1
0
Fork 0
mirror of https://github.com/DarkMatterCore/nxdumptool.git synced 2024-11-29 21:52:22 +00:00
nxdumptool/source/utils.c
Pablo Curiel b71f0d7b87 Some more changes.
* Codestyle fixes.
* NCA contexts for NCAs with titlekey crypto will now be generated even if the ticket can't be retrieved, in order to be able to use ncaReadContentFile() with them.
* Moved aes128XtsNintendoCrypt() out of nca.c.
2020-07-05 20:10:07 -04:00

477 lines
12 KiB
C

/*
* utils.c
*
* Copyright (c) 2018-2020, WerWolv.
* Copyright (c) 2020, DarkMatterCore <pabloacurielz@gmail.com>.
*
* This file is part of nxdumptool (https://github.com/DarkMatterCore/nxdumptool).
*
* nxdumptool is free software; you can redistribute it and/or modify it
* under the terms and conditions of the GNU General Public License,
* version 2, as published by the Free Software Foundation.
*
* nxdumptool is distributed in the hope it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "utils.h"
//#include "freetype_helper.h"
//#include "lvgl_helper.h"
#include "keys.h"
#include "gamecard.h"
#include "services.h"
#include "nca.h"
#include "usb.h"
#include "fatfs/ff.h"
/* Global variables. */
static bool g_resourcesInitialized = false;
static Mutex g_resourcesMutex = 0;
static FsFileSystem *g_sdCardFileSystem = NULL;
static FsStorage g_emmcBisSystemPartitionStorage = {0};
static FATFS *g_emmcBisSystemPartitionFatFsObj = NULL;
static AppletType g_programAppletType = 0;
static bool g_homeButtonBlocked = false;
static Mutex g_homeButtonMutex = 0;
static u8 g_customFirmwareType = UtilsCustomFirmwareType_Unknown;
static AppletHookCookie g_systemOverclockCookie = {0};
static Mutex g_logfileMutex = 0;
/* Function prototypes. */
static u64 utilsHidKeysAllDown(void);
static u64 utilsHidKeysAllHeld(void);
static bool utilsMountEmmcBisSystemPartitionStorage(void);
static void utilsUnmountEmmcBisSystemPartitionStorage(void);
static void _utilsGetCustomFirmwareType(void);
static void utilsOverclockSystemAppletHook(AppletHookType hook, void *param);
bool utilsInitializeResources(void)
{
mutexLock(&g_resourcesMutex);
bool ret = g_resourcesInitialized;
if (ret) goto exit;
/* Initialize needed services. */
if (!servicesInitialize())
{
LOGFILE("Failed to initialize needed services!");
goto exit;
}
/* Initialize USB interface. */
if (!usbInitialize())
{
LOGFILE("Failed to initialize USB interface!");
goto exit;
}
/* Load NCA keyset. */
if (!keysLoadNcaKeyset())
{
LOGFILE("Failed to load NCA keyset!");
goto exit;
}
/* Allocate NCA crypto buffer. */
if (!ncaAllocateCryptoBuffer())
{
LOGFILE("Unable to allocate memory for NCA crypto buffer!");
goto exit;
}
/* Initialize gamecard interface. */
if (!gamecardInitialize())
{
LOGFILE("Failed to initialize gamecard interface!");
goto exit;
}
/* Retrieve SD card FsFileSystem element. */
if (!(g_sdCardFileSystem = fsdevGetDeviceFileSystem("sdmc:")))
{
LOGFILE("fsdevGetDeviceFileSystem failed!");
goto exit;
}
/* Mount eMMC BIS System partition. */
if (!utilsMountEmmcBisSystemPartitionStorage()) goto exit;
/* Get applet type. */
g_programAppletType = appletGetAppletType();
/* Disable screen dimming and auto sleep. */
appletSetMediaPlaybackState(true);
/* Retrieve custom firmware type. */
_utilsGetCustomFirmwareType();
/* Overclock system. */
utilsOverclockSystem(true);
/* Setup an applet hook to change the hardware clocks after a system mode change (docked <-> undocked). */
appletHook(&g_systemOverclockCookie, utilsOverclockSystemAppletHook, NULL);
/* Initialize FreeType. */
//if (!freeTypeHelperInitialize()) return false;
/* Initialize LVGL. */
//if (!lvglHelperInitialize()) return false;
ret = g_resourcesInitialized = true;
exit:
mutexUnlock(&g_resourcesMutex);
return ret;
}
void utilsCloseResources(void)
{
mutexLock(&g_resourcesMutex);
/* Free LVGL resources. */
//lvglHelperExit();
/* Free FreeType resources. */
//freeTypeHelperExit();
/* Unset our overclock applet hook. */
appletUnhook(&g_systemOverclockCookie);
/* Restore hardware clocks. */
utilsOverclockSystem(false);
/* Enable screen dimming and auto sleep. */
appletSetMediaPlaybackState(false);
/* Unblock HOME button presses. */
utilsChangeHomeButtonBlockStatus(false);
/* Unmount eMMC BIS System partition. */
utilsUnmountEmmcBisSystemPartitionStorage();
/* Deinitialize gamecard interface. */
gamecardExit();
/* Free NCA crypto buffer. */
ncaFreeCryptoBuffer();
/* Close USB interface. */
usbExit();
/* Close initialized services. */
servicesClose();
g_resourcesInitialized = false;
mutexUnlock(&g_resourcesMutex);
}
u64 utilsReadInput(u8 input_type)
{
if (input_type != UtilsInputType_Down && input_type != UtilsInputType_Held) return 0;
hidScanInput();
return (input_type == UtilsInputType_Down ? utilsHidKeysAllDown() : utilsHidKeysAllHeld());
}
void utilsWaitForButtonPress(u64 flag)
{
u64 keys_down = 0;
if (!flag)
{
/* Don't consider touch screen presses nor stick movement as button inputs. */
flag = ~(KEY_TOUCH | KEY_LSTICK_LEFT | KEY_LSTICK_RIGHT | KEY_LSTICK_UP | KEY_LSTICK_DOWN | KEY_RSTICK_LEFT | KEY_RSTICK_RIGHT | KEY_RSTICK_UP | KEY_RSTICK_DOWN);
}
while(appletMainLoop())
{
keys_down = utilsReadInput(UtilsInputType_Down);
if (keys_down & flag) break;
}
}
void utilsWriteLogMessage(const char *func_name, const char *fmt, ...)
{
mutexLock(&g_logfileMutex);
va_list args;
FILE *logfile = NULL;
logfile = fopen(LOGFILE_PATH, "a+");
if (!logfile) goto out;
time_t now = time(NULL);
struct tm *ts = localtime(&now);
fprintf(logfile, "%d/%d/%d %d:%02d:%02d -> %s: ", ts->tm_year + 1900, ts->tm_mon + 1, ts->tm_mday, ts->tm_hour, ts->tm_min, ts->tm_sec, func_name);
va_start(args, fmt);
vfprintf(logfile, fmt, args);
va_end(args);
fprintf(logfile, "\r\n");
fclose(logfile);
out:
mutexUnlock(&g_logfileMutex);
}
void utilsReplaceIllegalCharacters(char *str, bool ascii_only)
{
size_t strsize = 0;
if (!str || !(strsize = strlen(str))) return;
for(size_t i = 0; i < strsize; i++)
{
if (memchr("?[]/\\=+<>:;\",*|^", str[i], sizeof("?[]/\\=+<>:;\",*|^") - 1) || str[i] < 0x20 || (!ascii_only && str[i] == 0x7F) || (ascii_only && str[i] >= 0x7F)) str[i] = '_';
}
}
void utilsTrimString(char *str)
{
size_t strsize = 0;
char *start = NULL, *end = NULL;
if (!str || !(strsize = strlen(str))) return;
start = str;
end = (start + strsize);
while(--end >= start)
{
if (!isspace((unsigned char)*end)) break;
}
*(++end) = '\0';
while(isspace((unsigned char)*start)) start++;
if (start != str) memmove(str, start, end - start + 1);
}
void utilsGenerateHexStringFromData(char *dst, size_t dst_size, const void *src, size_t src_size)
{
if (!src || !src_size || !dst || dst_size < ((src_size * 2) + 1)) return;
size_t i, j;
const u8 *src_u8 = (const u8*)src;
for(i = 0, j = 0; i < src_size; i++)
{
char h_nib = ((src_u8[i] >> 4) & 0xF);
char l_nib = (src_u8[i] & 0xF);
dst[j++] = (h_nib + (h_nib < 0xA ? 0x30 : 0x57));
dst[j++] = (l_nib + (l_nib < 0xA ? 0x30 : 0x57));
}
dst[j] = '\0';
}
bool utilsGetFreeSdCardSpace(u64 *out)
{
return utilsGetFreeFileSystemSpace(g_sdCardFileSystem, out);
}
bool utilsGetFreeFileSystemSpace(FsFileSystem *fs, u64 *out)
{
if (!fs || !out)
{
LOGFILE("Invalid parameters!");
return false;
}
Result rc = fsFsGetFreeSpace(fs, "/", (s64*)out);
if (R_FAILED(rc))
{
LOGFILE("fsFsGetFreeSpace failed! (0x%08X).", rc);
return false;
}
return true;
}
bool utilsCheckIfFileExists(const char *path)
{
if (!path || !strlen(path)) return false;
FILE *chkfile = fopen(path, "rb");
if (chkfile)
{
fclose(chkfile);
return true;
}
return false;
}
bool utilsCreateConcatenationFile(const char *path)
{
Result rc = 0;
if (!path || !strlen(path))
{
LOGFILE("Invalid parameters!");
return false;
}
/* Safety check: remove any existant file/directory at the destination path. */
remove(path);
fsdevDeleteDirectoryRecursively(path);
/* Create ConcatenationFile */
/* If the call succeeds, the caller function will be able to operate on this file using stdio calls. */
rc = fsdevCreateFile(path, 0, FsCreateOption_BigFile);
if (R_FAILED(rc))
{
LOGFILE("fsdevCreateFile failed for \"%s\"! (0x%08X).", path, rc);
return false;
}
return true;
}
bool utilsAppletModeCheck(void)
{
return (g_programAppletType != AppletType_Application && g_programAppletType != AppletType_SystemApplication);
}
void utilsChangeHomeButtonBlockStatus(bool block)
{
mutexLock(&g_homeButtonMutex);
/* Only change HOME button blocking status if we're running as a regular application or a system application, and if it's current blocking status is different than the requested one. */
if (!utilsAppletModeCheck() && block != g_homeButtonBlocked)
{
if (block)
{
appletBeginBlockingHomeButtonShortAndLongPressed(0);
} else {
appletEndBlockingHomeButtonShortAndLongPressed();
}
g_homeButtonBlocked = block;
}
mutexUnlock(&g_homeButtonMutex);
}
u8 utilsGetCustomFirmwareType(void)
{
return g_customFirmwareType;
}
FsStorage *utilsGetEmmcBisSystemPartitionStorage(void)
{
return &g_emmcBisSystemPartitionStorage;
}
void utilsOverclockSystem(bool overclock)
{
u32 cpuClkRate = ((overclock ? CPU_CLKRT_OVERCLOCKED : CPU_CLKRT_NORMAL) * 1000000);
u32 memClkRate = ((overclock ? MEM_CLKRT_OVERCLOCKED : MEM_CLKRT_NORMAL) * 1000000);
servicesChangeHardwareClockRates(cpuClkRate, memClkRate);
}
static u64 utilsHidKeysAllDown(void)
{
u8 controller;
u64 keys_down = 0;
for(controller = 0; controller < (u8)CONTROLLER_P1_AUTO; controller++) keys_down |= hidKeysDown((HidControllerID)controller);
return keys_down;
}
static u64 utilsHidKeysAllHeld(void)
{
u8 controller;
u64 keys_held = 0;
for(controller = 0; controller < (u8)CONTROLLER_P1_AUTO; controller++) keys_held |= hidKeysHeld((HidControllerID)controller);
return keys_held;
}
static bool utilsMountEmmcBisSystemPartitionStorage(void)
{
Result rc = 0;
FRESULT fr = FR_OK;
rc = fsOpenBisStorage(&g_emmcBisSystemPartitionStorage, FsBisPartitionId_System);
if (R_FAILED(rc))
{
LOGFILE("Failed to open eMMC BIS System partition storage! (0x%08X).", rc);
return false;
}
g_emmcBisSystemPartitionFatFsObj = calloc(1, sizeof(FATFS));
if (!g_emmcBisSystemPartitionFatFsObj)
{
LOGFILE("Unable to allocate memory for FatFs element!");
return false;
}
fr = f_mount(g_emmcBisSystemPartitionFatFsObj, BIS_SYSTEM_PARTITION_MOUNT_NAME, 1);
if (fr != FR_OK)
{
LOGFILE("Failed to mount eMMC BIS System partition! (%u).", fr);
return false;
}
return true;
}
static void utilsUnmountEmmcBisSystemPartitionStorage(void)
{
if (g_emmcBisSystemPartitionFatFsObj)
{
f_unmount(BIS_SYSTEM_PARTITION_MOUNT_NAME);
free(g_emmcBisSystemPartitionFatFsObj);
g_emmcBisSystemPartitionFatFsObj = NULL;
}
if (serviceIsActive(&(g_emmcBisSystemPartitionStorage.s)))
{
fsStorageClose(&g_emmcBisSystemPartitionStorage);
memset(&g_emmcBisSystemPartitionStorage, 0, sizeof(FsStorage));
}
}
static void _utilsGetCustomFirmwareType(void)
{
bool tx_srv = servicesCheckRunningServiceByName("tx");
bool rnx_srv = servicesCheckRunningServiceByName("rnx");
g_customFirmwareType = (rnx_srv ? UtilsCustomFirmwareType_ReiNX : (tx_srv ? UtilsCustomFirmwareType_SXOS : UtilsCustomFirmwareType_Atmosphere));
}
static void utilsOverclockSystemAppletHook(AppletHookType hook, void *param)
{
(void)param;
if (hook != AppletHookType_OnOperationMode && hook != AppletHookType_OnPerformanceMode) return;
/* To do: read config here to actually know the value to use with utilsOverclockSystem. */
utilsOverclockSystem(false);
}