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https://github.com/pineappleEA/pineapple-src.git
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early-access version 2527
This commit is contained in:
parent
68d478c863
commit
6aa91a516c
@ -1,7 +1,7 @@
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yuzu emulator early access
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yuzu emulator early access
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=============
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=============
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This is the source code for early-access 2526.
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This is the source code for early-access 2527.
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## Legal Notice
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## Legal Notice
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@ -327,8 +327,8 @@ private:
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bool IsNiechePlaceholder(size_t virtual_offset, size_t length) const {
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bool IsNiechePlaceholder(size_t virtual_offset, size_t length) const {
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const auto it = placeholders.upper_bound({virtual_offset, virtual_offset + length});
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const auto it = placeholders.upper_bound({virtual_offset, virtual_offset + length});
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if (it != placeholders.end() && it->lower() == virtual_offset + length) {
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if (it != placeholders.end() && it->lower() == virtual_offset + length) {
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const bool is_root = it == placeholders.begin() && virtual_offset == 0;
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return it == placeholders.begin() ? virtual_offset == 0
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return is_root || std::prev(it)->upper() == virtual_offset;
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: std::prev(it)->upper() == virtual_offset;
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}
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}
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return false;
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return false;
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}
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}
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@ -218,19 +218,17 @@ private:
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Impl(const std::filesystem::path& file_backend_filename, const Filter& filter_)
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Impl(const std::filesystem::path& file_backend_filename, const Filter& filter_)
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: filter{filter_}, file_backend{file_backend_filename} {}
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: filter{filter_}, file_backend{file_backend_filename} {}
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~Impl() {
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~Impl() = default;
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StopBackendThread();
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}
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void StartBackendThread() {
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void StartBackendThread() {
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backend_thread = std::thread([this] {
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backend_thread = std::jthread([this](std::stop_token stop_token) {
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Common::SetCurrentThreadName("yuzu:Log");
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Common::SetCurrentThreadName("yuzu:Log");
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Entry entry;
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Entry entry;
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const auto write_logs = [this, &entry]() {
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const auto write_logs = [this, &entry]() {
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ForEachBackend([&entry](Backend& backend) { backend.Write(entry); });
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ForEachBackend([&entry](Backend& backend) { backend.Write(entry); });
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};
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};
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while (!stop.stop_requested()) {
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while (!stop_token.stop_requested()) {
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entry = message_queue.PopWait(stop.get_token());
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entry = message_queue.PopWait(stop_token);
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if (entry.filename != nullptr) {
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if (entry.filename != nullptr) {
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write_logs();
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write_logs();
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}
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}
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@ -244,11 +242,6 @@ private:
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});
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});
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}
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}
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void StopBackendThread() {
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stop.request_stop();
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backend_thread.join();
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}
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Entry CreateEntry(Class log_class, Level log_level, const char* filename, unsigned int line_nr,
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Entry CreateEntry(Class log_class, Level log_level, const char* filename, unsigned int line_nr,
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const char* function, std::string&& message) const {
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const char* function, std::string&& message) const {
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using std::chrono::duration_cast;
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using std::chrono::duration_cast;
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@ -283,8 +276,7 @@ private:
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ColorConsoleBackend color_console_backend{};
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ColorConsoleBackend color_console_backend{};
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FileBackend file_backend;
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FileBackend file_backend;
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std::stop_source stop;
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std::jthread backend_thread;
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std::thread backend_thread;
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MPSCQueue<Entry, true> message_queue{};
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MPSCQueue<Entry, true> message_queue{};
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std::chrono::steady_clock::time_point time_origin{std::chrono::steady_clock::now()};
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std::chrono::steady_clock::time_point time_origin{std::chrono::steady_clock::now()};
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};
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};
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@ -285,40 +285,65 @@ ResultCode KPageTable::MapProcessCode(VAddr addr, std::size_t num_pages, KMemory
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return ResultSuccess;
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return ResultSuccess;
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}
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}
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ResultCode KPageTable::MapCodeMemory(VAddr dst_addr, VAddr src_addr, std::size_t size) {
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ResultCode KPageTable::MapCodeMemory(VAddr dst_address, VAddr src_address, std::size_t size) {
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// Validate the mapping request.
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R_UNLESS(this->CanContain(dst_address, size, KMemoryState::AliasCode),
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ResultInvalidMemoryRegion);
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// Lock the table.
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KScopedLightLock lk(general_lock);
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KScopedLightLock lk(general_lock);
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const std::size_t num_pages{size / PageSize};
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// Verify that the source memory is normal heap.
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KMemoryState src_state{};
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KMemoryPermission src_perm{};
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std::size_t num_src_allocator_blocks{};
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R_TRY(this->CheckMemoryState(std::addressof(src_state), std::addressof(src_perm), nullptr,
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std::addressof(num_src_allocator_blocks), src_address, size,
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KMemoryState::All, KMemoryState::Normal, KMemoryPermission::All,
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KMemoryPermission::UserReadWrite, KMemoryAttribute::All,
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KMemoryAttribute::None));
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KMemoryState state{};
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// Verify that the destination memory is unmapped.
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KMemoryPermission perm{};
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std::size_t num_dst_allocator_blocks{};
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CASCADE_CODE(CheckMemoryState(&state, &perm, nullptr, nullptr, src_addr, size,
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R_TRY(this->CheckMemoryState(std::addressof(num_dst_allocator_blocks), dst_address, size,
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KMemoryState::All, KMemoryState::Normal, KMemoryPermission::All,
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KMemoryState::All, KMemoryState::Free, KMemoryPermission::None,
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KMemoryPermission::UserReadWrite, KMemoryAttribute::Mask,
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KMemoryPermission::None, KMemoryAttribute::None,
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KMemoryAttribute::None, KMemoryAttribute::IpcAndDeviceMapped));
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KMemoryAttribute::None));
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if (IsRegionMapped(dst_addr, size)) {
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return ResultInvalidCurrentMemory;
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}
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KPageLinkedList page_linked_list;
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AddRegionToPages(src_addr, num_pages, page_linked_list);
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// Map the code memory.
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{
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{
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auto block_guard = detail::ScopeExit(
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// Determine the number of pages being operated on.
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[&] { Operate(src_addr, num_pages, perm, OperationType::ChangePermissions); });
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const std::size_t num_pages = size / PageSize;
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CASCADE_CODE(Operate(src_addr, num_pages, KMemoryPermission::None,
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// Create page groups for the memory being mapped.
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OperationType::ChangePermissions));
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KPageLinkedList pg;
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CASCADE_CODE(MapPages(dst_addr, page_linked_list, KMemoryPermission::None));
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AddRegionToPages(src_address, num_pages, pg);
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block_guard.Cancel();
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// Reprotect the source as kernel-read/not mapped.
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const KMemoryPermission new_perm = static_cast<KMemoryPermission>(
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KMemoryPermission::KernelRead | KMemoryPermission::NotMapped);
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R_TRY(Operate(src_address, num_pages, new_perm, OperationType::ChangePermissions));
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// Ensure that we unprotect the source pages on failure.
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auto unprot_guard = SCOPE_GUARD({
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ASSERT(this->Operate(src_address, num_pages, src_perm, OperationType::ChangePermissions)
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.IsSuccess());
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});
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// Map the alias pages.
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R_TRY(MapPages(dst_address, pg, new_perm));
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// We successfully mapped the alias pages, so we don't need to unprotect the src pages on
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// failure.
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unprot_guard.Cancel();
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// Apply the memory block updates.
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block_manager->Update(src_address, num_pages, src_state, new_perm,
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KMemoryAttribute::Locked);
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block_manager->Update(dst_address, num_pages, KMemoryState::AliasCode, new_perm,
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KMemoryAttribute::None);
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}
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}
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block_manager->Update(src_addr, num_pages, state, KMemoryPermission::None,
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KMemoryAttribute::Locked);
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block_manager->Update(dst_addr, num_pages, KMemoryState::AliasCode);
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return ResultSuccess;
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return ResultSuccess;
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}
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}
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@ -330,12 +355,6 @@ ResultCode KPageTable::UnmapCodeMemory(VAddr dst_address, VAddr src_address, std
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// Lock the table.
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// Lock the table.
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KScopedLightLock lk(general_lock);
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KScopedLightLock lk(general_lock);
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if (!size) {
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return ResultSuccess;
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}
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const std::size_t num_pages{size / PageSize};
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// Verify that the source memory is locked normal heap.
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// Verify that the source memory is locked normal heap.
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std::size_t num_src_allocator_blocks{};
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std::size_t num_src_allocator_blocks{};
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R_TRY(this->CheckMemoryState(std::addressof(num_src_allocator_blocks), src_address, size,
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R_TRY(this->CheckMemoryState(std::addressof(num_src_allocator_blocks), src_address, size,
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@ -384,9 +403,15 @@ ResultCode KPageTable::UnmapCodeMemory(VAddr dst_address, VAddr src_address, std
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// Unmap.
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// Unmap.
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{
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{
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// TODO(bunnei): We free the virtual address space, but do not nullptr the pointers in the
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// Determine the number of pages being operated on.
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// backing page table. This is a workaround because of an issue where CPU emulation may have
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const std::size_t num_pages = size / PageSize;
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// not quite finished running code when NROs are unloaded.
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// Unmap the aliased copy of the pages.
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R_TRY(Operate(dst_address, num_pages, KMemoryPermission::None, OperationType::Unmap));
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// Try to set the permissions for the source pages back to what they should be.
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R_TRY(Operate(src_address, num_pages, KMemoryPermission::UserReadWrite,
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OperationType::ChangePermissions));
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// Apply the memory block updates.
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// Apply the memory block updates.
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block_manager->Update(dst_address, num_pages, KMemoryState::None);
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block_manager->Update(dst_address, num_pages, KMemoryState::None);
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@ -36,8 +36,8 @@ public:
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KMemoryManager::Pool pool);
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KMemoryManager::Pool pool);
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ResultCode MapProcessCode(VAddr addr, std::size_t pages_count, KMemoryState state,
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ResultCode MapProcessCode(VAddr addr, std::size_t pages_count, KMemoryState state,
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KMemoryPermission perm);
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KMemoryPermission perm);
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ResultCode MapCodeMemory(VAddr dst_addr, VAddr src_addr, std::size_t size);
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ResultCode MapCodeMemory(VAddr dst_address, VAddr src_address, std::size_t size);
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ResultCode UnmapCodeMemory(VAddr dst_addr, VAddr src_addr, std::size_t size);
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ResultCode UnmapCodeMemory(VAddr dst_address, VAddr src_address, std::size_t size);
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ResultCode UnmapProcessMemory(VAddr dst_addr, std::size_t size, KPageTable& src_page_table,
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ResultCode UnmapProcessMemory(VAddr dst_addr, std::size_t size, KPageTable& src_page_table,
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VAddr src_addr);
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VAddr src_addr);
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ResultCode MapPhysicalMemory(VAddr addr, std::size_t size);
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ResultCode MapPhysicalMemory(VAddr addr, std::size_t size);
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