mirror of
https://github.com/CTCaer/hekate.git
synced 2024-11-26 19:52:11 +00:00
6b8887b5d8
Currently bpmp loses access to the relevant registers when secmon or exosphere is launched. This change provides support for all firmwares and properly sanitizes the display.
431 lines
9.9 KiB
C
431 lines
9.9 KiB
C
/*
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* Copyright (c) 2018 CTCaer
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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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#include <string.h>
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#include <stdlib.h>
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#include "../utils/btn.h"
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#include "config.h"
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#include "../libs/fatfs/ff.h"
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#include "ini.h"
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#include "../utils/list.h"
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#include "../gfx/tui.h"
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#include "../utils/util.h"
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#include "../gfx/gfx.h"
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extern gfx_ctxt_t gfx_ctxt;
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extern gfx_con_t gfx_con;
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//TODO: Create more macros (info, header, debug, etc) with different colors and utilize them for consistency.
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#define EPRINTF(text) gfx_printf(&gfx_con, "%k"text"%k\n", 0xFFFF0000, 0xFFCCCCCC)
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#define EPRINTFARGS(text, args...) gfx_printf(&gfx_con, "%k"text"%k\n", 0xFFFF0000, args, 0xFFCCCCCC)
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extern hekate_config h_cfg;
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extern int sd_mount();
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extern int sd_unmount();
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void set_default_configuration()
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{
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h_cfg.autoboot = 0;
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h_cfg.bootwait = 3;
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h_cfg.customlogo = 0;
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h_cfg.verification = 2;
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h_cfg.se_keygen_done = 0;
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h_cfg.sbar_time_keeping = 0;
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}
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int create_config_entry()
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{
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if (!sd_mount())
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return 1;
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char lbuf[16];
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FIL fp;
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LIST_INIT(ini_sections);
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if (ini_parse(&ini_sections, "hekate_ipl.ini"))
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{
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if (f_open(&fp, "hekate_ipl.ini", FA_WRITE | FA_CREATE_ALWAYS) != FR_OK)
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return 0;
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// Add config entry.
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f_puts("[config]\nautoboot=", &fp);
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itoa(h_cfg.autoboot, lbuf, 10);
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f_puts(lbuf, &fp);
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f_puts("\nbootwait=", &fp);
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itoa(h_cfg.bootwait, lbuf, 10);
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f_puts(lbuf, &fp);
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f_puts("\ncustomlogo=", &fp);
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itoa(h_cfg.customlogo, lbuf, 10);
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f_puts(lbuf, &fp);
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f_puts("\nverification=", &fp);
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itoa(h_cfg.verification, lbuf, 10);
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f_puts(lbuf, &fp);
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f_puts("\n", &fp);
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// Re-construct existing entries.
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LIST_FOREACH_ENTRY(ini_sec_t, ini_sec, &ini_sections, link)
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{
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if (!strcmp(ini_sec->name, "config"))
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continue;
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switch (ini_sec->type)
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{
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case INI_CHOICE: // Re-construct Boot entry [ ].
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f_puts("[", &fp);
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f_puts(ini_sec->name, &fp);
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f_puts("]\n", &fp);
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// Re-construct boot entry's config.
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LIST_FOREACH_ENTRY(ini_kv_t, kv, &ini_sec->kvs, link)
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{
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f_puts(kv->key, &fp);
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f_puts("=", &fp);
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f_puts(kv->val, &fp);
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f_puts("\n", &fp);
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}
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break;
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case INI_CAPTION: // Re-construct caption entry { }.
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f_puts("{", &fp);
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f_puts(ini_sec->name, &fp);
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f_puts("}\n", &fp);
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break;
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case INI_NEWLINE: // Re-construct cosmetic newline \n.
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f_puts("\n", &fp);
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break;
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case INI_COMMENT: // Re-construct comment entry #.
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f_puts("#", &fp);
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f_puts(ini_sec->name, &fp);
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f_puts("\n", &fp);
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break;
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}
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}
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f_close(&fp);
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sd_unmount();
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}
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else
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return 1;
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ini_free(&ini_sections);
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return 0;
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}
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void config_autoboot()
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{
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gfx_clear_grey(&gfx_ctxt, 0x1B);
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gfx_con_setpos(&gfx_con, 0, 0);
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u32 *temp_autoboot = NULL;
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LIST_INIT(ini_sections);
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u8 max_entries = 29;
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bool ini_freed = true;
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ment_t *ments = (ment_t *)malloc(sizeof(ment_t) * (max_entries + 3));
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u32 *boot_values = (u32 *)malloc(sizeof(u32) * max_entries);
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char *boot_text = (char *)malloc(512 * max_entries);
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for (u32 j = 0; j < max_entries; j++)
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boot_values[j] = j;
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if (sd_mount())
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{
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if (ini_parse(&ini_sections, "hekate_ipl.ini"))
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{
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ini_freed = false;
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// Build configuration menu.
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ments[0].type = MENT_BACK;
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ments[0].caption = "Back";
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ments[1].type = MENT_CHGLINE;
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ments[2].type = MENT_CHOICE;
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if (!h_cfg.autoboot)
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ments[2].caption = "*Disable";
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else
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ments[2].caption = " Disable";
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ments[2].data = &boot_values[0];
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u32 i = 3;
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LIST_FOREACH_ENTRY(ini_sec_t, ini_sec, &ini_sections, link)
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{
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// Skip other ini entries for autoboot.
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if (ini_sec->type == INI_CHOICE)
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{
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if (!strcmp(ini_sec->name, "config"))
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continue;
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if (strlen(ini_sec->name) > 510)
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ments[i].caption = ini_sec->name;
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else
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{
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if (h_cfg.autoboot != (i - 2))
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boot_text[(i - 2) * 512] = ' ';
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else
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boot_text[(i - 2) * 512] = '*';
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memcpy(boot_text + (i - 2) * 512 + 1, ini_sec->name, strlen(ini_sec->name));
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boot_text[strlen(ini_sec->name) + (i - 2) * 512 + 1] = 0;
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ments[i].caption = &boot_text[(i - 2) * 512];
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}
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ments[i].type = ini_sec->type;
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ments[i].data = &boot_values[i - 2];
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i++;
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if (i > max_entries)
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break;
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}
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}
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if (i < 4)
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{
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EPRINTF("No launch configurations found.");
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goto out;
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}
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memset(&ments[i], 0, sizeof(ment_t));
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menu_t menu = {ments, "Disable or select entry to auto boot", 0, 0};
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temp_autoboot = (u32 *)tui_do_menu(&gfx_con, &menu);
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if (temp_autoboot != NULL)
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{
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gfx_clear_grey(&gfx_ctxt, 0x1B);
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gfx_con_setpos(&gfx_con, 0, 0);
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h_cfg.autoboot = *(u32 *)temp_autoboot;
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// Save choice to ini file.
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if (!create_config_entry())
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gfx_puts(&gfx_con, "\nConfiguration was saved!\n");
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else
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EPRINTF("\nConfiguration saving failed!");
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gfx_puts(&gfx_con, "\nPress any key...");
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}
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else
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goto out2;
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}
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else
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{
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EPRINTF("Could not find or open 'hekate_ipl.ini'.\nMake sure it exists in SD Card!.");
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goto out;
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}
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}
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out:;
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btn_wait();
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out2:;
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free(ments);
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free(boot_values);
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free(boot_text);
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if (!ini_freed)
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ini_free(&ini_sections);
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sd_unmount();
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if (temp_autoboot == NULL)
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return;
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}
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void config_bootdelay()
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{
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gfx_clear_grey(&gfx_ctxt, 0x1B);
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gfx_con_setpos(&gfx_con, 0, 0);
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u32 delay_entries = 6;
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ment_t *ments = (ment_t *)malloc(sizeof(ment_t) * (delay_entries + 3));
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u32 *delay_values = (u32 *)malloc(sizeof(u32) * delay_entries);
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char *delay_text = (char *)malloc(32 * delay_entries);
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for (u32 j = 0; j < delay_entries; j++)
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delay_values[j] = j;
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ments[0].type = MENT_BACK;
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ments[0].caption = "Back";
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ments[1].type = MENT_CHGLINE;
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ments[2].type = MENT_CHOICE;
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if (h_cfg.bootwait)
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ments[2].caption = " 0 seconds (Bootlogo disabled)";
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else
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ments[2].caption = "*0 seconds (Bootlogo disabled)";
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ments[2].data = &delay_values[0];
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u32 i = 0;
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for (i = 1; i < delay_entries; i++)
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{
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if (h_cfg.bootwait != i)
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delay_text[i * 32] = ' ';
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else
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delay_text[i * 32] = '*';
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delay_text[i * 32 + 1] = i + '0';
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memcpy(delay_text + i * 32 + 2, " seconds", 9);
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ments[i + 2].type = MENT_CHOICE;
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ments[i + 2].caption = delay_text + i * 32;
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ments[i + 2].data = &delay_values[i];
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}
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memset(&ments[i + 2], 0, sizeof(ment_t));
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menu_t menu = {ments, "Time delay for entering bootloader menu", 0, 0};
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u32 *temp_bootwait = (u32 *)tui_do_menu(&gfx_con, &menu);
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if (temp_bootwait != NULL)
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{
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gfx_clear_grey(&gfx_ctxt, 0x1B);
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gfx_con_setpos(&gfx_con, 0, 0);
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h_cfg.bootwait = *(u32 *)temp_bootwait;
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// Save choice to ini file.
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if (!create_config_entry())
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gfx_puts(&gfx_con, "\nConfiguration was saved!\n");
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else
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EPRINTF("\nConfiguration saving failed!");
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gfx_puts(&gfx_con, "\nPress any key...");
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}
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free(ments);
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free(delay_values);
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free(delay_text);
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if (temp_bootwait == NULL)
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return;
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btn_wait();
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}
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void config_customlogo()
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{
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gfx_clear_grey(&gfx_ctxt, 0x1B);
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gfx_con_setpos(&gfx_con, 0, 0);
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ment_t *ments = (ment_t *)malloc(sizeof(ment_t) * 5);
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u32 *cb_values = (u32 *)malloc(sizeof(u32) * 2);
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for (u32 j = 0; j < 2; j++)
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{
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cb_values[j] = j;
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ments[j + 2].type = MENT_CHOICE;
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ments[j + 2].data = &cb_values[j];
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}
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ments[0].type = MENT_BACK;
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ments[0].caption = "Back";
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ments[1].type = MENT_CHGLINE;
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if (h_cfg.customlogo)
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{
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ments[2].caption = " Disable";
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ments[3].caption = "*Enable";
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}
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else
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{
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ments[2].caption = "*Disable";
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ments[3].caption = " Enable";
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}
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memset(&ments[4], 0, sizeof(ment_t));
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menu_t menu = {ments, "Custom bootlogo", 0, 0};
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u32 *temp_customlogo = (u32 *)tui_do_menu(&gfx_con, &menu);
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if (temp_customlogo != NULL)
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{
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gfx_clear_grey(&gfx_ctxt, 0x1B);
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gfx_con_setpos(&gfx_con, 0, 0);
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h_cfg.customlogo = *(u32 *)temp_customlogo;
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// Save choice to ini file.
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if (!create_config_entry())
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gfx_puts(&gfx_con, "\nConfiguration was saved!\n");
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else
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EPRINTF("\nConfiguration saving failed!");
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gfx_puts(&gfx_con, "\nPress any key...");
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}
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free(ments);
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free(cb_values);
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if (temp_customlogo == NULL)
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return;
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btn_wait();
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}
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void config_verification()
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{
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gfx_clear_grey(&gfx_ctxt, 0x1B);
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gfx_con_setpos(&gfx_con, 0, 0);
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ment_t *ments = (ment_t *)malloc(sizeof(ment_t) * 6);
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u32 *vr_values = (u32 *)malloc(sizeof(u32) * 3);
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char *vr_text = (char *)malloc(64 * 3);
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for (u32 j = 0; j < 3; j++)
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{
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vr_values[j] = j;
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ments[j + 2].type = MENT_CHOICE;
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ments[j + 2].data = &vr_values[j];
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}
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ments[0].type = MENT_BACK;
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ments[0].caption = "Back";
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ments[1].type = MENT_CHGLINE;
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memcpy(vr_text, " Disable", 9);
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memcpy(vr_text + 64, " Sparse (Fast - Not reliable)", 31);
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memcpy(vr_text + 128, " Full (Slow - 100% reliable)", 31);
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for (u32 i = 0; i < 3; i++)
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{
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if (h_cfg.verification != i)
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{
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vr_text[64 * i] = ' ';
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ments[2 + i].caption = vr_text + (i * 64);
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}
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else
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{
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vr_text[64 * i] = '*';
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ments[2 + i].caption = vr_text + (i * 64);
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}
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}
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memset(&ments[5], 0, sizeof(ment_t));
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menu_t menu = {ments, "Backup & Restore verification", 0, 0};
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u32 *temp_verification = (u32 *)tui_do_menu(&gfx_con, &menu);
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if (temp_verification != NULL)
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{
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gfx_clear_grey(&gfx_ctxt, 0x1B);
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gfx_con_setpos(&gfx_con, 0, 0);
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h_cfg.verification = *(u32 *)temp_verification;
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// Save choice to ini file.
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if (!create_config_entry())
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gfx_puts(&gfx_con, "\nConfiguration was saved!\n");
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else
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EPRINTF("\nConfiguration saving failed!");
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gfx_puts(&gfx_con, "\nPress any key...");
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}
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free(ments);
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free(vr_values);
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free(vr_text);
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if (temp_verification == NULL)
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return;
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btn_wait();
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}
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