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nxdumptool/source/ums.c

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/*
* ums.c
*
* 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"
/* Global variables. */
static Mutex g_umsMutex = 0;
static bool g_umsInterfaceInit = false;
static Thread g_umsDetectionThread = {0};
static UEvent *g_umsStatusChangeEvent = NULL, g_umsDetectionThreadExitEvent = {0};
static bool g_umsDetectionThreadCreated = false, g_umsDeviceInfoUpdated = false;
static u32 g_umsDeviceCount = 0;
static UsbHsFsDevice *g_umsDevices = NULL;
/* Function prototypes. */
static bool umsCreateDetectionThread(void);
static void umsDestroyDetectionThread(void);
static void umsDetectionThreadFunc(void *arg);
static void umsFreeDeviceData(void);
bool umsInitialize(void)
{
mutexLock(&g_umsMutex);
Result rc = 0;
bool ret = g_umsInterfaceInit;
if (ret) goto end;
/* Initialize USB Mass Storage Host interface. */
rc = usbHsFsInitialize(0);
if (R_FAILED(rc))
{
LOGFILE("usbHsFsInitialize failed! (0x%08X).", rc);
goto end;
}
/* Get USB Mass Storage status change event. */
g_umsStatusChangeEvent = usbHsFsGetStatusChangeUserEvent();
/* Create user-mode exit event. */
ueventCreate(&g_umsDetectionThreadExitEvent, true);
/* Create USB Mass Storage detection thread. */
if (!(g_umsDetectionThreadCreated = umsCreateDetectionThread())) goto end;
ret = g_umsInterfaceInit = true;
end:
mutexUnlock(&g_umsMutex);
return ret;
}
void umsExit(void)
{
mutexLock(&g_umsMutex);
if (!g_umsInterfaceInit) goto end;
/* Destroy USB Mass Storage detection thread. */
if (g_umsDetectionThreadCreated)
{
umsDestroyDetectionThread();
g_umsDetectionThreadCreated = false;
}
/* Close USB Mass Storage Host interface. */
usbHsFsExit();
g_umsInterfaceInit = false;
end:
mutexUnlock(&g_umsMutex);
}
bool umsIsDeviceInfoUpdated(void)
{
mutexLock(&g_umsMutex);
bool ret = false;
if (g_umsInterfaceInit && g_umsDeviceInfoUpdated)
{
ret = true;
g_umsDeviceInfoUpdated = false;
}
mutexUnlock(&g_umsMutex);
return ret;
}
u32 umsGetDeviceCount(void)
{
mutexLock(&g_umsMutex);
u32 count = (g_umsInterfaceInit ? g_umsDeviceCount : 0);
mutexUnlock(&g_umsMutex);
return count;
}
bool umsGetDeviceByIndex(u32 idx, UsbHsFsDevice *out_device)
{
mutexLock(&g_umsMutex);
bool ret = false;
if (!g_umsInterfaceInit || !g_umsDeviceCount || !g_umsDevices || idx >= g_umsDeviceCount || !out_device)
{
LOGFILE("Invalid parameters!");
goto end;
}
/* Copy device data. */
memcpy(out_device, &(g_umsDevices[idx]), sizeof(UsbHsFsDevice));
ret = true;
end:
mutexUnlock(&g_umsMutex);
return ret;
}
static bool umsCreateDetectionThread(void)
{
if (!utilsCreateThread(&g_umsDetectionThread, umsDetectionThreadFunc, NULL, 1))
{
LOGFILE("Failed to create USB Mass Storage detection thread!");
return false;
}
return true;
}
static void umsDestroyDetectionThread(void)
{
/* Signal the exit event to terminate the USB Mass Storage detection thread. */
ueventSignal(&g_umsDetectionThreadExitEvent);
/* Wait for the USB Mass Storage detection thread to exit. */
utilsJoinThread(&g_umsDetectionThread);
}
static void umsDetectionThreadFunc(void *arg)
{
(void)arg;
Result rc = 0;
int idx = 0;
u32 listed_device_count = 0;
Waiter status_change_event_waiter = waiterForUEvent(g_umsStatusChangeEvent);
Waiter exit_event_waiter = waiterForUEvent(&g_umsDetectionThreadExitEvent);
while(true)
{
/* Wait until an event is triggered. */
rc = waitMulti(&idx, -1, status_change_event_waiter, exit_event_waiter);
if (R_FAILED(rc)) continue;
/* Exit event triggered. */
if (idx == 1) break;
mutexLock(&g_umsMutex);
/* Free USB Mass Storage device data. */
umsFreeDeviceData();
/* Get mounted device count. */
g_umsDeviceCount = usbHsFsGetMountedDeviceCount();
LOGFILE("USB Mass Storage status change event triggered! Mounted USB Mass Storage device count: %u.", g_umsDeviceCount);
if (g_umsDeviceCount)
{
bool fail = false;
/* Allocate mounted devices buffer. */
g_umsDevices = calloc(g_umsDeviceCount, sizeof(UsbHsFsDevice));
if (g_umsDevices)
{
/* List mounted devices. */
if ((listed_device_count = usbHsFsListMountedDevices(g_umsDevices, g_umsDeviceCount)))
{
/* Check if we got as many devices as we expected. */
if (listed_device_count == g_umsDeviceCount)
{
/* Update USB Mass Storage device info updated flag. */
g_umsDeviceInfoUpdated = true;
} else {
LOGFILE("USB Mass Storage device count mismatch! (%u != %u).", listed_device_count, g_umsDeviceCount);
fail = true;
}
} else {
LOGFILE("Failed to list mounted USB Mass Storage devices!");
fail = true;
}
} else {
LOGFILE("Failed to allocate memory for mounted USB Mass Storage devices buffer!");
fail = true;
}
/* Free USB Mass Storage device data if something went wrong. */
if (fail) umsFreeDeviceData();
}
mutexUnlock(&g_umsMutex);
}
/* Free USB Mass Storage device data. */
umsFreeDeviceData();
threadExit();
}
static void umsFreeDeviceData(void)
{
/* Free devices buffer. */
if (g_umsDevices)
{
free(g_umsDevices);
g_umsDevices = NULL;
}
/* Reset device count. */
g_umsDeviceCount = 0;
}