmosphere always allocates extra memory for system usage. */
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|         constexpr size_t ExtraSystemMemorySizeAtmosphere    = 24_MB;
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|         constexpr size_t ExtraSystemMemorySizeAtmosphere500 = 33_MB; /* Applet pool is 0x20100000 */
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| 
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|         /* Globals. */
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|         os::Mutex g_resource_limit_lock(false);
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|         Handle g_resource_limit_handles[ResourceLimitGroup_Count];
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|         spl::MemoryArrangement g_memory_arrangement = spl::MemoryArrangement_Standard;
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|         u64 g_system_memory_boost_size = 0;
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|         u64 g_extra_application_threads_available = 0;
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| 
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|         u64 g_resource_limits[ResourceLimitGroup_Count][svc::LimitableResource_Count] = {
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|             [ResourceLimitGroup_System] = {
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|                 [svc::LimitableResource_PhysicalMemoryMax]      = 0,   /* Initialized by more complicated logic later. */
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|                 [svc::LimitableResource_ThreadCountMax]         = 508,
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|                 [svc::LimitableResource_EventCountMax]          = 600,
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|                 [svc::LimitableResource_TransferMemoryCountMax] = 128,
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|                 [svc::LimitableResource_SessionCountMax]        = 794,
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|             },
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|             [ResourceLimitGroup_Application] = {
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|                 [svc::LimitableResource_PhysicalMemoryMax]      = 0,   /* Initialized by more complicated logic later. */
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|                 [svc::LimitableResource_ThreadCountMax]         = 96,
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|                 [svc::LimitableResource_EventCountMax]          = 0,
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|                 [svc::LimitableResource_TransferMemoryCountMax] = 32,
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|                 [svc::LimitableResource_SessionCountMax]        = 1,
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|             },
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|             [ResourceLimitGroup_Applet] = {
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|                 [svc::LimitableResource_PhysicalMemoryMax]      = 0,   /* Initialized by more complicated logic later. */
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|                 [svc::LimitableResource_ThreadCountMax]         = 96,
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|                 [svc::LimitableResource_EventCountMax]          = 0,
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|                 [svc::LimitableResource_TransferMemoryCountMax] = 32,
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|                 [svc::LimitableResource_SessionCountMax]        = 5,
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|             },
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|         };
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| 
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|         u64 g_memory_resource_limits[spl::MemoryArrangement_Count][ResourceLimitGroup_Count] = {
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|             [spl::MemoryArrangement_Standard] = {
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|                 [ResourceLimitGroup_System]      =  269_MB,
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|                 [ResourceLimitGroup_Application] = 3285_MB,
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|                 [ResourceLimitGroup_Applet]      =  535_MB,
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|             },
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|             [spl::MemoryArrangement_StandardForAppletDev] = {
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|                 [ResourceLimitGroup_System]      =  481_MB,
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|                 [ResourceLimitGroup_Application] = 2048_MB,
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|                 [ResourceLimitGroup_Applet]      = 1560_MB,
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|             },
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|             [spl::MemoryArrangement_StandardForSystemDev] = {
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|                 [ResourceLimitGroup_System]      =  328_MB,
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|                 [ResourceLimitGroup_Application] = 3285_MB,
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|                 [ResourceLimitGroup_Applet]      =  476_MB,
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|             },
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|             [spl::MemoryArrangement_Expanded] = {
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|                 [ResourceLimitGroup_System]      =  653_MB,
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|                 [ResourceLimitGroup_Application] = 4916_MB,
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|                 [ResourceLimitGroup_Applet]      =  568_MB,
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|             },
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|             [spl::MemoryArrangement_ExpandedForAppletDev] = {
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|                 [ResourceLimitGroup_System]      =  653_MB,
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|                 [ResourceLimitGroup_Application] = 3285_MB,
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|                 [ResourceLimitGroup_Applet]      = 2199_MB,
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|             },
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|         };
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| 
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|         /* Helpers. */
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|         Result SetMemoryResourceLimitLimitValue(ResourceLimitGroup group, u64 new_memory_limit) {
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|             const u64 old_memory_limit = g_resource_limits[group][svc::LimitableResource_PhysicalMemoryMax];
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|             g_resource_limits[group][svc::LimitableResource_PhysicalMemoryMax] = new_memory_limit;
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| 
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|             {
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|                 /* If we fail, restore the old memory limit. */
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|                 auto limit_guard = SCOPE_GUARD { g_resource_limits[group][svc::LimitableResource_PhysicalMemoryMax] = old_memory_limit; };
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|                 R_TRY(svc::SetResourceLimitLimitValue(GetResourceLimitHandle(group), svc::LimitableResource_PhysicalMemoryMax, g_resource_limits[group][svc::LimitableResource_PhysicalMemoryMax]));
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|                 limit_guard.Cancel();
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|             }
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| 
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|             return ResultSuccess();
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|         }
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| 
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|         Result SetResourceLimitLimitValues(ResourceLimitGroup group, u64 new_memory_limit) {
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|             /* First, set memory limit. */
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|             R_TRY(SetMemoryResourceLimitLimitValue(group, new_memory_limit));
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| 
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|             /* Set other limit values. */
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|             for (size_t i = 0; i < svc::LimitableResource_Count; i++) {
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|                 const auto resource = LimitableResources[i];
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|                 if (resource == svc::LimitableResource_PhysicalMemoryMax) {
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|                     continue;
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|                 }
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|                 R_TRY(svc::SetResourceLimitLimitValue(GetResourceLimitHandle(group), resource, g_resource_limits[group][resource]));
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|             }
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|             return ResultSuccess();
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|         }
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| 
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|         inline ResourceLimitGroup GetResourceLimitGroup(const ldr::ProgramInfo *info) {
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|             switch (info->flags & ldr::ProgramInfoFlag_ApplicationTypeMask) {
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|                 case ldr::ProgramInfoFlag_Application:
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|                     return ResourceLimitGroup_Application;
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|                 case ldr::ProgramInfoFlag_Applet:
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|                     return ResourceLimitGroup_Applet;
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|                 default:
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|                     return ResourceLimitGroup_System;
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|             }
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|         }
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| 
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|         void WaitResourceAvailable(ResourceLimitGroup group) {
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|             const Handle reslimit_hnd = GetResourceLimitHandle(group);
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|             for (size_t i = 0; i < svc::LimitableResource_Count; i++) {
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|                 const auto resource = LimitableResources[i];
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| 
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|                 s64 value = 0;
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|                 while (true) {
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|                     R_ABORT_UNLESS(svc::GetResourceLimitCurrentValue(&value, reslimit_hnd, resource));
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|                     if (value == 0) {
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|                         break;
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|                     }
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|                     svc::SleepThread(1'000'000ul);
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|                 }
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|             }
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|         }
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| 
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|         void WaitApplicationMemoryAvailable() {
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|             u64 value = 0;
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|             while (true) {
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|                 R_ABORT_UNLESS(svc::GetSystemInfo(&value, svc::SystemInfoType_UsedPhysicalMemorySize, INVALID_HANDLE, svc::PhysicalMemorySystemInfo_Application));
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|                 if (value == 0) {
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|                     break;
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|                 }
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|                 svc::SleepThread(1'000'000ul);
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|             }
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|         }
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| 
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|         bool IsKTraceEnabled() {
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|             if (!svc::IsKernelMesosphere()) {
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|                 return false;
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|             }
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| 
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|             u64 value = 0;
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|             R_ABORT_UNLESS(svc::GetInfo(std::addressof(value), svc::InfoType_MesosphereMeta, INVALID_HANDLE, svc::MesosphereMetaInfo_IsKTraceEnabled));
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| 
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|             return value != 0;
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|         }
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| 
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|     }
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| 
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|     /* Resource API. */
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|     Result InitializeResourceManager() {
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|         /* Create resource limit handles. */
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|         for (size_t i = 0; i < ResourceLimitGroup_Count; i++) {
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|             if (i == ResourceLimitGroup_System) {
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|                 u64 value = 0;
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|                 R_ABORT_UNLESS(svc::GetInfo(&value, svc::InfoType_ResourceLimit, svc::InvalidHandle, 0));
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|                 g_resource_limit_handles[i] = static_cast<svc::Handle>(value);
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|             } else {
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|                 R_ABORT_UNLESS(svc::CreateResourceLimit(&g_resource_limit_handles[i]));
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|             }
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|         }
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| 
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|         /* Adjust resource limits based on hos firmware version. */
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|         const auto hos_version = hos::GetVersion();
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|         if (hos_version >= hos::Version_4_0_0) {
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|             /* 4.0.0 increased the system thread limit. */
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|             g_resource_limits[ResourceLimitGroup_System][svc::LimitableResource_ThreadCountMax] += ExtraSystemThreadCount400;
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|             /* 4.0.0 also took memory away from applet and gave it to system, for the Standard and StandardForSystemDev profiles. */
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|             g_memory_resource_limits[spl::MemoryArrangement_Standard][ResourceLimitGroup_System] += ExtraSystemMemorySize400;
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|             g_memory_resource_limits[spl::MemoryArrangement_Standard][ResourceLimitGroup_Applet] -= ExtraSystemMemorySize400;
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|             g_memory_resource_limits[spl::MemoryArrangement_StandardForSystemDev][ResourceLimitGroup_System] += ExtraSystemMemorySize400;
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|             g_memory_resource_limits[spl::MemoryArrangement_StandardForSystemDev][ResourceLimitGroup_Applet] -= ExtraSystemMemorySize400;
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|         }
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|         if (hos_version >= hos::Version_5_0_0) {
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|             /* 5.0.0 took more memory away from applet and gave it to system, for the Standard and StandardForSystemDev profiles. */
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|             g_memory_resource_limits[spl::MemoryArrangement_Standard][ResourceLimitGroup_System] += ExtraSystemMemorySize500;
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|             g_memory_resource_limits[spl::MemoryArrangement_Standard][ResourceLimitGroup_Applet] -= ExtraSystemMemorySize500;
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|             g_memory_resource_limits[spl::MemoryArrangement_StandardForSystemDev][ResourceLimitGroup_System] += ExtraSystemMemorySize500;
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|             g_memory_resource_limits[spl::MemoryArrangement_StandardForSystemDev][ResourceLimitGroup_Applet] -= ExtraSystemMemorySize500;
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|         }
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|         if (hos_version >= hos::Version_6_0_0) {
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|             /* 6.0.0 increased the system event and session limits. */
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|             g_resource_limits[ResourceLimitGroup_System][svc::LimitableResource_EventCountMax]   += ExtraSystemEventCount600;
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|             g_resource_limits[ResourceLimitGroup_System][svc::LimitableResource_SessionCountMax] += ExtraSystemSessionCount600;
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|         }
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|         if (hos_version >= hos::Version_9_2_0) {
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|             /* 9.2.0 increased the system session limit. */
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|             g_resource_limits[ResourceLimitGroup_System][svc::LimitableResource_SessionCountMax] += ExtraSystemSessionCount920;
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|         }
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| 
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|         /* 7.0.0+: Calculate the number of extra application threads available. */
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|         if (hos::GetVersion() >= hos::Version_7_0_0) {
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|             /* See how many threads we have available. */
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|             s64 total_threads_available = 0;
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|             R_ABORT_UNLESS(svc::GetResourceLimitLimitValue(&total_threads_available, GetResourceLimitHandle(ResourceLimitGroup_System), svc::LimitableResource_ThreadCountMax));
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| 
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|             /* See how many threads we're expecting. */
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|             const s64 total_threads_allocated = g_resource_limits[ResourceLimitGroup_System][svc::LimitableResource_ThreadCountMax] +
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|                                                        g_resource_limits[ResourceLimitGroup_Application][svc::LimitableResource_ThreadCountMax] +
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|                                                        g_resource_limits[ResourceLimitGroup_Applet][svc::LimitableResource_ThreadCountMax];
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| 
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|             /* Ensure we don't over-commit threads. */
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|             AMS_ABORT_UNLESS(total_threads_allocated <= total_threads_available);
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| 
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|             /* Set number of extra threads. */
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|             g_extra_application_threads_available = total_threads_available - total_threads_allocated;
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|         }
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| 
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|         /* Choose and initialize memory arrangement. */
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|         const bool use_dynamic_memory_arrangement = (hos_version >= hos::Version_6_0_0) || (svc::IsKernelMesosphere() && hos_version >= hos::Version_5_0_0);
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|         if (use_dynamic_memory_arrangement) {
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|             /* 6.0.0 retrieves memory limit information from the kernel, rather than using a hardcoded profile. */
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|             g_memory_arrangement = spl::MemoryArrangement_Dynamic;
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| 
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|             /* Get total memory available. */
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|             s64 total_memory = 0;
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|             R_ABORT_UNLESS(svc::GetResourceLimitLimitValue(&total_memory, GetResourceLimitHandle(ResourceLimitGroup_System), svc::LimitableResource_PhysicalMemoryMax));
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| 
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|             /* Get and save application + applet memory. */
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|             R_ABORT_UNLESS(svc::GetSystemInfo(&g_memory_resource_limits[spl::MemoryArrangement_Dynamic][ResourceLimitGroup_Application], svc::SystemInfoType_TotalPhysicalMemorySize, svc::InvalidHandle, svc::PhysicalMemorySystemInfo_Application));
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|             R_ABORT_UNLESS(svc::GetSystemInfo(&g_memory_resource_limits[spl::MemoryArrangement_Dynamic][ResourceLimitGroup_Applet],      svc::SystemInfoType_TotalPhysicalMemorySize, svc::InvalidHandle, svc::PhysicalMemorySystemInfo_Applet));
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| 
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|             const s64 application_size         = g_memory_resource_limits[spl::MemoryArrangement_Dynamic][ResourceLimitGroup_Application];
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|             const s64 applet_size              = g_memory_resource_limits[spl::MemoryArrangement_Dynamic][ResourceLimitGroup_Applet];
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|             const s64 reserved_non_system_size = (application_size + applet_size + ReservedMemorySize600);
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| 
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|             /* Ensure there's enough memory for the system region. */
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|             AMS_ABORT_UNLESS(reserved_non_system_size < total_memory);
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| 
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|             g_memory_resource_limits[spl::MemoryArrangement_Dynamic][ResourceLimitGroup_System] = total_memory - reserved_non_system_size;
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|         } else {
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|             /* Older system versions retrieve memory arrangement from spl, and use hardcoded profiles. */
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|             g_memory_arrangement = spl::GetMemoryArrangement();
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| 
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|             /* Adjust memory limits for atmosphere. */
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|             /* We take memory away from applet normally, but away from application on < 3.0.0 to avoid a rare hang on boot. */
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|             /* NOTE: On Version 5.0.0+, we cannot set the pools so simply. We must instead modify the kernel, which we do */
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|             /* via patches in fusee-secondary. */
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|             const size_t extra_memory_size = hos_version == hos::Version_5_0_0 ? ExtraSystemMemorySizeAtmosphere500 : ExtraSystemMemorySizeAtmosphere;
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|             const auto src_group = hos_version >= hos::Version_3_0_0 ? ResourceLimitGroup_Applet : ResourceLimitGroup_Application;
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|             for (size_t i = 0; i < spl::MemoryArrangement_Count; i++) {
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|                 g_memory_resource_limits[i][ResourceLimitGroup_System] += extra_memory_size;
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|                 g_memory_resource_limits[i][src_group] -= extra_memory_size;
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|             }
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| 
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|             /* If KTrace is enabled, account for that by subtracting the memory from the applet pool. */
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|             if (IsKTraceEnabled()) {
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|                 constexpr size_t KTraceBufferSize = 16_MB;
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|                 for (size_t i = 0; i < spl::MemoryArrangement_Count; i++) {
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|                     g_memory_resource_limits[i][ResourceLimitGroup_Applet] -= KTraceBufferSize;
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|                 }
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|             }
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|         }
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| 
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|         /* Actually set resource limits. */
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|         {
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|             std::scoped_lock lk(g_resource_limit_lock);
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| 
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|             for (size_t group = 0; group < ResourceLimitGroup_Count; group++) {
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|                 R_ABORT_UNLESS(SetResourceLimitLimitValues(static_cast<ResourceLimitGroup>(group), g_memory_resource_limits[g_memory_arrangement][group]));
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|             }
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|         }
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| 
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|         return ResultSuccess();
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|     }
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| 
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|     Result BoostSystemMemoryResourceLimit(u64 boost_size) {
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|         /* Don't allow all application memory to be taken away. */
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|         R_UNLESS(boost_size <= g_memory_resource_limits[g_memory_arrangement][ResourceLimitGroup_Application], pm::ResultInvalidSize());
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| 
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|         const u64 new_app_size = g_memory_resource_limits[g_memory_arrangement][ResourceLimitGroup_Application] - boost_size;
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|         {
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|             std::scoped_lock lk(g_resource_limit_lock);
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| 
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|             if (hos::GetVersion() >= hos::Version_5_0_0) {
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|                 /* Starting in 5.0.0, PM does not allow for only one of the sets to fail. */
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|                 if (boost_size < g_system_memory_boost_size) {
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|                     R_TRY(svc::SetUnsafeLimit(boost_size));
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|                     R_ABORT_UNLESS(SetMemoryResourceLimitLimitValue(ResourceLimitGroup_Application, new_app_size));
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|                 } else {
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|                     R_TRY(SetMemoryResourceLimitLimitValue(ResourceLimitGroup_Application, new_app_size));
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|                     R_ABORT_UNLESS(svc::SetUnsafeLimit(boost_size));
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|                 }
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|             } else {
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|                 const u64 new_sys_size = g_memory_resource_limits[g_memory_arrangement][ResourceLimitGroup_System] + boost_size;
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|                 if (boost_size < g_system_memory_boost_size) {
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|                     R_TRY(SetMemoryResourceLimitLimitValue(ResourceLimitGroup_System,      new_sys_size));
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|                     R_TRY(SetMemoryResourceLimitLimitValue(ResourceLimitGroup_Application, new_app_size));
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|                 } else {
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|                     R_TRY(SetMemoryResourceLimitLimitValue(ResourceLimitGroup_Application, new_app_size));
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|                     R_TRY(SetMemoryResourceLimitLimitValue(ResourceLimitGroup_System,      new_sys_size));
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|                 }
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|             }
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| 
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|             g_system_memory_boost_size = boost_size;
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|         }
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| 
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|         return ResultSuccess();
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|     }
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| 
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|     Result BoostApplicationThreadResourceLimit() {
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|         std::scoped_lock lk(g_resource_limit_lock);
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|         /* Set new limit. */
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|         const s64 new_thread_count = g_resource_limits[ResourceLimitGroup_Application][svc::LimitableResource_ThreadCountMax] + g_extra_application_threads_available;
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|         R_TRY(svc::SetResourceLimitLimitValue(GetResourceLimitHandle(ResourceLimitGroup_Application), svc::LimitableResource_ThreadCountMax, new_thread_count));
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| 
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|         /* Record that we did so. */
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|         g_resource_limits[ResourceLimitGroup_Application][svc::LimitableResource_ThreadCountMax] = new_thread_count;
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|         g_extra_application_threads_available = 0;
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| 
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|         return ResultSuccess();
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|     }
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| 
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|     Handle GetResourceLimitHandle(ResourceLimitGroup group) {
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|         return g_resource_limit_handles[group];
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|     }
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| 
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|     Handle GetResourceLimitHandle(const ldr::ProgramInfo *info) {
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|         return GetResourceLimitHandle(GetResourceLimitGroup(info));
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|     }
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| 
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|     void WaitResourceAvailable(const ldr::ProgramInfo *info) {
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|         if (GetResourceLimitGroup(info) == ResourceLimitGroup_Application) {
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|             WaitResourceAvailable(ResourceLimitGroup_Application);
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|             if (hos::GetVersion() >= hos::Version_5_0_0) {
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|                 WaitApplicationMemoryAvailable();
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|             }
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|         }
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|     }
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| 
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|     Result GetResourceLimitValues(s64 *out_cur, s64 *out_lim, ResourceLimitGroup group, svc::LimitableResource resource) {
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|         /* Do not allow out of bounds access. */
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|         AMS_ABORT_UNLESS(group < ResourceLimitGroup_Count);
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|         AMS_ABORT_UNLESS(resource < svc::LimitableResource_Count);
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| 
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|         const Handle reslimit_hnd = GetResourceLimitHandle(group);
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|         R_TRY(svc::GetResourceLimitCurrentValue(out_cur, reslimit_hnd, resource));
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|         R_TRY(svc::GetResourceLimitLimitValue(out_lim, reslimit_hnd, resource));
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| 
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|         return ResultSuccess();
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|     }
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| 
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| }
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