[REQ-END-114] Configure User Rights: Lock pages in memory
Target Scope
- Applicable Systems: Tier 2 client workstations and member servers. (For Tier 0 Privileged Access Workstations, refer to tightened baseline REQ-PAW-106). (For Domain Controllers, refer to REQ-DC-126).
- Operating Systems: Windows 10 Enterprise/Professional (1809 and above), Windows 11 Enterprise/Pro, Windows Server 2016, 2019, 2022, and 2025.
Implementation Details
- Priority: Medium
- GPO Path / Registry Location:
- Policy Display Name:
Lock pages in memory - Privilege Constant:
SeLockMemoryPrivilege - GPO Path:
Computer Configuration\Policies\Windows Settings\Security Settings\Local Policies\User Rights Assignment\Lock pages in memory - Registry Location: Stored inside local security database under privilege
SeLockMemoryPrivilegeset toNo one (Empty).
- Policy Display Name:
Rationale
The SeLockMemoryPrivilege allows a process to lock physical memory pages in RAM using APIs such as VirtualLock and Address Windowing Extensions (AWE) via AllocateUserPhysicalPages. Locking pages prevents the Windows virtual memory manager from paging data out to disk in pagefile.sys, ensuring high-performance memory retention.
1. Technical Threat Vector & Abuse Mechanics
If granted to untrusted users or processes, SeLockMemoryPrivilege enables significant denial-of-service and kernel degradation attacks: (1) Memory Starvation: A malicious program can lock large swathes of physical RAM, preventing the OS memory manager from trimming working sets or servicing other processes. This leads to severe thrashing, unresponsiveness, and kernel exhaustion; (2) Security Telemetry Blind Spots: An attacker can pin memory structures containing malware artifacts, complicating memory forensics and page-table inspection.
2. Architectural Defense & Least Privilege Enforcement
On general workstations and member servers, enforcing least privilege for this user right is critical for host isolation. Preventing unprivileged users or rogue applications from exercising this right stops local privilege escalation (LPE) and blocks adversaries from leveraging co-located user sessions to harvest credentials or pivot across the corporate subnet.
Under standard security baselines, SeLockMemoryPrivilege must be set to No one (Empty). Neither interactive users nor standard system accounts should possess this right on general workstations, PAWs, or Domain Controllers. Specialized database engines (such as Microsoft SQL Server) that utilize AWE memory locking should be configured with dedicated service accounts granted this privilege explicitly only on dedicated database servers.
3. MITRE ATT&CK Mapping
- T1499 - Endpoint Denial of Service
- T1055 - Process Injection
Legacy Impact & Compatibility
- Operational Impact: Configuring
SeLockMemoryPrivilegetoNo onehas zero impact on desktop endpoints, PAWs, or Domain Controllers. Enterprise database hosts requiring Large Page allocations should receive tailored GPO exceptions on their dedicated Organizational Unit. Auditing is captured under Security Event ID 4704.
Implementation Steps
Option A: Group Policy Object (GPO) Configuration (Preferred)
- Open the Group Policy Management Console (
gpmc.msc). - Navigate to the targeted GPO linked to Tier 2 systems (e.g.,
GPO_Hardening_Endpoints). - In the console tree, browse to:
Computer Configuration\Policies\Windows Settings\Security Settings\Local Policies\User Rights Assignment - Open the policy
Lock pages in memory. - Select the Define these policy settings check box.
- Click Add User or Group... and ensure the principal list is empty (or remove all assigned accounts/groups so that no principals are configured).
- Click Apply and OK.
- Apply and verify policy enforcement across target hosts using
gpupdate /forceand inspect withsecedit /export /cfg C:\Windows\Temp\sec_audit.cfg.
Option B: PowerShell & Registry Configuration (Remediation / Non-GPO)
Download Script: Configure-UraSeLockMemoryPrivilege.ps1
# Configure-UraSeLockMemoryPrivilege.ps1
$SecTempDir = Join-Path $env:TEMP "SecurityTemplates"
if (-not (Test-Path $SecTempDir)) { New-Item -Path $SecTempDir -ItemType Directory -Force | Out-Null }
$CfgFile = Join-Path $SecTempDir "ura_selockmemoryprivilege.cfg"
$DbFile = Join-Path $SecTempDir "secedit_selockmemoryprivilege.sdb"
$LogFile = Join-Path $SecTempDir "secedit.log"
$Process = Start-Process secedit -ArgumentList "/export /cfg `"$CfgFile`"" -Wait -NoNewWindow -PassThru
if ($Process.ExitCode -ne 0) { Throw "Failed to export security template" }
$ConfigText = Get-Content -Path $CfgFile -Raw
if ($ConfigText -notmatch "\[Privilege Rights\]") {
$ConfigText += "`r`n[Privilege Rights]`r`n"
}
$Lines = $ConfigText -split "`r?`n"
$NewLines = @()
$InPriv = $false
$KeyAdded = $false
foreach ($Line in $Lines) {
if ($Line -match "^\[(.*)\]$") {
if ($Matches[1] -eq "Privilege Rights") {
$InPriv = $true
} else {
$InPriv = $false
}
}
if ($InPriv -and $Line -match "^\s*SeLockMemoryPrivilege\s*=") {
$NewLines += "SeLockMemoryPrivilege = "
$KeyAdded = $true
} else {
$NewLines += $Line
}
}
if (-not $KeyAdded) {
# Find Privilege Rights section index and insert it right after
$Idx = $NewLines.IndexOf("[Privilege Rights]")
if ($Idx -ge 0) {
$NewLines.Insert($Idx + 1, "SeLockMemoryPrivilege = ")
} else {
$NewLines += "SeLockMemoryPrivilege = "
}
}
$NewLines | Set-Content -Path $CfgFile -Force
$Proc = Start-Process secedit -ArgumentList "/configure /db `"$DbFile`" /cfg `"$CfgFile`" /areas USER_RIGHTS /log `"$LogFile`"" -Wait -NoNewWindow -PassThru
if ($Proc.ExitCode -ne 0) { Throw "Failed to configure secedit user rights" }
Remove-Item -Path $CfgFile, $DbFile -ErrorAction SilentlyContinue
To audit the hardening status: Download Script: Get-UraSeLockMemoryPrivilegeStatus.ps1
# Get-UraSeLockMemoryPrivilegeStatus.ps1
$SecTempDir = Join-Path $env:TEMP "SecurityTemplates"
if (-not (Test-Path $SecTempDir)) { New-Item -Path $SecTempDir -ItemType Directory -Force | Out-Null }
$CfgFile = Join-Path $SecTempDir "ura_audit_selockmemoryprivilege.cfg"
$Process = Start-Process secedit -ArgumentList "/export /cfg `"$CfgFile`"" -Wait -NoNewWindow -PassThru
if ($Process.ExitCode -ne 0) {
Write-Output "Non-Compliant"
exit 1
}
$ConfigText = Get-Content -Path $CfgFile -Raw
Remove-Item -Path $CfgFile -ErrorAction SilentlyContinue
$Match = $ConfigText -match "(?mi)^\s*SeLockMemoryPrivilege\s*=\s*(.*)$"
$CurrentValue = ""
if ($Match) {
$CurrentValue = $Matches[1].Trim()
}
$Expected = ""
if ($CurrentValue -eq $Expected) {
Write-Output "Compliant"
exit 0
} else {
Write-Output "Non-Compliant"
exit 1
}
Sources & Compliance References
- ANSSI Active Directory Hardening Guide: ANSSI Active Directory Hardening Guide: R28 (User Rights Assignment)
- CIS Benchmark: 2.2.28 (L1) Ensure 'Lock pages in memory' is set to 'No One'
- Microsoft Security Baseline: User Rights Configuration specifications
- Microsoft Learn: User Rights Assignment Reference