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https://github.com/CTCaer/hekate.git
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hos: Support pkg2 encrypted with newer mkeys
This commit is contained in:
parent
658c3c112f
commit
40afcfd686
8 changed files with 76 additions and 13 deletions
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@ -190,7 +190,7 @@ void dump_packages12()
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nx_emmc_part_read(&storage, pkg2_part, 0x4000 / NX_EMMC_BLOCKSIZE,
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pkg2_size_aligned / NX_EMMC_BLOCKSIZE, pkg2);
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// Decrypt package2 and parse KIP1 blobs in INI1 section.
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pkg2_hdr_t *pkg2_hdr = pkg2_decrypt(pkg2);
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pkg2_hdr_t *pkg2_hdr = pkg2_decrypt(pkg2, kb);
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if (!pkg2_hdr)
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{
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gfx_printf("Pkg2 decryption failed!\n");
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@ -89,7 +89,7 @@ static const u8 master_keyseed_retail[0x10] =
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static const u8 console_keyseed[0x10] =
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{ 0x4F, 0x02, 0x5F, 0x0E, 0xB6, 0x6D, 0x11, 0x0E, 0xDC, 0x32, 0x7D, 0x41, 0x86, 0xC2, 0xF4, 0x78 };
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static const u8 package2_keyseed[] =
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const u8 package2_keyseed[] =
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{ 0xFB, 0x8B, 0x6A, 0x9C, 0x79, 0x00, 0xC8, 0x49, 0xEF, 0xD2, 0x4D, 0x85, 0x4D, 0x30, 0xA0, 0xC7 };
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static const u8 master_keyseed_4xx_5xx_610[0x10] =
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@ -544,7 +544,7 @@ DPRINTF("Generated keys\n");
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gfx_printf("Read pkg2\n");
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// Decrypt package2 and parse KIP1 blobs in INI1 section.
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pkg2_hdr_t *pkg2_hdr = pkg2_decrypt(ctxt.pkg2);
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pkg2_hdr_t *pkg2_hdr = pkg2_decrypt(ctxt.pkg2, ctxt.pkg1_id->kb);
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if (!pkg2_hdr)
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{
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_hos_crit_error("Pkg2 decryption failed!");
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@ -18,6 +18,7 @@
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#include <string.h>
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#include "hos.h"
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#include "pkg2.h"
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#include "pkg2_ini_kippatch.h"
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@ -32,6 +33,8 @@
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#include "../gfx/gfx.h"
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extern hekate_config h_cfg;
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extern const u8 package2_keyseed[];
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extern void *sd_file_read(const char *path, u32 *fsize);
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#ifdef KIP1_PATCH_DEBUG
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@ -1039,9 +1042,16 @@ const char* pkg2_patch_kips(link_t *info, char* patchNames)
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return NULL;
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}
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pkg2_hdr_t *pkg2_decrypt(void *data)
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static const uint8_t mkey_keyseed_8xx[][0x10] =
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{
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{0x4D, 0xD9, 0x98, 0x42, 0x45, 0x0D, 0xB1, 0x3C, 0x52, 0x0C, 0x9A, 0x44, 0xBB, 0xAD, 0xAF, 0x80} // Master key 8 encrypted with 9.
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};
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pkg2_hdr_t *pkg2_decrypt(void *data, u8 kb)
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{
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pkg2_hdr_t mkey_test;
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u8 *pdata = (u8 *)data;
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u8 keyslot = 8;
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// Skip signature.
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pdata += 0x100;
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@ -1051,8 +1061,27 @@ pkg2_hdr_t *pkg2_decrypt(void *data)
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// Skip header.
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pdata += sizeof(pkg2_hdr_t);
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//! Check if we need to decrypt with newer mkeys. Valid for 8.1.0 and up.
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if ((kb >= KB_FIRMWARE_VERSION_810) && (kb < KB_FIRMWARE_VERSION_MAX))
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{
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u8 tmp_mkey[0x10];
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// Decrypt older encrypted mkey.
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se_aes_crypt_ecb(12, 0, tmp_mkey, 0x10, mkey_keyseed_8xx[KB_FIRMWARE_VERSION_MAX - kb - 1], 0x10);
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// Set and unwrap pkg2 key.
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se_aes_key_set(9, tmp_mkey, 0x10);
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se_aes_unwrap_key(9, 9, package2_keyseed);
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// Decrypt header and test if it's valid.
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se_aes_crypt_ctr(9, &mkey_test, sizeof(pkg2_hdr_t), hdr, sizeof(pkg2_hdr_t), hdr);
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if (mkey_test.magic == PKG2_MAGIC)
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keyslot = 9;
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else
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se_aes_key_clear(9);
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}
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// Decrypt header.
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se_aes_crypt_ctr(8, hdr, sizeof(pkg2_hdr_t), hdr, sizeof(pkg2_hdr_t), hdr);
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se_aes_crypt_ctr(keyslot, hdr, sizeof(pkg2_hdr_t), hdr, sizeof(pkg2_hdr_t), hdr);
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//gfx_hexdump((u32)hdr, hdr, 0x100);
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if (hdr->magic != PKG2_MAGIC)
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@ -1064,12 +1093,15 @@ DPRINTF("sec %d has size %08X\n", i, hdr->sec_size[i]);
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if (!hdr->sec_size[i])
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continue;
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se_aes_crypt_ctr(8, pdata, hdr->sec_size[i], pdata, hdr->sec_size[i], &hdr->sec_ctr[i * 0x10]);
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se_aes_crypt_ctr(keyslot, pdata, hdr->sec_size[i], pdata, hdr->sec_size[i], &hdr->sec_ctr[i * 0x10]);
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//gfx_hexdump((u32)pdata, pdata, 0x100);
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pdata += hdr->sec_size[i];
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}
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if (keyslot != 8)
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se_aes_key_clear(9);
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return hdr;
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}
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@ -151,7 +151,7 @@ void pkg2_merge_kip(link_t *info, pkg2_kip1_t *kip1);
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const char* pkg2_patch_kips(link_t *info, char* patchNames);
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const pkg2_kernel_id_t *pkg2_identify(u8 *hash);
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pkg2_hdr_t *pkg2_decrypt(void *data);
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pkg2_hdr_t *pkg2_decrypt(void *data, u8 kb);
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void pkg2_build_encrypt(void *dst, void *kernel, u32 kernel_size, link_t *kips_info, bool new_pkg2);
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#endif
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@ -506,7 +506,7 @@ static lv_res_t _create_window_dump_pk12_tool(lv_obj_t *btn)
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#endif
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// Decrypt package2 and parse KIP1 blobs in INI1 section.
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pkg2_hdr_t *pkg2_hdr = pkg2_decrypt(pkg2);
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pkg2_hdr_t *pkg2_hdr = pkg2_decrypt(pkg2, kb);
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if (!pkg2_hdr)
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{
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s_printf(txt_buf + strlen(txt_buf), "#FFDD00 Pkg2 decryption failed!#");
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@ -79,7 +79,7 @@ static const u8 master_keyseed_retail[0x10] =
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static const u8 console_keyseed[0x10] =
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{ 0x4F, 0x02, 0x5F, 0x0E, 0xB6, 0x6D, 0x11, 0x0E, 0xDC, 0x32, 0x7D, 0x41, 0x86, 0xC2, 0xF4, 0x78 };
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static const u8 package2_keyseed[] =
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const u8 package2_keyseed[] =
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{ 0xFB, 0x8B, 0x6A, 0x9C, 0x79, 0x00, 0xC8, 0x49, 0xEF, 0xD2, 0x4D, 0x85, 0x4D, 0x30, 0xA0, 0xC7 };
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static const u8 master_keyseed_4xx_5xx_610[0x10] =
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@ -28,6 +28,8 @@
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#include "../gfx/gfx.h"
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extern const u8 package2_keyseed[];
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/*#include "util.h"
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#define DPRINTF(...) gfx_printf(__VA_ARGS__)
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#define DEBUG_PRINTING*/
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@ -79,9 +81,16 @@ DPRINTF(" kip1 %d:%s @ %08X (%08X)\n", i, kip1->name, (u32)kip1, ki->size);
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}
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}
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pkg2_hdr_t *pkg2_decrypt(void *data)
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static const uint8_t mkey_keyseed_8xx[][0x10] =
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{
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{0x4D, 0xD9, 0x98, 0x42, 0x45, 0x0D, 0xB1, 0x3C, 0x52, 0x0C, 0x9A, 0x44, 0xBB, 0xAD, 0xAF, 0x80} // Master key 8 encrypted with 9.
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};
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pkg2_hdr_t *pkg2_decrypt(void *data, u8 kb)
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{
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pkg2_hdr_t mkey_test;
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u8 *pdata = (u8 *)data;
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u8 keyslot = 8;
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// Skip signature.
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pdata += 0x100;
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@ -91,8 +100,27 @@ pkg2_hdr_t *pkg2_decrypt(void *data)
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// Skip header.
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pdata += sizeof(pkg2_hdr_t);
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//! Check if we need to decrypt with newer mkeys. Valid for 8.1.0 and up.
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if ((kb >= KB_FIRMWARE_VERSION_810) && (kb < KB_FIRMWARE_VERSION_MAX))
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{
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u8 tmp_mkey[0x10];
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// Decrypt older encrypted mkey.
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se_aes_crypt_ecb(12, 0, tmp_mkey, 0x10, mkey_keyseed_8xx[KB_FIRMWARE_VERSION_MAX - kb - 1], 0x10);
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// Set and unwrap pkg2 key.
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se_aes_key_set(9, tmp_mkey, 0x10);
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se_aes_unwrap_key(9, 9, package2_keyseed);
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// Decrypt header and test if it's valid.
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se_aes_crypt_ctr(9, &mkey_test, sizeof(pkg2_hdr_t), hdr, sizeof(pkg2_hdr_t), hdr);
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if (mkey_test.magic == PKG2_MAGIC)
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keyslot = 9;
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else
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se_aes_key_clear(9);
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}
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// Decrypt header.
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se_aes_crypt_ctr(8, hdr, sizeof(pkg2_hdr_t), hdr, sizeof(pkg2_hdr_t), hdr);
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se_aes_crypt_ctr(keyslot, hdr, sizeof(pkg2_hdr_t), hdr, sizeof(pkg2_hdr_t), hdr);
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//gfx_hexdump((u32)hdr, hdr, 0x100);
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if (hdr->magic != PKG2_MAGIC)
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@ -104,11 +132,14 @@ DPRINTF("sec %d has size %08X\n", i, hdr->sec_size[i]);
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if (!hdr->sec_size[i])
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continue;
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se_aes_crypt_ctr(8, pdata, hdr->sec_size[i], pdata, hdr->sec_size[i], &hdr->sec_ctr[i * 0x10]);
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se_aes_crypt_ctr(keyslot, pdata, hdr->sec_size[i], pdata, hdr->sec_size[i], &hdr->sec_ctr[i * 0x10]);
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//gfx_hexdump((u32)pdata, pdata, 0x100);
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pdata += hdr->sec_size[i];
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}
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if (keyslot != 8)
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se_aes_key_clear(9);
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return hdr;
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}
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@ -93,6 +93,6 @@ void pkg2_get_newkern_info(u8 *kern_data);
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u32 pkg2_calc_kip1_size(pkg2_kip1_t *kip1);
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void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2);
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pkg2_hdr_t *pkg2_decrypt(void *data);
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pkg2_hdr_t *pkg2_decrypt(void *data, u8 kb);
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#endif
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