5 Commits

Author SHA1 Message Date
157e769268 Filter loop and cd/dvd drives (#92)
Reviewed-on: #92
Co-authored-by: localhorst <localhorst@mosad.xyz>
Co-committed-by: localhorst <localhorst@mosad.xyz>
2025-12-13 14:16:24 +01:00
8a42ccf9c0 Refactor start of delete thread (#90)
Reviewed-on: #90
Co-authored-by: localhorst <localhorst@mosad.xyz>
Co-committed-by: localhorst <localhorst@mosad.xyz>
2025-12-12 22:56:28 +01:00
1dce303ab6 Defensive drive state (#89)
fixes #79

Reviewed-on: #89
Co-authored-by: localhorst <localhorst@mosad.xyz>
Co-committed-by: localhorst <localhorst@mosad.xyz>
2025-12-12 22:46:21 +01:00
1449e807ad User triggered print of drive lable (#85)
implements #66

Reviewed-on: #85
Co-authored-by: localhorst <localhorst@mosad.xyz>
Co-committed-by: localhorst <localhorst@mosad.xyz>
2025-12-12 22:32:51 +01:00
c4a960f3cf bugfix/dry-run-tui-freeze (#88)
Fixes #87

Reviewed-on: #88
Co-authored-by: localhorst <localhorst@mosad.xyz>
Co-committed-by: localhorst <localhorst@mosad.xyz>
2025-12-12 22:14:47 +01:00
4 changed files with 156 additions and 76 deletions

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@ -16,9 +16,9 @@ Use [Etcher](https://www.balena.io/etcher/#download) or `dd` to create an bootab
## Screenshot ## Screenshot
![Screenshot of reHDD with multiple drives in different states](https://git.mosad.xyz/localhorst/reHDD/raw/commit/c40dfe2cbb8f86490b49caf82db70a10015f06f9/doc/screenshot.png "Screenshot") ![Screenshot of reHDD with multiple drives in different states](https://git.mosad.xyz/localhorst/reHDD/raw/commit/c40dfe2cbb8f86490b49caf82db70a10015f06f9/doc/screenshot.png "Screenshot")
## Debian Build Notes ## openSUSE Build Notes
* `apt-get install ncurses-dev git make g++` * `zypper install ncurses-devel git make gcc-c++`
* `git submodule init` * `git submodule init`
* `git submodule update` * `git submodule update`
* `make release` * `make release`
@ -28,16 +28,8 @@ Use [Etcher](https://www.balena.io/etcher/#download) or `dd` to create an bootab
Just install [reHDDPrinter](https://git.mosad.xyz/localhorst/reHDDPrinter). Just install [reHDDPrinter](https://git.mosad.xyz/localhorst/reHDDPrinter).
No further settings needed. No further settings needed.
## Create Standalone with Debian 11
Instructions how to create a standalone machine that boots directly to reHDD. This is aimed for production use, like several drives a day shredding.
* Start reHDD after boot without login (as a tty1 shell)
* Start dmesg after boot without login (as a tty2 shell)
* Start htop after boot without login (as a tty3 shell)
* Upload reHDD log every 12h if wanted
### Software requirements ### Software requirements
* `apt-get install hwinfo smartmontools curl htop sudo` * `zypper install hwinfo smartmontools curl htop sudo`
### Installation ### Installation
@ -56,7 +48,7 @@ git submodule update
If you want to upload the logs, edit `scripts/reHDDLogUploader.bash` with your nextcloud token If you want to upload the logs, edit `scripts/reHDDLogUploader.bash` with your nextcloud token
Add your system drive in `/root/reHDD/ignoreDrives.conf` like: Add ignored drives in `/root/reHDD/ignoreDrives.conf` like:
```e102f49d``` ```e102f49d```
Get the first 8 Bytes from your UUID via `blkid /dev/sdX` Get the first 8 Bytes from your UUID via `blkid /dev/sdX`

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@ -8,7 +8,7 @@
#ifndef REHDD_H_ #ifndef REHDD_H_
#define REHDD_H_ #define REHDD_H_
#define REHDD_VERSION "V1.2.1" #define REHDD_VERSION "V1.3.0"
// 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
@ -95,7 +95,7 @@ private:
static void ThreadScanDevices(); static void ThreadScanDevices();
static void ThreadUserInput(); static void ThreadUserInput();
static void ThreadShred(Drive *const pDrive); static void ThreadShred(Drive *const pDrive);
static void ThreadDelete(); static void ThreadDelete(Drive *const pDrive);
static void ThreadCheckFrozenDrives(); static void ThreadCheckFrozenDrives();
static void handleArrowKey(TUI::UserInput userInput); static void handleArrowKey(TUI::UserInput userInput);
static void handleEnter(); static void handleEnter();

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@ -218,18 +218,16 @@ void reHDD::ThreadUserInput()
break; break;
case TUI::UserInput::Print: case TUI::UserInput::Print:
// cout << "Print" << endl; // cout << "Print" << endl;
Logger::logThis()->info("User print single");
if (tmpSelectedDrive != nullptr) if (tmpSelectedDrive != nullptr)
{ {
// printDrive(tmpSelectedDrive); printDrive(tmpSelectedDrive);
} }
// ui->updateTUI(&listDrives, u16SelectedEntry); ui->updateTUI(&listDrives, u16SelectedEntry);
break; break;
case TUI::UserInput::PrintAll: case TUI::UserInput::PrintAll:
// cout << "PrintAll" << endl; // cout << "PrintAll" << endl;
Logger::logThis()->info("User print all"); printAllDrives(&listDrives);
// printAllDrives(&listDrives); ui->updateTUI(&listDrives, u16SelectedEntry);
// ui->updateTUI(&listDrives, u16SelectedEntry);
break; break;
default: default:
break; break;
@ -238,7 +236,7 @@ void reHDD::ThreadUserInput()
} }
/** /**
* \brief start shred for all drives * \brief print all shredded drives
* \param pointer of list <Drive>* plistDrives * \param pointer of list <Drive>* plistDrives
* \return void * \return void
*/ */
@ -254,6 +252,11 @@ void reHDD::printAllDrives(list<Drive> *plistDrives)
mxDrives.unlock(); mxDrives.unlock();
} }
/**
* \brief print a shredded drives
* \param pointer of a drive
* \return void
*/
void reHDD::printDrive(Drive *const pDrive) void reHDD::printDrive(Drive *const pDrive)
{ {
if (pDrive->bWasShredded) if (pDrive->bWasShredded)
@ -265,7 +268,7 @@ void reHDD::printDrive(Drive *const pDrive)
} }
#endif #endif
Logger::logThis()->info("User print for: " + pDrive->getModelName() + "-" + pDrive->getSerial()); Logger::logThis()->info("User print for: " + pDrive->getModelName() + "-" + pDrive->getSerial());
// TODO: Trigger printer for this drive Printer::getPrinter()->print(pDrive);
} }
} }
@ -273,24 +276,24 @@ void reHDD::ThreadShred(Drive *const pDrive)
{ {
if (pDrive != nullptr) if (pDrive != nullptr)
{ {
pDrive->setActionStartTimestamp(); // save timestamp at start of shredding pDrive->setActionStartTimestamp(); // save timestamp at start of shredding
Shred *pShredTask = new Shred(); // create new shred task Shred *pShredInstance = new Shred(); // create new shred task
pShredTask->shredDrive(pDrive, &fdShredInformPipe[1]); // start new shred task pShredInstance->shredDrive(pDrive, &fdShredInformPipe[1]); // start new shred task
delete pShredTask; // delete shred task delete pShredInstance; // delete shred task
ui->updateTUI(&listDrives, u16SelectedEntry); ui->updateTUI(&listDrives, u16SelectedEntry);
} }
} }
void reHDD::ThreadDelete() void reHDD::ThreadDelete(Drive *const pDrive)
{ {
Drive *tmpSelectedDrive = getSelectedDrive(); if (pDrive != nullptr)
if (tmpSelectedDrive != nullptr)
{ {
tmpSelectedDrive->setActionStartTimestamp(); // save timestamp at start of deleting pDrive->state = Drive::TaskState::DELETE_ACTIVE;
Delete::deleteDrive(tmpSelectedDrive); // blocking, no thread pDrive->setActionStartTimestamp(); // save timestamp at start of deleting
tmpSelectedDrive->state = Drive::TaskState::NONE; // delete finished Delete::deleteDrive(pDrive); // blocking, no thread
tmpSelectedDrive->bWasDeleted = true; pDrive->state = Drive::TaskState::NONE; // delete finished
Logger::logThis()->info("Finished delete for: " + tmpSelectedDrive->getModelName() + "-" + tmpSelectedDrive->getSerial()); pDrive->bWasDeleted = true;
Logger::logThis()->info("Finished delete for: " + pDrive->getModelName() + "-" + pDrive->getSerial());
ui->updateTUI(&listDrives, u16SelectedEntry); ui->updateTUI(&listDrives, u16SelectedEntry);
} }
} }
@ -415,8 +418,8 @@ void reHDD::searchDrives(std::list<Drive> *plistDrives)
} }
/** /**
* \brief filter out drives that are listed in "ignoreDrives.conf" * \brief filter out drives that are listed in "ignoreDrives.conf", loop devices, and optical drives
* \param pointer of list <Drive>* plistDrives * \param pointer of list <Drive>* plistDrives
* \return void * \return void
*/ */
void reHDD::filterIgnoredDrives(list<Drive> *plistDrives) void reHDD::filterIgnoredDrives(list<Drive> *plistDrives)
@ -425,11 +428,17 @@ void reHDD::filterIgnoredDrives(list<Drive> *plistDrives)
if (getSystemDrive(systemDrivePath)) if (getSystemDrive(systemDrivePath))
{ {
// Logger::logThis()->info("Found system drive: " + systemDrivePath); // Logger::logThis()->info("Found system drive: " + systemDrivePath);
list<Drive>::iterator it = plistDrives->begin();
list<Drive>::iterator it; while (it != plistDrives->end())
for (it = plistDrives->begin(); it != plistDrives->end(); ++it)
{ {
if (it->getPath().find(systemDrivePath) != std::string::npos) // compare found system drive and current drive string driveName = it->getPath();
// Remove /dev/ prefix
if (driveName.find("/dev/") == 0)
{
driveName = driveName.substr(5); // Skip "/dev/"
}
if (systemDrivePath.find(driveName) != std::string::npos) // compare found system drive and current drive
{ {
// system drive found --> ignore this drive // system drive found --> ignore this drive
#ifdef LOG_LEVEL_HIGH #ifdef LOG_LEVEL_HIGH
@ -437,59 +446,123 @@ void reHDD::filterIgnoredDrives(list<Drive> *plistDrives)
#endif #endif
it = plistDrives->erase(it); it = plistDrives->erase(it);
} }
else
{
++it;
}
} }
} }
list<tuple<string>> vtlIgnoredDevices; // store drives from ignore file // Filter out loop devices (loop0, loop1, etc.)
ifstream input("ignoreDrives.conf"); // read ignore file list<Drive>::iterator it = plistDrives->begin();
while (it != plistDrives->end())
{
string driveName = it->getPath();
if (driveName.find("/dev/") == 0)
{
driveName = driveName.substr(5);
}
if (driveName.find("loop") == 0)
{
#ifdef LOG_LEVEL_HIGH
Logger::logThis()->info("loop device found --> ignore this drive: " + it->getPath());
#endif
it = plistDrives->erase(it);
}
else
{
++it;
}
}
// Filter out optical drives (sr0, sr1, cdrom, dvd, etc.)
it = plistDrives->begin();
while (it != plistDrives->end())
{
string driveName = it->getPath();
if (driveName.find("/dev/") == 0)
{
driveName = driveName.substr(5);
}
if (driveName.find("sr") == 0 ||
driveName.find("cdrom") == 0 ||
driveName.find("dvd") == 0 ||
driveName.find("cdrw") == 0)
{
#ifdef LOG_LEVEL_HIGH
Logger::logThis()->info("optical drive found --> ignore this drive: " + it->getPath());
#endif
it = plistDrives->erase(it);
}
else
{
++it;
}
}
// Read ignored drives from config file
list<tuple<string>> vtlIgnoredDevices;
ifstream input("ignoreDrives.conf");
for (string sLine; getline(input, sLine);) for (string sLine; getline(input, sLine);)
{ {
// Logger::logThis()->info("read uuid: " + sLine); // Skip empty lines and comments
vtlIgnoredDevices.emplace_back(sLine); // add found path and uuid from ignore file to vector if (!sLine.empty() && sLine[0] != '#')
{
vtlIgnoredDevices.emplace_back(sLine);
}
} }
// loop through found entries in ignore file
// Loop through found entries in ignore file
for (auto row : vtlIgnoredDevices) for (auto row : vtlIgnoredDevices)
{ {
list<Drive>::iterator it; it = plistDrives->begin();
for (it = plistDrives->begin(); it != plistDrives->end(); ++it) while (it != plistDrives->end())
{ {
string sUUID; string sUUID;
char *cLine = NULL; char *cLine = NULL;
size_t len = 0; size_t len = 0;
string sCMD = "blkid "; string sCMD = "blkid ";
sCMD.append(it->getPath()); sCMD.append(it->getPath());
// cout << "cmd: " << sCMD << endl;
FILE *outputfileBlkid = popen(sCMD.c_str(), "r"); // get UUID from drive FILE *outputfileBlkid = popen(sCMD.c_str(), "r");
if (outputfileBlkid == NULL) if (outputfileBlkid == NULL)
{ {
exit(EXIT_FAILURE); Logger::logThis()->error("Failed to execute blkid for: " + it->getPath());
++it;
continue;
} }
while ((getline(&cLine, &len, outputfileBlkid)) != -1) // parse UUID from blkid while ((getline(&cLine, &len, outputfileBlkid)) != -1)
{ {
size_t ptuuidPos = string(cLine).find("PTUUID"); size_t ptuuidPos = string(cLine).find("PTUUID");
if (ptuuidPos != string::npos) if (ptuuidPos != string::npos)
{ {
string sBlkidOut = string(cLine); string sBlkidOut = string(cLine);
sBlkidOut.erase(0, ptuuidPos + 8); sBlkidOut.erase(0, ptuuidPos + 8);
sBlkidOut.erase(8, sBlkidOut.length()); if (sBlkidOut.length() >= 8)
{
sBlkidOut.erase(8, sBlkidOut.length());
}
sUUID = sBlkidOut; sUUID = sBlkidOut;
// cout << "blkid uuid:" << sUUID << endl;
} }
} }
free(cLine); free(cLine);
pclose(outputfileBlkid); pclose(outputfileBlkid);
// cout << "blkid uuid:" << sUUID << endl;
if (!get<0>(row).compare(sUUID)) // compare uuid from ignore file and uuid from drive if (!get<0>(row).compare(sUUID))
{ {
// same uuid found than in ignore file --> ignore this drive
#ifdef LOG_LEVEL_HIGH #ifdef LOG_LEVEL_HIGH
Logger::logThis()->info("same uuid found than in ignore file --> ignore this drive: " + it->getPath()); Logger::logThis()->info("same uuid found in ignore file --> ignore this drive: " + it->getPath());
#endif #endif
it = plistDrives->erase(it); it = plistDrives->erase(it);
} }
else
{
++it;
}
} }
} }
} }
@ -533,7 +606,6 @@ void reHDD::startShredAllDrives(list<Drive> *plistDrives)
address << (void const *)&(*pTmpDrive); address << (void const *)&(*pTmpDrive);
Logger::logThis()->info("Started shred (all) for: " + pTmpDrive->getModelName() + "-" + pTmpDrive->getSerial() + " @" + address.str()); Logger::logThis()->info("Started shred (all) for: " + pTmpDrive->getModelName() + "-" + pTmpDrive->getSerial() + " @" + address.str());
#endif #endif
pTmpDrive->state = Drive::TaskState::SHRED_ACTIVE;
thread(ThreadShred, pTmpDrive).detach(); thread(ThreadShred, pTmpDrive).detach();
} }
} }
@ -685,17 +757,13 @@ void reHDD::handleEnter()
if (tmpSelectedDrive->state == Drive::TaskState::SHRED_SELECTED) if (tmpSelectedDrive->state == Drive::TaskState::SHRED_SELECTED)
{ {
Logger::logThis()->info("Started shred/check for: " + tmpSelectedDrive->getModelName() + "-" + tmpSelectedDrive->getSerial()); Logger::logThis()->info("Started shred/check for: " + tmpSelectedDrive->getModelName() + "-" + tmpSelectedDrive->getSerial());
tmpSelectedDrive->state = Drive::TaskState::SHRED_ACTIVE;
// task for drive is running --> don't show more task option
thread(ThreadShred, tmpSelectedDrive).detach(); thread(ThreadShred, tmpSelectedDrive).detach();
} }
if (tmpSelectedDrive->state == Drive::TaskState::DELETE_SELECTED) if (tmpSelectedDrive->state == Drive::TaskState::DELETE_SELECTED)
{ {
Logger::logThis()->info("Started delete for: " + tmpSelectedDrive->getModelName() + "-" + tmpSelectedDrive->getSerial()); Logger::logThis()->info("Started delete for: " + tmpSelectedDrive->getModelName() + "-" + tmpSelectedDrive->getSerial());
tmpSelectedDrive->state = Drive::TaskState::DELETE_ACTIVE; thread(ThreadDelete, tmpSelectedDrive).detach();
// task for drive is running --> don't show more task options
thread(ThreadDelete).detach();
} }
} }
} }
@ -756,14 +824,23 @@ bool reHDD::getSystemDrive(string &systemDrive)
continue; continue;
} }
// Logger::logThis()->info(currentLine); // Extract drive name from line (removing tree characters)
if ((cLine[0U] != '|') && (cLine[0U] != '`')) if ((cLine[0U] != '|') && (cLine[0U] != '`'))
{ {
systemDrive = currentLine; systemDrive = currentLine;
systemDrive.erase(std::remove(systemDrive.begin(), systemDrive.end(), '\n'), systemDrive.end()); // remove newline
systemDrive.erase(std::remove(systemDrive.begin(), systemDrive.end(), ' '), systemDrive.end()); // remove spaces // Find the actual drive name (after tree characters like └─, ├─)
// Logger::logThis()->info("Drive found: " + systemDrive); size_t lastAlpha = 0;
for (size_t i = 0; i < systemDrive.length(); i++)
{
if (isalpha(systemDrive[i]))
{
lastAlpha = i;
break;
}
}
systemDrive = systemDrive.substr(lastAlpha);
} }
if (currentLine.ends_with(" /boot/efi\n"s)) if (currentLine.ends_with(" /boot/efi\n"s))
@ -786,5 +863,17 @@ bool reHDD::getSystemDrive(string &systemDrive)
} }
pclose(outputfileHwinfo); pclose(outputfileHwinfo);
// Remove mountpoint (everything after first space)
size_t spacePos = systemDrive.find(' ');
if (spacePos != std::string::npos)
{
systemDrive = systemDrive.substr(0, spacePos);
}
// Remove all unwanted characters
systemDrive.erase(std::remove(systemDrive.begin(), systemDrive.end(), '\n'), systemDrive.end());
systemDrive.erase(std::remove(systemDrive.begin(), systemDrive.end(), '/'), systemDrive.end());
systemDrive.erase(std::remove(systemDrive.begin(), systemDrive.end(), '\r'), systemDrive.end());
return systemDriveFound; return systemDriveFound;
} }

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@ -38,14 +38,14 @@ int Shred::shredDrive(Drive *drive, int *ipSignalFd)
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
drive->bWasShredded = false;
drive->setTaskPercentage(0.0);
drive->u32DriveChecksumAfterShredding = UINT32_MAX;
drive->state = Drive::TaskState::SHRED_ACTIVE;
#ifdef DRYRUN #ifdef DRYRUN
for (int i = 0; i <= 500; i++) for (int i = 0; i <= 100; i++)
{ {
if (drive->state.load() != Drive::TaskState::SHRED_ACTIVE)
{
return 0;
}
drive->setTaskPercentage(i + 0.05); drive->setTaskPercentage(i + 0.05);
write(*ipSignalFd, "A", 1); write(*ipSignalFd, "A", 1);
usleep(20000); usleep(20000);
@ -204,9 +204,8 @@ int Shred::shredDrive(Drive *drive, int *ipSignalFd)
Logger::logThis()->info("Shred-Task: Checksum zero: " + to_string(drive->u32DriveChecksumAfterShredding) + " - Drive: " + drive->getSerial()); Logger::logThis()->info("Shred-Task: Checksum zero: " + to_string(drive->u32DriveChecksumAfterShredding) + " - Drive: " + drive->getSerial());
} }
#endif #endif
#endif
cleanup(); cleanup();
#endif
if ((drive->state.load() == Drive::TaskState::SHRED_ACTIVE) || (drive->state.load() == Drive::TaskState::CHECK_SUCCESSFUL) || (drive->state == Drive::TaskState::CHECK_FAILED)) if ((drive->state.load() == Drive::TaskState::SHRED_ACTIVE) || (drive->state.load() == Drive::TaskState::CHECK_SUCCESSFUL) || (drive->state == Drive::TaskState::CHECK_FAILED))
{ {