140 lines
4.3 KiB
C
140 lines
4.3 KiB
C
/*
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* Copyright (c) 2019-2020 shchmue
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* 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 <http://www.gnu.org/licenses/>.
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*/
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#ifndef _KEYS_H_
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#define _KEYS_H_
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#include <utils/types.h>
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#include "../hos/hos.h"
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#define AES_128_KEY_SIZE 16
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#define RSA_2048_KEY_SIZE 256
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// only tickets of type Rsa2048Sha256 are expected
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typedef struct {
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u32 signature_type; // always 0x10004
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u8 signature[RSA_2048_KEY_SIZE];
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u8 sig_padding[0x3C];
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char issuer[0x40];
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u8 titlekey_block[RSA_2048_KEY_SIZE];
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u8 format_version;
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u8 titlekey_type;
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u16 ticket_version;
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u8 license_type;
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u8 common_key_id;
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u16 property_mask;
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u64 reserved;
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u64 ticket_id;
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u64 device_id;
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u8 rights_id[0x10];
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u32 account_id;
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u32 sect_total_size;
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u32 sect_hdr_offset;
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u16 sect_hdr_count;
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u16 sect_hdr_entry_size;
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u8 padding[0x140];
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} ticket_t;
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typedef struct {
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u8 rights_id[0x10];
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u64 ticket_id;
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u32 account_id;
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u16 property_mask;
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u16 reserved;
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} ticket_record_t;
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typedef struct {
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u8 read_buffer[0x40000];
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u8 rights_ids[0x40000 / 0x10][0x10];
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u8 titlekeys[0x40000 / 0x10][0x10];
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} titlekey_buffer_t;
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typedef struct {
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u8 private_exponent[RSA_2048_KEY_SIZE];
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u8 modulus[RSA_2048_KEY_SIZE];
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u8 public_exponent[4];
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u8 reserved[0x14];
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u64 device_id;
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u8 gmac[0x10];
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} rsa_keypair_t;
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typedef struct {
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u8 master_kek[AES_128_KEY_SIZE];
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u8 data[0x70];
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u8 package1_key[AES_128_KEY_SIZE];
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} keyblob_t;
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typedef struct {
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u8 cmac[0x10];
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u8 iv[0x10];
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keyblob_t key_data;
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u8 unused[0x150];
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} encrypted_keyblob_t;
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typedef struct {
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u8 temp_key[AES_128_KEY_SIZE],
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bis_key[4][AES_128_KEY_SIZE * 2],
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device_key[AES_128_KEY_SIZE],
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device_key_4x[AES_128_KEY_SIZE],
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sd_seed[AES_128_KEY_SIZE],
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// FS-related keys
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header_key[AES_128_KEY_SIZE * 2],
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save_mac_key[AES_128_KEY_SIZE],
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// other sysmodule keys
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eticket_rsa_kek[AES_128_KEY_SIZE],
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eticket_rsa_kek_personalized[AES_128_KEY_SIZE],
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ssl_rsa_kek[AES_128_KEY_SIZE],
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// keyblob-derived families
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keyblob_key[KB_FIRMWARE_VERSION_600 + 1][AES_128_KEY_SIZE],
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keyblob_mac_key[KB_FIRMWARE_VERSION_600 + 1][AES_128_KEY_SIZE],
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package1_key[KB_FIRMWARE_VERSION_600 + 1][AES_128_KEY_SIZE],
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// master key-derived families
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key_area_key[3][KB_FIRMWARE_VERSION_MAX + 1][AES_128_KEY_SIZE],
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master_kek[KB_FIRMWARE_VERSION_MAX + 1][AES_128_KEY_SIZE],
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master_key[KB_FIRMWARE_VERSION_MAX + 1][AES_128_KEY_SIZE],
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package2_key[KB_FIRMWARE_VERSION_MAX + 1][AES_128_KEY_SIZE],
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titlekek[KB_FIRMWARE_VERSION_MAX + 1][AES_128_KEY_SIZE],
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tsec_keys[AES_128_KEY_SIZE * 2];
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u32 sbk[4];
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keyblob_t keyblob[KB_FIRMWARE_VERSION_600 + 1];
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} key_derivation_ctx_t;
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#define TPRINTF(text) \
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end_time = get_tmr_us(); \
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gfx_printf(text" done in %d us\n", end_time - start_time); \
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start_time = get_tmr_us(); \
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minerva_periodic_training()
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#define TPRINTFARGS(text, args...) \
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end_time = get_tmr_us(); \
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gfx_printf(text" done in %d us\n", args, end_time - start_time); \
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start_time = get_tmr_us(); \
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minerva_periodic_training()
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// save key wrapper
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#define SAVE_KEY(name) _save_key(#name, name, sizeof(name), text_buffer)
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// save key with different name than variable
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#define SAVE_KEY_VAR(name, varname) _save_key(#name, varname, sizeof(varname), text_buffer)
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// save key family wrapper
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#define SAVE_KEY_FAMILY(name, start) _save_key_family(#name, name, start, sizeof(name) / sizeof(name[0]), sizeof(name[0]), text_buffer)
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// save key family with different name than variable
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#define SAVE_KEY_FAMILY_VAR(name, varname, start) _save_key_family(#name, varname, start, sizeof(varname) / sizeof(varname[0]), sizeof(varname[0]), text_buffer)
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void dump_keys();
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#endif
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