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https://github.com/shchmue/Lockpick_RCM.git
synced 2024-11-30 16:34:19 +01:00
Add FSS0 support
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64d7e5cebd
commit
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@ -79,31 +79,6 @@ typedef struct _fss_content_t
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char name[0x10];
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} fss_content_t;
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static void _update_r2p(const char *path)
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{
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char *r2p_path = malloc(256);
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u32 path_len = strlen(path);
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strcpy(r2p_path, path);
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while(path_len)
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{
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if ((r2p_path[path_len - 1] == '/') || (r2p_path[path_len - 1] == 0x5C))
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{
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r2p_path[path_len] = 0;
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strcat(r2p_path, "reboot_payload.bin");
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u8 *r2p_payload = sd_file_read(r2p_path, NULL);
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is_ipl_updated(r2p_payload, r2p_path, h_cfg.updater2p ? true : false);
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free(r2p_payload);
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break;
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}
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path_len--;
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}
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free(r2p_path);
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}
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int parse_fss(launch_ctxt_t *ctxt, const char *path, fss0_sept_t *sept_ctxt)
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{
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FIL fp;
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@ -224,8 +199,6 @@ out:
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gfx_printf("Done!\n");
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f_close(&fp);
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_update_r2p(path);
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return (!sept_ctxt ? 1 : sept_used);
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}
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@ -17,7 +17,9 @@
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#include <string.h>
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#include "sept.h"
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#include "../config/ini.h"
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#include "../gfx/di.h"
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#include "../hos/fss.h"
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#include "../hos/hos.h"
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#include "../libs/fatfs/ff.h"
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#include "../mem/heap.h"
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@ -28,6 +30,7 @@
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#include "../storage/nx_sd.h"
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#include "../storage/sdmmc.h"
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#include "../utils/btn.h"
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#include "../utils/list.h"
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#include "../utils/types.h"
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#include "../gfx/gfx.h"
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@ -65,12 +68,45 @@ extern void reloc_patcher(u32 payload_dst, u32 payload_src, u32 payload_size);
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int reboot_to_sept(const u8 *tsec_fw, const u32 tsec_size, const u32 kb)
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{
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FIL fp;
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bool fss0_sept_used = false;
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// Copy warmboot reboot code and TSEC fw.
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memcpy((u8 *)(SEPT_PK1T_ADDR - WB_RST_SIZE), (u8 *)warmboot_reboot, sizeof(warmboot_reboot));
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memcpy((void *)SEPT_PK1T_ADDR, tsec_fw, tsec_size);
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*(vu32 *)SEPT_TCSZ_ADDR = tsec_size;
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LIST_INIT(ini_sections);
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if (ini_parse(&ini_sections, "bootloader/hekate_ipl.ini", false))
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{
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bool found = false;
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LIST_FOREACH_ENTRY(ini_sec_t, ini_sec, &ini_sections, link)
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{
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// Only parse non config sections.
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if (ini_sec->type == INI_CHOICE && strcmp(ini_sec->name, "config"))
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{
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LIST_FOREACH_ENTRY(ini_kv_t, kv, &ini_sec->kvs, link)
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{
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if (!strcmp("fss0", kv->key))
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{
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fss0_sept_t sept_ctxt;
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sept_ctxt.kb = kb;
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sept_ctxt.sept_primary = (void *)SEPT_STG1_ADDR;
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sept_ctxt.sept_secondary = (void *)SEPT_STG2_ADDR;
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fss0_sept_used = parse_fss(NULL, kv->val, &sept_ctxt);
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found = true;
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break;
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}
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}
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}
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if (found)
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break;
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}
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}
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if (!fss0_sept_used)
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{
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// Copy sept-primary.
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if (f_open(&fp, "sd:/sept/sept-primary.bin", FA_READ))
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goto error;
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@ -101,6 +137,7 @@ int reboot_to_sept(const u8 *tsec_fw, const u32 tsec_size, const u32 kb)
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goto error;
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}
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f_close(&fp);
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}
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// Save auto boot config to sept payload, if any.
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boot_cfg_t *tmp_cfg = malloc(sizeof(boot_cfg_t));
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@ -304,7 +304,7 @@ get_tsec: ;
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break;
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}
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memcpy(master_key[kb-1], master_key[kb], 0x10);
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memcpy(master_key[kb], zeros, 0x10);
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memset(master_key[kb], 0, 0x10);
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}
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if (_key_exists(temp_key)) {
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EPRINTF("Unable to derive master key.");
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@ -527,6 +527,8 @@ pkg2_done:
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for (u32 j = 0; j < 3; j++) {
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_generate_kek(8, fs_keys[2 + j], master_key[i], aes_kek_generation_source, NULL);
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se_aes_crypt_block_ecb(8, 0, key_area_key[j][i], aes_key_generation_source);
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if (j == 2)
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gfx_hexdump(i, key_area_key[j][i], 0x10);
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}
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}
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se_aes_key_set(8, master_key[i], 0x10);
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@ -1088,8 +1090,14 @@ static void _save_key(const char *name, const void *data, u32 len, char *outbuf)
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static void _save_key_family(const char *name, const void *data, u32 start_key, u32 num_keys, u32 len, char *outbuf) {
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char temp_name[0x40] = {0};
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if (memcmp(name, "key_area_key_system", 19) == 0) {
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gfx_hexdump(0, data, num_keys * 0x10);
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}
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for (u32 i = 0; i < num_keys; i++) {
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sprintf(temp_name, "%s_%02x", name, i + start_key);
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if (memcmp(name, "key_area_key_system", 19) == 0) {
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gfx_printf("attempt save key %x\n", i);
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}
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_save_key(temp_name, data + i * len, len, outbuf);
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}
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}
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