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2 Commits

Author SHA1 Message Date
PavelBARABANOV 1cd91f3063 header 2026-02-12 21:48:19 +03:00
PavelBARABANOV c4f977dda6 [vk] Restore original fence behavior except Android polling removal 2026-02-12 20:56:37 +03:00
23 changed files with 162 additions and 264 deletions
+1 -5
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@@ -84,11 +84,7 @@ function(SystemPackageViable JSON_NAME)
parse_object(${object})
string(REPLACE " " ";" find_args "${find_args}")
if (${package}_FORCE_BUNDLED)
set(${package}_FOUND OFF)
else()
find_package(${package} ${version} ${find_args} QUIET NO_POLICY_SCOPE)
endif()
find_package(${package} ${version} ${find_args} QUIET NO_POLICY_SCOPE)
set(${pkg}_VIABLE ${${package}_FOUND} PARENT_SCOPE)
set(${pkg}_PACKAGE ${package} PARENT_SCOPE)
+1 -1
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@@ -37,7 +37,7 @@ set(GIT_DESC ${BUILD_VERSION})
# Auto-updater metadata! Must somewhat mirror GitHub API endpoint
set(BUILD_AUTO_UPDATE_WEBSITE "https://github.com")
set(BUILD_AUTO_UPDATE_API "https://api.github.com")
set(BUILD_AUTO_UPDATE_API "http://api.github.com")
if (NIGHTLY_BUILD)
set(BUILD_AUTO_UPDATE_REPO "Eden-CI/Nightly")
+4 -1
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@@ -6,4 +6,7 @@ Debugging on physical hardware can get tedious and time consuming. Users are emp
**Standard key prefix**: Allows to redirect the key manager to a file other than `prod.keys` (for example `other` would redirect to `other.keys`). This is useful for testing multiple keysets. Default is `prod`.
**Changing serial**: Very basic way to set debug values for the serial (and battery number). Developers do not need to write the full serial as only the first digits (excluding the last) will be accoutned for. Region settings will affect the generated serial. The serial corresponds to a non-OLED/Lite console.
**Changing serial**: Very basic way to set debug values for the serial (and battery number). Developers do not need to write the full serial as it will be writen in-place (that is, it will be filled with the default serial and then overwrite the serial from the beginning).
- Battery serial: `YUZU0EMULATOR14022024`
- Board serial: `YUZ10000000001`
If the user were to set their board serial as `ABC`, then it will be written in-place and the resulting serial would be `ABC10000000001`. There are no underlying checks to ensure correctness of serials other than a hard limit of 16-characters for both.
+3 -1
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@@ -150,7 +150,7 @@
"package": "SDL2",
"name": "SDL2",
"repo": "crueter-ci/SDL2",
"version": "2.32.10-cf5dabd6ea",
"version": "2.32.10-a65111bd2d",
"min_version": "2.26.4"
},
"catch2": {
@@ -184,6 +184,7 @@
"repo": "libsdl-org/SDL",
"tag": "release-%VERSION%",
"hash": "d5622d6bb7266f7942a7b8ad43e8a22524893bf0c2ea1af91204838d9b78d32768843f6faa248757427b8404b8c6443776d4afa6b672cd8571a4e0c03a829383",
"key": "generic",
"bundled": true,
"git_version": "2.32.10",
"skip_updates": true
@@ -193,6 +194,7 @@
"repo": "libsdl-org/SDL",
"sha": "cc016b0046",
"hash": "b8d9873446cdb922387471df9968e078714683046674ef0d0edddf8e25da65a539a3bae83d635496b970237f90b07b36a69f8d7855d450de59311d6d6e8c3dbc",
"key": "steamdeck",
"bundled": true,
"skip_updates": "true"
},
@@ -534,8 +534,8 @@
<item>@string/frame_pacing_mode_target_Auto</item>
<item>@string/frame_pacing_mode_target_30</item>
<item>@string/frame_pacing_mode_target_60</item>
<item>@string/frame_pacing_mode_target_90</item>
<item>@string/frame_pacing_mode_target_120</item>
<item>@string/frame_pacing_mode_target_240</item>
</string-array>
<integer-array name="framePacingModeValues">
<item>0</item>
@@ -1038,8 +1038,8 @@
<string name="frame_pacing_mode_target_Auto">Auto</string>
<string name="frame_pacing_mode_target_30">30 FPS</string>
<string name="frame_pacing_mode_target_60">60 FPS</string>
<string name="frame_pacing_mode_target_90">90 FPS</string>
<string name="frame_pacing_mode_target_120">120 FPS</string>
<string name="frame_pacing_mode_target_240">240 FPS</string>
<!-- ASTC Decoding Method Choices -->
<string name="accelerate_astc_cpu" translatable="false">CPU</string>
+15 -10
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@@ -462,12 +462,9 @@ struct Values {
SwitchableSetting<FramePacingMode, true> frame_pacing_mode{linkage,
FramePacingMode::Target_Auto,
FramePacingMode::Target_Auto,
FramePacingMode::Target_120,
FramePacingMode::Target_240,
"frame_pacing_mode",
Category::RendererAdvanced,
Specialization::Default,
true,
true};
Category::RendererAdvanced};
SwitchableSetting<AstcRecompression, true> astc_recompression{linkage,
AstcRecompression::Uncompressed,
@@ -571,7 +568,13 @@ struct Values {
Category::RendererHacks};
SwitchableSetting<ExtendedDynamicState> dyna_state{linkage,
#if defined (ANDROID) || defined (__APPLE__)
#if defined (_WIN32)
ExtendedDynamicState::EDS3,
#elif defined (__FreeBSD__)
ExtendedDynamicState::EDS3,
#elif defined (ANDROID)
ExtendedDynamicState::Disabled,
#elif defined (__APPLE__)
ExtendedDynamicState::Disabled,
#else
ExtendedDynamicState::EDS2,
@@ -623,11 +626,11 @@ struct Values {
"language_index",
Category::System};
SwitchableSetting<Region, true> region_index{linkage, Region::Usa, "region_index", Category::System};
SwitchableSetting<TimeZone, true> time_zone_index{linkage, TimeZone::Auto, "time_zone_index", Category::System};
Setting<u32> serial_battery{linkage, 0, "serial_battery", Category::System};
Setting<u32> serial_unit{linkage, 0, "serial_unit", Category::System};
SwitchableSetting<TimeZone, true> time_zone_index{linkage, TimeZone::Auto,
"time_zone_index", Category::System};
// Measured in seconds since epoch
SwitchableSetting<bool> custom_rtc_enabled{linkage, false, "custom_rtc_enabled", Category::System, Specialization::Paired, true, true};
SwitchableSetting<bool> custom_rtc_enabled{
linkage, false, "custom_rtc_enabled", Category::System, Specialization::Paired, true, true};
SwitchableSetting<s64> custom_rtc{
linkage, 0, "custom_rtc", Category::System, Specialization::Time,
false, true, &custom_rtc_enabled};
@@ -797,6 +800,8 @@ struct Values {
true};
// Miscellaneous
Setting<std::string> serial_battery{linkage, std::string(), "serial_battery", Category::Miscellaneous};
Setting<std::string> serial_unit{linkage, std::string(), "serial_unit", Category::Miscellaneous};
Setting<std::string> log_filter{linkage, "*:Info", "log_filter", Category::Miscellaneous};
Setting<bool> log_flush_line{linkage, false, "flush_line", Category::Miscellaneous, Specialization::Default, true, true};
Setting<bool> censor_username{linkage, true, "censor_username", Category::Miscellaneous};
+1 -1
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@@ -129,7 +129,7 @@ ENUM(TimeZone, Auto, Default, Cet, Cst6Cdt, Cuba, Eet, Egypt, Eire, Est, Est5Edt
ENUM(AnisotropyMode, Automatic, Default, X2, X4, X8, X16, X32, X64, None);
ENUM(AstcDecodeMode, Cpu, Gpu, CpuAsynchronous);
ENUM(AstcRecompression, Uncompressed, Bc1, Bc3);
ENUM(FramePacingMode, Target_Auto, Target_30, Target_60, Target_90, Target_120);
ENUM(FramePacingMode, Target_Auto, Target_30, Target_60, Target_120, Target_240);
ENUM(VSyncMode, Immediate, Mailbox, Fifo, FifoRelaxed);
ENUM(VramUsageMode, Conservative, Aggressive);
ENUM(RendererBackend, OpenGL_GLSL, Vulkan, Null, OpenGL_GLASM, OpenGL_SPIRV);
+2 -44
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@@ -13,11 +13,6 @@
#include "common/windows/timer_resolution.h"
#endif
#if defined(_WIN32) && defined(ARCHITECTURE_x86_64) && defined(__MINGW64__)
#include "common/x64/cpu_detect.h"
#include "common/x64/rdtsc.h"
#endif
#include "common/settings.h"
#include "core/core_timing.h"
#include "core/hardware_properties.h"
@@ -287,45 +282,8 @@ void CoreTiming::ThreadLoop() {
const auto next_time = Advance();
if (next_time) {
// There are more events left in the queue, wait until the next event.
if (auto wait_time = *next_time - GetGlobalTimeNs().count(); wait_time > 0) {
#if defined(_WIN32) && defined(ARCHITECTURE_x86_64) && defined(__MINGW64__)
while (!paused && !event.IsSet() && wait_time > 0) {
wait_time = *next_time - GetGlobalTimeNs().count();
if (wait_time >= timer_resolution_ns) {
Common::Windows::SleepForOneTick();
} else {
// 100,000 cycles is a reasonable amount of time to wait to save on CPU resources.
// For reference:
// At 1 GHz, 100K cycles is 100us
// At 2 GHz, 100K cycles is 50us
// At 4 GHz, 100K cycles is 25us
constexpr auto PauseCycles = 100'000U;
auto const& caps = Common::GetCPUCaps();
if (caps.waitpkg) {
static constexpr auto RequestC02State = 0U;
const auto tsc = Common::X64::FencedRDTSC() + PauseCycles;
const auto eax = u32(tsc & 0xFFFFFFFF);
const auto edx = u32(tsc >> 32);
asm volatile("tpause %0" : : "r"(RequestC02State), "d"(edx), "a"(eax));
} else if (caps.monitorx) {
static constexpr auto EnableWaitTimeFlag = 1U << 1;
static constexpr auto RequestC1State = 0U;
// monitor_var should be aligned to a cache line.
alignas(64) u64 monitor_var{};
asm volatile("monitorx" : : "a"(&monitor_var), "c"(0), "d"(0));
asm volatile("mwaitx" : : "a"(RequestC1State), "b"(PauseCycles), "c"(EnableWaitTimeFlag));
} else {
std::this_thread::yield();
}
}
}
if (event.IsSet()) {
event.Reset();
}
#else
event.WaitFor(std::chrono::nanoseconds(wait_time));
#endif
}
auto wait_time = *next_time - GetGlobalTimeNs().count();
event.WaitFor(std::chrono::nanoseconds(wait_time));
} else {
// Queue is empty, wait until another event is scheduled and signals us to
// continue.
@@ -1,4 +1,4 @@
// SPDX-FileCopyrightText: Copyright 2026 Eden Emulator Project
// SPDX-FileCopyrightText: Copyright 2025 Eden Emulator Project
// SPDX-License-Identifier: GPL-3.0-or-later
// SPDX-FileCopyrightText: Copyright 2018 yuzu Emulator Project
@@ -980,82 +980,25 @@ Result ISystemSettingsServer::SetPrimaryAlbumStorage(PrimaryAlbumStorage primary
R_SUCCEED();
}
static void Fill3DS_CRC(u32 d, char* data) {
std::array<u8, 10> digits = {
u8((d / 1000000000) % 100),
u8((d / 100000000) % 10),
u8((d / 10000000) % 10),
u8((d / 1000000) % 10),
u8((d / 100000) % 10),
u8((d / 10000) % 10),
u8((d / 1000) % 10),
u8((d / 100) % 10),
u8((d / 10) % 10),
u8(d % 10),
};
// Normalize to retail values
std::array<u8, 4> retail_digits = { 1, 4, 5, 7 };
digits[0] = retail_digits[(d % 10) % 4];
digits[1] = 0;
//
for (size_t i = 0; i < sizeof(digits); ++i)
data[i] = char(digits[i] + '0');
u8 sum_odd = 0, sum_even = 0;
for (size_t i = 0; i < sizeof(digits); i += 2) {
sum_odd += digits[i + 0];
sum_even += digits[i + 1];
}
u8 sum_digit = u8(((sum_even * 3) + sum_odd) % 10);
if (sum_digit != 0)
sum_digit = 10 - sum_digit;
data[sizeof(digits)] = char(sum_digit + '0');
}
Result ISystemSettingsServer::GetBatteryLot(Out<BatteryLot> out_battery_lot) {
LOG_INFO(Service_SET, "called");
*out_battery_lot = []{
u32 d = ::Settings::values.serial_battery.GetValue();
BatteryLot c{};
c.lot_number[0] = 'B';
c.lot_number[1] = 'H';
c.lot_number[2] = 'A';
c.lot_number[3] = 'C';
// TODO: I have no fucking idea what the letters mean
c.lot_number[4] = 'H';
c.lot_number[5] = 'Z';
c.lot_number[6] = 'Z';
c.lot_number[7] = 'A';
c.lot_number[8] = 'D';
c.lot_number[9] = char(((d / 100000) % 26) + 'A');
Fill3DS_CRC(d, c.lot_number.data() + 10);
return c;
}();
*out_battery_lot = {"YUZU0EMULATOR14022024"};
if (auto const s = ::Settings::values.serial_battery.GetValue(); !s.empty()) {
auto const max_size = out_battery_lot->lot_number.size();
auto const end = s.size() > max_size ? s.begin() + max_size : s.end();
std::copy(s.begin(), end, out_battery_lot->lot_number.begin());
}
R_SUCCEED();
}
Result ISystemSettingsServer::GetSerialNumber(Out<SerialNumber> out_console_serial) {
LOG_INFO(Service_SET, "called");
*out_console_serial = []{
u32 d = ::Settings::values.serial_unit.GetValue();
SerialNumber c{};
c.serial_number[0] = 'X';
c.serial_number[1] = 'A';
c.serial_number[2] = [] {
// Adding another setting would be tedious so... let's just reuse region_index :)
switch (::Settings::values.region_index.GetValue()) {
case ::Settings::Region::Japan: return 'J';
case ::Settings::Region::Usa: return 'W';
case ::Settings::Region::Europe: return 'E';
case ::Settings::Region::Australia: return 'M'; //pretend its Malaysia
case ::Settings::Region::China:
case ::Settings::Region::Taiwan: return 'C';
case ::Settings::Region::Korea: return 'K';
default: return 'W';
}
}();
Fill3DS_CRC(d, c.serial_number.data() + 3);
return c;
}();
*out_console_serial = {"YUZ10000000001"};
if (auto const s = ::Settings::values.serial_unit.GetValue(); !s.empty()) {
auto const max_size = out_console_serial->serial_number.size();
auto const end = s.size() > max_size ? s.begin() + max_size : s.end();
std::copy(s.begin(), end, out_console_serial->serial_number.begin());
}
R_SUCCEED();
}
+2 -2
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@@ -1,4 +1,4 @@
// SPDX-FileCopyrightText: Copyright 2026 Eden Emulator Project
// SPDX-FileCopyrightText: Copyright 2025 Eden Emulator Project
// SPDX-License-Identifier: GPL-3.0-or-later
// SPDX-FileCopyrightText: Copyright 2018 yuzu Emulator Project
@@ -178,7 +178,7 @@ void LoopProcess(Core::System& system) {
auto module = std::make_shared<Module>();
server_manager->RegisterNamedService("csrng", std::make_shared<CSRNG>(system, module));
server_manager->RegisterNamedService("spl:", std::make_shared<SPL>(system, module));
server_manager->RegisterNamedService("spl", std::make_shared<SPL>(system, module));
server_manager->RegisterNamedService("spl:mig", std::make_shared<SPL_MIG>(system, module));
server_manager->RegisterNamedService("spl:fs", std::make_shared<SPL_FS>(system, module));
server_manager->RegisterNamedService("spl:ssl", std::make_shared<SPL_SSL>(system, module));
@@ -65,10 +65,11 @@ static Optimization::PolyfillOptions GenPolyfillOptions(const BlockOfCode& code)
struct Jit::Impl {
Impl(Jit* jit, A32::UserConfig conf) noexcept
: block_of_code(GenRunCodeCallbacks(conf.callbacks, &GetCurrentBlockThunk, this, conf), JitStateInfo{jit_state}, conf.code_cache_size, GenRCP(conf))
: ir_block{LocationDescriptor(0, PSR(0), FPSCR(0), false)}
, conf(std::move(conf))
, block_of_code(GenRunCodeCallbacks(conf.callbacks, &GetCurrentBlockThunk, this, conf), JitStateInfo{jit_state}, conf.code_cache_size, GenRCP(conf))
, emitter(block_of_code, conf, jit)
, polyfill_options(GenPolyfillOptions(block_of_code))
, conf(std::move(conf))
, jit_interface(jit)
{}
@@ -203,7 +204,8 @@ private:
}
A32EmitX64::BlockDescriptor GetBasicBlock(IR::LocationDescriptor descriptor) {
if (auto block = emitter.GetBasicBlock(descriptor))
auto block = emitter.GetBasicBlock(descriptor);
if (block)
return *block;
constexpr size_t MINIMUM_REMAINING_CODESIZE = 1 * 1024 * 1024;
@@ -213,10 +215,8 @@ private:
}
block_of_code.EnsureMemoryCommitted(MINIMUM_REMAINING_CODESIZE);
// LocationDescriptor ctor() does important ops (like tflags) do not skip
auto const arch_descriptor = A32::LocationDescriptor{descriptor};
ir_block.Reset(arch_descriptor);
A32::Translate(ir_block, arch_descriptor, conf.callbacks, {conf.arch_version, conf.define_unpredictable_behaviour, conf.hook_hint_instructions});
ir_block.Reset(descriptor);
A32::Translate(ir_block, A32::LocationDescriptor{descriptor}, conf.callbacks, {conf.arch_version, conf.define_unpredictable_behaviour, conf.hook_hint_instructions});
Optimization::Optimize(ir_block, conf, polyfill_options);
return emitter.Emit(ir_block);
}
@@ -243,13 +243,12 @@ private:
}
}
IR::Block ir_block = {LocationDescriptor(0, PSR(0), FPSCR(0), false)};
IR::Block ir_block;
const A32::UserConfig conf;
A32JitState jit_state;
BlockOfCode block_of_code;
A32EmitX64 emitter;
Optimization::PolyfillOptions polyfill_options;
// Keep it here, you don't wanna mess with the fuckery that's initializer lists
const A32::UserConfig conf;
Jit* jit_interface;
// Requests made during execution to invalidate the cache are queued up here.
@@ -62,7 +62,8 @@ static Optimization::PolyfillOptions GenPolyfillOptions(const BlockOfCode& code)
struct Jit::Impl final {
public:
Impl(Jit* jit, UserConfig conf)
: conf(conf)
: ir_block{LocationDescriptor(0, FP::FPCR(0), false)}
, conf(conf)
, block_of_code(GenRunCodeCallbacks(conf.callbacks, &GetCurrentBlockThunk, this, conf), JitStateInfo{jit_state}, conf.code_cache_size, GenRCP(conf))
, emitter(block_of_code, conf, jit)
, polyfill_options(GenPolyfillOptions(block_of_code))
@@ -256,8 +257,8 @@ private:
return GetBlock(A64::LocationDescriptor{GetCurrentLocation()}.SetSingleStepping(true));
}
CodePtr GetBlock(IR::LocationDescriptor descriptor) {
if (auto block = emitter.GetBasicBlock(descriptor))
CodePtr GetBlock(IR::LocationDescriptor current_location) {
if (auto block = emitter.GetBasicBlock(current_location))
return block->entrypoint;
constexpr size_t MINIMUM_REMAINING_CODESIZE = 1 * 1024 * 1024;
@@ -270,10 +271,8 @@ private:
// JIT Compile
const auto get_code = [this](u64 vaddr) { return conf.callbacks->MemoryReadCode(vaddr); };
// LocationDescriptor ctor() does important ops (like tflags) do not skip
auto const arch_descriptor = A64::LocationDescriptor{descriptor};
ir_block.Reset(arch_descriptor);
A64::Translate(ir_block, arch_descriptor, get_code, {conf.define_unpredictable_behaviour, conf.wall_clock_cntpct});
ir_block.Reset(current_location);
A64::Translate(ir_block, A64::LocationDescriptor{current_location}, get_code, {conf.define_unpredictable_behaviour, conf.wall_clock_cntpct});
Optimization::Optimize(ir_block, conf, polyfill_options);
return emitter.Emit(ir_block).entrypoint;
}
@@ -300,7 +299,7 @@ private:
}
}
IR::Block ir_block = {LocationDescriptor(0, FP::FPCR(0), false)};
IR::Block ir_block;
const UserConfig conf;
A64JitState jit_state;
BlockOfCode block_of_code;
+12 -24
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@@ -22,10 +22,13 @@
namespace Dynarmic::IR {
Block::Block(LocationDescriptor location) noexcept
: location{location}
, end_location{location}
{}
Block::Block(const LocationDescriptor& location)
: location{location},
end_location{location},
cond{Cond::AL}
{
}
/// Prepends a new instruction to this basic block before the insertion point,
/// handling any allocations necessary to do so.
@@ -57,21 +60,6 @@ Block::iterator Block::PrependNewInst(iterator insertion_point, Opcode opcode, s
return instructions.insert_before(insertion_point, inst);
}
void Block::Reset(LocationDescriptor location_) noexcept {
mcl::intrusive_list<IR::Inst> tmp = {};
instructions.swap(tmp);
inlined_inst.clear();
pooled_inst.clear();
cond_failed.reset();
location = location_;
end_location = location_;
cond = Cond::AL;
terminal = Term::Invalid{};
cond_failed_cycle_count = 0;
cycle_count = 0;
ASSERT(instructions.size() == 0);
}
static std::string TerminalToString(const Terminal& terminal_variant) noexcept {
struct : boost::static_visitor<std::string> {
std::string operator()(const Term::Invalid&) const {
@@ -135,11 +123,11 @@ std::string DumpBlock(const IR::Block& block) noexcept {
case Type::A32ExtReg: return A32::ExtRegToString(arg.GetA32ExtRegRef());
case Type::A64Reg: return A64::RegToString(arg.GetA64RegRef());
case Type::A64Vec: return A64::VecToString(arg.GetA64VecRef());
case Type::CoprocInfo: return fmt::format("$coproc{}", arg.GetCoprocInfo()[0]);
case Type::NZCVFlags: return fmt::format("$nzcv");
case Type::Cond: return fmt::format("$cond={}", A32::CondToString(arg.GetCond()));
case Type::Table: return fmt::format("$table");
case Type::AccType: return fmt::format("$acc-type={}", u32(arg.GetAccType()));
case Type::CoprocInfo: return fmt::format("#<coproc>");
case Type::NZCVFlags: return fmt::format("#<NZCV flags>");
case Type::Cond: return fmt::format("#<cond={}>", A32::CondToString(arg.GetCond()));
case Type::Table: return fmt::format("#<table>");
case Type::AccType: return fmt::format("#<acc-type={}>", u32(arg.GetAccType()));
default: return fmt::format("<unknown immediate type {}>", arg.GetType());
}
};
+14 -3
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@@ -43,7 +43,7 @@ public:
using reverse_iterator = instruction_list_type::reverse_iterator;
using const_reverse_iterator = instruction_list_type::const_reverse_iterator;
Block(LocationDescriptor location) noexcept;
explicit Block(const LocationDescriptor& location);
~Block() = default;
Block(const Block&) = delete;
Block& operator=(const Block&) = delete;
@@ -58,7 +58,6 @@ public:
return PrependNewInst(instructions.end(), opcode, args);
}
iterator PrependNewInst(iterator insertion_point, Opcode op, std::initializer_list<Value> args) noexcept;
void Reset(LocationDescriptor location_) noexcept;
/// Gets a mutable reference to the instruction list for this basic block.
inline instruction_list_type& Instructions() noexcept {
@@ -141,6 +140,18 @@ public:
return cycle_count;
}
inline void Reset(LocationDescriptor location_) noexcept {
inlined_inst.clear();
pooled_inst.clear();
cond_failed.reset();
location = location_;
terminal = Term::Invalid{};
cond_failed_cycle_count = 0;
cycle_count = 0;
instruction_list_type tmp{};
instructions.swap(tmp);
}
/// "Hot cache" for small blocks so we don't call global allocator
boost::container::static_vector<Inst, 30> inlined_inst;
/// List of instructions in this block.
@@ -154,7 +165,7 @@ public:
/// Description of the end location of this block
LocationDescriptor end_location;
/// Conditional to pass in order to execute this block
Cond cond = Cond::AL;
Cond cond;
/// Terminal instruction of this block.
Terminal terminal = Term::Invalid{};
/// Number of cycles this block takes to execute if the conditional fails.
@@ -1042,11 +1042,6 @@ static void FoldZeroExtendXToLong(IR::Inst& inst) {
static void ConstantPropagation(IR::Block& block) {
for (auto& inst : block.instructions) {
auto const opcode = inst.GetOpcode();
// skip NZCV so we dont end up discarding side effects :)
// TODO(lizzie): hey stupid maybe fix the A64 codegen for folded constants AND
// redirect the mfer properly?!??! just saying :)
if (IR::MayGetNZCVFromOp(opcode) && inst.GetAssociatedPseudoOperation(IR::Opcode::GetNZCVFromOp))
continue;
switch (opcode) {
case Op::LeastSignificantWord:
FoldLeastSignificantWord(inst);
+5 -13
View File
@@ -11,8 +11,9 @@ namespace FrontendCommon {
void GenerateSettings() {
static std::random_device rd;
// Web Token
if (Settings::values.eden_token.GetValue().empty()) {
// Web Token //
auto &token_setting = Settings::values.eden_token;
if (token_setting.GetValue().empty()) {
static constexpr const size_t token_length = 48;
static constexpr const frozen::string token_set = "abcdefghijklmnopqrstuvwxyz";
static std::uniform_int_distribution<int> token_dist(0, token_set.size() - 1);
@@ -22,18 +23,9 @@ void GenerateSettings() {
size_t idx = token_dist(rd);
result += token_set[idx];
}
Settings::values.eden_token.SetValue(result);
token_setting.SetValue(result);
}
// Randomly generated number because, well, we fill the rest automagically ;)
// Other serial parts are filled by Region_Index
std::random_device device;
std::mt19937 gen(device());
std::uniform_int_distribution<u32> distribution(1, (std::numeric_limits<u32>::max)());
if (Settings::values.serial_unit.GetValue() == 0)
Settings::values.serial_unit.SetValue(distribution(gen));
if (Settings::values.serial_battery.GetValue() == 0)
Settings::values.serial_battery.SetValue(distribution(gen));
}
}
+1 -1
View File
@@ -517,8 +517,8 @@ std::unique_ptr<ComboboxTranslationMap> ComboboxEnumeration(QObject* parent)
PAIR(FramePacingMode, Target_Auto, tr("Auto")),
PAIR(FramePacingMode, Target_30, tr("30 FPS")),
PAIR(FramePacingMode, Target_60, tr("60 FPS")),
PAIR(FramePacingMode, Target_90, tr("90 FPS")),
PAIR(FramePacingMode, Target_120, tr("120 FPS")),
PAIR(FramePacingMode, Target_240, tr("240 FPS")),
}});
translations->insert({Settings::EnumMetadata<Settings::VramUsageMode>::Index(),
{
@@ -1,4 +1,4 @@
// SPDX-FileCopyrightText: Copyright 2025 Eden Emulator Project
// SPDX-FileCopyrightText: Copyright 2026 Eden Emulator Project
// SPDX-License-Identifier: GPL-3.0-or-later
// SPDX-FileCopyrightText: Copyright 2020 yuzu Emulator Project
@@ -80,9 +80,7 @@ void MasterSemaphore::Wait(u64 tick) {
if (!semaphore) {
// If we don't support timeline semaphores, wait for the value normally
std::unique_lock lk{free_mutex};
free_cv.wait(lk, [&] {
return gpu_tick.load(std::memory_order_acquire) >= tick;
});
free_cv.wait(lk, [&] { return gpu_tick.load(std::memory_order_relaxed) >= tick; });
return;
}
@@ -217,33 +215,18 @@ void MasterSemaphore::WaitThread(std::stop_token token) {
std::tie(host_tick, fence) = std::move(wait_queue.front());
wait_queue.pop();
}
#ifdef ANDROID
VkResult status;
do {
status = fence.GetStatus();
if (status == VK_NOT_READY) {
std::this_thread::sleep_for(std::chrono::microseconds(100));
}
} while (status == VK_NOT_READY);
if (status == VK_SUCCESS) {
fence.Reset();
} else {
vk::Check(status);
continue;
}
#else
fence.Wait();
fence.Reset();
#endif
{
std::scoped_lock lock{free_mutex};
free_queue.push_front(std::move(fence));
gpu_tick.store(host_tick, std::memory_order_release);
gpu_tick.store(host_tick);
}
#ifdef ANDROID
free_cv.notify_all();
#else
free_cv.notify_one();
#endif
}
}
@@ -347,7 +347,7 @@ void Scheduler::EndRenderPass()
Record([num_images = num_renderpass_images,
images = renderpass_images,
ranges = renderpass_image_ranges](vk::CommandBuffer cmdbuf) {
std::array<VkImageMemoryBarrier, 9> barriers;
std::vector<VkImageMemoryBarrier> barriers(num_images);
VkPipelineStageFlags src_stages = 0;
for (size_t i = 0; i < num_images; ++i) {
const VkImageSubresourceRange& range = ranges[i];
+20 -21
View File
@@ -115,27 +115,28 @@ public:
/// Waits for the given GPU tick, optionally pacing frames.
void Wait(u64 tick, double target_fps = 0.0) {
if (Settings::values.use_speed_limit.GetValue() && target_fps > 0.0) {
const auto now = std::chrono::steady_clock::now();
if (start_time == std::chrono::steady_clock::time_point{} || current_target_fps != target_fps) {
start_time = now;
frame_counter = 0;
current_target_fps = target_fps;
}
frame_counter++;
std::chrono::duration<double> frame_interval(1.0 / current_target_fps);
auto target_time = start_time + frame_interval * frame_counter;
if (target_time > now) {
std::this_thread::sleep_until(target_time);
auto frame_duration = std::chrono::duration_cast<std::chrono::steady_clock::duration>(std::chrono::duration<double>(1.0 / target_fps));
auto now = std::chrono::steady_clock::now();
if (now < next_frame_time) {
std::this_thread::sleep_until(next_frame_time);
next_frame_time += frame_duration;
} else {
start_time = now;
frame_counter = 0;
next_frame_time = now + frame_duration;
}
}
if (tick > 0) {
if (tick >= master_semaphore->CurrentTick()) {
Flush();
}
master_semaphore->Wait(tick);
if (tick > master_semaphore->CurrentTick() && !chunk->Empty()) {
Flush();
}
master_semaphore->Wait(tick);
}
/// Resets the frame pacing state by setting the next frame time.
void ResetFramePacing(double target_fps = 0.0) {
if (target_fps > 0.0) {
auto frame_duration = std::chrono::duration_cast<std::chrono::steady_clock::duration>(std::chrono::duration<double>(1.0 / target_fps));
next_frame_time = std::chrono::steady_clock::now() + frame_duration;
} else {
next_frame_time = std::chrono::steady_clock::time_point{};
}
}
@@ -281,9 +282,7 @@ private:
std::condition_variable_any event_cv;
std::jthread worker_thread;
std::chrono::steady_clock::time_point start_time{};
u64 frame_counter{};
double current_target_fps{};
std::chrono::steady_clock::time_point next_frame_time{};
};
} // namespace Vulkan
+37 -16
View File
@@ -146,6 +146,25 @@ void Swapchain::Create(
{
is_outdated = false;
is_suboptimal = false;
switch (Settings::values.frame_pacing_mode.GetValue()) {
case Settings::FramePacingMode::Target_Auto:
scheduler.ResetFramePacing();
break;
case Settings::FramePacingMode::Target_30:
scheduler.ResetFramePacing(30.0);
break;
case Settings::FramePacingMode::Target_60:
scheduler.ResetFramePacing(60.0);
break;
case Settings::FramePacingMode::Target_120:
scheduler.ResetFramePacing(120.0);
break;
case Settings::FramePacingMode::Target_240:
scheduler.ResetFramePacing(240.0);
break;
}
width = width_;
height = height_;
#ifdef ANDROID
@@ -194,22 +213,24 @@ bool Swapchain::AcquireNextImage() {
break;
}
switch (Settings::values.frame_pacing_mode.GetValue()) {
case Settings::FramePacingMode::Target_Auto:
scheduler.Wait(resource_ticks[image_index]);
break;
case Settings::FramePacingMode::Target_30:
scheduler.Wait(resource_ticks[image_index], 30.0);
break;
case Settings::FramePacingMode::Target_60:
scheduler.Wait(resource_ticks[image_index], 60.0);
break;
case Settings::FramePacingMode::Target_90:
scheduler.Wait(resource_ticks[image_index], 90.0);
break;
case Settings::FramePacingMode::Target_120:
scheduler.Wait(resource_ticks[image_index], 120.0);
break;
if (resource_ticks[image_index] != 0 && !scheduler.IsFree(resource_ticks[image_index])) {
switch (Settings::values.frame_pacing_mode.GetValue()) {
case Settings::FramePacingMode::Target_Auto:
scheduler.Wait(resource_ticks[image_index]);
break;
case Settings::FramePacingMode::Target_30:
scheduler.Wait(resource_ticks[image_index], 30.0);
break;
case Settings::FramePacingMode::Target_60:
scheduler.Wait(resource_ticks[image_index], 60.0);
break;
case Settings::FramePacingMode::Target_120:
scheduler.Wait(resource_ticks[image_index], 120.0);
break;
case Settings::FramePacingMode::Target_240:
scheduler.Wait(resource_ticks[image_index], 240.0);
break;
}
}
resource_ticks[image_index] = scheduler.CurrentTick();
+5 -1
View File
@@ -1,4 +1,4 @@
// SPDX-FileCopyrightText: Copyright 2026 Eden Emulator Project
// SPDX-FileCopyrightText: Copyright 2025 Eden Emulator Project
// SPDX-License-Identifier: GPL-3.0-or-later
// SPDX-FileCopyrightText: 2016 Citra Emulator Project
@@ -57,6 +57,10 @@ void ConfigureDebug::SetConfiguration() {
#endif
// Immutable after starting
ui->serial_battery_edit->setEnabled(runtime_lock);
ui->serial_battery_edit->setText(QString::fromStdString(Settings::values.serial_battery.GetValue()));
ui->serial_board_edit->setEnabled(runtime_lock);
ui->serial_board_edit->setText(QString::fromStdString(Settings::values.serial_unit.GetValue()));
ui->homebrew_args_edit->setEnabled(runtime_lock);
ui->homebrew_args_edit->setText(QString::fromStdString(Settings::values.program_args.GetValue()));
ui->toggle_console->setEnabled(runtime_lock);