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kernel/vm_manager: Remove usages of global system accessors
Makes the dependency on the system instance explicit within VMManager's interface.
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parent
9186f76b07
commit
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@ -248,7 +248,8 @@ void Process::LoadModule(CodeSet module_, VAddr base_addr) {
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}
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Process::Process(Core::System& system)
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: WaitObject{system.Kernel()}, address_arbiter{system}, mutex{system}, system{system} {}
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: WaitObject{system.Kernel()}, vm_manager{system},
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address_arbiter{system}, mutex{system}, system{system} {}
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Process::~Process() = default;
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@ -62,7 +62,7 @@ bool VirtualMemoryArea::CanBeMergedWith(const VirtualMemoryArea& next) const {
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return true;
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}
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VMManager::VMManager() {
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VMManager::VMManager(Core::System& system) : system{system} {
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// Default to assuming a 39-bit address space. This way we have a sane
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// starting point with executables that don't provide metadata.
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Reset(FileSys::ProgramAddressSpaceType::Is39Bit);
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@ -111,7 +111,6 @@ ResultVal<VMManager::VMAHandle> VMManager::MapMemoryBlock(VAddr target,
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VirtualMemoryArea& final_vma = vma_handle->second;
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ASSERT(final_vma.size == size);
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auto& system = Core::System::GetInstance();
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system.ArmInterface(0).MapBackingMemory(target, size, block->data() + offset,
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VMAPermission::ReadWriteExecute);
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system.ArmInterface(1).MapBackingMemory(target, size, block->data() + offset,
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@ -140,7 +139,6 @@ ResultVal<VMManager::VMAHandle> VMManager::MapBackingMemory(VAddr target, u8* me
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VirtualMemoryArea& final_vma = vma_handle->second;
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ASSERT(final_vma.size == size);
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auto& system = Core::System::GetInstance();
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system.ArmInterface(0).MapBackingMemory(target, size, memory, VMAPermission::ReadWriteExecute);
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system.ArmInterface(1).MapBackingMemory(target, size, memory, VMAPermission::ReadWriteExecute);
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system.ArmInterface(2).MapBackingMemory(target, size, memory, VMAPermission::ReadWriteExecute);
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@ -223,7 +221,6 @@ ResultCode VMManager::UnmapRange(VAddr target, u64 size) {
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ASSERT(FindVMA(target)->second.size >= size);
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auto& system = Core::System::GetInstance();
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system.ArmInterface(0).UnmapMemory(target, size);
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system.ArmInterface(1).UnmapMemory(target, size);
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system.ArmInterface(2).UnmapMemory(target, size);
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@ -376,7 +373,7 @@ ResultCode VMManager::UnmapCodeMemory(VAddr dst_address, VAddr src_address, u64
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Reprotect(src_vma_iter, VMAPermission::ReadWrite);
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if (dst_memory_state == MemoryState::ModuleCode) {
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Core::System::GetInstance().InvalidateCpuInstructionCaches();
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system.InvalidateCpuInstructionCaches();
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}
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return unmap_result;
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@ -14,6 +14,10 @@
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#include "core/hle/result.h"
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#include "core/memory.h"
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namespace Core {
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class System;
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}
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namespace FileSys {
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enum class ProgramAddressSpaceType : u8;
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}
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@ -321,7 +325,7 @@ class VMManager final {
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public:
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using VMAHandle = VMAMap::const_iterator;
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VMManager();
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explicit VMManager(Core::System& system);
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~VMManager();
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/// Clears the address space map, re-initializing with a single free area.
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@ -712,5 +716,7 @@ private:
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// The end of the currently allocated heap. This is not an inclusive
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// end of the range. This is essentially 'base_address + current_size'.
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VAddr heap_end = 0;
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Core::System& system;
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};
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} // namespace Kernel
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