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https://gitlab.com/suyu-emu/suyu.git
synced 2024-03-15 23:15:44 +00:00
Address some review comments
This commit is contained in:
parent
8fab363237
commit
6de2edcca1
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@ -3,4 +3,4 @@
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[codespell]
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skip = ./.git,./build,./dist,./Doxyfile,./externals,./LICENSES,./src/android/app/src/main/res
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ignore-words-list = aci,allright,ba,canonicalizations,deques,froms,hda,inout,lod,masia,nam,nax,nd,optin,pullrequests,pullrequest,te,transfered,unstall,uscaled,vas,zink,nce
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ignore-words-list = aci,allright,ba,canonicalizations,deques,froms,hda,inout,lod,masia,nam,nax,nce,nd,optin,pullrequests,pullrequest,te,transfered,unstall,uscaled,vas,zink
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@ -409,11 +409,14 @@ static void* ChooseVirtualBase(size_t virtual_size) {
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return MAP_FAILED;
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}
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#else
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static void* ChooseVirtualBase(size_t virtual_size) {
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return mmap(nullptr, virtual_size, PROT_READ | PROT_WRITE,
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MAP_PRIVATE | MAP_ANONYMOUS | MAP_NORESERVE, -1, 0);
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}
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#endif
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class HostMemory::Impl {
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@ -181,7 +181,7 @@ struct Values {
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// Cpu
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SwitchableSetting<CpuBackend, true> cpu_backend{
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linkage, CpuBackend::Nce, CpuBackend::Dynarmic,
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linkage, CpuBackend::Dynarmic, CpuBackend::Dynarmic,
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#ifdef ARCHITECTURE_arm64
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CpuBackend::Nce,
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#else
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@ -10,8 +10,8 @@
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namespace Common {
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// Android's ART overrides sigaction with its own wrapper. This is problematic for SIGSEGV
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// in particular, because ARTs handler access TPIDR_EL0, so this extracts the libc version
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// and calls it directly.
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// in particular, because ART's handler accesses tpidr_el0, which conflicts with NCE.
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// This extracts the libc symbol and calls it directly.
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int SigAction(int signum, const struct sigaction* act, struct sigaction* oldact);
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} // namespace Common
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@ -4,7 +4,6 @@
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#include <cinttypes>
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#include <memory>
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#include "common/scope_exit.h"
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#include "common/signal_chain.h"
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#include "core/arm/nce/arm_nce.h"
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#include "core/arm/nce/patch.h"
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@ -32,7 +31,7 @@ static_assert(offsetof(NativeExecutionParameters, magic) == TpidrEl0TlsMagic);
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fpsimd_context* GetFloatingPointState(mcontext_t& host_ctx) {
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_aarch64_ctx* header = reinterpret_cast<_aarch64_ctx*>(&host_ctx.__reserved);
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while (header->magic != FPSIMD_MAGIC) {
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header = reinterpret_cast<_aarch64_ctx*>((char*)header + header->size);
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header = reinterpret_cast<_aarch64_ctx*>(reinterpret_cast<char*>(header) + header->size);
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}
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return reinterpret_cast<fpsimd_context*>(header);
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}
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@ -124,7 +123,7 @@ bool ARM_NCE::HandleGuestFault(GuestContext* guest_ctx, void* raw_info, void* ra
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// Forcibly mark the context as locked. We are still running.
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// We may race with SignalInterrupt here:
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// - If we lose the race, then SignalInterrupt will send us a signal which are masking,
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// - If we lose the race, then SignalInterrupt will send us a signal we are masking,
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// and it will do nothing when it is unmasked, as we have already left guest code.
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// - If we win the race, then SignalInterrupt will wait for us to unlock first.
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auto& thread_params = guest_ctx->parent->running_thread->GetNativeExecutionParameters();
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@ -100,7 +100,7 @@ void Patcher::RelocateAndCopy(Common::ProcessAddress load_base,
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const Kernel::CodeSet::Segment& code,
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Kernel::PhysicalMemory& program_image,
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EntryTrampolines* out_trampolines) {
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const size_t patch_size = SectionSize();
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const size_t patch_size = GetSectionSize();
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const size_t image_size = program_image.size();
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// Retrieve text segment data.
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@ -180,7 +180,7 @@ void Patcher::RelocateAndCopy(Common::ProcessAddress load_base,
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}
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}
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size_t Patcher::SectionSize() const noexcept {
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size_t Patcher::GetSectionSize() const noexcept {
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return Common::AlignUp(m_patch_instructions.size() * sizeof(u32), Core::Memory::YUZU_PAGESIZE);
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}
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@ -256,7 +256,6 @@ void Patcher::WriteSaveContext() {
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}
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void Patcher::WriteSvcTrampoline(ModuleDestLabel module_dest, u32 svc_id) {
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LOG_ERROR(Core_ARM, "Patching SVC {:#x} at {:#x}", svc_id, module_dest - 4);
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// We are about to start saving state, so we need to lock the context.
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this->LockContext();
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@ -7,23 +7,17 @@
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#include <unordered_map>
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#include <vector>
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#pragma clang diagnostic push
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#pragma clang diagnostic ignored "-Wshorten-64-to-32"
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#pragma GCC diagnostic push
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#pragma GCC diagnostic ignored "-Wshorten-64-to-32"
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#include <oaknut/code_block.hpp>
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#include <oaknut/oaknut.hpp>
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#pragma clang diagnostic pop
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#pragma GCC diagnostic pop
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#include "common/common_types.h"
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#include "core/hle/kernel/code_set.h"
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#include "core/hle/kernel/k_typed_address.h"
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#include "core/hle/kernel/physical_memory.h"
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#include <signal.h>
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namespace Core {
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struct GuestContext;
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}
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namespace Core::NCE {
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enum class PatchMode : u32 {
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@ -45,9 +39,9 @@ public:
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const Kernel::CodeSet::Segment& code);
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void RelocateAndCopy(Common::ProcessAddress load_base, const Kernel::CodeSet::Segment& code,
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Kernel::PhysicalMemory& program_image, EntryTrampolines* out_trampolines);
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size_t SectionSize() const noexcept;
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size_t GetSectionSize() const noexcept;
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[[nodiscard]] PatchMode Mode() const noexcept {
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[[nodiscard]] PatchMode GetPatchMode() const noexcept {
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return mode;
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}
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@ -137,6 +137,7 @@ struct System::Impl {
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void Initialize(System& system) {
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device_memory = std::make_unique<Core::DeviceMemory>();
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is_multicore = Settings::values.use_multi_core.GetValue();
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extended_memory_layout =
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Settings::values.memory_layout_mode.GetValue() != Settings::MemoryLayout::Memory_4Gb;
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@ -96,9 +96,11 @@ constexpr Common::MemoryPermission ConvertToMemoryPermission(KMemoryPermission p
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if (True(perm & KMemoryPermission::UserWrite)) {
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perms |= Common::MemoryPermission::Write;
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}
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#ifdef ARCHITECTURE_arm64
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if (True(perm & KMemoryPermission::UserExecute)) {
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perms |= Common::MemoryPermission::Execute;
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}
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#endif
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return perms;
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}
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@ -472,10 +472,6 @@ public:
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return m_post_handlers;
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}
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KernelCore& GetKernel() noexcept {
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return m_kernel;
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}
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public:
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// Attempts to insert a watchpoint into a free slot. Returns false if none are available.
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bool InsertWatchpoint(KProcessAddress addr, u64 size, DebugWatchpointType type);
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@ -204,7 +204,7 @@ static bool LoadNroImpl(Core::System& system, Kernel::KProcess& process,
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#ifdef ARCHITECTURE_arm64
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const auto& code = codeset.CodeSegment();
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// NROs are always 64-bit programs.
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// NROs always have a 39-bit address space.
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Settings::SetNceEnabled(true);
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// Create NCE patcher
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patch.PatchText(program_image, code);
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// We only support PostData patching for NROs.
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ASSERT(patch.Mode() == Core::NCE::PatchMode::PostData);
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ASSERT(patch.GetPatchMode() == Core::NCE::PatchMode::PostData);
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// Update patch section.
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auto& patch_segment = codeset.PatchSegment();
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patch_segment.addr = image_size;
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patch_segment.size = static_cast<u32>(patch.SectionSize());
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patch_segment.size = static_cast<u32>(patch.GetSectionSize());
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// Add patch section size to the module size.
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image_size += patch_segment.size;
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@ -94,8 +94,8 @@ std::optional<VAddr> AppLoader_NSO::LoadModule(Kernel::KProcess& process, Core::
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// Allocate some space at the beginning if we are patching in PreText mode.
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const size_t module_start = [&]() -> size_t {
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#ifdef ARCHITECTURE_arm64
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if (patch && patch->Mode() == Core::NCE::PatchMode::PreText) {
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return patch->SectionSize();
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if (patch && patch->GetPatchMode() == Core::NCE::PatchMode::PreText) {
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return patch->GetSectionSize();
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}
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#endif
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return 0;
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@ -158,24 +158,25 @@ std::optional<VAddr> AppLoader_NSO::LoadModule(Kernel::KProcess& process, Core::
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#ifdef ARCHITECTURE_arm64
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// If we are computing the process code layout and using nce backend, patch.
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const auto& code = codeset.CodeSegment();
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if (patch && patch->Mode() == Core::NCE::PatchMode::None) {
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if (patch && patch->GetPatchMode() == Core::NCE::PatchMode::None) {
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// Patch SVCs and MRS calls in the guest code
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patch->PatchText(program_image, code);
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// Add patch section size to the module size.
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image_size += patch->SectionSize();
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image_size += patch->GetSectionSize();
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} else if (patch) {
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// Relocate code patch and copy to the program_image.
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patch->RelocateAndCopy(load_base, code, program_image, &process.GetPostHandlers());
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// Update patch section.
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auto& patch_segment = codeset.PatchSegment();
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patch_segment.addr = patch->Mode() == Core::NCE::PatchMode::PreText ? 0 : image_size;
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patch_segment.size = static_cast<u32>(patch->SectionSize());
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patch_segment.addr =
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patch->GetPatchMode() == Core::NCE::PatchMode::PreText ? 0 : image_size;
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patch_segment.size = static_cast<u32>(patch->GetSectionSize());
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// Add patch section size to the module size. In PreText mode image_size
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// already contains the patch segment as part of module_start.
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if (patch->Mode() == Core::NCE::PatchMode::PostData) {
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if (patch->GetPatchMode() == Core::NCE::PatchMode::PostData) {
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image_size += patch_segment.size;
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}
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}
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