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https://github.com/citra-emu/citra.git
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Memory: remove WriteBlock with current process
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parent
8871f5a4ac
commit
4e99641a3b
@ -409,7 +409,8 @@ static void RemoveBreakpoint(BreakpointType type, VAddr addr) {
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LOG_DEBUG(Debug_GDBStub, "gdb: removed a breakpoint: {:08x} bytes at {:08x} of type {}",
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bp->second.len, bp->second.addr, static_cast<int>(type));
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Memory::WriteBlock(bp->second.addr, bp->second.inst.data(), bp->second.inst.size());
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Memory::WriteBlock(*Core::System::GetInstance().Kernel().GetCurrentProcess(), bp->second.addr,
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bp->second.inst.data(), bp->second.inst.size());
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Core::CPU().ClearInstructionCache();
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p.erase(addr);
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}
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@ -862,7 +863,8 @@ static void WriteMemory() {
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std::vector<u8> data(len);
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GdbHexToMem(data.data(), len_pos + 1, len);
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Memory::WriteBlock(addr, data.data(), len);
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Memory::WriteBlock(*Core::System::GetInstance().Kernel().GetCurrentProcess(), addr, data.data(),
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len);
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Core::CPU().ClearInstructionCache();
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SendReply("OK");
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}
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@ -918,7 +920,8 @@ static bool CommitBreakpoint(BreakpointType type, VAddr addr, u32 len) {
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Memory::ReadBlock(*Core::System::GetInstance().Kernel().GetCurrentProcess(), addr,
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breakpoint.inst.data(), breakpoint.inst.size());
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static constexpr std::array<u8, 4> btrap{0x70, 0x00, 0x20, 0xe1};
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Memory::WriteBlock(addr, btrap.data(), btrap.size());
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Memory::WriteBlock(*Core::System::GetInstance().Kernel().GetCurrentProcess(), addr,
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btrap.data(), btrap.size());
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Core::CPU().ClearInstructionCache();
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p.insert({addr, breakpoint});
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@ -437,7 +437,8 @@ private:
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*/
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template <typename T>
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void SetEntry(std::size_t index, const T& data) {
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Memory::WriteBlock(GetField(T::TABLE_OFFSET_FIELD) + static_cast<u32>(index * sizeof(T)),
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Memory::WriteBlock(process,
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GetField(T::TABLE_OFFSET_FIELD) + static_cast<u32>(index * sizeof(T)),
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&data, sizeof(T));
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}
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@ -547,11 +547,6 @@ void WriteBlock(const Kernel::Process& process, const VAddr dest_addr, const voi
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}
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}
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void WriteBlock(const VAddr dest_addr, const void* src_buffer, const std::size_t size) {
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WriteBlock(*Core::System::GetInstance().Kernel().GetCurrentProcess(), dest_addr, src_buffer,
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size);
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}
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void ZeroBlock(const Kernel::Process& process, const VAddr dest_addr, const std::size_t size) {
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auto& page_table = process.vm_manager.page_table;
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std::size_t remaining_size = size;
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@ -199,7 +199,6 @@ void Write64(VAddr addr, u64 data);
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void ReadBlock(const Kernel::Process& process, VAddr src_addr, void* dest_buffer, std::size_t size);
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void WriteBlock(const Kernel::Process& process, VAddr dest_addr, const void* src_buffer,
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std::size_t size);
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void WriteBlock(VAddr dest_addr, const void* src_buffer, std::size_t size);
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void ZeroBlock(const Kernel::Process& process, VAddr dest_addr, const std::size_t size);
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void ZeroBlock(VAddr dest_addr, const std::size_t size);
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void CopyBlock(const Kernel::Process& process, VAddr dest_addr, VAddr src_addr, std::size_t size);
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@ -41,7 +41,8 @@ void RPCServer::HandleWriteMemory(Packet& packet, u32 address, const u8* data, u
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(address >= Memory::HEAP_VADDR && address <= Memory::HEAP_VADDR_END) ||
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(address >= Memory::N3DS_EXTRA_RAM_VADDR && address <= Memory::N3DS_EXTRA_RAM_VADDR_END)) {
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// Note: Memory write occurs asynchronously from the state of the emulator
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Memory::WriteBlock(address, data, data_size);
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Memory::WriteBlock(*Core::System::GetInstance().Kernel().GetCurrentProcess(), address, data,
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data_size);
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// If the memory happens to be executable code, make sure the changes become visible
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Core::CPU().InvalidateCacheRange(address, data_size);
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}
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