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https://git.eden-emu.dev/eden-emu/eden.git
synced 2026-09-19 17:12:14 +00:00
Compare commits
12 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| c52a6371a4 | |||
| 9a30172e45 | |||
| 07f40d5cac | |||
| 3c38afad74 | |||
| 0ce29be608 | |||
| 1203082a8f | |||
| 14235dc0d0 | |||
| 6374f7f51f | |||
| 73e004de6e | |||
| f7b8ade40e | |||
| 8c1194474e | |||
| 90aafeedc1 |
@@ -244,7 +244,8 @@ WallClock::WallClock(bool invariant_, u64 rdtsc_frequency_) noexcept
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, ns_rdtsc_factor{invariant_ ? GetFixedPoint64Factor(NsRatio::den, rdtsc_frequency_) : 0}
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, us_rdtsc_factor{invariant_ ? GetFixedPoint64Factor(UsRatio::den, rdtsc_frequency_) : 0}
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, ms_rdtsc_factor{invariant_ ? GetFixedPoint64Factor(MsRatio::den, rdtsc_frequency_) : 0}
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, rdtsc_ns_factor{invariant_ ? GetFixedPoint64Factor(rdtsc_frequency_, NsRatio::den) : 1}
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, rdtsc_ns_integer{invariant_ ? rdtsc_frequency_ / NsRatio::den : 1}
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, rdtsc_ns_factor{invariant_ ? GetFixedPoint64Factor(rdtsc_frequency_ % NsRatio::den, NsRatio::den) : 0}
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, cntpct_rdtsc_factor{invariant_ ? GetFixedPoint64Factor(CNTFRQ, rdtsc_frequency_) : 0}
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, gputick_rdtsc_factor{invariant_ ? GetFixedPoint64Factor(GPUTickFreq, rdtsc_frequency_) : 0}
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, invariant{invariant_}
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@@ -291,7 +292,7 @@ bool WallClock::IsNative() const {
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}
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u64 WallClock::NsToTicks(std::chrono::nanoseconds ns) const {
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return invariant ? MultiplyHigh(ns.count(), rdtsc_ns_factor) : ns.count();
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return ns.count() * rdtsc_ns_integer + MultiplyHigh(ns.count(), rdtsc_ns_factor);
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}
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#elif defined(HAS_NCE)
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namespace {
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@@ -416,7 +417,7 @@ u64 WallClock::NsToTicks(std::chrono::nanoseconds ns) const {
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const WallClock g_wall_clock = [] {
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#if defined(ARCHITECTURE_x86_64)
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auto const& caps = Common::g_cpu_caps;
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return WallClock(caps.invariant_tsc && caps.tsc_frequency >= std::nano::den, caps.tsc_frequency);
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return WallClock(caps.invariant_tsc && caps.tsc_frequency > std::nano::den, caps.tsc_frequency);
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#elif defined(HAS_NCE)
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return WallClock(false, 1);
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#else
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@@ -96,6 +96,7 @@ public:
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u64 ns_rdtsc_factor;
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u64 us_rdtsc_factor;
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u64 ms_rdtsc_factor;
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u64 rdtsc_ns_integer;
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u64 rdtsc_ns_factor;
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u64 cntpct_rdtsc_factor;
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u64 gputick_rdtsc_factor;
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@@ -96,15 +96,15 @@ struct PageTable {
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}
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/// Write page info atomically
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constexpr void Store(bool marked, PageType type, u16 block, uintptr_t pointer) noexcept {
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inline void Store(bool marked, PageType type, u16 block, uintptr_t pointer) noexcept {
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data_raw.store(std::bit_cast<u64>(Data{marked, type, block, pointer}));
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}
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constexpr void MarkRasterizerCached() noexcept {
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inline void MarkRasterizerCached() noexcept {
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data_raw.fetch_or(0b111);
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}
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constexpr void MarkDebug(u64 ptr, u16 block) noexcept {
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inline void MarkDebug(u64 ptr, u16 block) noexcept {
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Store(true, PageType::DebugMemory, block, ptr);
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}
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@@ -38,7 +38,8 @@ void FreeMemoryPages(void* base, std::size_t size) noexcept;
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/// A large page-aligned buffer that has optimized memory usage for zero-writes.
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template <typename T>
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requires std::is_trivially_copyable_v<T>
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// MSVC doesn't regard structs with atomics as trivially copyable
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// requires std::is_trivially_copyable_v<T>
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class SparseLargeVector final {
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public:
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constexpr SparseLargeVector() = default;
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@@ -22,21 +22,15 @@ DynarmicCallbacks32::DynarmicCallbacks32(ArmDynarmic32& parent, Kernel::KProcess
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, m_check_memory_access{m_debugger_enabled || !Settings::values.cpuopt_ignore_memory_aborts.GetValue()}
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{}
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u8 DynarmicCallbacks32::MemoryRead8(u32 vaddr) {
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CheckMemoryAccess(vaddr, 1, Kernel::DebugWatchpointType::Read);
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return m_memory.Read8(vaddr);
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}
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u16 DynarmicCallbacks32::MemoryRead16(u32 vaddr) {
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CheckMemoryAccess(vaddr, 2, Kernel::DebugWatchpointType::Read);
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return m_memory.Read16(vaddr);
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}
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u32 DynarmicCallbacks32::MemoryRead32(u32 vaddr) {
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CheckMemoryAccess(vaddr, 4, Kernel::DebugWatchpointType::Read);
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return m_memory.Read32(vaddr);
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}
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u64 DynarmicCallbacks32::MemoryRead64(u32 vaddr) {
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CheckMemoryAccess(vaddr, 8, Kernel::DebugWatchpointType::Read);
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return m_memory.Read64(vaddr);
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u64 DynarmicCallbacks32::MemoryRead(u32 vaddr, size_t size) {
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CheckMemoryAccess(vaddr, size, Kernel::DebugWatchpointType::Read);
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switch (size) {
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case sizeof(u64): return m_memory.Read64(vaddr);
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case sizeof(u32): return m_memory.Read32(vaddr);
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case sizeof(u16): return m_memory.Read16(vaddr);
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case sizeof(u8): return m_memory.Read8(vaddr);
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default: UNREACHABLE();
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}
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}
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std::optional<u32> DynarmicCallbacks32::MemoryReadCode(u32 vaddr) {
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@@ -50,27 +44,17 @@ std::optional<u32> DynarmicCallbacks32::MemoryReadCode(u32 vaddr) {
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return cached_code_page.inst[(vaddr & Core::Memory::YUZU_PAGEMASK) / sizeof(u32)];
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}
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void DynarmicCallbacks32::MemoryWrite8(u32 vaddr, u8 value) {
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if (CheckMemoryAccess(vaddr, 1, Kernel::DebugWatchpointType::Write)) {
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m_memory.Write8(vaddr, value);
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void DynarmicCallbacks32::MemoryWrite(Dynarmic::A32::VAddr vaddr, u64 value, size_t size) {
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if (CheckMemoryAccess(vaddr, size, Kernel::DebugWatchpointType::Write)) {
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switch (size) {
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case sizeof(u64): return m_memory.Write64(vaddr, value);
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case sizeof(u32): return m_memory.Write32(vaddr, u32(value));
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case sizeof(u16): return m_memory.Write16(vaddr, u16(value));
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case sizeof(u8): return m_memory.Write8(vaddr, u8(value));
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default: UNREACHABLE();
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}
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}
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}
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void DynarmicCallbacks32::MemoryWrite16(u32 vaddr, u16 value) {
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if (CheckMemoryAccess(vaddr, 2, Kernel::DebugWatchpointType::Write)) {
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m_memory.Write16(vaddr, value);
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}
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}
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void DynarmicCallbacks32::MemoryWrite32(u32 vaddr, u32 value) {
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if (CheckMemoryAccess(vaddr, 4, Kernel::DebugWatchpointType::Write)) {
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m_memory.Write32(vaddr, value);
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}
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}
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void DynarmicCallbacks32::MemoryWrite64(u32 vaddr, u64 value) {
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if (CheckMemoryAccess(vaddr, 8, Kernel::DebugWatchpointType::Write)) {
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m_memory.Write64(vaddr, value);
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}
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}
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bool DynarmicCallbacks32::MemoryWriteExclusive8(u32 vaddr, u8 value, u8 expected) {
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return CheckMemoryAccess(vaddr, 1, Kernel::DebugWatchpointType::Write) &&
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m_memory.WriteExclusive8(vaddr, value, expected);
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@@ -177,7 +161,7 @@ void ArmDynarmic32::MakeJit(Common::PageTable* page_table) {
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config.page_table = reinterpret_cast<std::array<std::uint8_t*, NumPageTableEntries>*>(
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const_cast<Common::PageTable::PageEntryData*>(page_table->entries.data()));
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config.page_table_pointer_mask = Common::PageTable::ATTRIBUTE_MASK;
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config.page_table_marked_bit = 0;
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config.page_table_marked_bit = uint8_t(0);
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config.absolute_offset_page_table = true;
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config.detect_misaligned_access_via_page_table = 16 | 32 | 64 | 128;
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config.only_detect_misalignment_via_page_table_on_page_boundary = true;
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@@ -193,7 +177,7 @@ void ArmDynarmic32::MakeJit(Common::PageTable* page_table) {
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Kernel::Board::Nintendo::Nx::KSystemControl::Init::GetIntendedMemorySize()) < (1ULL << 39)) {
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// Systems like FreeBSD allocate memory really low by default, and since we pack our page table entries,
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// we have to manually sign extend when our actual pointer is negative.
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config.page_table_sign_extension = Common::PageTable::SIGN_BIT;
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config.page_table_sign_extension = std::uint8_t(Common::PageTable::SIGN_BIT);
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}
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}
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@@ -30,18 +30,12 @@ class System;
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class DynarmicCallbacks32 : public Dynarmic::A32::UserCallbacks {
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public:
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explicit DynarmicCallbacks32(ArmDynarmic32& parent, Kernel::KProcess* process);
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u8 MemoryRead8(u32 vaddr) override;
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u16 MemoryRead16(u32 vaddr) override;
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u32 MemoryRead32(u32 vaddr) override;
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u64 MemoryRead64(u32 vaddr) override;
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u64 MemoryRead(u32 vaddr, size_t size) override;
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std::optional<u32> MemoryReadCode(u32 vaddr) override;
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void InstructionSynchronizationBarrierRaised() override {
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last_code_addr = u64(-1); //reset back, force refetch
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}
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void MemoryWrite8(u32 vaddr, u8 value) override;
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void MemoryWrite16(u32 vaddr, u16 value) override;
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void MemoryWrite32(u32 vaddr, u32 value) override;
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void MemoryWrite64(u32 vaddr, u64 value) override;
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void MemoryWrite(Dynarmic::A32::VAddr vaddr, u64 value, size_t size) override;
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bool MemoryWriteExclusive8(u32 vaddr, u8 value, u8 expected) override;
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bool MemoryWriteExclusive16(u32 vaddr, u16 value, u16 expected) override;
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bool MemoryWriteExclusive32(u32 vaddr, u32 value, u32 expected) override;
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@@ -10,6 +10,7 @@
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#include "core/arm/dynarmic/dynarmic_exclusive_monitor.h"
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#include "core/core_timing.h"
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#include "core/hle/kernel/k_process.h"
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#include "dynarmic/interface/A64/config.h"
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namespace Core {
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@@ -21,21 +22,15 @@ DynarmicCallbacks64::DynarmicCallbacks64(ArmDynarmic64& parent, Kernel::KProcess
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, m_check_memory_access{m_debugger_enabled || !Settings::values.cpuopt_ignore_memory_aborts.GetValue()}
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{}
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u8 DynarmicCallbacks64::MemoryRead8(u64 vaddr) {
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CheckMemoryAccess(vaddr, 1, Kernel::DebugWatchpointType::Read);
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return m_memory.Read8(vaddr);
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}
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u16 DynarmicCallbacks64::MemoryRead16(u64 vaddr) {
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CheckMemoryAccess(vaddr, 2, Kernel::DebugWatchpointType::Read);
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return m_memory.Read16(vaddr);
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}
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u32 DynarmicCallbacks64::MemoryRead32(u64 vaddr) {
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CheckMemoryAccess(vaddr, 4, Kernel::DebugWatchpointType::Read);
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return m_memory.Read32(vaddr);
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}
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u64 DynarmicCallbacks64::MemoryRead64(u64 vaddr) {
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CheckMemoryAccess(vaddr, 8, Kernel::DebugWatchpointType::Read);
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return m_memory.Read64(vaddr);
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u64 DynarmicCallbacks64::MemoryRead(u64 vaddr, size_t size) {
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CheckMemoryAccess(vaddr, size, Kernel::DebugWatchpointType::Read);
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switch (size) {
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case sizeof(u64): return m_memory.Read64(vaddr);
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case sizeof(u32): return m_memory.Read32(vaddr);
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case sizeof(u16): return m_memory.Read16(vaddr);
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case sizeof(u8): return m_memory.Read8(vaddr);
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default: UNREACHABLE();
|
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}
|
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}
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Dynarmic::A64::Vector DynarmicCallbacks64::MemoryRead128(u64 vaddr) {
|
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CheckMemoryAccess(vaddr, 16, Kernel::DebugWatchpointType::Read);
|
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@@ -53,24 +48,15 @@ std::optional<u32> DynarmicCallbacks64::MemoryReadCode(u64 vaddr) {
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return cached_code_page.inst[(vaddr & Core::Memory::YUZU_PAGEMASK) / sizeof(u32)];
|
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}
|
||||
|
||||
void DynarmicCallbacks64::MemoryWrite8(u64 vaddr, u8 value) {
|
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if (CheckMemoryAccess(vaddr, 1, Kernel::DebugWatchpointType::Write)) {
|
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m_memory.Write8(vaddr, value);
|
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}
|
||||
}
|
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void DynarmicCallbacks64::MemoryWrite16(u64 vaddr, u16 value) {
|
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if (CheckMemoryAccess(vaddr, 2, Kernel::DebugWatchpointType::Write)) {
|
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m_memory.Write16(vaddr, value);
|
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}
|
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}
|
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void DynarmicCallbacks64::MemoryWrite32(u64 vaddr, u32 value) {
|
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if (CheckMemoryAccess(vaddr, 4, Kernel::DebugWatchpointType::Write)) {
|
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m_memory.Write32(vaddr, value);
|
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}
|
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}
|
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void DynarmicCallbacks64::MemoryWrite64(u64 vaddr, u64 value) {
|
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if (CheckMemoryAccess(vaddr, 8, Kernel::DebugWatchpointType::Write)) {
|
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m_memory.Write64(vaddr, value);
|
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void DynarmicCallbacks64::MemoryWrite(Dynarmic::A64::VAddr vaddr, u64 value, std::size_t size) {
|
||||
if (CheckMemoryAccess(vaddr, size, Kernel::DebugWatchpointType::Write)) {
|
||||
switch (size) {
|
||||
case sizeof(u64): return m_memory.Write64(vaddr, u64(value));
|
||||
case sizeof(u32): return m_memory.Write32(vaddr, u32(value));
|
||||
case sizeof(u16): return m_memory.Write16(vaddr, u16(value));
|
||||
case sizeof(u8): return m_memory.Write8(vaddr, u8(value));
|
||||
default: UNREACHABLE();
|
||||
}
|
||||
}
|
||||
}
|
||||
void DynarmicCallbacks64::MemoryWrite128(u64 vaddr, Dynarmic::A64::Vector value) {
|
||||
@@ -216,7 +202,7 @@ void ArmDynarmic64::MakeJit(Common::PageTable* page_table, std::size_t address_s
|
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const_cast<Common::PageTable::PageEntryData*>(page_table->entries.data()));
|
||||
config.page_table_address_space_bits = std::uint32_t(address_space_bits);
|
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config.page_table_pointer_mask = Common::PageTable::ATTRIBUTE_MASK;
|
||||
config.page_table_marked_bit = 0;
|
||||
config.page_table_marked_bit = uint8_t(0);
|
||||
config.silently_mirror_page_table = false;
|
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config.absolute_offset_page_table = true;
|
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config.detect_misaligned_access_via_page_table = 16 | 32 | 64 | 128;
|
||||
@@ -235,7 +221,7 @@ void ArmDynarmic64::MakeJit(Common::PageTable* page_table, std::size_t address_s
|
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Kernel::Board::Nintendo::Nx::KSystemControl::Init::GetIntendedMemorySize()) < (1ULL << 39)) {
|
||||
// Systems like FreeBSD allocate memory really low by default, and since we pack our page table entries,
|
||||
// we have to manually sign extend when our actual pointer is negative.
|
||||
config.page_table_sign_extension = Common::PageTable::SIGN_BIT;
|
||||
config.page_table_sign_extension = std::uint8_t(Common::PageTable::SIGN_BIT);
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@@ -16,6 +16,7 @@
|
||||
#include "common/hash.h"
|
||||
#include "core/arm/arm_interface.h"
|
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#include "core/arm/dynarmic/dynarmic_exclusive_monitor.h"
|
||||
#include "dynarmic/interface/A64/config.h"
|
||||
|
||||
namespace Core::Memory {
|
||||
class Memory;
|
||||
@@ -36,19 +37,13 @@ class DynarmicCallbacks64 : public Dynarmic::A64::UserCallbacks {
|
||||
public:
|
||||
explicit DynarmicCallbacks64(ArmDynarmic64& parent, Kernel::KProcess* process);
|
||||
|
||||
u8 MemoryRead8(u64 vaddr) override;
|
||||
u16 MemoryRead16(u64 vaddr) override;
|
||||
u32 MemoryRead32(u64 vaddr) override;
|
||||
u64 MemoryRead64(u64 vaddr) override;
|
||||
u64 MemoryRead(u64 vaddr, size_t size) override;
|
||||
Dynarmic::A64::Vector MemoryRead128(u64 vaddr) override;
|
||||
std::optional<u32> MemoryReadCode(u64 vaddr) override;
|
||||
void InstructionSynchronizationBarrierRaised() override {
|
||||
last_code_addr = u64(-1); //reset back, force refetch
|
||||
}
|
||||
void MemoryWrite8(u64 vaddr, u8 value) override;
|
||||
void MemoryWrite16(u64 vaddr, u16 value) override;
|
||||
void MemoryWrite32(u64 vaddr, u32 value) override;
|
||||
void MemoryWrite64(u64 vaddr, u64 value) override;
|
||||
void MemoryWrite(Dynarmic::A64::VAddr vaddr, u64 value, std::size_t size) override;
|
||||
void MemoryWrite128(u64 vaddr, Dynarmic::A64::Vector value) override;
|
||||
bool MemoryWriteExclusive8(u64 vaddr, std::uint8_t value, std::uint8_t expected) override;
|
||||
bool MemoryWriteExclusive16(u64 vaddr, std::uint16_t value, std::uint16_t expected) override;
|
||||
|
||||
@@ -100,8 +100,7 @@ VirtualFile PatchIPS(const VirtualFile& in, const VirtualFile& ips) {
|
||||
|
||||
|
||||
struct IPSwitchRecord {
|
||||
std::array<uint8_t, 256 - sizeof(size_t)> data;
|
||||
size_t count;
|
||||
std::vector<uint8_t> data;
|
||||
};
|
||||
struct IPSwitchCompiler::IPSwitchPatch {
|
||||
::Common::unordered_map<u32, IPSwitchRecord> records;
|
||||
@@ -122,22 +121,23 @@ static IPSwitchRecord EscapeStringSequences(std::string_view sv) {
|
||||
IPSwitchRecord r{};
|
||||
for (auto it = sv.cbegin(); it < sv.cend(); ) {
|
||||
if (*it == '\\' && it + 1 < sv.cend()) {
|
||||
switch (it[1]) {
|
||||
case 'a': r.data[r.count] = '\a'; break;
|
||||
case 'b': r.data[r.count] = '\b'; break;
|
||||
case 'e': r.data[r.count] = '\e'; break;
|
||||
case 'f': r.data[r.count] = '\f'; break;
|
||||
case 'n': r.data[r.count] = '\n'; break;
|
||||
case 'r': r.data[r.count] = '\r'; break;
|
||||
case 't': r.data[r.count] = '\t'; break;
|
||||
case 'v': r.data[r.count] = '\v'; break;
|
||||
case '?': r.data[r.count] = '\?'; break;
|
||||
default: r.data[r.count] = it[1]; break;
|
||||
}
|
||||
++r.count;
|
||||
r.data.push_back([it]() {
|
||||
switch (it[1]) {
|
||||
case 'a': return '\a';
|
||||
case 'b': return '\b';
|
||||
case 'e': return '\e';
|
||||
case 'f': return '\f';
|
||||
case 'n': return '\n';
|
||||
case 'r': return '\r';
|
||||
case 't': return '\t';
|
||||
case 'v': return '\v';
|
||||
case '?': return '\?';
|
||||
default: return it[1];
|
||||
}
|
||||
}());
|
||||
it += 2;
|
||||
} else {
|
||||
++r.count;
|
||||
r.data.push_back(*it);
|
||||
++it;
|
||||
}
|
||||
}
|
||||
@@ -223,8 +223,8 @@ void IPSwitchCompiler::Parse(std::span<u8 const> bytes) {
|
||||
if (start <= line.cend() && end <= line.cend()) {
|
||||
// Actually IPS wants ordering from {lsb, ..., msb} -- so LE and BE are inverted, fun!
|
||||
auto const hs = Common::HexStringToVector({start, end}, is_little_endian);
|
||||
r.data.resize(hs.size());
|
||||
std::memcpy(r.data.data(), hs.data(), hs.size());
|
||||
r.count = hs.size();
|
||||
LOG_INFO(Loader, "[H] value @ {:#08X}", offset);
|
||||
patches.back().records.insert_or_assign(u32(offset), std::move(r));
|
||||
} else {
|
||||
@@ -293,7 +293,7 @@ VirtualFile IPSwitchCompiler::Apply(const VirtualFile& in) const {
|
||||
if (patch.enabled) {
|
||||
for (const auto& record : patch.records) {
|
||||
if (record.first < in_data.size()) {
|
||||
auto replace_size = record.second.count;
|
||||
auto replace_size = record.second.data.size();
|
||||
if (record.first + replace_size > in_data.size())
|
||||
replace_size = in_data.size() - record.first;
|
||||
std::memcpy(in_data.data() + record.first, record.second.data.data(), replace_size);
|
||||
|
||||
@@ -9,6 +9,7 @@
|
||||
#include <cstddef>
|
||||
#include <cstring>
|
||||
|
||||
#include "common/assert.h"
|
||||
#include "common/hex_util.h"
|
||||
#include "common/logging.h"
|
||||
#include "common/settings.h"
|
||||
@@ -156,12 +157,15 @@ std::string GetUpdateVersionStringFromSlot(const ContentProvider* provider, u64
|
||||
NACP nacp{nacp_file};
|
||||
return nacp.GetVersionString();
|
||||
}
|
||||
YUZU_NO_INLINE std::optional<u64> GetParentApplicationId(const ContentProvider* provider, u64 title_id) {
|
||||
return provider == nullptr ? std::nullopt : provider->GetParentApplicationId(title_id);
|
||||
}
|
||||
} // Anonymous namespace
|
||||
|
||||
PatchManager::PatchManager(u64 title_id_,
|
||||
const Service::FileSystem::FileSystemController& fs_controller_,
|
||||
const ContentProvider& content_provider_)
|
||||
: title_id{title_id_}, fs_controller{fs_controller_}, content_provider{content_provider_} {}
|
||||
: title_id{title_id_}, parent_title_id{GetParentApplicationId(std::addressof(content_provider_), title_id_)}, fs_controller{fs_controller_}, content_provider{content_provider_} {}
|
||||
|
||||
PatchManager::~PatchManager() = default;
|
||||
|
||||
@@ -169,13 +173,35 @@ u64 PatchManager::GetTitleID() const {
|
||||
return title_id;
|
||||
}
|
||||
|
||||
VirtualDir PatchManager::GetModificationLoadRoot(bool sdmc) const {
|
||||
const auto get_root = [&](u64 id) {
|
||||
return sdmc ? fs_controller.GetSDMCModificationLoadRoot(id) : fs_controller.GetModificationLoadRoot(id);
|
||||
};
|
||||
auto root = get_root(title_id);
|
||||
if (!parent_title_id) {
|
||||
return root;
|
||||
}
|
||||
std::vector<VirtualDir> roots{std::move(root), get_root(*parent_title_id)};
|
||||
std::erase(roots, nullptr);
|
||||
return LayeredVfsDirectory::MakeLayeredDirectory(std::move(roots));
|
||||
}
|
||||
|
||||
std::vector<std::string> PatchManager::GetDisabledAddons() const {
|
||||
auto disabled = Settings::values.disabled_addons[title_id];
|
||||
if (parent_title_id) {
|
||||
const auto& shared = Settings::values.disabled_addons[*parent_title_id];
|
||||
disabled.insert(disabled.end(), shared.begin(), shared.end());
|
||||
}
|
||||
return disabled;
|
||||
}
|
||||
|
||||
VirtualDir PatchManager::PatchExeFS(VirtualDir exefs) const {
|
||||
LOG_INFO(Loader, "Patching ExeFS for title_id={:016X}", title_id);
|
||||
|
||||
if (exefs == nullptr)
|
||||
return exefs;
|
||||
|
||||
const auto& disabled = Settings::values.disabled_addons[title_id];
|
||||
const auto disabled = GetDisabledAddons();
|
||||
|
||||
bool update_disabled = true;
|
||||
std::optional<u32> enabled_version;
|
||||
@@ -303,8 +329,8 @@ VirtualDir PatchManager::PatchExeFS(VirtualDir exefs) const {
|
||||
}
|
||||
|
||||
// LayeredExeFS
|
||||
const auto load_dir = fs_controller.GetModificationLoadRoot(title_id);
|
||||
const auto sdmc_load_dir = fs_controller.GetSDMCModificationLoadRoot(title_id);
|
||||
const auto load_dir = GetModificationLoadRoot();
|
||||
const auto sdmc_load_dir = GetModificationLoadRoot(true);
|
||||
|
||||
std::vector<VirtualDir> patch_dirs = {sdmc_load_dir};
|
||||
if (load_dir != nullptr) {
|
||||
@@ -346,7 +372,7 @@ VirtualDir PatchManager::PatchExeFS(VirtualDir exefs) const {
|
||||
}
|
||||
|
||||
std::vector<VirtualFile> PatchManager::CollectPatches(const std::vector<VirtualDir>& patch_dirs, const std::string& build_id) const {
|
||||
const auto& disabled = Settings::values.disabled_addons[title_id];
|
||||
const auto disabled = GetDisabledAddons();
|
||||
const auto nso_build_id = fmt::format("{:0<64}", build_id);
|
||||
|
||||
std::vector<VirtualFile> out;
|
||||
@@ -405,7 +431,7 @@ std::vector<u8> PatchManager::PatchNSO(const std::vector<u8>& nso, const std::st
|
||||
|
||||
LOG_INFO(Loader, "Patching NSO for name={}, build_id={}", name, build_id);
|
||||
|
||||
const auto load_dir = fs_controller.GetModificationLoadRoot(title_id);
|
||||
const auto load_dir = GetModificationLoadRoot();
|
||||
if (load_dir == nullptr) {
|
||||
LOG_ERROR(Loader, "Cannot load mods for invalid title_id={:016X}", title_id);
|
||||
return nso;
|
||||
@@ -448,7 +474,7 @@ bool PatchManager::HasNSOPatch(const BuildID& build_id_, std::string_view name)
|
||||
|
||||
LOG_INFO(Loader, "Querying NSO patch existence for build_id={}, name={}", build_id, name);
|
||||
|
||||
const auto load_dir = fs_controller.GetModificationLoadRoot(title_id);
|
||||
const auto load_dir = GetModificationLoadRoot();
|
||||
if (load_dir == nullptr) {
|
||||
LOG_ERROR(Loader, "Cannot load mods for invalid title_id={:016X}", title_id);
|
||||
return false;
|
||||
@@ -462,13 +488,13 @@ bool PatchManager::HasNSOPatch(const BuildID& build_id_, std::string_view name)
|
||||
}
|
||||
|
||||
std::vector<Core::Memory::CheatEntry> PatchManager::CreateCheatList(const BuildID& build_id_) const {
|
||||
const auto load_dir = fs_controller.GetModificationLoadRoot(title_id);
|
||||
const auto load_dir = GetModificationLoadRoot();
|
||||
if (load_dir == nullptr) {
|
||||
LOG_ERROR(Loader, "Cannot load mods for invalid title_id={:016X}", title_id);
|
||||
return {};
|
||||
}
|
||||
|
||||
const auto& disabled = Settings::values.disabled_addons[title_id];
|
||||
const auto disabled = GetDisabledAddons();
|
||||
auto patch_dirs = load_dir->GetSubdirectories();
|
||||
std::sort(patch_dirs.begin(), patch_dirs.end(), [](auto const& l, auto const& r) { return l->GetName() < r->GetName(); });
|
||||
|
||||
@@ -502,17 +528,16 @@ std::vector<Core::Memory::CheatEntry> PatchManager::CreateCheatList(const BuildI
|
||||
return out;
|
||||
}
|
||||
|
||||
static void ApplyLayeredFS(VirtualFile& romfs, u64 title_id, ContentRecordType type,
|
||||
const Service::FileSystem::FileSystemController& fs_controller) {
|
||||
const auto load_dir = fs_controller.GetModificationLoadRoot(title_id);
|
||||
const auto sdmc_load_dir = fs_controller.GetSDMCModificationLoadRoot(title_id);
|
||||
void PatchManager::ApplyLayeredFS(VirtualFile& romfs, ContentRecordType type) const {
|
||||
const auto load_dir = GetModificationLoadRoot();
|
||||
const auto sdmc_load_dir = GetModificationLoadRoot(true);
|
||||
if ((type != ContentRecordType::Program && type != ContentRecordType::Data &&
|
||||
type != ContentRecordType::HtmlDocument) ||
|
||||
(load_dir == nullptr && sdmc_load_dir == nullptr)) {
|
||||
return;
|
||||
}
|
||||
|
||||
const auto& disabled = Settings::values.disabled_addons[title_id];
|
||||
const auto disabled = GetDisabledAddons();
|
||||
std::vector<VirtualDir> patch_dirs = load_dir->GetSubdirectories();
|
||||
if (std::find(disabled.cbegin(), disabled.cend(), "SDMC") == disabled.cend()) {
|
||||
patch_dirs.push_back(sdmc_load_dir);
|
||||
@@ -591,7 +616,7 @@ VirtualFile PatchManager::PatchRomFS(const NCA* base_nca, VirtualFile base_romfs
|
||||
|
||||
// Game Updates
|
||||
const auto update_tid = GetUpdateTitleID(title_id);
|
||||
const auto& disabled = Settings::values.disabled_addons[title_id];
|
||||
const auto disabled = GetDisabledAddons();
|
||||
|
||||
bool update_disabled = true;
|
||||
std::optional<u32> enabled_version;
|
||||
@@ -698,7 +723,7 @@ VirtualFile PatchManager::PatchRomFS(const NCA* base_nca, VirtualFile base_romfs
|
||||
|
||||
// LayeredFS
|
||||
if (apply_layeredfs) {
|
||||
ApplyLayeredFS(romfs, title_id, type, fs_controller);
|
||||
ApplyLayeredFS(romfs, type);
|
||||
}
|
||||
|
||||
return romfs;
|
||||
@@ -1072,15 +1097,22 @@ std::vector<Patch> PatchManager::GetPatches(VirtualFile update_raw) const {
|
||||
std::optional<u32> PatchManager::GetGameVersion() const {
|
||||
const auto update_tid = GetUpdateTitleID(title_id);
|
||||
if (content_provider.HasEntry(update_tid, ContentRecordType::Program)) {
|
||||
return content_provider.GetEntryVersion(update_tid);
|
||||
const auto version = content_provider.GetEntryVersion(update_tid);
|
||||
return version || !parent_title_id ? version : content_provider.GetEntryVersion(GetUpdateTitleID(*parent_title_id));
|
||||
}
|
||||
|
||||
return content_provider.GetEntryVersion(title_id);
|
||||
const auto version = content_provider.GetEntryVersion(title_id);
|
||||
return version || !parent_title_id ? version : content_provider.GetEntryVersion(*parent_title_id);
|
||||
}
|
||||
|
||||
PatchManager::Metadata PatchManager::GetControlMetadata() const {
|
||||
const auto base_control_nca = content_provider.GetEntry(title_id, ContentRecordType::Control);
|
||||
if (base_control_nca == nullptr) {
|
||||
if (parent_title_id) {
|
||||
const auto control_id = content_provider.HasEntry(*parent_title_id, ContentRecordType::Control) ? *parent_title_id : GetUpdateTitleID(*parent_title_id);
|
||||
const PatchManager parent{control_id, fs_controller, content_provider};
|
||||
return parent.GetControlMetadata();
|
||||
}
|
||||
return {};
|
||||
}
|
||||
|
||||
|
||||
@@ -109,10 +109,14 @@ public:
|
||||
[[nodiscard]] static PatchManager::Metadata GetMetadataFromBaseOrUpdate(Core::System& system, u64 application_id) noexcept;
|
||||
|
||||
private:
|
||||
[[nodiscard]] VirtualDir GetModificationLoadRoot(bool sdmc = false) const;
|
||||
[[nodiscard]] std::vector<std::string> GetDisabledAddons() const;
|
||||
void ApplyLayeredFS(VirtualFile& romfs, ContentRecordType type) const;
|
||||
[[nodiscard]] std::vector<VirtualFile> CollectPatches(const std::vector<VirtualDir>& patch_dirs,
|
||||
const std::string& build_id) const;
|
||||
|
||||
u64 title_id;
|
||||
std::optional<u64> parent_title_id;
|
||||
const Service::FileSystem::FileSystemController& fs_controller;
|
||||
const ContentProvider& content_provider;
|
||||
};
|
||||
|
||||
@@ -5,6 +5,7 @@
|
||||
// SPDX-License-Identifier: GPL-2.0-or-later
|
||||
|
||||
#include <algorithm>
|
||||
#include <limits>
|
||||
#include <random>
|
||||
#include <regex>
|
||||
#include <openssl/evp.h>
|
||||
@@ -348,6 +349,22 @@ std::vector<ContentProviderEntry> ContentProvider::ListEntries() const {
|
||||
return ListEntriesFilter(std::nullopt, std::nullopt, std::nullopt);
|
||||
}
|
||||
|
||||
std::optional<u64> ContentProvider::GetParentApplicationId(u64 program_id) const {
|
||||
const auto application_id = GetBaseTitleID(program_id);
|
||||
const auto program_index = program_id - application_id;
|
||||
if (program_index == 0 || program_index > std::numeric_limits<u8>::max()) {
|
||||
return std::nullopt;
|
||||
}
|
||||
if (!ListEntriesFilter(TitleType::Application, ContentRecordType::Meta, program_id).empty()) {
|
||||
return std::nullopt;
|
||||
}
|
||||
if ((!ListEntriesFilter(TitleType::Application, ContentRecordType::Meta, application_id).empty() && HasEntry(program_id, ContentRecordType::Program))
|
||||
|| (!ListEntriesFilter(TitleType::Update, ContentRecordType::Meta, GetUpdateTitleID(application_id)).empty() && HasEntry(GetUpdateTitleID(program_id), ContentRecordType::Program))) {
|
||||
return application_id;
|
||||
}
|
||||
return std::nullopt;
|
||||
}
|
||||
|
||||
PlaceholderCache::PlaceholderCache(VirtualDir dir_) : dir(std::move(dir_)) {}
|
||||
|
||||
bool PlaceholderCache::Create(const NcaID& id, u64 size) const {
|
||||
|
||||
@@ -100,6 +100,8 @@ public:
|
||||
std::optional<TitleType> title_type = {}, std::optional<ContentRecordType> record_type = {},
|
||||
std::optional<u64> title_id = {}) const = 0;
|
||||
|
||||
[[nodiscard]] std::optional<u64> GetParentApplicationId(u64 program_id) const;
|
||||
|
||||
protected:
|
||||
// A single instance of KeyManager to be used by GetEntry()
|
||||
Core::Crypto::KeyManager& keys = Core::Crypto::KeyManager::Instance();
|
||||
|
||||
@@ -9,6 +9,7 @@
|
||||
#include "common/logging.h"
|
||||
#include "common/uuid.h"
|
||||
#include "core/core.h"
|
||||
#include "core/file_sys/registered_cache.h"
|
||||
#include "core/file_sys/savedata_factory.h"
|
||||
#include "core/file_sys/vfs/vfs.h"
|
||||
|
||||
@@ -61,17 +62,24 @@ SaveDataFactory::SaveDataFactory(Core::System& system_, ProgramId program_id_,
|
||||
|
||||
SaveDataFactory::~SaveDataFactory() = default;
|
||||
|
||||
std::string SaveDataFactory::GetSaveDataPath(SaveDataSpaceId space, SaveDataType type, u64 title_id, u128 user_id, u64 save_id) const {
|
||||
if (type == SaveDataType::Account || type == SaveDataType::Device) {
|
||||
const auto requested_id = title_id != 0 ? title_id : program_id;
|
||||
const auto parent_id = system.GetContentProvider().GetParentApplicationId(requested_id);
|
||||
title_id = parent_id.value_or(requested_id);
|
||||
}
|
||||
return GetFullPath(program_id, dir, space, type, title_id, user_id, save_id);
|
||||
}
|
||||
|
||||
VirtualDir SaveDataFactory::Create(SaveDataSpaceId space, const SaveDataAttribute& meta) const {
|
||||
const auto save_directory = GetFullPath(program_id, dir, space, meta.type, meta.program_id,
|
||||
meta.user_id, meta.system_save_data_id);
|
||||
const auto save_directory = GetSaveDataPath(space, meta.type, meta.program_id, meta.user_id, meta.system_save_data_id);
|
||||
|
||||
return dir->CreateDirectoryRelative(save_directory);
|
||||
}
|
||||
|
||||
VirtualDir SaveDataFactory::Open(SaveDataSpaceId space, const SaveDataAttribute& meta) const {
|
||||
|
||||
const auto save_directory = GetFullPath(program_id, dir, space, meta.type, meta.program_id,
|
||||
meta.user_id, meta.system_save_data_id);
|
||||
const auto save_directory = GetSaveDataPath(space, meta.type, meta.program_id, meta.user_id, meta.system_save_data_id);
|
||||
|
||||
auto out = dir->GetDirectoryRelative(save_directory);
|
||||
|
||||
@@ -154,8 +162,7 @@ std::string SaveDataFactory::GetUserGameSaveDataRoot(u128 user_id, bool future)
|
||||
|
||||
SaveDataSize SaveDataFactory::ReadSaveDataSize(SaveDataType type, u64 title_id,
|
||||
u128 user_id) const {
|
||||
const auto path =
|
||||
GetFullPath(program_id, dir, SaveDataSpaceId::User, type, title_id, user_id, 0);
|
||||
const auto path = GetSaveDataPath(SaveDataSpaceId::User, type, title_id, user_id, 0);
|
||||
const auto relative_dir = GetOrCreateDirectoryRelative(dir, path);
|
||||
|
||||
const auto size_file = relative_dir->GetFile(GetSaveDataSizeFileName());
|
||||
@@ -173,8 +180,7 @@ SaveDataSize SaveDataFactory::ReadSaveDataSize(SaveDataType type, u64 title_id,
|
||||
|
||||
void SaveDataFactory::WriteSaveDataSize(SaveDataType type, u64 title_id, u128 user_id,
|
||||
SaveDataSize new_value) const {
|
||||
const auto path =
|
||||
GetFullPath(program_id, dir, SaveDataSpaceId::User, type, title_id, user_id, 0);
|
||||
const auto path = GetSaveDataPath(SaveDataSpaceId::User, type, title_id, user_id, 0);
|
||||
const auto relative_dir = GetOrCreateDirectoryRelative(dir, path);
|
||||
|
||||
const auto size_file = relative_dir->CreateFile(GetSaveDataSizeFileName());
|
||||
|
||||
@@ -1,3 +1,6 @@
|
||||
// SPDX-FileCopyrightText: Copyright 2026 Eden Emulator Project
|
||||
// SPDX-License-Identifier: GPL-3.0-or-later
|
||||
|
||||
// SPDX-FileCopyrightText: Copyright 2018 yuzu Emulator Project
|
||||
// SPDX-License-Identifier: GPL-2.0-or-later
|
||||
|
||||
@@ -47,6 +50,7 @@ public:
|
||||
void SetAutoCreate(bool state);
|
||||
|
||||
private:
|
||||
std::string GetSaveDataPath(SaveDataSpaceId space, SaveDataType type, u64 title_id, u128 user_id, u64 save_id) const;
|
||||
Core::System& system;
|
||||
ProgramId program_id;
|
||||
VirtualDir dir;
|
||||
|
||||
@@ -465,6 +465,10 @@ void KScheduler::ScheduleImplFiber(KernelCore& kernel) {
|
||||
// Check if we need scheduling. If we do, then we can't complete the switch and should
|
||||
// retry.
|
||||
if (m_state.needs_scheduling.load(std::memory_order_seq_cst)) {
|
||||
// Some libc++ lazily init mutex
|
||||
[[maybe_unused]] auto const can_lock = highest_priority_thread->m_context_guard.try_lock();
|
||||
DEBUG_ASSERT(!can_lock);
|
||||
|
||||
// Our switch failed.
|
||||
// We should unlock the thread context, and then retry.
|
||||
highest_priority_thread->m_context_guard.unlock();
|
||||
@@ -496,6 +500,10 @@ void KScheduler::Unload(KernelCore& kernel, KThread* thread) {
|
||||
|
||||
// Check if the thread is terminated by checking the DPC flags.
|
||||
if ((thread->GetStackParameters().dpc_flags & static_cast<u32>(DpcFlag::Terminated)) == 0) {
|
||||
// Some libc++ lazily init mutex
|
||||
[[maybe_unused]] auto const can_lock = thread->m_context_guard.try_lock();
|
||||
DEBUG_ASSERT(!can_lock);
|
||||
|
||||
// The thread isn't terminated, so we want to unlock it.
|
||||
thread->m_context_guard.unlock();
|
||||
}
|
||||
|
||||
@@ -23,6 +23,12 @@ constexpr std::size_t profile_username_size{32};
|
||||
using ProfileUsername = std::array<u8, profile_username_size>;
|
||||
using UserIDArray = std::array<Common::UUID, MAX_USERS>;
|
||||
|
||||
// This is nn::account::Uid
|
||||
struct Uid {
|
||||
std::array<u8, 0x10> unk0;
|
||||
};
|
||||
static_assert(sizeof(Uid) == 0x10);
|
||||
|
||||
/// Contains extra data related to a user.
|
||||
/// TODO: RE this structure
|
||||
struct UserData {
|
||||
|
||||
@@ -92,6 +92,13 @@ public:
|
||||
}
|
||||
}
|
||||
|
||||
void RequestFocusStateChangedNotification(Kernel::KernelCore& kernel) {
|
||||
if (m_focus_state_changed_notification_enabled) {
|
||||
m_has_focus_state_changed = true;
|
||||
this->SignalSystemEventIfNeeded(kernel);
|
||||
}
|
||||
}
|
||||
|
||||
void OnOperationAndPerformanceModeChanged(Kernel::KernelCore& kernel);
|
||||
|
||||
public:
|
||||
|
||||
@@ -164,14 +164,14 @@ Result ILibraryAppletAccessor::PushInData(SharedPointer<IStorage> storage) {
|
||||
Result ILibraryAppletAccessor::PopOutData(Out<SharedPointer<IStorage>> out_storage) {
|
||||
LOG_DEBUG(Service_AM, "called");
|
||||
|
||||
if (auto caller_applet = m_applet->caller_applet.lock(); caller_applet) {
|
||||
caller_applet->lifecycle_manager.GetSystemEvent().Signal(system.Kernel());
|
||||
caller_applet->lifecycle_manager.RequestResumeNotification();
|
||||
caller_applet->lifecycle_manager.GetSystemEvent().Clear(system.Kernel());
|
||||
caller_applet->lifecycle_manager.UpdateRequestedFocusState();
|
||||
}
|
||||
|
||||
R_TRY(m_broker->GetOutData().Pop(system.Kernel(), out_storage.Get()));
|
||||
if (auto caller_applet = m_applet->caller_applet.lock(); caller_applet) {
|
||||
std::scoped_lock lk{caller_applet->lock};
|
||||
const bool focus_state_changed = caller_applet->lifecycle_manager.UpdateRequestedFocusState();
|
||||
const bool is_front_app = m_applet->frontend && caller_applet->lifecycle_manager.IsApplication();
|
||||
if (focus_state_changed) caller_applet->lifecycle_manager.SignalSystemEventIfNeeded(system.Kernel());
|
||||
else if (is_front_app) caller_applet->lifecycle_manager.RequestFocusStateChangedNotification(system.Kernel());
|
||||
}
|
||||
|
||||
if (m_applet->applet_id == AppletId::ProfileSelect && *out_storage) {
|
||||
auto impl = (*out_storage)->GetImpl();
|
||||
|
||||
@@ -154,6 +154,9 @@ FSP_SRV::FSP_SRV(Core::System& system_)
|
||||
{720, nullptr, "AbandonAccessFailure"},
|
||||
{800, nullptr, "GetAndClearFileSystemProxyErrorInfo"},
|
||||
{810, nullptr, "RegisterProgramIndexMapInfo"},
|
||||
{820, nullptr, "GetContentStorageInfoIndex"},
|
||||
{830, nullptr, "EncryptStreamPlaySaveData"},
|
||||
{831, nullptr, "DecryptStreamPlaySaveData"},
|
||||
{1000, nullptr, "SetBisRootForHost"},
|
||||
{1001, nullptr, "SetSaveDataSize"},
|
||||
{1002, nullptr, "SetSaveDataRootPath"},
|
||||
|
||||
@@ -121,7 +121,7 @@ IHidSystemServer::IHidSystemServer(Core::System& system_, std::shared_ptr<Resour
|
||||
{547, nullptr, "GetAllowedBluetoothLinksCount"},
|
||||
{548, &IHidSystemServer::GetRegisteredDevices, "GetRegisteredDevices"},
|
||||
{549, nullptr, "GetConnectableRegisteredDevices"},
|
||||
{551, nullptr, "GetRegisteredDevicesForControllerSupport"}, //20.0.0+
|
||||
{551, &IHidSystemServer::GetRegisteredDevices, "GetRegisteredDevicesForControllerSupport"}, //20.0.0+ //mocked via 548 for Diablo 3 (at least)
|
||||
{700, nullptr, "ActivateUniquePad"},
|
||||
{702, &IHidSystemServer::AcquireUniquePadConnectionEventHandle, "AcquireUniquePadConnectionEventHandle"},
|
||||
{703, &IHidSystemServer::GetUniquePadIds, "GetUniquePadIds"},
|
||||
@@ -758,7 +758,7 @@ void IHidSystemServer::AcquireDeviceRegisteredEventForControllerSupport(HLEReque
|
||||
}
|
||||
|
||||
void IHidSystemServer::GetRegisteredDevices(HLERequestContext& ctx) {
|
||||
LOG_WARNING(Service_HID, "(STUBBED) called");
|
||||
LOG_WARNING(Service_HID, "(STUBBED) called, command={}", ctx.GetCommand()); //548 or 551
|
||||
|
||||
struct RegisterData {
|
||||
std::array<u8, 0x68> data;
|
||||
|
||||
@@ -22,6 +22,7 @@
|
||||
|
||||
namespace IPC {
|
||||
|
||||
constexpr Result ResultNotSupported{ErrorModule::HIPC, 1};
|
||||
constexpr Result ResultSessionClosed{ErrorModule::HIPC, 301};
|
||||
|
||||
struct ResponseBuilder {
|
||||
|
||||
@@ -71,17 +71,14 @@ public:
|
||||
void InstructionSynchronizationBarrierRaised() override {
|
||||
last_code_addr = u64(-1); //reset back, force refetch
|
||||
}
|
||||
u8 MemoryRead8(u64 vaddr) override {
|
||||
return ReadMemory<u8>(vaddr);
|
||||
}
|
||||
u16 MemoryRead16(u64 vaddr) override {
|
||||
return ReadMemory<u16>(vaddr);
|
||||
}
|
||||
u32 MemoryRead32(u64 vaddr) override {
|
||||
return ReadMemory<u32>(vaddr);
|
||||
}
|
||||
u64 MemoryRead64(u64 vaddr) override {
|
||||
return ReadMemory<u64>(vaddr);
|
||||
u64 MemoryRead(u64 vaddr, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64): return ReadMemory<u64>(vaddr);
|
||||
case sizeof(u32): return ReadMemory<u32>(vaddr);
|
||||
case sizeof(u16): return ReadMemory<u16>(vaddr);
|
||||
case sizeof(u8): return ReadMemory<u8>(vaddr);
|
||||
default: UNREACHABLE();
|
||||
}
|
||||
}
|
||||
u128 MemoryRead128(u64 vaddr) override {
|
||||
return ReadMemory<u128>(vaddr);
|
||||
@@ -89,22 +86,19 @@ public:
|
||||
std::string MemoryReadCString(u64 vaddr) {
|
||||
std::string result{};
|
||||
u8 next;
|
||||
while ((next = MemoryRead8(vaddr++)) != 0)
|
||||
while ((next = u8(MemoryRead(vaddr++, sizeof(u8)))) != 0)
|
||||
result += char(next);
|
||||
return result;
|
||||
}
|
||||
|
||||
void MemoryWrite8(u64 vaddr, u8 value) override {
|
||||
WriteMemory<u8>(vaddr, value);
|
||||
}
|
||||
void MemoryWrite16(u64 vaddr, u16 value) override {
|
||||
WriteMemory<u16>(vaddr, value);
|
||||
}
|
||||
void MemoryWrite32(u64 vaddr, u32 value) override {
|
||||
WriteMemory<u32>(vaddr, value);
|
||||
}
|
||||
void MemoryWrite64(u64 vaddr, u64 value) override {
|
||||
WriteMemory<u64>(vaddr, value);
|
||||
void MemoryWrite(u64 vaddr, u64 value, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64): WriteMemory<u64>(vaddr, u64(value)); break;
|
||||
case sizeof(u32): WriteMemory<u32>(vaddr, u32(value)); break;
|
||||
case sizeof(u16): WriteMemory<u16>(vaddr, u16(value)); break;
|
||||
case sizeof(u8): WriteMemory<u8>(vaddr, u8(value)); break;
|
||||
default: UNREACHABLE();
|
||||
}
|
||||
}
|
||||
void MemoryWrite128(u64 vaddr, u128 value) override {
|
||||
WriteMemory<u128>(vaddr, value);
|
||||
@@ -193,14 +187,14 @@ public:
|
||||
// The loaded NRO file has ELF relocations that must be processed before it can run.
|
||||
// Normally this would be processed by RTLD, but in HLE context, we don't have
|
||||
// the linker available, so we have to do it ourselves.
|
||||
const VAddr mod_offset{callbacks->MemoryRead32(4)};
|
||||
if (callbacks->MemoryRead32(mod_offset) != Common::MakeMagic('M', 'O', 'D', '0'))
|
||||
const VAddr mod_offset{callbacks->MemoryRead(4, sizeof(u32))};
|
||||
if (callbacks->MemoryRead(mod_offset, sizeof(u32)) != Common::MakeMagic('M', 'O', 'D', '0'))
|
||||
return false;
|
||||
|
||||
// For more info about dynamic entries, see the ELF ABI specification:
|
||||
// https://refspecs.linuxbase.org/elf/gabi4+/ch5.dynamic.html
|
||||
// https://refspecs.linuxbase.org/elf/gabi4+/ch4.reloc.html
|
||||
VAddr dynamic_offset{mod_offset + callbacks->MemoryRead32(mod_offset + 4)};
|
||||
VAddr dynamic_offset{mod_offset + callbacks->MemoryRead(mod_offset + 4, sizeof(u32))};
|
||||
VAddr rela_dyn = 0, relr_dyn = 0;
|
||||
size_t num_rela = 0, num_relr = 0;
|
||||
while (true) {
|
||||
@@ -222,8 +216,8 @@ public:
|
||||
for (size_t i = 0; i < num_rela; i++) {
|
||||
const auto rela{callbacks->ReadMemory<Elf64_Rela>(rela_dyn + i * sizeof(Elf64_Rela))};
|
||||
if (Elf64RelType(rela.r_info) == ElfAArch64Relative) {
|
||||
const VAddr contents{callbacks->MemoryRead64(rela.r_offset)};
|
||||
callbacks->MemoryWrite64(rela.r_offset, contents + rela.r_addend);
|
||||
const VAddr contents{callbacks->MemoryRead(rela.r_offset, sizeof(u64))};
|
||||
callbacks->MemoryWrite(rela.r_offset, contents + rela.r_addend, sizeof(u64));
|
||||
}
|
||||
}
|
||||
|
||||
@@ -231,7 +225,7 @@ public:
|
||||
for (size_t i = 0; i < num_relr; i++) {
|
||||
const auto relr = callbacks->ReadMemory<Elf64_Relr>(relr_dyn + i * sizeof(Elf64_Relr));
|
||||
const auto incr = [&](VAddr where) {
|
||||
callbacks->MemoryWrite64(where, callbacks->MemoryRead64(where) + relocbase);
|
||||
callbacks->MemoryWrite(where, callbacks->MemoryRead(where, sizeof(u64)) + relocbase, sizeof(u64));
|
||||
};
|
||||
if ((relr & 1) == 0) {
|
||||
// where pointer
|
||||
@@ -294,7 +288,7 @@ public:
|
||||
if (argument_stack.size() > 8) {
|
||||
const VAddr new_sp = Common::AlignDown(top_of_stack - (argument_stack.size() - 8) * sizeof(u64), STACK_ALIGN);
|
||||
for (size_t i = 8; i < argument_stack.size(); i++)
|
||||
callbacks->MemoryWrite64(new_sp + (i - 8) * sizeof(u64), argument_stack[i]);
|
||||
callbacks->MemoryWrite(new_sp + (i - 8) * sizeof(u64), argument_stack[i], sizeof(u64));
|
||||
jit->SetSP(new_sp);
|
||||
}
|
||||
// Reset the call state for the next invocation
|
||||
@@ -385,17 +379,17 @@ void DynarmicCallbacks64::CallSVC(u32 swi) {
|
||||
|
||||
if (dest < src) {
|
||||
for (size_t i = 0; i < n; i++)
|
||||
MemoryWrite8(dest + i, MemoryRead8(src + i));
|
||||
MemoryWrite(dest + i, u8(MemoryRead(src + i, sizeof(u8))), sizeof(u8));
|
||||
} else {
|
||||
for (size_t i = n; i > 0; i--)
|
||||
MemoryWrite8(dest + i - 1, MemoryRead8(src + i - 1));
|
||||
MemoryWrite(dest + i - 1, u8(MemoryRead(src + i - 1, sizeof(u8))), sizeof(u8));
|
||||
}
|
||||
} else if (pc == parent.helpers[size_t(HelperFn::Memset)]) {
|
||||
const VAddr dest{parent.jit->GetRegister(0)};
|
||||
const u64 c{parent.jit->GetRegister(1)};
|
||||
const size_t n{parent.jit->GetRegister(2)};
|
||||
for (size_t i = 0; i < n; i++)
|
||||
MemoryWrite8(dest + i, u8(c));
|
||||
MemoryWrite(dest + i, u8(c), sizeof(u8));
|
||||
} else if (pc == parent.helpers[size_t(HelperFn::Resolve)]) {
|
||||
// X0 contains a char* for a symbol to resolve
|
||||
const auto name{MemoryReadCString(parent.jit->GetRegister(0))};
|
||||
@@ -422,7 +416,7 @@ void DynarmicCallbacks64::CallSVC(u32 swi) {
|
||||
}
|
||||
|
||||
void DynarmicCallbacks64::ExceptionRaised(u64 pc, Dynarmic::A64::Exception exception) {
|
||||
auto const inst = MemoryRead32(pc);
|
||||
auto const inst = MemoryRead(pc, sizeof(u32));
|
||||
LOG_CRITICAL(Service_JIT, "{} PC @ {:08x}, data = {:08x}", exception, pc, inst);
|
||||
parent.jit->HaltExecution();
|
||||
}
|
||||
|
||||
@@ -6,10 +6,16 @@
|
||||
|
||||
#include "common/string_util.h"
|
||||
#include "core/core.h"
|
||||
#include "core/hle/kernel/k_client_session.h"
|
||||
#include "core/hle/result.h"
|
||||
#include "core/hle/service/acc/profile_manager.h"
|
||||
#include "core/hle/service/cmif_types.h"
|
||||
#include "core/hle/service/cmif_serialization.h"
|
||||
#include "core/hle/service/ipc_helpers.h"
|
||||
#include "core/hle/service/ngc/ngc.h"
|
||||
#include "core/hle/service/server_manager.h"
|
||||
#include "core/hle/service/service.h"
|
||||
#include "frontend_common/firmware_manager.h"
|
||||
|
||||
namespace Service::NGC {
|
||||
|
||||
@@ -166,12 +172,123 @@ public:
|
||||
}
|
||||
};
|
||||
|
||||
struct SaveDataHandle {
|
||||
u64 unk0;
|
||||
};
|
||||
static_assert(sizeof(SaveDataHandle) == 0x08);
|
||||
|
||||
class IUserShimScopedObject final : public ServiceFramework<IUserShimScopedObject> {
|
||||
public:
|
||||
explicit IUserShimScopedObject(Core::System& system_) : ServiceFramework(system_, "IUserShimScopedObject") {
|
||||
// clang-format off
|
||||
static const FunctionInfo functions[] = {
|
||||
{450, nullptr, "InitializeForSaveData"},
|
||||
{451, nullptr, "FinalizeForSaveData"},
|
||||
{452, D<&IUserShimScopedObject::OpenSaveData>, "OpenSaveData"},
|
||||
{453, nullptr, "CloseSaveData"},
|
||||
{454, D<&IUserShimScopedObject::ReadSaveSlot>, "ReadSaveSlot"},
|
||||
{455, D<&IUserShimScopedObject::WriteSaveSlot>, "WriteSaveSlot"},
|
||||
{456, nullptr, "FlushSaveSlot"},
|
||||
{457, nullptr, "CommitSaveData"},
|
||||
};
|
||||
// clang-format on
|
||||
RegisterHandlers(functions);
|
||||
}
|
||||
|
||||
Result OpenSaveData(Account::Uid unk0, Out<SaveDataHandle> unk1) {
|
||||
LOG_WARNING(Service_NGC, "stubbed");
|
||||
R_THROW(IPC::ResultNotSupported);
|
||||
}
|
||||
|
||||
Result ReadSaveSlot(s32 offset, SaveDataHandle handle, OutBuffer<BufferAttr_HipcAutoSelect> out_data, Out<u32> out_size) {
|
||||
LOG_WARNING(Service_NGC, "stubbed");
|
||||
R_THROW(IPC::ResultNotSupported);
|
||||
}
|
||||
|
||||
Result WriteSaveSlot(s32 offset, SaveDataHandle handle, InBuffer<BufferAttr_HipcAutoSelect> out_data) {
|
||||
LOG_WARNING(Service_NGC, "stubbed");
|
||||
// to implement
|
||||
R_SUCCEED();
|
||||
}
|
||||
};
|
||||
|
||||
class IUserService final : public ServiceFramework<IUserService> {
|
||||
public:
|
||||
explicit IUserService(Core::System& system_) : ServiceFramework(system_, "stpl:u") {
|
||||
// clang-format off
|
||||
static const FunctionInfo functions[] = {
|
||||
{0 , D<&IUserService::Cmd0>, "Cmd0"},
|
||||
};
|
||||
// clang-format on
|
||||
RegisterHandlers(functions);
|
||||
}
|
||||
Result Cmd0(u32 unk0, OutInterface<IUserShimScopedObject> out_interface) {
|
||||
LOG_WARNING(Service_NGC, "stubbed");
|
||||
*out_interface = std::make_shared<IUserShimScopedObject>(system);
|
||||
R_SUCCEED();
|
||||
}
|
||||
};
|
||||
|
||||
class ISystemShimScopedObject final : public ServiceFramework<ISystemShimScopedObject> {
|
||||
public:
|
||||
explicit ISystemShimScopedObject(Core::System& system_) : ServiceFramework(system_, "ISystemShimScopedObject") {
|
||||
// clang-format off
|
||||
static const FunctionInfo functions[] = {
|
||||
{106, nullptr, "Cmd106"},
|
||||
{107, nullptr, "Cmd107"},
|
||||
{108, D<&ISystemShimScopedObject::Cmd108>, "Cmd108"},
|
||||
{207, nullptr, "Cmd207"},
|
||||
{208, D<&ISystemShimScopedObject::Cmd208>, "Cmd208"},
|
||||
{209, nullptr, "Cmd209"},
|
||||
{210, nullptr, "Cmd210"},
|
||||
{211, nullptr, "Cmd211"},
|
||||
{212, nullptr, "Cmd212"},
|
||||
};
|
||||
// clang-format on
|
||||
RegisterHandlers(functions);
|
||||
}
|
||||
|
||||
Result Cmd108() {
|
||||
LOG_WARNING(Service_NGC, "stubbed");
|
||||
R_THROW(IPC::ResultNotSupported);
|
||||
}
|
||||
|
||||
Result Cmd208(Out<std::array<u8, 0x20>> unk0) {
|
||||
LOG_WARNING(Service_NGC, "stubbed");
|
||||
R_THROW(IPC::ResultNotSupported);
|
||||
}
|
||||
};
|
||||
|
||||
class ISystemService final : public ServiceFramework<ISystemService> {
|
||||
public:
|
||||
explicit ISystemService(Core::System& system_) : ServiceFramework(system_, "stpl:sys") {
|
||||
// clang-format off
|
||||
static const FunctionInfo functions[] = {
|
||||
{0 , D<&ISystemService::Cmd0>, "Cmd0"},
|
||||
};
|
||||
// clang-format on
|
||||
RegisterHandlers(functions);
|
||||
}
|
||||
Result Cmd0(OutInterface<ISystemShimScopedObject> out_interface) {
|
||||
LOG_WARNING(Service_NGC, "stubbed");
|
||||
*out_interface = std::make_shared<ISystemShimScopedObject>(system);
|
||||
R_SUCCEED();
|
||||
}
|
||||
};
|
||||
|
||||
void LoopProcess(Core::System& system) {
|
||||
auto server_manager = std::make_unique<ServerManager>(system);
|
||||
|
||||
server_manager->RegisterNamedService("ngct:u", std::make_shared<IService>(system), 4);
|
||||
server_manager->RegisterNamedService("ngct:s", std::make_shared<IServiceWithManagementApi>(system), 4);
|
||||
server_manager->RegisterNamedService("ngc:u", std::make_shared<NgcServiceImpl>(system), 4);
|
||||
|
||||
// +23.0.0
|
||||
if (FirmwareManager::GetFirmwareVersion(system).first.major >= 23) {
|
||||
server_manager->RegisterNamedService("stpl:u", std::make_shared<IUserService>(system), 4);
|
||||
server_manager->RegisterNamedService("stpl:sys", std::make_shared<ISystemService>(system), 4);
|
||||
}
|
||||
|
||||
ServerManager::RunServer(std::move(server_manager));
|
||||
}
|
||||
|
||||
|
||||
+218
-244
@@ -48,6 +48,12 @@ enum class OptionType : u32 {
|
||||
EnableAlpn = 3,
|
||||
};
|
||||
|
||||
// This is nn::ssl::sf::RenegotiationMode
|
||||
enum RenegotiationMode : u32 {
|
||||
None = 0, ///< None
|
||||
Secure = 1, ///< Secure
|
||||
};
|
||||
|
||||
// This is nn::ssl::sf::SslVersion
|
||||
struct SslVersion {
|
||||
union {
|
||||
@@ -75,34 +81,34 @@ public:
|
||||
shared_data{shared_data_in}, backend{std::move(backend_in)} {
|
||||
// clang-format off
|
||||
static const FunctionInfo functions[] = {
|
||||
{0, &ISslConnection::SetSocketDescriptor, "SetSocketDescriptor"},
|
||||
{1, &ISslConnection::SetHostName, "SetHostName"},
|
||||
{2, &ISslConnection::SetVerifyOption, "SetVerifyOption"},
|
||||
{3, &ISslConnection::SetIoMode, "SetIoMode"},
|
||||
{4, nullptr, "GetSocketDescriptor"},
|
||||
{5, nullptr, "GetHostName"},
|
||||
{0, D<&ISslConnection::SetSocketDescriptor>, "SetSocketDescriptor"},
|
||||
{1, D<&ISslConnection::SetHostName>, "SetHostName"},
|
||||
{2, D<&ISslConnection::SetVerifyOption>, "SetVerifyOption"},
|
||||
{3, D<&ISslConnection::SetIoMode>, "SetIoMode"},
|
||||
{4, D<&ISslConnection::GetSocketDescriptor>, "GetSocketDescriptor"},
|
||||
{5, D<&ISslConnection::GetHostName>, "GetHostName"},
|
||||
{6, nullptr, "GetVerifyOption"},
|
||||
{7, nullptr, "GetIoMode"},
|
||||
{8, &ISslConnection::DoHandshake, "DoHandshake"},
|
||||
{7, D<&ISslConnection::GetIoMode>, "GetIoMode"},
|
||||
{8, D<&ISslConnection::DoHandshake>, "DoHandshake"},
|
||||
{9, &ISslConnection::DoHandshakeGetServerCert, "DoHandshakeGetServerCert"},
|
||||
{10, &ISslConnection::Read, "Read"},
|
||||
{11, &ISslConnection::Write, "Write"},
|
||||
{12, &ISslConnection::Pending, "Pending"},
|
||||
{13, nullptr, "Peek"},
|
||||
{14, nullptr, "Poll"},
|
||||
{15, nullptr, "GetVerifyCertError"},
|
||||
{16, nullptr, "GetNeededServerCertBufferSize"},
|
||||
{17, &ISslConnection::SetSessionCacheMode, "SetSessionCacheMode"},
|
||||
{18, nullptr, "GetSessionCacheMode"},
|
||||
{19, nullptr, "FlushSessionCache"},
|
||||
{20, nullptr, "SetRenegotiationMode"},
|
||||
{21, nullptr, "GetRenegotiationMode"},
|
||||
{22, &ISslConnection::SetOption, "SetOption"},
|
||||
{23, &ISslConnection::GetOption, "GetOption"},
|
||||
{10, D<&ISslConnection::Read>, "Read"},
|
||||
{11, D<&ISslConnection::Write>, "Write"},
|
||||
{12, D<&ISslConnection::Pending>, "Pending"},
|
||||
{13, D<&ISslConnection::Peek>, "Peek"},
|
||||
{14, D<&ISslConnection::Poll>, "Poll"},
|
||||
{15, D<&ISslConnection::GetVerifyCertError>, "GetVerifyCertError"},
|
||||
{16, D<&ISslConnection::GetNeededServerCertBufferSize>, "GetNeededServerCertBufferSize"},
|
||||
{17, D<&ISslConnection::SetSessionCacheMode>, "SetSessionCacheMode"},
|
||||
{18, D<&ISslConnection::GetSessionCacheMode>, "GetSessionCacheMode"},
|
||||
{19, D<&ISslConnection::FlushSessionCache>, "FlushSessionCache"},
|
||||
{20, D<&ISslConnection::SetRenegotiationMode>, "SetRenegotiationMode"},
|
||||
{21, D<&ISslConnection::GetRenegotiationMode>, "GetRenegotiationMode"},
|
||||
{22, D<&ISslConnection::SetOption>, "SetOption"},
|
||||
{23, D<&ISslConnection::GetOption>, "GetOption"},
|
||||
{24, nullptr, "GetVerifyCertErrors"},
|
||||
{25, nullptr, "GetCipherInfo"},
|
||||
{26, &ISslConnection::SetNextAlpnProto, "SetNextAlpnProto"},
|
||||
{27, &ISslConnection::GetNextAlpnProto, "GetNextAlpnProto"},
|
||||
{26, D<&ISslConnection::SetNextAlpnProto>, "SetNextAlpnProto"},
|
||||
{27, D<&ISslConnection::GetNextAlpnProto>, "GetNextAlpnProto"},
|
||||
{28, nullptr, "SetDtlsSocketDescriptor"},
|
||||
{29, nullptr, "GetDtlsHandshakeTimeout"},
|
||||
{30, nullptr, "SetPrivateOption"},
|
||||
@@ -141,80 +147,6 @@ public:
|
||||
}
|
||||
|
||||
private:
|
||||
SslVersion ssl_version;
|
||||
std::shared_ptr<SslContextSharedData> shared_data;
|
||||
std::unique_ptr<SSLConnectionBackend> backend;
|
||||
std::optional<int> fd_to_close;
|
||||
bool do_not_close_socket = false;
|
||||
bool get_server_cert_chain = false;
|
||||
bool skip_default_verify = false;
|
||||
bool enable_alpn = false;
|
||||
std::shared_ptr<Network::SocketBase> socket;
|
||||
std::vector<u8> next_alpn_proto;
|
||||
bool did_handshake = false;
|
||||
u32 verify_option = 0;
|
||||
|
||||
Result SetSocketDescriptorImpl(s32* out_fd, s32 fd) {
|
||||
LOG_DEBUG(Service_SSL, "called, fd={}", fd);
|
||||
ASSERT(!did_handshake);
|
||||
auto bsd = system.ServiceManager().GetService<Service::Sockets::BSD_USA>("bsd:u");
|
||||
ASSERT_OR_EXECUTE(bsd, { return ResultInternalError; });
|
||||
|
||||
auto const res_v = bsd->DuplicateSocketImpl(fd);
|
||||
if (auto *res = std::get_if<s32>(&res_v)) {
|
||||
const s32 duplicated_fd = *res;
|
||||
if (do_not_close_socket) {
|
||||
*out_fd = duplicated_fd;
|
||||
} else {
|
||||
*out_fd = -1;
|
||||
fd_to_close = duplicated_fd;
|
||||
}
|
||||
std::optional<std::shared_ptr<Network::SocketBase>> sock = bsd->GetSocket(duplicated_fd);
|
||||
if (!sock.has_value()) {
|
||||
LOG_ERROR(Service_SSL, "invalid socket fd {} after duplication", duplicated_fd);
|
||||
return ResultInvalidSocket;
|
||||
}
|
||||
socket = std::move(*sock);
|
||||
backend->SetSocket(socket);
|
||||
return ResultSuccess;
|
||||
}
|
||||
LOG_ERROR(Service_SSL, "Failed to duplicate socket with fd {}", fd);
|
||||
return ResultInvalidSocket;
|
||||
}
|
||||
|
||||
Result SetHostNameImpl(const std::string& hostname) {
|
||||
LOG_DEBUG(Service_SSL, "called. hostname={}", hostname);
|
||||
ASSERT(!did_handshake);
|
||||
return backend->SetHostName(hostname);
|
||||
}
|
||||
|
||||
Result SetVerifyOptionImpl(u32 option) {
|
||||
ASSERT(!did_handshake);
|
||||
LOG_DEBUG(Service_SSL, "called. option={} (forcing 0)", option);
|
||||
verify_option = 0;
|
||||
backend->SetVerifyOption(0);
|
||||
return ResultSuccess;
|
||||
}
|
||||
|
||||
Result SetIoModeImpl(u32 input_mode) {
|
||||
auto mode = static_cast<IoMode>(input_mode);
|
||||
ASSERT(mode == IoMode::Blocking || mode == IoMode::NonBlocking);
|
||||
ASSERT_OR_EXECUTE(socket, { return ResultNoSocket; });
|
||||
|
||||
const bool non_block = mode == IoMode::NonBlocking;
|
||||
const Network::Errno error = socket->SetNonBlock(non_block);
|
||||
if (error != Network::Errno::SUCCESS) {
|
||||
LOG_ERROR(Service_SSL, "Failed to set native socket non-block flag to {}", non_block);
|
||||
}
|
||||
return ResultSuccess;
|
||||
}
|
||||
|
||||
Result SetSessionCacheModeImpl(u32 mode) {
|
||||
ASSERT(!did_handshake);
|
||||
LOG_WARNING(Service_SSL, "(STUBBED) called. value={}", mode);
|
||||
return ResultSuccess;
|
||||
}
|
||||
|
||||
Result DoHandshakeImpl() {
|
||||
ASSERT_OR_EXECUTE(!did_handshake && socket, { return ResultNoSocket; });
|
||||
Result res = backend->DoHandshake();
|
||||
@@ -234,19 +166,17 @@ private:
|
||||
};
|
||||
if (!get_server_cert_chain) {
|
||||
// Just return the first one, unencoded.
|
||||
ASSERT_OR_EXECUTE_MSG(
|
||||
!certs.empty(), { return {}; }, "Should be at least one server cert");
|
||||
ASSERT_OR_EXECUTE_MSG(!certs.empty(), { return {}; }, "Should be at least one server cert");
|
||||
return certs[0];
|
||||
}
|
||||
std::vector<u8> ret;
|
||||
Header header{0x4E4D684374726543, static_cast<u32>(certs.size()), 0};
|
||||
Header header{0x4E4D684374726543, u32(certs.size()), 0};
|
||||
ret.insert(ret.end(), reinterpret_cast<u8*>(&header), reinterpret_cast<u8*>(&header + 1));
|
||||
size_t data_offset = sizeof(Header) + certs.size() * sizeof(EntryHeader);
|
||||
for (auto& cert : certs) {
|
||||
EntryHeader entry_header{static_cast<u32>(cert.size()), static_cast<u32>(data_offset)};
|
||||
EntryHeader entry_header{u32(cert.size()), u32(data_offset)};
|
||||
data_offset += cert.size();
|
||||
ret.insert(ret.end(), reinterpret_cast<u8*>(&entry_header),
|
||||
reinterpret_cast<u8*>(&entry_header + 1));
|
||||
ret.insert(ret.end(), reinterpret_cast<u8*>(&entry_header), reinterpret_cast<u8*>(&entry_header + 1));
|
||||
}
|
||||
for (auto& cert : certs) {
|
||||
ret.insert(ret.end(), cert.begin(), cert.end());
|
||||
@@ -254,65 +184,77 @@ private:
|
||||
return ret;
|
||||
}
|
||||
|
||||
Result ReadImpl(std::vector<u8>* out_data) {
|
||||
ASSERT_OR_EXECUTE(did_handshake, { return ResultInternalError; });
|
||||
size_t actual_size{};
|
||||
Result res = backend->Read(&actual_size, *out_data);
|
||||
if (res != ResultSuccess) {
|
||||
return res;
|
||||
Result SetSocketDescriptor(s32 in_fd, Out<s32> out_fd) {
|
||||
LOG_DEBUG(Service_SSL, "called, fd={}", in_fd);
|
||||
ASSERT(!did_handshake);
|
||||
auto bsd = system.ServiceManager().GetService<Service::Sockets::BSD_USA>("bsd:u");
|
||||
ASSERT_OR_EXECUTE(bsd, { return ResultInternalError; });
|
||||
|
||||
auto const res_v = bsd->DuplicateSocketImpl(in_fd);
|
||||
if (auto *res = std::get_if<s32>(&res_v)) {
|
||||
const s32 dup_fd = *res;
|
||||
*out_fd = do_not_close_socket ? dup_fd : -1;
|
||||
if (!do_not_close_socket)
|
||||
fd_to_close = dup_fd;
|
||||
auto const sock = bsd->GetSocket(dup_fd);
|
||||
if (!sock.has_value()) {
|
||||
LOG_ERROR(Service_SSL, "invalid socket fd {} after duplication", dup_fd);
|
||||
return ResultInvalidSocket;
|
||||
}
|
||||
socket = std::move(*sock);
|
||||
backend->SetSocket(std::move(socket));
|
||||
return ResultSuccess;
|
||||
}
|
||||
out_data->resize(actual_size);
|
||||
return res;
|
||||
LOG_ERROR(Service_SSL, "Failed to duplicate socket with fd {}", in_fd);
|
||||
return ResultInvalidSocket;
|
||||
}
|
||||
|
||||
Result WriteImpl(size_t* out_size, std::span<const u8> data) {
|
||||
ASSERT_OR_EXECUTE(did_handshake, { return ResultInternalError; });
|
||||
return backend->Write(out_size, data);
|
||||
Result SetHostName(InBuffer<BufferAttr_HipcMapAlias> buf) {
|
||||
auto const hostname = Common::StringFromBuffer(buf);
|
||||
LOG_DEBUG(Service_SSL, "called. hostname={}", hostname);
|
||||
ASSERT(!did_handshake);
|
||||
return backend->SetHostName(hostname.c_str());
|
||||
}
|
||||
|
||||
Result PendingImpl(s32* out_pending) {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED) called.");
|
||||
*out_pending = 0;
|
||||
return ResultSuccess;
|
||||
Result SetVerifyOption(u32 option) {
|
||||
LOG_DEBUG(Service_SSL, "called. option={} (forcing 0)", option);
|
||||
ASSERT(!did_handshake);
|
||||
verify_option = 0;
|
||||
backend->SetVerifyOption(0);
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
void SetSocketDescriptor(HLERequestContext& ctx) {
|
||||
IPC::RequestParser rp{ctx};
|
||||
const s32 in_fd = rp.Pop<s32>();
|
||||
s32 out_fd{-1};
|
||||
const Result res = SetSocketDescriptorImpl(&out_fd, in_fd);
|
||||
IPC::ResponseBuilder rb{ctx, 3};
|
||||
rb.Push(res);
|
||||
rb.Push<s32>(out_fd);
|
||||
Result SetIoMode(u32 input_mode) {
|
||||
auto mode = IoMode(input_mode);
|
||||
ASSERT(mode == IoMode::Blocking || mode == IoMode::NonBlocking);
|
||||
R_UNLESS(socket, ResultNoSocket);
|
||||
const bool non_block = mode == IoMode::NonBlocking;
|
||||
const Network::Errno error = socket->SetNonBlock(non_block);
|
||||
if (error != Network::Errno::SUCCESS) {
|
||||
LOG_ERROR(Service_SSL, "Failed to set native socket non-block flag to {}", non_block);
|
||||
}
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
void SetHostName(HLERequestContext& ctx) {
|
||||
const std::string hostname = Common::StringFromBuffer(ctx.ReadBuffer());
|
||||
const Result res = SetHostNameImpl(hostname);
|
||||
IPC::ResponseBuilder rb{ctx, 2};
|
||||
rb.Push(res);
|
||||
Result GetSocketDescriptor(Out<u32> out_fd) {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED)");
|
||||
*out_fd = uint32_t(socket->GetFD());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
void SetVerifyOption(HLERequestContext& ctx) {
|
||||
IPC::RequestParser rp{ctx};
|
||||
const u32 option = rp.Pop<u32>();
|
||||
const Result res = SetVerifyOptionImpl(option);
|
||||
IPC::ResponseBuilder rb{ctx, 2};
|
||||
rb.Push(res);
|
||||
Result GetHostName(OutBuffer<BufferAttr_HipcMapAlias> data, Out<u32> out_size) {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED)");
|
||||
ASSERT(!did_handshake);
|
||||
return backend->GetHostName(std::span<u8>{data.begin(), data.end()}, out_size);
|
||||
}
|
||||
|
||||
void SetIoMode(HLERequestContext& ctx) {
|
||||
IPC::RequestParser rp{ctx};
|
||||
const u32 mode = rp.Pop<u32>();
|
||||
const Result res = SetIoModeImpl(mode);
|
||||
IPC::ResponseBuilder rb{ctx, 2};
|
||||
rb.Push(res);
|
||||
Result GetIoMode(Out<u32> out_mode) {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED)");
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
void DoHandshake(HLERequestContext& ctx) {
|
||||
const Result res = DoHandshakeImpl();
|
||||
IPC::ResponseBuilder rb{ctx, 2};
|
||||
rb.Push(res);
|
||||
Result DoHandshake() {
|
||||
return DoHandshakeImpl();
|
||||
}
|
||||
|
||||
void DoHandshakeGetServerCert(HLERequestContext& ctx) {
|
||||
@@ -351,131 +293,158 @@ private:
|
||||
rb.PushRaw(out);
|
||||
}
|
||||
|
||||
void Read(HLERequestContext& ctx) {
|
||||
std::vector<u8> output_bytes(ctx.GetWriteBufferSize());
|
||||
const Result res = ReadImpl(&output_bytes);
|
||||
IPC::ResponseBuilder rb{ctx, 3};
|
||||
rb.Push(res);
|
||||
if (res == ResultSuccess) {
|
||||
rb.Push(static_cast<u32>(output_bytes.size()));
|
||||
ctx.WriteBuffer(output_bytes);
|
||||
} else {
|
||||
rb.Push(static_cast<u32>(0));
|
||||
}
|
||||
Result Read(OutBuffer<BufferAttr_HipcMapAlias> data, Out<u32> out_size) {
|
||||
R_UNLESS(did_handshake, ResultInternalError);
|
||||
size_t tmp{};
|
||||
auto const res = backend->Read(&tmp, data);
|
||||
*out_size = u32(tmp);
|
||||
return res;
|
||||
}
|
||||
|
||||
void Write(HLERequestContext& ctx) {
|
||||
size_t write_size{0};
|
||||
const Result res = WriteImpl(&write_size, ctx.ReadBuffer());
|
||||
IPC::ResponseBuilder rb{ctx, 3};
|
||||
rb.Push(res);
|
||||
rb.Push(static_cast<u32>(write_size));
|
||||
Result Write(InBuffer<BufferAttr_HipcMapAlias> data, Out<u32> out_size) {
|
||||
R_UNLESS(did_handshake, ResultInternalError);
|
||||
size_t tmp{};
|
||||
auto const res = backend->Write(&tmp, data);
|
||||
*out_size = u32(tmp);
|
||||
return res;
|
||||
}
|
||||
|
||||
void Pending(HLERequestContext& ctx) {
|
||||
s32 pending_size{0};
|
||||
const Result res = PendingImpl(&pending_size);
|
||||
IPC::ResponseBuilder rb{ctx, 3};
|
||||
rb.Push(res);
|
||||
rb.Push<s32>(pending_size);
|
||||
Result Pending(Out<s32> out_pending_size) {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED)");
|
||||
*out_pending_size = s32(backend->Pending());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
void SetSessionCacheMode(HLERequestContext& ctx) {
|
||||
IPC::RequestParser rp{ctx};
|
||||
const u32 mode = rp.Pop<u32>();
|
||||
const Result res = SetSessionCacheModeImpl(mode);
|
||||
IPC::ResponseBuilder rb{ctx, 2};
|
||||
rb.Push(res);
|
||||
Result Peek(OutBuffer<BufferAttr_HipcMapAlias> data, Out<u32> out_size) {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED)");
|
||||
size_t tmp{};
|
||||
auto const res = backend->Peek(&tmp, data);
|
||||
*out_size = u32(tmp);
|
||||
return res;
|
||||
}
|
||||
|
||||
void SetOption(HLERequestContext& ctx) {
|
||||
struct Parameters {
|
||||
OptionType option;
|
||||
s32 value;
|
||||
};
|
||||
static_assert(sizeof(Parameters) == 0x8, "Parameters is an invalid size");
|
||||
|
||||
IPC::RequestParser rp{ctx};
|
||||
const auto parameters = rp.PopRaw<Parameters>();
|
||||
|
||||
switch (parameters.option) {
|
||||
case OptionType::DoNotCloseSocket:
|
||||
do_not_close_socket = static_cast<bool>(parameters.value);
|
||||
break;
|
||||
case OptionType::GetServerCertChain:
|
||||
get_server_cert_chain = static_cast<bool>(parameters.value);
|
||||
break;
|
||||
case OptionType::SkipDefaultVerify:
|
||||
skip_default_verify = static_cast<bool>(parameters.value);
|
||||
break;
|
||||
case OptionType::EnableAlpn:
|
||||
enable_alpn = static_cast<bool>(parameters.value);
|
||||
break;
|
||||
default:
|
||||
LOG_WARNING(Service_SSL, "Unknown option={}, value={}", parameters.option,
|
||||
parameters.value);
|
||||
}
|
||||
|
||||
IPC::ResponseBuilder rb{ctx, 2};
|
||||
rb.Push(ResultSuccess);
|
||||
Result Poll(u32 in_pollevent, u32 timer, Out<u32> out_pollevent) {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED)");
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
void GetOption(HLERequestContext& ctx) {
|
||||
IPC::RequestParser rp{ctx};
|
||||
const auto option = rp.PopRaw<OptionType>();
|
||||
Result GetVerifyCertError() {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED)");
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
u8 value = 0;
|
||||
Result GetNeededServerCertBufferSize(Out<u32> out_needed_buffer_size) {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED)");
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result SetSessionCacheMode(u32 mode) {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED) called. value={}", mode);
|
||||
R_UNLESS(!did_handshake, ResultInternalError);
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetSessionCacheMode(Out<u32> mode) {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED)");
|
||||
R_UNLESS(!did_handshake, ResultInternalError);
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result FlushSessionCache() {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED)");
|
||||
R_UNLESS(!did_handshake, ResultInternalError);
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result SetRenegotiationMode(RenegotiationMode mode) {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED)");
|
||||
backend->SetRenegotiationMode(u32(mode));
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetRenegotiationMode(Out<RenegotiationMode> mode) {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED)");
|
||||
u32 tmp{};
|
||||
auto const res = backend->GetRenegotiationMode(&tmp);
|
||||
*mode = RenegotiationMode(tmp);
|
||||
return res;
|
||||
}
|
||||
|
||||
Result SetOption(OptionType option, s32 value) {
|
||||
switch (option) {
|
||||
case OptionType::DoNotCloseSocket:
|
||||
value = static_cast<u8>(do_not_close_socket);
|
||||
do_not_close_socket = bool(value);
|
||||
break;
|
||||
case OptionType::GetServerCertChain:
|
||||
value = static_cast<u8>(get_server_cert_chain);
|
||||
get_server_cert_chain = bool(value);
|
||||
break;
|
||||
case OptionType::SkipDefaultVerify:
|
||||
value = static_cast<u8>(skip_default_verify);
|
||||
skip_default_verify = bool(value);
|
||||
break;
|
||||
case OptionType::EnableAlpn:
|
||||
value = static_cast<u8>(enable_alpn);
|
||||
enable_alpn = bool(value);
|
||||
break;
|
||||
default:
|
||||
LOG_WARNING(Service_SSL, "Unknown option={}", option);
|
||||
value = 0;
|
||||
LOG_WARNING(Service_SSL, "Unknown option={}, value={}", option, value);
|
||||
}
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetOption(OptionType option, Out<u8> value) {
|
||||
switch (option) {
|
||||
case OptionType::DoNotCloseSocket:
|
||||
*value = u8(do_not_close_socket);
|
||||
break;
|
||||
case OptionType::GetServerCertChain:
|
||||
*value = u8(get_server_cert_chain);
|
||||
break;
|
||||
case OptionType::SkipDefaultVerify:
|
||||
*value = u8(skip_default_verify);
|
||||
break;
|
||||
case OptionType::EnableAlpn:
|
||||
*value = u8(enable_alpn);
|
||||
break;
|
||||
default:
|
||||
LOG_WARNING(Service_SSL, "Unknown option={}", u32(option));
|
||||
*value = 0;
|
||||
break;
|
||||
}
|
||||
|
||||
LOG_DEBUG(Service_SSL, "GetOption called, option={}, ret value={}", option, value);
|
||||
|
||||
IPC::ResponseBuilder rb{ctx, 3};
|
||||
rb.Push(ResultSuccess);
|
||||
rb.Push<u8>(value);
|
||||
LOG_DEBUG(Service_SSL, "GetOption called, option={}, ret value={}", u32(option), *value);
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
void SetNextAlpnProto(HLERequestContext& ctx) {
|
||||
const auto data = ctx.ReadBuffer(0);
|
||||
next_alpn_proto.assign(data.begin(), data.end());
|
||||
|
||||
Result SetNextAlpnProto(InBuffer<BufferAttr_HipcMapAlias> data) {
|
||||
auto const to_write = u32((std::min)(next_alpn_proto.size(), data.size()));
|
||||
next_alpn_proto.assign(data.begin(), data.begin() + to_write);
|
||||
LOG_DEBUG(Service_SSL, "SetNextAlpnProto called, size={}", next_alpn_proto.size());
|
||||
|
||||
IPC::ResponseBuilder rb{ctx, 2};
|
||||
rb.Push(ResultSuccess);
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
void GetNextAlpnProto(HLERequestContext& ctx) {
|
||||
const size_t writable = ctx.GetWriteBufferSize();
|
||||
const size_t to_write = (std::min)(next_alpn_proto.size(), writable);
|
||||
|
||||
if (to_write != 0) {
|
||||
ctx.WriteBuffer(std::span<const u8>(next_alpn_proto.data(), to_write));
|
||||
}
|
||||
|
||||
LOG_DEBUG(Service_SSL, "GetNextAlpnProto called, size={}", to_write);
|
||||
|
||||
IPC::ResponseBuilder rb{ctx, 3};
|
||||
rb.Push(ResultSuccess);
|
||||
rb.Push<u32>(static_cast<u32>(to_write));
|
||||
Result GetNextAlpnProto(OutBuffer<BufferAttr_HipcMapAlias> data, Out<u32> to_write) {
|
||||
*to_write = u32((std::min)(next_alpn_proto.size(), data.size()));
|
||||
next_alpn_proto.assign(data.begin(), data.begin() + *to_write);
|
||||
LOG_DEBUG(Service_SSL, "GetNextAlpnProto called, size={}", *to_write);
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetVerifyCertErrors(OutBuffer<BufferAttr_HipcMapAlias> unk0, Out<u32> unk1, Out<u32> unk2) {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED)");
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
SslVersion ssl_version;
|
||||
std::shared_ptr<SslContextSharedData> shared_data;
|
||||
std::unique_ptr<SSLConnectionBackend> backend;
|
||||
std::optional<int> fd_to_close;
|
||||
std::shared_ptr<Network::SocketBase> socket;
|
||||
std::vector<u8> next_alpn_proto;
|
||||
u32 verify_option = 0;
|
||||
|
||||
bool do_not_close_socket = false;
|
||||
bool get_server_cert_chain = false;
|
||||
bool skip_default_verify = false;
|
||||
bool enable_alpn = false;
|
||||
bool did_handshake = false;
|
||||
};
|
||||
|
||||
class ISslContext final : public ServiceFramework<ISslContext> {
|
||||
@@ -492,7 +461,7 @@ public:
|
||||
{5, &ISslContext::ImportClientPki, "ImportClientPki"},
|
||||
{6, nullptr, "RemoveServerPki"},
|
||||
{7, nullptr, "RemoveClientPki"},
|
||||
{8, nullptr, "RegisterInternalPki"},
|
||||
{8, D<&ISslContext::RegisterInternalPki>, "RegisterInternalPki"},
|
||||
{9, nullptr, "AddPolicyOid"},
|
||||
{10, nullptr, "ImportCrl"},
|
||||
{11, nullptr, "RemoveCrl"},
|
||||
@@ -587,6 +556,11 @@ private:
|
||||
rb.Push(ResultSuccess);
|
||||
rb.Push(client_id);
|
||||
}
|
||||
|
||||
Result RegisterInternalPki() {
|
||||
LOG_WARNING(Service_SSL, "(STUBBED) called");
|
||||
R_SUCCEED();
|
||||
}
|
||||
};
|
||||
|
||||
class ISslService final : public ServiceFramework<ISslService> {
|
||||
|
||||
@@ -36,12 +36,17 @@ class SSLConnectionBackend {
|
||||
public:
|
||||
virtual ~SSLConnectionBackend() {}
|
||||
virtual void SetSocket(std::shared_ptr<Network::SocketBase> socket) = 0;
|
||||
virtual Result SetHostName(const std::string& hostname) = 0;
|
||||
virtual void SetVerifyOption(u32 option) = 0;
|
||||
virtual Result DoHandshake() = 0;
|
||||
virtual Result Read(size_t* out_size, std::span<u8> data) = 0;
|
||||
virtual Result Peek(size_t* out_size, std::span<u8> data) = 0;
|
||||
virtual Result Write(size_t* out_size, std::span<const u8> data) = 0;
|
||||
virtual Result GetServerCerts(std::vector<std::vector<u8>>* out_certs) = 0;
|
||||
virtual Result SetHostName(const char* hostname) = 0;
|
||||
virtual Result GetHostName(std::span<u8> hostname, u32* out_size) = 0;
|
||||
virtual int Pending() = 0;
|
||||
virtual Result SetRenegotiationMode(u32 mode) = 0;
|
||||
virtual Result GetRenegotiationMode(u32* mode) = 0;
|
||||
};
|
||||
|
||||
Result CreateSSLConnectionBackend(std::unique_ptr<SSLConnectionBackend>* out_backend);
|
||||
|
||||
@@ -157,18 +157,30 @@ public:
|
||||
socket = std::move(socket_in);
|
||||
}
|
||||
|
||||
Result SetHostName(const std::string& hostname) override {
|
||||
Result SetHostName(const char* hostname) override {
|
||||
if (!skip_cert_verification) {
|
||||
if (!SSL_set1_host(ssl, hostname.c_str())) {
|
||||
if (!SSL_set1_host(ssl, hostname)) {
|
||||
LOG_ERROR(Service_SSL, "SSL_set1_host({}) failed", hostname);
|
||||
return CheckOpenSSLErrors();
|
||||
}
|
||||
}
|
||||
if (!SSL_set_tlsext_host_name(ssl, hostname.c_str())) { // hostname for SNI
|
||||
if (!SSL_set_tlsext_host_name(ssl, hostname)) { // hostname for SNI
|
||||
LOG_ERROR(Service_SSL, "SSL_set_tlsext_host_name({}) failed", hostname);
|
||||
return CheckOpenSSLErrors();
|
||||
}
|
||||
return ResultSuccess;
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetHostName(std::span<u8> data, u32* out_size) override {
|
||||
auto const peer_name = SSL_get0_peername(ssl);
|
||||
if (peer_name == nullptr) {
|
||||
LOG_ERROR(Service_SSL, "SSL_get0_peername()");
|
||||
return CheckOpenSSLErrors();
|
||||
}
|
||||
auto const s = std::string{peer_name};
|
||||
*out_size = u32(s.size());
|
||||
std::memcpy(data.data(), s.data(), (std::min)(s.size(), data.size()));
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
void SetVerifyOption(u32 option) override {
|
||||
@@ -213,6 +225,13 @@ public:
|
||||
return HandleReturn("SSL_read_ex", out_size, ret);
|
||||
}
|
||||
|
||||
Result Peek(size_t* out_size, std::span<u8> data) override {
|
||||
auto const n = (std::min)(data.size(), *out_size);
|
||||
const int ret = SSL_peek(ssl, data.data(), int(n));
|
||||
*out_size = n;
|
||||
return HandleReturn("SSL_write_ex", out_size, ret);
|
||||
}
|
||||
|
||||
Result Write(size_t* out_size, std::span<const u8> data) override {
|
||||
const int ret = SSL_write_ex(ssl, data.data(), data.size(), out_size);
|
||||
return HandleReturn("SSL_write_ex", out_size, ret);
|
||||
@@ -263,7 +282,25 @@ public:
|
||||
out_certs->emplace_back(buf, buf + len);
|
||||
OPENSSL_free(buf);
|
||||
}
|
||||
return ResultSuccess;
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
int Pending() override {
|
||||
return SSL_pending(ssl);
|
||||
}
|
||||
|
||||
Result SetRenegotiationMode(u32 mode) override {
|
||||
if (mode == 0) {
|
||||
SSL_CTX_set_options(ssl_ctx, SSL_OP_NO_RENEGOTIATION);
|
||||
} else {
|
||||
SSL_CTX_set_options(ssl_ctx, SSL_OP_ALLOW_CLIENT_RENEGOTIATION);
|
||||
}
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetRenegotiationMode(u32* mode) override {
|
||||
*mode = SSL_get_secure_renegotiation_support(ssl) ? 1 : 0;
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
~SSLConnectionBackendOpenSSL() {
|
||||
|
||||
@@ -33,18 +33,10 @@ u64 MemoryReadWidth(Core::Memory::Memory& memory, u32 width, VAddr addr) {
|
||||
|
||||
void MemoryWriteWidth(Core::Memory::Memory& memory, u32 width, VAddr addr, u64 value) {
|
||||
switch (width) {
|
||||
case 1:
|
||||
memory.Write8(addr, static_cast<u8>(value));
|
||||
break;
|
||||
case 2:
|
||||
memory.Write16(addr, static_cast<u16>(value));
|
||||
break;
|
||||
case 4:
|
||||
memory.Write32(addr, static_cast<u32>(value));
|
||||
break;
|
||||
case 8:
|
||||
memory.Write64(addr, value);
|
||||
break;
|
||||
case sizeof(u64): return memory.Write64(addr, value);
|
||||
case sizeof(u32): return memory.Write32(addr, u32(value));
|
||||
case sizeof(u16): return memory.Write16(addr, u16(value));
|
||||
case sizeof(u8): return memory.Write8(addr, u8(value));
|
||||
default:
|
||||
UNREACHABLE();
|
||||
}
|
||||
|
||||
@@ -82,7 +82,7 @@ static void* EmitExclusiveReadCallTrampoline(oaknut::CodeGenerator& code, const
|
||||
|
||||
auto fn = [](const A32::UserConfig& conf, A32::VAddr vaddr) -> T {
|
||||
return conf.global_monitor->ReadAndMark<T>(conf.processor_id, vaddr, [&]() -> T {
|
||||
return (conf.callbacks->*callback)(vaddr);
|
||||
return (conf.callbacks->*callback)(vaddr, sizeof(T));
|
||||
});
|
||||
};
|
||||
|
||||
@@ -136,12 +136,9 @@ static void* EmitExclusiveWriteCallTrampoline(oaknut::CodeGenerator& code, const
|
||||
oaknut::Label l_addr, l_this;
|
||||
|
||||
auto fn = [](const A32::UserConfig& conf, A32::VAddr vaddr, T value) -> u32 {
|
||||
return conf.global_monitor->DoExclusiveOperation<T>(conf.processor_id, vaddr,
|
||||
[&](T expected) -> bool {
|
||||
return (conf.callbacks->*callback)(vaddr, value, expected);
|
||||
})
|
||||
? 0
|
||||
: 1;
|
||||
return conf.global_monitor->DoExclusiveOperation<T>(conf.processor_id, vaddr, [&](T expected) -> bool {
|
||||
return (conf.callbacks->*callback)(vaddr, value, expected);
|
||||
}) ? 0 : 1;
|
||||
};
|
||||
|
||||
void* target = code.xptr<void*>();
|
||||
@@ -179,26 +176,14 @@ void A32AddressSpace::EmitPrelude() {
|
||||
|
||||
UnprotectCodeMemory();
|
||||
|
||||
prelude_info.read_memory_8 = EmitCallTrampoline<&A32::UserCallbacks::MemoryRead8>(code, conf.callbacks);
|
||||
prelude_info.read_memory_16 = EmitCallTrampoline<&A32::UserCallbacks::MemoryRead16>(code, conf.callbacks);
|
||||
prelude_info.read_memory_32 = EmitCallTrampoline<&A32::UserCallbacks::MemoryRead32>(code, conf.callbacks);
|
||||
prelude_info.read_memory_64 = EmitCallTrampoline<&A32::UserCallbacks::MemoryRead64>(code, conf.callbacks);
|
||||
prelude_info.wrapped_read_memory_8 = EmitWrappedReadCallTrampoline<&A32::UserCallbacks::MemoryRead8>(code, conf.callbacks);
|
||||
prelude_info.wrapped_read_memory_16 = EmitWrappedReadCallTrampoline<&A32::UserCallbacks::MemoryRead16>(code, conf.callbacks);
|
||||
prelude_info.wrapped_read_memory_32 = EmitWrappedReadCallTrampoline<&A32::UserCallbacks::MemoryRead32>(code, conf.callbacks);
|
||||
prelude_info.wrapped_read_memory_64 = EmitWrappedReadCallTrampoline<&A32::UserCallbacks::MemoryRead64>(code, conf.callbacks);
|
||||
prelude_info.exclusive_read_memory_8 = EmitExclusiveReadCallTrampoline<&A32::UserCallbacks::MemoryRead8, u8>(code, conf);
|
||||
prelude_info.exclusive_read_memory_16 = EmitExclusiveReadCallTrampoline<&A32::UserCallbacks::MemoryRead16, u16>(code, conf);
|
||||
prelude_info.exclusive_read_memory_32 = EmitExclusiveReadCallTrampoline<&A32::UserCallbacks::MemoryRead32, u32>(code, conf);
|
||||
prelude_info.exclusive_read_memory_64 = EmitExclusiveReadCallTrampoline<&A32::UserCallbacks::MemoryRead64, u64>(code, conf);
|
||||
prelude_info.write_memory_8 = EmitCallTrampoline<&A32::UserCallbacks::MemoryWrite8>(code, conf.callbacks);
|
||||
prelude_info.write_memory_16 = EmitCallTrampoline<&A32::UserCallbacks::MemoryWrite16>(code, conf.callbacks);
|
||||
prelude_info.write_memory_32 = EmitCallTrampoline<&A32::UserCallbacks::MemoryWrite32>(code, conf.callbacks);
|
||||
prelude_info.write_memory_64 = EmitCallTrampoline<&A32::UserCallbacks::MemoryWrite64>(code, conf.callbacks);
|
||||
prelude_info.wrapped_write_memory_8 = EmitWrappedWriteCallTrampoline<&A32::UserCallbacks::MemoryWrite8>(code, conf.callbacks);
|
||||
prelude_info.wrapped_write_memory_16 = EmitWrappedWriteCallTrampoline<&A32::UserCallbacks::MemoryWrite16>(code, conf.callbacks);
|
||||
prelude_info.wrapped_write_memory_32 = EmitWrappedWriteCallTrampoline<&A32::UserCallbacks::MemoryWrite32>(code, conf.callbacks);
|
||||
prelude_info.wrapped_write_memory_64 = EmitWrappedWriteCallTrampoline<&A32::UserCallbacks::MemoryWrite64>(code, conf.callbacks);
|
||||
prelude_info.read_memory = EmitCallTrampoline<&A32::UserCallbacks::MemoryRead>(code, conf.callbacks);
|
||||
prelude_info.wrapped_read_memory = EmitWrappedReadCallTrampoline<&A32::UserCallbacks::MemoryRead>(code, conf.callbacks);
|
||||
prelude_info.exclusive_read_memory_8 = EmitExclusiveReadCallTrampoline<&A32::UserCallbacks::MemoryRead, u8>(code, conf);
|
||||
prelude_info.exclusive_read_memory_16 = EmitExclusiveReadCallTrampoline<&A32::UserCallbacks::MemoryRead, u16>(code, conf);
|
||||
prelude_info.exclusive_read_memory_32 = EmitExclusiveReadCallTrampoline<&A32::UserCallbacks::MemoryRead, u32>(code, conf);
|
||||
prelude_info.exclusive_read_memory_64 = EmitExclusiveReadCallTrampoline<&A32::UserCallbacks::MemoryRead, u64>(code, conf);
|
||||
prelude_info.write_memory = EmitCallTrampoline<&A32::UserCallbacks::MemoryWrite>(code, conf.callbacks);
|
||||
prelude_info.wrapped_write_memory = EmitWrappedWriteCallTrampoline<&A32::UserCallbacks::MemoryWrite>(code, conf.callbacks);
|
||||
prelude_info.exclusive_write_memory_8 = EmitExclusiveWriteCallTrampoline<&A32::UserCallbacks::MemoryWriteExclusive8, u8>(code, conf);
|
||||
prelude_info.exclusive_write_memory_16 = EmitExclusiveWriteCallTrampoline<&A32::UserCallbacks::MemoryWriteExclusive16, u16>(code, conf);
|
||||
prelude_info.exclusive_write_memory_32 = EmitExclusiveWriteCallTrampoline<&A32::UserCallbacks::MemoryWriteExclusive32, u32>(code, conf);
|
||||
|
||||
@@ -81,7 +81,7 @@ static void* EmitExclusiveReadCallTrampoline(oaknut::CodeGenerator& code, const
|
||||
|
||||
auto fn = [](const A64::UserConfig& conf, A64::VAddr vaddr) -> T {
|
||||
return conf.global_monitor->ReadAndMark<T>(conf.processor_id, vaddr, [&]() -> T {
|
||||
return (conf.callbacks->*callback)(vaddr);
|
||||
return (conf.callbacks->*callback)(vaddr, sizeof(T));
|
||||
});
|
||||
};
|
||||
|
||||
@@ -133,14 +133,10 @@ static void* EmitExclusiveWriteCallTrampoline(oaknut::CodeGenerator& code, const
|
||||
using namespace oaknut::util;
|
||||
|
||||
oaknut::Label l_addr, l_this;
|
||||
|
||||
auto fn = [](const A64::UserConfig& conf, A64::VAddr vaddr, T value) -> u32 {
|
||||
return conf.global_monitor->DoExclusiveOperation<T>(conf.processor_id, vaddr,
|
||||
[&](T expected) -> bool {
|
||||
return (conf.callbacks->*callback)(vaddr, value, expected);
|
||||
})
|
||||
? 0
|
||||
: 1;
|
||||
return conf.global_monitor->DoExclusiveOperation<T>(conf.processor_id, vaddr, [&](T expected) -> bool {
|
||||
return (conf.callbacks->*callback)(vaddr, value, expected);
|
||||
}) ? 0 : 1;
|
||||
};
|
||||
|
||||
void* target = code.xptr<void*>();
|
||||
@@ -346,30 +342,18 @@ void A64AddressSpace::EmitPrelude() {
|
||||
|
||||
UnprotectCodeMemory();
|
||||
|
||||
prelude_info.read_memory_8 = EmitCallTrampoline<&A64::UserCallbacks::MemoryRead8>(code, conf.callbacks);
|
||||
prelude_info.read_memory_16 = EmitCallTrampoline<&A64::UserCallbacks::MemoryRead16>(code, conf.callbacks);
|
||||
prelude_info.read_memory_32 = EmitCallTrampoline<&A64::UserCallbacks::MemoryRead32>(code, conf.callbacks);
|
||||
prelude_info.read_memory_64 = EmitCallTrampoline<&A64::UserCallbacks::MemoryRead64>(code, conf.callbacks);
|
||||
prelude_info.read_memory = EmitCallTrampoline<&A64::UserCallbacks::MemoryRead>(code, conf.callbacks);
|
||||
prelude_info.read_memory_128 = EmitRead128CallTrampoline(code, conf.callbacks);
|
||||
prelude_info.wrapped_read_memory_8 = EmitWrappedReadCallTrampoline<&A64::UserCallbacks::MemoryRead8>(code, conf.callbacks);
|
||||
prelude_info.wrapped_read_memory_16 = EmitWrappedReadCallTrampoline<&A64::UserCallbacks::MemoryRead16>(code, conf.callbacks);
|
||||
prelude_info.wrapped_read_memory_32 = EmitWrappedReadCallTrampoline<&A64::UserCallbacks::MemoryRead32>(code, conf.callbacks);
|
||||
prelude_info.wrapped_read_memory_64 = EmitWrappedReadCallTrampoline<&A64::UserCallbacks::MemoryRead64>(code, conf.callbacks);
|
||||
prelude_info.wrapped_read_memory = EmitWrappedReadCallTrampoline<&A64::UserCallbacks::MemoryRead>(code, conf.callbacks);
|
||||
prelude_info.wrapped_read_memory_128 = EmitWrappedRead128CallTrampoline(code, conf.callbacks);
|
||||
prelude_info.exclusive_read_memory_8 = EmitExclusiveReadCallTrampoline<&A64::UserCallbacks::MemoryRead8, u8>(code, conf);
|
||||
prelude_info.exclusive_read_memory_16 = EmitExclusiveReadCallTrampoline<&A64::UserCallbacks::MemoryRead16, u16>(code, conf);
|
||||
prelude_info.exclusive_read_memory_32 = EmitExclusiveReadCallTrampoline<&A64::UserCallbacks::MemoryRead32, u32>(code, conf);
|
||||
prelude_info.exclusive_read_memory_64 = EmitExclusiveReadCallTrampoline<&A64::UserCallbacks::MemoryRead64, u64>(code, conf);
|
||||
prelude_info.exclusive_read_memory_8 = EmitExclusiveReadCallTrampoline<&A64::UserCallbacks::MemoryRead, u8>(code, conf);
|
||||
prelude_info.exclusive_read_memory_16 = EmitExclusiveReadCallTrampoline<&A64::UserCallbacks::MemoryRead, u16>(code, conf);
|
||||
prelude_info.exclusive_read_memory_32 = EmitExclusiveReadCallTrampoline<&A64::UserCallbacks::MemoryRead, u32>(code, conf);
|
||||
prelude_info.exclusive_read_memory_64 = EmitExclusiveReadCallTrampoline<&A64::UserCallbacks::MemoryRead, u64>(code, conf);
|
||||
prelude_info.exclusive_read_memory_128 = EmitExclusiveRead128CallTrampoline(code, conf);
|
||||
prelude_info.write_memory_8 = EmitCallTrampoline<&A64::UserCallbacks::MemoryWrite8>(code, conf.callbacks);
|
||||
prelude_info.write_memory_16 = EmitCallTrampoline<&A64::UserCallbacks::MemoryWrite16>(code, conf.callbacks);
|
||||
prelude_info.write_memory_32 = EmitCallTrampoline<&A64::UserCallbacks::MemoryWrite32>(code, conf.callbacks);
|
||||
prelude_info.write_memory_64 = EmitCallTrampoline<&A64::UserCallbacks::MemoryWrite64>(code, conf.callbacks);
|
||||
prelude_info.write_memory = EmitCallTrampoline<&A64::UserCallbacks::MemoryWrite>(code, conf.callbacks);
|
||||
prelude_info.write_memory_128 = EmitWrite128CallTrampoline(code, conf.callbacks);
|
||||
prelude_info.wrapped_write_memory_8 = EmitWrappedWriteCallTrampoline<&A64::UserCallbacks::MemoryWrite8>(code, conf.callbacks);
|
||||
prelude_info.wrapped_write_memory_16 = EmitWrappedWriteCallTrampoline<&A64::UserCallbacks::MemoryWrite16>(code, conf.callbacks);
|
||||
prelude_info.wrapped_write_memory_32 = EmitWrappedWriteCallTrampoline<&A64::UserCallbacks::MemoryWrite32>(code, conf.callbacks);
|
||||
prelude_info.wrapped_write_memory_64 = EmitWrappedWriteCallTrampoline<&A64::UserCallbacks::MemoryWrite64>(code, conf.callbacks);
|
||||
prelude_info.wrapped_write_memory = EmitWrappedWriteCallTrampoline<&A64::UserCallbacks::MemoryWrite>(code, conf.callbacks);
|
||||
prelude_info.wrapped_write_memory_128 = EmitWrappedWrite128CallTrampoline(code, conf.callbacks);
|
||||
prelude_info.exclusive_write_memory_8 = EmitExclusiveWriteCallTrampoline<&A64::UserCallbacks::MemoryWriteExclusive8, u8>(code, conf);
|
||||
prelude_info.exclusive_write_memory_16 = EmitExclusiveWriteCallTrampoline<&A64::UserCallbacks::MemoryWriteExclusive16, u16>(code, conf);
|
||||
|
||||
@@ -145,32 +145,42 @@ void AddressSpace::Link(EmittedBlockInfo& block_info) {
|
||||
case LinkTarget::ReturnFromRunCode:
|
||||
c.B(prelude_info.return_from_run_code);
|
||||
break;
|
||||
// { this, vaddr, size }
|
||||
case LinkTarget::ReadMemory8:
|
||||
c.BL(prelude_info.read_memory_8);
|
||||
c.LDR(X2, 1);
|
||||
c.BL(prelude_info.read_memory);
|
||||
break;
|
||||
case LinkTarget::ReadMemory16:
|
||||
c.BL(prelude_info.read_memory_16);
|
||||
c.LDR(X2, 2);
|
||||
c.BL(prelude_info.read_memory);
|
||||
break;
|
||||
case LinkTarget::ReadMemory32:
|
||||
c.BL(prelude_info.read_memory_32);
|
||||
c.LDR(X2, 4);
|
||||
c.BL(prelude_info.read_memory);
|
||||
break;
|
||||
case LinkTarget::ReadMemory64:
|
||||
c.BL(prelude_info.read_memory_64);
|
||||
c.LDR(X2, 8);
|
||||
c.BL(prelude_info.read_memory);
|
||||
break;
|
||||
case LinkTarget::ReadMemory128:
|
||||
c.BL(prelude_info.read_memory_128);
|
||||
break;
|
||||
// { this, vaddr, size }
|
||||
case LinkTarget::WrappedReadMemory8:
|
||||
c.BL(prelude_info.wrapped_read_memory_8);
|
||||
c.LDR(X2, 1);
|
||||
c.BL(prelude_info.wrapped_read_memory);
|
||||
break;
|
||||
case LinkTarget::WrappedReadMemory16:
|
||||
c.BL(prelude_info.wrapped_read_memory_16);
|
||||
c.LDR(X2, 2);
|
||||
c.BL(prelude_info.wrapped_read_memory);
|
||||
break;
|
||||
case LinkTarget::WrappedReadMemory32:
|
||||
c.BL(prelude_info.wrapped_read_memory_32);
|
||||
c.LDR(X2, 4);
|
||||
c.BL(prelude_info.wrapped_read_memory);
|
||||
break;
|
||||
case LinkTarget::WrappedReadMemory64:
|
||||
c.BL(prelude_info.wrapped_read_memory_64);
|
||||
c.LDR(X2, 8);
|
||||
c.BL(prelude_info.wrapped_read_memory);
|
||||
break;
|
||||
case LinkTarget::WrappedReadMemory128:
|
||||
c.BL(prelude_info.wrapped_read_memory_128);
|
||||
@@ -190,32 +200,41 @@ void AddressSpace::Link(EmittedBlockInfo& block_info) {
|
||||
case LinkTarget::ExclusiveReadMemory128:
|
||||
c.BL(prelude_info.exclusive_read_memory_128);
|
||||
break;
|
||||
// { this, vaddr, value, size }
|
||||
case LinkTarget::WriteMemory8:
|
||||
c.BL(prelude_info.write_memory_8);
|
||||
c.LDR(X3, 1);
|
||||
c.BL(prelude_info.write_memory);
|
||||
break;
|
||||
case LinkTarget::WriteMemory16:
|
||||
c.BL(prelude_info.write_memory_16);
|
||||
c.LDR(X3, 2);
|
||||
c.BL(prelude_info.write_memory);
|
||||
break;
|
||||
case LinkTarget::WriteMemory32:
|
||||
c.BL(prelude_info.write_memory_32);
|
||||
c.LDR(X3, 4);
|
||||
c.BL(prelude_info.write_memory);
|
||||
break;
|
||||
case LinkTarget::WriteMemory64:
|
||||
c.BL(prelude_info.write_memory_64);
|
||||
c.LDR(X3, 8);
|
||||
c.BL(prelude_info.write_memory);
|
||||
break;
|
||||
case LinkTarget::WriteMemory128:
|
||||
c.BL(prelude_info.write_memory_128);
|
||||
break;
|
||||
case LinkTarget::WrappedWriteMemory8:
|
||||
c.BL(prelude_info.wrapped_write_memory_8);
|
||||
c.LDR(X3, 1);
|
||||
c.BL(prelude_info.wrapped_write_memory);
|
||||
break;
|
||||
case LinkTarget::WrappedWriteMemory16:
|
||||
c.BL(prelude_info.wrapped_write_memory_16);
|
||||
c.LDR(X3, 2);
|
||||
c.BL(prelude_info.wrapped_write_memory);
|
||||
break;
|
||||
case LinkTarget::WrappedWriteMemory32:
|
||||
c.BL(prelude_info.wrapped_write_memory_32);
|
||||
c.LDR(X3, 4);
|
||||
c.BL(prelude_info.wrapped_write_memory);
|
||||
break;
|
||||
case LinkTarget::WrappedWriteMemory64:
|
||||
c.BL(prelude_info.wrapped_write_memory_64);
|
||||
c.LDR(X3, 8);
|
||||
c.BL(prelude_info.wrapped_write_memory);
|
||||
break;
|
||||
case LinkTarget::WrappedWriteMemory128:
|
||||
c.BL(prelude_info.wrapped_write_memory_128);
|
||||
|
||||
@@ -93,30 +93,18 @@ protected:
|
||||
void* return_to_dispatcher;
|
||||
void* return_from_run_code;
|
||||
|
||||
void* read_memory_8;
|
||||
void* read_memory_16;
|
||||
void* read_memory_32;
|
||||
void* read_memory_64;
|
||||
void* read_memory;
|
||||
void* read_memory_128;
|
||||
void* wrapped_read_memory_8;
|
||||
void* wrapped_read_memory_16;
|
||||
void* wrapped_read_memory_32;
|
||||
void* wrapped_read_memory_64;
|
||||
void* wrapped_read_memory;
|
||||
void* wrapped_read_memory_128;
|
||||
void* exclusive_read_memory_8;
|
||||
void* exclusive_read_memory_16;
|
||||
void* exclusive_read_memory_32;
|
||||
void* exclusive_read_memory_64;
|
||||
void* exclusive_read_memory_128;
|
||||
void* write_memory_8;
|
||||
void* write_memory_16;
|
||||
void* write_memory_32;
|
||||
void* write_memory_64;
|
||||
void* write_memory;
|
||||
void* write_memory_128;
|
||||
void* wrapped_write_memory_8;
|
||||
void* wrapped_write_memory_16;
|
||||
void* wrapped_write_memory_32;
|
||||
void* wrapped_write_memory_64;
|
||||
void* wrapped_write_memory;
|
||||
void* wrapped_write_memory_128;
|
||||
void* exclusive_write_memory_8;
|
||||
void* exclusive_write_memory_16;
|
||||
|
||||
@@ -11,8 +11,7 @@
|
||||
#include <tuple>
|
||||
#include <utility>
|
||||
|
||||
#include <fmt/format.h>
|
||||
#include <fmt/ostream.h>
|
||||
#include "common/logging.h"
|
||||
#include "dynarmic/mcl/integer_of_size.hpp"
|
||||
#include "dynarmic/backend/x64/xbyak.h"
|
||||
|
||||
@@ -31,16 +30,16 @@ using namespace Xbyak::util;
|
||||
void A32EmitX64::GenFastmemFallbacks() {
|
||||
const std::initializer_list<int> idxes{0, 1, 2, 3, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14};
|
||||
const std::array<std::pair<size_t, ArgCallback>, 4> read_callbacks{{
|
||||
{8, Devirtualize<&A32::UserCallbacks::MemoryRead8>(conf.callbacks)},
|
||||
{16, Devirtualize<&A32::UserCallbacks::MemoryRead16>(conf.callbacks)},
|
||||
{32, Devirtualize<&A32::UserCallbacks::MemoryRead32>(conf.callbacks)},
|
||||
{64, Devirtualize<&A32::UserCallbacks::MemoryRead64>(conf.callbacks)},
|
||||
{8, Devirtualize<&A32::UserCallbacks::MemoryRead>(conf.callbacks)},
|
||||
{16, Devirtualize<&A32::UserCallbacks::MemoryRead>(conf.callbacks)},
|
||||
{32, Devirtualize<&A32::UserCallbacks::MemoryRead>(conf.callbacks)},
|
||||
{64, Devirtualize<&A32::UserCallbacks::MemoryRead>(conf.callbacks)},
|
||||
}};
|
||||
const std::array<std::pair<size_t, ArgCallback>, 4> write_callbacks{{
|
||||
{8, Devirtualize<&A32::UserCallbacks::MemoryWrite8>(conf.callbacks)},
|
||||
{16, Devirtualize<&A32::UserCallbacks::MemoryWrite16>(conf.callbacks)},
|
||||
{32, Devirtualize<&A32::UserCallbacks::MemoryWrite32>(conf.callbacks)},
|
||||
{64, Devirtualize<&A32::UserCallbacks::MemoryWrite64>(conf.callbacks)},
|
||||
{8, Devirtualize<&A32::UserCallbacks::MemoryWrite>(conf.callbacks)},
|
||||
{16, Devirtualize<&A32::UserCallbacks::MemoryWrite>(conf.callbacks)},
|
||||
{32, Devirtualize<&A32::UserCallbacks::MemoryWrite>(conf.callbacks)},
|
||||
{64, Devirtualize<&A32::UserCallbacks::MemoryWrite>(conf.callbacks)},
|
||||
}};
|
||||
const std::array<std::pair<size_t, ArgCallback>, 4> exclusive_write_callbacks{{
|
||||
{8, Devirtualize<&A32::UserCallbacks::MemoryWriteExclusive8>(conf.callbacks)},
|
||||
@@ -56,12 +55,12 @@ void A32EmitX64::GenFastmemFallbacks() {
|
||||
code.align();
|
||||
read_fallbacks[std::make_tuple(ordered, bitsize, vaddr_idx, value_idx)] = code.getCurr<void (*)()>();
|
||||
ABI_PushCallerSaveRegistersAndAdjustStackExcept(code, HostLocRegIdx(value_idx));
|
||||
// params = { this, vaddr, size }
|
||||
if (vaddr_idx != code.ABI_PARAM2.getIdx()) {
|
||||
code.mov(code.ABI_PARAM2, Xbyak::Reg64{vaddr_idx});
|
||||
}
|
||||
if (ordered) {
|
||||
code.mfence();
|
||||
}
|
||||
code.mov(code.ABI_PARAM3, bitsize / CHAR_BIT);
|
||||
if (ordered) code.mfence();
|
||||
callback.EmitCall(code);
|
||||
if (value_idx != code.ABI_RETURN.getIdx()) {
|
||||
code.mov(Xbyak::Reg64{value_idx}, code.ABI_RETURN);
|
||||
@@ -76,6 +75,7 @@ void A32EmitX64::GenFastmemFallbacks() {
|
||||
code.align();
|
||||
write_fallbacks[std::make_tuple(ordered, bitsize, vaddr_idx, value_idx)] = code.getCurr<void (*)()>();
|
||||
ABI_PushCallerSaveRegistersAndAdjustStack(code);
|
||||
// params = { this, vaddr, value, size }
|
||||
if (vaddr_idx == code.ABI_PARAM3.getIdx() && value_idx == code.ABI_PARAM2.getIdx()) {
|
||||
code.xchg(code.ABI_PARAM2, code.ABI_PARAM3);
|
||||
} else if (vaddr_idx == code.ABI_PARAM3.getIdx()) {
|
||||
@@ -92,10 +92,9 @@ void A32EmitX64::GenFastmemFallbacks() {
|
||||
}
|
||||
}
|
||||
code.ZeroExtendFrom(bitsize, code.ABI_PARAM3);
|
||||
code.mov(code.ABI_PARAM4, bitsize / CHAR_BIT);
|
||||
callback.EmitCall(code);
|
||||
if (ordered) {
|
||||
code.mfence();
|
||||
}
|
||||
if (ordered) code.mfence();
|
||||
ABI_PopCallerSaveRegistersAndAdjustStack(code);
|
||||
code.ret();
|
||||
PerfMapRegister(write_fallbacks[std::make_tuple(ordered, bitsize, vaddr_idx, value_idx)], code.getCurr(), fmt::format("a32_write_fallback_{}", bitsize));
|
||||
@@ -138,35 +137,35 @@ void A32EmitX64::GenFastmemFallbacks() {
|
||||
#undef Axx
|
||||
|
||||
void A32EmitX64::EmitA32ReadMemory8(A32EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryRead<8, &A32::UserCallbacks::MemoryRead8>(ctx, inst);
|
||||
EmitMemoryRead<8, &A32::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
|
||||
void A32EmitX64::EmitA32ReadMemory16(A32EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryRead<16, &A32::UserCallbacks::MemoryRead16>(ctx, inst);
|
||||
EmitMemoryRead<16, &A32::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
|
||||
void A32EmitX64::EmitA32ReadMemory32(A32EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryRead<32, &A32::UserCallbacks::MemoryRead32>(ctx, inst);
|
||||
EmitMemoryRead<32, &A32::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
|
||||
void A32EmitX64::EmitA32ReadMemory64(A32EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryRead<64, &A32::UserCallbacks::MemoryRead64>(ctx, inst);
|
||||
EmitMemoryRead<64, &A32::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
|
||||
void A32EmitX64::EmitA32WriteMemory8(A32EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryWrite<8, &A32::UserCallbacks::MemoryWrite8>(ctx, inst);
|
||||
EmitMemoryWrite<8, &A32::UserCallbacks::MemoryWrite>(ctx, inst);
|
||||
}
|
||||
|
||||
void A32EmitX64::EmitA32WriteMemory16(A32EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryWrite<16, &A32::UserCallbacks::MemoryWrite16>(ctx, inst);
|
||||
EmitMemoryWrite<16, &A32::UserCallbacks::MemoryWrite>(ctx, inst);
|
||||
}
|
||||
|
||||
void A32EmitX64::EmitA32WriteMemory32(A32EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryWrite<32, &A32::UserCallbacks::MemoryWrite32>(ctx, inst);
|
||||
EmitMemoryWrite<32, &A32::UserCallbacks::MemoryWrite>(ctx, inst);
|
||||
}
|
||||
|
||||
void A32EmitX64::EmitA32WriteMemory64(A32EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryWrite<64, &A32::UserCallbacks::MemoryWrite64>(ctx, inst);
|
||||
EmitMemoryWrite<64, &A32::UserCallbacks::MemoryWrite>(ctx, inst);
|
||||
}
|
||||
|
||||
void A32EmitX64::EmitA32ClearExclusive(A32EmitContext&, IR::Inst*) {
|
||||
@@ -175,33 +174,33 @@ void A32EmitX64::EmitA32ClearExclusive(A32EmitContext&, IR::Inst*) {
|
||||
|
||||
void A32EmitX64::EmitA32ExclusiveReadMemory8(A32EmitContext& ctx, IR::Inst* inst) {
|
||||
if (conf.fastmem_exclusive_access) {
|
||||
EmitExclusiveReadMemoryInline<8, &A32::UserCallbacks::MemoryRead8>(ctx, inst);
|
||||
EmitExclusiveReadMemoryInline<8, &A32::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
} else {
|
||||
EmitExclusiveReadMemory<8, &A32::UserCallbacks::MemoryRead8>(ctx, inst);
|
||||
EmitExclusiveReadMemory<8, &A32::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
}
|
||||
|
||||
void A32EmitX64::EmitA32ExclusiveReadMemory16(A32EmitContext& ctx, IR::Inst* inst) {
|
||||
if (conf.fastmem_exclusive_access) {
|
||||
EmitExclusiveReadMemoryInline<16, &A32::UserCallbacks::MemoryRead16>(ctx, inst);
|
||||
EmitExclusiveReadMemoryInline<16, &A32::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
} else {
|
||||
EmitExclusiveReadMemory<16, &A32::UserCallbacks::MemoryRead16>(ctx, inst);
|
||||
EmitExclusiveReadMemory<16, &A32::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
}
|
||||
|
||||
void A32EmitX64::EmitA32ExclusiveReadMemory32(A32EmitContext& ctx, IR::Inst* inst) {
|
||||
if (conf.fastmem_exclusive_access) {
|
||||
EmitExclusiveReadMemoryInline<32, &A32::UserCallbacks::MemoryRead32>(ctx, inst);
|
||||
EmitExclusiveReadMemoryInline<32, &A32::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
} else {
|
||||
EmitExclusiveReadMemory<32, &A32::UserCallbacks::MemoryRead32>(ctx, inst);
|
||||
EmitExclusiveReadMemory<32, &A32::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
}
|
||||
|
||||
void A32EmitX64::EmitA32ExclusiveReadMemory64(A32EmitContext& ctx, IR::Inst* inst) {
|
||||
if (conf.fastmem_exclusive_access) {
|
||||
EmitExclusiveReadMemoryInline<64, &A32::UserCallbacks::MemoryRead64>(ctx, inst);
|
||||
EmitExclusiveReadMemoryInline<64, &A32::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
} else {
|
||||
EmitExclusiveReadMemory<64, &A32::UserCallbacks::MemoryRead64>(ctx, inst);
|
||||
EmitExclusiveReadMemory<64, &A32::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@@ -11,8 +11,7 @@
|
||||
#include <tuple>
|
||||
#include <utility>
|
||||
|
||||
#include <fmt/format.h>
|
||||
#include <fmt/ostream.h>
|
||||
#include "common/logging.h"
|
||||
#include "dynarmic/mcl/integer_of_size.hpp"
|
||||
#include "dynarmic/backend/x64/xbyak.h"
|
||||
|
||||
@@ -115,16 +114,16 @@ void A64EmitX64::GenMemory128Accessors() {
|
||||
void A64EmitX64::GenFastmemFallbacks() {
|
||||
const std::initializer_list<int> idxes{0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15};
|
||||
const std::array<std::pair<size_t, ArgCallback>, 4> read_callbacks{{
|
||||
{8, Devirtualize<&A64::UserCallbacks::MemoryRead8>(conf.callbacks)},
|
||||
{16, Devirtualize<&A64::UserCallbacks::MemoryRead16>(conf.callbacks)},
|
||||
{32, Devirtualize<&A64::UserCallbacks::MemoryRead32>(conf.callbacks)},
|
||||
{64, Devirtualize<&A64::UserCallbacks::MemoryRead64>(conf.callbacks)},
|
||||
{8, Devirtualize<&A64::UserCallbacks::MemoryRead>(conf.callbacks)},
|
||||
{16, Devirtualize<&A64::UserCallbacks::MemoryRead>(conf.callbacks)},
|
||||
{32, Devirtualize<&A64::UserCallbacks::MemoryRead>(conf.callbacks)},
|
||||
{64, Devirtualize<&A64::UserCallbacks::MemoryRead>(conf.callbacks)},
|
||||
}};
|
||||
const std::array<std::pair<size_t, ArgCallback>, 4> write_callbacks{{
|
||||
{8, Devirtualize<&A64::UserCallbacks::MemoryWrite8>(conf.callbacks)},
|
||||
{16, Devirtualize<&A64::UserCallbacks::MemoryWrite16>(conf.callbacks)},
|
||||
{32, Devirtualize<&A64::UserCallbacks::MemoryWrite32>(conf.callbacks)},
|
||||
{64, Devirtualize<&A64::UserCallbacks::MemoryWrite64>(conf.callbacks)},
|
||||
{8, Devirtualize<&A64::UserCallbacks::MemoryWrite>(conf.callbacks)},
|
||||
{16, Devirtualize<&A64::UserCallbacks::MemoryWrite>(conf.callbacks)},
|
||||
{32, Devirtualize<&A64::UserCallbacks::MemoryWrite>(conf.callbacks)},
|
||||
{64, Devirtualize<&A64::UserCallbacks::MemoryWrite>(conf.callbacks)},
|
||||
}};
|
||||
const std::array<std::pair<size_t, ArgCallback>, 4> exclusive_write_callbacks{{
|
||||
{8, Devirtualize<&A64::UserCallbacks::MemoryWriteExclusive8>(conf.callbacks)},
|
||||
@@ -204,12 +203,12 @@ void A64EmitX64::GenFastmemFallbacks() {
|
||||
code.align();
|
||||
read_fallbacks[std::make_tuple(ordered, bitsize, vaddr_idx, value_idx)] = code.getCurr<void (*)()>();
|
||||
ABI_PushCallerSaveRegistersAndAdjustStackExcept(code, HostLocRegIdx(value_idx));
|
||||
// params = { this, vaddr, size }
|
||||
if (vaddr_idx != code.ABI_PARAM2.getIdx()) {
|
||||
code.mov(code.ABI_PARAM2, Xbyak::Reg64{vaddr_idx});
|
||||
}
|
||||
if (ordered) {
|
||||
code.mfence();
|
||||
}
|
||||
code.mov(code.ABI_PARAM3, bitsize / CHAR_BIT);
|
||||
if (ordered) code.mfence();
|
||||
callback.EmitCall(code);
|
||||
if (value_idx != code.ABI_RETURN.getIdx()) {
|
||||
code.mov(Xbyak::Reg64{value_idx}, code.ABI_RETURN);
|
||||
@@ -224,6 +223,7 @@ void A64EmitX64::GenFastmemFallbacks() {
|
||||
code.align();
|
||||
write_fallbacks[std::make_tuple(ordered, bitsize, vaddr_idx, value_idx)] = code.getCurr<void (*)()>();
|
||||
ABI_PushCallerSaveRegistersAndAdjustStack(code);
|
||||
// params = { this, vaddr, value, size }
|
||||
if (vaddr_idx == code.ABI_PARAM3.getIdx() && value_idx == code.ABI_PARAM2.getIdx()) {
|
||||
code.xchg(code.ABI_PARAM2, code.ABI_PARAM3);
|
||||
} else if (vaddr_idx == code.ABI_PARAM3.getIdx()) {
|
||||
@@ -240,10 +240,9 @@ void A64EmitX64::GenFastmemFallbacks() {
|
||||
}
|
||||
}
|
||||
code.ZeroExtendFrom(bitsize, code.ABI_PARAM3);
|
||||
code.mov(code.ABI_PARAM4, bitsize / CHAR_BIT);
|
||||
callback.EmitCall(code);
|
||||
if (ordered) {
|
||||
code.mfence();
|
||||
}
|
||||
if (ordered) code.mfence();
|
||||
ABI_PopCallerSaveRegistersAndAdjustStack(code);
|
||||
code.ret();
|
||||
PerfMapRegister(write_fallbacks[std::make_tuple(ordered, bitsize, vaddr_idx, value_idx)], code.getCurr(), fmt::format("a64_write_fallback_{}", bitsize));
|
||||
@@ -286,19 +285,19 @@ void A64EmitX64::GenFastmemFallbacks() {
|
||||
#undef Axx
|
||||
|
||||
void A64EmitX64::EmitA64ReadMemory8(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryRead<8, &A64::UserCallbacks::MemoryRead8>(ctx, inst);
|
||||
EmitMemoryRead<8, &A64::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
|
||||
void A64EmitX64::EmitA64ReadMemory16(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryRead<16, &A64::UserCallbacks::MemoryRead16>(ctx, inst);
|
||||
EmitMemoryRead<16, &A64::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
|
||||
void A64EmitX64::EmitA64ReadMemory32(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryRead<32, &A64::UserCallbacks::MemoryRead32>(ctx, inst);
|
||||
EmitMemoryRead<32, &A64::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
|
||||
void A64EmitX64::EmitA64ReadMemory64(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryRead<64, &A64::UserCallbacks::MemoryRead64>(ctx, inst);
|
||||
EmitMemoryRead<64, &A64::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
|
||||
void A64EmitX64::EmitA64ReadMemory128(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
@@ -306,23 +305,23 @@ void A64EmitX64::EmitA64ReadMemory128(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
}
|
||||
|
||||
void A64EmitX64::EmitA64WriteMemory8(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryWrite<8, &A64::UserCallbacks::MemoryWrite8>(ctx, inst);
|
||||
EmitMemoryWrite<8, &A64::UserCallbacks::MemoryWrite>(ctx, inst);
|
||||
}
|
||||
|
||||
void A64EmitX64::EmitA64WriteMemory16(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryWrite<16, &A64::UserCallbacks::MemoryWrite16>(ctx, inst);
|
||||
EmitMemoryWrite<16, &A64::UserCallbacks::MemoryWrite>(ctx, inst);
|
||||
}
|
||||
|
||||
void A64EmitX64::EmitA64WriteMemory32(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryWrite<32, &A64::UserCallbacks::MemoryWrite32>(ctx, inst);
|
||||
EmitMemoryWrite<32, &A64::UserCallbacks::MemoryWrite>(ctx, inst);
|
||||
}
|
||||
|
||||
void A64EmitX64::EmitA64WriteMemory64(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryWrite<64, &A64::UserCallbacks::MemoryWrite64>(ctx, inst);
|
||||
EmitMemoryWrite<64, &A64::UserCallbacks::MemoryWrite>(ctx, inst);
|
||||
}
|
||||
|
||||
void A64EmitX64::EmitA64WriteMemory128(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
EmitMemoryWrite<128, &A64::UserCallbacks::MemoryWrite64>(ctx, inst);
|
||||
EmitMemoryWrite<128, &A64::UserCallbacks::MemoryWrite>(ctx, inst);
|
||||
}
|
||||
|
||||
void A64EmitX64::EmitA64ClearExclusive(A64EmitContext&, IR::Inst*) {
|
||||
@@ -331,33 +330,33 @@ void A64EmitX64::EmitA64ClearExclusive(A64EmitContext&, IR::Inst*) {
|
||||
|
||||
void A64EmitX64::EmitA64ExclusiveReadMemory8(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
if (conf.fastmem_exclusive_access) {
|
||||
EmitExclusiveReadMemoryInline<8, &A64::UserCallbacks::MemoryRead8>(ctx, inst);
|
||||
EmitExclusiveReadMemoryInline<8, &A64::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
} else {
|
||||
EmitExclusiveReadMemory<8, &A64::UserCallbacks::MemoryRead8>(ctx, inst);
|
||||
EmitExclusiveReadMemory<8, &A64::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
}
|
||||
|
||||
void A64EmitX64::EmitA64ExclusiveReadMemory16(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
if (conf.fastmem_exclusive_access) {
|
||||
EmitExclusiveReadMemoryInline<16, &A64::UserCallbacks::MemoryRead16>(ctx, inst);
|
||||
EmitExclusiveReadMemoryInline<16, &A64::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
} else {
|
||||
EmitExclusiveReadMemory<16, &A64::UserCallbacks::MemoryRead16>(ctx, inst);
|
||||
EmitExclusiveReadMemory<16, &A64::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
}
|
||||
|
||||
void A64EmitX64::EmitA64ExclusiveReadMemory32(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
if (conf.fastmem_exclusive_access) {
|
||||
EmitExclusiveReadMemoryInline<32, &A64::UserCallbacks::MemoryRead32>(ctx, inst);
|
||||
EmitExclusiveReadMemoryInline<32, &A64::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
} else {
|
||||
EmitExclusiveReadMemory<32, &A64::UserCallbacks::MemoryRead32>(ctx, inst);
|
||||
EmitExclusiveReadMemory<32, &A64::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
}
|
||||
|
||||
void A64EmitX64::EmitA64ExclusiveReadMemory64(A64EmitContext& ctx, IR::Inst* inst) {
|
||||
if (conf.fastmem_exclusive_access) {
|
||||
EmitExclusiveReadMemoryInline<64, &A64::UserCallbacks::MemoryRead64>(ctx, inst);
|
||||
EmitExclusiveReadMemoryInline<64, &A64::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
} else {
|
||||
EmitExclusiveReadMemory<64, &A64::UserCallbacks::MemoryRead64>(ctx, inst);
|
||||
EmitExclusiveReadMemory<64, &A64::UserCallbacks::MemoryRead>(ctx, inst);
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@@ -1,3 +1,6 @@
|
||||
// SPDX-FileCopyrightText: Copyright 2026 Eden Emulator Project
|
||||
// SPDX-License-Identifier: GPL-3.0-or-later
|
||||
|
||||
/* This file is part of the dynarmic project.
|
||||
* Copyright (c) 2022 MerryMage
|
||||
* SPDX-License-Identifier: 0BSD
|
||||
@@ -11,10 +14,6 @@
|
||||
#define AxxJitState CONCATENATE_TOKENS(Axx, JitState)
|
||||
#define AxxUserConfig Axx::UserConfig
|
||||
|
||||
namespace {
|
||||
using Vector = std::array<u64, 2>;
|
||||
}
|
||||
|
||||
std::optional<AxxEmitX64::DoNotFastmemMarker> AxxEmitX64::ShouldFastmem(AxxEmitContext& ctx, IR::Inst* inst) const {
|
||||
if (!conf.fastmem_pointer || !exception_handler.SupportsFastmem()) {
|
||||
return std::nullopt;
|
||||
@@ -28,22 +27,19 @@ std::optional<AxxEmitX64::DoNotFastmemMarker> AxxEmitX64::ShouldFastmem(AxxEmitC
|
||||
}
|
||||
|
||||
FakeCall AxxEmitX64::FastmemCallback(u64 rip_) {
|
||||
const auto iter = fastmem_patch_info.find(rip_);
|
||||
if (iter != fastmem_patch_info.end()) {
|
||||
if (auto const it = fastmem_patch_info.find(rip_); it != fastmem_patch_info.end()) {
|
||||
FakeCall result{
|
||||
.call_rip = iter->second.callback,
|
||||
.ret_rip = iter->second.resume_rip,
|
||||
.call_rip = it->second.callback,
|
||||
.ret_rip = it->second.resume_rip,
|
||||
};
|
||||
if (iter->second.recompile) {
|
||||
const auto marker = iter->second.marker;
|
||||
if (it->second.recompile) {
|
||||
const auto marker = it->second.marker;
|
||||
do_not_fastmem.insert(marker);
|
||||
InvalidateBasicBlocks({std::get<0>(marker)});
|
||||
}
|
||||
return result;
|
||||
}
|
||||
fmt::print("dynarmic: Segfault happened within JITted code at rip = {:016x}\n"
|
||||
"Segfault wasn't at a fastmem patch location!\n", rip_);
|
||||
UNREACHABLE(); //("iter != fastmem_patch_info.end()");
|
||||
UNREACHABLE_MSG("SIGSEGV @ JIT, rip={:#016x}", rip_); //("iter != fastmem_patch_info.end()");
|
||||
}
|
||||
|
||||
template<std::size_t bitsize, auto callback>
|
||||
@@ -56,16 +52,13 @@ void AxxEmitX64::EmitMemoryRead(AxxEmitContext& ctx, IR::Inst* inst) {
|
||||
// Neither fastmem nor page table: Use callbacks
|
||||
if constexpr (bitsize == 128) {
|
||||
ctx.reg_alloc.HostCall(code, nullptr, {}, args[1]);
|
||||
if (ordered) {
|
||||
code.mfence();
|
||||
}
|
||||
if (ordered) code.mfence();
|
||||
code.CallFunction(memory_read_128);
|
||||
ctx.reg_alloc.DefineValue(code, inst, xmm1);
|
||||
} else {
|
||||
ctx.reg_alloc.HostCall(code, inst, {}, args[1]);
|
||||
if (ordered) {
|
||||
code.mfence();
|
||||
}
|
||||
code.mov(code.ABI_PARAM3.cvt32(), bitsize / CHAR_BIT);
|
||||
if (ordered) code.mfence();
|
||||
Devirtualize<callback>(conf.callbacks).EmitCall(code);
|
||||
code.ZeroExtendFrom(bitsize, code.ABI_RETURN);
|
||||
}
|
||||
@@ -83,22 +76,17 @@ void AxxEmitX64::EmitMemoryRead(AxxEmitContext& ctx, IR::Inst* inst) {
|
||||
|
||||
const Xbyak::Reg64 vaddr = ctx.reg_alloc.UseGpr(code, args[1]);
|
||||
const int value_idx = bitsize == 128 ? ctx.reg_alloc.ScratchXmm(code).getIdx() : ctx.reg_alloc.ScratchGpr(code).getIdx();
|
||||
|
||||
const auto wrapped_fn = read_fallbacks[std::make_tuple(ordered, bitsize, vaddr.getIdx(), value_idx)];
|
||||
|
||||
SharedLabel abort = ctx.GenSharedLabel(), end = ctx.GenSharedLabel();
|
||||
|
||||
if (fastmem_marker) {
|
||||
// Use fastmem
|
||||
bool require_abort_handling = false;
|
||||
const auto src_ptr = EmitFastmemVAddr(code, ctx, *abort, vaddr, require_abort_handling);
|
||||
|
||||
const auto location = EmitReadMemoryMov<bitsize>(code, value_idx, src_ptr, ordered);
|
||||
|
||||
ctx.deferred_emits.emplace_back([=, this, &ctx] {
|
||||
code.L(*abort);
|
||||
code.call(wrapped_fn);
|
||||
|
||||
fastmem_patch_info.emplace(
|
||||
std::bit_cast<u64>(location),
|
||||
FastmemPatchInfo{
|
||||
@@ -107,25 +95,23 @@ void AxxEmitX64::EmitMemoryRead(AxxEmitContext& ctx, IR::Inst* inst) {
|
||||
*fastmem_marker,
|
||||
conf.recompile_on_fastmem_failure,
|
||||
});
|
||||
|
||||
EmitCheckMemoryAbort(ctx, inst, end);
|
||||
code.jmp(*end, code.T_NEAR);
|
||||
});
|
||||
} else {
|
||||
} else if (conf.page_table) {
|
||||
// Use page table
|
||||
ASSERT(conf.page_table);
|
||||
const auto src_ptr = EmitVAddrLookup(code, ctx, bitsize, *abort, vaddr);
|
||||
EmitReadMemoryMov<bitsize>(code, value_idx, src_ptr, ordered);
|
||||
|
||||
ctx.deferred_emits.emplace_back([=, this, &ctx] {
|
||||
code.L(*abort);
|
||||
code.call(wrapped_fn);
|
||||
EmitCheckMemoryAbort(ctx, inst, end);
|
||||
code.jmp(*end, code.T_NEAR);
|
||||
});
|
||||
} else {
|
||||
UNREACHABLE();
|
||||
}
|
||||
code.L(*end);
|
||||
|
||||
if constexpr (bitsize == 128) {
|
||||
ctx.reg_alloc.DefineValue(code, inst, Xbyak::Xmm{value_idx});
|
||||
} else {
|
||||
@@ -148,12 +134,12 @@ void AxxEmitX64::EmitMemoryWrite(AxxEmitContext& ctx, IR::Inst* inst) {
|
||||
ctx.reg_alloc.HostCall(code, nullptr);
|
||||
code.CallFunction(memory_write_128);
|
||||
} else {
|
||||
// { this, vaddr, value, size }
|
||||
ctx.reg_alloc.HostCall(code, nullptr, {}, args[1], args[2]);
|
||||
code.mov(code.ABI_PARAM4.cvt32(), bitsize / CHAR_BIT);
|
||||
Devirtualize<callback>(conf.callbacks).EmitCall(code);
|
||||
}
|
||||
if (ordered) {
|
||||
code.mfence();
|
||||
}
|
||||
if (ordered) code.mfence();
|
||||
EmitCheckMemoryAbort(ctx, inst);
|
||||
return;
|
||||
}
|
||||
@@ -168,18 +154,16 @@ void AxxEmitX64::EmitMemoryWrite(AxxEmitContext& ctx, IR::Inst* inst) {
|
||||
|
||||
const Xbyak::Reg64 vaddr = ctx.reg_alloc.UseGpr(code, args[1]);
|
||||
const int value_idx = bitsize == 128
|
||||
? ctx.reg_alloc.UseXmm(code, args[2]).getIdx()
|
||||
: (ordered ? ctx.reg_alloc.UseScratchGpr(code, args[2]).getIdx() : ctx.reg_alloc.UseGpr(code, args[2]).getIdx());
|
||||
? ctx.reg_alloc.UseXmm(code, args[2]).getIdx()
|
||||
: (ordered ? ctx.reg_alloc.UseScratchGpr(code, args[2]).getIdx() : ctx.reg_alloc.UseGpr(code, args[2]).getIdx());
|
||||
|
||||
const auto wrapped_fn = write_fallbacks[std::make_tuple(ordered, bitsize, vaddr.getIdx(), value_idx)];
|
||||
|
||||
SharedLabel abort = ctx.GenSharedLabel(), end = ctx.GenSharedLabel();
|
||||
|
||||
if (fastmem_marker) {
|
||||
// Use fastmem
|
||||
bool require_abort_handling = false;
|
||||
const auto dest_ptr = EmitFastmemVAddr(code, ctx, *abort, vaddr, require_abort_handling);
|
||||
|
||||
const auto location = EmitWriteMemoryMov<bitsize>(code, dest_ptr, value_idx, ordered);
|
||||
|
||||
ctx.deferred_emits.emplace_back([=, this, &ctx] {
|
||||
@@ -198,9 +182,8 @@ void AxxEmitX64::EmitMemoryWrite(AxxEmitContext& ctx, IR::Inst* inst) {
|
||||
EmitCheckMemoryAbort(ctx, inst, end);
|
||||
code.jmp(*end, code.T_NEAR);
|
||||
});
|
||||
} else {
|
||||
} else if (conf.page_table) {
|
||||
// Use page table
|
||||
ASSERT(conf.page_table);
|
||||
const auto dest_ptr = EmitVAddrLookup(code, ctx, bitsize, *abort, vaddr);
|
||||
EmitWriteMemoryMov<bitsize>(code, dest_ptr, value_idx, ordered);
|
||||
|
||||
@@ -210,6 +193,8 @@ void AxxEmitX64::EmitMemoryWrite(AxxEmitContext& ctx, IR::Inst* inst) {
|
||||
EmitCheckMemoryAbort(ctx, inst, end);
|
||||
code.jmp(*end, code.T_NEAR);
|
||||
});
|
||||
} else {
|
||||
UNREACHABLE();
|
||||
}
|
||||
code.L(*end);
|
||||
}
|
||||
@@ -230,12 +215,11 @@ void AxxEmitX64::EmitExclusiveReadMemory(AxxEmitContext& ctx, IR::Inst* inst) {
|
||||
if (ordered) {
|
||||
code.mfence();
|
||||
}
|
||||
code.CallLambda(
|
||||
[](AxxUserConfig& conf, Axx::VAddr vaddr) -> T {
|
||||
return conf.global_monitor->ReadAndMark<T>(conf.processor_id, vaddr, [&]() -> T {
|
||||
return (conf.callbacks->*callback)(vaddr);
|
||||
});
|
||||
code.CallLambda([](AxxUserConfig& conf, Axx::VAddr vaddr) -> T {
|
||||
return conf.global_monitor->ReadAndMark<T>(conf.processor_id, vaddr, [&]() -> T {
|
||||
return (conf.callbacks->*callback)(vaddr, bitsize / CHAR_BIT);
|
||||
});
|
||||
});
|
||||
code.ZeroExtendFrom(bitsize, code.ABI_RETURN);
|
||||
} else {
|
||||
const Xbyak::Xmm result = ctx.reg_alloc.ScratchXmm(code);
|
||||
@@ -250,12 +234,11 @@ void AxxEmitX64::EmitExclusiveReadMemory(AxxEmitContext& ctx, IR::Inst* inst) {
|
||||
if (ordered) {
|
||||
code.mfence();
|
||||
}
|
||||
code.CallLambda(
|
||||
[](AxxUserConfig& conf, Axx::VAddr vaddr, Vector& ret) {
|
||||
ret = conf.global_monitor->ReadAndMark<Vector>(conf.processor_id, vaddr, [&]() -> Vector {
|
||||
return (conf.callbacks->*callback)(vaddr);
|
||||
});
|
||||
code.CallLambda([](AxxUserConfig& conf, Axx::VAddr vaddr, u128& ret) {
|
||||
ret = conf.global_monitor->ReadAndMark<u128>(conf.processor_id, vaddr, [&]() -> u128 {
|
||||
return (conf.callbacks->*callback)(vaddr);
|
||||
});
|
||||
});
|
||||
code.movups(result, xword[rsp + ABI_SHADOW_SPACE]);
|
||||
ctx.reg_alloc.ReleaseStackSpace(code, 16 + ABI_SHADOW_SPACE);
|
||||
|
||||
@@ -303,8 +286,8 @@ void AxxEmitX64::EmitExclusiveWriteMemory(AxxEmitContext& ctx, IR::Inst* inst) {
|
||||
ctx.reg_alloc.AllocStackSpace(code, 16 + ABI_SHADOW_SPACE);
|
||||
code.lea(code.ABI_PARAM3, ptr[rsp + ABI_SHADOW_SPACE]);
|
||||
code.movaps(xword[code.ABI_PARAM3], xmm1);
|
||||
code.CallLambda([](AxxUserConfig& conf, Axx::VAddr vaddr, Vector& value) -> u32 {
|
||||
return conf.global_monitor->DoExclusiveOperation<Vector>(conf.processor_id, vaddr, [&](Vector expected) -> bool {
|
||||
code.CallLambda([](AxxUserConfig& conf, Axx::VAddr vaddr, u128& value) -> u32 {
|
||||
return conf.global_monitor->DoExclusiveOperation<u128>(conf.processor_id, vaddr, [&](u128 expected) -> bool {
|
||||
return (conf.callbacks->*callback)(vaddr, value, expected);
|
||||
}) ? 0 : 1;
|
||||
});
|
||||
|
||||
@@ -135,10 +135,16 @@ template<>
|
||||
if (unused_top_bits == 0) {
|
||||
code.mov(tmp, vaddr);
|
||||
code.shr(tmp, int(page_table_const_bits));
|
||||
if (ctx.conf.page_table_log2_stride > 3) {
|
||||
code.shl(tmp, int(ctx.conf.page_table_log2_stride));
|
||||
code.mov(page, qword[r14 + tmp.cvt64()]);
|
||||
} else {
|
||||
code.mov(page, qword[r14 + tmp.cvt64() * int(1 << ctx.conf.page_table_log2_stride)]);
|
||||
}
|
||||
} else if (ctx.conf.silently_mirror_page_table) {
|
||||
if (valid_page_index_bits >= 32) {
|
||||
if (code.HasHostFeature(HostFeature::BMI2)) {
|
||||
const Xbyak::Reg64 bit_count = ctx.reg_alloc.ScratchGpr(code);
|
||||
auto const bit_count = ctx.reg_alloc.ScratchGpr(code);
|
||||
code.mov(bit_count, unused_top_bits);
|
||||
code.bzhi(tmp, vaddr, bit_count);
|
||||
code.shr(tmp, int(page_table_const_bits));
|
||||
@@ -153,19 +159,31 @@ template<>
|
||||
code.shr(tmp, int(page_table_const_bits));
|
||||
code.and_(tmp, u32((1 << valid_page_index_bits) - 1));
|
||||
}
|
||||
if (ctx.conf.page_table_log2_stride > 3) {
|
||||
code.shl(tmp, int(ctx.conf.page_table_log2_stride));
|
||||
code.mov(page, qword[r14 + tmp.cvt64()]);
|
||||
} else {
|
||||
code.mov(page, qword[r14 + tmp.cvt64() * int(1 << ctx.conf.page_table_log2_stride)]);
|
||||
}
|
||||
} else {
|
||||
// Common VA sizes: 39 - 12 => 27, 42 - 12 => 30
|
||||
// Check if bits outside of VA space are non-zero
|
||||
ASSERT(valid_page_index_bits < 32);
|
||||
code.mov(tmp, vaddr);
|
||||
if (ctx.conf.check_halt_on_memory_access) {
|
||||
auto const tmp2 = ctx.reg_alloc.ScratchGpr(code);
|
||||
code.mov(tmp2, u64(-(1ull << valid_page_index_bits) << page_table_const_bits));
|
||||
code.test(tmp, tmp2);
|
||||
code.jnz(abort, code.T_NEAR);
|
||||
ctx.reg_alloc.Release(tmp2);
|
||||
}
|
||||
code.shr(tmp, int(page_table_const_bits));
|
||||
code.test(tmp, u32(-(1 << valid_page_index_bits)));
|
||||
code.jnz(abort, code.T_NEAR);
|
||||
}
|
||||
|
||||
if (ctx.conf.page_table_log2_stride > 3) {
|
||||
code.shl(tmp, int(ctx.conf.page_table_log2_stride));
|
||||
code.mov(page, qword[r14 + tmp.cvt64()]);
|
||||
} else {
|
||||
code.mov(page, qword[r14 + tmp.cvt64() * int(1 << ctx.conf.page_table_log2_stride)]);
|
||||
if (ctx.conf.page_table_log2_stride > 3) {
|
||||
code.shl(tmp, int(ctx.conf.page_table_log2_stride));
|
||||
code.mov(page, qword[r14 + tmp.cvt64()]);
|
||||
} else {
|
||||
code.mov(page, qword[r14 + tmp.cvt64() * int(1 << ctx.conf.page_table_log2_stride)]);
|
||||
}
|
||||
}
|
||||
|
||||
// check for marked bit, use as unmapped if marked
|
||||
@@ -184,8 +202,8 @@ template<>
|
||||
}
|
||||
// check for sign bit, apply sign extension as needed
|
||||
if (ctx.conf.page_table_sign_extension) {
|
||||
code.shl(page, 63 - int(*ctx.conf.page_table_sign_extension));
|
||||
code.sar(page, 63 - int(*ctx.conf.page_table_sign_extension));
|
||||
code.shl(page, *ctx.conf.page_table_sign_extension);
|
||||
code.sar(page, *ctx.conf.page_table_sign_extension);
|
||||
}
|
||||
|
||||
code.jz(abort, code.T_NEAR);
|
||||
@@ -193,7 +211,7 @@ template<>
|
||||
return page + vaddr;
|
||||
}
|
||||
code.mov(tmp, vaddr);
|
||||
code.and_(tmp, static_cast<u32>(page_table_const_mask));
|
||||
code.and_(tmp, u32(page_table_const_mask));
|
||||
return page + tmp;
|
||||
}
|
||||
|
||||
|
||||
@@ -66,7 +66,9 @@ struct UserCallbacks : public TranslateCallbacks {
|
||||
|
||||
// All reads through this callback are 4-byte aligned.
|
||||
// Memory must be interpreted as little endian.
|
||||
std::optional<std::uint32_t> MemoryReadCode(VAddr vaddr) override { return MemoryRead32(vaddr); }
|
||||
std::optional<std::uint32_t> MemoryReadCode(VAddr vaddr) override {
|
||||
return std::uint32_t(MemoryRead(vaddr, sizeof(std::uint32_t)));
|
||||
}
|
||||
|
||||
// This function is called before the instruction at pc is read.
|
||||
// IR code can be emitted by the callee prior to instruction handling.
|
||||
@@ -80,16 +82,10 @@ struct UserCallbacks : public TranslateCallbacks {
|
||||
|
||||
// Reads through these callbacks may not be aligned.
|
||||
// Memory must be interpreted as if ENDIANSTATE == 0, endianness will be corrected by the JIT.
|
||||
virtual std::uint8_t MemoryRead8(VAddr vaddr) = 0;
|
||||
virtual std::uint16_t MemoryRead16(VAddr vaddr) = 0;
|
||||
virtual std::uint32_t MemoryRead32(VAddr vaddr) = 0;
|
||||
virtual std::uint64_t MemoryRead64(VAddr vaddr) = 0;
|
||||
virtual std::uint64_t MemoryRead(VAddr vaddr, std::size_t size) = 0;
|
||||
|
||||
// Writes through these callbacks may not be aligned.
|
||||
virtual void MemoryWrite8(VAddr vaddr, std::uint8_t value) = 0;
|
||||
virtual void MemoryWrite16(VAddr vaddr, std::uint16_t value) = 0;
|
||||
virtual void MemoryWrite32(VAddr vaddr, std::uint32_t value) = 0;
|
||||
virtual void MemoryWrite64(VAddr vaddr, std::uint64_t value) = 0;
|
||||
virtual void MemoryWrite(VAddr vaddr, std::uint64_t value, std::size_t size) = 0;
|
||||
|
||||
// Writes through these callbacks may not be aligned.
|
||||
virtual bool MemoryWriteExclusive8(VAddr /*vaddr*/, std::uint8_t /*value*/, std::uint8_t /*expected*/) { return false; }
|
||||
|
||||
@@ -89,20 +89,16 @@ struct UserCallbacks {
|
||||
|
||||
// All reads through this callback are 4-byte aligned.
|
||||
// Memory must be interpreted as little endian.
|
||||
virtual std::optional<std::uint32_t> MemoryReadCode(VAddr vaddr) { return MemoryRead32(vaddr); }
|
||||
virtual std::optional<std::uint32_t> MemoryReadCode(VAddr vaddr) {
|
||||
return std::uint32_t(MemoryRead(vaddr, sizeof(std::uint32_t)));
|
||||
}
|
||||
|
||||
// Reads through these callbacks may not be aligned.
|
||||
virtual std::uint8_t MemoryRead8(VAddr vaddr) = 0;
|
||||
virtual std::uint16_t MemoryRead16(VAddr vaddr) = 0;
|
||||
virtual std::uint32_t MemoryRead32(VAddr vaddr) = 0;
|
||||
virtual std::uint64_t MemoryRead64(VAddr vaddr) = 0;
|
||||
virtual std::uint64_t MemoryRead(VAddr vaddr, std::size_t size) = 0;
|
||||
virtual Vector MemoryRead128(VAddr vaddr) = 0;
|
||||
|
||||
// Writes through these callbacks may not be aligned.
|
||||
virtual void MemoryWrite8(VAddr vaddr, std::uint8_t value) = 0;
|
||||
virtual void MemoryWrite16(VAddr vaddr, std::uint16_t value) = 0;
|
||||
virtual void MemoryWrite32(VAddr vaddr, std::uint32_t value) = 0;
|
||||
virtual void MemoryWrite64(VAddr vaddr, std::uint64_t value) = 0;
|
||||
virtual void MemoryWrite(VAddr vaddr, std::uint64_t value, std::size_t size) = 0;
|
||||
virtual void MemoryWrite128(VAddr vaddr, Vector value) = 0;
|
||||
|
||||
// Writes through these callbacks may not be aligned.
|
||||
|
||||
@@ -40,7 +40,7 @@ static void ConstantMemoryReads(IR::Block& block, A32::UserCallbacks* cb) {
|
||||
if (inst.AreAllArgsImmediates()) {
|
||||
const u32 vaddr = inst.GetArg(1).GetU32();
|
||||
if (cb->IsReadOnlyMemory(vaddr)) {
|
||||
const u8 value_from_memory = cb->MemoryRead8(vaddr);
|
||||
const u8 value_from_memory = u8(cb->MemoryRead(vaddr, sizeof(u8)));
|
||||
inst.ReplaceUsesWith(IR::Value{value_from_memory});
|
||||
}
|
||||
}
|
||||
@@ -51,7 +51,7 @@ static void ConstantMemoryReads(IR::Block& block, A32::UserCallbacks* cb) {
|
||||
if (inst.AreAllArgsImmediates()) {
|
||||
const u32 vaddr = inst.GetArg(1).GetU32();
|
||||
if (cb->IsReadOnlyMemory(vaddr)) {
|
||||
const u16 value_from_memory = cb->MemoryRead16(vaddr);
|
||||
const u16 value_from_memory = u16(cb->MemoryRead(vaddr, sizeof(u16)));
|
||||
inst.ReplaceUsesWith(IR::Value{value_from_memory});
|
||||
}
|
||||
}
|
||||
@@ -62,7 +62,7 @@ static void ConstantMemoryReads(IR::Block& block, A32::UserCallbacks* cb) {
|
||||
if (inst.AreAllArgsImmediates()) {
|
||||
const u32 vaddr = inst.GetArg(1).GetU32();
|
||||
if (cb->IsReadOnlyMemory(vaddr)) {
|
||||
const u32 value_from_memory = cb->MemoryRead32(vaddr);
|
||||
const u32 value_from_memory = u32(cb->MemoryRead(vaddr, sizeof(u32)));
|
||||
inst.ReplaceUsesWith(IR::Value{value_from_memory});
|
||||
}
|
||||
}
|
||||
@@ -73,7 +73,7 @@ static void ConstantMemoryReads(IR::Block& block, A32::UserCallbacks* cb) {
|
||||
if (inst.AreAllArgsImmediates()) {
|
||||
const u32 vaddr = inst.GetArg(1).GetU32();
|
||||
if (cb->IsReadOnlyMemory(vaddr)) {
|
||||
const u64 value_from_memory = cb->MemoryRead64(vaddr);
|
||||
const u64 value_from_memory = u64(cb->MemoryRead(vaddr, sizeof(u64)));
|
||||
inst.ReplaceUsesWith(IR::Value{value_from_memory});
|
||||
}
|
||||
}
|
||||
|
||||
@@ -503,7 +503,7 @@ TEST_CASE("Fuzz Thumb32 instructions set", "[JitX64][Thumb][Thumb32]") {
|
||||
}
|
||||
}
|
||||
|
||||
TEST_CASE("Verify fix for off by one error in MemoryRead32 worked", "[Thumb][Thumb16]") {
|
||||
TEST_CASE("Verify fix for off by one error in MemoryRead<32> worked", "[Thumb][Thumb16]") {
|
||||
ThumbTestEnv test_env;
|
||||
|
||||
// Prepare test subjects
|
||||
|
||||
@@ -553,9 +553,9 @@ TEST_CASE("arm: Memory access (fastmem)", "[arm][A32]") {
|
||||
memset(backing_memory, 0, memory_size);
|
||||
memcpy(backing_memory + 0x100, "Lorem ipsum dolor sit amet, consectetur adipiscing elit.", 57);
|
||||
|
||||
env.MemoryWrite32(0, 0xE5904000); // LDR R4, [R0]
|
||||
env.MemoryWrite32(4, 0xE5814000); // STR R4, [R1]
|
||||
env.MemoryWrite32(8, 0xEAFFFFFE); // B .
|
||||
env.MemoryWrite(0, 0xE5904000, sizeof(u32)); // LDR R4, [R0]
|
||||
env.MemoryWrite(4, 0xE5814000, sizeof(u32)); // STR R4, [R1]
|
||||
env.MemoryWrite(8, 0xEAFFFFFE, sizeof(u32)); // B .
|
||||
jit.Regs()[0] = 0x100;
|
||||
jit.Regs()[1] = 0x1F0;
|
||||
jit.Regs()[15] = 0; // PC = 0
|
||||
|
||||
@@ -16,6 +16,7 @@
|
||||
|
||||
#include "common/assert.h"
|
||||
#include "common/common_types.h"
|
||||
#include "dynarmic/frontend/A32/translate/translate_callbacks.h"
|
||||
#include "dynarmic/interface/A32/a32.h"
|
||||
|
||||
template<typename InstructionType_, u32 infinite_loop_u32>
|
||||
@@ -59,42 +60,51 @@ public:
|
||||
return infinite_loop_u32; // B .
|
||||
}
|
||||
|
||||
std::uint8_t MemoryRead8(u32 vaddr) override {
|
||||
if (IsInCodeMem(vaddr)) {
|
||||
return reinterpret_cast<u8*>(code_mem.data())[vaddr];
|
||||
u64 MemoryRead(u32 vaddr, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64):
|
||||
return MemoryRead(vaddr, sizeof(u32))
|
||||
| MemoryRead(vaddr + sizeof(u32), sizeof(u32)) << 32;
|
||||
case sizeof(u32):
|
||||
return MemoryRead(vaddr, sizeof(u16))
|
||||
| MemoryRead(vaddr + sizeof(u16), sizeof(u16)) << 16;
|
||||
case sizeof(u16):
|
||||
return MemoryRead(vaddr, sizeof(u8))
|
||||
| MemoryRead(vaddr + sizeof(u8), sizeof(u8)) << 8;
|
||||
case sizeof(u8): {
|
||||
if (IsInCodeMem(vaddr))
|
||||
return reinterpret_cast<u8*>(code_mem.data())[vaddr];
|
||||
if (auto iter = modified_memory.find(vaddr); iter != modified_memory.end())
|
||||
return iter->second;
|
||||
return u8(vaddr);
|
||||
}
|
||||
if (auto iter = modified_memory.find(vaddr); iter != modified_memory.end()) {
|
||||
return iter->second;
|
||||
default:
|
||||
std::abort();
|
||||
}
|
||||
return static_cast<u8>(vaddr);
|
||||
}
|
||||
std::uint16_t MemoryRead16(u32 vaddr) override {
|
||||
return u16(MemoryRead8(vaddr)) | u16(MemoryRead8(vaddr + 1)) << 8;
|
||||
}
|
||||
std::uint32_t MemoryRead32(u32 vaddr) override {
|
||||
return u32(MemoryRead16(vaddr)) | u32(MemoryRead16(vaddr + 2)) << 16;
|
||||
}
|
||||
std::uint64_t MemoryRead64(u32 vaddr) override {
|
||||
return u64(MemoryRead32(vaddr)) | u64(MemoryRead32(vaddr + 4)) << 32;
|
||||
}
|
||||
|
||||
void MemoryWrite8(u32 vaddr, std::uint8_t value) override {
|
||||
if (vaddr < code_mem.size() * sizeof(u32)) {
|
||||
code_mem_modified_by_guest = true;
|
||||
void MemoryWrite(Dynarmic::A32::VAddr vaddr, u64 value, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64):
|
||||
MemoryWrite(vaddr, u32(value), sizeof(u32));
|
||||
MemoryWrite(vaddr + 4, u32(value >> 32), sizeof(u32));
|
||||
break;
|
||||
case sizeof(u32):
|
||||
MemoryWrite(vaddr, u16(value), sizeof(u16));
|
||||
MemoryWrite(vaddr + 2, u16(value >> 16), sizeof(u16));
|
||||
break;
|
||||
case sizeof(u16):
|
||||
MemoryWrite(vaddr, u8(value), sizeof(u8));
|
||||
MemoryWrite(vaddr + 1, u8(value >> 8), sizeof(u8));
|
||||
break;
|
||||
case sizeof(u8):
|
||||
if (vaddr < code_mem.size() * sizeof(u32))
|
||||
code_mem_modified_by_guest = true;
|
||||
modified_memory[vaddr] = value;
|
||||
break;
|
||||
default:
|
||||
std::abort();
|
||||
}
|
||||
modified_memory[vaddr] = value;
|
||||
}
|
||||
void MemoryWrite16(u32 vaddr, std::uint16_t value) override {
|
||||
MemoryWrite8(vaddr, static_cast<u8>(value));
|
||||
MemoryWrite8(vaddr + 1, static_cast<u8>(value >> 8));
|
||||
}
|
||||
void MemoryWrite32(u32 vaddr, std::uint32_t value) override {
|
||||
MemoryWrite16(vaddr, static_cast<u16>(value));
|
||||
MemoryWrite16(vaddr + 2, static_cast<u16>(value >> 16));
|
||||
}
|
||||
void MemoryWrite64(u32 vaddr, std::uint64_t value) override {
|
||||
MemoryWrite32(vaddr, static_cast<u32>(value));
|
||||
MemoryWrite32(vaddr + 4, static_cast<u32>(value >> 32));
|
||||
}
|
||||
|
||||
void CallSVC(std::uint32_t swi) override {
|
||||
@@ -143,46 +153,41 @@ public:
|
||||
return read<std::uint32_t>(vaddr);
|
||||
}
|
||||
|
||||
std::uint8_t MemoryRead8(std::uint32_t vaddr) override {
|
||||
return read<std::uint8_t>(vaddr);
|
||||
}
|
||||
std::uint16_t MemoryRead16(std::uint32_t vaddr) override {
|
||||
return read<std::uint16_t>(vaddr);
|
||||
}
|
||||
std::uint32_t MemoryRead32(std::uint32_t vaddr) override {
|
||||
return read<std::uint32_t>(vaddr);
|
||||
}
|
||||
std::uint64_t MemoryRead64(std::uint32_t vaddr) override {
|
||||
return read<std::uint64_t>(vaddr);
|
||||
u64 MemoryRead(u32 vaddr, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64): return read<u64>(vaddr);
|
||||
case sizeof(u32): return read<u32>(vaddr);
|
||||
case sizeof(u16): return read<u16>(vaddr);
|
||||
case sizeof(u8): return read<u8>(vaddr);
|
||||
default:
|
||||
std::abort();
|
||||
}
|
||||
}
|
||||
|
||||
void MemoryWrite8(std::uint32_t vaddr, std::uint8_t value) override {
|
||||
write(vaddr, value);
|
||||
}
|
||||
void MemoryWrite16(std::uint32_t vaddr, std::uint16_t value) override {
|
||||
write(vaddr, value);
|
||||
}
|
||||
void MemoryWrite32(std::uint32_t vaddr, std::uint32_t value) override {
|
||||
write(vaddr, value);
|
||||
}
|
||||
void MemoryWrite64(std::uint32_t vaddr, std::uint64_t value) override {
|
||||
write(vaddr, value);
|
||||
void MemoryWrite(Dynarmic::A32::VAddr vaddr, std::uint64_t value, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64): return write<u64>(vaddr, u64(value));
|
||||
case sizeof(u32): return write<u32>(vaddr, u32(value));
|
||||
case sizeof(u16): return write<u16>(vaddr, u16(value));
|
||||
case sizeof(u8): return write<u8>(vaddr, u8(value));
|
||||
default: std::abort();
|
||||
}
|
||||
}
|
||||
|
||||
bool MemoryWriteExclusive8(std::uint32_t vaddr, std::uint8_t value, [[maybe_unused]] std::uint8_t expected) override {
|
||||
MemoryWrite8(vaddr, value);
|
||||
bool MemoryWriteExclusive8(Dynarmic::A32::VAddr vaddr, std::uint8_t value, [[maybe_unused]] std::uint8_t expected) override {
|
||||
MemoryWrite(vaddr, value, sizeof(u8));
|
||||
return true;
|
||||
}
|
||||
bool MemoryWriteExclusive16(std::uint32_t vaddr, std::uint16_t value, [[maybe_unused]] std::uint16_t expected) override {
|
||||
MemoryWrite16(vaddr, value);
|
||||
bool MemoryWriteExclusive16(Dynarmic::A32::VAddr vaddr, std::uint16_t value, [[maybe_unused]] std::uint16_t expected) override {
|
||||
MemoryWrite(vaddr, value, sizeof(u16));
|
||||
return true;
|
||||
}
|
||||
bool MemoryWriteExclusive32(std::uint32_t vaddr, std::uint32_t value, [[maybe_unused]] std::uint32_t expected) override {
|
||||
MemoryWrite32(vaddr, value);
|
||||
bool MemoryWriteExclusive32(Dynarmic::A32::VAddr vaddr, std::uint32_t value, [[maybe_unused]] std::uint32_t expected) override {
|
||||
MemoryWrite(vaddr, value, sizeof(u32));
|
||||
return true;
|
||||
}
|
||||
bool MemoryWriteExclusive64(std::uint32_t vaddr, std::uint64_t value, [[maybe_unused]] std::uint64_t expected) override {
|
||||
MemoryWrite64(vaddr, value);
|
||||
bool MemoryWriteExclusive64(Dynarmic::A32::VAddr vaddr, std::uint64_t value, [[maybe_unused]] std::uint64_t expected) override {
|
||||
MemoryWrite(vaddr, value, sizeof(u64));
|
||||
return true;
|
||||
}
|
||||
|
||||
|
||||
File diff suppressed because one or more lines are too long
@@ -25,48 +25,55 @@ public:
|
||||
u64 ticks_left = 0;
|
||||
::Common::unordered_map<u64, u8> memory{};
|
||||
|
||||
u8 MemoryRead8(u64 vaddr) override {
|
||||
return memory[vaddr];
|
||||
}
|
||||
|
||||
u16 MemoryRead16(u64 vaddr) override {
|
||||
return u16(MemoryRead8(vaddr)) | u16(MemoryRead8(vaddr + 1)) << 8;
|
||||
}
|
||||
|
||||
u32 MemoryRead32(u64 vaddr) override {
|
||||
return u32(MemoryRead16(vaddr)) | u32(MemoryRead16(vaddr + 2)) << 16;
|
||||
}
|
||||
|
||||
u64 MemoryRead64(u64 vaddr) override {
|
||||
return u64(MemoryRead32(vaddr)) | u64(MemoryRead32(vaddr + 4)) << 32;
|
||||
u64 MemoryRead(u64 vaddr, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64):
|
||||
return MemoryRead(vaddr, sizeof(u32))
|
||||
| MemoryRead(vaddr + sizeof(u32), sizeof(u32)) << 32;
|
||||
case sizeof(u32):
|
||||
return MemoryRead(vaddr, sizeof(u16))
|
||||
| MemoryRead(vaddr + sizeof(u16), sizeof(u16)) << 16;
|
||||
case sizeof(u16):
|
||||
return MemoryRead(vaddr, sizeof(u8))
|
||||
| MemoryRead(vaddr + sizeof(u8), sizeof(u8)) << 8;
|
||||
case sizeof(u8):
|
||||
return memory[vaddr];
|
||||
default:
|
||||
std::abort();
|
||||
}
|
||||
}
|
||||
|
||||
std::array<u64, 2> MemoryRead128(u64 vaddr) override {
|
||||
return {MemoryRead64(vaddr), MemoryRead64(vaddr + 8)};
|
||||
return {
|
||||
MemoryRead(vaddr, sizeof(u64)),
|
||||
MemoryRead(vaddr + sizeof(u64), sizeof(u64))
|
||||
};
|
||||
}
|
||||
|
||||
void MemoryWrite8(u64 vaddr, u8 value) override {
|
||||
memory[vaddr] = value;
|
||||
void MemoryWrite(Dynarmic::A64::VAddr vaddr, u64 value, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64):
|
||||
MemoryWrite(vaddr, u32(value), sizeof(u32));
|
||||
MemoryWrite(vaddr + 4, u32(value >> 32), sizeof(u32));
|
||||
break;
|
||||
case sizeof(u32):
|
||||
MemoryWrite(vaddr, u16(value), sizeof(u16));
|
||||
MemoryWrite(vaddr + 2, u16(value >> 16), sizeof(u16));
|
||||
break;
|
||||
case sizeof(u16):
|
||||
MemoryWrite(vaddr, u8(value), sizeof(u8));
|
||||
MemoryWrite(vaddr + 1, u8(value >> 8), sizeof(u8));
|
||||
break;
|
||||
case sizeof(u8):
|
||||
memory[vaddr] = value;
|
||||
break;
|
||||
default:
|
||||
std::abort();
|
||||
}
|
||||
}
|
||||
|
||||
void MemoryWrite16(u64 vaddr, u16 value) override {
|
||||
MemoryWrite8(vaddr, u8(value));
|
||||
MemoryWrite8(vaddr + 1, u8(value >> 8));
|
||||
}
|
||||
|
||||
void MemoryWrite32(u64 vaddr, u32 value) override {
|
||||
MemoryWrite16(vaddr, u16(value));
|
||||
MemoryWrite16(vaddr + 2, u16(value >> 16));
|
||||
}
|
||||
|
||||
void MemoryWrite64(u64 vaddr, u64 value) override {
|
||||
MemoryWrite32(vaddr, u32(value));
|
||||
MemoryWrite32(vaddr + 4, u32(value >> 32));
|
||||
}
|
||||
|
||||
void MemoryWrite128(u64 vaddr, std::array<u64, 2> value) override {
|
||||
MemoryWrite64(vaddr, value[0]);
|
||||
MemoryWrite64(vaddr + 8, value[1]);
|
||||
MemoryWrite(vaddr, value[0], sizeof(u64));
|
||||
MemoryWrite(vaddr + 8, value[1], sizeof(u64));
|
||||
}
|
||||
|
||||
void CallSVC(u32) override {
|
||||
@@ -135,9 +142,9 @@ TEST_CASE("A64: fibonacci", "[a64]") {
|
||||
code.RET();
|
||||
|
||||
for (size_t i = 0; i < 1024; i++) {
|
||||
env.MemoryWrite32(i * 4, instructions[i]);
|
||||
env.MemoryWrite(i * 4, instructions[i], sizeof(u32));
|
||||
}
|
||||
env.MemoryWrite32(8888, 0xd4200000);
|
||||
env.MemoryWrite(8888, 0xd4200000, sizeof(u32));
|
||||
cpu.SetRegister(30, 8888);
|
||||
|
||||
cpu.SetRegister(0, 10);
|
||||
|
||||
@@ -12,6 +12,7 @@
|
||||
#include "common/assert.h"
|
||||
#include "common/common_types.h"
|
||||
#include "dynarmic/interface/A64/a64.h"
|
||||
#include "dynarmic/interface/A64/config.h"
|
||||
|
||||
using Vector = Dynarmic::A64::Vector;
|
||||
|
||||
@@ -34,64 +35,79 @@ public:
|
||||
return code_mem[index];
|
||||
}
|
||||
|
||||
std::uint8_t MemoryRead8(u64 vaddr) override {
|
||||
if (IsInCodeMem(vaddr)) {
|
||||
return reinterpret_cast<u8*>(code_mem.data())[vaddr - code_mem_start_address];
|
||||
u64 MemoryRead(u64 vaddr, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64):
|
||||
return MemoryRead(vaddr, sizeof(u32))
|
||||
| MemoryRead(vaddr + sizeof(u32), sizeof(u32)) << 32;
|
||||
case sizeof(u32):
|
||||
return MemoryRead(vaddr, sizeof(u16))
|
||||
| MemoryRead(vaddr + sizeof(u16), sizeof(u16)) << 16;
|
||||
case sizeof(u16):
|
||||
return MemoryRead(vaddr, sizeof(u8))
|
||||
| MemoryRead(vaddr + sizeof(u8), sizeof(u8)) << 8;
|
||||
case sizeof(u8): {
|
||||
if (IsInCodeMem(vaddr))
|
||||
return reinterpret_cast<u8*>(code_mem.data())[vaddr - code_mem_start_address];
|
||||
if (auto const it = modified_memory.find(vaddr); it != modified_memory.end())
|
||||
return it->second;
|
||||
return u8(vaddr);
|
||||
}
|
||||
default:
|
||||
std::abort();
|
||||
}
|
||||
if (auto const it = modified_memory.find(vaddr); it != modified_memory.end())
|
||||
return it->second;
|
||||
return u8(vaddr);
|
||||
}
|
||||
std::uint16_t MemoryRead16(u64 vaddr) override {
|
||||
return u16(MemoryRead8(vaddr)) | u16(MemoryRead8(vaddr + 1)) << 8;
|
||||
}
|
||||
std::uint32_t MemoryRead32(u64 vaddr) override {
|
||||
return u32(MemoryRead16(vaddr)) | u32(MemoryRead16(vaddr + 2)) << 16;
|
||||
}
|
||||
std::uint64_t MemoryRead64(u64 vaddr) override {
|
||||
return u64(MemoryRead32(vaddr)) | u64(MemoryRead32(vaddr + 4)) << 32;
|
||||
}
|
||||
Vector MemoryRead128(u64 vaddr) override {
|
||||
return {MemoryRead64(vaddr), MemoryRead64(vaddr + 8)};
|
||||
}
|
||||
|
||||
void MemoryWrite8(u64 vaddr, std::uint8_t value) override {
|
||||
if (IsInCodeMem(vaddr)) {
|
||||
code_mem_modified_by_guest = true;
|
||||
Vector MemoryRead128(u64 vaddr) override {
|
||||
return {
|
||||
MemoryRead(vaddr, sizeof(u64)),
|
||||
MemoryRead(vaddr + 8, sizeof(u64))
|
||||
};
|
||||
}
|
||||
|
||||
void MemoryWrite(Dynarmic::A64::VAddr vaddr, u64 value, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64):
|
||||
MemoryWrite(vaddr, u32(value), sizeof(u32));
|
||||
MemoryWrite(vaddr + 4, u32(value >> 32), sizeof(u32));
|
||||
break;
|
||||
case sizeof(u32):
|
||||
MemoryWrite(vaddr, u16(value), sizeof(u16));
|
||||
MemoryWrite(vaddr + 2, u16(value >> 16), sizeof(u16));
|
||||
break;
|
||||
case sizeof(u16):
|
||||
MemoryWrite(vaddr, u8(value), sizeof(u8));
|
||||
MemoryWrite(vaddr + 1, u8(value >> 8), sizeof(u8));
|
||||
break;
|
||||
case sizeof(u8):
|
||||
if (IsInCodeMem(vaddr)) {
|
||||
code_mem_modified_by_guest = true;
|
||||
}
|
||||
modified_memory[vaddr] = value;
|
||||
break;
|
||||
default:
|
||||
std::abort();
|
||||
}
|
||||
modified_memory[vaddr] = value;
|
||||
}
|
||||
void MemoryWrite16(u64 vaddr, std::uint16_t value) override {
|
||||
MemoryWrite8(vaddr, u8(value));
|
||||
MemoryWrite8(vaddr + 1, u8(value >> 8));
|
||||
}
|
||||
void MemoryWrite32(u64 vaddr, std::uint32_t value) override {
|
||||
MemoryWrite16(vaddr, u16(value));
|
||||
MemoryWrite16(vaddr + 2, u16(value >> 16));
|
||||
}
|
||||
void MemoryWrite64(u64 vaddr, std::uint64_t value) override {
|
||||
MemoryWrite32(vaddr, u32(value));
|
||||
MemoryWrite32(vaddr + 4, u32(value >> 32));
|
||||
}
|
||||
void MemoryWrite128(u64 vaddr, Vector value) override {
|
||||
MemoryWrite64(vaddr, value[0]);
|
||||
MemoryWrite64(vaddr + 8, value[1]);
|
||||
MemoryWrite(vaddr, value[0], sizeof(u64));
|
||||
MemoryWrite(vaddr + 8, value[1], sizeof(u64));
|
||||
}
|
||||
|
||||
bool MemoryWriteExclusive8(u64 vaddr, std::uint8_t value, [[maybe_unused]] std::uint8_t expected) override {
|
||||
MemoryWrite8(vaddr, value);
|
||||
MemoryWrite(vaddr, value, sizeof(u8));
|
||||
return true;
|
||||
}
|
||||
bool MemoryWriteExclusive16(u64 vaddr, std::uint16_t value, [[maybe_unused]] std::uint16_t expected) override {
|
||||
MemoryWrite16(vaddr, value);
|
||||
MemoryWrite(vaddr, value, sizeof(u16));
|
||||
return true;
|
||||
}
|
||||
bool MemoryWriteExclusive32(u64 vaddr, std::uint32_t value, [[maybe_unused]] std::uint32_t expected) override {
|
||||
MemoryWrite32(vaddr, value);
|
||||
MemoryWrite(vaddr, value, sizeof(u32));
|
||||
return true;
|
||||
}
|
||||
bool MemoryWriteExclusive64(u64 vaddr, std::uint64_t value, [[maybe_unused]] std::uint64_t expected) override {
|
||||
MemoryWrite64(vaddr, value);
|
||||
MemoryWrite(vaddr, value, sizeof(u64));
|
||||
return true;
|
||||
}
|
||||
bool MemoryWriteExclusive128(u64 vaddr, Vector value, [[maybe_unused]] Vector expected) override {
|
||||
@@ -145,52 +161,46 @@ public:
|
||||
return read<std::uint32_t>(vaddr);
|
||||
}
|
||||
|
||||
std::uint8_t MemoryRead8(u64 vaddr) override {
|
||||
return read<std::uint8_t>(vaddr);
|
||||
}
|
||||
std::uint16_t MemoryRead16(u64 vaddr) override {
|
||||
return read<std::uint16_t>(vaddr);
|
||||
}
|
||||
std::uint32_t MemoryRead32(u64 vaddr) override {
|
||||
return read<std::uint32_t>(vaddr);
|
||||
}
|
||||
std::uint64_t MemoryRead64(u64 vaddr) override {
|
||||
return read<std::uint64_t>(vaddr);
|
||||
u64 MemoryRead(u64 vaddr, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64): return read<u64>(vaddr);
|
||||
case sizeof(u32): return read<u32>(vaddr);
|
||||
case sizeof(u16): return read<u16>(vaddr);
|
||||
case sizeof(u8): return read<u8>(vaddr);
|
||||
default: std::abort();
|
||||
}
|
||||
}
|
||||
Vector MemoryRead128(u64 vaddr) override {
|
||||
return read<Vector>(vaddr);
|
||||
}
|
||||
|
||||
void MemoryWrite8(u64 vaddr, std::uint8_t value) override {
|
||||
write(vaddr, value);
|
||||
}
|
||||
void MemoryWrite16(u64 vaddr, std::uint16_t value) override {
|
||||
write(vaddr, value);
|
||||
}
|
||||
void MemoryWrite32(u64 vaddr, std::uint32_t value) override {
|
||||
write(vaddr, value);
|
||||
}
|
||||
void MemoryWrite64(u64 vaddr, std::uint64_t value) override {
|
||||
write(vaddr, value);
|
||||
void MemoryWrite(u64 vaddr, std::uint64_t value, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64): return write<u64>(vaddr, u64(value));
|
||||
case sizeof(u32): return write<u32>(vaddr, u32(value));
|
||||
case sizeof(u16): return write<u16>(vaddr, u16(value));
|
||||
case sizeof(u8): return write<u8>(vaddr, u8(value));
|
||||
default: std::abort();
|
||||
}
|
||||
}
|
||||
void MemoryWrite128(u64 vaddr, Vector value) override {
|
||||
write(vaddr, value);
|
||||
}
|
||||
|
||||
bool MemoryWriteExclusive8(u64 vaddr, std::uint8_t value, [[maybe_unused]] std::uint8_t expected) override {
|
||||
MemoryWrite8(vaddr, value);
|
||||
MemoryWrite(vaddr, value, sizeof(u8));
|
||||
return true;
|
||||
}
|
||||
bool MemoryWriteExclusive16(u64 vaddr, std::uint16_t value, [[maybe_unused]] std::uint16_t expected) override {
|
||||
MemoryWrite16(vaddr, value);
|
||||
MemoryWrite(vaddr, value, sizeof(u16));
|
||||
return true;
|
||||
}
|
||||
bool MemoryWriteExclusive32(u64 vaddr, std::uint32_t value, [[maybe_unused]] std::uint32_t expected) override {
|
||||
MemoryWrite32(vaddr, value);
|
||||
MemoryWrite(vaddr, value, sizeof(u32));
|
||||
return true;
|
||||
}
|
||||
bool MemoryWriteExclusive64(u64 vaddr, std::uint64_t value, [[maybe_unused]] std::uint64_t expected) override {
|
||||
MemoryWrite64(vaddr, value);
|
||||
MemoryWrite(vaddr, value, sizeof(u64));
|
||||
return true;
|
||||
}
|
||||
bool MemoryWriteExclusive128(u64 vaddr, Vector value, [[maybe_unused]] Vector expected) override {
|
||||
|
||||
@@ -18,6 +18,7 @@
|
||||
#include <fmt/format.h>
|
||||
#include <fmt/ostream.h>
|
||||
#include <fmt/ranges.h>
|
||||
#include "dynarmic/frontend/A32/translate/translate_callbacks.h"
|
||||
#include "dynarmic/mcl/bit.hpp"
|
||||
#include "common/common_types.h"
|
||||
|
||||
@@ -118,36 +119,47 @@ public:
|
||||
u64 ticks_left = 0;
|
||||
std::map<u32, u8> memory;
|
||||
|
||||
std::uint8_t MemoryRead8(u32 vaddr) override {
|
||||
if (auto iter = memory.find(vaddr); iter != memory.end()) {
|
||||
return iter->second;
|
||||
u64 MemoryRead(Dynarmic::A32::VAddr vaddr, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64):
|
||||
return MemoryRead(vaddr, sizeof(u32))
|
||||
| MemoryRead(vaddr + sizeof(u32), sizeof(u32)) << 32;
|
||||
case sizeof(u32):
|
||||
return MemoryRead(vaddr, sizeof(u16))
|
||||
| MemoryRead(vaddr + sizeof(u16), sizeof(u16)) << 16;
|
||||
case sizeof(u16):
|
||||
return MemoryRead(vaddr, sizeof(u8))
|
||||
| MemoryRead(vaddr + sizeof(u8), sizeof(u8)) << 8;
|
||||
case sizeof(u8): {
|
||||
if (auto const it = memory.find(vaddr); it != memory.end())
|
||||
return it->second;
|
||||
return 0;
|
||||
}
|
||||
default:
|
||||
std::abort();
|
||||
}
|
||||
return 0;
|
||||
}
|
||||
std::uint16_t MemoryRead16(u32 vaddr) override {
|
||||
return u16(MemoryRead8(vaddr)) | u16(MemoryRead8(vaddr + 1)) << 8;
|
||||
}
|
||||
std::uint32_t MemoryRead32(u32 vaddr) override {
|
||||
return u32(MemoryRead16(vaddr)) | u32(MemoryRead16(vaddr + 2)) << 16;
|
||||
}
|
||||
std::uint64_t MemoryRead64(u32 vaddr) override {
|
||||
return u64(MemoryRead32(vaddr)) | u64(MemoryRead32(vaddr + 4)) << 32;
|
||||
}
|
||||
|
||||
void MemoryWrite8(u32 vaddr, std::uint8_t value) override {
|
||||
memory[vaddr] = value;
|
||||
}
|
||||
void MemoryWrite16(u32 vaddr, std::uint16_t value) override {
|
||||
MemoryWrite8(vaddr, static_cast<u8>(value));
|
||||
MemoryWrite8(vaddr + 1, static_cast<u8>(value >> 8));
|
||||
}
|
||||
void MemoryWrite32(u32 vaddr, std::uint32_t value) override {
|
||||
MemoryWrite16(vaddr, static_cast<u16>(value));
|
||||
MemoryWrite16(vaddr + 2, static_cast<u16>(value >> 16));
|
||||
}
|
||||
void MemoryWrite64(u32 vaddr, std::uint64_t value) override {
|
||||
MemoryWrite32(vaddr, static_cast<u32>(value));
|
||||
MemoryWrite32(vaddr + 4, static_cast<u32>(value >> 32));
|
||||
void MemoryWrite(Dynarmic::A32::VAddr vaddr, u64 value, size_t size) override {
|
||||
switch (size) {
|
||||
case sizeof(u64):
|
||||
MemoryWrite(vaddr, u32(value), sizeof(u32));
|
||||
MemoryWrite(vaddr + 4, u32(value >> 32), sizeof(u32));
|
||||
break;
|
||||
case sizeof(u32):
|
||||
MemoryWrite(vaddr, u16(value), sizeof(u16));
|
||||
MemoryWrite(vaddr + 2, u16(value >> 16), sizeof(u16));
|
||||
break;
|
||||
case sizeof(u16):
|
||||
MemoryWrite(vaddr, u8(value), sizeof(u8));
|
||||
MemoryWrite(vaddr + 1, u8(value >> 8), sizeof(u8));
|
||||
break;
|
||||
case sizeof(u8):
|
||||
memory[vaddr] = value;
|
||||
break;
|
||||
default:
|
||||
std::abort();
|
||||
}
|
||||
}
|
||||
|
||||
void CallSVC(std::uint32_t swi) override {
|
||||
@@ -231,7 +243,7 @@ void ExecuteA32Instruction(u32 instruction) {
|
||||
if (const auto address = get_value()) {
|
||||
fmt::print("value: ");
|
||||
if (const auto value = get_value()) {
|
||||
env.MemoryWrite32(*address, *value);
|
||||
env.MemoryWrite(*address, *value, sizeof(u32));
|
||||
fmt::print("> mem[{:#08x}] = {:#08x}\n", *address, *value);
|
||||
}
|
||||
}
|
||||
@@ -247,8 +259,8 @@ void ExecuteA32Instruction(u32 instruction) {
|
||||
cpu.SetFpscr(fpscr);
|
||||
|
||||
const u32 initial_pc = regs[15];
|
||||
env.MemoryWrite32(initial_pc + 0, instruction);
|
||||
env.MemoryWrite32(initial_pc + 4, 0xEAFFFFFE); // B +0
|
||||
env.MemoryWrite(initial_pc + 0, instruction, sizeof(u32));
|
||||
env.MemoryWrite(initial_pc + 4, 0xEAFFFFFE, sizeof(u32)); // B +0
|
||||
|
||||
cpu.Run();
|
||||
fmt::print("{}", fmt::join(cpu.Disassemble(), "\n"));
|
||||
|
||||
@@ -290,7 +290,7 @@ bool A32Unicorn<TestEnvironment>::UnmappedMemoryHook(uc_engine* uc, uc_mem_type
|
||||
auto page = std::make_unique<Page>();
|
||||
page->address = base_address;
|
||||
for (size_t i = 0; i < page->data.size(); ++i)
|
||||
page->data[i] = this_->testenv.MemoryRead8(static_cast<u32>(base_address + i));
|
||||
page->data[i] = u8(this_->testenv.MemoryRead(u32(base_address + i), sizeof(u8)));
|
||||
|
||||
uc_err err = uc_mem_map_ptr(uc, base_address, page->data.size(), permissions, page->data.data());
|
||||
if (err == UC_ERR_MAP)
|
||||
@@ -321,24 +321,7 @@ bool A32Unicorn<TestEnvironment>::UnmappedMemoryHook(uc_engine* uc, uc_mem_type
|
||||
template<class TestEnvironment>
|
||||
bool A32Unicorn<TestEnvironment>::MemoryWriteHook(uc_engine* /*uc*/, uc_mem_type /*type*/, u32 start_address, int size, u64 value, void* user_data) {
|
||||
auto* this_ = static_cast<A32Unicorn*>(user_data);
|
||||
|
||||
switch (size) {
|
||||
case 1:
|
||||
this_->testenv.MemoryWrite8(start_address, static_cast<u8>(value));
|
||||
break;
|
||||
case 2:
|
||||
this_->testenv.MemoryWrite16(start_address, static_cast<u16>(value));
|
||||
break;
|
||||
case 4:
|
||||
this_->testenv.MemoryWrite32(start_address, static_cast<u32>(value));
|
||||
break;
|
||||
case 8:
|
||||
this_->testenv.MemoryWrite64(start_address, value);
|
||||
break;
|
||||
default:
|
||||
UNREACHABLE();
|
||||
}
|
||||
|
||||
this_->testenv.MemoryWrite(start_address, value, size);
|
||||
return true;
|
||||
}
|
||||
|
||||
|
||||
@@ -197,7 +197,7 @@ bool A64Unicorn::UnmappedMemoryHook(uc_engine* uc, uc_mem_type /*type*/, u64 sta
|
||||
auto page = std::make_unique<Page>();
|
||||
page->address = base_address;
|
||||
for (size_t i = 0; i < page->data.size(); ++i)
|
||||
page->data[i] = this_->testenv.MemoryRead8(base_address + i);
|
||||
page->data[i] = u8(this_->testenv.MemoryRead(base_address + i, sizeof(u8)));
|
||||
|
||||
uc_err err = uc_mem_map_ptr(uc, base_address, page->data.size(), permissions, page->data.data());
|
||||
if (err == UC_ERR_MAP)
|
||||
@@ -227,23 +227,6 @@ bool A64Unicorn::UnmappedMemoryHook(uc_engine* uc, uc_mem_type /*type*/, u64 sta
|
||||
|
||||
bool A64Unicorn::MemoryWriteHook(uc_engine* /*uc*/, uc_mem_type /*type*/, u64 start_address, int size, u64 value, void* user_data) {
|
||||
auto* this_ = static_cast<A64Unicorn*>(user_data);
|
||||
|
||||
switch (size) {
|
||||
case 1:
|
||||
this_->testenv.MemoryWrite8(start_address, static_cast<u8>(value));
|
||||
break;
|
||||
case 2:
|
||||
this_->testenv.MemoryWrite16(start_address, static_cast<u16>(value));
|
||||
break;
|
||||
case 4:
|
||||
this_->testenv.MemoryWrite32(start_address, static_cast<u32>(value));
|
||||
break;
|
||||
case 8:
|
||||
this_->testenv.MemoryWrite64(start_address, value);
|
||||
break;
|
||||
default:
|
||||
UNREACHABLE();
|
||||
}
|
||||
|
||||
this_->testenv.MemoryWrite(start_address, value, size);
|
||||
return true;
|
||||
}
|
||||
|
||||
@@ -398,21 +398,21 @@ void NPad::InitNewlyAddedController(Kernel::KernelCore& kernel, u64 aruid, Core:
|
||||
void NPad::WriteEmptyEntry(NpadInternalState* npad) {
|
||||
NPadGenericState dummy_pad_state{};
|
||||
NpadGcTriggerState dummy_gc_state{};
|
||||
dummy_pad_state.sampling_number = npad->fullkey_lifo.ReadCurrentEntry().sampling_number + 1;
|
||||
dummy_pad_state.sampling_number = npad->fullkey_lifo.ReadCurrentEntry().state.sampling_number + 1;
|
||||
npad->fullkey_lifo.WriteNextEntry(dummy_pad_state);
|
||||
dummy_pad_state.sampling_number = npad->handheld_lifo.ReadCurrentEntry().sampling_number + 1;
|
||||
dummy_pad_state.sampling_number = npad->handheld_lifo.ReadCurrentEntry().state.sampling_number + 1;
|
||||
npad->handheld_lifo.WriteNextEntry(dummy_pad_state);
|
||||
dummy_pad_state.sampling_number = npad->joy_dual_lifo.ReadCurrentEntry().sampling_number + 1;
|
||||
dummy_pad_state.sampling_number = npad->joy_dual_lifo.ReadCurrentEntry().state.sampling_number + 1;
|
||||
npad->joy_dual_lifo.WriteNextEntry(dummy_pad_state);
|
||||
dummy_pad_state.sampling_number = npad->joy_left_lifo.ReadCurrentEntry().sampling_number + 1;
|
||||
dummy_pad_state.sampling_number = npad->joy_left_lifo.ReadCurrentEntry().state.sampling_number + 1;
|
||||
npad->joy_left_lifo.WriteNextEntry(dummy_pad_state);
|
||||
dummy_pad_state.sampling_number = npad->joy_right_lifo.ReadCurrentEntry().sampling_number + 1;
|
||||
dummy_pad_state.sampling_number = npad->joy_right_lifo.ReadCurrentEntry().state.sampling_number + 1;
|
||||
npad->joy_right_lifo.WriteNextEntry(dummy_pad_state);
|
||||
dummy_pad_state.sampling_number = npad->palma_lifo.ReadCurrentEntry().sampling_number + 1;
|
||||
dummy_pad_state.sampling_number = npad->palma_lifo.ReadCurrentEntry().state.sampling_number + 1;
|
||||
npad->palma_lifo.WriteNextEntry(dummy_pad_state);
|
||||
dummy_pad_state.sampling_number = npad->system_ext_lifo.ReadCurrentEntry().sampling_number + 1;
|
||||
dummy_pad_state.sampling_number = npad->system_ext_lifo.ReadCurrentEntry().state.sampling_number + 1;
|
||||
npad->system_ext_lifo.WriteNextEntry(dummy_pad_state);
|
||||
dummy_gc_state.sampling_number = npad->gc_trigger_lifo.ReadCurrentEntry().sampling_number + 1;
|
||||
dummy_gc_state.sampling_number = npad->gc_trigger_lifo.ReadCurrentEntry().state.sampling_number + 1;
|
||||
npad->gc_trigger_lifo.WriteNextEntry(dummy_gc_state);
|
||||
}
|
||||
|
||||
|
||||
Reference in New Issue
Block a user