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https://github.com/Atmosphere-NX/Atmosphere.git
synced 2024-11-28 09:30:58 +01:00
strat: update for latest libnx.
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393596ef9a
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b758e3fc55
@ -55,7 +55,7 @@ namespace ams::boot {
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Result GetBatteryVendorImpl(u32 *vendor) {
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FsStorage s;
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R_TRY(fsOpenBisStorage(&s, FsBisStorageId_CalibrationBinary));
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R_TRY(fsOpenBisStorage(&s, FsBisPartitionId_CalibrationBinary));
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ON_SCOPE_EXIT { fsStorageClose(&s); };
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u8 battery_lot[BatteryLotSize];
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@ -69,7 +69,7 @@ namespace ams::boot {
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Result GetBatteryVersionImpl(u32 *version) {
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FsStorage s;
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R_TRY(fsOpenBisStorage(&s, FsBisStorageId_CalibrationBinary));
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R_TRY(fsOpenBisStorage(&s, FsBisPartitionId_CalibrationBinary));
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ON_SCOPE_EXIT { fsStorageClose(&s); };
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u8 battery_version[BatteryVersionSize];
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@ -94,7 +94,7 @@ namespace ams::fatal::srv {
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}
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/* Check that the gamecard is a repair tool. */
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return (gc_attr & FsGameCardAttribute_Repair) == FsGameCardAttribute_Repair;
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return (gc_attr & FsGameCardAttribute_RepairToolFlag);
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}
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bool IsInRepairWithoutTimeReviserCartridge() {
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@ -15,19 +15,21 @@
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*/
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#pragma once
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#include <type_traits>
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#include <atmosphere/common.hpp>
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namespace ams::ncm {
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/* Storage IDs. */
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enum class StorageId : u8 {
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None = 0,
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Host = 1,
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GameCard = 2,
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NandSystem = 3,
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NandUser = 4,
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SdCard = 5,
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#define DEFINE_ENUM_MEMBER(nm) nm = NcmStorageId_##nm
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DEFINE_ENUM_MEMBER(None),
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DEFINE_ENUM_MEMBER(Host),
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DEFINE_ENUM_MEMBER(GameCard),
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DEFINE_ENUM_MEMBER(BuiltInSystem),
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DEFINE_ENUM_MEMBER(BuiltInUser),
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DEFINE_ENUM_MEMBER(SdCard),
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DEFINE_ENUM_MEMBER(Any),
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#undef DEFINE_ENUM_MEMBER
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};
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/* Program IDs (Formerly: Title IDs). */
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@ -152,7 +152,7 @@ namespace ams::boot2 {
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void LaunchList(const ncm::ProgramId *launch_list, size_t num_entries) {
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for (size_t i = 0; i < num_entries; i++) {
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LaunchProgram(nullptr, ncm::ProgramLocation::Make(launch_list[i], ncm::StorageId::NandSystem), 0);
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LaunchProgram(nullptr, ncm::ProgramLocation::Make(launch_list[i], ncm::StorageId::BuiltInSystem), 0);
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}
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}
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@ -313,7 +313,7 @@ namespace ams::boot2 {
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R_ASSERT(sm::mitm::WaitMitm(sm::ServiceName::Encode("bpc:c")));
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}
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/* Launch Atmosphere boot2, using FsStorageId_None to force SD card boot. */
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/* Launch Atmosphere boot2, using NcmStorageId_None to force SD card boot. */
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LaunchProgram(nullptr, ncm::ProgramLocation::Make(ncm::ProgramId::Boot2, ncm::StorageId::None), 0);
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}
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@ -326,7 +326,7 @@ namespace ams::boot2 {
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pm::bm::SetMaintenanceBoot();
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}
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/* Launch Atmosphere dmnt, using FsStorageId_None to force SD card boot. */
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/* Launch Atmosphere dmnt, using NcmStorageId_None to force SD card boot. */
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LaunchProgram(nullptr, ncm::ProgramLocation::Make(ncm::ProgramId::Dmnt, ncm::StorageId::None), 0);
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/* Check for and forward declare non-atmosphere mitm modules. */
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@ -337,7 +337,7 @@ namespace ams::boot2 {
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LaunchList(AdditionalMaintenanceLaunchPrograms, NumAdditionalMaintenanceLaunchPrograms);
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/* Starting in 7.0.0, npns is launched during maintenance boot. */
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if (hos::GetVersion() >= hos::Version_700) {
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LaunchProgram(nullptr, ncm::ProgramLocation::Make(ncm::ProgramId::Npns, ncm::StorageId::NandSystem), 0);
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LaunchProgram(nullptr, ncm::ProgramLocation::Make(ncm::ProgramId::Npns, ncm::StorageId::BuiltInSystem), 0);
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}
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} else {
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LaunchList(AdditionalLaunchPrograms, NumAdditionalLaunchPrograms);
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@ -143,7 +143,7 @@ namespace ams::updater {
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/* Open NAND System meta database, list contents. */
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NcmContentMetaDatabase meta_db;
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R_TRY(ncmOpenContentMetaDatabase(&meta_db, FsStorageId_NandSystem));
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R_TRY(ncmOpenContentMetaDatabase(&meta_db, NcmStorageId_BuiltInSystem));
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ON_SCOPE_EXIT { serviceClose(&meta_db.s); };
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NcmContentMetaKey *records = reinterpret_cast<NcmContentMetaKey *>(work_buffer);
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@ -190,7 +190,7 @@ namespace ams::updater {
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/* Ensure work buffer is big enough for us to do what we want to do. */
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R_TRY(ValidateWorkBuffer(work_buffer, work_buffer_size));
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R_TRY_CATCH(romfsMountFromDataArchive(data_id, FsStorageId_NandSystem, GetBootImagePackageMountPath())) {
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R_TRY_CATCH(romfsMountFromDataArchive(data_id, NcmStorageId_BuiltInSystem, GetBootImagePackageMountPath())) {
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R_CONVERT(fs::ResultTargetNotFound, ResultBootImagePackageNotFound())
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} R_END_TRY_CATCH;
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ON_SCOPE_EXIT { R_ASSERT(romfsUnmount(GetBootImagePackageMountPath())); };
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@ -243,7 +243,7 @@ namespace ams::updater {
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/* Ensure work buffer is big enough for us to do what we want to do. */
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R_TRY(ValidateWorkBuffer(work_buffer, work_buffer_size));
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R_TRY_CATCH(romfsMountFromDataArchive(data_id, FsStorageId_NandSystem, GetBootImagePackageMountPath())) {
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R_TRY_CATCH(romfsMountFromDataArchive(data_id, NcmStorageId_BuiltInSystem, GetBootImagePackageMountPath())) {
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R_CONVERT(fs::ResultTargetNotFound, ResultBootImagePackageNotFound())
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} R_END_TRY_CATCH;
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ON_SCOPE_EXIT { R_ASSERT(romfsUnmount(GetBootImagePackageMountPath())); };
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@ -311,7 +311,7 @@ namespace ams::updater {
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/* Ensure work buffer is big enough for us to do what we want to do. */
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R_TRY(ValidateWorkBuffer(work_buffer, work_buffer_size));
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R_TRY_CATCH(romfsMountFromDataArchive(data_id, FsStorageId_NandSystem, GetBootImagePackageMountPath())) {
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R_TRY_CATCH(romfsMountFromDataArchive(data_id, NcmStorageId_BuiltInSystem, GetBootImagePackageMountPath())) {
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R_CONVERT(fs::ResultTargetNotFound, ResultBootImagePackageNotFound())
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} R_END_TRY_CATCH;
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ON_SCOPE_EXIT { R_ASSERT(romfsUnmount(GetBootImagePackageMountPath())); };
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@ -366,7 +366,7 @@ namespace ams::updater {
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/* Ensure work buffer is big enough for us to do what we want to do. */
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R_TRY(ValidateWorkBuffer(work_buffer, work_buffer_size));
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R_TRY_CATCH(romfsMountFromDataArchive(data_id, FsStorageId_NandSystem, GetBootImagePackageMountPath())) {
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R_TRY_CATCH(romfsMountFromDataArchive(data_id, NcmStorageId_BuiltInSystem, GetBootImagePackageMountPath())) {
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R_CONVERT(fs::ResultTargetNotFound, ResultBootImagePackageNotFound())
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} R_END_TRY_CATCH;
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ON_SCOPE_EXIT { R_ASSERT(romfsUnmount(GetBootImagePackageMountPath())); };
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@ -24,10 +24,10 @@ namespace ams::updater {
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static constexpr size_t SectorAlignment = 0x200;
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private:
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FsStorage storage = {};
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FsBisStorageId partition_id;
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FsBisPartitionId partition_id;
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bool active;
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public:
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BisAccessor(FsBisStorageId id) : partition_id(id), active(false) { }
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BisAccessor(FsBisPartitionId id) : partition_id(id), active(false) { }
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~BisAccessor() {
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if (this->active) {
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fsStorageClose(&storage);
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@ -125,7 +125,7 @@ namespace ams::updater {
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using EnumType = typename Meta::EnumType;
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using OffsetSizeType = typename Meta::OffsetSizeType;
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public:
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PartitionAccessor(FsBisStorageId id) : BisAccessor(id) { }
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PartitionAccessor(FsBisPartitionId id) : BisAccessor(id) { }
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private:
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constexpr const OffsetSizeType *FindEntry(EnumType which) {
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const OffsetSizeType *entry = nullptr;
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@ -182,27 +182,27 @@ namespace ams::updater {
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RepairSub,
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};
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static constexpr FsBisStorageId GetPackage2StorageId(Package2Type which) {
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static constexpr FsBisPartitionId GetPackage2StorageId(Package2Type which) {
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switch (which) {
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case Package2Type::NormalMain:
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return FsBisStorageId_BootConfigAndPackage2NormalMain;
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return FsBisPartitionId_BootConfigAndPackage2Part1;
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case Package2Type::NormalSub:
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return FsBisStorageId_BootConfigAndPackage2NormalSub;
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return FsBisPartitionId_BootConfigAndPackage2Part2;
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case Package2Type::SafeMain:
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return FsBisStorageId_BootConfigAndPackage2SafeMain;
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return FsBisPartitionId_BootConfigAndPackage2Part3;
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case Package2Type::SafeSub:
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return FsBisStorageId_BootConfigAndPackage2SafeSub;
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return FsBisPartitionId_BootConfigAndPackage2Part4;
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case Package2Type::RepairMain:
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return FsBisStorageId_BootConfigAndPackage2RepairMain;
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return FsBisPartitionId_BootConfigAndPackage2Part5;
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case Package2Type::RepairSub:
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return FsBisStorageId_BootConfigAndPackage2RepairSub;
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return FsBisPartitionId_BootConfigAndPackage2Part6;
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AMS_UNREACHABLE_DEFAULT_CASE();
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}
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}
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class Boot0Accessor : public PartitionAccessor<Boot0Meta> {
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public:
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static constexpr FsBisStorageId PartitionId = FsBisStorageId_Boot0;
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static constexpr FsBisPartitionId PartitionId = FsBisPartitionId_BootPartition1Root;
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static constexpr size_t BctPubkOffset = 0x210;
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static constexpr size_t BctPubkSize = 0x100;
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static constexpr size_t BctEksOffset = 0x450;
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@ -222,7 +222,7 @@ namespace ams::updater {
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class Boot1Accessor : public PartitionAccessor<Boot1Meta> {
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public:
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static constexpr FsBisStorageId PartitionId = FsBisStorageId_Boot1;
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static constexpr FsBisPartitionId PartitionId = FsBisPartitionId_BootPartition2Root;
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public:
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Boot1Accessor() : PartitionAccessor<Boot1Meta>(PartitionId) { }
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};
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@ -288,7 +288,7 @@ namespace ams::ldr {
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R_CATCH(lr::ResultProgramNotFound) {
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/* Program wasn't found via registered resolver, fall back to the normal resolver. */
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LrLocationResolver lr;
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R_TRY(lrOpenLocationResolver(static_cast<FsStorageId>(loc.storage_id), &lr));
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R_TRY(lrOpenLocationResolver(static_cast<NcmStorageId>(loc.storage_id), &lr));
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ON_SCOPE_EXIT { serviceClose(&lr.s); };
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R_TRY(lrLrResolveProgramPath(&lr, static_cast<u64>(loc.program_id), path));
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@ -303,7 +303,7 @@ namespace ams::ldr {
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Result RedirectContentPath(const char *path, const ncm::ProgramLocation &loc) {
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LrLocationResolver lr;
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R_TRY(lrOpenLocationResolver(static_cast<FsStorageId>(loc.storage_id), &lr));
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R_TRY(lrOpenLocationResolver(static_cast<NcmStorageId>(loc.storage_id), &lr));
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ON_SCOPE_EXIT { serviceClose(&lr.s); };
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return lrLrRedirectProgramPath(&lr, static_cast<u64>(loc.program_id), path);
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@ -314,7 +314,7 @@ namespace ams::ldr {
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/* Open a location resolver. */
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LrLocationResolver lr;
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R_TRY(lrOpenLocationResolver(static_cast<FsStorageId>(loc.storage_id), &lr));
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R_TRY(lrOpenLocationResolver(static_cast<NcmStorageId>(loc.storage_id), &lr));
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ON_SCOPE_EXIT { serviceClose(&lr.s); };
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/* If there's already a Html Document path, we don't need to set one. */
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@ -331,7 +331,7 @@ namespace ams::pm::impl {
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const u8 *aci_fah = acid_fac + program_info.acid_fac_size;
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/* Register with FS and SM. */
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R_TRY(fsprRegisterProgram(static_cast<u64>(process_id), static_cast<u64>(location.program_id), static_cast<FsStorageId>(location.storage_id), aci_fah, program_info.aci_fah_size, acid_fac, program_info.acid_fac_size));
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R_TRY(fsprRegisterProgram(static_cast<u64>(process_id), static_cast<u64>(location.program_id), static_cast<NcmStorageId>(location.storage_id), aci_fah, program_info.aci_fah_size, acid_fac, program_info.acid_fac_size));
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R_TRY(sm::manager::RegisterProcess(process_id, location.program_id, acid_sac, program_info.acid_sac_size, aci_sac, program_info.aci_sac_size));
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/* Set flags. */
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@ -104,7 +104,7 @@ namespace {
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/* It also registers privileged processes with SM, so that their program ids can be known. */
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void RegisterPrivilegedProcess(os::ProcessId process_id) {
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fsprUnregisterProgram(static_cast<u64>(process_id));
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fsprRegisterProgram(static_cast<u64>(process_id), static_cast<u64>(process_id), FsStorageId_NandSystem, PrivilegedFileAccessHeader, sizeof(PrivilegedFileAccessHeader), PrivilegedFileAccessControl, sizeof(PrivilegedFileAccessControl));
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fsprRegisterProgram(static_cast<u64>(process_id), static_cast<u64>(process_id), NcmStorageId_BuiltInSystem, PrivilegedFileAccessHeader, sizeof(PrivilegedFileAccessHeader), PrivilegedFileAccessControl, sizeof(PrivilegedFileAccessControl));
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sm::manager::UnregisterProcess(process_id);
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sm::manager::RegisterProcess(process_id, GetProcessProgramId(process_id), PrivilegedServiceAccessControl, sizeof(PrivilegedServiceAccessControl), PrivilegedServiceAccessControl, sizeof(PrivilegedServiceAccessControl));
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}
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