mirror of
https://github.com/CTCaer/hekate
synced 2024-12-22 11:21:23 +00:00
hos: Use a new method to get kernel/ini1 offsets
This commit is contained in:
parent
5f142b4c86
commit
3d9c64d548
8 changed files with 87 additions and 16 deletions
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@ -223,9 +223,17 @@ void dump_packages12()
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ini1_off = pkg2_newkern_ini1_start;
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ini1_off = pkg2_newkern_ini1_start;
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ini1_size = pkg2_newkern_ini1_end - pkg2_newkern_ini1_start;
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ini1_size = pkg2_newkern_ini1_end - pkg2_newkern_ini1_start;
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}
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}
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if (sd_save_to_file(pkg2_hdr->data + ini1_off, ini1_size, path))
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if (ini1_off)
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{
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if (sd_save_to_file(pkg2_hdr->data + ini1_off, ini1_size, path))
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goto out;
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gfx_puts("INI1 dumped to ini1.bin\n");
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}
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else
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{
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gfx_puts("Failed to dump INI1!\n");
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goto out;
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goto out;
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gfx_puts("INI1 dumped to ini1.bin\n");
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}
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gfx_puts("\nDone. Press any key...\n");
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gfx_puts("\nDone. Press any key...\n");
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@ -43,6 +43,8 @@ extern bool is_ipl_updated(void *buf, char *path, bool force);
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#define CNT_TYPE_KIP 6
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#define CNT_TYPE_KIP 6
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#define CNT_TYPE_BMP 7
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#define CNT_TYPE_BMP 7
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#define CNT_TYPE_EMC 8
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#define CNT_TYPE_EMC 8
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#define CNT_TYPE_KLD 9
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#define CNT_TYPE_KRN 10
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#define CNT_FLAG0_EXPERIMENTAL (1 << 0)
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#define CNT_FLAG0_EXPERIMENTAL (1 << 0)
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@ -581,7 +581,11 @@ int hos_launch(ini_sec_t *cfg)
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}
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}
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LIST_INIT(kip1_info);
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LIST_INIT(kip1_info);
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pkg2_parse_kips(&kip1_info, pkg2_hdr, &ctxt.new_pkg2);
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if (!pkg2_parse_kips(&kip1_info, pkg2_hdr, &ctxt.new_pkg2))
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{
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_hos_crit_error("INI1 parsing failed!");
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return 0;
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}
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gfx_printf("Parsed ini1\n");
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gfx_printf("Parsed ini1\n");
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@ -692,14 +692,34 @@ static u32 _pkg2_calc_kip1_size(pkg2_kip1_t *kip1)
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void pkg2_get_newkern_info(u8 *kern_data)
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void pkg2_get_newkern_info(u8 *kern_data)
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{
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{
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u32 info_op = *(u32 *)(kern_data + PKG2_NEWKERN_GET_INI1);
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u32 pkg2_newkern_ini1_off = 0;
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pkg2_newkern_ini1_val = ((info_op & 0xFFFF) >> 3) + PKG2_NEWKERN_GET_INI1; // Parse ADR and PC.
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pkg2_newkern_ini1_start = 0;
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// Find static OP offset that is close to INI1 offset.
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u32 counter_ops = 0x100;
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while (counter_ops)
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{
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if (*(u32 *)(kern_data + 0x100 - counter_ops) == PKG2_NEWKERN_GET_INI1_HEURISTIC)
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{
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pkg2_newkern_ini1_off = 0x100 - counter_ops + 12; // OP found. Add 12 for the INI1 offset.
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break;
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}
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counter_ops -= 4;
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}
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// Offset not found?
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if (!counter_ops)
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return;
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u32 info_op = *(u32 *)(kern_data + pkg2_newkern_ini1_off);
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pkg2_newkern_ini1_val = ((info_op & 0xFFFF) >> 3) + pkg2_newkern_ini1_off; // Parse ADR and PC.
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pkg2_newkern_ini1_start = *(u32 *)(kern_data + pkg2_newkern_ini1_val);
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pkg2_newkern_ini1_start = *(u32 *)(kern_data + pkg2_newkern_ini1_val);
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pkg2_newkern_ini1_end = *(u32 *)(kern_data + pkg2_newkern_ini1_val + 0x8);
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pkg2_newkern_ini1_end = *(u32 *)(kern_data + pkg2_newkern_ini1_val + 0x8);
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}
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}
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void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
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bool pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
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{
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{
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u8 *ptr;
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u8 *ptr;
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// Check for new pkg2 type.
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// Check for new pkg2 type.
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@ -707,6 +727,9 @@ void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
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{
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{
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pkg2_get_newkern_info(pkg2->data);
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pkg2_get_newkern_info(pkg2->data);
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if (!pkg2_newkern_ini1_start)
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return false;
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ptr = pkg2->data + pkg2_newkern_ini1_start;
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ptr = pkg2->data + pkg2_newkern_ini1_start;
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*new_pkg2 = true;
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*new_pkg2 = true;
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}
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}
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@ -726,6 +749,8 @@ void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
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ptr += ki->size;
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ptr += ki->size;
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DPRINTF(" kip1 %d:%s @ %08X (%08X)\n", i, kip1->name, (u32)kip1, ki->size);
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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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return true;
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}
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}
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int pkg2_has_kip(link_t *info, u64 tid)
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int pkg2_has_kip(link_t *info, u64 tid)
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@ -1,6 +1,6 @@
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/*
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/*
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* Copyright (c) 2018 naehrwert
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* Copyright (c) 2018 naehrwert
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* Copyright (c) 2018-2019 CTCaer
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* Copyright (c) 2018-2020 CTCaer
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*
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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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* 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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* under the terms and conditions of the GNU General Public License,
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@ -27,7 +27,7 @@
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#define PKG2_SEC_INI1 1
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#define PKG2_SEC_INI1 1
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#define INI1_MAGIC 0x31494E49
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#define INI1_MAGIC 0x31494E49
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#define PKG2_NEWKERN_GET_INI1 0x44
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#define PKG2_NEWKERN_GET_INI1_HEURISTIC 0xD2800015 // Offset of OP + 12 is the INI1 offset.
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#define PKG2_NEWKERN_START 0x800
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#define PKG2_NEWKERN_START 0x800
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u32 pkg2_newkern_ini1_val;
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u32 pkg2_newkern_ini1_val;
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@ -144,7 +144,7 @@ typedef struct _kip1_id_t
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} kip1_id_t;
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} kip1_id_t;
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void pkg2_get_newkern_info(u8 *kern_data);
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void pkg2_get_newkern_info(u8 *kern_data);
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void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2);
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bool pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2);
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int pkg2_has_kip(link_t *info, u64 tid);
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int pkg2_has_kip(link_t *info, u64 tid);
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void pkg2_replace_kip(link_t *info, u64 tid, pkg2_kip1_t *kip1);
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void pkg2_replace_kip(link_t *info, u64 tid, pkg2_kip1_t *kip1);
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void pkg2_add_kip(link_t *info, pkg2_kip1_t *kip1);
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void pkg2_add_kip(link_t *info, pkg2_kip1_t *kip1);
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@ -549,6 +549,13 @@ static lv_res_t _create_window_dump_pk12_tool(lv_obj_t *btn)
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ini1_off = pkg2_newkern_ini1_start;
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ini1_off = pkg2_newkern_ini1_start;
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ini1_size = pkg2_newkern_ini1_end - pkg2_newkern_ini1_start;
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ini1_size = pkg2_newkern_ini1_end - pkg2_newkern_ini1_start;
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}
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}
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if (!ini1_off)
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{
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s_printf(txt_buf + strlen(txt_buf), "#FFDD00 Failed to dump INI1 and kips!#\n");
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goto out;
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}
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pkg2_ini1_t *ini1 = (pkg2_ini1_t *)(pkg2_hdr->data + ini1_off);
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pkg2_ini1_t *ini1 = (pkg2_ini1_t *)(pkg2_hdr->data + ini1_off);
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emmcsn_path_impl(path, "/pkg2", "ini1.bin", &storage);
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emmcsn_path_impl(path, "/pkg2", "ini1.bin", &storage);
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if (sd_save_to_file(ini1, ini1_size, path))
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if (sd_save_to_file(ini1, ini1_size, path))
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@ -1,6 +1,6 @@
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/*
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/*
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* Copyright (c) 2018 naehrwert
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* Copyright (c) 2018 naehrwert
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* Copyright (c) 2018-2019 CTCaer
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* Copyright (c) 2018-2020 CTCaer
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*
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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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* 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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* under the terms and conditions of the GNU General Public License,
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@ -45,14 +45,34 @@ u32 pkg2_calc_kip1_size(pkg2_kip1_t *kip1)
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void pkg2_get_newkern_info(u8 *kern_data)
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void pkg2_get_newkern_info(u8 *kern_data)
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{
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{
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u32 info_op = *(u32 *)(kern_data + PKG2_NEWKERN_GET_INI1);
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u32 pkg2_newkern_ini1_off = 0;
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pkg2_newkern_ini1_val = ((info_op & 0xFFFF) >> 3) + PKG2_NEWKERN_GET_INI1; // Parse ADR and PC.
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pkg2_newkern_ini1_start = 0;
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// Find static OP offset that is close to INI1 offset.
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u32 counter_ops = 0x100;
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while (counter_ops)
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{
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if (*(u32 *)(kern_data + 0x100 - counter_ops) == PKG2_NEWKERN_GET_INI1_HEURISTIC)
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{
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pkg2_newkern_ini1_off = 0x100 - counter_ops + 12; // OP found. Add 12 for the INI1 offset.
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break;
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}
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counter_ops -= 4;
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}
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// Offset not found?
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if (!counter_ops)
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return;
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u32 info_op = *(u32 *)(kern_data + pkg2_newkern_ini1_off);
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pkg2_newkern_ini1_val = ((info_op & 0xFFFF) >> 3) + pkg2_newkern_ini1_off; // Parse ADR and PC.
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pkg2_newkern_ini1_start = *(u32 *)(kern_data + pkg2_newkern_ini1_val);
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pkg2_newkern_ini1_start = *(u32 *)(kern_data + pkg2_newkern_ini1_val);
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pkg2_newkern_ini1_end = *(u32 *)(kern_data + pkg2_newkern_ini1_val + 0x8);
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pkg2_newkern_ini1_end = *(u32 *)(kern_data + pkg2_newkern_ini1_val + 0x8);
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}
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}
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void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
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bool pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
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{
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{
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u8 *ptr;
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u8 *ptr;
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// Check for new pkg2 type.
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// Check for new pkg2 type.
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@ -60,6 +80,9 @@ void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
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{
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{
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pkg2_get_newkern_info(pkg2->data);
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pkg2_get_newkern_info(pkg2->data);
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if (!pkg2_newkern_ini1_start)
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return false;
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ptr = pkg2->data + pkg2_newkern_ini1_start;
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ptr = pkg2->data + pkg2_newkern_ini1_start;
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*new_pkg2 = true;
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*new_pkg2 = true;
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}
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}
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@ -79,6 +102,8 @@ void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
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ptr += ki->size;
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ptr += ki->size;
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DPRINTF(" kip1 %d:%s @ %08X (%08X)\n", i, kip1->name, (u32)kip1, ki->size);
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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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return true;
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}
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}
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static const u8 mkey_keyseed_8xx[][0x10] =
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static const u8 mkey_keyseed_8xx[][0x10] =
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@ -1,6 +1,6 @@
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/*
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/*
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* Copyright (c) 2018 naehrwert
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* Copyright (c) 2018 naehrwert
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* Copyright (c) 2018-2019 CTCaer
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* Copyright (c) 2018-2020 CTCaer
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*
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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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* 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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* under the terms and conditions of the GNU General Public License,
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@ -27,7 +27,7 @@
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#define PKG2_SEC_INI1 1
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#define PKG2_SEC_INI1 1
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#define INI1_MAGIC 0x31494E49
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#define INI1_MAGIC 0x31494E49
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#define PKG2_NEWKERN_GET_INI1 0x44
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#define PKG2_NEWKERN_GET_INI1_HEURISTIC 0xD2800015 // Offset of OP + 12 is the INI1 offset.
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#define PKG2_NEWKERN_START 0x800
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#define PKG2_NEWKERN_START 0x800
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u32 pkg2_newkern_ini1_val;
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u32 pkg2_newkern_ini1_val;
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@ -91,7 +91,7 @@ typedef struct _pkg2_kip1_info_t
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void pkg2_get_newkern_info(u8 *kern_data);
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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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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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bool pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2);
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pkg2_hdr_t *pkg2_decrypt(void *data, u8 kb);
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pkg2_hdr_t *pkg2_decrypt(void *data, u8 kb);
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