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spl: Add SPL types
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@ -551,6 +551,7 @@ add_library(core STATIC
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hle/service/spl/spl.cpp
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hle/service/spl/spl.h
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hle/service/spl/spl_results.h
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hle/service/spl/spl_types.h
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hle/service/ssl/ssl.cpp
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hle/service/ssl/ssl.h
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hle/service/time/clock_types.h
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230
src/core/hle/service/spl/spl_types.h
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230
src/core/hle/service/spl/spl_types.h
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@ -0,0 +1,230 @@
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// Copyright 2021 yuzu Emulator Project
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#include <span>
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#include "common/bit_field.h"
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#include "common/common_types.h"
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namespace Service::SPL {
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constexpr size_t AES_128_KEY_SIZE = 0x10;
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namespace Smc {
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enum class FunctionId : u32 {
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SetConfig = 0xC3000401,
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GetConfig = 0xC3000002,
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GetResult = 0xC3000003,
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GetResultData = 0xC3000404,
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ModularExponentiate = 0xC3000E05,
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GenerateRandomBytes = 0xC3000006,
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GenerateAesKek = 0xC3000007,
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LoadAesKey = 0xC3000008,
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ComputeAes = 0xC3000009,
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GenerateSpecificAesKey = 0xC300000A,
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ComputeCmac = 0xC300040B,
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ReencryptDeviceUniqueData = 0xC300D60C,
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DecryptDeviceUniqueData = 0xC300100D,
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ModularExponentiateWithStorageKey = 0xC300060F,
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PrepareEsDeviceUniqueKey = 0xC3000610,
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LoadPreparedAesKey = 0xC3000011,
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PrepareCommonEsTitleKey = 0xC3000012,
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// Deprecated functions.
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LoadEsDeviceKey = 0xC300100C,
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DecryptAndStoreGcKey = 0xC300100E,
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// Atmosphere functions.
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AtmosphereIramCopy = 0xF0000201,
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AtmosphereReadWriteRegister = 0xF0000002,
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AtmosphereGetEmummcConfig = 0xF0000404,
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};
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enum class CipherMode {
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CbcEncrypt = 0,
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CbcDecrypt = 1,
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Ctr = 2,
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};
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enum class DeviceUniqueDataMode {
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DecryptDeviceUniqueData = 0,
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DecryptAndStoreGcKey = 1,
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DecryptAndStoreEsDeviceKey = 2,
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DecryptAndStoreSslKey = 3,
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DecryptAndStoreDrmDeviceCertKey = 4,
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};
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enum class ModularExponentiateWithStorageKeyMode {
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Gc = 0,
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Ssl = 1,
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DrmDeviceCert = 2,
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};
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enum class EsCommonKeyType {
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TitleKey = 0,
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ArchiveKey = 1,
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};
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struct AsyncOperationKey {
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u64 value;
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};
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} // namespace Smc
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enum class HardwareType {
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Icosa = 0,
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Copper = 1,
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Hoag = 2,
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Iowa = 3,
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Calcio = 4,
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Aula = 5,
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};
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enum class SocType {
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Erista = 0,
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Mariko = 1,
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};
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enum class HardwareState {
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Development = 0,
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Production = 1,
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};
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enum class MemoryArrangement {
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Standard = 0,
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StandardForAppletDev = 1,
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StandardForSystemDev = 2,
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Expanded = 3,
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ExpandedForAppletDev = 4,
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// Note: Dynamic is not official.
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// Atmosphere uses it to maintain compatibility with firmwares prior to 6.0.0,
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// which removed the explicit retrieval of memory arrangement from PM.
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Dynamic = 5,
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Count,
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};
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enum class BootReason {
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Unknown = 0,
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AcOk = 1,
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OnKey = 2,
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RtcAlarm1 = 3,
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RtcAlarm2 = 4,
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};
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struct BootReasonValue {
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union {
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u32 value{};
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BitField<0, 8, u32> power_intr;
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BitField<8, 8, u32> rtc_intr;
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BitField<16, 8, u32> nv_erc;
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BitField<24, 8, u32> boot_reason;
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};
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};
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static_assert(sizeof(BootReasonValue) == sizeof(u32), "BootReasonValue definition!");
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struct AesKey {
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std::array<u64, AES_128_KEY_SIZE / sizeof(u64)> data64{};
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std::span<u8> AsBytes() {
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return std::span{reinterpret_cast<u8*>(data64.data()), AES_128_KEY_SIZE};
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}
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std::span<const u8> AsBytes() const {
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return std::span{reinterpret_cast<const u8*>(data64.data()), AES_128_KEY_SIZE};
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}
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};
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static_assert(sizeof(AesKey) == AES_128_KEY_SIZE, "AesKey definition!");
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struct IvCtr {
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std::array<u64, AES_128_KEY_SIZE / sizeof(u64)> data64{};
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std::span<u8> AsBytes() {
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return std::span{reinterpret_cast<u8*>(data64.data()), AES_128_KEY_SIZE};
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}
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std::span<const u8> AsBytes() const {
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return std::span{reinterpret_cast<const u8*>(data64.data()), AES_128_KEY_SIZE};
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}
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};
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static_assert(sizeof(AesKey) == AES_128_KEY_SIZE, "IvCtr definition!");
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struct Cmac {
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std::array<u64, AES_128_KEY_SIZE / sizeof(u64)> data64{};
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std::span<u8> AsBytes() {
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return std::span{reinterpret_cast<u8*>(data64.data()), AES_128_KEY_SIZE};
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}
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std::span<const u8> AsBytes() const {
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return std::span{reinterpret_cast<const u8*>(data64.data()), AES_128_KEY_SIZE};
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}
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};
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static_assert(sizeof(AesKey) == AES_128_KEY_SIZE, "Cmac definition!");
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struct AccessKey {
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std::array<u64, AES_128_KEY_SIZE / sizeof(u64)> data64{};
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std::span<u8> AsBytes() {
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return std::span{reinterpret_cast<u8*>(data64.data()), AES_128_KEY_SIZE};
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}
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std::span<const u8> AsBytes() const {
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return std::span{reinterpret_cast<const u8*>(data64.data()), AES_128_KEY_SIZE};
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}
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};
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static_assert(sizeof(AesKey) == AES_128_KEY_SIZE, "AccessKey definition!");
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struct KeySource {
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std::array<u64, AES_128_KEY_SIZE / sizeof(u64)> data64{};
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std::span<u8> AsBytes() {
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return std::span{reinterpret_cast<u8*>(data64.data()), AES_128_KEY_SIZE};
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}
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std::span<const u8> AsBytes() const {
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return std::span{reinterpret_cast<const u8*>(data64.data()), AES_128_KEY_SIZE};
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}
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};
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static_assert(sizeof(AesKey) == AES_128_KEY_SIZE, "KeySource definition!");
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enum class ConfigItem : u32 {
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// Standard config items.
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DisableProgramVerification = 1,
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DramId = 2,
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SecurityEngineInterruptNumber = 3,
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FuseVersion = 4,
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HardwareType = 5,
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HardwareState = 6,
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IsRecoveryBoot = 7,
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DeviceId = 8,
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BootReason = 9,
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MemoryMode = 10,
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IsDevelopmentFunctionEnabled = 11,
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KernelConfiguration = 12,
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IsChargerHiZModeEnabled = 13,
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QuestState = 14,
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RegulatorType = 15,
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DeviceUniqueKeyGeneration = 16,
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Package2Hash = 17,
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// Extension config items for exosphere.
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ExosphereApiVersion = 65000,
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ExosphereNeedsReboot = 65001,
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ExosphereNeedsShutdown = 65002,
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ExosphereGitCommitHash = 65003,
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ExosphereHasRcmBugPatch = 65004,
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ExosphereBlankProdInfo = 65005,
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ExosphereAllowCalWrites = 65006,
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ExosphereEmummcType = 65007,
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ExospherePayloadAddress = 65008,
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ExosphereLogConfiguration = 65009,
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ExosphereForceEnableUsb30 = 65010,
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};
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} // namespace Service::SPL
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