2026-09-20 07:03:36

Signed-off-by: lizzie <lizzie@eden-emu.dev>
This commit is contained in:
lizzie
2026-09-20 07:03:36 +00:00
parent 908b1e9a37
commit 41ab8bf1c8
6 changed files with 63 additions and 56 deletions
@@ -35,7 +35,7 @@ void CircularBufferSinkInfo::Update(BehaviorInfo::ErrorInfo& error_info, OutStat
auto current_params{reinterpret_cast<CircularBufferInParameter*>(parameter.data())}; auto current_params{reinterpret_cast<CircularBufferInParameter*>(parameter.data())};
auto current_state{reinterpret_cast<CircularBufferState*>(state.data())}; auto current_state{reinterpret_cast<CircularBufferState*>(state.data())};
if (in_use == buffer_params->in_use && !buffer_unmapped) { if (in_use == bool(buffer_params->in_use) && !buffer_unmapped) {
error_info.error_code = ResultSuccess; error_info.error_code = ResultSuccess;
error_info.address = CpuAddr(0); error_info.address = CpuAddr(0);
out_status.writeOffset = current_state->last_pos2; out_status.writeOffset = current_state->last_pos2;
+18 -19
View File
@@ -31,10 +31,10 @@ public:
}; };
struct DeviceInParameter { struct DeviceInParameter {
/* 0x000 */ char name[0x100]; /* 0x000 */ u8 name[0x100];
/* 0x100 */ u32 input_count; /* 0x100 */ u32 input_count;
/* 0x104 */ std::array<s8, MaxChannels> inputs; /* 0x104 */ std::array<s8, MaxChannels> inputs;
/* 0x10A */ char unk10A[0x1]; /* 0x10A */ u8 unk10A[0x1];
/* 0x10B */ bool downmix_enabled; /* 0x10B */ bool downmix_enabled;
/* 0x10C */ std::array<f32, 4> downmix_coeff; /* 0x10C */ std::array<f32, 4> downmix_coeff;
}; };
@@ -43,7 +43,7 @@ public:
struct DeviceState { struct DeviceState {
/* 0x00 */ UpsamplerInfo* upsampler_info; /* 0x00 */ UpsamplerInfo* upsampler_info;
/* 0x08 */ std::array<Common::FixedPoint<16, 16>, 4> downmix_coeff; /* 0x08 */ std::array<Common::FixedPoint<16, 16>, 4> downmix_coeff;
/* 0x18 */ char unk18[0x18]; /* 0x18 */ u8 unk18[0x18];
}; };
static_assert(sizeof(DeviceState) == 0x30, "DeviceState has the wrong size!"); static_assert(sizeof(DeviceState) == 0x30, "DeviceState has the wrong size!");
@@ -55,8 +55,8 @@ public:
/* 0x14 */ u32 previous_pos; /* 0x14 */ u32 previous_pos;
/* 0x18 */ SampleFormat format; /* 0x18 */ SampleFormat format;
/* 0x1C */ std::array<s8, MaxChannels> inputs; /* 0x1C */ std::array<s8, MaxChannels> inputs;
/* 0x22 */ bool in_use; /* 0x22 */ u8 in_use;
/* 0x23 */ char unk23[0x5]; /* 0x23 */ u8 unk23[0x5];
}; };
static_assert(sizeof(CircularBufferInParameter) == 0x28, static_assert(sizeof(CircularBufferInParameter) == 0x28,
"CircularBufferInParameter has the wrong size!"); "CircularBufferInParameter has the wrong size!");
@@ -65,16 +65,16 @@ public:
/* 0x00 */ u32 last_pos2; /* 0x00 */ u32 last_pos2;
/* 0x04 */ s32 current_pos; /* 0x04 */ s32 current_pos;
/* 0x08 */ u32 last_pos; /* 0x08 */ u32 last_pos;
/* 0x0C */ char unk0C[0x4]; /* 0x0C */ u8 unk0C[0x4];
/* 0x10 */ AddressInfo address_info; /* 0x10 */ AddressInfo address_info;
}; };
static_assert(sizeof(CircularBufferState) == 0x30, "CircularBufferState has the wrong size!"); static_assert(sizeof(CircularBufferState) == 0x30, "CircularBufferState has the wrong size!");
struct InParameter { struct InParameter {
/* 0x000 */ Type type; /* 0x000 */ Type type;
/* 0x001 */ bool in_use; /* 0x001 */ u8 in_use;
/* 0x004 */ u32 node_id; /* 0x004 */ u32 node_id;
/* 0x008 */ char unk08[0x18]; /* 0x008 */ u8 unk08[0x18];
union { union {
/* 0x020 */ DeviceInParameter device; /* 0x020 */ DeviceInParameter device;
/* 0x020 */ CircularBufferInParameter circular_buffer; /* 0x020 */ CircularBufferInParameter circular_buffer;
@@ -84,7 +84,7 @@ public:
struct OutStatus { struct OutStatus {
/* 0x00 */ u32 writeOffset; /* 0x00 */ u32 writeOffset;
/* 0x04 */ char unk04[0x1C]; /* 0x04 */ u8 unk04[0x1C];
}; // size == 0x20 }; // size == 0x20
static_assert(sizeof(OutStatus) == 0x20, "SinkInfoBase::OutStatus has the wrong size!"); static_assert(sizeof(OutStatus) == 0x20, "SinkInfoBase::OutStatus has the wrong size!");
@@ -162,19 +162,18 @@ public:
u8* GetParameter(); u8* GetParameter();
protected: protected:
/// Type of this sink
Type type{Type::Invalid};
/// Is this sink in use?
bool in_use{};
/// Is this sink's buffer unmapped? Circular only
bool buffer_unmapped{};
/// Node id for this sink
u32 node_id{};
/// State buffer for this sink /// State buffer for this sink
std::array<u8, (std::max)(sizeof(DeviceState), sizeof(CircularBufferState))> state{}; std::array<u8, (std::max)(sizeof(DeviceState), sizeof(CircularBufferState))> state{};
/// Parameter buffer for this sink /// Parameter buffer for this sink
std::array<u8, (std::max)(sizeof(DeviceInParameter), sizeof(CircularBufferInParameter))> std::array<u8, (std::max)(sizeof(DeviceInParameter), sizeof(CircularBufferInParameter))> parameter{};
parameter{}; /// Type of this sink
Type type{Type::Invalid};
/// Node id for this sink
u32 node_id{};
/// Is this sink in use?
bool in_use : 1 = false;
/// Is this sink's buffer unmapped? Circular only
bool buffer_unmapped : 1 = false;
}; };
} // namespace AudioCore::Renderer } // namespace AudioCore::Renderer
@@ -170,13 +170,19 @@ template<>
// check for marked bit, use as unmapped if marked // check for marked bit, use as unmapped if marked
if (ctx.conf.page_table_marked_bit) { if (ctx.conf.page_table_marked_bit) {
code.bt(page, *ctx.conf.page_table_marked_bit); auto const marked_bit = *ctx.conf.page_table_marked_bit;
code.jc(abort, code.T_NEAR); if (s64(s32(1 << marked_bit)) == s64(1 << marked_bit)) {
code.test(page, s32(1 << marked_bit));
code.jnz(abort, code.T_NEAR);
} else {
code.bt(page, marked_bit);
code.jc(abort, code.T_NEAR);
}
} }
// mask away attributes // mask away attributes
if (ctx.conf.page_table_pointer_mask == 0) { if (ctx.conf.page_table_pointer_mask == 0) {
code.test(page, page); code.test(page, page);
} else if (std::in_range<s32>(ctx.conf.page_table_pointer_mask)) { } else if (s64(s32(ctx.conf.page_table_pointer_mask)) == s64(ctx.conf.page_table_pointer_mask)) {
code.and_(page, ctx.conf.page_table_pointer_mask); code.and_(page, ctx.conf.page_table_pointer_mask);
} else { } else {
code.mov(tmp, ctx.conf.page_table_pointer_mask); code.mov(tmp, ctx.conf.page_table_pointer_mask);
@@ -79,8 +79,10 @@ void NpadAbstractButtonHandler::UpdateAllButtonLifo() {
Core::HID::NpadIdType npad_id = properties_handler->GetNpadId(); Core::HID::NpadIdType npad_id = properties_handler->GetNpadId();
for (std::size_t i = 0; i < AruidIndexMax; i++) { for (std::size_t i = 0; i < AruidIndexMax; i++) {
auto* data = applet_resource_holder->applet_resource->GetAruidDataByIndex(i); auto* data = applet_resource_holder->applet_resource->GetAruidDataByIndex(i);
auto& npad_entry = data->shared_memory_format->npad.npad_entry[NpadIdTypeToIndex(npad_id)]; if (auto const shfmt = data->shared_memory_format; shfmt) {
UpdateButtonLifo(npad_entry, data->aruid); auto& npad_entry = shfmt->npad.npad_entry[NpadIdTypeToIndex(npad_id)];
UpdateButtonLifo(npad_entry, data->aruid);
}
} }
} }
@@ -88,19 +90,19 @@ void NpadAbstractButtonHandler::UpdateCoreBatteryState() {
Core::HID::NpadIdType npad_id = properties_handler->GetNpadId(); Core::HID::NpadIdType npad_id = properties_handler->GetNpadId();
for (std::size_t i = 0; i < AruidIndexMax; i++) { for (std::size_t i = 0; i < AruidIndexMax; i++) {
auto* data = applet_resource_holder->applet_resource->GetAruidDataByIndex(i); auto* data = applet_resource_holder->applet_resource->GetAruidDataByIndex(i);
auto& npad_entry = data->shared_memory_format->npad.npad_entry[NpadIdTypeToIndex(npad_id)]; if (auto const shfmt = data->shared_memory_format; shfmt) {
UpdateButtonLifo(npad_entry, data->aruid); auto& npad_entry = shfmt->npad.npad_entry[NpadIdTypeToIndex(npad_id)];
UpdateButtonLifo(npad_entry, data->aruid);
}
} }
} }
void NpadAbstractButtonHandler::UpdateButtonState(u64 aruid) { void NpadAbstractButtonHandler::UpdateButtonState(u64 aruid) {
Core::HID::NpadIdType npad_id = properties_handler->GetNpadId(); Core::HID::NpadIdType npad_id = properties_handler->GetNpadId();
auto* data = applet_resource_holder->applet_resource->GetAruidData(aruid); if (auto data = applet_resource_holder->applet_resource->GetAruidData(aruid); data) {
if (data == nullptr) { auto& npad_entry = data->shared_memory_format->npad.npad_entry[NpadIdTypeToIndex(npad_id)];
return; UpdateButtonLifo(npad_entry, aruid);
} }
auto& npad_entry = data->shared_memory_format->npad.npad_entry[NpadIdTypeToIndex(npad_id)];
UpdateButtonLifo(npad_entry, aruid);
} }
Result NpadAbstractButtonHandler::SetHomeProtection(bool is_enabled, u64 aruid) { Result NpadAbstractButtonHandler::SetHomeProtection(bool is_enabled, u64 aruid) {
@@ -496,31 +496,30 @@ void SetupCapabilities(const Profile& profile, const Info& info, EmitContext& ct
} }
void PatchPhiNodes(IR::Program& program, EmitContext& ctx) { void PatchPhiNodes(IR::Program& program, EmitContext& ctx) {
// Flatten all leading PHIs from each block into a vector // Flatten all leading PHIs from each block into a vector
std::vector<IR::Inst*> phi_instructions; std::vector<IR::Inst*> phi_instructions;
for (IR::Block* block : program.blocks) { for (IR::Block* block : program.blocks) {
for (auto it = block->begin(); it != block->end(); ++it) { for (auto it = block->begin(); it != block->end(); ++it) {
if (it->GetOpcode() != IR::Opcode::Phi) if (it->GetOpcode() != IR::Opcode::Phi)
break; break;
phi_instructions.push_back(&*it); phi_instructions.push_back(&*it);
}
}
if (phi_instructions.empty()) {
return; // nothing to patch
}
// Start "before" first PHI; advance on phi_arg == 0
size_t phi_index = static_cast<size_t>(-1);
ctx.PatchDeferredPhi([&](size_t phi_arg, Id parent) -> std::pair<Id, Id> {
if (phi_arg == 0) {
++phi_index;
}
IR::Inst* phi = phi_instructions[phi_index];
return { ctx.Def(phi->Arg(phi_arg)), parent };
});
} }
}
if (phi_instructions.empty()) {
return; // nothing to patch
}
// Start "before" first PHI; advance on phi_arg == 0
ctx.phi_index = std::size_t(-1);
ctx.PatchDeferredPhi([&ctx, phi_insts = std::move(phi_instructions)](size_t phi_arg, Id parent) -> std::pair<Id, Id> {
if (phi_arg == 0) {
++ctx.phi_index;
}
IR::Inst* phi = phi_insts[ctx.phi_index];
return { ctx.Def(phi->Arg(phi_arg)), parent };
});
}
} // Anonymous namespace } // Anonymous namespace
std::vector<u32> EmitSPIRV(const Profile& profile, const RuntimeInfo& runtime_info, IR::Program& program, Bindings& bindings) { std::vector<u32> EmitSPIRV(const Profile& profile, const RuntimeInfo& runtime_info, IR::Program& program, Bindings& bindings) {
@@ -371,6 +371,7 @@ public:
// Sirit::Id doesn't play nice with *::set<> // Sirit::Id doesn't play nice with *::set<>
::Common::unordered_set<u32> non_uniform_ids; ::Common::unordered_set<u32> non_uniform_ids;
size_t phi_index{};
bool uses_nonuniform_sampled_image{}; bool uses_nonuniform_sampled_image{};
bool uses_nonuniform_storage_image{}; bool uses_nonuniform_storage_image{};