mirror of https://git.suyu.dev/suyu/suyu
Core: Refactor ARM Interface.
This commit is contained in:
parent
534466754f
commit
1b82ccec22
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@ -7,6 +7,7 @@
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#include <array>
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#include <array>
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#include <vector>
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#include <vector>
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#include "common/common_types.h"
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#include "common/common_types.h"
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#include "core/hardware_properties.h"
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namespace Common {
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namespace Common {
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struct PageTable;
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struct PageTable;
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@ -20,11 +21,13 @@ namespace Core {
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class System;
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class System;
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class CPUInterruptHandler;
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class CPUInterruptHandler;
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using CPUInterrupts = std::array<CPUInterruptHandler, Core::Hardware::NUM_CPU_CORES>;
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/// Generic ARMv8 CPU interface
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/// Generic ARMv8 CPU interface
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class ARM_Interface : NonCopyable {
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class ARM_Interface : NonCopyable {
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public:
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public:
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explicit ARM_Interface(System& system_, CPUInterruptHandler& interrupt_handler)
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explicit ARM_Interface(System& system_, CPUInterrupts& interrupt_handlers)
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: system{system_}, interrupt_handler{interrupt_handler} {}
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: system{system_}, interrupt_handlers{interrupt_handlers} {}
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virtual ~ARM_Interface() = default;
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virtual ~ARM_Interface() = default;
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struct ThreadContext32 {
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struct ThreadContext32 {
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@ -180,7 +183,7 @@ public:
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protected:
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protected:
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/// System context that this ARM interface is running under.
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/// System context that this ARM interface is running under.
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System& system;
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System& system;
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CPUInterruptHandler& interrupt_handler;
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CPUInterrupts& interrupt_handlers;
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};
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};
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} // namespace Core
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} // namespace Core
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@ -76,7 +76,7 @@ public:
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}
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}
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u64 GetTicksRemaining() override {
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u64 GetTicksRemaining() override {
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if (!parent.interrupt_handler.IsInterrupted()) {
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if (!parent.interrupt_handlers[parent.core_index].IsInterrupted()) {
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return std::max<s64>(ticks, 0);
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return std::max<s64>(ticks, 0);
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}
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}
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return 0ULL;
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return 0ULL;
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@ -111,9 +111,9 @@ void ARM_Dynarmic_32::Step() {
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jit->Step();
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jit->Step();
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}
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}
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ARM_Dynarmic_32::ARM_Dynarmic_32(System& system, CPUInterruptHandler& interrupt_handler,
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ARM_Dynarmic_32::ARM_Dynarmic_32(System& system, CPUInterrupts& interrupt_handlers,
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ExclusiveMonitor& exclusive_monitor, std::size_t core_index)
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ExclusiveMonitor& exclusive_monitor, std::size_t core_index)
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: ARM_Interface{system, interrupt_handler}, cb(std::make_unique<DynarmicCallbacks32>(*this)),
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: ARM_Interface{system, interrupt_handlers}, cb(std::make_unique<DynarmicCallbacks32>(*this)),
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cp15(std::make_shared<DynarmicCP15>(*this)), core_index{core_index},
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cp15(std::make_shared<DynarmicCP15>(*this)), core_index{core_index},
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exclusive_monitor{dynamic_cast<DynarmicExclusiveMonitor&>(exclusive_monitor)} {}
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exclusive_monitor{dynamic_cast<DynarmicExclusiveMonitor&>(exclusive_monitor)} {}
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@ -29,7 +29,7 @@ class System;
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class ARM_Dynarmic_32 final : public ARM_Interface {
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class ARM_Dynarmic_32 final : public ARM_Interface {
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public:
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public:
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ARM_Dynarmic_32(System& system, CPUInterruptHandler& interrupt_handler,
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ARM_Dynarmic_32(System& system, CPUInterrupts& interrupt_handlers,
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ExclusiveMonitor& exclusive_monitor, std::size_t core_index);
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ExclusiveMonitor& exclusive_monitor, std::size_t core_index);
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~ARM_Dynarmic_32() override;
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~ARM_Dynarmic_32() override;
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@ -128,7 +128,7 @@ public:
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}
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}
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u64 GetTicksRemaining() override {
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u64 GetTicksRemaining() override {
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if (!parent.interrupt_handler.IsInterrupted()) {
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if (!parent.interrupt_handlers[parent.core_index].IsInterrupted()) {
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return std::max<s64>(ticks, 0);
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return std::max<s64>(ticks, 0);
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}
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}
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return 0ULL;
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return 0ULL;
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@ -199,11 +199,14 @@ void ARM_Dynarmic_64::Step() {
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cb->InterpreterFallback(jit->GetPC(), 1);
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cb->InterpreterFallback(jit->GetPC(), 1);
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}
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}
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ARM_Dynarmic_64::ARM_Dynarmic_64(System& system, CPUInterruptHandler& interrupt_handler,
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ARM_Dynarmic_64::ARM_Dynarmic_64(System& system, CPUInterrupts& interrupt_handlers,
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ExclusiveMonitor& exclusive_monitor, std::size_t core_index)
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ExclusiveMonitor& exclusive_monitor, std::size_t core_index)
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: ARM_Interface{system, interrupt_handler}, cb(std::make_unique<DynarmicCallbacks64>(*this)),
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: ARM_Interface{system, interrupt_handler},
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inner_unicorn{system, interrupt_handler, ARM_Unicorn::Arch::AArch64}, core_index{core_index},
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cb(std::make_unique<DynarmicCallbacks64>(*this)), inner_unicorn{system, interrupt_handler,
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exclusive_monitor{dynamic_cast<DynarmicExclusiveMonitor&>(exclusive_monitor)} {}
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ARM_Unicorn::Arch::AArch64,
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core_index},
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core_index{core_index}, exclusive_monitor{
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dynamic_cast<DynarmicExclusiveMonitor&>(exclusive_monitor)} {}
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ARM_Dynarmic_64::~ARM_Dynarmic_64() = default;
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ARM_Dynarmic_64::~ARM_Dynarmic_64() = default;
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@ -28,7 +28,7 @@ class System;
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class ARM_Dynarmic_64 final : public ARM_Interface {
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class ARM_Dynarmic_64 final : public ARM_Interface {
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public:
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public:
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ARM_Dynarmic_64(System& system, CPUInterruptHandler& interrupt_handler,
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ARM_Dynarmic_64(System& system, CPUInterrupts& interrupt_handlers,
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ExclusiveMonitor& exclusive_monitor, std::size_t core_index);
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ExclusiveMonitor& exclusive_monitor, std::size_t core_index);
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~ARM_Dynarmic_64() override;
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~ARM_Dynarmic_64() override;
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@ -63,8 +63,9 @@ static bool UnmappedMemoryHook(uc_engine* uc, uc_mem_type type, u64 addr, int si
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return false;
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return false;
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}
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}
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ARM_Unicorn::ARM_Unicorn(System& system, CPUInterruptHandler& interrupt_handler, Arch architecture)
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ARM_Unicorn::ARM_Unicorn(System& system, CPUInterruptHandler& interrupt_handler, Arch architecture,
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: ARM_Interface{system, interrupt_handler} {
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std::size_t core_index)
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: ARM_Interface{system, interrupt_handler}, core_index{core_index} {
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const auto arch = architecture == Arch::AArch32 ? UC_ARCH_ARM : UC_ARCH_ARM64;
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const auto arch = architecture == Arch::AArch32 ? UC_ARCH_ARM : UC_ARCH_ARM64;
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CHECKED(uc_open(arch, UC_MODE_ARM, &uc));
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CHECKED(uc_open(arch, UC_MODE_ARM, &uc));
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@ -163,7 +164,7 @@ void ARM_Unicorn::Run() {
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ExecuteInstructions(std::max(4000000U, 0U));
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ExecuteInstructions(std::max(4000000U, 0U));
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} else {
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} else {
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while (true) {
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while (true) {
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if (interrupt_handler.IsInterrupted()) {
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if (interrupt_handlers[core_index].IsInterrupted()) {
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return;
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return;
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}
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}
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ExecuteInstructions(10);
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ExecuteInstructions(10);
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@ -11,7 +11,6 @@
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namespace Core {
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namespace Core {
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class CPUInterruptHandler;
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class System;
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class System;
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class ARM_Unicorn final : public ARM_Interface {
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class ARM_Unicorn final : public ARM_Interface {
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@ -21,7 +20,8 @@ public:
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AArch64, // 64-bit ARM
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AArch64, // 64-bit ARM
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};
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};
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explicit ARM_Unicorn(System& system, CPUInterruptHandler& interrupt_handler, Arch architecture);
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explicit ARM_Unicorn(System& system, CPUInterruptHandler& interrupt_handler, Arch architecture,
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std::size_t core_index);
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~ARM_Unicorn() override;
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~ARM_Unicorn() override;
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void SetPC(u64 pc) override;
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void SetPC(u64 pc) override;
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@ -56,6 +56,7 @@ private:
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uc_engine* uc{};
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uc_engine* uc{};
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GDBStub::BreakpointAddress last_bkpt{};
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GDBStub::BreakpointAddress last_bkpt{};
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bool last_bkpt_hit = false;
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bool last_bkpt_hit = false;
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std::size_t core_index;
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};
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};
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} // namespace Core
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} // namespace Core
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@ -2,6 +2,7 @@
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// Licensed under GPLv2 or any later version
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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// Refer to the license.txt file included.
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#include <array>
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#include <atomic>
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#include <atomic>
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#include <bitset>
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#include <bitset>
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#include <functional>
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#include <functional>
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#include "common/microprofile.h"
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#include "common/microprofile.h"
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#include "common/thread.h"
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#include "common/thread.h"
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#include "core/arm/arm_interface.h"
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#include "core/arm/arm_interface.h"
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#include "core/arm/cpu_interrupt_handler.h"
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#include "core/arm/exclusive_monitor.h"
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#include "core/arm/exclusive_monitor.h"
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#include "core/arm/unicorn/arm_unicorn.h"
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#include "core/core.h"
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#include "core/core.h"
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#include "core/core_timing.h"
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#include "core/core_timing.h"
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#include "core/core_timing_util.h"
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#include "core/core_timing_util.h"
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#include "core/hle/result.h"
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#include "core/hle/result.h"
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#include "core/memory.h"
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#include "core/memory.h"
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#ifdef ARCHITECTURE_x86_64
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#include "core/arm/dynarmic/arm_dynarmic_32.h"
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#include "core/arm/dynarmic/arm_dynarmic_64.h"
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#endif
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MICROPROFILE_DEFINE(Kernel_SVC, "Kernel", "SVC", MP_RGB(70, 200, 70));
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MICROPROFILE_DEFINE(Kernel_SVC, "Kernel", "SVC", MP_RGB(70, 200, 70));
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namespace Kernel {
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namespace Kernel {
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exclusive_monitor =
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exclusive_monitor =
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Core::MakeExclusiveMonitor(system.Memory(), Core::Hardware::NUM_CPU_CORES);
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Core::MakeExclusiveMonitor(system.Memory(), Core::Hardware::NUM_CPU_CORES);
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for (std::size_t i = 0; i < Core::Hardware::NUM_CPU_CORES; i++) {
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for (std::size_t i = 0; i < Core::Hardware::NUM_CPU_CORES; i++) {
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cores.emplace_back(system, i, *exclusive_monitor);
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#ifdef ARCHITECTURE_x86_64
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arm_interfaces_32[i] =
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std::make_unique<Core::ARM_Dynarmic_32>(system, interrupts, *exclusive_monitor, i);
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arm_interfaces_64[i] =
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std::make_unique<Core::ARM_Dynarmic_64>(system, interrupts, *exclusive_monitor, i);
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#else
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arm_interfaces_32[i] = std::make_shared<Core::ARM_Unicorn>(
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system, interrupts, ARM_Unicorn::Arch::AArch32, i);
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arm_interfaces_64[i] = std::make_shared<Core::ARM_Unicorn>(
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system, interrupts, ARM_Unicorn::Arch::AArch64, i);
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LOG_WARNING(Core, "CPU JIT requested, but Dynarmic not available");
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#endif
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cores.emplace_back(system, i, *exclusive_monitor, interrupts[i], *arm_interfaces_32[i],
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*arm_interfaces_64[i]);
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}
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}
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}
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}
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@ -407,6 +428,11 @@ struct KernelCore::Impl {
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std::shared_ptr<Kernel::SharedMemory> time_shared_mem;
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std::shared_ptr<Kernel::SharedMemory> time_shared_mem;
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std::array<std::shared_ptr<Thread>, Core::Hardware::NUM_CPU_CORES> suspend_threads{};
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std::array<std::shared_ptr<Thread>, Core::Hardware::NUM_CPU_CORES> suspend_threads{};
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std::array<Core::CPUInterruptHandler, Core::Hardware::NUM_CPU_CORES> interrupts{};
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std::array<std::unique_ptr<Core::ARM_Interface>, Core::Hardware::NUM_CPU_CORES>
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arm_interfaces_32{};
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std::array<std::unique_ptr<Core::ARM_Interface>, Core::Hardware::NUM_CPU_CORES>
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arm_interfaces_64{};
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bool is_multicore{};
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bool is_multicore{};
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std::thread::id single_core_thread_id{};
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std::thread::id single_core_thread_id{};
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namespace Kernel {
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namespace Kernel {
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PhysicalCore::PhysicalCore(Core::System& system, std::size_t id,
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PhysicalCore::PhysicalCore(Core::System& system, std::size_t id,
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Core::ExclusiveMonitor& exclusive_monitor)
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Core::ExclusiveMonitor& exclusive_monitor,
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: interrupt_handler{}, core_index{id} {
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Core::CPUInterruptHandler& interrupt_handler,
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#ifdef ARCHITECTURE_x86_64
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Core::ARM_Interface& arm_interface32,
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arm_interface_32 = std::make_unique<Core::ARM_Dynarmic_32>(system, interrupt_handler,
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Core::ARM_Interface& arm_interface64)
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exclusive_monitor, core_index);
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: interrupt_handler{interrupt_handler}, core_index{id}, arm_interface_32{arm_interface32},
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arm_interface_64 = std::make_unique<Core::ARM_Dynarmic_64>(system, interrupt_handler,
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arm_interface_64{arm_interface64} {
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exclusive_monitor, core_index);
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#else
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using Core::ARM_Unicorn;
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arm_interface_32 =
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std::make_unique<ARM_Unicorn>(system, interrupt_handler, ARM_Unicorn::Arch::AArch32);
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arm_interface_64 =
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std::make_unique<ARM_Unicorn>(system, interrupt_handler, ARM_Unicorn::Arch::AArch64);
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LOG_WARNING(Core, "CPU JIT requested, but Dynarmic not available");
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#endif
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scheduler = std::make_unique<Kernel::Scheduler>(system, core_index);
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scheduler = std::make_unique<Kernel::Scheduler>(system, core_index);
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guard = std::make_unique<Common::SpinLock>();
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guard = std::make_unique<Common::SpinLock>();
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@ -69,9 +60,9 @@ void PhysicalCore::Shutdown() {
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void PhysicalCore::SetIs64Bit(bool is_64_bit) {
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void PhysicalCore::SetIs64Bit(bool is_64_bit) {
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if (is_64_bit) {
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if (is_64_bit) {
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arm_interface = arm_interface_64.get();
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arm_interface = &arm_interface_64;
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} else {
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} else {
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arm_interface = arm_interface_32.get();
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arm_interface = &arm_interface_32;
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}
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}
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}
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}
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#include "core/arm/cpu_interrupt_handler.h"
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#include "core/arm/cpu_interrupt_handler.h"
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namespace Common {
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namespace Common {
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class SpinLock;
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class SpinLock;
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}
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}
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namespace Kernel {
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namespace Kernel {
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class PhysicalCore {
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class PhysicalCore {
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public:
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public:
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PhysicalCore(Core::System& system, std::size_t id, Core::ExclusiveMonitor& exclusive_monitor);
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PhysicalCore(Core::System& system, std::size_t id, Core::ExclusiveMonitor& exclusive_monitor,
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Core::CPUInterruptHandler& interrupt_handler, Core::ARM_Interface& arm_interface32,
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Core::ARM_Interface& arm_interface64);
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~PhysicalCore();
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~PhysicalCore();
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PhysicalCore(const PhysicalCore&) = delete;
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PhysicalCore(const PhysicalCore&) = delete;
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void SetIs64Bit(bool is_64_bit);
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void SetIs64Bit(bool is_64_bit);
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private:
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private:
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Core::CPUInterruptHandler interrupt_handler;
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Core::CPUInterruptHandler& interrupt_handler;
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std::size_t core_index;
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std::size_t core_index;
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std::unique_ptr<Core::ARM_Interface> arm_interface_32;
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Core::ARM_Interface& arm_interface_32;
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std::unique_ptr<Core::ARM_Interface> arm_interface_64;
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Core::ARM_Interface& arm_interface_64;
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std::unique_ptr<Kernel::Scheduler> scheduler;
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std::unique_ptr<Kernel::Scheduler> scheduler;
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Core::ARM_Interface* arm_interface{};
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Core::ARM_Interface* arm_interface{};
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std::unique_ptr<Common::SpinLock> guard;
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std::unique_ptr<Common::SpinLock> guard;
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};
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};
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} // namespace Kernel
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} // namespace Kernel
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