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14 Commits

Author SHA1 Message Date
CTCaer
a4c90aeff3 Bump hekate to v5.1.4 and Nyx to v0.8.7 2020-04-14 21:34:59 +03:00
CTCaer
bfe13981bc Disable some options from TUI to lessen codesize v2 2020-04-14 18:11:34 +03:00
CTCaer
ef11dd883a Allow bypassing empty battery charging 2020-04-14 17:55:31 +03:00
CTCaer
da149c296f touch: Reinitialize up to 3 times if failed 2020-04-14 17:52:22 +03:00
CTCaer
9af4c717a8 util: Add btn_read_vol 2020-04-14 17:51:42 +03:00
CTCaer
281e5a138e sept: Create sept folder if missing 2020-04-14 17:45:34 +03:00
CTCaer
e7f8b2c6c2 hos: Add HOS 10.0.0 support 2020-04-14 17:43:43 +03:00
CTCaer
3d9c64d548 hos: Use a new method to get kernel/ini1 offsets 2020-04-14 17:40:41 +03:00
CTCaer
5f142b4c86 main: Add empty battery screen
This disables low battery monitor shutdown (LBM shutdown) on boot and checks if battery is enough.

The logic is as follows:

If battery is not enough:
- If not charging and 15s pass, it will re enable LBM shutdown and power off.
- If charging, it will wait until it is charged above the limit.
 Screen will auto turn off to save power. A press on Power button or a change on charger, will enable it for another 15s.

If battery is enough:
- Enables LBM shutdown and continues with the boot process.
2020-04-06 05:54:45 +03:00
CTCaer
52c506af9a tools: Force sparse verification on TUI
Additionally, because the tool relies 100% on sd card, it will become a Nyx only. Remove the config also, as it will be moved to nyx configuration.
2020-04-06 05:36:09 +03:00
CTCaer
dc9c7fd95c touch: Do a panel HW test before calibration
In case the panel or the panel connection has issues, abort the calibration.
2020-03-25 01:38:16 +02:00
CTCaer
4ec7befe82 touch: Small refactor 2020-03-25 01:31:58 +02:00
CTCaer
dd4dd91152 makefile: Show a warning when binary exceeds limits 2020-03-24 20:06:10 +02:00
CTCaer
a39ba2cd71 lvgl: Fix edge case in lv_label_set_text
This fixes an edge case where the original label set was done with set_static_text, the next one with set_text and the text is at the same address.

The incomplete check would think that the text resides on heap and it would reallocate it as such, effectively corrupting .data on the next sets.
2020-03-22 04:48:50 +02:00
35 changed files with 553 additions and 235 deletions

View File

@@ -78,8 +78,10 @@ NYXDIR := $(wildcard nyx)
all: $(TARGET).bin
@echo -n "Payload size is "
@wc -c < $(OUTPUTDIR)/$(TARGET).bin
@echo "Max size is 126296 Bytes."
$(eval BIN_SIZE = $(shell wc -c < $(OUTPUTDIR)/$(TARGET).bin))
@echo $(BIN_SIZE)
@echo "Max size is 126296 Bytes."
@if [ ${BIN_SIZE} -gt 126296 ]; then echo "\e[1;33mPayload size exceeds limit!\e[0m"; fi
clean:
@rm -rf $(OBJS)

View File

@@ -1,11 +1,11 @@
# IPL Version.
BLVERSION_MAJOR := 5
BLVERSION_MINOR := 1
BLVERSION_HOTFX := 3
BLVERSION_HOTFX := 4
BLVERSION_RSVD := 0
# Nyx Version.
NYXVERSION_MAJOR := 0
NYXVERSION_MINOR := 8
NYXVERSION_HOTFX := 6
NYXVERSION_HOTFX := 7
NYXVERSION_RSVD := 0

View File

@@ -37,7 +37,6 @@ void set_default_configuration()
h_cfg.autoboot = 0;
h_cfg.autoboot_list = 0;
h_cfg.bootwait = 3;
h_cfg.verification = 1;
h_cfg.se_keygen_done = 0;
h_cfg.sbar_time_keeping = 0;
h_cfg.backlight = 100;
@@ -97,9 +96,6 @@ int create_config_entry()
f_puts("\nbootwait=", &fp);
itoa(h_cfg.bootwait, lbuf, 10);
f_puts(lbuf, &fp);
f_puts("\nverification=", &fp);
itoa(h_cfg.verification, lbuf, 10);
f_puts(lbuf, &fp);
f_puts("\nbacklight=", &fp);
itoa(h_cfg.backlight, lbuf, 10);
f_puts(lbuf, &fp);
@@ -451,61 +447,6 @@ void config_bootdelay()
btn_wait();
}
void config_verification()
{
gfx_clear_grey(0x1B);
gfx_con_setpos(0, 0);
u32 vr_text_size = 64;
ment_t *ments = (ment_t *)malloc(sizeof(ment_t) * 6);
u32 *vr_values = (u32 *)malloc(sizeof(u32) * 3);
char *vr_text = (char *)malloc(vr_text_size * 3);
for (u32 j = 0; j < 3; j++)
{
vr_values[j] = j;
ments[j + 2].type = MENT_DATA;
ments[j + 2].data = &vr_values[j];
}
ments[0].type = MENT_BACK;
ments[0].caption = "Back";
ments[1].type = MENT_CHGLINE;
strcpy(vr_text, " Disable (Fastest - Unsafe)");
strcpy(vr_text + 64, " Sparse (Fast - Safe)");
strcpy(vr_text + 128, " Full (Slow - Safe)");
for (u32 i = 0; i < 3; i++)
{
if (h_cfg.verification != i)
vr_text[vr_text_size * i] = ' ';
else
vr_text[vr_text_size * i] = '*';
ments[2 + i].caption = vr_text + (i * vr_text_size);
}
memset(&ments[5], 0, sizeof(ment_t));
menu_t menu = {ments, "Backup & Restore verification", 0, 0};
u32 *temp_verification = (u32 *)tui_do_menu(&menu);
if (temp_verification != NULL)
{
h_cfg.verification = *(u32 *)temp_verification;
_save_config();
}
free(ments);
free(vr_values);
free(vr_text);
if (temp_verification == NULL)
return;
btn_wait();
}
void config_backlight()
{
gfx_clear_grey(0x1B);

View File

@@ -25,7 +25,6 @@ typedef struct _hekate_config
u32 autoboot;
u32 autoboot_list;
u32 bootwait;
u32 verification;
u32 backlight;
u32 autohosoff;
u32 autonogc;
@@ -45,7 +44,6 @@ void set_default_configuration();
int create_config_entry();
void config_autoboot();
void config_bootdelay();
void config_verification();
void config_backlight();
void config_auto_hos_poweroff();
void config_nogc();

View File

@@ -78,7 +78,7 @@ static int _dump_emmc_verify(sdmmc_storage_t *storage, u32 lba_curr, char *outFi
// Check every time or every 4.
// Every 4 protects from fake sd, sector corruption and frequent I/O corruption.
// Full provides all that, plus protection from extremely rare I/O corruption.
if ((h_cfg.verification >= 2) || !(sparseShouldVerify % 4))
if (!(sparseShouldVerify % 4))
{
if (!sdmmc_storage_read(storage, lba_curr, num, bufEm))
{
@@ -307,15 +307,12 @@ static int _dump_emmc_part(char *sd_path, sdmmc_storage_t *storage, emmc_part_t
memset(&fp, 0, sizeof(fp));
currPartIdx++;
if (h_cfg.verification)
// Verify part.
if (_dump_emmc_verify(storage, lbaStartPart, outFilename, part))
{
// Verify part.
if (_dump_emmc_verify(storage, lbaStartPart, outFilename, part))
{
EPRINTF("\nPress any key and try again...\n");
EPRINTF("\nPress any key and try again...\n");
return 0;
}
return 0;
}
_update_filename(outFilename, sdPathLen, numSplitParts, currPartIdx);
@@ -441,18 +438,15 @@ static int _dump_emmc_part(char *sd_path, sdmmc_storage_t *storage, emmc_part_t
// Backup operation ended successfully.
f_close(&fp);
if (h_cfg.verification)
// Verify last part or single file backup.
if (_dump_emmc_verify(storage, lbaStartPart, outFilename, part))
{
// Verify last part or single file backup.
if (_dump_emmc_verify(storage, lbaStartPart, outFilename, part))
{
EPRINTF("\nPress any key and try again...\n");
EPRINTF("\nPress any key and try again...\n");
return 0;
}
else
tui_pbar(0, gfx_con.y, 100, 0xFF96FF00, 0xFF155500);
return 0;
}
else
tui_pbar(0, gfx_con.y, 100, 0xFF96FF00, 0xFF155500);
gfx_con.fntsz = 16;
// Remove partial backup index file if no fatal errors occurred.
@@ -580,10 +574,8 @@ static void _dump_emmc_selected(emmcPartType_t dumpType)
timer = get_tmr_s() - timer;
gfx_printf("Time taken: %dm %ds.\n", timer / 60, timer % 60);
sdmmc_storage_end(&storage);
if (res && h_cfg.verification)
if (res)
gfx_printf("\n%kFinished and verified!%k\nPress any key...\n", 0xFF96FF00, 0xFFCCCCCC);
else if (res)
gfx_printf("\nFinished! Press any key...\n");
out:
sd_unmount();
@@ -713,15 +705,12 @@ static int _restore_emmc_part(char *sd_path, sdmmc_storage_t *storage, emmc_part
memset(&fp, 0, sizeof(fp));
currPartIdx++;
if (h_cfg.verification)
// Verify part.
if (_dump_emmc_verify(storage, lbaStartPart, outFilename, part))
{
// Verify part.
if (_dump_emmc_verify(storage, lbaStartPart, outFilename, part))
{
EPRINTF("\nPress any key and try again...\n");
EPRINTF("\nPress any key and try again...\n");
return 0;
}
return 0;
}
_update_filename(outFilename, sdPathLen, numSplitParts, currPartIdx);
@@ -791,18 +780,15 @@ static int _restore_emmc_part(char *sd_path, sdmmc_storage_t *storage, emmc_part
// Restore operation ended successfully.
f_close(&fp);
if (h_cfg.verification)
// Verify restored data.
if (_dump_emmc_verify(storage, lbaStartPart, outFilename, part))
{
// Verify restored data.
if (_dump_emmc_verify(storage, lbaStartPart, outFilename, part))
{
EPRINTF("\nPress any key and try again...\n");
EPRINTF("\nPress any key and try again...\n");
return 0;
}
else
tui_pbar(0, gfx_con.y, 100, 0xFF96FF00, 0xFF155500);
return 0;
}
else
tui_pbar(0, gfx_con.y, 100, 0xFF96FF00, 0xFF155500);
gfx_con.fntsz = 16;
gfx_puts("\n\n");
@@ -925,10 +911,8 @@ static void _restore_emmc_selected(emmcPartType_t restoreType)
timer = get_tmr_s() - timer;
gfx_printf("Time taken: %dm %ds.\n", timer / 60, timer % 60);
sdmmc_storage_end(&storage);
if (res && h_cfg.verification)
if (res)
gfx_printf("\n%kFinished and verified!%k\nPress any key...\n", 0xFF96FF00, 0xFFCCCCCC);
else if (res)
gfx_printf("\nFinished! Press any key...\n");
out:
sd_unmount();

View File

@@ -223,9 +223,17 @@ void dump_packages12()
ini1_off = pkg2_newkern_ini1_start;
ini1_size = pkg2_newkern_ini1_end - pkg2_newkern_ini1_start;
}
if (sd_save_to_file(pkg2_hdr->data + ini1_off, ini1_size, path))
if (ini1_off)
{
if (sd_save_to_file(pkg2_hdr->data + ini1_off, ini1_size, path))
goto out;
gfx_puts("INI1 dumped to ini1.bin\n");
}
else
{
gfx_puts("Failed to dump INI1!\n");
goto out;
gfx_puts("INI1 dumped to ini1.bin\n");
}
gfx_puts("\nDone. Press any key...\n");

View File

@@ -477,4 +477,61 @@ static u8 BOOTLOGO_BLZ[SZ_BOOTLOGO_BLZ] = {
0x6C, 0x23, 0x00, 0x00
};
// 21 x 50 @8bpp RGB.
#define X_BATTERY_EMPTY 21
#define Y_BATTERY_EMPTY_BATT 38
#define Y_BATTERY_EMPTY_CHRG 12
#define SZ_BATTERY_EMPTY 3150
#define SZ_BATTERY_EMPTY_BLZ 740
static u8 BATTERY_EMPTY_BLZ[SZ_BATTERY_EMPTY_BLZ] =
{
0x17, 0xC0, 0x5D, 0x51, 0x79, 0x12, 0x79, 0x48, 0x69, 0x00, 0x0D, 0x46, 0xE3, 0x0F, 0xF0, 0x20,
0xF0, 0x35, 0x2E, 0x38, 0x3F, 0x40, 0xEF, 0xCF, 0x00, 0x89, 0x77, 0x00, 0x17, 0x01, 0x14, 0x09,
0x90, 0x36, 0xF0, 0xA4, 0xF1, 0x62, 0x01, 0x38, 0xA1, 0x99, 0x84, 0x3E, 0x00, 0x23, 0x1F, 0x04,
0x40, 0x3B, 0xF0, 0x5B, 0x4F, 0x00, 0x18, 0x25, 0x20, 0x24, 0x90, 0x57, 0x00, 0x3C, 0xC0, 0x7B,
0x00, 0x63, 0x10, 0x31, 0x7C, 0x2B, 0x03, 0x30, 0x3C, 0xF0, 0xA2, 0x00, 0xCE, 0x11, 0x0F, 0x0D,
0x21, 0x00, 0x9E, 0xDE, 0x00, 0x06, 0x40, 0x60, 0xF0, 0xB9, 0xA0, 0xEA, 0x70, 0x3C, 0xF0, 0xF5,
0x67, 0xD4, 0x3E, 0x01, 0x54, 0x00, 0x00, 0x00, 0x57, 0x70, 0xCD, 0xB1, 0x00, 0x1E, 0xFB, 0xD9,
0x15, 0xA0, 0xC9, 0xAE, 0x69, 0x30, 0x3C, 0xD0, 0x30, 0xF0, 0xE4, 0xC1, 0xA7, 0x18, 0x10, 0x0D,
0x0C, 0x00, 0x49, 0x3F, 0x04, 0x00, 0x87, 0x75, 0x00, 0xC5, 0xAA, 0x2A, 0x00, 0x09, 0x40, 0xC0,
0xD7, 0xBA, 0x24, 0x00, 0x0C, 0xA0, 0x33, 0xF0, 0xF7, 0xD6, 0x0C, 0x00, 0x9C, 0x3C, 0xA0, 0x07,
0x06, 0x2A, 0x10, 0x7D, 0x6C, 0x00, 0xBB, 0x09, 0xA2, 0x00, 0xF3, 0xD2, 0x00, 0xE3, 0xC4, 0x0C,
0xA0, 0x80, 0x3C, 0xF0, 0x41, 0x38, 0x05, 0x50, 0x3E, 0xF1, 0x03, 0x00, 0x01, 0x19, 0x01, 0x00,
0x33, 0x2C, 0x00, 0x71, 0x62, 0x00, 0x00, 0xAF, 0x97, 0x00, 0xEB, 0xCB, 0x03, 0x30, 0x03, 0x30,
0x3C, 0x40, 0xE0, 0x81, 0x70, 0x04, 0x40, 0x0F, 0xF0, 0x23, 0xF0, 0x2D, 0x27, 0x00, 0x1C, 0x6B,
0x5D, 0x00, 0xA9, 0x92, 0x00, 0xE7, 0xC8, 0x00, 0x00, 0x00, 0x00, 0xFE, 0xDC, 0x00, 0xBF, 0xA5,
0x0E, 0xE0, 0x81, 0x0F, 0xF0, 0x19, 0xF0, 0xA5, 0x00, 0x22, 0x00, 0x65, 0x58, 0x00, 0x07, 0x67,
0x59, 0x07, 0x70, 0x0F, 0xF0, 0x2A, 0xF0, 0x06, 0x09, 0x45, 0x10, 0x3C, 0x0A, 0x00, 0x00, 0x03,
0x30, 0x00, 0x00, 0x49, 0x11, 0x0B, 0x47, 0x0E, 0x10, 0x0B, 0x1B, 0x06, 0x04, 0x3F, 0xF0, 0xD2,
0xF0, 0xCD, 0x38, 0xE0, 0x85, 0xF8, 0xF7, 0x3A, 0x26, 0x75, 0x00, 0xD2, 0xF0, 0x33, 0x00, 0x27,
0x71, 0x09, 0x06, 0x24, 0x30, 0xBD, 0x2C, 0x1D, 0x15, 0x00, 0xDB, 0x44, 0x33, 0x22, 0x00, 0x00,
0x03, 0x30, 0x00, 0x00, 0x57, 0x00, 0x5D, 0x00, 0x18, 0x00, 0xFC, 0xC7, 0x2E, 0x1F, 0x00, 0x00,
0x45, 0x00, 0x29, 0x09, 0x06, 0x18, 0x89, 0x30, 0x2F, 0x0B, 0x07, 0xDF, 0x34, 0x23, 0x21, 0xC0,
0x81, 0x59, 0x15, 0x0E, 0x3C, 0xC0, 0x2A, 0x00, 0xF5, 0xC7, 0xE1, 0x34, 0x38, 0x23, 0x31, 0x0B,
0x07, 0xC9, 0x2F, 0x1F, 0x33, 0x00, 0x80, 0x2D, 0x00, 0x1E, 0x90, 0x4D, 0x12, 0x0C, 0x2D, 0xC0,
0x41, 0x0F, 0x23, 0x0A, 0x03, 0x30, 0x00, 0x00, 0xD9, 0x33, 0x22, 0xE7, 0x36, 0x06, 0x24, 0x06,
0x00, 0xCB, 0x2F, 0x1F, 0x39, 0x30, 0x15, 0x05, 0x22, 0x03, 0x06, 0x60, 0x0F, 0xF0, 0x21, 0xF0,
0x0F, 0x03, 0x02, 0x03, 0x00, 0x8E, 0xF9, 0x3A, 0x3C, 0xA0, 0x0F, 0xF0, 0x27, 0xF0, 0x3C, 0xF0,
0x3C, 0xF0, 0x30, 0xF0, 0xFC, 0x3C, 0xF0, 0x3C, 0xF0, 0x0F, 0xF0, 0x27, 0xF0, 0x3C, 0xF0, 0x3C,
0xF0, 0x30, 0xF0, 0x3C, 0xF0, 0xFF, 0x3C, 0xF0, 0x0F, 0xF0, 0x27, 0xF0, 0x3C, 0xF0, 0x3C, 0xF0,
0x30, 0xF0, 0x3C, 0xF0, 0x3C, 0xF0, 0xFF, 0x0F, 0xF0, 0x27, 0xF0, 0x3C, 0xF0, 0x3C, 0xF0, 0x30,
0xF0, 0x3C, 0xF0, 0x3C, 0xF0, 0x0F, 0xF0, 0xFF, 0x27, 0xF0, 0x3C, 0xF0, 0x3C, 0xF0, 0x30, 0xF0,
0x3C, 0xF0, 0x3C, 0xF0, 0x0F, 0xF0, 0x27, 0xF0, 0xFF, 0x3C, 0xF0, 0x3C, 0xF0, 0x30, 0xF0, 0x3C,
0xF0, 0x3C, 0xF0, 0x0F, 0xF0, 0x27, 0xF0, 0x3C, 0xF0, 0xFF, 0x3C, 0xF0, 0x30, 0xF0, 0x3C, 0xF0,
0x3C, 0xF0, 0x0F, 0xF0, 0x27, 0xF0, 0x3C, 0xF0, 0x3C, 0xF0, 0xFF, 0x30, 0xF0, 0x3C, 0xF0, 0x3C,
0xF0, 0x0F, 0xF0, 0x27, 0xF0, 0x3C, 0xF0, 0x3C, 0xF0, 0x30, 0xF0, 0xFF, 0x3C, 0xF0, 0x3C, 0xF0,
0x0F, 0xF0, 0x27, 0xF0, 0x3C, 0xF0, 0x3C, 0xF0, 0x30, 0xF0, 0x3C, 0xF0, 0xFF, 0x3C, 0xF0, 0x0F,
0xF0, 0x27, 0xF0, 0x3C, 0xF0, 0x3C, 0xF0, 0x30, 0xF0, 0x3C, 0xF0, 0x3C, 0xF0, 0xFF, 0x0F, 0xF0,
0x27, 0xF0, 0x3C, 0xF0, 0x3C, 0xF0, 0x30, 0xF0, 0x3C, 0xF0, 0x3C, 0xF0, 0x0F, 0xF0, 0xFF, 0x27,
0xF0, 0x3C, 0xF0, 0x3C, 0xF0, 0x30, 0xF0, 0x3C, 0xF0, 0x3C, 0xF0, 0x0F, 0xF0, 0x27, 0xF0, 0xFF,
0x3C, 0xF0, 0x3C, 0xF0, 0x30, 0xF0, 0x3C, 0xF0, 0x84, 0x90, 0x3F, 0x00, 0x00, 0x00, 0x0F, 0xF0,
0xFF, 0x09, 0x90, 0x03, 0x30, 0x00, 0x00, 0x00, 0x00, 0x00, 0x09, 0x02, 0x07, 0x01, 0xB1, 0x40,
0x81, 0x20, 0x33, 0x0C, 0x08, 0x00, 0x00, 0x0F, 0xF0, 0xC6, 0x09, 0x90, 0x03, 0x30, 0x00, 0x00,
0x0D, 0x03, 0x02, 0x2D, 0x0A, 0x07, 0x07, 0x75, 0x30, 0x39, 0x00, 0x00, 0x00, 0x0F, 0xF0, 0x0F,
0xF0, 0x1B, 0xF0, 0x03, 0x00, 0xFE, 0x39, 0x00, 0xB1, 0x29, 0x1B, 0xF3, 0x39, 0x26, 0x00, 0x00,
0x81, 0x0F, 0xF0, 0x09, 0x90, 0x03, 0x30, 0x00, 0x00, 0xFE, 0x3B, 0x27, 0xF5, 0x0F, 0x39, 0x26,
0xB3, 0x2A, 0x1C, 0x17, 0x05, 0x03, 0x00, 0xFF, 0xE4, 0x02, 0x00, 0x00, 0x0D, 0x00, 0x00, 0x00,
0x6A, 0x09, 0x00, 0x00
};
#endif

View File

@@ -43,6 +43,8 @@ extern bool is_ipl_updated(void *buf, char *path, bool force);
#define CNT_TYPE_KIP 6
#define CNT_TYPE_BMP 7
#define CNT_TYPE_EMC 8
#define CNT_TYPE_KLD 9
#define CNT_TYPE_KRN 10
#define CNT_FLAG0_EXPERIMENTAL (1 << 0)

View File

@@ -581,7 +581,11 @@ int hos_launch(ini_sec_t *cfg)
}
LIST_INIT(kip1_info);
pkg2_parse_kips(&kip1_info, pkg2_hdr, &ctxt.new_pkg2);
if (!pkg2_parse_kips(&kip1_info, pkg2_hdr, &ctxt.new_pkg2))
{
_hos_crit_error("INI1 parsing failed!");
return 0;
}
gfx_printf("Parsed ini1\n");

View File

@@ -1,7 +1,7 @@
/*
* Copyright (c) 2018 naehrwert
* Copyright (c) 2018 st4rk
* Copyright (c) 2018-2019 CTCaer
* Copyright (c) 2018-2020 CTCaer
* Copyright (c) 2018 balika011
*
* This program is free software; you can redistribute it and/or modify it
@@ -148,6 +148,7 @@ static const pkg1_id_t _pkg1_ids[] = {
{ "20190531152432", 8, 0x0E00, 0x6FE0, { 1, 2, 0 }, 0x40030000, 0x4003E000, false, NULL, NULL }, //8.1.0
{ "20190809135709", 9, 0x0E00, 0x6FE0, { 1, 2, 0 }, 0x40030000, 0x4003E000, false, NULL, NULL }, //9.0.0 - 9.0.1
{ "20191021113848", 10, 0x0E00, 0x6FE0, { 1, 2, 0 }, 0x40030000, 0x4003E000, false, NULL, NULL }, //9.1.0
{ "20200303104606", 10, 0x0E00, 0x6FE0, { 1, 2, 0 }, 0x40030000, 0x4003E000, false, NULL, NULL }, //10.0.0
{ NULL } //End.
};

View File

@@ -23,12 +23,12 @@
#include "pkg2_ini_kippatch.h"
#include "../config/config.h"
#include "../libs/compr/blz.h"
#include "../libs/fatfs/ff.h"
#include "../utils/aarch64_util.h"
#include "../mem/heap.h"
#include "../sec/se.h"
#include "../storage/emummc.h"
#include "../libs/compr/blz.h"
#include "../utils/aarch64_util.h"
#include "../gfx/gfx.h"
@@ -49,38 +49,41 @@ extern void *sd_file_read(const char *path, u32 *fsize);
//TODO: Reduce hardcoded values without searching kernel for patterns?
// The process ID send/receive kernel patches were taken from Atmosphère's kernel patches.
// They should only be used when running Atmosphère.
#define FREE_CODE_OFF_1ST_100 0x4797C
#define FREE_CODE_OFF_1ST_200 0x6486C
#define FREE_CODE_OFF_1ST_300 0x494A4
#define FREE_CODE_OFF_1ST_302 0x494BC
#define FREE_CODE_OFF_1ST_400 0x52890
#define FREE_CODE_OFF_1ST_500 0x5C020
#define FREE_CODE_OFF_1ST_600 0x5EE00
#define FREE_CODE_OFF_1ST_700 0x5FEC0
#define FREE_CODE_OFF_1ST_800 0x607F0
#define FREE_CODE_OFF_1ST_900 0x65780
#define FREE_CODE_OFF_1ST_100 0x4797C
#define FREE_CODE_OFF_1ST_200 0x6486C
#define FREE_CODE_OFF_1ST_300 0x494A4
#define FREE_CODE_OFF_1ST_302 0x494BC
#define FREE_CODE_OFF_1ST_400 0x52890
#define FREE_CODE_OFF_1ST_500 0x5C020
#define FREE_CODE_OFF_1ST_600 0x5EE00
#define FREE_CODE_OFF_1ST_700 0x5FEC0
#define FREE_CODE_OFF_1ST_800 0x607F0
#define FREE_CODE_OFF_1ST_900 0x65780
#define FREE_CODE_OFF_1ST_1000 0x67790
#define ID_SND_OFF_100 0x23CC0
#define ID_SND_OFF_200 0x3F134
#define ID_SND_OFF_300 0x26080
#define ID_SND_OFF_302 0x26080
#define ID_SND_OFF_400 0x2AF64
#define ID_SND_OFF_500 0x2AD34
#define ID_SND_OFF_600 0x2BB8C
#define ID_SND_OFF_700 0x2D044
#define ID_SND_OFF_800 0x2F1FC
#define ID_SND_OFF_900 0x329A0
#define ID_SND_OFF_100 0x23CC0
#define ID_SND_OFF_200 0x3F134
#define ID_SND_OFF_300 0x26080
#define ID_SND_OFF_302 0x26080
#define ID_SND_OFF_400 0x2AF64
#define ID_SND_OFF_500 0x2AD34
#define ID_SND_OFF_600 0x2BB8C
#define ID_SND_OFF_700 0x2D044
#define ID_SND_OFF_800 0x2F1FC
#define ID_SND_OFF_900 0x329A0
#define ID_SND_OFF_1000 0x34404
#define ID_RCV_OFF_100 0x219F0
#define ID_RCV_OFF_200 0x3D1A8
#define ID_RCV_OFF_300 0x240F0
#define ID_RCV_OFF_302 0x240F0
#define ID_RCV_OFF_400 0x28F6C
#define ID_RCV_OFF_500 0x28DAC
#define ID_RCV_OFF_600 0x29B6C
#define ID_RCV_OFF_700 0x2B23C
#define ID_RCV_OFF_800 0x2D424
#define ID_RCV_OFF_900 0x309B4
#define ID_RCV_OFF_100 0x219F0
#define ID_RCV_OFF_200 0x3D1A8
#define ID_RCV_OFF_300 0x240F0
#define ID_RCV_OFF_302 0x240F0
#define ID_RCV_OFF_400 0x28F6C
#define ID_RCV_OFF_500 0x28DAC
#define ID_RCV_OFF_600 0x29B6C
#define ID_RCV_OFF_700 0x2B23C
#define ID_RCV_OFF_800 0x2D424
#define ID_RCV_OFF_900 0x309B4
#define ID_RCV_OFF_1000 0x322F8
static u32 PRC_ID_SND_100[] =
{
@@ -188,6 +191,20 @@ static u32 PRC_ID_RCV_900[] =
0xD63F0100, 0xA8C127E8, 0xAA0003E8, 0xA8C12FEA, 0xAA0803E0
};
static u32 PRC_ID_SND_1000[] =
{
0xA9BF2FEA, 0xF94063EB, 0x2A1603EA, 0xD37EF54A, 0xF86A696A, 0x92FFFFE9, 0x8A090148, 0xD2FFFFE9,
0x8A09014A, 0xD2FFFFC9, 0xEB09015F, 0x54000100, 0xA9BF27E8, 0xF94002E8, 0xF9401D08, 0xAA1703E0,
0xD63F0100, 0xA8C127E8, 0xAA0003E8, 0xA8C12FEA, 0xAA0803E0
};
#define FREE_CODE_OFF_2ND_1000 (FREE_CODE_OFF_1ST_1000 + sizeof(PRC_ID_SND_1000) + sizeof(u32))
static u32 PRC_ID_RCV_1000[] =
{
0xA9BF2FEA, 0xF94067EB, 0x2A1A03EA, 0xD37EF54A, 0xF86A696A, 0x92FFFFE9, 0x8A090148, 0xD2FFFFE9,
0x8A09014A, 0xD2FFFFC9, 0xEB09015F, 0x54000100, 0xA9BF27E8, 0xF9400388, 0xF9401D08, 0xAA1C03E0,
0xD63F0100, 0xA8C127E8, 0xAA0003E8, 0xA8C12FEA, 0xAA0803E0
};
// Include kernel patches here, so we can utilize pkg1 id
KERNEL_PATCHSET_DEF(_kernel_1_patchset,
{ SVC_VERIFY_DS, 0x3764C, _NOP(), NULL }, // Disable SVC verifications
@@ -339,6 +356,22 @@ KERNEL_PATCHSET_DEF(_kernel_9_patchset,
_B(FREE_CODE_OFF_2ND_900 + sizeof(PRC_ID_RCV_900), ID_RCV_OFF_900 + sizeof(u32) * 4), NULL}
);
KERNEL_PATCHSET_DEF(_kernel_10_patchset,
{ SVC_GENERIC, 0x45DAC, _NOP(), NULL }, // Allow same process on svcControlCodeMemory.
{ SVC_VERIFY_DS, 0x523E4, _NOP(), NULL }, // Disable SVC verifications.
{ DEBUG_MODE_EN, 0x62B14, _MOVZX(8, 1, 0), NULL }, // Enable Debug Patch.
// Atmosphère kernel patches.
{ ATM_SYSM_INCR, 0x66950, _MOVZW(19, 0x1D80, LSL16), NULL }, // System memory pool increase.
{ ATM_GEN_PATCH, ID_SND_OFF_1000, _B(ID_SND_OFF_1000, FREE_CODE_OFF_1ST_1000), NULL}, // Send process id branch.
{ ATM_ARR_PATCH, FREE_CODE_OFF_1ST_1000, sizeof(PRC_ID_SND_1000) >> 2, PRC_ID_SND_1000}, // Send process id code.
{ ATM_GEN_PATCH, FREE_CODE_OFF_1ST_1000 + sizeof(PRC_ID_SND_1000), // Branch back and skip 4 instructions.
_B(FREE_CODE_OFF_1ST_1000 + sizeof(PRC_ID_SND_1000), ID_SND_OFF_1000 + sizeof(u32) * 4), NULL},
{ ATM_GEN_PATCH, ID_RCV_OFF_1000, _B(ID_RCV_OFF_1000, FREE_CODE_OFF_2ND_1000), NULL}, // Receive process id branch.
{ ATM_ARR_PATCH, FREE_CODE_OFF_2ND_1000, sizeof(PRC_ID_RCV_1000) >> 2, PRC_ID_RCV_1000}, // Receive process id code.
{ ATM_GEN_PATCH, FREE_CODE_OFF_2ND_1000 + sizeof(PRC_ID_RCV_1000), // Branch back and skip 4 instructions.
_B(FREE_CODE_OFF_2ND_1000 + sizeof(PRC_ID_RCV_1000), ID_RCV_OFF_1000 + sizeof(u32) * 4), NULL}
);
// Kernel sha256 hashes.
static const pkg2_kernel_id_t _pkg2_kernel_ids[] =
{
@@ -353,6 +386,7 @@ static const pkg2_kernel_id_t _pkg2_kernel_ids[] =
{ "\xf1\x5e\xc8\x34\xfd\x68\xf0\xf0", _kernel_8_patchset }, //8.0.0 - 8.1.0. Kernel only.
{ "\x69\x00\x39\xdf\x21\x56\x70\x6b", _kernel_9_patchset }, //9.0.0 - 9.1.0. Kernel only.
{ "\xa2\xe3\xad\x1c\x98\xd8\x7a\x62", _kernel_9_patchset }, //9.2.0. Kernel only.
{ "\x21\xc1\xd7\x24\x8e\xcd\xbd\xa8", _kernel_10_patchset }, //10.0.0. Kernel only.
};
enum kip_offset_section
@@ -553,6 +587,20 @@ static kip1_patchset_t _fs_patches_910[] =
{ NULL, NULL }
};
static kip1_patch_t _fs_nogc_1000[] =
{
{ KPS(KIP_TEXT) | 0x13BE90, 8, "\xF4\x4F\xBE\xA9\xFD\x7B\x01\xA9", "\xE0\x03\x1F\x2A\xC0\x03\x5F\xD6" },
{ KPS(KIP_TEXT) | 0x14DE08, 4, "\x14\x40\x80\x52", "\x14\x80\x80\x52" },
{ 0, 0, NULL, NULL }
};
static kip1_patchset_t _fs_patches_1000[] =
{
{ "nogc", _fs_nogc_1000 },
{ "emummc", _fs_emummc },
{ NULL, NULL }
};
// SHA256 hashes.
static kip1_id_t _kip_ids[] =
{
@@ -587,7 +635,9 @@ static kip1_id_t _kip_ids[] =
{ "FS", "\x46\x87\x40\x76\x1E\x19\x3E\xB7", _fs_patches_900 }, // FS 9.0.0
{ "FS", "\x7C\x95\x13\x76\xE5\xC1\x2D\xF8", _fs_patches_900 }, // FS 9.0.0 exfat
{ "FS", "\xB5\xE7\xA6\x4C\x6F\x5C\x4F\xE3", _fs_patches_910 }, // FS 9.1.0
{ "FS", "\xF1\x96\xD1\x44\xD0\x44\x45\xB6", _fs_patches_910 } // FS 9.1.0 exfat
{ "FS", "\xF1\x96\xD1\x44\xD0\x44\x45\xB6", _fs_patches_910 }, // FS 9.1.0 exfat
{ "FS", "\x3E\xEB\xD9\xB7\xBC\xD1\xB5\xE0", _fs_patches_1000 }, // FS 10.0.0
{ "FS", "\x81\x7E\xA2\xB0\xB7\x02\xC1\xF3", _fs_patches_1000 }, // FS 10.0.0 exfat
};
static void parse_external_kip_patches()
@@ -692,14 +742,34 @@ static u32 _pkg2_calc_kip1_size(pkg2_kip1_t *kip1)
void pkg2_get_newkern_info(u8 *kern_data)
{
u32 info_op = *(u32 *)(kern_data + PKG2_NEWKERN_GET_INI1);
pkg2_newkern_ini1_val = ((info_op & 0xFFFF) >> 3) + PKG2_NEWKERN_GET_INI1; // Parse ADR and PC.
u32 pkg2_newkern_ini1_off = 0;
pkg2_newkern_ini1_start = 0;
// Find static OP offset that is close to INI1 offset.
u32 counter_ops = 0x100;
while (counter_ops)
{
if (*(u32 *)(kern_data + 0x100 - counter_ops) == PKG2_NEWKERN_GET_INI1_HEURISTIC)
{
pkg2_newkern_ini1_off = 0x100 - counter_ops + 12; // OP found. Add 12 for the INI1 offset.
break;
}
counter_ops -= 4;
}
// Offset not found?
if (!counter_ops)
return;
u32 info_op = *(u32 *)(kern_data + pkg2_newkern_ini1_off);
pkg2_newkern_ini1_val = ((info_op & 0xFFFF) >> 3) + pkg2_newkern_ini1_off; // Parse ADR and PC.
pkg2_newkern_ini1_start = *(u32 *)(kern_data + pkg2_newkern_ini1_val);
pkg2_newkern_ini1_end = *(u32 *)(kern_data + pkg2_newkern_ini1_val + 0x8);
}
void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
bool pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
{
u8 *ptr;
// Check for new pkg2 type.
@@ -707,6 +777,9 @@ void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
{
pkg2_get_newkern_info(pkg2->data);
if (!pkg2_newkern_ini1_start)
return false;
ptr = pkg2->data + pkg2_newkern_ini1_start;
*new_pkg2 = true;
}
@@ -726,6 +799,8 @@ void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
ptr += ki->size;
DPRINTF(" kip1 %d:%s @ %08X (%08X)\n", i, kip1->name, (u32)kip1, ki->size);
}
return true;
}
int pkg2_has_kip(link_t *info, u64 tid)

View File

@@ -1,6 +1,6 @@
/*
* Copyright (c) 2018 naehrwert
* Copyright (c) 2018-2019 CTCaer
* Copyright (c) 2018-2020 CTCaer
*
* This program is free software; you can redistribute it and/or modify it
* under the terms and conditions of the GNU General Public License,
@@ -27,7 +27,7 @@
#define PKG2_SEC_INI1 1
#define INI1_MAGIC 0x31494E49
#define PKG2_NEWKERN_GET_INI1 0x44
#define PKG2_NEWKERN_GET_INI1_HEURISTIC 0xD2800015 // Offset of OP + 12 is the INI1 offset.
#define PKG2_NEWKERN_START 0x800
u32 pkg2_newkern_ini1_val;
@@ -144,7 +144,7 @@ typedef struct _kip1_id_t
} kip1_id_t;
void pkg2_get_newkern_info(u8 *kern_data);
void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2);
bool pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2);
int pkg2_has_kip(link_t *info, u64 tid);
void pkg2_replace_kip(link_t *info, u64 tid, pkg2_kip1_t *kip1);
void pkg2_add_kip(link_t *info, pkg2_kip1_t *kip1);

View File

@@ -162,7 +162,9 @@ void config_exosphere(launch_ctxt_t *ctxt)
default:
exoFwNo = kb + 1;
if (!strcmp(ctxt->pkg1_id->id, "20190314172056") || (kb >= KB_FIRMWARE_VERSION_810))
exoFwNo++; // ATM_TARGET_FW_800/810/900.
exoFwNo++; // ATM_TARGET_FW_800/810/900/910.
if (!strcmp(ctxt->pkg1_id->id, "20200303104606"))
exoFwNo++; // ATM_TARGET_FW_1000.
break;
}

View File

@@ -202,19 +202,22 @@ int reboot_to_sept(const u8 *tsec_fw, u32 kb, ini_sec_t *cfg_sec)
memcpy(tmp_cfg, &b_cfg, sizeof(boot_cfg_t));
f_lseek(&fp, PATCHED_RELOC_SZ);
f_write(&fp, tmp_cfg, sizeof(boot_cfg_t), NULL);
f_close(&fp);
update_sept_payload = false;
}
f_close(&fp);
}
else
{
f_close(&fp);
f_rename("sept/payload.bin", "sept/payload.bak"); // Backup foreign payload.
f_close(&fp);
}
}
if (update_sept_payload)
{
volatile reloc_meta_t *reloc = (reloc_meta_t *)(IPL_LOAD_ADDR + RELOC_META_OFF);
f_mkdir("sept");
f_open(&fp, "sept/payload.bin", FA_WRITE | FA_CREATE_ALWAYS);
f_write(&fp, (u8 *)reloc->start, reloc->end - reloc->start, NULL);
f_close(&fp);

View File

@@ -35,7 +35,10 @@
#include "mem/heap.h"
#include "mem/minerva.h"
#include "mem/sdram.h"
#include "power/bq24193.h"
#include "power/max17050.h"
#include "power/max77620.h"
#include "power/max7762x.h"
#include "rtc/max77620-rtc.h"
#include "soc/bpmp.h"
#include "soc/fuse.h"
@@ -862,8 +865,6 @@ static void _auto_launch_firmware()
h_cfg.autoboot_list = atoi(kv->val);
else if (!strcmp("bootwait", kv->key))
h_cfg.bootwait = atoi(kv->val);
else if (!strcmp("verification", kv->key))
h_cfg.verification = atoi(kv->val);
else if (!strcmp("backlight", kv->key))
h_cfg.backlight = atoi(kv->val);
else if (!strcmp("autohosoff", kv->key))
@@ -1134,7 +1135,7 @@ static void _show_errors()
{
gfx_clear_grey(0x1B);
gfx_con_setpos(0, 0);
display_backlight_brightness(h_cfg.backlight, 1000);
display_backlight_brightness(150, 1000);
if (h_cfg.errors & ERR_LIBSYS_LP0)
WPRINTF("Missing LP0 (sleep mode) library!\n");
@@ -1149,6 +1150,115 @@ static void _show_errors()
}
}
static void _check_low_battery()
{
int enough_battery;
int batt_volt = 3200;
int charge_status = 0;
bq24193_get_property(BQ24193_ChargeStatus, &charge_status);
max17050_get_property(MAX17050_AvgVCELL, &batt_volt);
enough_battery = charge_status ? 3250 : 3000;
if (batt_volt > enough_battery)
return;
// Prepare battery icon resources.
u8 *battery_res = malloc(ALIGN(SZ_BATTERY_EMPTY, 0x1000));
blz_uncompress_srcdest(BATTERY_EMPTY_BLZ, SZ_BATTERY_EMPTY_BLZ, battery_res, SZ_BATTERY_EMPTY);
u8 *battery_icon = malloc(0x95A); // 21x38x3
u8 *charging_icon = malloc(0x2F4); // 21x12x3
u8 *no_charging_icon = calloc(0x2F4, 1);
memcpy(charging_icon, battery_res, 0x2F4);
memcpy(battery_icon, battery_res + 0x2F4, 0x95A);
u32 battery_icon_y_pos = 1280 - 16 - Y_BATTERY_EMPTY_BATT;
u32 charging_icon_y_pos = 1280 - 16 - Y_BATTERY_EMPTY_BATT - 12 - Y_BATTERY_EMPTY_CHRG;
free(battery_res);
charge_status = !charge_status;
u32 timer = 0;
bool screen_on = false;
while (true)
{
bpmp_msleep(250);
// Refresh battery stats.
int current_charge_status = 0;
bq24193_get_property(BQ24193_ChargeStatus, &current_charge_status);
max17050_get_property(MAX17050_AvgVCELL, &batt_volt);
enough_battery = current_charge_status ? 3250 : 3000;
if (batt_volt > enough_battery)
break;
// Refresh charging icon.
if (screen_on && (charge_status != current_charge_status))
{
if (current_charge_status)
gfx_set_rect_rgb(charging_icon, X_BATTERY_EMPTY, Y_BATTERY_EMPTY_CHRG, 16, charging_icon_y_pos);
else
gfx_set_rect_rgb(no_charging_icon, X_BATTERY_EMPTY, Y_BATTERY_EMPTY_CHRG, 16, charging_icon_y_pos);
}
// Check if it's time to turn off display.
if (screen_on && timer < get_tmr_ms())
{
if (!current_charge_status)
{
max77620_low_battery_monitor_config(true);
power_off();
}
display_end();
screen_on = false;
}
// Check if charging status changed or Power button was pressed.
if (((charge_status != current_charge_status) || (btn_wait_timeout(0, BTN_POWER) & BTN_POWER)))
{
if (!screen_on)
{
display_init();
u32 *fb = display_init_framebuffer();
gfx_init_ctxt(fb, 720, 1280, 720);
gfx_set_rect_rgb(battery_icon, X_BATTERY_EMPTY, Y_BATTERY_EMPTY_BATT, 16, battery_icon_y_pos);
if (current_charge_status)
gfx_set_rect_rgb(charging_icon, X_BATTERY_EMPTY, Y_BATTERY_EMPTY_CHRG, 16, charging_icon_y_pos);
else
gfx_set_rect_rgb(no_charging_icon, X_BATTERY_EMPTY, Y_BATTERY_EMPTY_CHRG, 16, charging_icon_y_pos);
display_backlight_pwm_init();
display_backlight_brightness(100, 1000);
screen_on = true;
}
timer = get_tmr_ms() + 15000;
}
// Check if forcefully continuing.
if (btn_read_vol() == (BTN_VOL_UP | BTN_VOL_DOWN))
break;
charge_status = current_charge_status;
}
display_end();
free(battery_icon);
free(charging_icon);
free(no_charging_icon);
// Re enable Low Battery Monitor shutdown.
max77620_low_battery_monitor_config(true);
}
static void _about()
{
static const char credits[] =
@@ -1208,8 +1318,8 @@ ment_t ment_options[] = {
MDEF_HANDLER("Auto boot", config_autoboot),
MDEF_HANDLER("Boot time delay", config_bootdelay),
MDEF_HANDLER("Auto NoGC", config_nogc),
MDEF_HANDLER("Auto HOS power off", config_auto_hos_poweroff),
MDEF_HANDLER("Backlight", config_backlight),
//MDEF_HANDLER("Auto HOS power off", config_auto_hos_poweroff),
//MDEF_HANDLER("Backlight", config_backlight),
MDEF_END()
};
@@ -1221,7 +1331,7 @@ ment_t ment_cinfo[] = {
MDEF_CAPTION("---- SoC Info ----", 0xFF0AB9E6),
MDEF_HANDLER("Ipatches & bootrom info", bootrom_ipatches_info),
MDEF_HANDLER("Print fuse info", print_fuseinfo),
MDEF_HANDLER("Print kfuse info", print_kfuseinfo),
//MDEF_HANDLER("Print kfuse info", print_kfuseinfo),
MDEF_HANDLER("Print TSEC keys", print_tsec_key),
MDEF_CHGLINE(),
MDEF_CAPTION("-- Storage Info --", 0xFF0AB9E6),
@@ -1270,15 +1380,14 @@ ment_t ment_tools[] = {
MDEF_CAPTION("-- Backup & Restore --", 0xFF0AB9E6),
MDEF_MENU("Backup", &menu_backup),
MDEF_MENU("Restore", &menu_restore),
MDEF_HANDLER("Verification options", config_verification),
MDEF_CHGLINE(),
MDEF_CAPTION("-------- Misc --------", 0xFF0AB9E6),
MDEF_HANDLER("Dump package1/2", dump_packages12),
//MDEF_CAPTION("-------- Misc --------", 0xFF0AB9E6),
//MDEF_HANDLER("Dump package1/2", dump_packages12),
//MDEF_HANDLER("Fix archive bit (except Nintendo)", fix_sd_all_attr),
//MDEF_HANDLER("Fix archive bit (Nintendo only)", fix_sd_nin_attr),
//MDEF_HANDLER("Fix fuel gauge configuration", fix_fuel_gauge_configuration),
//MDEF_HANDLER("Reset all battery cfg", reset_pmic_fuel_gauge_charger_config),
MDEF_CHGLINE(),
//MDEF_CHGLINE(),
MDEF_CAPTION("-------- Other -------", 0xFFFFDD00),
MDEF_HANDLER("AutoRCM", menu_autorcm),
MDEF_END()
@@ -1301,7 +1410,7 @@ ment_t ment_top[] = {
MDEF_END()
};
menu_t menu_top = { ment_top, "hekate - CTCaer mod v5.1.3", 0, 0 };
menu_t menu_top = { ment_top, "hekate - CTCaer mod v5.1.4", 0, 0 };
extern void pivot_stack(u32 stack_top);
@@ -1321,6 +1430,9 @@ void ipl_main()
uart_wait_idle(DEBUG_UART_PORT, UART_TX_IDLE);
#endif
// Check if battery is enough.
_check_low_battery();
// Set bootloader's default configuration.
set_default_configuration();

View File

@@ -169,9 +169,9 @@ void max77620_config_default()
_max77620_try_set_reg(MAX77620_REG_SD_CFG2, 4);
}
void max77620_low_battery_monitor_config()
void max77620_low_battery_monitor_config(bool enable)
{
_max77620_try_set_reg(MAX77620_REG_CNFGGLBL1,
MAX77620_CNFGGLBL1_LBDAC_EN | MAX77620_CNFGGLBL1_MPPLD |
MAX77620_CNFGGLBL1_LBDAC_EN | (enable ? MAX77620_CNFGGLBL1_MPPLD : 0) |
MAX77620_CNFGGLBL1_LBHYST_200 | MAX77620_CNFGGLBL1_LBDAC_2800);
}

View File

@@ -113,6 +113,6 @@ int max77620_regulator_set_voltage(u32 id, u32 mv);
int max77620_regulator_enable(u32 id, int enable);
int max77620_regulator_set_volt_and_flags(u32 id, u32 mv, u8 flags);
void max77620_config_default();
void max77620_low_battery_monitor_config();
void max77620_low_battery_monitor_config(bool enable);
#endif

View File

@@ -222,6 +222,9 @@ void _config_se_brom()
void _config_regulators()
{
// Disable low battery shutdown monitor.
max77620_low_battery_monitor_config(false);
// Disable SDMMC1 IO power.
gpio_output_enable(GPIO_PORT_E, GPIO_PIN_4, GPIO_OUTPUT_DISABLE);
max77620_regulator_enable(REGULATOR_LDO2, 0);
@@ -267,9 +270,6 @@ void _config_regulators()
i2c_send_byte(I2C_5, MAX77621_GPU_I2C_ADDR, MAX77621_CONTROL2_REG,
MAX77621_T_JUNCTION_120 | MAX77621_FT_ENABLE | MAX77621_CKKADV_TRIP_75mV_PER_US_HIST_DIS |
MAX77621_CKKADV_TRIP_150mV_PER_US | MAX77621_INDUCTOR_NOMINAL);
// Enable low battery shutdown monitor for < 2800mV.
max77620_low_battery_monitor_config();
}
void config_hw()

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@@ -34,6 +34,16 @@ u8 btn_read()
return res;
}
u8 btn_read_vol()
{
u8 res = 0;
if (!gpio_read(GPIO_PORT_X, GPIO_PIN_7))
res |= BTN_VOL_DOWN;
if (!gpio_read(GPIO_PORT_X, GPIO_PIN_6))
res |= BTN_VOL_UP;
return res;
}
u8 btn_wait()
{
u8 res = 0, btn = btn_read();

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@@ -26,6 +26,7 @@
#define BTN_SINGLE (1 << 7)
u8 btn_read();
u8 btn_read_vol();
u8 btn_wait();
u8 btn_wait_timeout(u32 time_ms, u8 mask);

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@@ -143,7 +143,6 @@ static int _dump_emmc_verify(emmc_tool_gui_t *gui, sdmmc_storage_t *storage, u32
FIL fp;
FIL hashFp;
u8 sparseShouldVerify = 4;
u32 btn = 0;
u32 prevPct = 200;
u32 sdFileSector = 0;
int res = 0;
@@ -301,8 +300,7 @@ static int _dump_emmc_verify(emmc_tool_gui_t *gui, sdmmc_storage_t *storage, u32
sparseShouldVerify++;
// Check for cancellation combo.
btn = btn_wait_timeout(0, BTN_VOL_DOWN | BTN_VOL_UP);
if ((btn & BTN_VOL_DOWN) && (btn & BTN_VOL_UP))
if (btn_read_vol() == (BTN_VOL_UP | BTN_VOL_DOWN))
{
s_printf(gui->txt_buf, "#FFDD00 Verification was cancelled!#\n");
lv_label_ins_text(gui->label_log, LV_LABEL_POS_LAST, gui->txt_buf);
@@ -352,7 +350,6 @@ static int _dump_emmc_part(emmc_tool_gui_t *gui, char *sd_path, sdmmc_storage_t
u32 currPartIdx = 0;
u32 numSplitParts = 0;
u32 maxSplitParts = 0;
u32 btn = 0;
bool isSmallSdCard = false;
bool partialDumpInProgress = false;
int res = 0;
@@ -662,8 +659,7 @@ static int _dump_emmc_part(emmc_tool_gui_t *gui, char *sd_path, sdmmc_storage_t
}
// Check for cancellation combo.
btn = btn_wait_timeout(0, BTN_VOL_DOWN | BTN_VOL_UP);
if ((btn & BTN_VOL_DOWN) && (btn & BTN_VOL_UP))
if (btn_read_vol() == (BTN_VOL_UP | BTN_VOL_DOWN))
{
s_printf(gui->txt_buf, "\n#FFDD00 The backup was cancelled!#\n");
lv_label_ins_text(gui->label_log, LV_LABEL_POS_LAST, gui->txt_buf);

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@@ -217,8 +217,7 @@ static int _dump_emummc_file_part(emmc_tool_gui_t *gui, char *sd_path, sdmmc_sto
}
// Check for cancellation combo.
u32 btn = btn_wait_timeout(0, BTN_VOL_DOWN | BTN_VOL_UP);
if ((btn & BTN_VOL_DOWN) && (btn & BTN_VOL_UP))
if (btn_read_vol() == (BTN_VOL_UP | BTN_VOL_DOWN))
{
s_printf(gui->txt_buf, "#FFDD00 The emuMMC was cancelled!#\n");
lv_label_ins_text(gui->label_log, LV_LABEL_POS_LAST, gui->txt_buf);
@@ -482,7 +481,6 @@ static int _dump_emummc_raw_part(emmc_tool_gui_t *gui, int active_part, int part
lv_label_set_text(gui->label_pct, " "SYMBOL_DOT" 0%");
manual_system_maintenance(true);
s_printf(gui->txt_buf, "#96FF00 Base folder:#\n%s\n#96FF00 Partition offset:# #FF8000 0x%08X#",
gui->base_path, sd_part_off);
lv_label_ins_text(gui->label_info, LV_LABEL_POS_LAST, gui->txt_buf);
@@ -503,8 +501,7 @@ static int _dump_emummc_raw_part(emmc_tool_gui_t *gui, int active_part, int part
while (totalSectors > 0)
{
// Check for cancellation combo.
u32 btn = btn_wait_timeout(0, BTN_VOL_DOWN | BTN_VOL_UP);
if ((btn & BTN_VOL_DOWN) && (btn & BTN_VOL_UP))
if (btn_read_vol() == (BTN_VOL_UP | BTN_VOL_DOWN))
{
s_printf(gui->txt_buf, "#FFDD00 The emuMMC was cancelled!#\n");
lv_label_ins_text(gui->label_log, LV_LABEL_POS_LAST, gui->txt_buf);

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@@ -549,6 +549,13 @@ static lv_res_t _create_window_dump_pk12_tool(lv_obj_t *btn)
ini1_off = pkg2_newkern_ini1_start;
ini1_size = pkg2_newkern_ini1_end - pkg2_newkern_ini1_start;
}
if (!ini1_off)
{
s_printf(txt_buf + strlen(txt_buf), "#FFDD00 Failed to dump INI1 and kips!#\n");
goto out;
}
pkg2_ini1_t *ini1 = (pkg2_ini1_t *)(pkg2_hdr->data + ini1_off);
emmcsn_path_impl(path, "/pkg2", "ini1.bin", &storage);
if (sd_save_to_file(ini1, ini1_size, path))

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@@ -1,5 +1,6 @@
/*
* Copyright (c) 2018 naehrwert
* Copyright (c) 2018-2020 CTCaer
*
* This program is free software; you can redistribute it and/or modify it
* under the terms and conditions of the GNU General Public License,

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@@ -1,7 +1,7 @@
/*
* Copyright (c) 2018 naehrwert
* Copyright (c) 2018 st4rk
* Copyright (c) 2018-2019 CTCaer
* Copyright (c) 2018-2020 CTCaer
* Copyright (c) 2018 balika011
*
* This program is free software; you can redistribute it and/or modify it
@@ -54,6 +54,7 @@ static const pkg1_id_t _pkg1_ids[] = {
{ "20190531152432", 8, 0x0E00, 0x6FE0, { 1, 2, 0 }, 0x40030000, 0x4003E000 }, //8.1.0
{ "20190809135709", 9, 0x0E00, 0x6FE0, { 1, 2, 0 }, 0x40030000, 0x4003E000 }, //9.0.0
{ "20191021113848", 10, 0x0E00, 0x6FE0, { 1, 2, 0 }, 0x40030000, 0x4003E000 }, //9.1.0
{ "20200303104606", 10, 0x0E00, 0x6FE0, { 1, 2, 0 }, 0x40030000, 0x4003E000 }, //10.0.0
{ NULL } //End.
};

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@@ -1,6 +1,6 @@
/*
* Copyright (c) 2018 naehrwert
* Copyright (c) 2018-2019 CTCaer
* Copyright (c) 2018-2020 CTCaer
*
* This program is free software; you can redistribute it and/or modify it
* under the terms and conditions of the GNU General Public License,
@@ -45,14 +45,34 @@ u32 pkg2_calc_kip1_size(pkg2_kip1_t *kip1)
void pkg2_get_newkern_info(u8 *kern_data)
{
u32 info_op = *(u32 *)(kern_data + PKG2_NEWKERN_GET_INI1);
pkg2_newkern_ini1_val = ((info_op & 0xFFFF) >> 3) + PKG2_NEWKERN_GET_INI1; // Parse ADR and PC.
u32 pkg2_newkern_ini1_off = 0;
pkg2_newkern_ini1_start = 0;
// Find static OP offset that is close to INI1 offset.
u32 counter_ops = 0x100;
while (counter_ops)
{
if (*(u32 *)(kern_data + 0x100 - counter_ops) == PKG2_NEWKERN_GET_INI1_HEURISTIC)
{
pkg2_newkern_ini1_off = 0x100 - counter_ops + 12; // OP found. Add 12 for the INI1 offset.
break;
}
counter_ops -= 4;
}
// Offset not found?
if (!counter_ops)
return;
u32 info_op = *(u32 *)(kern_data + pkg2_newkern_ini1_off);
pkg2_newkern_ini1_val = ((info_op & 0xFFFF) >> 3) + pkg2_newkern_ini1_off; // Parse ADR and PC.
pkg2_newkern_ini1_start = *(u32 *)(kern_data + pkg2_newkern_ini1_val);
pkg2_newkern_ini1_end = *(u32 *)(kern_data + pkg2_newkern_ini1_val + 0x8);
}
void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
bool pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
{
u8 *ptr;
// Check for new pkg2 type.
@@ -60,6 +80,9 @@ void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
{
pkg2_get_newkern_info(pkg2->data);
if (!pkg2_newkern_ini1_start)
return false;
ptr = pkg2->data + pkg2_newkern_ini1_start;
*new_pkg2 = true;
}
@@ -79,6 +102,8 @@ void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2)
ptr += ki->size;
DPRINTF(" kip1 %d:%s @ %08X (%08X)\n", i, kip1->name, (u32)kip1, ki->size);
}
return true;
}
static const u8 mkey_keyseed_8xx[][0x10] =

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@@ -1,6 +1,6 @@
/*
* Copyright (c) 2018 naehrwert
* Copyright (c) 2018-2019 CTCaer
* Copyright (c) 2018-2020 CTCaer
*
* This program is free software; you can redistribute it and/or modify it
* under the terms and conditions of the GNU General Public License,
@@ -27,7 +27,7 @@
#define PKG2_SEC_INI1 1
#define INI1_MAGIC 0x31494E49
#define PKG2_NEWKERN_GET_INI1 0x44
#define PKG2_NEWKERN_GET_INI1_HEURISTIC 0xD2800015 // Offset of OP + 12 is the INI1 offset.
#define PKG2_NEWKERN_START 0x800
u32 pkg2_newkern_ini1_val;
@@ -91,7 +91,7 @@ typedef struct _pkg2_kip1_info_t
void pkg2_get_newkern_info(u8 *kern_data);
u32 pkg2_calc_kip1_size(pkg2_kip1_t *kip1);
void pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2);
bool pkg2_parse_kips(link_t *info, pkg2_hdr_t *pkg2, bool *new_pkg2);
pkg2_hdr_t *pkg2_decrypt(void *data, u8 kb);

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@@ -182,19 +182,22 @@ int reboot_to_sept(const u8 *tsec_fw, u32 kb)
memcpy(tmp_cfg, (boot_cfg_t *)b_cfg, sizeof(boot_cfg_t));
f_lseek(&fp, PATCHED_RELOC_SZ);
f_write(&fp, tmp_cfg, sizeof(boot_cfg_t), NULL);
f_close(&fp);
update_sept_payload = false;
}
f_close(&fp);
}
else
{
f_close(&fp);
f_rename("sept/payload.bin", "sept/payload.bak"); // Backup foreign payload.
f_close(&fp);
}
}
if (update_sept_payload)
{
volatile reloc_meta_t *reloc = (reloc_meta_t *)(nyx_str->hekate + RELOC_META_OFF);
f_mkdir("sept");
f_open(&fp, "sept/payload.bin", FA_WRITE | FA_CREATE_ALWAYS);
f_write(&fp, (u8 *)nyx_str->hekate, reloc->end - reloc->start, NULL);
f_close(&fp);

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@@ -1,5 +1,5 @@
/*
* Touch driver for Nintendo Switch's STM FingerTip S (4cd60d) touch controller
* Touch driver for Nintendo Switch's STM FingerTip S (4CD60D) touch controller
*
* Copyright (c) 2018 langerhans
* Copyright (c) 2018-2020 CTCaer
@@ -236,34 +236,48 @@ int touch_sys_reset()
return 1;
}
int touch_execute_autotune()
int touch_panel_ito_test(u8 *err)
{
int res = 0;
// Reset touchscreen module.
if (touch_sys_reset())
return 0;
return res;
// Trim low power oscillator.
touch_command(STMFTS_LP_TIMER_CALIB, NULL, 0);
msleep(200);
// Do ITO Production test.
u8 cmd[2] = { 1, 0 };
if (touch_command(STMFTS_ITO_CHECK, cmd, 2))
return res;
// Apply Mutual Sense Compensation tuning.
if (touch_command(STMFTS_MS_CX_TUNING, NULL, 0))
return 0;
if (touch_wait_event(STMFTS_EV_STATUS, 1, 2000))
return 0;
u32 timer = get_tmr_ms() + 2000;
while (true)
{
u8 tmp[8] = {0};
i2c_recv_buf_small(tmp, 8, I2C_3, STMFTS_I2C_ADDR, STMFTS_READ_ONE_EVENT);
if (tmp[1] == 0xF && tmp[2] == 0x5)
{
if (err)
{
err[0] = tmp[3];
err[1] = tmp[4];
}
// Apply Self Sense Compensation tuning.
if (touch_command(STMFTS_SS_CX_TUNING, NULL, 0))
return 0;
if (touch_wait_event(STMFTS_EV_STATUS, 2, 2000))
return 0;
res = 1;
break;
}
// Save Compensation data to EEPROM.
if (touch_command(STMFTS_SAVE_CX_TUNING, NULL, 0))
return 0;
if (touch_wait_event(STMFTS_EV_STATUS, 4, 2000))
return 0;
if (get_tmr_ms() > timer)
break;
}
// Reset touchscreen module.
touch_sys_reset();
return res;
}
int touch_sense_enable()
{
// Enable auto tuning calibration and multi-touch sensing.
u8 cmd = 1;
if (touch_command(STMFTS_AUTO_CALIBRATION, &cmd, 1))
@@ -278,24 +292,45 @@ int touch_execute_autotune()
return 1;
}
int touch_execute_autotune()
{
// Reset touchscreen module.
if (touch_sys_reset())
return 0;
// Trim low power oscillator.
if (touch_command(STMFTS_LP_TIMER_CALIB, NULL, 0))
return 0;
msleep(200);
// Apply Mutual Sense Compensation tuning.
if (touch_command(STMFTS_MS_CX_TUNING, NULL, 0))
return 0;
if (touch_wait_event(STMFTS_EV_STATUS, STMFTS_EV_STATUS_MS_CX_TUNING_DONE, 2000))
return 0;
// Apply Self Sense Compensation tuning.
if (touch_command(STMFTS_SS_CX_TUNING, NULL, 0))
return 0;
if (touch_wait_event(STMFTS_EV_STATUS, STMFTS_EV_STATUS_SS_CX_TUNING_DONE, 2000))
return 0;
// Save Compensation data to EEPROM.
if (touch_command(STMFTS_SAVE_CX_TUNING, NULL, 0))
return 0;
if (touch_wait_event(STMFTS_EV_STATUS, STMFTS_EV_STATUS_WRITE_CX_TUNE_DONE, 2000))
return 0;
return touch_sense_enable();
}
static int touch_init()
{
// Initialize touchscreen module.
if (touch_sys_reset())
return 0;
// Enable auto tuning calibration and multi-touch sensing.
u8 cmd = 1;
if (touch_command(STMFTS_AUTO_CALIBRATION, &cmd, 1))
return 0;
if (touch_command(STMFTS_MS_MT_SENSE_ON, NULL, 0))
return 0;
if (touch_command(STMFTS_CLEAR_EVENT_STACK, NULL, 0))
return 0;
return 1;
return touch_sense_enable();
}
int touch_power_on()
@@ -329,11 +364,25 @@ int touch_power_on()
// Wait for the touchscreen module to get ready.
touch_wait_event(STMFTS_EV_CONTROLLER_READY, 0, 20);
u32 btn = btn_wait_timeout(0, BTN_VOL_DOWN | BTN_VOL_UP);
if ((btn & BTN_VOL_DOWN) && (btn & BTN_VOL_UP))
return touch_execute_autotune();
else
return touch_init();
// Check for forced boot time calibration.
if (btn_read_vol() == (BTN_VOL_UP | BTN_VOL_DOWN))
{
u8 err[2];
if (touch_panel_ito_test(err))
if (!err[0] && !err[1])
return touch_execute_autotune();
}
// Initialize touchscreen.
u32 retries = 3;
while (retries)
{
if (touch_init())
return 1;
retries--;
}
return 0;
}
void touch_power_off()

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@@ -1,5 +1,5 @@
/*
* Touch driver for Nintendo Switch's STM FingerTip S (4cd60d) touch controller
* Touch driver for Nintendo Switch's STM FingerTip S (4CD60D) touch controller
*
* Copyright (c) 2018 langerhans
* Copyright (c) 2018-2020 CTCaer
@@ -44,6 +44,7 @@
#define STMFTS_FULL_FORCE_CALIBRATION 0xA2
#define STMFTS_MS_CX_TUNING 0xA3
#define STMFTS_SS_CX_TUNING 0xA4
#define STMFTS_ITO_CHECK 0xA7
#define STMFTS_RELEASEINFO 0xAA
#define STMFTS_WRITE_REG 0xB6
#define STMFTS_AUTO_CALIBRATION 0xC3
@@ -75,10 +76,13 @@
#define STMFTS_EV_NOISE_WRITE 0x18
#define STMFTS_EV_CONTROLLER_READY 0x10
#define STMFTS_EV_SLEEP_OUT_CONTROLLER_READY 0x11
#define STMFTS_EV_STATUS 0x16
#define STMFTS_EV_DEBUG 0xDB
#define STMFTS_EV_STATUS_MS_CX_TUNING_DONE 1
#define STMFTS_EV_STATUS_SS_CX_TUNING_DONE 2
#define STMFTS_EV_STATUS_WRITE_CX_TUNE_DONE 4
/* multi touch related event masks */
#define STMFTS_MASK_EVENT_ID 0x0F
#define STMFTS_MASK_TOUCH_ID 0xF0
@@ -96,6 +100,27 @@
#define STMFTS_DATA_MAX_SIZE (STMFTS_EVENT_SIZE * STMFTS_STACK_DEPTH)
#define STMFTS_MAX_FINGERS 10
typedef enum _touch_ito_error {
ITO_NO_ERROR = 0,
ITO_FORCE_OPEN,
ITO_SENSE_OPEN,
ITO_FORCE_SHRT_GND,
ITO_SENSE_SHRT_GND,
ITO_FORCE_SHRT_VCM,
ITO_SENSE_SHRT_VCM,
ITO_FORCE_SHRT_FORCE,
ITO_SENSE_SHRT_SENSE,
ITO_F2E_SENSE,
ITO_FPC_FORCE_OPEN,
ITO_FPC_SENSE_OPEN,
ITO_KEY_FORCE_OPEN,
ITO_KEY_SENSE_OPEN,
ITO_RESERVED0,
ITO_RESERVED1,
ITO_RESERVED2,
ITO_MAX_ERR_REACHED = 0xFF
} touch_ito_error;
typedef struct _touch_event {
u8 raw[8];
u16 type; // Event type.
@@ -123,7 +148,9 @@ void touch_poll(touch_event *event);
touch_event touch_poll_wait();
int touch_get_fw_info(touch_fw_info_t *fw);
touch_info touch_get_info();
int touch_panel_ito_test(u8 *err);
int touch_execute_autotune();
int touch_sense_enable();
int touch_power_on();
void touch_power_off();

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@@ -156,7 +156,7 @@ void lv_label_set_text(lv_obj_t * label, const char * text)
return;
}
if(ext->text == text) {
if(ext->text == text && ext->static_txt == 0) {
/*If set its own text then reallocate it (maybe its size changed)*/
ext->text = lv_mem_realloc(ext->text, strlen(ext->text) + 1);
lv_mem_assert(ext->text);

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@@ -137,6 +137,7 @@ int max77620_regulator_enable(u32 id, int enable)
return 1;
}
// LDO only.
int max77620_regulator_set_volt_and_flags(u32 id, u32 mv, u8 flags)
{
if (id > REGULATOR_MAX)
@@ -168,9 +169,9 @@ void max77620_config_default()
_max77620_try_set_reg(MAX77620_REG_SD_CFG2, 4);
}
void max77620_low_battery_monitor_config()
void max77620_low_battery_monitor_config(bool enable)
{
_max77620_try_set_reg(MAX77620_REG_CNFGGLBL1,
MAX77620_CNFGGLBL1_LBDAC_EN | MAX77620_CNFGGLBL1_MPPLD |
MAX77620_CNFGGLBL1_LBDAC_EN | (enable ? MAX77620_CNFGGLBL1_MPPLD : 0) |
MAX77620_CNFGGLBL1_LBHYST_200 | MAX77620_CNFGGLBL1_LBDAC_2800);
}

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@@ -33,7 +33,7 @@
* ldo2 | SDMMC1 | 50000 | 800000 | 1800000 | 3300000 |
* ldo3 | GC ASIC | 50000 | 800000 | 3100000 | 3100000 | 3.1V (pcv)
* ldo4 | RTC | 12500 | 800000 | 850000 | 850000 |
* ldo5 | GC ASIC | 50000 | 800000 | 1800000 | 1800000 | 1.8V (pcv)
* ldo5 | GC Card | 50000 | 800000 | 1800000 | 1800000 | 1.8V (pcv)
* ldo6 | Touch, ALS | 50000 | 800000 | 2900000 | 2900000 | 2.9V
* ldo7 | XUSB | 50000 | 800000 | 1050000 | 1050000 |
* ldo8 | XUSB, DC | 50000 | 800000 | 1050000 | 1050000 |
@@ -113,6 +113,6 @@ int max77620_regulator_set_voltage(u32 id, u32 mv);
int max77620_regulator_enable(u32 id, int enable);
int max77620_regulator_set_volt_and_flags(u32 id, u32 mv, u8 flags);
void max77620_config_default();
void max77620_low_battery_monitor_config();
void max77620_low_battery_monitor_config(bool enable);
#endif

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@@ -34,6 +34,16 @@ u8 btn_read()
return res;
}
u8 btn_read_vol()
{
u8 res = 0;
if (!gpio_read(GPIO_PORT_X, GPIO_PIN_7))
res |= BTN_VOL_DOWN;
if (!gpio_read(GPIO_PORT_X, GPIO_PIN_6))
res |= BTN_VOL_UP;
return res;
}
u8 btn_wait()
{
u8 res = 0, btn = btn_read();

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@@ -25,6 +25,7 @@
#define BTN_VOL_UP (1 << 2)
u8 btn_read();
u8 btn_read_vol();
u8 btn_wait();
u8 btn_wait_timeout(u32 time_ms, u8 mask);