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https://git.h3cjp.net/H3cJP/citra.git
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Kernel: make config_mem and MapSharedPages members of KernelSystem
This commit is contained in:
parent
95790218f2
commit
773ec47629
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@ -9,9 +9,7 @@
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namespace ConfigMem {
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namespace ConfigMem {
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ConfigMemDef config_mem;
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Handler::Handler() {
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void Init() {
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std::memset(&config_mem, 0, sizeof(config_mem));
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std::memset(&config_mem, 0, sizeof(config_mem));
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// Values extracted from firmware 11.2.0-35E
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// Values extracted from firmware 11.2.0-35E
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@ -28,4 +26,8 @@ void Init() {
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config_mem.firm_ctr_sdk_ver = 0x0000F297;
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config_mem.firm_ctr_sdk_ver = 0x0000F297;
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}
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}
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ConfigMemDef& Handler::GetConfigMem() {
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return config_mem;
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}
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} // namespace ConfigMem
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} // namespace ConfigMem
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@ -49,8 +49,13 @@ struct ConfigMemDef {
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static_assert(sizeof(ConfigMemDef) == Memory::CONFIG_MEMORY_SIZE,
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static_assert(sizeof(ConfigMemDef) == Memory::CONFIG_MEMORY_SIZE,
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"Config Memory structure size is wrong");
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"Config Memory structure size is wrong");
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extern ConfigMemDef config_mem;
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class Handler {
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public:
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Handler();
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ConfigMemDef& GetConfigMem();
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void Init();
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private:
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ConfigMemDef config_mem;
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};
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} // namespace ConfigMem
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} // namespace ConfigMem
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@ -16,9 +16,7 @@ namespace Kernel {
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/// Initialize the kernel
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/// Initialize the kernel
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KernelSystem::KernelSystem(u32 system_mode) {
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KernelSystem::KernelSystem(u32 system_mode) {
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ConfigMem::Init();
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MemoryInit(system_mode);
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Kernel::MemoryInit(system_mode);
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resource_limits = std::make_unique<ResourceLimitList>(*this);
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resource_limits = std::make_unique<ResourceLimitList>(*this);
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thread_manager = std::make_unique<ThreadManager>();
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thread_manager = std::make_unique<ThreadManager>();
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@ -12,6 +12,10 @@
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#include "common/common_types.h"
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#include "common/common_types.h"
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#include "core/hle/result.h"
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#include "core/hle/result.h"
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namespace ConfigMem {
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class Handler;
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}
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namespace Kernel {
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namespace Kernel {
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class AddressArbiter;
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class AddressArbiter;
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@ -30,6 +34,7 @@ class ResourceLimitList;
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class SharedMemory;
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class SharedMemory;
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class ThreadManager;
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class ThreadManager;
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class TimerManager;
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class TimerManager;
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class VMManager;
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enum class ResetType {
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enum class ResetType {
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OneShot,
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OneShot,
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@ -195,7 +200,11 @@ public:
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TimerManager& GetTimerManager();
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TimerManager& GetTimerManager();
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const TimerManager& GetTimerManager() const;
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const TimerManager& GetTimerManager() const;
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void MapSharedPages(VMManager& address_space);
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private:
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private:
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void MemoryInit(u32 mem_type);
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std::unique_ptr<ResourceLimitList> resource_limits;
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std::unique_ptr<ResourceLimitList> resource_limits;
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std::atomic<u32> next_object_id{0};
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std::atomic<u32> next_object_id{0};
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@ -210,6 +219,8 @@ private:
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std::unique_ptr<ThreadManager> thread_manager;
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std::unique_ptr<ThreadManager> thread_manager;
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std::unique_ptr<TimerManager> timer_manager;
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std::unique_ptr<TimerManager> timer_manager;
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std::unique_ptr<ConfigMem::Handler> config_mem_handler;
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};
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};
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} // namespace Kernel
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} // namespace Kernel
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@ -41,7 +41,7 @@ static const u32 memory_region_sizes[8][3] = {
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{0x0B200000, 0x02E00000, 0x02000000}, // 7
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{0x0B200000, 0x02E00000, 0x02000000}, // 7
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};
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};
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void MemoryInit(u32 mem_type) {
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void KernelSystem::MemoryInit(u32 mem_type) {
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// TODO(yuriks): On the n3DS, all o3DS configurations (<=5) are forced to 6 instead.
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// TODO(yuriks): On the n3DS, all o3DS configurations (<=5) are forced to 6 instead.
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ASSERT_MSG(mem_type <= 5, "New 3DS memory configuration aren't supported yet!");
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ASSERT_MSG(mem_type <= 5, "New 3DS memory configuration aren't supported yet!");
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ASSERT(mem_type != 1);
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ASSERT(mem_type != 1);
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@ -64,7 +64,8 @@ void MemoryInit(u32 mem_type) {
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// We must've allocated the entire FCRAM by the end
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// We must've allocated the entire FCRAM by the end
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ASSERT(base == Memory::FCRAM_SIZE);
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ASSERT(base == Memory::FCRAM_SIZE);
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using ConfigMem::config_mem;
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config_mem_handler = std::make_unique<ConfigMem::Handler>();
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auto& config_mem = config_mem_handler->GetConfigMem();
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config_mem.app_mem_type = mem_type;
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config_mem.app_mem_type = mem_type;
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// app_mem_malloc does not always match the configured size for memory_region[0]: in case the
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// app_mem_malloc does not always match the configured size for memory_region[0]: in case the
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// n3DS type override is in effect it reports the size the game expects, not the real one.
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// n3DS type override is in effect it reports the size the game expects, not the real one.
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@ -152,10 +153,11 @@ void HandleSpecialMapping(VMManager& address_space, const AddressMapping& mappin
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mapping.read_only ? VMAPermission::Read : VMAPermission::ReadWrite);
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mapping.read_only ? VMAPermission::Read : VMAPermission::ReadWrite);
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}
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}
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void MapSharedPages(VMManager& address_space) {
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void KernelSystem::MapSharedPages(VMManager& address_space) {
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auto cfg_mem_vma = address_space
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auto cfg_mem_vma =
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address_space
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.MapBackingMemory(Memory::CONFIG_MEMORY_VADDR,
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.MapBackingMemory(Memory::CONFIG_MEMORY_VADDR,
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reinterpret_cast<u8*>(&ConfigMem::config_mem),
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reinterpret_cast<u8*>(&config_mem_handler->GetConfigMem()),
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Memory::CONFIG_MEMORY_SIZE, MemoryState::Shared)
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Memory::CONFIG_MEMORY_SIZE, MemoryState::Shared)
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.Unwrap();
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.Unwrap();
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address_space.Reprotect(cfg_mem_vma, VMAPermission::Read);
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address_space.Reprotect(cfg_mem_vma, VMAPermission::Read);
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@ -20,12 +20,10 @@ struct MemoryRegionInfo {
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std::shared_ptr<std::vector<u8>> linear_heap_memory;
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std::shared_ptr<std::vector<u8>> linear_heap_memory;
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};
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};
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void MemoryInit(u32 mem_type);
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void MemoryShutdown();
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void MemoryShutdown();
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MemoryRegionInfo* GetMemoryRegion(MemoryRegion region);
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MemoryRegionInfo* GetMemoryRegion(MemoryRegion region);
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void HandleSpecialMapping(VMManager& address_space, const AddressMapping& mapping);
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void HandleSpecialMapping(VMManager& address_space, const AddressMapping& mapping);
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void MapSharedPages(VMManager& address_space);
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extern MemoryRegionInfo memory_regions[3];
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extern MemoryRegionInfo memory_regions[3];
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} // namespace Kernel
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} // namespace Kernel
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@ -143,7 +143,7 @@ void Process::Run(s32 main_thread_priority, u32 stack_size) {
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memory_region->used += stack_size;
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memory_region->used += stack_size;
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// Map special address mappings
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// Map special address mappings
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MapSharedPages(vm_manager);
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kernel.MapSharedPages(vm_manager);
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for (const auto& mapping : address_mappings) {
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for (const auto& mapping : address_mappings) {
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HandleSpecialMapping(vm_manager, mapping);
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HandleSpecialMapping(vm_manager, mapping);
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}
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}
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@ -25,7 +25,7 @@ TEST_CASE("Memory::IsValidVirtualAddress", "[core][memory]") {
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SECTION("CONFIG_MEMORY_VADDR and SHARED_PAGE_VADDR should be valid after mapping them") {
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SECTION("CONFIG_MEMORY_VADDR and SHARED_PAGE_VADDR should be valid after mapping them") {
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auto process = kernel.CreateProcess(kernel.CreateCodeSet("", 0));
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auto process = kernel.CreateProcess(kernel.CreateCodeSet("", 0));
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Kernel::MapSharedPages(process->vm_manager);
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kernel.MapSharedPages(process->vm_manager);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::CONFIG_MEMORY_VADDR) == true);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::CONFIG_MEMORY_VADDR) == true);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::SHARED_PAGE_VADDR) == true);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::SHARED_PAGE_VADDR) == true);
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}
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}
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@ -47,7 +47,7 @@ TEST_CASE("Memory::IsValidVirtualAddress", "[core][memory]") {
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SECTION("Unmapping a VAddr should make it invalid") {
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SECTION("Unmapping a VAddr should make it invalid") {
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auto process = kernel.CreateProcess(kernel.CreateCodeSet("", 0));
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auto process = kernel.CreateProcess(kernel.CreateCodeSet("", 0));
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Kernel::MapSharedPages(process->vm_manager);
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kernel.MapSharedPages(process->vm_manager);
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process->vm_manager.UnmapRange(Memory::CONFIG_MEMORY_VADDR, Memory::CONFIG_MEMORY_SIZE);
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process->vm_manager.UnmapRange(Memory::CONFIG_MEMORY_VADDR, Memory::CONFIG_MEMORY_SIZE);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::CONFIG_MEMORY_VADDR) == false);
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CHECK(Memory::IsValidVirtualAddress(*process, Memory::CONFIG_MEMORY_VADDR) == false);
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}
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}
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