mirror of
https://github.com/DarkMatterCore/nxdumptool.git
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c1b76fb2d9
* signature: add comments to SignatureType enum entries about the exact signing algorithms and padding schemes used. * signature: rename signatureGetSigType() -> signatureGetTypeFromSignedBlob(). * signature: rename signatureIsValidSigType() -> signatureIsValidType(). * signature: rename signatureGetSigSize() -> signatureGetSigSizeByType(). * signature: rename signatureGetBlockSize() -> signatureGetBlockSizeByType(). * signature: rename signatureGetSig() -> signatureGetSigFromSignedBlob(). * signature: rename signatureGetPayload() -> signatureGetPayloadFromSignedBlob(). * signature: add signatureGetBlockSizeFromSignedBlob(). * cert: add more comments to the code. * cert: update code to match signature interface changes. * cert: add CERT_RSA_PUB_EXP_SIZE macro. * cert: change public_exponent field in CertPublicKeyBlockRsa* structs from u32 to u8 array. * cert: add size field to CertificateChain struct. * cert: rename certGetCommonBlock() -> certGetCommonBlockFromSignedCertBlob. * cert: rename certGetPublicKeySize() -> certGetPublicKeySizeByType(). * cert: rename certGetPublicKeyBlockSize() -> certGetPublicKeyBlockSizeByType(). * cert: rename certIsValidCertificate() -> certIsValidSignedCertBlob(). * cert: rename certGetSignedCertificateSize() -> certGetSignedCertBlobSize(). * cert: rename certGetSignedCertificateHashAreaSize() -> certGetSignedCertBlobHashAreaSize(). * cert: remove certGetPublicKey(), certGetPublicExponent() and certCalculateRawCertificateChainSize(). * cert: add certGetPublicKeyTypeFromCommonBlock(), certGetPublicKeyTypeFromSignedCertBlob(), certGetPublicKeySizeFromSignedCertBlob(), certGetPublicKeyBlockSizeFromSignedCertBlob(), certGetPublicKeyFromSignedCertBlob(), certGetPublicExponentFromSignedCertBlob(), certIsValidCertificate() (w/diff func sig), certGetCommonBlockFromCertificate(), certGetPublicKeyTypeFromCertificate(), certGetPublicKeySizeFromCertificate(), certGetPublicKeyBlockSizeFromCertificate(), certGetPublicKeyFromCertificate(), certGetPublicExponentFromCertificate() and certGetHashAreaSizeFromCertificate() functions. * cert: avoid byteswapping the public key type value in multiple places -- it is now only being done in certGetPublicKeyTypeFromCommonBlock(). * cert: call certFreeCertificateChain() in _certRetrieveCertificateChainBySignatureIssuer() before attempting to retrieve the certificate chain. * cert: other minor changes and corrections. * tik: update code to match signature interface changes. * tik: add missing comments to TikPropertyMask enum entries. * tik: add key_generation, enc_titlekey_str and dec_titlekey_str fields to Ticket struct. * tik: update tikRetrieveTicketByRightsId() to also take in a key_generation argument, instead of getting it from the rights ID (which could fail if it's using a key generation lower than HOS 3.0.1) or the key_generation field from the common ticket block (which could fail if the ticket has been tampered by certain tools). * tik: rename tikGetCommonBlock() -> tikGetCommonBlockFromSignedTicketBlob(). * tik: change function signature for tikGetTicketSectionRecordsBlockSize(). * tik: rename tikIsValidTicket() -> tikIsValidSignedTicketBlob(). * tik: rename tikGetSignedTicketSize() -> tikGetSignedTicketBlobSize(). * tik: rename tikGetSignedTicketHashAreaSize() -> tikGetSignedTicketBlobHashAreaSize(). * tik: rename tikGetEncryptedTitleKeyFromTicket() -> tikGetEncryptedTitleKey(). * tik: add tikIsValidTicket() (w/diff func sig), tikGetCommonBlockFromTicket(), tikGetHashAreaSizeFromTicket(), tikFixTamperedCommonTicket(), tikVerifyRsa2048Sha256Signature() and tikDecryptVolatileTicket() functions. Ticket signature verification is only carried out for common tickets in tikFixTamperedCommonTicket(). * tik: change argument order in tikGetTicketEntryOffsetFromTicketList() and tikRetrieveTicketEntryFromTicketBin(). * tik: add TIK_COMMON_CERT_NAME and TIK_DEV_CERT_ISSUER macros. * tik: use a scoped lock when calling tikRetrieveTicketFromEsSaveDataByRightsId(). * tik: simplify certificate chain retrieval steps in tikConvertPersonalizedTicketToCommonTicket() by always using the XS00000020 certificate. * tik: wipe license_type and property_mask fields in tikConvertPersonalizedTicketToCommonTicket(). * tik: other minor changes and corrections. Other changes include: * keys: fix key generation checks in keysGetNcaKeyAreaKeyEncryptionKey() and keysGetTicketCommonKey(). * rsa: move core logic from rsa2048VerifySha256BasedPssSignature() into a new function: rsa2048VerifySha256BasedSignature(). * rsa: add rsa2048VerifySha256BasedPkcs1v15Signature() function.
291 lines
11 KiB
C
291 lines
11 KiB
C
/*
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* cert.h
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*
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* Copyright (c) 2020-2023, DarkMatterCore <pabloacurielz@gmail.com>.
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*
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* This file is part of nxdumptool (https://github.com/DarkMatterCore/nxdumptool).
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*
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* nxdumptool is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* nxdumptool is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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#pragma once
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#ifndef __CERT_H__
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#define __CERT_H__
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#include "signature.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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#define SIGNED_CERT_MIN_SIZE sizeof(CertSigHmac160PubKeyEcc480)
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#define SIGNED_CERT_MAX_SIZE sizeof(CertSigRsa4096PubKeyRsa4096)
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#define CERT_RSA_PUB_EXP_SIZE 4
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#define GENERATE_CERT_STRUCT(sigtype, pubkeytype, certsize) \
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typedef struct { \
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SignatureBlock##sigtype sig_block; \
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CertCommonBlock cert_common_block; \
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CertPublicKeyBlock##pubkeytype pub_key_block; \
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} CertSig##sigtype##PubKey##pubkeytype; \
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NXDT_ASSERT(CertSig##sigtype##PubKey##pubkeytype, certsize);
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typedef enum {
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CertPubKeyType_Rsa4096 = 0,
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CertPubKeyType_Rsa2048 = 1,
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CertPubKeyType_Ecc480 = 2,
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CertPubKeyType_Count = 3 ///< Total values supported by this enum.
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} CertPubKeyType;
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/// Placed after the certificate signature block.
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typedef struct {
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char issuer[0x40];
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u32 pub_key_type; ///< CertPubKeyType. Always stored using big endian byte order.
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char name[0x40];
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u32 date; ///< Stored using big endian byte order.
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} CertCommonBlock;
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NXDT_ASSERT(CertCommonBlock, 0x88);
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/// RSA-4096 public key block. Placed after the certificate common block.
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typedef struct {
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u8 public_key[0x200];
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u8 public_exponent[CERT_RSA_PUB_EXP_SIZE];
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u8 padding[0x34];
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} CertPublicKeyBlockRsa4096;
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NXDT_ASSERT(CertPublicKeyBlockRsa4096, 0x238);
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/// RSA-2048 public key block. Placed after the certificate common block.
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typedef struct {
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u8 public_key[0x100];
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u8 public_exponent[CERT_RSA_PUB_EXP_SIZE];
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u8 padding[0x34];
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} CertPublicKeyBlockRsa2048;
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NXDT_ASSERT(CertPublicKeyBlockRsa2048, 0x138);
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/// ECC public key block. Placed after the certificate common block.
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typedef struct {
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u8 public_key[0x3C];
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u8 padding[0x3C];
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} CertPublicKeyBlockEcc480;
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NXDT_ASSERT(CertPublicKeyBlockEcc480, 0x78);
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/// All certificates generated below use a big endian sig_type field.
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/// Certificates with RSA-4096 signatures.
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GENERATE_CERT_STRUCT(Rsa4096, Rsa4096, 0x500); /// pub_key_type field must be CertPubKeyType_Rsa4096.
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GENERATE_CERT_STRUCT(Rsa4096, Rsa2048, 0x400); /// pub_key_type field must be CertPubKeyType_Rsa2048.
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GENERATE_CERT_STRUCT(Rsa4096, Ecc480, 0x340); /// pub_key_type field must be CertPubKeyType_Ecc480.
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/// Certificates with RSA-2048 signatures.
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GENERATE_CERT_STRUCT(Rsa2048, Rsa4096, 0x400); /// pub_key_type field must be CertPubKeyType_Rsa4096.
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GENERATE_CERT_STRUCT(Rsa2048, Rsa2048, 0x300); /// pub_key_type field must be CertPubKeyType_Rsa2048.
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GENERATE_CERT_STRUCT(Rsa2048, Ecc480, 0x240); /// pub_key_type field must be CertPubKeyType_Ecc480.
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/// Certificates with ECC signatures.
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GENERATE_CERT_STRUCT(Ecc480, Rsa4096, 0x340); /// pub_key_type field must be CertPubKeyType_Rsa4096.
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GENERATE_CERT_STRUCT(Ecc480, Rsa2048, 0x240); /// pub_key_type field must be CertPubKeyType_Rsa2048.
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GENERATE_CERT_STRUCT(Ecc480, Ecc480, 0x180); /// pub_key_type field must be CertPubKeyType_Ecc480.
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/// Certificates with HMAC signatures.
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GENERATE_CERT_STRUCT(Hmac160, Rsa4096, 0x300); /// pub_key_type field must be CertPubKeyType_Rsa4096.
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GENERATE_CERT_STRUCT(Hmac160, Rsa2048, 0x200); /// pub_key_type field must be CertPubKeyType_Rsa2048.
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GENERATE_CERT_STRUCT(Hmac160, Ecc480, 0x140); /// pub_key_type field must be CertPubKeyType_Ecc480.
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/// Certificate type.
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typedef enum {
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CertType_None = 0,
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CertType_SigRsa4096_PubKeyRsa4096 = 1,
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CertType_SigRsa4096_PubKeyRsa2048 = 2,
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CertType_SigRsa4096_PubKeyEcc480 = 3,
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CertType_SigRsa2048_PubKeyRsa4096 = 4,
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CertType_SigRsa2048_PubKeyRsa2048 = 5,
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CertType_SigRsa2048_PubKeyEcc480 = 6,
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CertType_SigEcc480_PubKeyRsa4096 = 7,
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CertType_SigEcc480_PubKeyRsa2048 = 8,
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CertType_SigEcc480_PubKeyEcc480 = 9,
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CertType_SigHmac160_PubKeyRsa4096 = 10,
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CertType_SigHmac160_PubKeyRsa2048 = 11,
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CertType_SigHmac160_PubKeyEcc480 = 12,
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CertType_Count = 13 ///< Total values supported by this enum.
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} CertType;
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/// Used to store certificate type, size and raw data.
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typedef struct {
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u8 type; ///< CertType.
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u64 size; ///< Raw certificate size.
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u8 data[SIGNED_CERT_MAX_SIZE]; ///< Raw certificate data.
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} Certificate;
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/// Used to store multiple certificates.
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typedef struct {
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u32 count; ///< Number of certificates in this chain.
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u64 size; ///< Raw certificate chain size (when concatenated).
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Certificate *certs; ///< Certificate array.
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} CertificateChain;
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/// Retrieves a certificate by its name (e.g. "CA00000003", "XS00000020", etc.).
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bool certRetrieveCertificateByName(Certificate *dst, const char *name);
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/// Retrieves a certificate chain by a full signature issuer string (e.g. "Root-CA00000003-XS00000020").
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bool certRetrieveCertificateChainBySignatureIssuer(CertificateChain *dst, const char *issuer);
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/// Returns a pointer to a dynamically allocated buffer that holds the concatenated raw contents from the certificate chain matching the input signature issuer.
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/// The returned buffer must be freed by the user.
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/// Returns NULL if an error occurs.
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u8 *certGenerateRawCertificateChainBySignatureIssuer(const char *issuer, u64 *out_size);
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/// Returns a pointer to a dynamically allocated buffer that holds the concatenated raw contents from the certificate chain matching the input rights ID in the inserted gamecard.
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/// The returned buffer must be freed by the user.
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/// Returns NULL if an error occurs.
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u8 *certRetrieveRawCertificateChainFromGameCardByRightsId(const FsRightsId *id, u64 *out_size);
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/// General purpose helper inline functions.
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NX_INLINE bool certIsValidPublicKeyType(u32 type)
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{
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return (type < CertPubKeyType_Count);
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}
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NX_INLINE u64 certGetPublicKeySizeByType(u32 type)
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{
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return (u64)(type == CertPubKeyType_Rsa4096 ? MEMBER_SIZE(CertPublicKeyBlockRsa4096, public_key) : \
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(type == CertPubKeyType_Rsa2048 ? MEMBER_SIZE(CertPublicKeyBlockRsa2048, public_key) : \
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(type == CertPubKeyType_Ecc480 ? MEMBER_SIZE(CertPublicKeyBlockEcc480, public_key) : 0)));
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}
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NX_INLINE u64 certGetPublicKeyBlockSizeByType(u32 type)
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{
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return (u64)(type == CertPubKeyType_Rsa4096 ? sizeof(CertPublicKeyBlockRsa4096) : \
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(type == CertPubKeyType_Rsa2048 ? sizeof(CertPublicKeyBlockRsa2048) : \
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(type == CertPubKeyType_Ecc480 ? sizeof(CertPublicKeyBlockEcc480) : 0)));
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}
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NX_INLINE u32 certGetPublicKeyTypeFromCommonBlock(CertCommonBlock *cert_common_block)
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{
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return (cert_common_block ? __builtin_bswap32(cert_common_block->pub_key_type) : CertPubKeyType_Count);
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}
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/// Helper inline functions for signed certificate blobs.
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NX_INLINE CertCommonBlock *certGetCommonBlockFromSignedCertBlob(void *buf)
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{
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return (CertCommonBlock*)signatureGetPayloadFromSignedBlob(buf, true);
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}
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NX_INLINE bool certIsValidSignedCertBlob(void *buf)
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{
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CertCommonBlock *cert_common_block = certGetCommonBlockFromSignedCertBlob(buf);
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return (cert_common_block && certIsValidPublicKeyType(certGetPublicKeyTypeFromCommonBlock(cert_common_block)));
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}
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NX_INLINE u32 certGetPublicKeyTypeFromSignedCertBlob(void *buf)
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{
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return (certIsValidSignedCertBlob(buf) ? certGetPublicKeyTypeFromCommonBlock(certGetCommonBlockFromSignedCertBlob(buf)) : CertPubKeyType_Count);
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}
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NX_INLINE u64 certGetPublicKeySizeFromSignedCertBlob(void *buf)
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{
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return certGetPublicKeySizeByType(certGetPublicKeyTypeFromSignedCertBlob(buf));
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}
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NX_INLINE u64 certGetPublicKeyBlockSizeFromSignedCertBlob(void *buf)
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{
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return certGetPublicKeyBlockSizeByType(certGetPublicKeyTypeFromSignedCertBlob(buf));
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}
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NX_INLINE u8 *certGetPublicKeyFromSignedCertBlob(void *buf)
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{
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return (certIsValidSignedCertBlob(buf) ? ((u8*)certGetCommonBlockFromSignedCertBlob(buf) + sizeof(CertCommonBlock)) : NULL);
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}
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NX_INLINE u8 *certGetPublicExponentFromSignedCertBlob(void *buf)
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{
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u32 pub_key_type = certGetPublicKeyTypeFromSignedCertBlob(buf);
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u8 *public_key = certGetPublicKeyFromSignedCertBlob(buf);
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return (pub_key_type < CertPubKeyType_Ecc480 ? (public_key + certGetPublicKeySizeByType(pub_key_type)) : NULL); // Only allow RSA public key types.
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}
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NX_INLINE u64 certGetSignedCertBlobSize(void *buf)
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{
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return (certIsValidSignedCertBlob(buf) ? (signatureGetBlockSizeFromSignedBlob(buf, true) + sizeof(CertCommonBlock) + certGetPublicKeyBlockSizeFromSignedCertBlob(buf)) : 0);
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}
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NX_INLINE u64 certGetSignedCertBlobHashAreaSize(void *buf)
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{
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return (certIsValidSignedCertBlob(buf) ? (sizeof(CertCommonBlock) + certGetPublicKeyBlockSizeFromSignedCertBlob(buf)) : 0);
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}
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/// Helper inline functions for Certificate elements.
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NX_INLINE bool certIsValidCertificate(Certificate *cert)
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{
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return (cert && cert->type > CertType_None && cert->type < CertType_Count && cert->size >= SIGNED_CERT_MIN_SIZE && cert->size <= SIGNED_CERT_MAX_SIZE && \
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certIsValidSignedCertBlob(cert->data));
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}
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NX_INLINE CertCommonBlock *certGetCommonBlockFromCertificate(Certificate *cert)
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{
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return (certIsValidCertificate(cert) ? certGetCommonBlockFromSignedCertBlob(cert->data) : NULL);
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}
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NX_INLINE u32 certGetPublicKeyTypeFromCertificate(Certificate *cert)
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{
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return (certIsValidCertificate(cert) ? certGetPublicKeyTypeFromSignedCertBlob(cert->data) : CertPubKeyType_Count);
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}
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NX_INLINE u64 certGetPublicKeySizeFromCertificate(Certificate *cert)
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{
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return (certIsValidCertificate(cert) ? certGetPublicKeySizeFromSignedCertBlob(cert->data) : 0);
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}
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NX_INLINE u64 certGetPublicKeyBlockSizeFromCertificate(Certificate *cert)
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{
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return (certIsValidCertificate(cert) ? certGetPublicKeyBlockSizeFromSignedCertBlob(cert->data) : 0);
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}
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NX_INLINE u8 *certGetPublicKeyFromCertificate(Certificate *cert)
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{
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return (certIsValidCertificate(cert) ? certGetPublicKeyFromSignedCertBlob(cert->data) : NULL);
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}
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NX_INLINE u8 *certGetPublicExponentFromCertificate(Certificate *cert)
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{
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return (certIsValidCertificate(cert) ? certGetPublicExponentFromSignedCertBlob(cert->data) : NULL);
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}
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NX_INLINE u64 certGetHashAreaSizeFromCertificate(Certificate *cert)
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{
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return (certIsValidCertificate(cert) ? certGetSignedCertBlobHashAreaSize(cert->data) : 0);
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}
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/// Helper inline functions for CertificateChain elements.
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NX_INLINE void certFreeCertificateChain(CertificateChain *chain)
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{
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if (!chain) return;
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if (chain->certs) free(chain->certs);
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memset(chain, 0, sizeof(CertificateChain));
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}
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#ifdef __cplusplus
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}
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#endif
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#endif /* __CERT_H__ */
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