Editing ENCDEC Device Reverse Engineering
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=Introduction= | =Introduction= | ||
* The following information was reverse engineered from LV1, Storage Manager in LPAR1, sb_iso_spu_module.self and sv_iso_spu_module.self. | * The following information was reverse engineered from LV1, Storage Manager in LPAR1, sb_iso_spu_module.self and sv_iso_spu_module.self. | ||
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* I'm using this driver to set/clear my ATA and VFLASH keys. | * I'm using this driver to set/clear my ATA and VFLASH keys. | ||
* Tested on Linux 3.5.1. | * Tested on Linux 3.5.1. | ||
=Establish Secure Communication Channel= | =Establish Secure Communication Channel= | ||
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* Before a secure communication channel is established, host and ENCDEC device use static AES-CBC-192 keys to encrypt communication data. The static keys can be found e.g. in sb_iso_spu_module.self or sv_iso_spu_module.self. | * Before a secure communication channel is established, host and ENCDEC device use static AES-CBC-192 keys to encrypt communication data. The static keys can be found e.g. in sb_iso_spu_module.self or sv_iso_spu_module.self. | ||
* Static ENCDEC keys depend on SB bus version. To get your SB bus version, read v2 of repository node SB bus id. | * Static ENCDEC keys depend on SB bus version. To get your SB bus version, read v2 of repository node SB bus id. | ||
* During the communication, host and ENCDEC device use random IVs which are sent unencrypted together with encrypted payload. | * During the communication, host and ENCDEC device use random IVs which are sent unencrypted together with encrypted payload. | ||
* The ENCDEC commands, which are encrypted with the session key, contain magic 24 bytes which are checked by ENCDEC device and if some bits are not correct then the command is denied | * The ENCDEC commands, which are encrypted with the session key, contain magic 24 bytes which are checked by ENCDEC device and if some bits are not correct then the command is denied. | ||
=Set ATA Keys= | =Set ATA Keys= | ||
=Set ENCDEC Keys= | =Set ENCDEC Keys= | ||