mirror of
https://github.com/jakcron/nstool
synced 2024-12-24 13:41:12 +00:00
[nx|nstool] Renamed struct member "signature" to "st_magic".
This commit is contained in:
parent
19bd03630d
commit
28f92b78c8
24 changed files with 63 additions and 64 deletions
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@ -6,7 +6,7 @@ namespace nx
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{
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namespace aset
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{
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static const uint32_t kAssetSig = _MAKE_STRUCT_SIGNATURE("ASET");
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static const uint32_t kAssetStructMagic = _MAKE_STRUCT_MAGIC("ASET");
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static const uint32_t kDefaultAssetFormatVersion = 0;
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}
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@ -20,7 +20,7 @@ namespace nx
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struct sAssetHeader
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{
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le_uint32_t signature;
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le_uint32_t st_magic;
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le_uint32_t format_version;
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sAssetSection icon;
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sAssetSection nacp;
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@ -6,6 +6,6 @@ namespace nx
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{
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namespace nro
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{
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static const uint64_t kNroHomebrewSig = _MAKE_STRUCT_SIGNATURE_U64("HOMEBREW");
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static const uint64_t kNroHomebrewStMagic = _MAKE_STRUCT_MAGIC_U64("HOMEBREW");
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}
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}
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@ -36,7 +36,7 @@ void nx::AssetHeader::toBytes()
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nx::sAssetHeader* hdr = (nx::sAssetHeader*)mRawBinary.data();
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// set header identifers
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hdr->signature = aset::kAssetSig;
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hdr->st_magic = aset::kAssetStructMagic;
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hdr->format_version = aset::kDefaultAssetFormatVersion;
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// set icon section
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@ -71,7 +71,7 @@ void nx::AssetHeader::fromBytes(const byte_t* bytes, size_t len)
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const nx::sAssetHeader* hdr = (const nx::sAssetHeader*)mRawBinary.data();
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// check NRO signature
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if (hdr->signature.get() != aset::kAssetSig)
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if (hdr->st_magic.get() != aset::kAssetStructMagic)
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{
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throw fnd::Exception(kModuleName, "ASET header corrupt (unrecognised header signature)");
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}
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@ -6,8 +6,8 @@ namespace nx
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{
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namespace aci
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{
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static const uint32_t kAciStructSig = _MAKE_STRUCT_SIGNATURE("ACI0");
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static const uint32_t kAciDescStructSig = _MAKE_STRUCT_SIGNATURE("ACID");
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static const uint32_t kAciStructMagic = _MAKE_STRUCT_MAGIC("ACI0");
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static const uint32_t kAciDescStructMagic = _MAKE_STRUCT_MAGIC("ACID");
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static const size_t kAciAlignSize = 0x10;
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enum Flags
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@ -19,7 +19,7 @@ namespace nx
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#pragma pack(push,1)
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struct sAciHeader
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{
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le_uint32_t signature;
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le_uint32_t st_magic;
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le_uint32_t size; // includes prefacing signature, set only in ACID made by SDK (it enables easy resigning)
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byte_t reserved_0[4];
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le_uint32_t flags; // set in ACID only
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@ -4,10 +4,9 @@
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namespace nx
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{
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// Also known to the public as IVFC
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namespace hierarchicalintegrity
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{
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static const uint32_t kStructSig = _MAKE_STRUCT_SIGNATURE("IVFC");
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static const uint32_t kStructMagic = _MAKE_STRUCT_MAGIC("IVFC");
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static const uint32_t kRomfsTypeId = 0x20000;
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static const size_t kDefaultLayerNum = 6;
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static const size_t kHeaderAlignLen = 0x20;
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@ -16,7 +15,7 @@ namespace nx
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#pragma pack(push,1)
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struct sHierarchicalIntegrityHeader
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{
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le_uint32_t signature;
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le_uint32_t st_magic;
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le_uint32_t type_id;
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le_uint32_t master_hash_size;
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le_uint32_t layer_num;
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@ -1,5 +1,5 @@
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#pragma once
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#include <cstdint>
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#define _MAKE_STRUCT_SIGNATURE(x) ((uint32_t)(x[3]) << 24 | (uint32_t)(x[2]) << 16 | (uint32_t)(x[1]) << 8 | (uint32_t)(x[0]))
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#define _MAKE_STRUCT_SIGNATURE_U64(x) ((uint64_t)(x[7]) << 56 | (uint64_t)(x[6]) << 48 | (uint64_t)(x[5]) << 40 | (uint64_t)(x[4]) << 32 | (uint64_t)(x[3]) << 24 | (uint64_t)(x[2]) << 16 | (uint64_t)(x[1]) << 8 | (uint64_t)(x[0]))
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#define _MAKE_STRUCT_MAGIC(x) ((uint32_t)(x[3]) << 24 | (uint32_t)(x[2]) << 16 | (uint32_t)(x[1]) << 8 | (uint32_t)(x[0]))
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#define _MAKE_STRUCT_MAGIC_U64(x) ((uint64_t)(x[7]) << 56 | (uint64_t)(x[6]) << 48 | (uint64_t)(x[5]) << 40 | (uint64_t)(x[4]) << 32 | (uint64_t)(x[3]) << 24 | (uint64_t)(x[2]) << 16 | (uint64_t)(x[1]) << 8 | (uint64_t)(x[0]))
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@ -9,8 +9,8 @@ namespace nx
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{
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namespace nca
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{
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static const uint32_t kNca2Sig = _MAKE_STRUCT_SIGNATURE("NCA2");
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static const uint32_t kNca3Sig = _MAKE_STRUCT_SIGNATURE("NCA3");
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static const uint32_t kNca2StructMagic = _MAKE_STRUCT_MAGIC("NCA2");
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static const uint32_t kNca3StructMagic = _MAKE_STRUCT_MAGIC("NCA3");
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static const size_t kSectorSize = 0x200;
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static const size_t kPartitionNum = 4;
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static const size_t kHeaderSectorNum = 6;
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@ -87,7 +87,7 @@ namespace nx
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#pragma pack(push,1)
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struct sNcaHeader
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{
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le_uint32_t signature;
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le_uint32_t st_magic;
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byte_t distribution_type;
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byte_t content_type;
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byte_t key_generation;
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@ -6,10 +6,10 @@ namespace nx
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{
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namespace npdm
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{
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static const uint32_t kNpdmStructSig = _MAKE_STRUCT_SIGNATURE("META");
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static const uint32_t kNpdmStructMagic = _MAKE_STRUCT_MAGIC("META");
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static const size_t kNameMaxLen = 0x10;
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static const size_t kProductCodeMaxLen = 0x10;
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static const uint32_t kMaxPriority = BIT(6) -1 ;
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static const uint32_t kMaxPriority = BIT(6) -1;
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static const size_t kNpdmAlignSize = 0x10;
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static const uint32_t kDefaultMainThreadStackSize = 4096;
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@ -30,7 +30,7 @@ namespace nx
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struct sNpdmHeader
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{
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le_uint32_t signature;
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le_uint32_t st_magic;
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byte_t reserved_0[8];
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byte_t flags;
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byte_t reserved_1;
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@ -6,7 +6,7 @@ namespace nx
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{
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namespace nro
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{
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static const uint32_t kNroSig = _MAKE_STRUCT_SIGNATURE("NRO0");
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static const uint32_t kNroStructMagic = _MAKE_STRUCT_MAGIC("NRO0");
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static const uint32_t kDefaultFormatVersion = 0;
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static const size_t kRoCrtSize = 8;
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@ -24,7 +24,7 @@ namespace nx
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{
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byte_t ro_crt[nro::kRoCrtSize];
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byte_t reserved_0[8];
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le_uint32_t signature;
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le_uint32_t st_magic;
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le_uint32_t format_version;
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le_uint32_t size;
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le_uint32_t flags;
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@ -7,7 +7,7 @@ namespace nx
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{
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namespace nrr
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{
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static const uint32_t kNrrSig = _MAKE_STRUCT_SIGNATURE("NRR0");
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static const uint32_t kNrrStructMagic = _MAKE_STRUCT_MAGIC("NRR0");
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}
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#pragma pack(push,1)
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@ -21,7 +21,7 @@ namespace nx
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struct sNrrHeader
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{
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le_uint32_t signature;
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le_uint32_t st_magic;
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byte_t reserved_0[28];
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sNrrCertificate certificate;
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byte_t nrr_body_signature[crypto::rsa::kRsa2048Size];
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@ -7,7 +7,7 @@ namespace nx
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{
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namespace nso
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{
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static const uint32_t kNsoSig = _MAKE_STRUCT_SIGNATURE("NSO0");
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static const uint32_t kNsoStructMagic = _MAKE_STRUCT_MAGIC("NSO0");
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enum HeaderFlags
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{
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struct sNsoHeader
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{
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le_uint32_t signature;
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le_uint32_t st_magic;
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le_uint32_t format_version;
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byte_t reserved_1[4];
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le_uint32_t flags;
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@ -6,15 +6,15 @@ namespace nx
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{
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namespace pfs
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{
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static const uint32_t kPfsSig = _MAKE_STRUCT_SIGNATURE("PFS0");
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static const uint32_t kHashedPfsSig = _MAKE_STRUCT_SIGNATURE("HFS0");
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static const uint32_t kPfsStructMagic = _MAKE_STRUCT_MAGIC("PFS0");
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static const uint32_t kHashedPfsStructMagic = _MAKE_STRUCT_MAGIC("HFS0");
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static const size_t kHeaderAlign = 64;
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}
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#pragma pack(push,1)
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struct sPfsHeader
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{
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le_uint32_t signature;
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le_uint32_t st_magic;
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le_uint32_t file_num;
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le_uint32_t name_table_size;
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byte_t padding[4];
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{
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namespace xci
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{
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static const uint32_t kXciSig = _MAKE_STRUCT_SIGNATURE("HEAD");
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static const uint32_t kXciStructMagic = _MAKE_STRUCT_MAGIC("HEAD");
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static const uint32_t kHeaderEncOffset = 0x90;
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static const uint32_t kHeaderEncSize = 0x70;
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static const uint32_t kPageSize = 0x200;
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#pragma pack(push,1)
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struct sXciHeader
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{
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le_uint32_t signature;
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le_uint32_t st_magic;
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le_uint32_t rom_area_start_page;
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le_uint32_t backup_area_start_page;
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byte_t key_flag;
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switch (mType)
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{
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case (TYPE_ACI0):
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hdr->signature = aci::kAciStructSig;
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hdr->st_magic = aci::kAciStructMagic;
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break;
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case (TYPE_ACID):
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hdr->signature = aci::kAciDescStructSig;
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hdr->st_magic = aci::kAciDescStructMagic;
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break;
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default:
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throw fnd::Exception(kModuleName, "Unexpected ACI type");
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sAciHeader* hdr = (sAciHeader*)mRawBinary.data();
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switch (hdr->signature.get())
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switch (hdr->st_magic.get())
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{
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case (aci::kAciStructSig):
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case (aci::kAciStructMagic):
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mType = TYPE_ACI0;
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break;
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case (aci::kAciDescStructSig):
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case (aci::kAciDescStructMagic):
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mType = TYPE_ACID;
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break;
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default:
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@ -54,7 +54,7 @@ void nx::HierarchicalIntegrityHeader::fromBytes(const byte_t* data, size_t len)
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const nx::sHierarchicalIntegrityHeader* hdr = (const nx::sHierarchicalIntegrityHeader*)data;
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// Validate Header Sig "IVFC"
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if (hdr->signature.get() != hierarchicalintegrity::kStructSig)
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if (hdr->st_magic.get() != hierarchicalintegrity::kStructMagic)
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{
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throw fnd::Exception(kModuleName, "Invalid struct magic");
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}
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@ -60,10 +60,10 @@ void nx::NcaHeader::toBytes()
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switch(mFormatVersion)
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{
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case (NCA2_FORMAT):
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hdr->signature = nca::kNca2Sig;
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hdr->st_magic = nca::kNca2StMagic;
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break;
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case (NCA3_FORMAT):
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hdr->signature = nca::kNca3Sig;
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hdr->st_magic = nca::kNca3StMagic;
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break;
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default:
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throw fnd::Exception(kModuleName, "Unsupported format version");
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sNcaHeader* hdr = (sNcaHeader*)mRawBinary.data();
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switch(hdr->signature.get())
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switch(hdr->st_magic.get())
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{
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case (nca::kNca2Sig) :
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case (nca::kNca2StMagic) :
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mFormatVersion = NCA2_FORMAT;
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break;
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case (nca::kNca3Sig) :
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case (nca::kNca3StMagic) :
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mFormatVersion = NCA3_FORMAT;
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break;
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throw fnd::Exception(kModuleName, "NCA header corrupt");
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@ -9,7 +9,7 @@ void nx::NcaUtils::decryptNcaHeader(const byte_t* src, byte_t* dst, const crypto
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crypto::aes::AesXtsMakeTweak(tweak, 1);
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crypto::aes::AesXtsDecryptSector(src + sectorToOffset(1), nx::nca::kSectorSize, key.key[0], key.key[1], tweak, raw_hdr);
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bool useNca2SectorIndex = ((nx::sNcaHeader*)(raw_hdr))->signature.get() == nx::nca::kNca2Sig;
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bool useNca2SectorIndex = ((nx::sNcaHeader*)(raw_hdr))->st_magic.get() == nx::nca::kNca2StMagic;
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// decrypt whole header
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for (size_t i = 0; i < nx::nca::kHeaderSectorNum; i++)
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@ -56,7 +56,7 @@ void nx::NpdmHeader::toBytes()
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mRawBinary.alloc(sizeof(sNpdmHeader));
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sNpdmHeader* hdr = (sNpdmHeader*)mRawBinary.data();
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hdr->signature = npdm::kNpdmStructSig;
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hdr->st_magic = npdm::kNpdmStructMagic;
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byte_t flag = ((byte_t)(mInstructionType & 1) | (byte_t)((mProcAddressSpaceType & 3) << 1)) & 0xf;
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hdr->flags = flag;
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hdr->main_thread_priority = mMainThreadPriority;
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memcpy(mRawBinary.data(), data, mRawBinary.size());
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sNpdmHeader* hdr = (sNpdmHeader*)mRawBinary.data();
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if (hdr->signature.get() != npdm::kNpdmStructSig)
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if (hdr->st_magic.get() != npdm::kNpdmStructMagic)
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{
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throw fnd::Exception(kModuleName, "NPDM header corrupt");
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}
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@ -52,7 +52,7 @@ void nx::NroHeader::toBytes()
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nx::sNroHeader* hdr = (nx::sNroHeader*)mRawBinary.data();
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// set header identifers
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hdr->signature = nro::kNroSig;
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hdr->st_magic = nro::kNroStructMagic;
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hdr->format_version = nro::kDefaultFormatVersion;
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hdr->flags = 0;
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@ -112,7 +112,7 @@ void nx::NroHeader::fromBytes(const byte_t* data, size_t len)
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const nx::sNroHeader* hdr = (const nx::sNroHeader*)mRawBinary.data();
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// check NRO signature
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if (hdr->signature.get() != nro::kNroSig)
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if (hdr->st_magic.get() != nro::kNroStructMagic)
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{
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throw fnd::Exception(kModuleName, "NRO header corrupt (unrecognised header signature)");
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}
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@ -49,7 +49,7 @@ void nx::NsoHeader::toBytes()
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nx::sNsoHeader* hdr = (nx::sNsoHeader*)mRawBinary.data();
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// set header identifers
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hdr->signature = nso::kNsoSig;
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hdr->st_magic = nso::kNsoStructMagic;
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hdr->format_version = nso::kDefaultFormatVersion;
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// variable to store flags before commiting to header
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@ -144,7 +144,7 @@ void nx::NsoHeader::fromBytes(const byte_t* data, size_t len)
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const nx::sNsoHeader* hdr = (const nx::sNsoHeader*)mRawBinary.data();
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// check NSO signature
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if (hdr->signature.get() != nso::kNsoSig)
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if (hdr->st_magic.get() != nso::kNsoStructMagic)
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{
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throw fnd::Exception(kModuleName, "NSO header corrupt (unrecognised header signature)");
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}
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@ -63,10 +63,10 @@ void nx::PfsHeader::toBytes()
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switch (mFsType)
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{
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case (TYPE_PFS0):
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hdr->signature = pfs::kPfsSig;
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hdr->st_magic = pfs::kPfsStructMagic;
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break;
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case (TYPE_HFS0):
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hdr->signature = pfs::kHashedPfsSig;
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hdr->st_magic = pfs::kHashedPfsStructMagic;
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break;
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}
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@ -131,12 +131,12 @@ void nx::PfsHeader::fromBytes(const byte_t* data, size_t len)
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// check struct signature
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FsType fs_type;
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switch(hdr->signature.get())
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switch(hdr->st_magic.get())
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{
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case (pfs::kPfsSig):
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case (pfs::kPfsStructMagic):
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fs_type = TYPE_PFS0;
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break;
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case (pfs::kHashedPfsSig):
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case (pfs::kHashedPfsStructMagic):
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fs_type = TYPE_HFS0;
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break;
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default:
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@ -105,7 +105,7 @@ void nx::XciHeader::fromBytes(const byte_t* data, size_t len)
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const nx::sXciHeader* hdr = (const nx::sXciHeader*)mRawBinary.data();
|
||||
|
||||
// check XCI signature
|
||||
if (hdr->signature.get() != xci::kXciSig)
|
||||
if (hdr->st_magic.get() != xci::kXciStructMagic)
|
||||
{
|
||||
throw fnd::Exception(kModuleName, "XCI header corrupt");
|
||||
}
|
||||
|
|
|
@ -127,7 +127,7 @@ void PfsProcess::displayFs()
|
|||
size_t PfsProcess::determineHeaderSize(const nx::sPfsHeader* hdr)
|
||||
{
|
||||
size_t fileEntrySize = 0;
|
||||
if (hdr->signature.get() == nx::pfs::kPfsSig)
|
||||
if (hdr->st_magic.get() == nx::pfs::kPfsStructMagic)
|
||||
fileEntrySize = sizeof(nx::sPfsFile);
|
||||
else
|
||||
fileEntrySize = sizeof(nx::sHashedPfsFile);
|
||||
|
@ -137,7 +137,7 @@ size_t PfsProcess::determineHeaderSize(const nx::sPfsHeader* hdr)
|
|||
|
||||
bool PfsProcess::validateHeaderMagic(const nx::sPfsHeader* hdr)
|
||||
{
|
||||
return hdr->signature.get() == nx::pfs::kPfsSig || hdr->signature.get() == nx::pfs::kHashedPfsSig;
|
||||
return hdr->st_magic.get() == nx::pfs::kPfsStructMagic || hdr->st_magic.get() == nx::pfs::kHashedPfsStructMagic;
|
||||
}
|
||||
|
||||
void PfsProcess::validateHfs()
|
||||
|
|
|
@ -724,19 +724,19 @@ FileType UserSettings::determineFileTypeFromFile(const std::string& path)
|
|||
#define _ASSERT_SIZE(sz) (scratch.size() >= (sz))
|
||||
|
||||
// test npdm
|
||||
if (_ASSERT_SIZE(sizeof(nx::sXciHeaderPage)) && _TYPE_PTR(nx::sXciHeaderPage)->header.signature.get() == nx::xci::kXciSig)
|
||||
if (_ASSERT_SIZE(sizeof(nx::sXciHeaderPage)) && _TYPE_PTR(nx::sXciHeaderPage)->header.st_magic.get() == nx::xci::kXciStructMagic)
|
||||
file_type = FILE_XCI;
|
||||
// test pfs0
|
||||
else if (_ASSERT_SIZE(sizeof(nx::sPfsHeader)) && _TYPE_PTR(nx::sPfsHeader)->signature.get() == nx::pfs::kPfsSig)
|
||||
else if (_ASSERT_SIZE(sizeof(nx::sPfsHeader)) && _TYPE_PTR(nx::sPfsHeader)->st_magic.get() == nx::pfs::kPfsStructMagic)
|
||||
file_type = FILE_PARTITIONFS;
|
||||
// test hfs0
|
||||
else if (_ASSERT_SIZE(sizeof(nx::sPfsHeader)) && _TYPE_PTR(nx::sPfsHeader)->signature.get() == nx::pfs::kHashedPfsSig)
|
||||
else if (_ASSERT_SIZE(sizeof(nx::sPfsHeader)) && _TYPE_PTR(nx::sPfsHeader)->st_magic.get() == nx::pfs::kHashedPfsStructMagic)
|
||||
file_type = FILE_PARTITIONFS;
|
||||
// test romfs
|
||||
else if (_ASSERT_SIZE(sizeof(nx::sRomfsHeader)) && _TYPE_PTR(nx::sRomfsHeader)->header_size.get() == sizeof(nx::sRomfsHeader) && _TYPE_PTR(nx::sRomfsHeader)->sections[1].offset.get() == (_TYPE_PTR(nx::sRomfsHeader)->sections[0].offset.get() + _TYPE_PTR(nx::sRomfsHeader)->sections[0].size.get()))
|
||||
file_type = FILE_ROMFS;
|
||||
// test npdm
|
||||
else if (_ASSERT_SIZE(sizeof(nx::sNpdmHeader)) && _TYPE_PTR(nx::sNpdmHeader)->signature.get() == nx::npdm::kNpdmStructSig)
|
||||
else if (_ASSERT_SIZE(sizeof(nx::sNpdmHeader)) && _TYPE_PTR(nx::sNpdmHeader)->st_magic.get() == nx::npdm::kNpdmStructMagic)
|
||||
file_type = FILE_NPDM;
|
||||
// test nca
|
||||
else if (determineValidNcaFromSample(scratch))
|
||||
|
@ -748,13 +748,13 @@ FileType UserSettings::determineFileTypeFromFile(const std::string& path)
|
|||
else if (determineValidNacpFromSample(scratch))
|
||||
file_type = FILE_NACP;
|
||||
// test nso
|
||||
else if (_ASSERT_SIZE(sizeof(nx::sNsoHeader)) && _TYPE_PTR(nx::sNsoHeader)->signature.get() == nx::nso::kNsoSig)
|
||||
else if (_ASSERT_SIZE(sizeof(nx::sNsoHeader)) && _TYPE_PTR(nx::sNsoHeader)->st_magic.get() == nx::nso::kNsoStructMagic)
|
||||
file_type = FILE_NSO;
|
||||
// test nso
|
||||
else if (_ASSERT_SIZE(sizeof(nx::sNroHeader)) && _TYPE_PTR(nx::sNroHeader)->signature.get() == nx::nro::kNroSig)
|
||||
else if (_ASSERT_SIZE(sizeof(nx::sNroHeader)) && _TYPE_PTR(nx::sNroHeader)->st_magic.get() == nx::nro::kNroStructMagic)
|
||||
file_type = FILE_NRO;
|
||||
// test hb asset
|
||||
else if (_ASSERT_SIZE(sizeof(nx::sAssetHeader)) && _TYPE_PTR(nx::sAssetHeader)->signature.get() == nx::aset::kAssetSig)
|
||||
else if (_ASSERT_SIZE(sizeof(nx::sAssetHeader)) && _TYPE_PTR(nx::sAssetHeader)->st_magic.get() == nx::aset::kAssetStructMagic)
|
||||
file_type = FILE_HB_ASSET;
|
||||
// else unrecognised
|
||||
else
|
||||
|
@ -777,7 +777,7 @@ bool UserSettings::determineValidNcaFromSample(const fnd::Vec<byte_t>& sample) c
|
|||
|
||||
nx::NcaUtils::decryptNcaHeader(sample.data(), nca_raw, mKeyset.nca.header_key);
|
||||
|
||||
if (nca_header->signature.get() != nx::nca::kNca2Sig && nca_header->signature.get() != nx::nca::kNca3Sig)
|
||||
if (nca_header->st_magic.get() != nx::nca::kNca2StructMagic && nca_header->st_magic.get() != nx::nca::kNca3StructMagic)
|
||||
return false;
|
||||
|
||||
return true;
|
||||
|
|
Loading…
Reference in a new issue