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https://github.com/yuzu-emu/yuzu-android.git
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Memory: Read ConfigMem directly from Memory::Read
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@ -16,52 +16,7 @@
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namespace ConfigMem {
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struct ConfigMemDef {
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u8 kernel_unk; // 0
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u8 kernel_version_rev; // 1
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u8 kernel_version_min; // 2
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u8 kernel_version_maj; // 3
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u32 update_flag; // 4
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u64 ns_tid; // 8
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u32 sys_core_ver; // 10
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u8 unit_info; // 14
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u8 boot_firm; // 15
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u8 prev_firm; // 16
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INSERT_PADDING_BYTES(0x1); // 17
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u32 ctr_sdk_ver; // 18
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INSERT_PADDING_BYTES(0x30 - 0x1C); // 1C
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u32 app_mem_type; // 30
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INSERT_PADDING_BYTES(0x40 - 0x34); // 34
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u32 app_mem_alloc; // 40
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u32 sys_mem_alloc; // 44
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u32 base_mem_alloc; // 48
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INSERT_PADDING_BYTES(0x60 - 0x4C); // 4C
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u8 firm_unk; // 60
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u8 firm_version_rev; // 61
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u8 firm_version_min; // 62
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u8 firm_version_maj; // 63
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u32 firm_sys_core_ver; // 64
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u32 firm_ctr_sdk_ver; // 68
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INSERT_PADDING_BYTES(0x1000 - 0x6C); // 6C
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};
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static_assert(sizeof(ConfigMemDef) == Memory::CONFIG_MEMORY_SIZE, "Config Memory structure size is wrong");
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static ConfigMemDef config_mem;
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template <typename T>
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inline void Read(T &var, const u32 addr) {
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u32 offset = addr - Memory::CONFIG_MEMORY_VADDR;
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ASSERT(offset < Memory::CONFIG_MEMORY_SIZE);
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var = *(reinterpret_cast<T*>(((uintptr_t)&config_mem) + offset));
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}
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// Explicitly instantiate template functions because we aren't defining this in the header:
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template void Read<u64>(u64 &var, const u32 addr);
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template void Read<u32>(u32 &var, const u32 addr);
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template void Read<u16>(u16 &var, const u32 addr);
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template void Read<u8>(u8 &var, const u32 addr);
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ConfigMemDef config_mem;
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void Init() {
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std::memset(&config_mem, 0, sizeof(config_mem));
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@ -9,17 +9,49 @@
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// bootrom. Because we're not emulating this, and essentially just "stubbing" the functionality, I'm
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// putting this as a subset of HLE for now.
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#include "common/common_funcs.h"
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#include "common/common_types.h"
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#include "common/swap.h"
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#include "core/memory.h"
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////////////////////////////////////////////////////////////////////////////////////////////////////
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namespace ConfigMem {
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template <typename T>
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void Read(T &var, const u32 addr);
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struct ConfigMemDef {
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u8 kernel_unk; // 0
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u8 kernel_version_rev; // 1
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u8 kernel_version_min; // 2
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u8 kernel_version_maj; // 3
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u32_le update_flag; // 4
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u64_le ns_tid; // 8
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u32_le sys_core_ver; // 10
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u8 unit_info; // 14
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u8 boot_firm; // 15
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u8 prev_firm; // 16
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INSERT_PADDING_BYTES(0x1); // 17
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u32_le ctr_sdk_ver; // 18
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INSERT_PADDING_BYTES(0x30 - 0x1C); // 1C
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u32_le app_mem_type; // 30
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INSERT_PADDING_BYTES(0x40 - 0x34); // 34
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u32_le app_mem_alloc; // 40
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u32_le sys_mem_alloc; // 44
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u32_le base_mem_alloc; // 48
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INSERT_PADDING_BYTES(0x60 - 0x4C); // 4C
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u8 firm_unk; // 60
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u8 firm_version_rev; // 61
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u8 firm_version_min; // 62
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u8 firm_version_maj; // 63
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u32_le firm_sys_core_ver; // 64
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u32_le firm_ctr_sdk_ver; // 68
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INSERT_PADDING_BYTES(0x1000 - 0x6C); // 6C
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};
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static_assert(sizeof(ConfigMemDef) == Memory::CONFIG_MEMORY_SIZE, "Config Memory structure size is wrong");
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extern ConfigMemDef config_mem;
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void Init();
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void Shutdown();
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} // namespace
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@ -42,7 +42,8 @@ inline void Read(T &var, const VAddr vaddr) {
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// Config memory
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} else if ((vaddr >= CONFIG_MEMORY_VADDR) && (vaddr < CONFIG_MEMORY_VADDR_END)) {
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ConfigMem::Read<T>(var, vaddr);
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const u8* raw_memory = (const u8*)&ConfigMem::config_mem;
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var = *((const T*)&raw_memory[vaddr - CONFIG_MEMORY_VADDR]);
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// Shared page
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} else if ((vaddr >= SHARED_PAGE_VADDR) && (vaddr < SHARED_PAGE_VADDR_END)) {
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