Convert all make all hex uppercase according to codestyle

This commit is contained in:
Billy Laws 2020-08-12 20:12:34 +01:00 committed by ◱ PixelyIon
parent e5264f7762
commit 817d37600e
26 changed files with 190 additions and 190 deletions

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@ -11,7 +11,7 @@ namespace skyline::audio {
std::vector<i16> AdpcmDecoder::Decode(const std::vector<u8> &adpcmData) {
constexpr size_t BytesPerFrame = 0x8; //!< The number of bytes in a single frame
constexpr size_t SamplesPerFrame = 0xe; //!< The number of samples in a single frame
constexpr size_t SamplesPerFrame = 0xE; //!< The number of samples in a single frame
size_t remainingSamples = (adpcmData.size() / BytesPerFrame) * SamplesPerFrame;

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@ -126,7 +126,7 @@ namespace skyline::audio {
std::vector<i16> outputBuffer(outputSize);
const std::array<skyline::audio::LutEntry, 128> &lut = [step] {
if (step > 0xaaaa)
if (step > 0xAAAA)
return CurveLut0;
else if (step <= 0x8000)
return CurveLut1;
@ -148,7 +148,7 @@ namespace skyline::audio {
auto newOffset = fraction + step;
inIndex += newOffset >> 15;
fraction = newOffset & 0x7fff;
fraction = newOffset & 0x7FFF;
}
return outputBuffer;

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@ -134,7 +134,7 @@ namespace skyline::gpu::engine {
}
break;
case MAXWELL3D_OFFSET(firmwareCall[4]):
registers.raw[0xd00] = 1;
registers.raw[0xD00] = 1;
break;
}
}

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@ -13,7 +13,7 @@
namespace skyline {
namespace constant {
constexpr u32 Maxwell3DRegisterCounter = 0xe00; //!< The number of Maxwell 3D registers
constexpr u32 Maxwell3DRegisterCounter = 0xE00; //!< The number of Maxwell 3D registers
}
namespace gpu::engine {
@ -117,9 +117,9 @@ namespace skyline {
static_assert(sizeof(Viewport) == (0x4 * sizeof(u32)));
enum class PolygonMode : u32 {
Point = 0x1b00,
Line = 0x1b01,
Fill = 0x1b02,
Point = 0x1B00,
Line = 0x1B01,
Fill = 0x1B02,
};
union VertexAttribute {
@ -130,14 +130,14 @@ namespace skyline {
Size_2x32 = 0x04,
Size_3x32 = 0x02,
Size_4x32 = 0x01,
Size_1x16 = 0x1b,
Size_2x16 = 0x0f,
Size_1x16 = 0x1B,
Size_2x16 = 0x0F,
Size_3x16 = 0x05,
Size_4x16 = 0x03,
Size_1x8 = 0x1d,
Size_1x8 = 0x1D,
Size_2x8 = 0x18,
Size_3x8 = 0x13,
Size_4x8 = 0x0a,
Size_4x8 = 0x0A,
Size_10_10_10_2 = 0x30,
Size_11_11_10 = 0x31,
};
@ -197,8 +197,8 @@ namespace skyline {
AddGL = 0x8006,
SubtractGL = 0x8007,
ReverseSubtractGL = 0x8008,
MinimumGL = 0x800a,
MaximumGL = 0x800b
MinimumGL = 0x800A,
MaximumGL = 0x800B
};
enum class Factor : u32 {
@ -211,8 +211,8 @@ namespace skyline {
DestAlpha = 0x7,
OneMinusDestAlpha = 0x8,
DestColor = 0x9,
OneMinusDestColor = 0xa,
SourceAlphaSaturate = 0xb,
OneMinusDestColor = 0xA,
SourceAlphaSaturate = 0xB,
Source1Color = 0x10,
OneMinusSource1Color = 0x11,
Source1Alpha = 0x12,
@ -233,14 +233,14 @@ namespace skyline {
DestColorGL = 0x4306,
OneMinusDestColorGL = 0x4307,
SourceAlphaSaturateGL = 0x4308,
ConstantColorGL = 0xc001,
OneMinusConstantColorGL = 0xc002,
ConstantAlphaGL = 0xc003,
OneMinusConstantAlphaGL = 0xc004,
Source1ColorGL = 0xc900,
OneMinusSource1ColorGL = 0xc901,
Source1AlphaGL = 0xc902,
OneMinusSource1AlphaGL = 0xc903,
ConstantColorGL = 0xC001,
OneMinusConstantColorGL = 0xC002,
ConstantAlphaGL = 0xC003,
OneMinusConstantAlphaGL = 0xC004,
Source1ColorGL = 0xC900,
OneMinusSource1ColorGL = 0xC901,
Source1AlphaGL = 0xC902,
OneMinusSource1AlphaGL = 0xC903,
};
struct {
@ -337,20 +337,20 @@ namespace skyline {
VertexShaderInvocations = 0x5,
GeometryShaderInvocations = 0x7,
GeometryShaderPrimitives = 0x9,
ZcullStats0 = 0xa,
TransformFeedbackPrimitivesWritten = 0xb,
ZcullStats1 = 0xc,
ZcullStats2 = 0xe,
ClipperInputPrimitives = 0xf,
ZcullStats0 = 0xA,
TransformFeedbackPrimitivesWritten = 0xB,
ZcullStats1 = 0xC,
ZcullStats2 = 0xE,
ClipperInputPrimitives = 0xF,
ZcullStats3 = 0x10,
ClipperOutputPrimitives = 0x11,
PrimitivesGenerated = 0x12,
FragmentShaderInvocations = 0x13,
SamplesPassed = 0x15,
TransformFeedbackOffset = 0x1a,
TessControlShaderInvocations = 0x1b,
TessEvaluationShaderInvocations = 0x1d,
TessEvaluationShaderPrimitives = 0x1f
TransformFeedbackOffset = 0x1A,
TessControlShaderInvocations = 0x1B,
TessEvaluationShaderInvocations = 0x1D,
TessEvaluationShaderPrimitives = 0x1F
};
enum class StructureSize : u8 {
@ -394,7 +394,7 @@ namespace skyline {
MmeShadowRamControl shadowRamControl; // 0x49
} mme;
u32 _pad2_[0x68]; // 0x4a
u32 _pad2_[0x68]; // 0x4A
struct {
u16 id : 12;
@ -403,101 +403,101 @@ namespace skyline {
u8 _pad1_ : 3;
bool increment : 1;
u16 _pad2_ : 11;
} syncpointAction; // 0xb2
} syncpointAction; // 0xB2
u32 _pad3_[0x2c]; // 0xb3
u32 rasterizerEnable; // 0xdf
u32 _pad4_[0x1a0]; // 0xe0
u32 _pad3_[0x2C]; // 0xB3
u32 rasterizerEnable; // 0xDF
u32 _pad4_[0x1A0]; // 0xE0
std::array<ViewportTransform, 0x10> viewportTransform; // 0x280
std::array<Viewport, 0x10> viewport; // 0x300
u32 _pad5_[0x2b]; // 0x340
u32 _pad5_[0x2B]; // 0x340
struct {
PolygonMode front; // 0x36b
PolygonMode back; // 0x36c
PolygonMode front; // 0x36B
PolygonMode back; // 0x36C
} polygonMode;
u32 _pad6_[0x68]; // 0x36d
u32 _pad6_[0x68]; // 0x36D
struct {
u32 compareRef; // 0x3d5
u32 writeMask; // 0x3d6
u32 compareMask; // 0x3d7
u32 compareRef; // 0x3D5
u32 writeMask; // 0x3D6
u32 compareMask; // 0x3D7
} stencilBackExtra;
u32 _pad7_[0x13]; // 0x3d8
u32 rtSeparateFragData; // 0x3eb
u32 _pad8_[0x6c]; // 0x3ec
u32 _pad7_[0x13]; // 0x3D8
u32 rtSeparateFragData; // 0x3EB
u32 _pad8_[0x6C]; // 0x3EC
std::array<VertexAttribute, 0x20> vertexAttributeState; // 0x458
u32 _pad9_[0x4b]; // 0x478
CompareOp depthTestFunc; // 0x4c3
float alphaTestRef; // 0x4c4
CompareOp alphaTestFunc; // 0x4c5
u32 drawTFBStride; // 0x4c6
u32 _pad9_[0x4B]; // 0x478
CompareOp depthTestFunc; // 0x4C3
float alphaTestRef; // 0x4C4
CompareOp alphaTestFunc; // 0x4C5
u32 drawTFBStride; // 0x4C6
struct {
float r; // 0x4c7
float g; // 0x4c8
float b; // 0x4c9
float a; // 0x4ca
float r; // 0x4C7
float g; // 0x4C8
float b; // 0x4C9
float a; // 0x4CA
} blendConstant;
u32 _pad10_[0x4]; // 0x4cb
u32 _pad10_[0x4]; // 0x4CB
struct {
u32 seperateAlpha; // 0x4cf
Blend::Op colorOp; // 0x4d0
Blend::Factor colorSrcFactor; // 0x4d1
Blend::Factor colorDestFactor; // 0x4d2
Blend::Op alphaOp; // 0x4d3
Blend::Factor alphaSrcFactor; // 0x4d4
u32 _pad_; // 0x4d5
Blend::Factor alphaDestFactor; // 0x4d6
u32 seperateAlpha; // 0x4CF
Blend::Op colorOp; // 0x4D0
Blend::Factor colorSrcFactor; // 0x4D1
Blend::Factor colorDestFactor; // 0x4D2
Blend::Op alphaOp; // 0x4D3
Blend::Factor alphaSrcFactor; // 0x4D4
u32 _pad_; // 0x4D5
Blend::Factor alphaDestFactor; // 0x4D6
u32 enableCommon; // 0x4d7
std::array<u32, 8> enable; // 0x4d8 For each render target
u32 enableCommon; // 0x4D7
std::array<u32, 8> enable; // 0x4D8 For each render target
} blend;
u32 stencilEnable; // 0x4e0
u32 stencilEnable; // 0x4E0
struct {
StencilOp failOp; // 0x4e1
StencilOp zFailOp; // 0x4e2
StencilOp zPassOp; // 0x4e3
StencilOp failOp; // 0x4E1
StencilOp zFailOp; // 0x4E2
StencilOp zPassOp; // 0x4E3
struct {
CompareOp op; // 0x4e4
i32 ref; // 0x4e5
u32 mask; // 0x4e6
CompareOp op; // 0x4E4
i32 ref; // 0x4E5
u32 mask; // 0x4E6
} compare;
u32 writeMask; // 0x4e7
u32 writeMask; // 0x4E7
} stencilFront;
u32 _pad11_[0x4]; // 0x4e8
float lineWidthSmooth; // 0x4ec
float lineWidthAliased; // 0x4d
u32 _pad12_[0x1f]; // 0x4ee
u32 drawBaseVertex; // 0x50d
u32 drawBaseInstance; // 0x50e
u32 _pad13_[0x35]; // 0x50f
u32 _pad11_[0x4]; // 0x4E8
float lineWidthSmooth; // 0x4EC
float lineWidthAliased; // 0x4D
u32 _pad12_[0x1F]; // 0x4EE
u32 drawBaseVertex; // 0x50D
u32 drawBaseInstance; // 0x50E
u32 _pad13_[0x35]; // 0x50F
u32 clipDistanceEnable; // 0x544
u32 sampleCounterEnable; // 0x545
float pointSpriteSize; // 0x546
u32 zCullStatCountersEnable; // 0x547
u32 pointSpriteEnable; // 0x548
u32 _pad14_; // 0x549
u32 shaderExceptions; // 0x54a
u32 _pad15_[0x2]; // 0x54b
u32 multisampleEnable; // 0x54d
u32 depthTargetEnable; // 0x54e
u32 shaderExceptions; // 0x54A
u32 _pad15_[0x2]; // 0x54B
u32 multisampleEnable; // 0x54D
u32 depthTargetEnable; // 0x54E
struct {
bool alphaToCoverage : 1;
u8 _pad0_ : 3;
bool alphaToOne : 1;
u32 _pad1_ : 27;
} multisampleControl; // 0x54f
} multisampleControl; // 0x54F
u32 _pad16_[0x7]; // 0x550
@ -506,13 +506,13 @@ namespace skyline {
u32 maximumIndex; // 0x559
} texSamplerPool;
u32 _pad17_; // 0x55a
u32 polygonOffsetFactor; // 0x55b
u32 lineSmoothEnable; // 0x55c
u32 _pad17_; // 0x55A
u32 polygonOffsetFactor; // 0x55B
u32 lineSmoothEnable; // 0x55C
struct {
Address address; // 0x55d
u32 maximumIndex; // 0x55f
Address address; // 0x55D
u32 maximumIndex; // 0x55F
} texHeaderPool;
u32 _pad18_[0x5]; // 0x560
@ -526,7 +526,7 @@ namespace skyline {
CompareOp compareOp; // 0x569
} stencilBack;
u32 _pad19_[0x17]; // 0x56a
u32 _pad19_[0x17]; // 0x56A
struct {
u8 _unk_ : 2;
@ -535,27 +535,27 @@ namespace skyline {
u32 _pad_ : 19;
} pointCoordReplace; // 0x581
u32 _pad20_[0xc4]; // 0x582
u32 _pad20_[0xC4]; // 0x582
u32 cullFaceEnable; // 0x646
FrontFace frontFace; // 0x647
CullFace cullFace; // 0x648
u32 pixelCentreImage; // 0x649
u32 _pad21_; // 0x64a
u32 viewportTransformEnable; // 0x64b
u32 _pad22_[0x34]; // 0x64a
u32 _pad21_; // 0x64A
u32 viewportTransformEnable; // 0x64B
u32 _pad22_[0x34]; // 0x64A
std::array<ColorWriteMask, 8> colorMask; // 0x680 For each render target
u32 _pad23_[0x38]; // 0x688
struct {
Address address; // 0x6c0
u32 payload; // 0x6c2
SemaphoreInfo info; // 0x6c3
Address address; // 0x6C0
u32 payload; // 0x6C2
SemaphoreInfo info; // 0x6C3
} semaphore;
u32 _pad24_[0xbc]; // 0x6c4
u32 _pad24_[0xBC]; // 0x6C4
std::array<Blend, 8> independentBlend; // 0x780 For each render target
u32 _pad25_[0x100]; // 0x7c0
u32 firmwareCall[0x20]; // 0x8c0
u32 _pad25_[0x100]; // 0x7C0
u32 firmwareCall[0x20]; // 0x8C0
};
};
static_assert(sizeof(Registers) == (constant::Maxwell3DRegisterCounter * sizeof(u32)));

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@ -126,13 +126,13 @@ namespace skyline::gpu {
case Opcode::AluOperation::Subtract: {
u64 result = static_cast<u64>(srcA) - srcB;
carryFlag = result & 0xffffffff;
carryFlag = result & 0xFFFFFFFF;
return static_cast<u32>(result);
}
case Opcode::AluOperation::SubtractWithBorrow: {
u64 result = static_cast<u64>(srcA) - srcB - !carryFlag;
carryFlag = result & 0xffffffff;
carryFlag = result & 0xFFFFFFFF;
return static_cast<u32>(result);
}
case Opcode::AluOperation::BitwiseXor:

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@ -199,12 +199,12 @@ namespace skyline {
ExitProcess, // 0x07
CreateThread, // 0x08
StartThread, // 0x09
ExitThread, // 0x0a
SleepThread, // 0x0b
GetThreadPriority, // 0x0c
SetThreadPriority, // 0x0d
nullptr, // 0x0e
nullptr, // 0x0f
ExitThread, // 0x0A
SleepThread, // 0x0B
GetThreadPriority, // 0x0C
SetThreadPriority, // 0x0D
nullptr, // 0x0E
nullptr, // 0x0F
nullptr, // 0x10
nullptr, // 0x11
ClearEvent, // 0x12
@ -215,12 +215,12 @@ namespace skyline {
ResetSignal, // 0x17
WaitSynchronization, // 0x18
CancelSynchronization, // 0x19
ArbitrateLock, // 0x1a
ArbitrateUnlock, // 0x1b
WaitProcessWideKeyAtomic, // 0x1c
SignalProcessWideKey, // 0x1d
GetSystemTick, // 0x1e
ConnectToNamedPort, // 0x1f
ArbitrateLock, // 0x1A
ArbitrateUnlock, // 0x1B
WaitProcessWideKeyAtomic, // 0x1C
SignalProcessWideKey, // 0x1D
GetSystemTick, // 0x1E
ConnectToNamedPort, // 0x1F
nullptr, // 0x20
SendSyncRequest, // 0x21
nullptr, // 0x22
@ -231,12 +231,12 @@ namespace skyline {
OutputDebugString, // 0x27
nullptr, // 0x28
GetInfo, // 0x29
nullptr, // 0x2a
nullptr, // 0x2b
nullptr, // 0x2c
nullptr, // 0x2d
nullptr, // 0x2e
nullptr, // 0x2f
nullptr, // 0x2A
nullptr, // 0x2B
nullptr, // 0x2C
nullptr, // 0x2D
nullptr, // 0x2E
nullptr, // 0x2F
nullptr, // 0x30
nullptr, // 0x31
nullptr, // 0x32
@ -247,12 +247,12 @@ namespace skyline {
nullptr, // 0x37
nullptr, // 0x38
nullptr, // 0x39
nullptr, // 0x3a
nullptr, // 0x3b
nullptr, // 0x3c
nullptr, // 0x3d
nullptr, // 0x3e
nullptr, // 0x3f
nullptr, // 0x3A
nullptr, // 0x3B
nullptr, // 0x3C
nullptr, // 0x3D
nullptr, // 0x3E
nullptr, // 0x3F
nullptr, // 0x40
nullptr, // 0x41
nullptr, // 0x42
@ -263,12 +263,12 @@ namespace skyline {
nullptr, // 0x47
nullptr, // 0x48
nullptr, // 0x49
nullptr, // 0x4a
nullptr, // 0x4b
nullptr, // 0x4c
nullptr, // 0x4d
nullptr, // 0x4e
nullptr, // 0x4f
nullptr, // 0x4A
nullptr, // 0x4B
nullptr, // 0x4C
nullptr, // 0x4D
nullptr, // 0x4E
nullptr, // 0x4F
nullptr, // 0x50
nullptr, // 0x51
nullptr, // 0x52
@ -279,12 +279,12 @@ namespace skyline {
nullptr, // 0x57
nullptr, // 0x58
nullptr, // 0x59
nullptr, // 0x5a
nullptr, // 0x5b
nullptr, // 0x5c
nullptr, // 0x5d
nullptr, // 0x5e
nullptr, // 0x5f
nullptr, // 0x5A
nullptr, // 0x5B
nullptr, // 0x5C
nullptr, // 0x5D
nullptr, // 0x5E
nullptr, // 0x5F
nullptr, // 0x60
nullptr, // 0x61
nullptr, // 0x62
@ -295,12 +295,12 @@ namespace skyline {
nullptr, // 0x67
nullptr, // 0x68
nullptr, // 0x69
nullptr, // 0x6a
nullptr, // 0x6b
nullptr, // 0x6c
nullptr, // 0x6d
nullptr, // 0x6e
nullptr, // 0x6f
nullptr, // 0x6A
nullptr, // 0x6B
nullptr, // 0x6C
nullptr, // 0x6D
nullptr, // 0x6E
nullptr, // 0x6F
nullptr, // 0x70
nullptr, // 0x71
nullptr, // 0x72
@ -311,12 +311,12 @@ namespace skyline {
nullptr, // 0x77
nullptr, // 0x78
nullptr, // 0x79
nullptr, // 0x7a
nullptr, // 0x7b
nullptr, // 0x7c
nullptr, // 0x7d
nullptr, // 0x7e
nullptr // 0x7f
nullptr, // 0x7A
nullptr, // 0x7B
nullptr, // 0x7C
nullptr, // 0x7D
nullptr, // 0x7E
nullptr // 0x7F
};
}
}

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@ -33,7 +33,7 @@ namespace skyline::loader {
u32 memoryOffset; //!< The memory offset where the region should be loaded
u32 decompressedSize; //!< Size of the region after decompression
};
static_assert(sizeof(NsoSegmentHeader) == 0xc);
static_assert(sizeof(NsoSegmentHeader) == 0xC);
/**
* @brief This holds the header of an NSO file

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@ -209,7 +209,7 @@ namespace skyline {
}
std::vector<u32> NCE::PatchCode(std::vector<u8> &code, u64 baseAddress, i64 offset) {
constexpr u32 TpidrEl0 = 0x5e82; // ID of TPIDR_EL0 in MRS
constexpr u32 TpidrEl0 = 0x5E82; // ID of TPIDR_EL0 in MRS
constexpr u32 TpidrroEl0 = 0x5E83; // ID of TPIDRRO_EL0 in MRS
constexpr u32 CntfrqEl0 = 0x5F00; // ID of CNTFRQ_EL0 in MRS
constexpr u32 CntpctEl0 = 0x5F01; // ID of CNTPCT_EL0 in MRS

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@ -9,8 +9,8 @@
namespace skyline::service::am {
ILibraryAppletAccessor::ILibraryAppletAccessor(const DeviceState &state, ServiceManager &manager) : stateChangeEvent(std::make_shared<type::KEvent>(state)), BaseService(state, manager, Service::am_ILibraryAppletAccessor, "am:ILibraryAppletAccessor", {
{0x0, SFUNC(ILibraryAppletAccessor::GetAppletStateChangedEvent)},
{0xa, SFUNC(ILibraryAppletAccessor::Start)},
{0x1e, SFUNC(ILibraryAppletAccessor::GetResult)},
{0xA, SFUNC(ILibraryAppletAccessor::Start)},
{0x1E, SFUNC(ILibraryAppletAccessor::GetResult)},
{0x64, SFUNC(ILibraryAppletAccessor::PushInData)},
{0x65, SFUNC(ILibraryAppletAccessor::PopOutData)},
}) {}
@ -31,7 +31,7 @@ namespace skyline::service::am {
void ILibraryAppletAccessor::PushInData(type::KSession &session, ipc::IpcRequest &request, ipc::IpcResponse &response) {}
void ILibraryAppletAccessor::PopOutData(type::KSession &session, ipc::IpcRequest &request, ipc::IpcResponse &response) {
constexpr u32 LaunchParameterMagic = 0xc79497ca; //!< This is the magic of the application launch parameters
constexpr u32 LaunchParameterMagic = 0xC79497CA; //!< This is the magic of the application launch parameters
constexpr size_t LaunchParameterSize = 0x88; //!< This is the size of the launch parameter IStorage
auto storageService = std::make_shared<IStorage>(state, manager, LaunchParameterSize);

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@ -20,7 +20,7 @@ namespace skyline::service::am {
}) {}
void IApplicationFunctions::PopLaunchParameter(type::KSession &session, ipc::IpcRequest &request, ipc::IpcResponse &response) {
constexpr u32 LaunchParameterMagic = 0xc79497ca; //!< This is the magic of the application launch parameters
constexpr u32 LaunchParameterMagic = 0xC79497CA; //!< This is the magic of the application launch parameters
constexpr size_t LaunchParameterSize = 0x88; //!< This is the size of the launch parameter IStorage
auto storageService = std::make_shared<IStorage>(state, manager, LaunchParameterSize);

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@ -8,7 +8,7 @@
namespace skyline::service::am {
ILibraryAppletCreator::ILibraryAppletCreator(const DeviceState &state, ServiceManager &manager) : BaseService(state, manager, Service::am_ILibraryAppletCreator, "am:ILibraryAppletCreator", {
{0x0, SFUNC(ILibraryAppletCreator::CreateLibraryApplet)},
{0xa, SFUNC(ILibraryAppletCreator::CreateStorage)}
{0xA, SFUNC(ILibraryAppletCreator::CreateStorage)}
}) {}
void ILibraryAppletCreator::CreateLibraryApplet(type::KSession &session, ipc::IpcRequest &request, ipc::IpcResponse &response) {

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@ -17,7 +17,7 @@ namespace skyline::service::am {
{0xE, SFUNC(ISelfController::SetRestartMessageEnabled)},
{0x10, SFUNC(ISelfController::SetOutOfFocusSuspendingEnabled)},
{0x28, SFUNC(ISelfController::CreateManagedDisplayLayer)},
{0x5b, SFUNC(ISelfController::GetLibraryAppletLaunchableEvent)}
{0x5B, SFUNC(ISelfController::GetLibraryAppletLaunchableEvent)}
}) {}
void ISelfController::LockExit(type::KSession &session, ipc::IpcRequest &request, ipc::IpcResponse &response) {}

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@ -8,8 +8,8 @@
namespace skyline::service::am {
IStorageAccessor::IStorageAccessor(const DeviceState &state, ServiceManager &manager, std::shared_ptr<IStorage> parent) : parent(parent), BaseService(state, manager, Service::am_IStorageAccessor, "am:IStorageAccessor", {
{0x0, SFUNC(IStorageAccessor::GetSize)},
{0xa, SFUNC(IStorageAccessor::Write)},
{0xb, SFUNC(IStorageAccessor::Read)}
{0xA, SFUNC(IStorageAccessor::Write)},
{0xB, SFUNC(IStorageAccessor::Read)}
}) {}
void IStorageAccessor::GetSize(type::KSession &session, ipc::IpcRequest &request, ipc::IpcResponse &response) {

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@ -14,7 +14,7 @@ namespace skyline::service::audio {
{0x5, SFUNC(IAudioDevice::GetActiveChannelCount)},
{0x6, SFUNC(IAudioDevice::ListAudioDeviceName)},
{0x7, SFUNC(IAudioDevice::SetAudioDeviceOutputVolume)},
{0xa, SFUNC(IAudioDevice::GetActiveAudioDeviceName)}
{0xA, SFUNC(IAudioDevice::GetActiveAudioDeviceName)}
}) {}
void IAudioDevice::ListAudioDeviceName(type::KSession &session, ipc::IpcRequest &request, ipc::IpcResponse &response) {

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@ -85,7 +85,7 @@ namespace skyline::service::audio::IAudioRenderer {
UpdateDataHeader outputHeader{
.revision = constant::RevMagic,
.behaviorSize = 0xb0,
.behaviorSize = 0xB0,
.memoryPoolSize = (parameters.effectCount + parameters.voiceCount * 4) * static_cast<u32>(sizeof(MemoryPoolOut)),
.voiceSize = parameters.voiceCount * static_cast<u32>(sizeof(VoiceOut)),
.effectSize = parameters.effectCount * static_cast<u32>(sizeof(EffectOut)),

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@ -20,9 +20,9 @@ namespace skyline::service::audio::IAudioRenderer {
struct EffectIn {
u8 _unk0_;
u8 isNew; //!< Whether the effect was used in the previous samples
u8 _unk1_[0xbe];
u8 _unk1_[0xBE];
};
static_assert(sizeof(EffectIn) == 0xc0);
static_assert(sizeof(EffectIn) == 0xC0);
/**
* @brief This is returned to inform the guest of the state of an effect

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@ -22,7 +22,7 @@ namespace skyline::service::audio::IAudioRenderer {
u16 a1; //!< The a1 constant
u16 a2; //!< The a2 constant
};
static_assert(sizeof(BiquadFilter) == 0xc);
static_assert(sizeof(BiquadFilter) == 0xC);
/**
* @brief This stores information of a wave buffer of samples

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@ -62,7 +62,7 @@ namespace skyline::service::audio {
splitterWorkSize += util::AlignUp(4 * params.splitterDestinationDataCount, 16);
}
size = params.sinkCount * 0x170 + (params.sinkCount + params.subMixCount) * 0x280 + params.effectCount * 0x4C0 + ((size + splitterWorkSize + 0x30 * params.effectCount + (4 * params.voiceCount) + 0x8F) & ~0x3Fl) + ((params.voiceCount << 8) | 0x40);
size = params.sinkCount * 0x170 + (params.sinkCount + params.subMixCount) * 0x280 + params.effectCount * 0x4C0 + ((size + splitterWorkSize + 0x30 * params.effectCount + (4 * params.voiceCount) + 0x8F) & ~0x3FL) + ((params.voiceCount << 8) | 0x40);
if (params.performanceManagerCount > 0) {
i64 performanceMetricsBufferSize;
@ -73,7 +73,7 @@ namespace skyline::service::audio {
performanceMetricsBufferSize = ((static_cast<i64>((params.voiceCount + params.effectCount + totalMixCount + params.sinkCount)) << 32) >> 0x1C) + 0x658;
}
size += (performanceMetricsBufferSize * (params.performanceManagerCount + 1) + 0xFF) & ~0x3Fl;
size += (performanceMetricsBufferSize * (params.performanceManagerCount + 1) + 0xFF) & ~0x3FL;
}
if (revisionInfo.VaradicCommandBufferSizeSupported()) {

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@ -11,7 +11,7 @@ namespace skyline::service::fssrv {
{0x0, SFUNC(IFileSystem::CreateFile)},
{0x7, SFUNC(IFileSystem::GetEntryType)},
{0x8, SFUNC(IFileSystem::OpenFile)},
{0xa, SFUNC(IFileSystem::Commit)}
{0xA, SFUNC(IFileSystem::Commit)}
}) {}
void IFileSystem::CreateFile(type::KSession &session, ipc::IpcRequest &request, ipc::IpcResponse &response) {

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@ -12,8 +12,8 @@ namespace skyline::service::fssrv {
{0x1, SFUNC(IFileSystemProxy::SetCurrentProcess)},
{0x12, SFUNC(IFileSystemProxy::OpenSdCardFileSystem)},
{0x33, SFUNC(IFileSystemProxy::OpenSaveDataFileSystem)},
{0xc8, SFUNC(IFileSystemProxy::OpenDataStorageByCurrentProcess)},
{0x3ed, SFUNC(IFileSystemProxy::GetGlobalAccessLogMode)},
{0xC8, SFUNC(IFileSystemProxy::OpenDataStorageByCurrentProcess)},
{0x3ED, SFUNC(IFileSystemProxy::GetGlobalAccessLogMode)},
}) {}
void IFileSystemProxy::SetCurrentProcess(type::KSession &session, ipc::IpcRequest &request, ipc::IpcResponse &response) {

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@ -52,7 +52,7 @@ namespace skyline::service::fssrv {
SaveDataType type; //!< The type of savedata
SaveDataRank rank; //!< The rank of the savedata
u16 index; //!< The index of the savedata
u8 _pad_[0x1a];
u8 _pad_[0x1A];
};
static_assert(sizeof(SaveDataAttribute) == 0x40);

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@ -61,7 +61,7 @@ namespace skyline::service::nvdrv {
{0x3, SFUNC(INvDrvServices::Initialize)},
{0x4, SFUNC(INvDrvServices::QueryEvent)},
{0x8, SFUNC(INvDrvServices::SetAruidByPID)},
{0xd, SFUNC(INvDrvServices::SetGraphicsFirmwareMemoryMarginEnabled)}
{0xD, SFUNC(INvDrvServices::SetGraphicsFirmwareMemoryMarginEnabled)}
}) {}
void INvDrvServices::Open(type::KSession &session, ipc::IpcRequest &request, ipc::IpcResponse &response) {
@ -79,7 +79,7 @@ namespace skyline::service::nvdrv {
state.logger->Debug("IOCTL on device: 0x{:X}, cmd: 0x{:X}", fd, cmd);
// Strip the permissions from the command leaving only the ID
cmd &= 0xffff;
cmd &= 0xFFFF;
try {
if (request.inputBuf.empty() || request.outputBuf.empty()) {

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@ -35,8 +35,8 @@ namespace skyline::service::pl {
{0x3, SFUNC(IPlatformServiceManager::GetSharedMemoryAddressOffset)},
{0x4, SFUNC(IPlatformServiceManager::GetSharedMemoryNativeHandle)}
}) {
constexpr u32 SharedFontResult = 0x7f9a0218; //!< This is the decrypted magic for a single font in the shared font data
constexpr u32 SharedFontMagic = 0x36f81a1e; //!< This is the encrypted magic for a single font in the shared font data
constexpr u32 SharedFontResult = 0x7F9A0218; //!< This is the decrypted magic for a single font in the shared font data
constexpr u32 SharedFontMagic = 0x36F81A1E; //!< This is the encrypted magic for a single font in the shared font data
constexpr u32 SharedFontKey = SharedFontMagic ^SharedFontResult; //!< This is the XOR key for encrypting the font size
auto pointer = reinterpret_cast<u32 *>(fontSharedMem->kernel.address);

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@ -30,7 +30,7 @@ namespace skyline::vfs {
std::array<ApplicationTitle, 0x10> titleEntries; //!< Title entries for each language
u8 _pad0_[0x78];
u64 saveDataOwnerId; //!< The ID that should be used for this application's savedata
u8 _pad1_[0xf80];
u8 _pad1_[0xF80];
} nacpContents{};
static_assert(sizeof(NacpData) == 0x4000);

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@ -56,9 +56,9 @@ namespace skyline {
Fw620 = 0x7, //!< 6.2.0
Fw700 = 0x8, //!< 7.0.0
Fw810 = 0x9, //!< 8.1.0
Fw900 = 0xa, //!< 9.0.0
Fw910 = 0xb, //!< 9.1.0
Invalid = 0xff, //!< An invalid key generation type
Fw900 = 0xA, //!< 9.0.0
Fw910 = 0xB, //!< 9.1.0
Invalid = 0xFF, //!< An invalid key generation type
};
/**
@ -129,7 +129,7 @@ namespace skyline {
std::array<u8, 0x20> masterHash; //!< The master hash of the hierarchical integrity system
u8 _pad1_[0x18];
};
static_assert(sizeof(HierarchicalIntegrityHashInfo) == 0xf8);
static_assert(sizeof(HierarchicalIntegrityHashInfo) == 0xF8);
/**
* @brief This holds the hash info header of the SHA256 hashing scheme for PFS0
@ -142,9 +142,9 @@ namespace skyline {
u64 hashTableSize; //!< The size of the hash table
u64 pfs0Offset; //!< The offset from the end of the section header of the PFS0
u64 pfs0Size; //!< The size of the PFS0
u8 _pad1_[0xb0];
u8 _pad1_[0xB0];
};
static_assert(sizeof(HierarchicalSha256HashInfo) == 0xf8);
static_assert(sizeof(HierarchicalSha256HashInfo) == 0xF8);
/**
* @brief This holds the header of each specific section in an NCA
@ -184,15 +184,15 @@ namespace skyline {
u32 sdkVersion; //!< The version of the SDK the NCA was built with
NcaKeyGenerationType keyGenerationType; //!< The keyblob to use for decryption
u8 fixedKeyGeneration; //!< The fixed key index
u8 _pad0_[0xe];
u8 _pad0_[0xE];
std::array<u8, 0x10> rightsId; //!< The NCA's rights ID
std::array<NcaFsEntry, 4> fsEntries; //!< The filesystem entries for this NCA
std::array<std::array<u8, 0x20>, 4> sectionHashes; //!< This contains SHA-256 hashes for each filesystem header
std::array<std::array<u8, 0x10>, 4> encryptedKeyArea; //!< The encrypted key area for each filesystem
u8 _pad1_[0xc0];
u8 _pad1_[0xC0];
std::array<NcaSectionHeader, 4> sectionHeaders;
} header{};
static_assert(sizeof(NcaHeader) == 0xc00);
static_assert(sizeof(NcaHeader) == 0xC00);
std::shared_ptr<Backing> backing; //!< The backing for the NCA

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@ -7,7 +7,7 @@
namespace skyline {
namespace constant {
constexpr u32 RomFsEmptyEntry = 0xffffffff; //!< The value a RomFS entry has it's offset set to if it is empty
constexpr u32 RomFsEmptyEntry = 0xFFFFFFFF; //!< The value a RomFS entry has it's offset set to if it is empty
}
namespace vfs {