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core/memory + arm/dynarmic: Use a global offset within our arm page table.
This saves us two x64 instructions per load/store instruction. TODO: Clean up our memory code. We can use this optimization here as well.
This commit is contained in:
parent
028b2718ed
commit
0986caa8d8
3 changed files with 18 additions and 10 deletions
2
externals/dynarmic
vendored
2
externals/dynarmic
vendored
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@ -1 +1 @@
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Subproject commit 087a74417abfb0a8ae3bc1463d0d476a9bf94e53
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Subproject commit f6ae9e1c3311b747b7b91fd903c62bf40b3b9c88
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@ -141,6 +141,7 @@ std::unique_ptr<Dynarmic::A64::Jit> ARM_Dynarmic::MakeJit(Common::PageTable& pag
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config.page_table = reinterpret_cast<void**>(page_table.pointers.data());
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config.page_table_address_space_bits = address_space_bits;
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config.silently_mirror_page_table = false;
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config.absolute_offset_page_table = true;
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// Multi-process state
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config.processor_id = core_index;
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@ -146,7 +146,7 @@ struct Memory::Impl {
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u8* GetPointer(const VAddr vaddr) {
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u8* const page_pointer = current_page_table->pointers[vaddr >> PAGE_BITS];
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if (page_pointer != nullptr) {
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return page_pointer + (vaddr & PAGE_MASK);
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return page_pointer + vaddr;
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}
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if (current_page_table->attributes[vaddr >> PAGE_BITS] ==
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@ -229,7 +229,8 @@ struct Memory::Impl {
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case Common::PageType::Memory: {
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DEBUG_ASSERT(page_table.pointers[page_index]);
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const u8* const src_ptr = page_table.pointers[page_index] + page_offset;
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const u8* const src_ptr =
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page_table.pointers[page_index] + page_offset + (page_index << PAGE_BITS);
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std::memcpy(dest_buffer, src_ptr, copy_amount);
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break;
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}
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@ -276,7 +277,8 @@ struct Memory::Impl {
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case Common::PageType::Memory: {
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DEBUG_ASSERT(page_table.pointers[page_index]);
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u8* const dest_ptr = page_table.pointers[page_index] + page_offset;
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u8* const dest_ptr =
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page_table.pointers[page_index] + page_offset + (page_index << PAGE_BITS);
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std::memcpy(dest_ptr, src_buffer, copy_amount);
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break;
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}
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@ -322,7 +324,8 @@ struct Memory::Impl {
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case Common::PageType::Memory: {
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DEBUG_ASSERT(page_table.pointers[page_index]);
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u8* dest_ptr = page_table.pointers[page_index] + page_offset;
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u8* dest_ptr =
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page_table.pointers[page_index] + page_offset + (page_index << PAGE_BITS);
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std::memset(dest_ptr, 0, copy_amount);
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break;
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}
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@ -368,7 +371,8 @@ struct Memory::Impl {
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}
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case Common::PageType::Memory: {
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DEBUG_ASSERT(page_table.pointers[page_index]);
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const u8* src_ptr = page_table.pointers[page_index] + page_offset;
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const u8* src_ptr =
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page_table.pointers[page_index] + page_offset + (page_index << PAGE_BITS);
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WriteBlock(process, dest_addr, src_ptr, copy_amount);
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break;
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}
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@ -446,7 +450,8 @@ struct Memory::Impl {
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page_type = Common::PageType::Unmapped;
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} else {
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page_type = Common::PageType::Memory;
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current_page_table->pointers[vaddr >> PAGE_BITS] = pointer;
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current_page_table->pointers[vaddr >> PAGE_BITS] =
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pointer - (vaddr & ~PAGE_MASK);
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}
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break;
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}
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@ -493,7 +498,9 @@ struct Memory::Impl {
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memory);
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} else {
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while (base != end) {
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page_table.pointers[base] = memory;
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page_table.pointers[base] = memory - (base << PAGE_BITS);
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ASSERT_MSG(page_table.pointers[base],
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"memory mapping base yield a nullptr within the table");
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base += 1;
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memory += PAGE_SIZE;
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@ -518,7 +525,7 @@ struct Memory::Impl {
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if (page_pointer != nullptr) {
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// NOTE: Avoid adding any extra logic to this fast-path block
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T value;
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std::memcpy(&value, &page_pointer[vaddr & PAGE_MASK], sizeof(T));
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std::memcpy(&value, &page_pointer[vaddr], sizeof(T));
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return value;
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}
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@ -559,7 +566,7 @@ struct Memory::Impl {
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u8* const page_pointer = current_page_table->pointers[vaddr >> PAGE_BITS];
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if (page_pointer != nullptr) {
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// NOTE: Avoid adding any extra logic to this fast-path block
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std::memcpy(&page_pointer[vaddr & PAGE_MASK], &data, sizeof(T));
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std::memcpy(&page_pointer[vaddr], &data, sizeof(T));
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return;
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}
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