Integrity Under Attack

Simulation of Manipulated Threats: Artificial Data Destruction Test That Intentionally Corrupts Data Before and After Transfer

An extreme attack scenario that goes beyond simple communication failures by revoking file permissions and forcibly deleting files at both source and target.

Image-F1 [OS Screen] A Linux terminal showing an attack script that deletes source files during transfer using rm -f or blocks all file access using chmod 000

Attack TypeMethodTimingIntentSystem Impact
Forced File Deletion (Source)Delete original file during transferDuring transferInduce data interruptionRead failure / transfer stop
Forced File Deletion (Target)Delete received file immediatelyBefore/near completionCorrupt resultData loss
Permission Revocation (Source)Remove read permissionDuring transferBlock accessFile inaccessible
Permission Change (Target)Remove write permissionDuring transferBlock storageWrite failure
Data TamperingOverwrite partial dataDuring transferBreak integrityData corruption
File LockMaintain process lockDuring transferInduce access conflictI/O error
File Move/RenameForce path changeDuring transferBreak trackingPath mismatch
Repeated AttacksContinuous repetitionEntire durationSystem stress testCompound errors

Helpless Collapse of File Systems: Legacy Transfers Fail Immediately Under External Interference or Permission Changes

A critical limitation where accessing or modifying a file during transfer causes immediate failure and breaks continuity.

Image-F2 [OS Screen] A Windows file copy error popup such as 'File Not Found' or 'Access Denied' that stops the transfer immediately

StageExternal InterventionLegacy BehaviorInternal ChangeResult
1. Normal StateNoneTransfer proceedsStable I/ONormal transfer
2. Access ConflictFile locked by processRead/write conflictLock collisionError occurs
3. Permission ChangeRead/Write removedAccess failsPermission errorTransfer stops
4. Source DeletionOriginal removedRead target lostFile not foundImmediate failure
5. Target DeletionReceived file removedWrite target lostPath mismatchTransfer error
6. Data TamperingPartial modificationIntegrity mismatchValidation failureFile corruption
7. Session ReactionAfter errorLimited retryNo state managementRecovery failure
8. Final ResultContinuous attackTransfer cannot continueContinuity collapseStops midway

Real-Time Bit-Level Monitoring: A Defense System That Detects Even the Smallest Changes and Maintains Integrity

An intelligent monitoring system that detects anomalies in real time using metadata comparison.

Image-F3 [Transfer Start UI] INNORIX engine scanning hash values and metadata at startup and monitoring attack attempts in real time

Detection StageSituationLegacy LimitationINNORIX BehaviorResult
1. StartNormal transferDelayed validationReal-time hash monitoringContinuous monitoring state
2. Micro TamperingPartial data changeUndetected or delayedImmediate block-level detectionInstant detection
3. Permission ChangeRead/Write alteredTransfer failureReal-time event trackingAnomaly identified
4. File DeletionSource/target removedStops with errorImmediate detectionState synchronized
5. Metadata ChangeFile attributes changeIgnored or delayedReal-time comparisonTampering identified
6. Pattern AnalysisAbnormal I/ODelayed detectionPattern-based anomaly detectionRisk signal generated
7. Response TriggerAfter tamperingManual intervention requiredAutomatic recovery triggeredImmediate response
8. Final StateContinuous attackPossible corruptionIntegrity preservedMaintained despite tampering

Immediate Self-Healing: Automatically Detecting and Restoring Deleted Target Files

A self-healing system that restores missing data without manual intervention.

Image-F4 [Transfer Monitor] When a target file is deleted, logs such as 'Self-Healing' or 'Verifying & Re-sending' appear and missing blocks are retransmitted instantly

Recovery StageSituationLegacy BehaviorLimitationINNORIX BehaviorResult
1. DetectionDeletion or tampering detectedStops after errorNo recovery capabilityImmediately identifies damaged segmentProblem isolated
2. IsolationMissing blocksEntire file affectedFull retransmission requiredOnly damaged segments isolatedImpact minimized
3. State RetentionError during transferSession terminatedProgress lostTransfer state preservedContinuity ensured
4. Recovery TriggerMissing dataManual retry requiredAdministrator intervention requiredAutomatic recovery triggeredImmediate retry
5. ReconstructionPartial deletionRestart from beginningTime wasteOnly missing blocks retransmittedEfficient recovery
6. Synchronization RestoreSource-target mismatchMismatch persistsIncomplete recoveryReal-time synchronizationFully restored
7. Transfer ContinuityDuring recoveryTransfer interruptedRestart requiredTransfer continues without interruptionNo downtime
8. Final StateRepeated attack environmentFailure or restart loopInstabilityFully restored automaticallySeamless transfer

Resolving Permission Conflicts: Maintaining Transfer Sessions Even Under Forced Permission Changes

A robust session management technology that prevents transfer interruption under permission changes.

Image-F5 [OS Screen] Even when all permissions are denied, INNORIX continues writing data at kernel level without interruption

StageEventLegacy BehaviorProblemINNORIX BehaviorResult
1. NormalPermissions validTransfer proceedsNoneStreaming continuesStable transfer
2. Permission ChangeRead permission removedAccess blockedTransfer stopsSession maintained and access preservedFlow maintained
3. Write RestrictionWrite permission removedWrite failureData lossBuffered temporary storage and recoveryNo data loss
4. Administrator InterventionPolicy or ACL changeSession terminatedRestart requiredAutomatically reapplies policyContinuity preserved
5. Security ConflictPermission mismatchError and stopFailurePermission abstraction handlingTransfer continues
6. Session PersistenceContinuous changesConnection droppedReconnect requiredIndependent session maintainedNo interruption
7. Re-access AttemptRetry failsRepeated errorNo progressState-based resumeRecovered successfully
8. Final StatePersistent permission changesTransfer impossibleFailureTransfer completed successfullyComplete success

Obsessive Integrity Proof: Guaranteeing Zero Bit Corruption Even After Attacks

A validation report proving 100% integrity despite continuous attacks.

Image-F6 [Result UI] Final report showing 'Final Integrity: Verified' and 'Checksum Match: 100%' despite numerous corrections

VerificationAttack ScenarioLegacy ResultProblemINNORIX MethodFinal Result
File PresenceDeletion or tampering during transferMissing files possibleRecovery failureReconstructs entire file set100% verified
Data ContentData modified mid-transferCorrupted dataIntegrity breakdownBit-level full validationIdentical to original
ChecksumContinuous attack conditionsPossible mismatchUnreliableFull hash comparisonPerfect match
Block ComparisonPartial block deletionPartial mismatchRequires retransmissionPrecise block matchingAll blocks matched
Permission ImpactACL changes during transferValidation failureInvalid transferPermission-independent validationNo impact
Target Data StateDeletion or overwriteData lossRequires retransmissionState-based recovery then validationFully restored
Transfer HistoryMultiple attack attemptsIncomplete logsNot traceableFull log-based reconstructionFully verified
Final VerdictContinuous attack environment“Probably normal”UncertainSource equals target 100%Full integrity guaranteed

Completion of Data Invariance: The Pinnacle of Secure Transfer That Protects Business Assets Under Any Attack

A new standard of enterprise data protection proving that even deletion and permission attacks cannot break transfer integrity.

Image-F7 [Result UI] Final dashboard showing all transfers marked as 'Success' regardless of failure scenarios

CategoryLegacy Security TransferLimitationINNORIX Security TransferResult
Data Protection ModelPerimeter-based protectionWeak against internal attacksProcess-level protectionEnd-to-End protection
Attack ResponseDetect then blockDamage already occurredReal-time detection + recoverySimultaneous prevention
Data TamperingPartial damage possibleIntegrity riskImmediate restorationTampering neutralized
Permission ChangesTransfer interruptionTask failurePermission-independent transferContinuity guaranteed
Failure HandlingRetry or stopTime/data lossAuto resume + recoveryNo interruption
Integrity ValidationPost-process validationUncertain resultsReal-time full validation100% verified
Operation ModelAdministrator-dependentHuman error riskFully automated controlUnattended operation
Final ConceptSecurity is a barrierLimited scopeSecurity is the transfer process itselfNew paradigm