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-rw-r--r--src/core/hle/kernel/kernel.cpp41
-rw-r--r--src/core/hle/kernel/process.cpp24
2 files changed, 27 insertions, 38 deletions
diff --git a/src/core/hle/kernel/kernel.cpp b/src/core/hle/kernel/kernel.cpp
index 8fd990577..f7d3f218a 100644
--- a/src/core/hle/kernel/kernel.cpp
+++ b/src/core/hle/kernel/kernel.cpp
@@ -67,8 +67,13 @@ struct KernelCore::Impl {
67 is_phantom_mode_for_singlecore = false; 67 is_phantom_mode_for_singlecore = false;
68 68
69 InitializePhysicalCores(); 69 InitializePhysicalCores();
70 InitializeSystemResourceLimit(kernel, system); 70
71 InitializeMemoryLayout(); 71 // Derive the initial memory layout from the emulated board
72 KMemoryLayout memory_layout;
73 DeriveInitialMemoryLayout(memory_layout);
74 InitializeMemoryLayout(memory_layout);
75 InitializeSystemResourceLimit(kernel, system, memory_layout);
76 InitializeSlabHeaps();
72 InitializeSchedulers(); 77 InitializeSchedulers();
73 InitializeSuspendThreads(); 78 InitializeSuspendThreads();
74 InitializePreemption(kernel); 79 InitializePreemption(kernel);
@@ -137,27 +142,32 @@ struct KernelCore::Impl {
137 } 142 }
138 143
139 // Creates the default system resource limit 144 // Creates the default system resource limit
140 void InitializeSystemResourceLimit(KernelCore& kernel, Core::System& system) { 145 void InitializeSystemResourceLimit(KernelCore& kernel, Core::System& system,
146 const KMemoryLayout& memory_layout) {
141 system_resource_limit = std::make_shared<KResourceLimit>(kernel, system); 147 system_resource_limit = std::make_shared<KResourceLimit>(kernel, system);
148 const auto [total_size, kernel_size] = memory_layout.GetTotalAndKernelMemorySizes();
142 149
143 // If setting the default system values fails, then something seriously wrong has occurred. 150 // If setting the default system values fails, then something seriously wrong has occurred.
144 ASSERT(system_resource_limit->SetLimitValue(LimitableResource::PhysicalMemory, 0x100000000) 151 ASSERT(system_resource_limit->SetLimitValue(LimitableResource::PhysicalMemory, total_size)
145 .IsSuccess()); 152 .IsSuccess());
146 ASSERT(system_resource_limit->SetLimitValue(LimitableResource::Threads, 800).IsSuccess()); 153 ASSERT(system_resource_limit->SetLimitValue(LimitableResource::Threads, 800).IsSuccess());
147 ASSERT(system_resource_limit->SetLimitValue(LimitableResource::Events, 900).IsSuccess()); 154 ASSERT(system_resource_limit->SetLimitValue(LimitableResource::Events, 900).IsSuccess());
148 ASSERT(system_resource_limit->SetLimitValue(LimitableResource::TransferMemory, 200) 155 ASSERT(system_resource_limit->SetLimitValue(LimitableResource::TransferMemory, 200)
149 .IsSuccess()); 156 .IsSuccess());
150 ASSERT(system_resource_limit->SetLimitValue(LimitableResource::Sessions, 1133).IsSuccess()); 157 ASSERT(system_resource_limit->SetLimitValue(LimitableResource::Sessions, 1133).IsSuccess());
158 system_resource_limit->Reserve(LimitableResource::PhysicalMemory, kernel_size);
151 159
152 // Derived from recent software updates. The kernel reserves 27MB
153 constexpr u64 kernel_size{0x1b00000};
154 if (!system_resource_limit->Reserve(LimitableResource::PhysicalMemory, kernel_size)) {
155 UNREACHABLE();
156 }
157 // Reserve secure applet memory, introduced in firmware 5.0.0 160 // Reserve secure applet memory, introduced in firmware 5.0.0
158 constexpr u64 secure_applet_memory_size{0x400000}; 161 constexpr u64 secure_applet_memory_size{Common::Size_4_MB};
159 ASSERT(system_resource_limit->Reserve(LimitableResource::PhysicalMemory, 162 ASSERT(system_resource_limit->Reserve(LimitableResource::PhysicalMemory,
160 secure_applet_memory_size)); 163 secure_applet_memory_size));
164
165 // This memory seems to be reserved on hardware, but is not reserved/used by yuzu.
166 // Likely Horizon OS reserved memory
167 // TODO(ameerj): Derive the memory rather than hardcode it.
168 constexpr u64 unknown_reserved_memory{0x2f896000};
169 ASSERT(system_resource_limit->Reserve(LimitableResource::PhysicalMemory,
170 unknown_reserved_memory));
161 } 171 }
162 172
163 void InitializePreemption(KernelCore& kernel) { 173 void InitializePreemption(KernelCore& kernel) {
@@ -531,11 +541,7 @@ struct KernelCore::Impl {
531 linear_region_start); 541 linear_region_start);
532 } 542 }
533 543
534 void InitializeMemoryLayout() { 544 void InitializeMemoryLayout(const KMemoryLayout& memory_layout) {
535 // Derive the initial memory layout from the emulated board
536 KMemoryLayout memory_layout;
537 DeriveInitialMemoryLayout(memory_layout);
538
539 const auto system_pool = memory_layout.GetKernelSystemPoolRegionPhysicalExtents(); 545 const auto system_pool = memory_layout.GetKernelSystemPoolRegionPhysicalExtents();
540 const auto applet_pool = memory_layout.GetKernelAppletPoolRegionPhysicalExtents(); 546 const auto applet_pool = memory_layout.GetKernelAppletPoolRegionPhysicalExtents();
541 const auto application_pool = memory_layout.GetKernelApplicationPoolRegionPhysicalExtents(); 547 const auto application_pool = memory_layout.GetKernelApplicationPoolRegionPhysicalExtents();
@@ -578,11 +584,14 @@ struct KernelCore::Impl {
578 system.Kernel(), system.DeviceMemory(), nullptr, {time_phys_addr, time_size / PageSize}, 584 system.Kernel(), system.DeviceMemory(), nullptr, {time_phys_addr, time_size / PageSize},
579 KMemoryPermission::None, KMemoryPermission::Read, time_phys_addr, time_size, 585 KMemoryPermission::None, KMemoryPermission::Read, time_phys_addr, time_size,
580 "Time:SharedMemory"); 586 "Time:SharedMemory");
587 }
581 588
589 void InitializeSlabHeaps() {
582 // Allocate slab heaps 590 // Allocate slab heaps
583 user_slab_heap_pages = std::make_unique<KSlabHeap<Page>>(); 591 user_slab_heap_pages = std::make_unique<KSlabHeap<Page>>();
584 592
585 constexpr u64 user_slab_heap_size{0x1ef000}; 593 // TODO(ameerj): This should be derived, not hardcoded within the kernel
594 constexpr u64 user_slab_heap_size{0x3de000};
586 // Reserve slab heaps 595 // Reserve slab heaps
587 ASSERT( 596 ASSERT(
588 system_resource_limit->Reserve(LimitableResource::PhysicalMemory, user_slab_heap_size)); 597 system_resource_limit->Reserve(LimitableResource::PhysicalMemory, user_slab_heap_size));
diff --git a/src/core/hle/kernel/process.cpp b/src/core/hle/kernel/process.cpp
index 9d5956ead..dd01f3924 100644
--- a/src/core/hle/kernel/process.cpp
+++ b/src/core/hle/kernel/process.cpp
@@ -120,9 +120,7 @@ std::shared_ptr<Process> Process::Create(Core::System& system, std::string name,
120 std::shared_ptr<Process> process = std::make_shared<Process>(system); 120 std::shared_ptr<Process> process = std::make_shared<Process>(system);
121 process->name = std::move(name); 121 process->name = std::move(name);
122 122
123 // TODO: This is inaccurate 123 process->resource_limit = kernel.GetSystemResourceLimit();
124 // The process should hold a reference to the kernel-wide resource limit.
125 process->resource_limit = std::make_shared<KResourceLimit>(kernel, system);
126 process->status = ProcessStatus::Created; 124 process->status = ProcessStatus::Created;
127 process->program_id = 0; 125 process->program_id = 0;
128 process->process_id = type == ProcessType::KernelInternal ? kernel.CreateNewKernelProcessID() 126 process->process_id = type == ProcessType::KernelInternal ? kernel.CreateNewKernelProcessID()
@@ -160,17 +158,13 @@ void Process::DecrementThreadCount() {
160} 158}
161 159
162u64 Process::GetTotalPhysicalMemoryAvailable() const { 160u64 Process::GetTotalPhysicalMemoryAvailable() const {
163 // TODO: This is expected to always return the application memory pool size after accurately
164 // reserving kernel resources. The current workaround uses a process-local resource limit of
165 // application memory pool size, which is inaccurate.
166 const u64 capacity{resource_limit->GetFreeValue(LimitableResource::PhysicalMemory) + 161 const u64 capacity{resource_limit->GetFreeValue(LimitableResource::PhysicalMemory) +
167 page_table->GetTotalHeapSize() + GetSystemResourceSize() + image_size + 162 page_table->GetTotalHeapSize() + GetSystemResourceSize() + image_size +
168 main_thread_stack_size}; 163 main_thread_stack_size};
169 164 ASSERT(capacity == kernel.MemoryManager().GetSize(KMemoryManager::Pool::Application));
170 if (capacity < memory_usage_capacity) { 165 if (capacity < memory_usage_capacity) {
171 return capacity; 166 return capacity;
172 } 167 }
173
174 return memory_usage_capacity; 168 return memory_usage_capacity;
175} 169}
176 170
@@ -272,10 +266,6 @@ ResultCode Process::LoadFromMetadata(const FileSys::ProgramMetadata& metadata,
272 system_resource_size = metadata.GetSystemResourceSize(); 266 system_resource_size = metadata.GetSystemResourceSize();
273 image_size = code_size; 267 image_size = code_size;
274 268
275 // Set initial resource limits
276 resource_limit->SetLimitValue(
277 LimitableResource::PhysicalMemory,
278 kernel.MemoryManager().GetSize(KMemoryManager::Pool::Application));
279 KScopedResourceReservation memory_reservation(resource_limit, LimitableResource::PhysicalMemory, 269 KScopedResourceReservation memory_reservation(resource_limit, LimitableResource::PhysicalMemory,
280 code_size + system_resource_size); 270 code_size + system_resource_size);
281 if (!memory_reservation.Succeeded()) { 271 if (!memory_reservation.Succeeded()) {
@@ -324,16 +314,6 @@ ResultCode Process::LoadFromMetadata(const FileSys::ProgramMetadata& metadata,
324 UNREACHABLE(); 314 UNREACHABLE();
325 } 315 }
326 316
327 // Set initial resource limits
328 resource_limit->SetLimitValue(
329 LimitableResource::PhysicalMemory,
330 kernel.MemoryManager().GetSize(KMemoryManager::Pool::Application));
331
332 resource_limit->SetLimitValue(LimitableResource::Threads, 608);
333 resource_limit->SetLimitValue(LimitableResource::Events, 700);
334 resource_limit->SetLimitValue(LimitableResource::TransferMemory, 128);
335 resource_limit->SetLimitValue(LimitableResource::Sessions, 894);
336
337 // Create TLS region 317 // Create TLS region
338 tls_region_address = CreateTLSRegion(); 318 tls_region_address = CreateTLSRegion();
339 memory_reservation.Commit(); 319 memory_reservation.Commit();