22 Commits

Author SHA1 Message Date
ba2f036d88 Uninitialized Memory in cLine 2025-12-07 20:41:09 +01:00
43ccdbd4d8 fix terminate if no drive is detected 2025-12-07 20:39:04 +01:00
460cfeab2c Iterator Invalidation Bug 2025-12-07 20:36:53 +01:00
2ca0b8b061 Missing Validation of Pipe Return Value 2025-12-07 20:30:36 +01:00
c7d37b1d95 Missing Bounds Check on Array Access 2025-12-07 20:27:56 +01:00
4afc155230 Unchecked strerror() with Invalid Errno 2025-12-07 19:11:35 +01:00
d82c45057b Missing Error Check on time() Calls 2025-12-07 19:04:00 +01:00
f303f9f032 Integer Overflow in sprintf Buffer 2025-12-07 19:01:13 +01:00
46e8dae697 Race Condition with Shared Drive List 2025-12-07 18:59:19 +01:00
eded3f166c Revert "Unchecked popen/pclose Return Values"
This reverts commit bcabad0620.
2025-12-07 18:52:10 +01:00
bcabad0620 Unchecked popen/pclose Return Values 2025-12-07 18:48:38 +01:00
bc4083a98c Resource Leak - File Descriptor Not Checked 2025-12-07 18:47:24 +01:00
2d63788352 Nullptr Return Without Proper Handling 2025-12-07 18:45:42 +01:00
ff6a1763e0 Memory Leak in Drive Scanning 2025-12-07 18:44:53 +01:00
37cbc9500e Memory Leak in main.cpp 2025-12-07 18:42:03 +01:00
80ffb3c6c3 Merge pull request 'Improve UUID parsing' (#78) from hannesbraun/reHDD:master into master
Reviewed-on: #78
Reviewed-by: Hendrik Schutter <localhorst@mosad.xyz>
2025-12-07 18:15:28 +01:00
ebe0ef9ec1 Merge pull request 'fix(UI): Restore terminal state on termination' (#77) from hannesbraun/reHDD:terminal-restore into master
Reviewed-on: #77
2025-12-07 18:11:02 +01:00
86660cb112 Merge pull request 'feature/drive-type-ipc' (#80) from feature/drive-type-ipc into master
Reviewed-on: #80
2025-12-07 18:05:36 +01:00
47ab9cc36f update Version 2025-12-07 18:04:52 +01:00
aaf4695656 IPC connection type 2025-12-07 17:51:16 +01:00
664582f01d Improve UUID parsing
The previous approach only worked if the drive name had three letters (usually sda).
2025-07-25 14:26:20 +02:00
9f6cfc17f8 Restore terminal state on termination 2025-07-24 18:55:49 +02:00
9 changed files with 132 additions and 73 deletions

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@ -26,11 +26,11 @@ typedef struct
char caDriveShredDuration[STR_BUFFER_SIZE]; char caDriveShredDuration[STR_BUFFER_SIZE];
char caDriveCapacity[STR_BUFFER_SIZE]; char caDriveCapacity[STR_BUFFER_SIZE];
char caDriveState[STR_BUFFER_SIZE]; char caDriveState[STR_BUFFER_SIZE];
char caDriveConnectionType[STR_BUFFER_SIZE];
char caDriveModelFamily[STR_BUFFER_SIZE]; char caDriveModelFamily[STR_BUFFER_SIZE];
char caDriveModelName[STR_BUFFER_SIZE]; char caDriveModelName[STR_BUFFER_SIZE];
char caDriveSerialnumber[STR_BUFFER_SIZE]; char caDriveSerialnumber[STR_BUFFER_SIZE];
char caDriveReHddVersion[STR_BUFFER_SIZE]; char caDriveReHddVersion[STR_BUFFER_SIZE];
} t_driveData; } t_driveData;
typedef struct typedef struct

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@ -8,7 +8,7 @@
#ifndef REHDD_H_ #ifndef REHDD_H_
#define REHDD_H_ #define REHDD_H_
#define REHDD_VERSION "V1.2.0" #define REHDD_VERSION "V1.2.1"
// Drive handling Settings // Drive handling Settings
#define WORSE_HOURS 19200 // mark drive if at this limit or beyond #define WORSE_HOURS 19200 // mark drive if at this limit or beyond
@ -31,7 +31,7 @@
#endif #endif
// Logic // Logic
// #define DRYRUN // don't touch the drives #define DRYRUN // don't touch the drives
#define FROZEN_ALERT // show alert if drive is frozen #define FROZEN_ALERT // show alert if drive is frozen
#define ZERO_CHECK // check drive after shred if all bytes are zero, show alert if this fails #define ZERO_CHECK // check drive after shred if all bytes are zero, show alert if this fails

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@ -51,6 +51,8 @@ public:
static enum UserInput readUserInput(); static enum UserInput readUserInput();
static void terminateTUI();
private: private:
static string sCpuUsage; static string sCpuUsage;
static string sRamUsage; static string sRamUsage;

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@ -62,8 +62,12 @@ string Drive::sCapacityToText()
dSize /= 1000; dSize /= 1000;
u16UnitIndex++; u16UnitIndex++;
} }
if (u16UnitIndex >= 9)
sprintf(acBuffer, "%.*f %s", u16UnitIndex - 3, dSize, units[u16UnitIndex]); {
u16UnitIndex = 8;
}
int precision = (u16UnitIndex >= 3) ? (u16UnitIndex - 3) : 0;
sprintf(acBuffer, "%.*f %s", precision, dSize, units[u16UnitIndex]);
return acBuffer; return acBuffer;
} }
@ -148,12 +152,20 @@ void Drive::setDriveSMARTData(string modelFamily,
void Drive::setTimestamp() void Drive::setTimestamp()
{ {
time(&this->u32Timestamp); if (time(&this->u32Timestamp) == -1)
{
// handle error
this->u32Timestamp = 0U;
}
} }
void Drive::setActionStartTimestamp() void Drive::setActionStartTimestamp()
{ {
time(&this->u32TimestampTaskStart); if (time(&this->u32TimestampTaskStart) == -1)
{
// handle error
this->u32TimestampTaskStart = 0U;
}
} }
time_t Drive::getActionStartTimestamp() time_t Drive::getActionStartTimestamp()
@ -164,7 +176,11 @@ time_t Drive::getActionStartTimestamp()
void Drive::calculateTaskDuration() void Drive::calculateTaskDuration()
{ {
time_t u32localtime; time_t u32localtime;
time(&u32localtime); if (time(&u32localtime) == -1)
{
// handle error
u32localtime = 0U;
}
this->u32TaskDuration = u32localtime - this->u32TimestampTaskStart; this->u32TaskDuration = u32localtime - this->u32TimestampTaskStart;
} }
@ -178,6 +194,11 @@ void Drive::checkFrozenDrive(void)
{ {
time_t u32localtime; time_t u32localtime;
time(&u32localtime); time(&u32localtime);
if (time(&u32localtime) == -1)
{
// handle error
u32localtime = 0U;
}
if ((u32localtime - this->u32Timestamp) >= (FROZEN_TIMEOUT * 60) && (this->u32Timestamp > 0) && (this->getTaskPercentage() < 100.0)) if ((u32localtime - this->u32Timestamp) >= (FROZEN_TIMEOUT * 60) && (this->u32Timestamp > 0) && (this->getTaskPercentage() < 100.0))
{ {

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@ -16,7 +16,7 @@ int main(void)
{ {
// cout << "refurbishingHddTool" << endl; // cout << "refurbishingHddTool" << endl;
reHDD *app = new reHDD(); reHDD app;
app->app_logic(); app.app_logic();
return EXIT_SUCCESS; return EXIT_SUCCESS;
} }

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@ -53,6 +53,23 @@ void Printer::print(Drive *drive)
sprintf(msgQueueData.driveData.caDriveErrors, "%i", drive->getErrorCount()); sprintf(msgQueueData.driveData.caDriveErrors, "%i", drive->getErrorCount());
sprintf(msgQueueData.driveData.caDriveShredTimestamp, "%li", drive->getActionStartTimestamp()); sprintf(msgQueueData.driveData.caDriveShredTimestamp, "%li", drive->getActionStartTimestamp());
sprintf(msgQueueData.driveData.caDriveShredDuration, "%li", drive->getTaskDuration()); sprintf(msgQueueData.driveData.caDriveShredDuration, "%li", drive->getTaskDuration());
switch (drive->connectionType)
{
case Drive::USB:
strcpy(msgQueueData.driveData.caDriveConnectionType, "usb");
break;
case Drive::SATA:
strcpy(msgQueueData.driveData.caDriveConnectionType, "sata");
break;
case Drive::NVME:
strcpy(msgQueueData.driveData.caDriveConnectionType, "nvme");
break;
case Drive::UNKNOWN:
default:
strcpy(msgQueueData.driveData.caDriveConnectionType, "na");
}
sprintf(msgQueueData.driveData.caDriveReHddVersion, REHDD_VERSION); sprintf(msgQueueData.driveData.caDriveReHddVersion, REHDD_VERSION);
if (-1 == msgsnd(this->msqid, &msgQueueData, sizeof(t_msgQueueData) - sizeof(long), 0)) if (-1 == msgsnd(this->msqid, &msgQueueData, sizeof(t_msgQueueData) - sizeof(long), 0))

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@ -43,8 +43,15 @@ void reHDD::app_logic(void)
ui = new TUI(); ui = new TUI();
ui->initTUI(); ui->initTUI();
pipe(fdNewDrivesInformPipe); if (pipe(fdNewDrivesInformPipe) == -1)
pipe(fdShredInformPipe); {
Logger::logThis()->error("Unable to open pipe 'fdNewDrivesInformPipe'");
}
if (pipe(fdShredInformPipe) == -1)
{
Logger::logThis()->error("Unable to open pipe 'fdShredInformPipe'");
}
thread thDevices(ThreadScanDevices); // start thread that scans for drives thread thDevices(ThreadScanDevices); // start thread that scans for drives
thread thUserInput(ThreadUserInput); // start thread that reads user input thread thUserInput(ThreadUserInput); // start thread that reads user input
@ -94,7 +101,7 @@ Drive *reHDD::getSelectedDrive()
else else
{ {
Logger::logThis()->warning("selected drive not present"); Logger::logThis()->warning("selected drive not present");
return {}; return nullptr;
} }
} }
@ -135,6 +142,8 @@ void reHDD::ThreadUserInput()
{ {
while (true) while (true)
{ {
Drive *tmpSelectedDrive = getSelectedDrive();
// cout << TUI::readUserInput() << endl; // cout << TUI::readUserInput() << endl;
switch (TUI::readUserInput()) switch (TUI::readUserInput())
{ {
@ -159,11 +168,11 @@ void reHDD::ThreadUserInput()
case TUI::UserInput::Delete: case TUI::UserInput::Delete:
// cout << "Delete" << endl; // cout << "Delete" << endl;
if (getSelectedDrive() != nullptr) if (tmpSelectedDrive != nullptr)
{ {
if (getSelectedDrive()->state == Drive::NONE) if (tmpSelectedDrive->state == Drive::NONE)
{ {
getSelectedDrive()->state = Drive::DELETE_SELECTED; tmpSelectedDrive->state = Drive::DELETE_SELECTED;
} }
} }
@ -171,15 +180,13 @@ void reHDD::ThreadUserInput()
break; break;
case TUI::UserInput::Shred: case TUI::UserInput::Shred:
// cout << "Shred" << endl; // cout << "Shred" << endl;
if (tmpSelectedDrive != nullptr)
if (getSelectedDrive() != nullptr)
{ {
if (getSelectedDrive()->state == Drive::NONE) if (tmpSelectedDrive->state == Drive::NONE)
{ {
getSelectedDrive()->state = Drive::SHRED_SELECTED; tmpSelectedDrive->state = Drive::SHRED_SELECTED;
} }
} }
ui->updateTUI(&listDrives, u8SelectedEntry); ui->updateTUI(&listDrives, u8SelectedEntry);
break; break;
case TUI::UserInput::ShredAll: case TUI::UserInput::ShredAll:
@ -198,8 +205,9 @@ void reHDD::ThreadUserInput()
ui->updateTUI(&listDrives, u8SelectedEntry); ui->updateTUI(&listDrives, u8SelectedEntry);
break; break;
case TUI::UserInput::Terminate: case TUI::UserInput::Terminate:
cout << "Terminate" << endl; // cout << "Terminate" << endl;
stopShredAllDrives(&listDrives); stopShredAllDrives(&listDrives);
ui->terminateTUI();
sleep(5); // sleep 5 sec sleep(5); // sleep 5 sec
std::exit(1); // Terminates main, doesn't wait for threads std::exit(1); // Terminates main, doesn't wait for threads
break; break;
@ -223,13 +231,14 @@ void reHDD::ThreadShred(Drive *const pDrive)
void reHDD::ThreadDelete() void reHDD::ThreadDelete()
{ {
if (getSelectedDrive() != nullptr) Drive *tmpSelectedDrive = getSelectedDrive();
if (tmpSelectedDrive != nullptr)
{ {
getSelectedDrive()->setActionStartTimestamp(); // save timestamp at start of deleting tmpSelectedDrive->setActionStartTimestamp(); // save timestamp at start of deleting
Delete::deleteDrive(getSelectedDrive()); // blocking, no thread Delete::deleteDrive(tmpSelectedDrive); // blocking, no thread
getSelectedDrive()->state = Drive::TaskState::NONE; // delete finished tmpSelectedDrive->state = Drive::TaskState::NONE; // delete finished
getSelectedDrive()->bWasDeleted = true; tmpSelectedDrive->bWasDeleted = true;
Logger::logThis()->info("Finished delete for: " + getSelectedDrive()->getModelName() + "-" + getSelectedDrive()->getSerial()); Logger::logThis()->info("Finished delete for: " + tmpSelectedDrive->getModelName() + "-" + tmpSelectedDrive->getSerial());
ui->updateTUI(&listDrives, u8SelectedEntry); ui->updateTUI(&listDrives, u8SelectedEntry);
} }
} }
@ -325,27 +334,27 @@ void reHDD::searchDrives(std::list<Drive> *plistDrives)
if (devName.empty()) if (devName.empty())
continue; continue;
Drive *tmpDrive = new Drive("/dev/" + devName); Drive tmpDrive("/dev/" + devName);
tmpDrive->state = Drive::NONE; tmpDrive.state = Drive::NONE;
tmpDrive->bIsOffline = false; tmpDrive.bIsOffline = false;
// Set connection type // Set connection type
if (transport == "sata") if (transport == "sata")
tmpDrive->connectionType = Drive::SATA; tmpDrive.connectionType = Drive::SATA;
else if (transport == "usb") else if (transport == "usb")
tmpDrive->connectionType = Drive::USB; tmpDrive.connectionType = Drive::USB;
else if (transport == "nvme") else if (transport == "nvme")
tmpDrive->connectionType = Drive::NVME; tmpDrive.connectionType = Drive::NVME;
else else
tmpDrive->connectionType = Drive::UNKNOWN; tmpDrive.connectionType = Drive::UNKNOWN;
plistDrives->push_back(*tmpDrive); plistDrives->push_back(tmpDrive);
Logger::logThis()->info( Logger::logThis()->info(
"Drive found: " + tmpDrive->getPath() + "Drive found: " + tmpDrive.getPath() +
" (type: " + " (type: " +
(tmpDrive->connectionType == Drive::USB ? "USB" : tmpDrive->connectionType == Drive::SATA ? "SATA" (tmpDrive.connectionType == Drive::USB ? "USB" : tmpDrive.connectionType == Drive::SATA ? "SATA"
: tmpDrive->connectionType == Drive::NVME ? "NVME" : tmpDrive.connectionType == Drive::NVME ? "NVME"
: "UNKNOWN") + : "UNKNOWN") +
")"); ")");
} }
@ -375,7 +384,6 @@ void reHDD::filterIgnoredDrives(list<Drive> *plistDrives)
Logger::logThis()->info("system drive found --> ignore this drive: " + it->getPath()); Logger::logThis()->info("system drive found --> ignore this drive: " + it->getPath());
#endif #endif
it = plistDrives->erase(it); it = plistDrives->erase(it);
it--;
} }
} }
} }
@ -408,15 +416,17 @@ void reHDD::filterIgnoredDrives(list<Drive> *plistDrives)
while ((getline(&cLine, &len, outputfileBlkid)) != -1) // parse UUID from blkid while ((getline(&cLine, &len, outputfileBlkid)) != -1) // parse UUID from blkid
{ {
if (string(cLine).find("PTUUID") != string::npos) size_t ptuuidPos = string(cLine).find("PTUUID");
if (ptuuidPos != string::npos)
{ {
string sBlkidOut = string(cLine); string sBlkidOut = string(cLine);
sBlkidOut.erase(0, 18); sBlkidOut.erase(0, ptuuidPos + 8);
sBlkidOut.erase(8, sBlkidOut.length()); sBlkidOut.erase(8, sBlkidOut.length());
sUUID = sBlkidOut; sUUID = sBlkidOut;
// cout << "blkid uuid:" << sUUID << endl; // cout << "blkid uuid:" << sUUID << endl;
} }
} }
free(cLine);
pclose(outputfileBlkid); pclose(outputfileBlkid);
// cout << "blkid uuid:" << sUUID << endl; // cout << "blkid uuid:" << sUUID << endl;
@ -427,7 +437,6 @@ void reHDD::filterIgnoredDrives(list<Drive> *plistDrives)
Logger::logThis()->info("same uuid found than in ignore file --> ignore this drive: " + it->getPath()); Logger::logThis()->info("same uuid found than in ignore file --> ignore this drive: " + it->getPath());
#endif #endif
it = plistDrives->erase(it); it = plistDrives->erase(it);
it--;
} }
} }
} }
@ -449,7 +458,6 @@ void reHDD::filterInvalidDrives(list<Drive> *plistDrives)
Logger::logThis()->info("Drive reports zero capacity --> ignore this drive: " + it->getPath()); Logger::logThis()->info("Drive reports zero capacity --> ignore this drive: " + it->getPath());
#endif #endif
it = plistDrives->erase(it); it = plistDrives->erase(it);
it--;
} }
} }
} }
@ -617,22 +625,21 @@ void reHDD::handleArrowKey(TUI::UserInput userInput)
void reHDD::handleEnter() void reHDD::handleEnter()
{ {
Drive *tmpSelectedDrive = getSelectedDrive();
if (getSelectedDrive() != nullptr) if (tmpSelectedDrive != nullptr)
{ {
if (getSelectedDrive()->state == Drive::TaskState::SHRED_SELECTED) if (tmpSelectedDrive->state == Drive::TaskState::SHRED_SELECTED)
{ {
Logger::logThis()->info("Started shred/check for: " + getSelectedDrive()->getModelName() + "-" + getSelectedDrive()->getSerial()); Logger::logThis()->info("Started shred/check for: " + tmpSelectedDrive->getModelName() + "-" + tmpSelectedDrive->getSerial());
getSelectedDrive()->state = Drive::TaskState::SHRED_ACTIVE; tmpSelectedDrive->state = Drive::TaskState::SHRED_ACTIVE;
// task for drive is running --> don't show more task options // task for drive is running --> don't show more task option
Drive *pTmpDrive = getSelectedDrive(); thread(ThreadShred, tmpSelectedDrive).detach();
thread(ThreadShred, pTmpDrive).detach();
} }
if (getSelectedDrive()->state == Drive::TaskState::DELETE_SELECTED) if (tmpSelectedDrive->state == Drive::TaskState::DELETE_SELECTED)
{ {
Logger::logThis()->info("Started delete for: " + getSelectedDrive()->getModelName() + "-" + getSelectedDrive()->getSerial()); Logger::logThis()->info("Started delete for: " + tmpSelectedDrive->getModelName() + "-" + tmpSelectedDrive->getSerial());
getSelectedDrive()->state = Drive::TaskState::DELETE_ACTIVE; tmpSelectedDrive->state = Drive::TaskState::DELETE_ACTIVE;
// task for drive is running --> don't show more task options // task for drive is running --> don't show more task options
thread(ThreadDelete).detach(); thread(ThreadDelete).detach();
} }
@ -641,17 +648,18 @@ void reHDD::handleEnter()
void reHDD::handleESC() void reHDD::handleESC()
{ {
if (getSelectedDrive() != nullptr) Drive *tmpSelectedDrive = getSelectedDrive();
if (tmpSelectedDrive != nullptr)
{ {
if (getSelectedDrive()->state == Drive::TaskState::SHRED_SELECTED) if (tmpSelectedDrive->state == Drive::TaskState::SHRED_SELECTED)
{ {
getSelectedDrive()->state = Drive::TaskState::NONE; tmpSelectedDrive->state = Drive::TaskState::NONE;
// task for drive is selected --> remove selection // task for drive is selected --> remove selection
} }
if (getSelectedDrive()->state == Drive::TaskState::DELETE_SELECTED) if (tmpSelectedDrive->state == Drive::TaskState::DELETE_SELECTED)
{ {
getSelectedDrive()->state = Drive::TaskState::NONE; tmpSelectedDrive->state = Drive::TaskState::NONE;
// task for drive is selected --> remove selection // task for drive is selected --> remove selection
} }
} }
@ -659,12 +667,13 @@ void reHDD::handleESC()
void reHDD::handleAbort() void reHDD::handleAbort()
{ {
if (getSelectedDrive() != nullptr) Drive *tmpSelectedDrive = getSelectedDrive();
if (tmpSelectedDrive != nullptr)
{ {
if (getSelectedDrive()->state == Drive::SHRED_ACTIVE || getSelectedDrive()->state == Drive::DELETE_ACTIVE) if (tmpSelectedDrive->state == Drive::SHRED_ACTIVE || tmpSelectedDrive->state == Drive::DELETE_ACTIVE)
{ {
getSelectedDrive()->state = Drive::NONE; tmpSelectedDrive->state = Drive::NONE;
Logger::logThis()->info("Abort-Shred-Signal for: " + getSelectedDrive()->getModelName() + "-" + getSelectedDrive()->getSerial()); Logger::logThis()->info("Abort-Shred-Signal for: " + tmpSelectedDrive->getModelName() + "-" + tmpSelectedDrive->getSerial());
// task for drive is running --> remove selection // task for drive is running --> remove selection
} }
} }

View File

@ -36,7 +36,7 @@ int Shred::shredDrive(Drive *drive, int *ipSignalFd)
ostringstream address; ostringstream address;
address << (void const *)&(*drive); address << (void const *)&(*drive);
Logger::logThis()->info("Shred-Task started - Drive: " + drive->getModelName() + "-" + drive->getSerial() + " @" + address.str()); Logger::logThis()->info("Shred-Task started - Drive: " + drive->getModelName() + "-" + drive->getSerial() + " @" + address.str());
drive->bWasShredStarted = true; //Mark drive as partly shredded drive->bWasShredStarted = true; // Mark drive as partly shredded
#ifdef DRYRUN #ifdef DRYRUN
for (int i = 0; i <= 500; i++) for (int i = 0; i <= 500; i++)
@ -60,7 +60,7 @@ int Shred::shredDrive(Drive *drive, int *ipSignalFd)
randomSrcFileDiscr = open(randomsrc, O_RDONLY | O_LARGEFILE); randomSrcFileDiscr = open(randomsrc, O_RDONLY | O_LARGEFILE);
if (randomSrcFileDiscr == -1) if (randomSrcFileDiscr == -1)
{ {
std::string errorMsg(strerror(randomSrcFileDiscr)); std::string errorMsg(strerror(errno));
Logger::logThis()->error("Shred-Task: Open random source failed! " + errorMsg + " - Drive: " + drive->getSerial()); Logger::logThis()->error("Shred-Task: Open random source failed! " + errorMsg + " - Drive: " + drive->getSerial());
perror(randomsrc); perror(randomsrc);
cleanup(); cleanup();
@ -71,7 +71,7 @@ int Shred::shredDrive(Drive *drive, int *ipSignalFd)
driveFileDiscr = open(cpDrivePath, O_RDWR | O_LARGEFILE); driveFileDiscr = open(cpDrivePath, O_RDWR | O_LARGEFILE);
if (driveFileDiscr == -1) if (driveFileDiscr == -1)
{ {
std::string errorMsg(strerror(driveFileDiscr)); std::string errorMsg(strerror(errno));
Logger::logThis()->error("Shred-Task: Open drive failed! " + errorMsg + " - Drive: " + drive->getSerial()); Logger::logThis()->error("Shred-Task: Open drive failed! " + errorMsg + " - Drive: " + drive->getSerial());
perror(cpDrivePath); perror(cpDrivePath);
cleanup(); cleanup();
@ -82,7 +82,7 @@ int Shred::shredDrive(Drive *drive, int *ipSignalFd)
ssize_t readRet = read(randomSrcFileDiscr, ucKey, sizeof(ucKey)); ssize_t readRet = read(randomSrcFileDiscr, ucKey, sizeof(ucKey));
if (readRet <= 0) if (readRet <= 0)
{ {
std::string errorMsg(strerror(readRet)); std::string errorMsg(strerror(errno));
Logger::logThis()->error("Shred-Task: Read random key failed! " + errorMsg + " - Drive: " + drive->getSerial()); Logger::logThis()->error("Shred-Task: Read random key failed! " + errorMsg + " - Drive: " + drive->getSerial());
perror(randomsrc); perror(randomsrc);
cleanup(); cleanup();
@ -132,7 +132,7 @@ int Shred::shredDrive(Drive *drive, int *ipSignalFd)
if (iByteShredded <= 0) if (iByteShredded <= 0)
{ {
std::string errorMsg(strerror(iByteShredded)); std::string errorMsg(strerror(errno));
Logger::logThis()->error("Shred-Task: Write to drive failed! " + errorMsg + " - Drive: " + drive->getSerial()); Logger::logThis()->error("Shred-Task: Write to drive failed! " + errorMsg + " - Drive: " + drive->getSerial());
perror("unable to write random data"); perror("unable to write random data");
cleanup(); cleanup();

View File

@ -63,6 +63,11 @@ void TUI::initTUI()
void TUI::updateTUI(list<Drive> *plistDrives, uint8_t u8SelectedEntry) void TUI::updateTUI(list<Drive> *plistDrives, uint8_t u8SelectedEntry)
{ {
if (isendwin())
{
return;
}
mxUIrefresh.lock(); mxUIrefresh.lock();
uint16_t u16StdscrX, u16StdscrY; uint16_t u16StdscrX, u16StdscrY;
getmaxyx(stdscr, u16StdscrY, u16StdscrX); getmaxyx(stdscr, u16StdscrY, u16StdscrX);
@ -250,6 +255,11 @@ enum TUI::UserInput TUI::readUserInput()
return TUI::UserInput::Undefined; return TUI::UserInput::Undefined;
} }
void TUI::terminateTUI()
{
endwin();
}
void TUI::centerTitle(WINDOW *pwin, const char *title) void TUI::centerTitle(WINDOW *pwin, const char *title)
{ {
int x, maxX, stringSize; int x, maxX, stringSize;