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@@ -9,7 +9,7 @@ source and adds an SGU-specific provider, an mTLS-protected broker, Active
Directory synchronization, deployment scripts, and tests. Directory synchronization, deployment scripts, and tests.
Ready-to-run bootstrap packages are published on the Ready-to-run bootstrap packages are published on the
[releases page](https://github.lci.ulsa.mx/alexrg/SGU-CredentialProvider/releases). [releases page](https://gitea.lci.ulsa.mx/alexrg/SGU-CredentialProvider/releases).
## Authentication contract ## Authentication contract
@@ -44,6 +44,13 @@ skips that optional field. Missing or changed presentation HTML never blocks
authentication or password synchronization after the lightweight NTLM root has authentication or password synchronization after the lightweight NTLM root has
accepted the credential. accepted the credential.
For administrative staff and professors, the location page is enriched with its
ASP.NET PageMethods responses. `GetDireccion` supplies the saved state,
municipality and neighborhood identifiers; `GetLocalidadListado` resolves the
municipality name, and `GetColoniasListado` validates or supplies the
neighborhood name. This avoids reading the temporary `Seleccione...` values
visible while the browser populates those controls asynchronously.
Operational documentation: Operational documentation:
- [One-command server recovery and client enrollment](docs/bootstrap-recovery.md) - [One-command server recovery and client enrollment](docs/bootstrap-recovery.md)
@@ -55,11 +62,11 @@ Operational documentation:
- [Domain monitoring, usage reports, and six-month retention](docs/monitoring.md) - [Domain monitoring, usage reports, and six-month retention](docs/monitoring.md)
- [Decision: do not persist password verifiers in Redis](docs/decisions/0001-no-password-cache.md) - [Decision: do not persist password verifiers in Redis](docs/decisions/0001-no-password-cache.md)
| Prefix | Role | Default OU | | Prefix | Role | Default OU | Security group in the same OU |
|---|---|---| |---|---|---|---|
| `DO` | Professor / docente | `OU=Docentes,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx` | | `DO` | Professor / docente | `OU=Docentes,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx` | `SGU-Docentes` |
| `AL` | Student / alumno | `OU=Alumnos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx` | | `AL` | Student / alumno | `OU=Alumnos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx` | `SGU-Alumnos` |
| `AD` | Administrative | `OU=Administrativos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx` | | `AD` | Administrative | `OU=Administrativos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx` | `SGU-Administrativos` |
If the broker or institutional NTLM authority is unavailable, the provider If the broker or institutional NTLM authority is unavailable, the provider
submits the unchanged credentials to Windows for normal AD/cached-domain submits the unchanged credentials to Windows for normal AD/cached-domain
@@ -97,17 +104,37 @@ the latest .NET 10 x64 runtime. The broker is published self-contained.
Follow [docs/lab-runbook.md](docs/lab-runbook.md). Review Follow [docs/lab-runbook.md](docs/lab-runbook.md). Review
[docs/security.md](docs/security.md) before production deployment and [docs/security.md](docs/security.md) before production deployment and
[docs/architecture.md](docs/architecture.md) for the component contract. [docs/architecture.md](docs/architecture.md) for the component contract.
For a public Azure VM, use
[docs/azure-vpn-deployment.md](docs/azure-vpn-deployment.md). It supports an
optional Azure P2S gateway or direct enrollment restricted to explicit public
source CIDRs.
Never disable the built-in Microsoft password Credential Provider. It is the Never disable the built-in Microsoft password Credential Provider. It is the
supported recovery path if a third-party provider fails to load. supported recovery path if a third-party provider fails to load.
For a clean machine, the supported entry points are the release packages: For a clean Windows 10 or Windows 11 workstation, use the unified package:
- `sgu-windows-client-bootstrap-VERSION.zip` (x64 Pro, Enterprise or Education),
including optional Azure P2S setup for both versions.
Double-click `Start-SguClientEnrollment.cmd` and enter the server IP and domain
credentials, or provide the server IP on the command line:
```bat ```bat
Start-SguServerBootstrap.cmd 192.168.50.10 Start-SguServerBootstrap.cmd 192.168.50.10
Start-SguClientEnrollment.cmd 192.168.50.10 Start-SguClientEnrollment.cmd 192.168.50.10
``` ```
El bootstrap prueba interfaces y rutas hacia el servidor, incluyendo VPN ya
conectadas, sin pedir la IP del cliente ni exigir la misma subred. Conserva DHCP
y el DNS de Internet; descubre el dominio autenticado y configura DNS sólo para
ese dominio. Si recibe una IP pública, configura DoH y los nombres necesarios de
AD después de autenticar al servidor. El segmento público del cliente debe estar
autorizado en el servidor y su firewall perimetral. Los casos sin DHCP o sin ruta
muestran un diagnóstico.
Ver [client-enrollment.md](docs/client-enrollment.md) para requisitos y parámetros
avanzados de IP estática.
Linux clients are enrolled through their native PAM/SSSD stack instead of the Linux clients are enrolled through their native PAM/SSSD stack instead of the
Windows Credential Provider: Windows Credential Provider:
+17 -5
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@@ -27,8 +27,12 @@ accepted it. The broker then makes separately bounded, best-effort profile GETs.
It uses the administrative incident overview for `AD`, the student information It uses the administrative incident overview for `AD`, the student information
page for `AL`, and the portal menu as a conservative base for `DO`. After the page for `AL`, and the portal menu as a conservative base for `DO`. After the
incident page confirms an `AD` employee number, two additional GETs in the same incident page confirms an `AD` employee number, two additional GETs in the same
in-memory session read the structured name from `datos/personales.aspx` and the in-memory session read the structured name and selected sex from
address from `datos/ubicacion.aspx`. Docentes request `datos/personales.aspx` and the address inputs from `datos/ubicacion.aspx`. The
broker then calls the location page's `GetDireccion`, `GetLocalidadListado`, and
`GetColoniasListado` methods to correlate the saved state, municipality, and
neighborhood identifiers instead of reading transient `Seleccione...` options.
Docentes request
`nomina/consultanomina.aspx` for a matching employee number, email, employee `nomina/consultanomina.aspx` for a matching employee number, email, employee
type and job title, then attempt the same two shared staff modules without type and job title, then attempt the same two shared staff modules without
requiring any optional route to exist. A supplemental requiring any optional route to exist. A supplemental
@@ -61,7 +65,9 @@ passes the submitted password directly to ADSI `SetPassword`.
When the authenticated HTML exposes recognized stable IDs, the broker also When the authenticated HTML exposes recognized stable IDs, the broker also
updates the applicable `displayName`, `givenName`, `sn`, `mail`, `title`, updates the applicable `displayName`, `givenName`, `sn`, `mail`, `title`,
`department`, `employeeType`, `employeeID`, `streetAddress`, `l`, `st`, and `department`, `employeeType`, `employeeID`, `streetAddress`, `l`, `st`, and
`postalCode` attributes. Administrative and student numbers must match the six `postalCode` attributes. The SGU sex value is normalized to `Male`/`Female` and
written as the managed `SGU-Gender:` line in the built-in `info` attribute while
preserving unrelated notes. Administrative and student numbers must match the six
numeric digits of the requested identity before any role-specific metadata is numeric digits of the requested identity before any role-specific metadata is
trusted. Administrative personal and location pages are accepted only after trusted. Administrative personal and location pages are accepted only after
that incident-page match. Docente payroll metadata must match the requested that incident-page match. Docente payroll metadata must match the requested
@@ -74,8 +80,11 @@ password outcome.
Every synchronization also enforces one idempotent security-group membership Every synchronization also enforces one idempotent security-group membership
from the classified institutional prefix: `AL` to `SGU-Alumnos`, `AD` to from the classified institutional prefix: `AL` to `SGU-Alumnos`, `AD` to
`SGU-Administrativos`, and `DO` to `SGU-Docentes`. This happens synchronously `SGU-Administrativos`, and `DO` to `SGU-Docentes`. Each role group is stored
inside the broker before the institutional password is written to AD. A missing inside its corresponding user OU. During an upgrade,
the bootstrap moves a legacy group from the `Usuarios-SGU` root while preserving
its SID and memberships instead of creating a duplicate. Membership enforcement
happens synchronously inside the broker before the institutional password is written to AD. A missing
or inaccessible role group therefore fails provisioning instead of leaving a or inaccessible role group therefore fails provisioning instead of leaving a
new usable account without its authorization classification. Existing accounts new usable account without its authorization classification. Existing accounts
are repaired automatically on their next successful SGU authentication. are repaired automatically on their next successful SGU authentication.
@@ -118,6 +127,9 @@ settings for managed clients.
That computer GPO also owns the base lock-screen image and a per-logon command That computer GPO also owns the base lock-screen image and a per-logon command
for the personalized desktop wallpaper. The client-side renderer reads the for the personalized desktop wallpaper. The client-side renderer reads the
managed `SGU-Gender: Male|Female` line from the user's built-in `info` attribute
(without requiring an irreversible AD schema extension). It uses neutral Spanish
when that optional enrichment is unavailable. The renderer also reads the
authenticated user's `displayName` plus the computer object's `location` and authenticated user's `displayName` plus the computer object's `location` and
immediate parent OU, then composes those values over the bundled dark-blue immediate parent OU, then composes those values over the bundled dark-blue
background with the bundled Indivisa fonts. Missing directory attributes degrade background with the bundled Indivisa fonts. Missing directory attributes degrade
@@ -0,0 +1,136 @@
# Despliegue SGU en Azure y enrolamiento de Windows11-002
Fecha: 2026-09-10. Suscripción `1254ca0e-3950-4711-8b4b-e33b4677d950`.
## Infraestructura y bosque
| Componente | Configuración comprobada |
| --- | --- |
| Grupo de recursos / región | `rg-sgu-lab` / `centralus` |
| VM Azure / nombre Windows | `sgu-lab-dc` / `SGU-DC01` |
| Sistema y tamaño | Windows Server 2025 Azure Edition / `Standard_D2s_v5` |
| Dirección del controlador de dominio | `10.77.0.4` |
| Bosque / dominio / NetBIOS | `lci.lasalle.mx` / `lci.lasalle.mx` / `LCI` |
| SID del dominio Azure | `S-1-5-21-2324484875-464590158-1758545597` |
| VNet / pool P2S | `10.77.0.0/16` / `172.30.0.0/24` |
| Gateway | `sgu-lab-vpngw`, `VpnGw1AZ`, estado `Succeeded` |
| Protocolos configurados | IKEv2 y OpenVPN; prueba real con IKEv2 |
| Cliente Hyper-V / nombre Windows | `Windows11-002` / `DESKTOP-LM7D7OM` |
Se creó un bosque nuevo en Azure. Tiene el mismo nombre DNS que el bosque del
laboratorio local, pero una identidad distinta; no es una réplica ni una
migración de sus usuarios. El cliente de esta prueba consulta el bosque Azure
mediante una regla NRPT para `.lci.lasalle.mx`.
La promoción y la configuración SGU terminaron a las `22:10:36Z`. Se comprobó
`bootstrap-complete.json`, los servicios AD DS, DNS, ADWS, Netlogon y SGUAuthBroker,
los registros SRV y las pruebas dcdiag Connectivity, Advertising, SysVolCheck,
NetLogons y Services, todas con resultado satisfactorio. RustDesk, WinRM,
escritorio remoto y el colector de eventos quedaron configurados. Los puertos
administrativos y de AD no están abiertos a Internet.
## Enrolamiento y VPN
El cliente usa Windows 11 Enterprise LTSC x64, build 26100. Se creó el checkpoint
`Before-SGU-Azure-Enrollment-20260910` antes de modificarlo.
Se instaló un certificado de máquina y el perfil nativo `SGU Azure P2S`. Con el
túnel conectado, el bootstrap recibió la IP `10.77.0.4` y una credencial de dominio;
descubrió automáticamente dominio, NetBIOS, OU y la interfaz VPN `172.30.0.2`.
No recibió una IP del cliente ni una interfaz elegida manualmente.
El objeto `DESKTOP-LM7D7OM` quedó habilitado en
`OU=Laboratorio,DC=lci,DC=lasalle,DC=mx`. El proveedor SGU y sus certificados mTLS
quedaron instalados. La validación con dominio, broker, acceso remoto y RustDesk
exigidos devolvió `IsValid=True`, `Issues=[]`, `BrokerHealth=ok`,
`RemoteAccessReady=True` y `RustDeskReady=True`. El guard de enrolamiento terminó
con código 0.
Para este cliente Enterprise se instaló también `SGU Azure Device`, un perfil
VPNv2 de dispositivo bajo SYSTEM, con IKEv2, certificado de máquina, Always On y
ruta dividida `10.77.0.0/16`. El perfil manual permanece disponible. La NIC de
Internet conserva DHCP y DNS `172.18.176.1`; el túnel utiliza la dirección
`172.30.0.2` y la red del dominio.
La primera prueba de arranque del túnel detectó Netlogon 5719 y
`ERROR_NO_LOGON_SERVERS`: la red VPN estaba disponible después de que Netlogon
intentara localizar el dominio. Reiniciar únicamente Netlogon recuperó el canal
seguro sin restablecer la contraseña de máquina. Se probaron
`ExpectedDialupDelay=60` y `NegativeCachePeriod=3`, siguiendo la guía de Microsoft para
[conectividad de dominio tardía al arrancar](https://learn.microsoft.com/en-us/troubleshoot/windows-server/group-policy/netlogon-event-id-5719-or-group-policy-event-1129).
No resolvieron por sí solos esta VM; se devolvieron a sus valores predeterminados
0 y 45, respectivamente.
Se instaló `SGU-Azure-DomainConnectivity`, una tarea SYSTEM de arranque con
demora de 30 segundos y reintentos. Ejecuta
`scripts/Repair-SguAzureDomainConnectivity.ps1`: espera al perfil VPN y a LDAP
del controlador, comprueba el canal seguro y reinicia Netlogon únicamente si
es necesario. Después vuelve a ejecutar el guard SGU, espera su resultado y
reintenta fallos transitorios de resolución de grupos del dominio. No guarda credenciales
ni restablece automáticamente la contraseña de la cuenta de equipo. El
resultado se registra en
`C:\ProgramData\SGU\Enrollment\azure-domain-connectivity.json`.
La verificación final se realizó a las **17:00:55 UTC-6**, después del arranque
de las **16:57:35 UTC-6**, sin sesión interactiva (`UserName=null`):
- `SGU Azure Device=Connected`, `172.30.0.2`, red `DomainAuthenticated`.
- `Test-ComputerSecureChannel=True`; DC localizado en `10.77.0.4`.
- `IsValid=True`, sin incidencias; broker, acceso remoto y RustDesk correctos.
- `SGU-Azure-DomainConnectivity` terminó con código 0 y registró la recuperación
de Netlogon y `EnrollmentGuardResult=0`.
- `SGU-CredentialProvider-EnrollmentGuard` terminó con código 0.
- La captura muestra el acceso institucional SGU en la pantalla de inicio de
sesión. Se obtuvo directamente de Hyper-V, sin usar el escritorio del host.
En este arranque, la recuperación completa de dominio y guard terminó unos
dos minutos y medio después del inicio de Windows. No se comprobó un inicio de
sesión interactivo con un usuario institucional del nuevo bosque; se validaron
la unión, la confianza de máquina, los servicios y la salud mTLS.
## Correcciones y versiones usadas
- La plantilla Azure usa `VpnGw1AZ`, IP de gateway con zonas 1/2/3 y OpenVPN
como alternativa a IKEv2. Azure rechazó las opciones anteriores VpnGw1/SSTP.
- El disco del controlador tiene caché `None` para las escrituras de AD DS.
- El bootstrap del servidor omite la VF de Accelerated Networking que figura
activa sin una interfaz IPv4; configura el adaptador que realmente tiene IP.
La prueba de regresión cubre ese caso.
- Servidor: paquete local `0.5.2-azure.2`, SHA-256
`BE29411A1A1C0FE0BB2BB7DB0418EF40881C98A721B42D1F52D54E22487077AC`.
- Cliente: paquete local `0.5.2-azure.1`, con la corrección del saludo sin género.
Las diferencias posteriores de `.2` corresponden al servidor.
Estos paquetes de validación no reemplazan el release 0.5.1 publicado en Gitea.
La configuración del device tunnel y de su tarea de recuperación se aplicó a
esta VM; no está integrada como opción automática en el instalador publicado.
## Evidencias y acceso administrativo
Las evidencias están en `artifacts/azure-deployment-20260910/`, excluido de Git:
- `server-verification.json`: bootstrap del servidor y dcdiag.
- `azure-computer-verification.json`: objeto de equipo en el bosque Azure.
- `client-enrollment-result.json`: resultado original de unión.
- `client-validation-before-final-reboot.json`: validación completa antes del reinicio.
- `client-postboot-verification.json`: comprobación posterior del arranque,
incluyendo canal seguro, VPN, usuario interactivo y resultados de las tareas.
- `windows11-azure-login.jpg`: captura directa del framebuffer de Hyper-V.
- `enable-device-tunnel.ps1`: XML y comandos usados para el túnel de esta VM.
- `state.json`: inventario y estado de la operación.
La cuenta administrativa del bosque es `LCI\azureadmin`. Su contraseña generada
está protegida con DPAPI en `credentials.clixml`, dentro de ese directorio del
host, para el usuario que ejecutó el despliegue. No se guardó en este documento.
La contraseña DSRM se generó en la VM Azure y se conserva protegida para SYSTEM
en `C:\ProgramData\SGU\Secrets\dsrm-password.clixml`.
La revisión automática rechazó la limpieza de la cuenta de almacenamiento
temporal `sgustagea8e952c02421` y su rol, y después la limpieza de archivos y de
la tarea temporal del cliente, sin indicar un motivo específico. No se
eliminaron. El PFX del cliente permanece cifrado y bajo una ACL restringida a
Administradores/SYSTEM; la tarea instaladora del túnel no tiene disparador
recurrente. Esta limpieza queda pendiente.
OpenVPN y otras configuraciones de VPN no se probaron. Esta validación no
extiende el soporte Always On device tunnel a ediciones Windows Pro.
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@@ -0,0 +1,225 @@
# Active Directory SGU en Azure: VPN opcional o enrolamiento directo
La misma plantilla despliega Active Directory en Windows Server 2025 y permite
elegir entre Azure VPN Gateway Point-to-Site (P2S) o acceso público directo. El
modo directo restringe AD, WinRM, Auth Broker y RustDesk a los CIDR públicos
indicados; el cliente configura DoH y la resolución del dominio automáticamente.
La lista pública vacía no expone esos servicios.
La plantilla crea:
- VNet `10.77.0.0/16`, subnet del DC `10.77.0.0/24` y, si se solicita, `GatewaySubnet`;
- Windows Server 2025 con IP privada estática `10.77.0.4` reservada en la NIC;
- IP pública Standard para la VM, protegida por NSG;
- VPN Gateway opcional `VpnGw1AZ` con IKEv2/OpenVPN y autenticación por certificados;
- pool P2S `172.30.0.0/24`, autorizado en los firewalls SGU;
- DNS de la NIC del servidor apuntando a `10.77.0.4`.
Los prefijos privados deben ser RFC1918 y no deben solaparse con las redes usadas
por Hyper-V, el `Default Switch`, Wi-Fi o Ethernet locales. Los prefijos de
enrolamiento directo deben ser CIDR IPv4 públicos explícitos.
## 1. Elegir el modo de conectividad
Para P2S, crear la autoridad y el certificado de cada cliente:
En la estación administrativa donde está el repositorio:
```powershell
$p2s = .\scripts\New-SguAzureP2sCertificates.ps1 `
-ClientName 'AdminWorkstation'
```
Se pide una contraseña para proteger el PFX. La clave privada de la autoridad
raíz permanece no exportable en `Cert:\CurrentUser\My`; Azure recibe solamente
el `.cer` público. El PFX es una credencial de acceso a la VNet: se debe copiar
únicamente a la VM correspondiente y eliminarse de ubicaciones compartidas
después de importarlo.
Para acceso directo no se necesita certificado P2S. Se necesita conocer el
segmento público de salida del laboratorio; por ejemplo, la IP
`200.13.89.183` pertenece a `200.13.89.0/24`.
## 2. Desplegar Azure
Requisitos: Azure CLI, una sesión iniciada con `az login`, permisos para crear
red, gateway, IP pública y VM, y una suscripción seleccionable.
```powershell
$azure = .\scripts\Deploy-SguAzureInfrastructure.ps1 `
-SubscriptionId '00000000-0000-0000-0000-000000000000' `
-ResourceGroupName 'rg-sgu-lab' `
-Location 'centralus' `
-AdministratorUsername 'azureadmin' `
-P2sRootCertificatePath $p2s.RootCertificatePath
```
Sin VPN y autorizando un laboratorio completo:
```powershell
$azure = .\scripts\Deploy-SguAzureInfrastructure.ps1 `
-SubscriptionId '00000000-0000-0000-0000-000000000000' `
-ResourceGroupName 'rg-sgu-lab' `
-Location 'centralus' `
-AdministratorUsername 'azureadmin' `
-DeployVpnGateway $false `
-PublicEnrollmentSourceAddressPrefixes '200.13.89.0/24' `
-AdministratorSourceAddressPrefix '200.13.89.0/24'
```
La contraseña local de la VM se solicita como `SecureString`, se coloca sólo en
un archivo temporal con ACL exclusiva para el usuario actual y se elimina al
terminar. No aparece en los argumentos de Azure CLI ni queda guardada en el
repositorio.
Por omisión ningún puerto administrativo de la VM se abre desde Internet. Para
habilitar temporalmente RDP durante el bootstrap, indique exclusivamente su IP
pública actual:
```powershell
-AdministratorSourceAddressPrefix '203.0.113.10/32'
```
No utilice `0.0.0.0/0`. El despliegue de un VPN Gateway suele tardar bastante
más que la VM; omitirlo reduce tiempo y costo. El comando espera hasta que Azure
entregue un resultado final.
## 3. Conectarse al servidor
Cuando el gateway esté `Succeeded`:
```powershell
$vpn = .\scripts\Get-SguAzureP2sPackage.ps1 `
-SubscriptionId '00000000-0000-0000-0000-000000000000' `
-ResourceGroupName 'rg-sgu-lab' `
-VpnGatewayName $azure.VpnGatewayName
.\scripts\Install-SguAzureP2sClient.ps1 `
-VpnProfilePackagePath $vpn.PackagePath `
-ClientCertificatePfxPath $p2s.ClientCertificatePath `
-ClientRootCertificatePath $p2s.RootCertificatePath `
-Connect
```
Con el túnel conectado, use RDP contra `10.77.0.4` y habilite la redirección de
una unidad local para copiar `sgu-server-bootstrap-VERSION.zip` a la VM. La NIC
ya apunta a su futura dirección DNS propia, por lo que la resolución pública no
está disponible hasta que el bootstrap instale DNS y sus reenviadores. Así no es
necesario abrir 3389 en la IP pública. La opción
`AdministratorSourceAddressPrefix` queda como ruta de recuperación temporal.
En modo directo, use RDP contra `$azure.DomainControllerPublicIp` desde un origen
incluido en `AdministratorSourceAddressPrefix`. RDP y enrolamiento tienen listas
separadas para poder retirar RDP sin interrumpir los clientes.
## 4. Ejecutar el bootstrap dentro de Windows Server
Descargue y extraiga `sgu-server-bootstrap-VERSION.zip` dentro de la VM. La IP
que recibe el bootstrap es la **privada** de la NIC, nunca la pública:
```bat
Start-SguAzureServerBootstrap.cmd 10.77.0.4 172.30.0.0/24
```
El modo `PlatformManaged` comprueba que Azure ya asignó `10.77.0.4/24`, pero no
deshabilita DHCP, no reemplaza la ruta predeterminada y no reinicia el adaptador.
El DNS de AD publica únicamente la dirección privada. `168.63.129.16` se usa
como reenviador DNS de la plataforma Azure.
Después del reinicio de promoción, verificar:
```powershell
Get-Content C:\ProgramData\SGU\Bootstrap\Server\bootstrap-complete.json
Resolve-DnsName _ldap._tcp.dc._msdcs.lci.lasalle.mx -Type SRV -Server 10.77.0.4
```
El JSON debe indicar `NetworkConfigurationMode = PlatformManaged`, el pool P2S
en `TrustedClientNetworks` cuando exista VPN y los CIDR directos en
`PublicEnrollmentNetworks` cuando se hayan habilitado.
## 5. Enrolar cada VM Hyper-V
En la estación administrativa, emita una credencial distinta por equipo:
```powershell
$w11 = .\scripts\New-SguAzureP2sCertificates.ps1 -ClientName 'Windows11'
```
Copie a la VM Windows 10/11 de Hyper-V:
- `sgu-windows-client-bootstrap-VERSION.zip` extraído (Windows 10/11 x64);
- `$vpn.PackagePath`;
- `$w11.ClientCertificatePath`;
- `sgu-azure-p2s-root.cer`.
Desde la carpeta extraída del bootstrap de cliente, instale P2S y enrole:
```bat
Start-SguAzureClientEnrollment.cmd 10.77.0.4 C:\SGU\sgu-azure-vpn-client.zip C:\SGU\sgu-azure-p2s-Windows11.pfx C:\SGU\sgu-azure-p2s-root.cer
```
En una sola ejecución el comando:
1. importa el certificado de cliente en `LocalMachine\My` sin dejar la
contraseña en disco;
2. instala un perfil IKEv2 de todos los usuarios llamado `SGU Azure P2S`;
3. agrega la ruta `10.77.0.0/16` y una regla NRPT que envía sólo
`.lci.lasalle.mx` al DNS `10.77.0.4`;
4. conecta P2S con certificado de máquina;
5. registra mTLS, instala SGU/RustDesk y une el equipo al dominio;
6. reinicia Windows.
Para el modo directo, cada Windows 10/11 usa el lanzador normal y la IP pública;
no necesita perfil ni certificado VPN:
```bat
Start-SguClientEnrollment.cmd 20.9.81.130
```
El bootstrap pide la cuenta de dominio, prueba todas las interfaces con ruta,
descubre el bosque por WinRM, instala el certificado público DoH, configura NRPT
y los nombres del DC/broker, registra mTLS y une la máquina. No pide una IP del
cliente ni una interfaz.
Si la red local bloquea IKEv2 (UDP 500/4500), se puede generar un perfil
OpenVPN sobre TCP 443 para Azure VPN Client. Ese fallback requiere instalar
y configurar el cliente correspondiente; el bootstrap instala el perfil nativo
IKEv2. Azure ya no admite SSTP al crear este gateway.
La prueba real con `Windows11-002` y un bosque en Azure está documentada en
[la validación del despliegue del 10 de septiembre de 2026](azure-deployment-validation-2026-09-10.md).
Incluye un device tunnel para Enterprise y recuperación de Netlogon cuando el
túnel tarda en estar disponible al arrancar. Son configuraciones adicionales
aplicadas a esa VM; el instalador publicado crea el perfil manual anterior.
Windows 10/11 Pro admite unión a AD y VPN nativa, pero Microsoft no licencia el
**Always On VPN device tunnel** para Pro. Por ello el perfil se instala para
todos los usuarios y se puede seleccionar desde el control de red de la
pantalla de inicio de sesión; antes del primer logon de una cuenta de dominio,
conecte `SGU Azure P2S` allí. Enterprise/Education pueden recibir posteriormente
un device tunnel Always On, pero eso no es requisito del enrolamiento SGU.
Validación dentro del cliente, con la VPN conectada o usando el acceso directo:
```powershell
Get-VpnConnection -Name 'SGU Azure P2S' -AllUserConnection
Get-DnsClientNrptRule | Where-Object DisplayName -like 'SGU Azure P2S*'
Test-NetConnection 20.9.81.130 -Port 5985
Resolve-DnsName _ldap._tcp.dc._msdcs.lci.lasalle.mx -Type SRV
nltest.exe /dsgetdc:lci.lasalle.mx
```
## Alcance de red y referencias
P2S mantiene los puertos de AD dentro del túnel. El modo directo abre el conjunto
necesario para la unión sólo desde `publicEnrollmentSourceAddressPrefixes` y
replica la misma lista en Windows Firewall mediante `PublicEnrollmentNetworks`.
Prefiera `/32` si la salida es estable; use `/24` únicamente cuando deba admitir
todo el segmento. Retire el CIDR cuando termine la prueba si ya no se requiere.
- [Azure VPN Gateway P2S con certificados](https://learn.microsoft.com/en-us/azure/vpn-gateway/point-to-site-certificate-gateway)
- [Cliente P2S nativo de Windows](https://learn.microsoft.com/en-us/azure/vpn-gateway/point-to-site-vpn-client-certificate)
- [Instalación de certificados P2S](https://learn.microsoft.com/en-us/azure/vpn-gateway/point-to-site-how-to-vpn-client-install-azure-cert)
- [Puertos necesarios para unir un dominio](https://learn.microsoft.com/en-us/troubleshoot/windows-server/identity/active-directory-domain-join-troubleshooting-guidance)
- [Requisitos de edición de Windows](https://learn.microsoft.com/en-us/windows/security/licensing-and-edition-requirements)
- [Limitación de Always On device tunnel](https://learn.microsoft.com/en-us/azure/vpn-gateway/vpn-gateway-howto-always-on-device-tunnel)
+50 -7
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@@ -1,6 +1,6 @@
# Recuperación desde cero y alta en una sola ejecución # Recuperación desde cero y alta en una sola ejecución
Los releases entregan tres ZIP independientes. Cada uno contiene sus binarios, Los releases entregan cuatro ZIP independientes. Cada uno contiene sus binarios,
scripts, instalador offline requerido y un manifiesto SHA-256 interno. No contienen scripts, instalador offline requerido y un manifiesto SHA-256 interno. No contienen
contraseñas, claves privadas ni certificados reutilizables. contraseñas, claves privadas ni certificados reutilizables.
@@ -17,6 +17,11 @@ Compatible con Windows Server con Windows PowerShell 5.1. El servidor necesita
una interfaz privada para el dominio y, para autenticar contra SGU, salida HTTPS una interfaz privada para el dominio y, para autenticar contra SGU, salida HTTPS
por esa u otra interfaz. por esa u otra interfaz.
Cuando el servidor vive en Azure, no se configura la IP dentro del sistema
operativo. La NIC reserva la IP privada y se usa el modo `PlatformManaged`; el
procedimiento completo, con VPN Gateway opcional o enrolamiento público directo, está en
[azure-vpn-deployment.md](azure-vpn-deployment.md).
1. Descargar y extraer `sgu-server-bootstrap-VERSION.zip`. 1. Descargar y extraer `sgu-server-bootstrap-VERSION.zip`.
2. Abrir el directorio extraído. 2. Abrir el directorio extraído.
3. Ejecutar, indicando la IP fija que tendrá el controlador: 3. Ejecutar, indicando la IP fija que tendrá el controlador:
@@ -65,6 +70,18 @@ privada. También vuelve a iniciar brevemente esa NIC privada si Windows Server
2025 todavía la clasifica como Public al terminar la promoción. La salida HTTPS 2025 todavía la clasifica como Public al terminar la promoción. La salida HTTPS
continúa por la NIC que tenga el gateway predeterminado. continúa por la NIC que tenga el gateway predeterminado.
Para permitir clientes que llegan directamente desde un segmento público, use
`-PublicEnrollmentNetworks` al preparar el servidor. El parámetro valida y
normaliza cada CIDR y limita a esos orígenes los puertos de AD, DoH, WinRM,
broker y RustDesk:
```powershell
.\Initialize-SguDomainController.ps1 `
-ServerIPv4Address 10.77.0.4 `
-NetworkConfigurationMode PlatformManaged `
-PublicEnrollmentNetworks 200.13.89.0/24
```
El broker arranca con una lista de clientes vacía. Eso no abre el servicio: mTLS El broker arranca con una lista de clientes vacía. Eso no abre el servicio: mTLS
rechaza todos los certificados hasta que el primer cliente registra el suyo. rechaza todos los certificados hasta que el primer cliente registra el suyo.
Los archivos opcionales colocados en `payload\server-content\Packages` al crear Los archivos opcionales colocados en `payload\server-content\Packages` al crear
@@ -91,38 +108,64 @@ Se admiten Pro, Enterprise y Education. Windows Home no puede unirse a Active
Directory local ni actuar como host RDP; el bootstrap lo detecta antes de cambiar Directory local ni actuar como host RDP; el bootstrap lo detecta antes de cambiar
el equipo y explica que se debe actualizar la edición. el equipo y explica que se debe actualizar la edición.
1. Descargar y extraer `sgu-client-bootstrap-VERSION.zip`. 1. Descargar y extraer `sgu-windows-client-bootstrap-VERSION.zip`, común para
Windows 10 y Windows 11 x64 Pro, Enterprise o Education.
2. Ejecutar con la IP fija actual del controlador de dominio: 2. Ejecutar con la IP fija actual del controlador de dominio:
```bat ```bat
Start-SguClientEnrollment.cmd 192.168.50.10 Start-SguClientEnrollment.cmd 192.168.50.10
``` ```
También puede hacerse doble clic y escribir la IP del controlador. El cliente
conserva sus IP/DHCP y prueba WinRM por las interfaces con rutas disponibles,
incluyendo VPN y redes enrutadas. No requiere compartir subred con el servidor.
Si una NIC sólo tiene APIPA, necesita DHCP o una IP asignada por el administrador;
el bootstrap no inventa direcciones. Si falla, la ventana permanece abierta y
el error queda en `C:\ProgramData\SGU\Bootstrap\Client\latest-error.log`.
El manifiesto usa `Auto` y ambos Windows ejecutan el mismo código. Azure P2S está
incluido para ambos; otras VPN ya conectadas usan el lanzador habitual.
También puede proporcionarse directamente la IP pública del DC. Tras autenticar
WinRM, el bootstrap configura DoH y resolución dividida, valida el SRV de AD y
continúa sin pedir la IP del cliente. El segmento de salida del laboratorio debe
estar en la lista `PublicEnrollmentNetworks` del servidor y en el NSG/firewall
perimetral; por ejemplo, `200.13.89.0/24` cubre las salidas `.1` a `.254`.
Después de UAC, se solicita interactivamente la credencial autorizada para unir Después de UAC, se solicita interactivamente la credencial autorizada para unir
equipos. La contraseña existe sólo en memoria. El bootstrap: equipos. La contraseña existe sólo en memoria. El bootstrap:
1. apunta el DNS del adaptador al IP proporcionado; 1. selecciona una interfaz con conectividad comprobada al servidor;
2. abre una sesión WinRM autenticada con el DC y verifica que pertenece al 2. abre una sesión WinRM autenticada con el DC, descubre el dominio y configura
dominio esperado; DNS mediante NRPT sólo para ese dominio; cuando la IP es pública, además
configura y valida automáticamente DoH, conservando el DNS de Internet;
3. crea en el cliente un certificado mTLS RSA-3072 no exportable y envía sólo su 3. crea en el cliente un certificado mTLS RSA-3072 no exportable y envía sólo su
parte pública al broker; parte pública al broker;
4. recupera por esa sesión autenticada el certificado público del broker; 4. recupera por esa sesión autenticada el certificado público del broker;
5. instala el runtime .NET 10 offline y el Credential Provider; 5. instala el runtime .NET 10 offline y el Credential Provider;
6. valida binarios, registro COM, certificados y salud del broker; 6. valida binarios, registro COM, certificados y salud del broker;
7. instala el guardián de reparación al arranque; 7. instala el guardián de reparación al arranque;
8. sólo entonces ejecuta `Add-Computer` dentro de `OU=Laboratorio` y reinicia; 8. sólo entonces ejecuta `Add-Computer` en `OU=Laboratorio` si existe, o en el
contenedor de equipos predeterminado del dominio, y reinicia;
9. al arrancar, activa RDP/NLA, WinRM y las reglas Domain, y vuelve a validar el 9. al arrancar, activa RDP/NLA, WinRM y las reglas Domain, y vuelve a validar el
enrolamiento. enrolamiento.
10. instala RustDesk desde el MSI oficial comprobado, lo apunta al servidor 10. instala RustDesk desde el MSI oficial comprobado, lo apunta al servidor
`rustdesk.lci.lasalle.mx` y registra el ID del dispositivo en el inventario `rustdesk.lci.lasalle.mx` y registra el ID del dispositivo en el inventario
protegido del DC. protegido del DC.
Cuando la IP del DC es pública, el paso 2 crea o reutiliza DoH en el servidor,
recupera su certificado público, configura el cliente y valida el registro SRV
antes de continuar. El mismo doble clic funciona en LAN, una VPN ya conectada o
Internet directo; el operador sólo proporciona IP del DC y credenciales.
Para elegir adaptador o nombre del equipo explícitamente: Para elegir adaptador o nombre del equipo explícitamente:
```powershell ```powershell
powershell.exe -NoProfile -ExecutionPolicy Bypass ` powershell.exe -NoProfile -ExecutionPolicy Bypass `
-File .\Invoke-SguClientBootstrap.ps1 ` -File .\Invoke-SguClientBootstrap.ps1 `
-DomainControllerIPv4Address 192.168.50.10 ` -DomainControllerIPv4Address 192.168.50.10 `
-ClientIPv4Address 192.168.50.11 `
-ClientPrefixLength 24 `
-NetworkInterfaceAlias 'Ethernet' ` -NetworkInterfaceAlias 'Ethernet' `
-NewComputerName 'LCI-101' -NewComputerName 'LCI-101'
``` ```
@@ -186,4 +229,4 @@ la línea de comandos. Para empaquetar recursos institucionales adicionales:
-ServerContentPath C:\Preparacion\Packages -ServerContentPath C:\Preparacion\Packages
``` ```
`SHA256SUMS-VERSION.txt` permite comprobar los tres ZIP antes de usarlos. `SHA256SUMS-VERSION.txt` permite comprobar los cuatro ZIP antes de usarlos.
+81 -9
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@@ -1,7 +1,12 @@
# Enrolamiento obligatorio de clientes SGU # Enrolamiento obligatorio de clientes SGU
Para una instalación limpia de Windows se prefiere el único punto de entrada Para Windows 10 y Windows 11 se usa un solo paquete:
empaquetado:
- `sgu-windows-client-bootstrap-VERSION.zip` (x64, Pro, Enterprise o Education).
Extraer el ZIP y hacer doble clic en `Start-SguClientEnrollment.cmd`. Aceptar
UAC, introducir la IP del controlador y la cuenta del dominio con su contraseña.
También se puede indicar el servidor desde consola:
```bat ```bat
Start-SguClientEnrollment.cmd 192.168.50.10 Start-SguClientEnrollment.cmd 192.168.50.10
@@ -12,6 +17,69 @@ una clave privada y luego ejecuta la transacción proveedor-primero. Las
instrucciones completas están en instrucciones completas están en
[`bootstrap-recovery.md`](bootstrap-recovery.md). [`bootstrap-recovery.md`](bootstrap-recovery.md).
El único dato de red necesario es la IPv4 del controlador. El bootstrap prueba
WinRM desde las direcciones de las interfaces conectadas, incluyendo túneles
VPN, empezando por la ruta elegida por Windows. Si ésta falla, prueba las demás
rutas disponibles. Cliente y servidor pueden estar en subredes distintas.
Si la red todavía está inicializando, reintenta el descubrimiento durante
20 segundos antes de informar el último diagnóstico.
Conserva DHCP, direcciones y puertas de enlace. Sólo si Windows elige otra
interfaz agrega una ruta persistente `/32` hacia ese servidor por la interfaz
comprobada; no modifica la ruta de Internet. Ante cualquier error conserva la
ventana y escribe el diagnóstico en
`C:\ProgramData\SGU\Bootstrap\Client\latest-error.log`.
El dominio DNS, NetBIOS y contenedor de equipos se descubren en la sesión
autenticada. Usa `OU=Laboratorio` si existe en la raíz del dominio y, en caso
contrario, el contenedor de equipos configurado en AD. Los parámetros
`-DomainName`, `-DomainNetbios` y `-ComputerOuDn` permiten validarlos o elegirlos
explícitamente. Para otra cuenta, editar el usuario sugerido como
`DOMINIO\usuario` o `usuario@dominio`. No se guardan contraseñas.
Si la IPv4 proporcionada es pública, el mismo flujo configura automáticamente
la conectividad directa. Después de autenticar WinRM, el servidor crea o reutiliza
un certificado DoH, publica DNS cifrado en TCP 443 y devuelve únicamente su
certificado público. El cliente lo confía, registra el servidor DoH, agrega la
regla NRPT y fija localmente los nombres del DC, dominio, broker y RustDesk a esa
IP. A continuación comprueba el registro SRV de AD y continúa con la unión. El
operador sigue introduciendo solamente IP del DC, usuario y contraseña.
El servidor o firewall perimetral debe autorizar previamente el segmento público
del laboratorio. En el bootstrap del servidor se hace con
`-PublicEnrollmentNetworks 200.13.89.0/24`; en Azure, con
`-PublicEnrollmentSourceAddressPrefixes 200.13.89.0/24`. La lista vacía no abre
puertos. Este modo requiere Windows 11 o una versión de Windows 10 que exponga
los cmdlets DNS-over-HTTPS; en equipos anteriores funciona si la red ya permite
DNS tradicional hacia el DC.
El DNS se configura mediante una regla NRPT para el dominio descubierto,
conservando los servidores DNS de los adaptadores y la resolución de Internet.
Las políticas DNS/VPN corporativas deben permitir resolver ese dominio.
El servidor necesita el bootstrap SGU (AD/DNS, WinRM, Auth Broker y RustDesk):
este paquete no es un enrolador genérico de Microsoft Entra ID ni instala SGU
en un directorio ajeno automáticamente. Se comprueban TCP 53, 88, 135, 389, 445,
5985 y 8443; la unión también requiere DNS/Kerberos por UDP y RPC dinámico
según la configuración de AD. Estas pruebas no sustituyen la unión real.
Una VPN de cualquier proveedor ya conectada utiliza el mismo lanzador. Para
instalar la VPN Azure IKEv2 se incluyen `Start-SguAzureClientEnrollment.cmd` e
`Install-SguAzureP2sClient.ps1` en el mismo ZIP para ambos Windows; la primera
instalación requiere perfil y certificados. La conectividad antes del inicio
de sesión depende de la VPN y sus políticas, no se puede deducir de la IP del DC.
Una interfaz con sólo APIPA (`169.254.x.x`), sin DHCP o sin ruta necesita que
el administrador configure la red o conecte la VPN. El bootstrap no inventa una
IP libre ni una puerta de enlace. Para una LAN estática se mantienen los
parámetros avanzados `-ClientIPv4Address`, `-ClientPrefixLength` y
`-NetworkInterfaceAlias`; la IP y la interfaz deben indicarse juntas.
El manifiesto usa `CompatibilityProfile: Auto`. No hay restricciones de VPN
por Windows 10/11; los nombres antiguos de perfil se aceptan como parámetros
obsoletos. Se valida x64, edición con unión a AD y Windows 10 desde 1607 o
Windows 11 (el runtime incluido es .NET 10; usar una edición/build compatible
con su ciclo de soporte). Credential Provider, mTLS, cuenta `alumno`, RustDesk,
monitorización y autorreparación conservan la misma implementación.
El flujo administrado instala y valida el Credential Provider **antes** de El flujo administrado instala y valida el Credential Provider **antes** de
ejecutar `Add-Computer`. La pertenencia al dominio es el último cambio; si falta ejecutar `Add-Computer`. La pertenencia al dominio es el último cambio; si falta
el runtime, un certificado, el registro COM, la directiva predeterminada o la el runtime, un certificado, el registro COM, la directiva predeterminada o la
@@ -72,11 +140,14 @@ Orden de la transacción:
1. instala .NET y los binarios versionados; 1. instala .NET y los binarios versionados;
2. registra COM, configura SGU como proveedor predeterminado y oculta el 2. registra COM, configura SGU como proveedor predeterminado y oculta el
último usuario que cerró sesión; último usuario que cerró sesión;
3. instala el guard de autorreparación; 3. crea o actualiza la cuenta local estándar `alumno` con la contraseña
4. exige health mTLS del broker y ejecuta las comprobaciones locales; inicial `ingenieria` sólo al crearla; si ya existe conserva su contraseña,
5. configura DNS del dominio; la habilita y garantiza que no pertenezca a Administradores;
6. sólo entonces ejecuta `Add-Computer` en `OU=Laboratorio` y reinicia; 4. instala el guard de autorreparación;
7. al arrancar, el guard habilita RDP, NLA y WinRM y comprueba el estado final. 5. exige health mTLS del broker y ejecuta las comprobaciones locales;
6. configura DNS del dominio;
7. sólo entonces ejecuta `Add-Computer` en `OU=Laboratorio` y reinicia;
8. al arrancar, el guard habilita RDP, NLA y WinRM y comprueba el estado final.
La directiva de Windows **Assign a default credential provider** selecciona SGU La directiva de Windows **Assign a default credential provider** selecciona SGU
por defecto. El instalador también habilita **Interactive logon: Don't display por defecto. El instalador también habilita **Interactive logon: Don't display
@@ -138,8 +209,9 @@ Start-ScheduledTask -TaskName SGU-CredentialProvider-EnrollmentGuard
Un resultado válido exige simultáneamente binario y registro COM, configuración, Un resultado válido exige simultáneamente binario y registro COM, configuración,
certificados, .NET 10, proveedor SGU predeterminado, último usuario oculto, certificados, .NET 10, proveedor SGU predeterminado, último usuario oculto,
enumeración local deshabilitada y proveedor de contraseña de Microsoft enumeración local deshabilitada, cuenta local estándar `alumno` habilitada y
preservado. El script de reparación se encuentra en fuera del grupo Administradores, y proveedor de contraseña de Microsoft
preservado. El guard recrea o corrige esa cuenta de forma idempotente. El script de reparación se encuentra en
`C:\ProgramData\SGU\Enrollment` con ACL exclusiva para `SYSTEM` y `C:\ProgramData\SGU\Enrollment` con ACL exclusiva para `SYSTEM` y
administradores. administradores.
+17 -5
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@@ -1,5 +1,14 @@
# Security model # Security model
## Public Azure deployment
The Azure topology supports certificate-authenticated P2S or direct enrollment.
P2S keeps AD services inside the VNet. Direct enrollment exposes the required
AD, DNS/DoH, WinRM, broker and RustDesk ports only to explicit public IPv4 CIDRs;
an empty allowlist exposes none of them. Azure NSG and Windows Firewall enforce
the same source list. RDP uses a separate allowlist. See
[azure-vpn-deployment.md](azure-vpn-deployment.md).
## Password handling ## Password handling
- The Credential Provider receives the password in Lithnet's secure password - The Credential Provider receives the password in Lithnet's secure password
@@ -33,15 +42,18 @@
- Administrative enrichment first verifies the employee number and reads - Administrative enrichment first verifies the employee number and reads
employee type/status, email, job title, and department from the incident employee type/status, email, job title, and department from the incident
overview. Only after that match, it reads given names and paternal/maternal overview. Only after that match, it reads given names and paternal/maternal
surnames from the personal page plus street, exterior/interior number, surnames and the normalized `Male`/`Female` value from the personal page plus
neighborhood, locality, state, and postal code from the location page. street, exterior/interior number, neighborhood, locality, state, and postal
- Administrative birth date, RFC, CURP, sex, blood type, marital status, code from the location page. AD stores only the controlled `SGU-Gender` line,
not the original HTML field.
- Administrative birth date, RFC, CURP, blood type, marital status,
nationality, telephone, email lists, housing type, and emergency-contact nationality, telephone, email lists, housing type, and emergency-contact
fields are ignored. fields are ignored.
- Student enrichment reads only the matching student number, given names, - Student enrichment reads only the matching student number, given names,
paternal/maternal surnames, email, career, street, neighborhood, paternal/maternal surnames, email, career, street, neighborhood,
city/municipality, state, and postal code from known element IDs. city/municipality, state, postal code, and normalized sex from known element
- Student CURP, birth date, sex, blood type, marital status, telephone, mobile, IDs.
- Student CURP, birth date, blood type, marital status, telephone, mobile,
guardian, medical, financial, and academic-history values are ignored. guardian, medical, financial, and academic-history values are ignored.
- Professor enrichment keeps the menu display name as its base. From the payroll - Professor enrichment keeps the menu display name as its base. From the payroll
consultation header it reads only a matching employee number, name, email, consultation header it reads only a matching employee number, name, email,
+171
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@@ -0,0 +1,171 @@
# Validación del bootstrap Windows unificado
Fecha: 2026-09-10. Paquete: 0.5.1.
## Comprobaciones locales
- Publicación Release del Auth Broker y del Credential Provider completada.
- Pruebas Pester ejecutadas en Windows PowerShell 5.1: selección de rutas,
dos interfaces, VPN en otra subred, preferencia por la ruta de Windows,
restricción explícita de interfaz, APIPA, falta de ruta, prefijo más específico,
ruta de host y conflictos, DNS limitado al dominio, reintentos y compatibilidad.
- Prueba TCP real con socket ligado a una IP e interfaz y servicio cerrado.
- Reenrolamiento: se conserva la contraseña de `alumno` si la cuenta ya existe,
para no provocar rechazos de historial/complejidad tras aplicar las políticas
del dominio; se mantienen las verificaciones de permisos de usuario estándar.
- El empaquetador genera un solo ZIP Windows con los lanzadores habitual y Azure,
el instalador VPN, el runtime offline y el manifiesto SHA-256.
## Prueba real en Hyper-V: Windows 11
Servidor: VM `Windows Server`, dominio `lci.lasalle.mx`, DC `192.168.50.10`.
Cliente: VM `Windows11-002`, Windows 11 Enterprise LTSC, build 26100,
nombre de equipo `DESKTOP-LM7D7OM`, inicialmente en WORKGROUP.
Antes de la prueba se creó el checkpoint
`Before SGU unified enrollment 2026-09-10`. El cliente sólo tenía conexión al
`Default Switch`; se añadió la tarjeta `SGU AD Test` al switch `Laboratorio AD`
y se configuró administrativamente `192.168.50.202/24` sin puerta de enlace.
Esta preparación de la red del laboratorio es independiente del bootstrap:
el enrolador no asignó esa dirección y no recibió parámetros de IP del cliente,
interfaz, dominio, NetBIOS ni OU.
Se ejecutó el paquete con la IP del DC, una credencial en memoria y
`-SkipRestart` para inspeccionar el resultado; después se reinició el cliente.
Resultados comprobados:
- Selección automática de `Laboratorio AD` y descubrimiento autenticado de
`lci.lasalle.mx`, `LCI` y `OU=Laboratorio`.
- Proveedor y certificados instalados; salud mTLS verificada antes de la unión.
- Unión al dominio completada y `Test-ComputerSecureChannel` verdadero después
del reinicio.
- `Test-SguClientEnrollment.ps1` con exigencia de dominio, broker, acceso remoto
y RustDesk: `IsValid=True`, sin incidencias, después del guard de arranque.
- Interfaz privada `DomainAuthenticated`; interfaz de Internet `Public`, con
DHCP y su servidor DNS originales. Resolución pública y HTTPS comprobados
contra `www.microsoft.com` (HTTP 200).
## Prueba real en Hyper-V: Windows 10
Fecha: 2026-09-10. Cliente: VM `Windows10-001`, Windows 10 Enterprise LTSC
x64, build 19044, nombre de equipo `DESKTOP-HDKRD5V`, inicialmente en WORKGROUP.
Se usó el mismo ZIP 0.5.1 publicado en Gitea, sin modificar sus scripts ni
binarios. SHA-256 del ZIP:
```text
4DBE45697D74110F65C6D7825A593121B19C53B5F286F0DBC00068F3AFE45FB0
```
Se guardó el checkpoint `Before SGU Windows10 validation 2026-09-10`.
La VM ya tenía dos tarjetas: `Ethernet` en `Default Switch`, con DHCP y DNS
`172.18.176.1`, y `Ethernet 2` en `Laboratorio AD`, con dirección APIPA.
Primero se ejecutó el bootstrap sin preparar la IP privada. Reintentó la
conexión, diagnosticó que `Ethernet 2` no tenía una IPv4 utilizable y que la ruta
de Internet no alcanzaba WinRM del servidor. No solicitó una IP del cliente,
no modificó sus direcciones y mantuvo el equipo en WORKGROUP.
Para la prueba positiva se configuró administrativamente
`192.168.50.203/24` en `Ethernet 2`, sin puerta de enlace, y se esperó a que
Windows confirmara la dirección como `Preferred`. Esta preparación corresponde
a la red de laboratorio sin DHCP; no la realizó el bootstrap. Se ejecutó de
nuevo el ZIP con sólo la IP del DC, una credencial en memoria y `-SkipRestart`,
sin parámetros de interfaz, IP del cliente, dominio, NetBIOS ni OU.
Resultados:
- Selección automática de `Ethernet 2`, descubrimiento de `lci.lasalle.mx`,
`LCI` y `OU=Laboratorio`, y unión al dominio completada.
- Proveedor y certificados instalados; proveedor validado antes de la unión.
- Tras reiniciar, `Test-ComputerSecureChannel=True` y tarea
`SGU-CredentialProvider-EnrollmentGuard` finalizada con `LastTaskResult=0`.
- Validación con dominio, salud del broker, acceso remoto y RustDesk exigidos:
`IsValid=True`, `Issues={}`, `BrokerHealth=ok`, `RemoteAccessReady=True` y
`RustDeskReady=True`.
- Runtime .NET y binarios presentes; proveedor de contraseña de Windows
conservado. Cuenta `alumno` presente, sin permisos de administrador y con
expiración de contraseña deshabilitada.
- `Ethernet 2` quedó como `DomainAuthenticated`; `Ethernet` permaneció como
`Public`, conservando su DHCP y DNS original. HTTPS hacia
`https://www.microsoft.com` respondió HTTP 200.
No fue necesario corregir el bootstrap para esta prueba. La VM quedó encendida
y enrolada, con el ZIP extraído en sus Descargas y el checkpoint previo disponible.
### Comprobación posterior del escritorio
La validación anterior comprobaba el enrolamiento, pero no el fondo visible
en una sesión de usuario. Al revisar la sesión de `Windows10-001`, el fondo
seguía siendo el predeterminado de Windows. El registro del generador mostró
un fallo de validación al asignar el género vacío devuelto por AD al parámetro
`Gender`, cuyo `ValidateSet` sólo permite `Male` o `Female`.
Se corrigió `Set-SguWelcomeWallpaper.ps1` para mantener el saludo neutral cuando
el dato no está disponible. Se actualizaron el generador instalado y su copia
en el paquete de autorreparación, y se ejecutó en el contexto de la sesión
interactiva existente, sin cerrar sesión ni solicitar otra contraseña.
El registro terminó con `OK`, la configuración del usuario apuntó al JPEG
generado y se verificó visualmente el fondo institucional con nombre y saludo.
La tarea temporal utilizada para actualizar la sesión se retiró al finalizar;
la ejecución habitual al iniciar sesión sigue a cargo de la GPO.
Se agregaron cuatro pruebas de renderizado JPEG: género ausente, vacío o
desconocido, valores reconocidos y prioridad de un valor explícito. Todas
pasaron en Windows PowerShell 5.1. Esta corrección posterior está en el código
y en la VM; el ZIP publicado como 0.5.1 no se modificó.
## Prueba real de enrolamiento público directo: Windows 10
Fecha: 2026-09-11. Se repitió el enrolamiento de `Windows10-001` contra el DC
Azure `20.9.81.130`, sin perfil ni interfaz VPN. El cliente conservó sus dos NIC
y seleccionó por sí solo `Ethernet` con DHCP (`172.18.183.201`), porque era la
ruta que alcanzaba WinRM. El segmento público de salida autorizado fue
`200.13.89.0/24`.
La VM aún nombraba `lci.lasalle.mx`, pero su canal seguro pertenecía al bosque
anterior y estaba roto. El flujo creó o reutilizó la cuenta de equipo en la OU
descubierta, restableció la contraseña de máquina contra
`SGU-DC01.lci.lasalle.mx`, reinició Netlogon y conservó el equipo unido. También
toleró SID huérfanos del bosque anterior al comprobar los grupos locales.
Windows 10 Enterprise LTSC build 19044 no expone los cmdlets DoH. El bootstrap
lo detectó y usó DNS tradicional hacia la misma IP pública, limitado por NSG y
Windows Firewall al CIDR permitido. Después de un reinicio real se comprobó:
- `Test-ComputerSecureChannel=True` y resolución SRV del DC;
- `IsValid=True`, sin incidencias;
- `BrokerHealth=ok`, `RemoteAccessReady=True` y `RustDeskReady=True`;
- ningún perfil VPN instalado;
- paquete candidato usado en la prueba `0.5.9`, SHA-256 del ZIP de Windows:
`E7AF77252E444FB7EBACF3C90005D322EE19F76DD9387AC5782C57EA9EE617B7`.
## Prueba real con Azure VPN
El 2026-09-10 se desplegó `sgu-lab-dc` en Azure Central US, se creó el bosque
`lci.lasalle.mx` y se enroló `Windows11-002` mediante un gateway real
`VpnGw1AZ`. El controlador tiene IP `10.77.0.4` y el cliente obtuvo
`172.30.0.2` por IKEv2 con certificado de máquina. El bootstrap descubrió
automáticamente la interfaz VPN, el dominio y la OU a partir de la IP del DC
y la credencial administrativa.
Se comprobaron el objeto de equipo en `OU=Laboratorio`, el canal seguro y la
validación SGU completa, incluyendo salud mTLS, acceso remoto y RustDesk.
Para Enterprise se configuró un device tunnel y una recuperación de Netlogon
para la conectividad tardía al arrancar. El bosque Azure es independiente del
bosque local con el mismo nombre.
La infraestructura, versiones de paquetes, ajustes adicionales y evidencias
están en [el informe de Azure](azure-deployment-validation-2026-09-10.md).
Se usaron paquetes locales de validación `0.5.2-azure.*`; el release publicado
0.5.1 no se reemplazó durante este despliegue.
## Alcance pendiente
OpenVPN y otras VPN requieren validación en sus redes reales. Las pruebas
Windows realizadas cubren Enterprise LTSC x64, builds 19044 y 26100; no todas
las ediciones ni builds. Azure se probó con Windows 11; la prueba de Windows 10
descrita arriba corresponde a la LAN.
El servidor debe tener SGU preparado. La IP de un DC no permite crear una VPN,
adivinar una IP libre ni sustituir permisos, DHCP o políticas de firewall.
+8 -2
View File
@@ -16,14 +16,20 @@ El generador consulta Active Directory con la identidad ya autenticada y sin
guardar credenciales. Obtiene: guardar credenciales. Obtiene:
- `displayName` del usuario; si falta, utiliza `sAMAccountName`. - `displayName` del usuario; si falta, utiliza `sAMAccountName`.
- La línea administrada `SGU-Gender: Male|Female` del atributo `info`; el Auth
Broker la obtiene del SGU y conserva cualquier otra nota que ya exista.
- `location` del objeto de equipo. - `location` del objeto de equipo.
- La OU padre inmediata a partir de `distinguishedName`. - La OU padre inmediata a partir de `distinguishedName`.
El texto secundario sigue estas reglas: El saludo usa `Bienvenido/ubicado` para `Male` y `Bienvenida/ubicada` para
`Female`. Cuando el enriquecimiento no produjo este dato, utiliza la redacción
neutral `Te damos la bienvenida` y `Ubicación:`. El texto secundario sigue estas
reglas:
1. Con `location` y OU: `Estás ubicado en la Sala de Inmersión del Centro de Experiencia Digital.` 1. Con `location` y OU: `Estás ubicado en la Sala de Inmersión del Centro de Experiencia Digital.`
2. Con sólo uno de los datos: muestra únicamente el dato disponible. 2. Con sólo uno de los datos: muestra únicamente el dato disponible.
3. Sin ambos: `Bienvenido al Laboratorio de Cómputo de Ingeniería.` 3. Sin ambos: el texto adaptado `Bienvenido/Bienvenida al Laboratorio...`; sin
sexo disponible, la forma neutral `Acceso al Laboratorio de Cómputo de Ingeniería.`
La ausencia de AD, de un atributo o de una tipografía nunca bloquea la sesión. La ausencia de AD, de un atributo o de una tipografía nunca bloquea la sesión.
Los errores de generación se registran en Los errores de generación se registran en
+406
View File
@@ -0,0 +1,406 @@
targetScope = 'resourceGroup'
@description('Short prefix used for every Azure resource.')
@minLength(3)
@maxLength(18)
param deploymentPrefix string = 'sgu-lab'
@description('Azure region for the virtual network, gateway, and VM.')
param location string = resourceGroup().location
@description('Windows Server VM administrator name. This must not be Administrator.')
@minLength(1)
@maxLength(20)
param administratorUsername string
@secure()
@description('Windows Server VM administrator password.')
param administratorPassword string
@description('Windows Server computer name; Active Directory limits this to 15 characters.')
@minLength(1)
@maxLength(15)
param computerName string = 'SGU-DC01'
@description('VM size for the Windows Server 2025 domain controller.')
param vmSize string = 'Standard_D2s_v5'
@description('Address space assigned to the Azure virtual network.')
param virtualNetworkAddressPrefix string = '10.77.0.0/16'
@description('Subnet that contains the domain controller.')
param domainControllerSubnetPrefix string = '10.77.0.0/24'
@description('Reserved Azure VPN Gateway subnet. Use /27 or larger.')
param gatewaySubnetPrefix string = '10.77.255.0/27'
@description('Deploy the optional Azure Point-to-Site VPN Gateway. Direct public enrollment does not require it.')
param deployVpnGateway bool = true
@description('Static private IP reserved on the Azure NIC for AD DS and DNS.')
param domainControllerPrivateIp string = '10.77.0.4'
@description('Point-to-site client pool. It must not overlap the VNet or local Hyper-V networks.')
param vpnClientAddressPoolPrefix string = '172.30.0.0/24'
@description('Name presented for the trusted P2S root certificate.')
param p2sRootCertificateName string = 'SGU-P2S-Root'
@description('Base64 DER bytes of the trusted P2S root certificate, without PEM markers.')
param p2sRootCertificateData string = ''
@description('Public IPv4 CIDRs allowed to enroll clients directly without VPN. Leave empty to expose no AD enrollment ports.')
param publicEnrollmentSourceAddressPrefixes array = []
@description('Optional public CIDR allowed to RDP to the VM public IP, for example 203.0.113.10/32. Leave empty to expose no management port.')
param administratorSourceAddressPrefix string = ''
var virtualNetworkName = '${deploymentPrefix}-vnet'
var domainControllerSubnetName = 'DomainControllers'
var gatewaySubnetName = 'GatewaySubnet'
var networkSecurityGroupName = '${deploymentPrefix}-dc-nsg'
var domainControllerPublicIpName = '${deploymentPrefix}-dc-pip'
var gatewayPublicIpName = '${deploymentPrefix}-vpngw-pip'
var networkInterfaceName = '${deploymentPrefix}-dc-nic'
var virtualMachineName = '${deploymentPrefix}-dc'
var virtualNetworkGatewayName = '${deploymentPrefix}-vpngw'
resource networkSecurityGroup 'Microsoft.Network/networkSecurityGroups@2024-05-01' = {
name: networkSecurityGroupName
location: location
properties: {
securityRules: concat(deployVpnGateway ? [
{
name: 'Allow-SGU-P2S-clients'
properties: {
priority: 100
access: 'Allow'
direction: 'Inbound'
protocol: '*'
sourcePortRange: '*'
destinationPortRange: '*'
sourceAddressPrefix: vpnClientAddressPoolPrefix
destinationAddressPrefix: domainControllerPrivateIp
description: 'AD, DNS, broker, monitoring, and RustDesk are reachable only through the authenticated P2S address pool.'
}
}
] : [], empty(publicEnrollmentSourceAddressPrefixes) ? [] : [
{
name: 'Allow-Direct-AD-TCP'
properties: {
priority: 110
access: 'Allow'
direction: 'Inbound'
protocol: 'Tcp'
sourcePortRange: '*'
destinationPortRanges: [
'53'
'88'
'135'
'389'
'443'
'445'
'464'
'636'
'3268'
'3269'
'21115-21117'
'49152-65535'
]
sourceAddressPrefixes: publicEnrollmentSourceAddressPrefixes
destinationAddressPrefix: domainControllerPrivateIp
description: 'AD, DoH, and RustDesk TCP access for explicitly authorized public enrollment networks.'
}
}
{
name: 'Allow-Direct-AD-UDP'
properties: {
priority: 120
access: 'Allow'
direction: 'Inbound'
protocol: 'Udp'
sourcePortRange: '*'
destinationPortRanges: [
'53'
'88'
'123'
'389'
'464'
'21116'
]
sourceAddressPrefixes: publicEnrollmentSourceAddressPrefixes
destinationAddressPrefix: domainControllerPrivateIp
description: 'AD, time, and RustDesk UDP access for explicitly authorized public enrollment networks.'
}
}
{
name: 'Allow-Direct-SGU-Enrollment-TCP'
properties: {
priority: 130
access: 'Allow'
direction: 'Inbound'
protocol: 'Tcp'
sourcePortRange: '*'
destinationPortRanges: [
'5985'
'8443'
]
sourceAddressPrefixes: publicEnrollmentSourceAddressPrefixes
destinationAddressPrefix: domainControllerPrivateIp
description: 'WinRM discovery and SGU broker access for direct enrollment.'
}
}
], empty(administratorSourceAddressPrefix) ? [] : [
{
name: 'Allow-RDP-from-administrator'
properties: {
priority: 140
access: 'Allow'
direction: 'Inbound'
protocol: 'Tcp'
sourcePortRange: '*'
destinationPortRange: '3389'
sourceAddressPrefix: administratorSourceAddressPrefix
destinationAddressPrefix: domainControllerPrivateIp
description: 'Optional bootstrap-only RDP access from one explicitly supplied public CIDR.'
}
}
])
}
}
resource virtualNetwork 'Microsoft.Network/virtualNetworks@2024-05-01' = {
name: virtualNetworkName
location: location
properties: {
addressSpace: {
addressPrefixes: [
virtualNetworkAddressPrefix
]
}
subnets: concat([
{
name: domainControllerSubnetName
properties: {
addressPrefix: domainControllerSubnetPrefix
networkSecurityGroup: {
id: networkSecurityGroup.id
}
}
}
], deployVpnGateway ? [
{
name: gatewaySubnetName
properties: {
addressPrefix: gatewaySubnetPrefix
}
}
] : [])
}
}
resource domainControllerPublicIp 'Microsoft.Network/publicIPAddresses@2024-05-01' = {
name: domainControllerPublicIpName
location: location
sku: {
name: 'Standard'
}
properties: {
publicIPAllocationMethod: 'Static'
publicIPAddressVersion: 'IPv4'
idleTimeoutInMinutes: 30
}
}
resource gatewayPublicIp 'Microsoft.Network/publicIPAddresses@2024-05-01' = if (deployVpnGateway) {
name: gatewayPublicIpName
location: location
zones: [
'1'
'2'
'3'
]
sku: {
name: 'Standard'
}
properties: {
publicIPAllocationMethod: 'Static'
publicIPAddressVersion: 'IPv4'
}
}
resource networkInterface 'Microsoft.Network/networkInterfaces@2024-05-01' = {
name: networkInterfaceName
location: location
properties: {
enableAcceleratedNetworking: true
dnsSettings: {
dnsServers: [
domainControllerPrivateIp
]
}
ipConfigurations: [
{
name: 'ipconfig1'
properties: {
privateIPAllocationMethod: 'Static'
privateIPAddressVersion: 'IPv4'
privateIPAddress: domainControllerPrivateIp
subnet: {
id: resourceId('Microsoft.Network/virtualNetworks/subnets', virtualNetworkName, domainControllerSubnetName)
}
publicIPAddress: {
id: domainControllerPublicIp.id
}
}
}
]
}
dependsOn: [
virtualNetwork
]
}
resource virtualMachine 'Microsoft.Compute/virtualMachines@2024-07-01' = {
name: virtualMachineName
location: location
identity: {
type: 'SystemAssigned'
}
properties: {
hardwareProfile: {
vmSize: vmSize
}
securityProfile: {
securityType: 'TrustedLaunch'
uefiSettings: {
secureBootEnabled: true
vTpmEnabled: true
}
}
osProfile: {
computerName: computerName
adminUsername: administratorUsername
adminPassword: administratorPassword
windowsConfiguration: {
provisionVMAgent: true
enableAutomaticUpdates: true
patchSettings: {
patchMode: 'AutomaticByPlatform'
assessmentMode: 'AutomaticByPlatform'
enableHotpatching: false
}
}
}
storageProfile: {
imageReference: {
publisher: 'MicrosoftWindowsServer'
offer: 'WindowsServer'
sku: '2025-datacenter-azure-edition'
version: 'latest'
}
osDisk: {
createOption: 'FromImage'
// AD DS requires durable writes; the bootstrap stores NTDS on this disk.
caching: 'None'
managedDisk: {
storageAccountType: 'Premium_LRS'
}
deleteOption: 'Delete'
}
}
networkProfile: {
networkInterfaces: [
{
id: networkInterface.id
properties: {
primary: true
deleteOption: 'Delete'
}
}
]
}
diagnosticsProfile: {
bootDiagnostics: {
enabled: true
}
}
}
}
resource virtualNetworkGateway 'Microsoft.Network/virtualNetworkGateways@2024-05-01' = if (deployVpnGateway) {
name: virtualNetworkGatewayName
location: location
properties: {
gatewayType: 'Vpn'
vpnType: 'RouteBased'
activeActive: false
enableBgp: false
ipConfigurations: [
{
name: 'gateway-ipconfig'
properties: {
privateIPAllocationMethod: 'Dynamic'
subnet: {
id: resourceId('Microsoft.Network/virtualNetworks/subnets', virtualNetworkName, gatewaySubnetName)
}
publicIPAddress: {
id: gatewayPublicIp.id
}
}
}
]
sku: {
name: 'VpnGw1AZ'
tier: 'VpnGw1AZ'
}
vpnClientConfiguration: {
vpnClientAddressPool: {
addressPrefixes: [
vpnClientAddressPoolPrefix
]
}
vpnClientProtocols: [
'IkeV2'
'OpenVPN'
]
vpnAuthenticationTypes: [
'Certificate'
]
vpnClientRootCertificates: [
{
name: p2sRootCertificateName
properties: {
publicCertData: p2sRootCertificateData
}
}
]
}
}
dependsOn: [
virtualNetwork
]
}
output domainControllerName string = virtualMachine.name
output domainControllerPrivateIp string = domainControllerPrivateIp
output domainControllerPublicIp string = domainControllerPublicIp.properties.ipAddress
output virtualNetworkName string = virtualNetwork.name
output virtualNetworkAddressPrefix string = virtualNetworkAddressPrefix
output vpnGatewayName string = deployVpnGateway ? virtualNetworkGateway.name : ''
output vpnClientAddressPoolPrefix string = vpnClientAddressPoolPrefix
output serverBootstrapArguments array = concat([
'-ServerIPv4Address'
domainControllerPrivateIp
'-PrefixLength'
last(split(domainControllerSubnetPrefix, '/'))
'-NetworkConfigurationMode'
'PlatformManaged'
'-DnsForwarders'
'168.63.129.16'
], deployVpnGateway ? [
'-TrustedClientNetworks'
vpnClientAddressPoolPrefix
] : [], empty(publicEnrollmentSourceAddressPrefixes) ? [] : concat([
'-PublicEnrollmentNetworks'
], publicEnrollmentSourceAddressPrefixes))
+28 -4
View File
@@ -76,16 +76,23 @@ if (-not $serverCertificate.Verify()) {
} }
Import-Module ActiveDirectory -ErrorAction Stop Import-Module ActiveDirectory -ErrorAction Stop
function ConvertTo-LdapFilterValue {
param([Parameter(Mandatory)][string]$Value)
return $Value.Replace('\', '\5c').Replace('*', '\2a').Replace('(', '\28').Replace(')', '\29').Replace(([string][char]0), '\00')
}
$usersOuName = 'Usuarios-SGU' $usersOuName = 'Usuarios-SGU'
$usersOuDn = "OU=$usersOuName,$BaseDn" $usersOuDn = "OU=$usersOuName,$BaseDn"
if ([string]::IsNullOrWhiteSpace($ProfessorGroupDn)) { if ([string]::IsNullOrWhiteSpace($ProfessorGroupDn)) {
$ProfessorGroupDn = "CN=SGU-Docentes,$usersOuDn" $ProfessorGroupDn = "CN=SGU-Docentes,OU=Docentes,$usersOuDn"
} }
if ([string]::IsNullOrWhiteSpace($StudentGroupDn)) { if ([string]::IsNullOrWhiteSpace($StudentGroupDn)) {
$StudentGroupDn = "CN=SGU-Alumnos,$usersOuDn" $StudentGroupDn = "CN=SGU-Alumnos,OU=Alumnos,$usersOuDn"
} }
if ([string]::IsNullOrWhiteSpace($AdministrativeGroupDn)) { if ([string]::IsNullOrWhiteSpace($AdministrativeGroupDn)) {
$AdministrativeGroupDn = "CN=SGU-Administrativos,$usersOuDn" $AdministrativeGroupDn = "CN=SGU-Administrativos,OU=Administrativos,$usersOuDn"
} }
if ($CreateMissingOus) { if ($CreateMissingOus) {
@@ -152,13 +159,30 @@ foreach ($definition in $roleGroupDefinitions) {
throw "$($definition.Role)GroupDn must start with a simple CN component." throw "$($definition.Role)GroupDn must start with a simple CN component."
} }
$groupName = $groupDnMatch.Groups['Name'].Value $groupName = $groupDnMatch.Groups['Name'].Value
$groupPath = $groupDnMatch.Groups['Path'].Value
if ($groupName.Length -gt 20) { if ($groupName.Length -gt 20) {
throw "$($definition.Role) group name exceeds the 20-character sAMAccountName limit." throw "$($definition.Role) group name exceeds the 20-character sAMAccountName limit."
} }
$matchingGroups = @(Get-ADGroup `
-LDAPFilter "(sAMAccountName=$(ConvertTo-LdapFilterValue -Value $groupName))" `
-SearchBase $BaseDn -SearchScope Subtree -Server $LdapHost -ErrorAction Stop)
if ($matchingGroups.Count -gt 1) {
throw "More than one Active Directory group uses sAMAccountName $groupName; the bootstrap cannot select one safely."
}
if ($matchingGroups.Count -eq 1) {
if ($matchingGroups[0].GroupCategory -ne 'Security') {
throw "$($definition.Role)GroupDn must identify a security group."
}
Move-ADObject -Identity $matchingGroups[0].DistinguishedName `
-TargetPath $groupPath -Server $LdapHost -Confirm:$false -ErrorAction Stop
}
else {
New-ADGroup -Name $groupName -SamAccountName $groupName ` New-ADGroup -Name $groupName -SamAccountName $groupName `
-GroupCategory Security -GroupScope Global ` -GroupCategory Security -GroupScope Global `
-Path $groupDnMatch.Groups['Path'].Value ` -Path $groupPath `
-Description $definition.Description -Server $LdapHost | Out-Null -Description $definition.Description -Server $LdapHost | Out-Null
}
$roleGroup = Get-ADGroup -Identity $definition.Dn -Server $LdapHost -ErrorAction Stop $roleGroup = Get-ADGroup -Identity $definition.Dn -Server $LdapHost -ErrorAction Stop
} }
if (-not $roleGroup) { if (-not $roleGroup) {
+156
View File
@@ -0,0 +1,156 @@
#Requires -Version 5.1
[CmdletBinding(SupportsShouldProcess)]
param(
[Parameter(Mandatory)][string]$SubscriptionId,
[string]$ResourceGroupName = 'rg-sgu-lab',
[string]$Location = 'centralus',
[string]$DeploymentPrefix = 'sgu-lab',
[Parameter(Mandatory)][string]$AdministratorUsername,
[securestring]$AdministratorPassword,
[string]$P2sRootCertificatePath,
[bool]$DeployVpnGateway = $true,
[string]$ComputerName = 'SGU-DC01',
[string]$VmSize = 'Standard_D2s_v5',
[string]$VirtualNetworkAddressPrefix = '10.77.0.0/16',
[string]$DomainControllerSubnetPrefix = '10.77.0.0/24',
[ipaddress]$DomainControllerPrivateIp = '10.77.0.4',
[string]$GatewaySubnetPrefix = '10.77.255.0/27',
[string]$VpnClientAddressPoolPrefix = '172.30.0.0/24',
[string[]]$PublicEnrollmentSourceAddressPrefixes = @(),
[string]$AdministratorSourceAddressPrefix = '',
[string]$TemplateFile = (Join-Path $PSScriptRoot '..\infra\azure\main.bicep')
)
$ErrorActionPreference = 'Stop'
$ProgressPreference = 'SilentlyContinue'
if (-not (Get-Command az -ErrorAction SilentlyContinue)) {
throw 'Azure CLI is required. Install it from https://aka.ms/installazurecliwindows and run az login.'
}
if (-not (Test-Path -LiteralPath $TemplateFile -PathType Leaf)) {
throw "Azure Bicep template not found: $TemplateFile"
}
if (-not $AdministratorPassword) {
$AdministratorPassword = Read-Host 'Password for the local Azure VM administrator' -AsSecureString
}
$rootCertificateData = ''
if ($DeployVpnGateway) {
if (-not $P2sRootCertificatePath -or
-not (Test-Path -LiteralPath $P2sRootCertificatePath -PathType Leaf)) {
throw 'P2sRootCertificatePath is required when DeployVpnGateway is true.'
}
$rootCertificate = [Security.Cryptography.X509Certificates.X509Certificate2]::new(
(Resolve-Path -LiteralPath $P2sRootCertificatePath).Path)
if (-not ($rootCertificate.Extensions | Where-Object {
$_.Oid -and $_.Oid.Value -eq '2.5.29.19' -and $_.Format($false) -match 'CA' })) {
throw 'P2sRootCertificatePath must contain a certificate-authority certificate.'
}
$rootCertificateData = [Convert]::ToBase64String($rootCertificate.RawData)
}
$account = & az account show --output json 2>$null
if ($LASTEXITCODE -ne 0) {
throw 'Azure CLI is not signed in. Run az login, then retry.'
}
& az account set --subscription $SubscriptionId --only-show-errors
if ($LASTEXITCODE -ne 0) {
throw "Could not select Azure subscription $SubscriptionId."
}
$deploymentDescription = if ($DeployVpnGateway) {
'Create Azure VNet, Windows Server 2025 VM, public IP, and P2S VPN Gateway'
}
else {
'Create Azure VNet, Windows Server 2025 VM, and public IP for direct enrollment'
}
if ($PSCmdlet.ShouldProcess("$ResourceGroupName in $Location", $deploymentDescription)) {
& az group create --name $ResourceGroupName --location $Location --only-show-errors --output none
if ($LASTEXITCODE -ne 0) {
throw "Could not create or update resource group $ResourceGroupName."
}
$temporaryRoot = Join-Path ([IO.Path]::GetTempPath()) ("sgu-azure-" + [Guid]::NewGuid().ToString('N'))
$parametersPath = Join-Path $temporaryRoot 'parameters.json'
$passwordPointer = [Runtime.InteropServices.Marshal]::SecureStringToBSTR($AdministratorPassword)
try {
New-Item -ItemType Directory -Path $temporaryRoot -Force | Out-Null
$acl = Get-Acl -LiteralPath $temporaryRoot
$acl.SetAccessRuleProtection($true, $false)
$acl.AddAccessRule([Security.AccessControl.FileSystemAccessRule]::new(
[Security.Principal.WindowsIdentity]::GetCurrent().User,
[Security.AccessControl.FileSystemRights]::FullControl,
[Security.AccessControl.InheritanceFlags]'ContainerInherit,ObjectInherit',
[Security.AccessControl.PropagationFlags]::None,
[Security.AccessControl.AccessControlType]::Allow))
Set-Acl -LiteralPath $temporaryRoot -AclObject $acl
$plainPassword = [Runtime.InteropServices.Marshal]::PtrToStringBSTR($passwordPointer)
$parameters = [ordered]@{
'$schema' = 'https://schema.management.azure.com/schemas/2019-04-01/deploymentParameters.json#'
contentVersion = '1.0.0.0'
parameters = [ordered]@{
deploymentPrefix = @{ value = $DeploymentPrefix }
location = @{ value = $Location }
administratorUsername = @{ value = $AdministratorUsername }
administratorPassword = @{ value = $plainPassword }
computerName = @{ value = $ComputerName }
vmSize = @{ value = $VmSize }
virtualNetworkAddressPrefix = @{ value = $VirtualNetworkAddressPrefix }
domainControllerSubnetPrefix = @{ value = $DomainControllerSubnetPrefix }
gatewaySubnetPrefix = @{ value = $GatewaySubnetPrefix }
domainControllerPrivateIp = @{ value = $DomainControllerPrivateIp.IPAddressToString }
vpnClientAddressPoolPrefix = @{ value = $VpnClientAddressPoolPrefix }
deployVpnGateway = @{ value = $DeployVpnGateway }
p2sRootCertificateData = @{ value = $rootCertificateData }
publicEnrollmentSourceAddressPrefixes = @{ value = @($PublicEnrollmentSourceAddressPrefixes) }
administratorSourceAddressPrefix = @{ value = $AdministratorSourceAddressPrefix }
}
}
[IO.File]::WriteAllText(
$parametersPath,
($parameters | ConvertTo-Json -Depth 8),
[Text.UTF8Encoding]::new($false))
$plainPassword = $null
$parameters.parameters.administratorPassword.value = $null
$deploymentName = 'sgu-{0}' -f (Get-Date -Format 'yyyyMMdd-HHmmss')
$deploymentOutput = & az deployment group create `
--name $deploymentName `
--resource-group $ResourceGroupName `
--template-file (Resolve-Path -LiteralPath $TemplateFile).Path `
--parameters "@$parametersPath" `
--only-show-errors `
--output json
if ($LASTEXITCODE -ne 0) {
throw 'Azure deployment failed. Review the Azure CLI error above; no bootstrap credential was persisted by this script.'
}
$deployment = ($deploymentOutput -join [Environment]::NewLine) | ConvertFrom-Json
}
finally {
if ($passwordPointer -ne [IntPtr]::Zero) {
[Runtime.InteropServices.Marshal]::ZeroFreeBSTR($passwordPointer)
}
$AdministratorPassword = $null
if ($temporaryRoot -and (Test-Path -LiteralPath $temporaryRoot)) {
Remove-Item -LiteralPath $temporaryRoot -Recurse -Force -ErrorAction SilentlyContinue
}
}
$values = @{}
foreach ($property in $deployment.properties.outputs.PSObject.Properties) {
$values[$property.Name] = $property.Value.value
}
[pscustomobject]@{
ResourceGroupName = $ResourceGroupName
DeploymentName = $deploymentName
DomainControllerName = $values.domainControllerName
DomainControllerPrivateIp = $values.domainControllerPrivateIp
DomainControllerPublicIp = $values.domainControllerPublicIp
VpnGatewayName = $values.vpnGatewayName
VpnClientAddressPoolPrefix = $values.vpnClientAddressPoolPrefix
DeployVpnGateway = $DeployVpnGateway
PublicEnrollmentSourceAddressPrefixes = @($PublicEnrollmentSourceAddressPrefixes)
ServerBootstrapArguments = $values.serverBootstrapArguments
}
}
+23 -5
View File
@@ -18,6 +18,24 @@ if (-not $computer.PartOfDomain) {
$remoteDesktopUsersSid = [Security.Principal.SecurityIdentifier]::new('S-1-5-32-555') $remoteDesktopUsersSid = [Security.Principal.SecurityIdentifier]::new('S-1-5-32-555')
$remoteDesktopUsersGroup = ($remoteDesktopUsersSid.Translate([Security.Principal.NTAccount]).Value -split '\\', 2)[1] $remoteDesktopUsersGroup = ($remoteDesktopUsersSid.Translate([Security.Principal.NTAccount]).Value -split '\\', 2)[1]
$remoteDesktopPrincipalSid = ([Security.Principal.NTAccount]::new($RemoteDesktopPrincipal)).Translate(
[Security.Principal.SecurityIdentifier])
function Get-LocalGroupMemberSid {
param([Parameter(Mandatory)][string]$Name)
$group = [ADSI]("WinNT://$env:COMPUTERNAME/$Name,group")
foreach ($member in @($group.psbase.Invoke('Members'))) {
try {
$sidBytes = $member.GetType().InvokeMember('objectSid',
[Reflection.BindingFlags]::GetProperty, $null, $member, $null)
if ($sidBytes) {
([Security.Principal.SecurityIdentifier]::new([byte[]]$sidBytes, 0)).Value
}
}
catch { }
}
}
if ($PSCmdlet.ShouldProcess($env:COMPUTERNAME, "Enable RDP and grant $RemoteDesktopPrincipal access")) { if ($PSCmdlet.ShouldProcess($env:COMPUTERNAME, "Enable RDP and grant $RemoteDesktopPrincipal access")) {
function Invoke-PowerCfgBestEffort { function Invoke-PowerCfgBestEffort {
@@ -57,9 +75,9 @@ if ($PSCmdlet.ShouldProcess($env:COMPUTERNAME, "Enable RDP and grant $RemoteDesk
-ErrorAction SilentlyContinue | -ErrorAction SilentlyContinue |
Set-NetFirewallRule -Enabled True -Profile Domain Set-NetFirewallRule -Enabled True -Profile Domain
$existingMembers = @(Get-LocalGroupMember -Group $remoteDesktopUsersGroup -ErrorAction SilentlyContinue) $existingMembers = @(Get-LocalGroupMemberSid -Name $remoteDesktopUsersGroup)
if ($existingMembers.Name -notcontains $RemoteDesktopPrincipal) { if ($existingMembers -notcontains $remoteDesktopPrincipalSid.Value) {
Add-LocalGroupMember -Group $remoteDesktopUsersGroup -Member $RemoteDesktopPrincipal Add-LocalGroupMember -Group $remoteDesktopUsersGroup -Member $remoteDesktopPrincipalSid.Value
} }
# Use Windows PowerShell so both the inbox and compatible remoting endpoints # Use Windows PowerShell so both the inbox and compatible remoting endpoints
@@ -97,7 +115,7 @@ if ($PSCmdlet.ShouldProcess($env:COMPUTERNAME, "Enable RDP and grant $RemoteDesk
} }
} }
$rdpMembers = @(Get-LocalGroupMember -Group $remoteDesktopUsersGroup -ErrorAction SilentlyContinue) $rdpMembers = @(Get-LocalGroupMemberSid -Name $remoteDesktopUsersGroup)
[pscustomobject]@{ [pscustomobject]@{
ComputerName = $env:COMPUTERNAME ComputerName = $env:COMPUTERNAME
Domain = $computer.Domain Domain = $computer.Domain
@@ -108,7 +126,7 @@ $rdpMembers = @(Get-LocalGroupMember -Group $remoteDesktopUsersGroup -ErrorActio
'HKLM:\SYSTEM\CurrentControlSet\Control\Terminal Server\WinStations\RDP-Tcp' ` 'HKLM:\SYSTEM\CurrentControlSet\Control\Terminal Server\WinStations\RDP-Tcp' `
-Name UserAuthentication) -eq 1 -Name UserAuthentication) -eq 1
RemoteDesktopPrincipal = $RemoteDesktopPrincipal RemoteDesktopPrincipal = $RemoteDesktopPrincipal
PrincipalIsAuthorized = $rdpMembers.Name -contains $RemoteDesktopPrincipal PrincipalIsAuthorized = $rdpMembers -contains $remoteDesktopPrincipalSid.Value
TermService = (Get-Service TermService).Status TermService = (Get-Service TermService).Status
WinRM = (Get-Service WinRM).Status WinRM = (Get-Service WinRM).Status
FirewallProfile = 'Domain' FirewallProfile = 'Domain'
+21 -4
View File
@@ -3,6 +3,22 @@ param()
$ErrorActionPreference = 'Stop' $ErrorActionPreference = 'Stop'
function Get-LocalGroupMemberSid {
param([Parameter(Mandatory)][string]$Name)
$group = [ADSI]("WinNT://$env:COMPUTERNAME/$Name,group")
foreach ($member in @($group.psbase.Invoke('Members'))) {
try {
$sidBytes = $member.GetType().InvokeMember('objectSid',
[Reflection.BindingFlags]::GetProperty, $null, $member, $null)
if ($sidBytes) {
([Security.Principal.SecurityIdentifier]::new([byte[]]$sidBytes, 0)).Value
}
}
catch { }
}
}
$identity = [Security.Principal.WindowsIdentity]::GetCurrent() $identity = [Security.Principal.WindowsIdentity]::GetCurrent()
$principal = [Security.Principal.WindowsPrincipal]::new($identity) $principal = [Security.Principal.WindowsPrincipal]::new($identity)
if (-not $principal.IsInRole([Security.Principal.WindowsBuiltInRole]::Administrator)) { if (-not $principal.IsInRole([Security.Principal.WindowsBuiltInRole]::Administrator)) {
@@ -30,11 +46,12 @@ if ($PSCmdlet.ShouldProcess($env:COMPUTERNAME, 'Enable SGU session auditing and
# NETWORK SERVICE. Resolve both principals by SID for localized Windows. # NETWORK SERVICE. Resolve both principals by SID for localized Windows.
$eventLogReadersSid = [Security.Principal.SecurityIdentifier]::new('S-1-5-32-573') $eventLogReadersSid = [Security.Principal.SecurityIdentifier]::new('S-1-5-32-573')
$networkServiceSid = [Security.Principal.SecurityIdentifier]::new('S-1-5-20') $networkServiceSid = [Security.Principal.SecurityIdentifier]::new('S-1-5-20')
$members = @(Get-LocalGroupMember -SID $eventLogReadersSid -ErrorAction SilentlyContinue) $eventLogReadersGroup = ($eventLogReadersSid.Translate(
[Security.Principal.NTAccount]).Value -split '\\', 2)[1]
$members = @(Get-LocalGroupMemberSid -Name $eventLogReadersGroup)
$eventLogReaderMembershipChanged = $false $eventLogReaderMembershipChanged = $false
if ($members.SID.Value -notcontains $networkServiceSid.Value) { if ($members -notcontains $networkServiceSid.Value) {
$networkServiceAccount = $networkServiceSid.Translate([Security.Principal.NTAccount]).Value Add-LocalGroupMember -SID $eventLogReadersSid -Member $networkServiceSid.Value
Add-LocalGroupMember -SID $eventLogReadersSid -Member $networkServiceAccount
$eventLogReaderMembershipChanged = $true $eventLogReaderMembershipChanged = $true
} }
+53 -1
View File
@@ -18,10 +18,14 @@ param(
[PSCredential]$DomainCredential, [PSCredential]$DomainCredential,
[string]$DomainName = 'lci.lasalle.mx', [string]$DomainName = 'lci.lasalle.mx',
[string]$DomainNetbios = 'LCI', [string]$DomainNetbios = 'LCI',
[string]$DomainControllerDnsName,
[string]$ComputerOuDn = 'OU=Laboratorio,DC=lci,DC=lasalle,DC=mx', [string]$ComputerOuDn = 'OU=Laboratorio,DC=lci,DC=lasalle,DC=mx',
[string]$NewComputerName, [string]$NewComputerName,
[string]$NetworkInterfaceAlias = 'Ethernet', [string]$NetworkInterfaceAlias = 'Ethernet',
[string[]]$DomainDnsServerAddresses = @('192.168.50.10'), [string[]]$DomainDnsServerAddresses = @('192.168.50.10'),
[switch]$DomainDnsConfigured,
[ValidateSet('Direct', 'AzureP2S')]
[string]$ConnectivityMode = 'Direct',
[string]$RemoteDesktopPrincipal = 'LCI\SG-Laboratorio-Usuarios-RDP', [string]$RemoteDesktopPrincipal = 'LCI\SG-Laboratorio-Usuarios-RDP',
[string]$DotNetRuntimeInstallerPath, [string]$DotNetRuntimeInstallerPath,
[string]$RustDeskServerAddress, [string]$RustDeskServerAddress,
@@ -39,6 +43,7 @@ if (-not $principal.IsInRole([Security.Principal.WindowsBuiltInRole]::Administra
foreach ($scriptName in @( foreach ($scriptName in @(
'Install-CredentialProvider.ps1', 'Install-CredentialProvider.ps1',
'Install-SguEnrollmentGuard.ps1', 'Install-SguEnrollmentGuard.ps1',
'Set-SguStandardLocalUser.ps1',
'Test-SguClientEnrollment.ps1', 'Test-SguClientEnrollment.ps1',
'Repair-SguClientEnrollment.ps1', 'Repair-SguClientEnrollment.ps1',
'Enable-LabRemoteAccess.ps1', 'Enable-LabRemoteAccess.ps1',
@@ -53,6 +58,31 @@ $computer = Get-CimInstance Win32_ComputerSystem
if ($computer.PartOfDomain -and $computer.Domain -ne $DomainName) { if ($computer.PartOfDomain -and $computer.Domain -ne $DomainName) {
throw "The computer is already joined to the unexpected domain $($computer.Domain)." throw "The computer is already joined to the unexpected domain $($computer.Domain)."
} }
$domainMembershipHealthy = $false
if ($computer.PartOfDomain) {
try {
$domainMembershipHealthy = [bool](Test-ComputerSecureChannel -ErrorAction Stop)
}
catch {
$domainMembershipHealthy = $false
}
}
if ($computer.PartOfDomain -and -not $domainMembershipHealthy) {
if (-not $DomainCredential) {
$DomainCredential = Get-Credential `
-UserName "$DomainNetbios\Administrator" `
-Message "Credential permitted to repair this computer in $DomainName"
}
$repairServer = if ($DomainControllerDnsName) { $DomainControllerDnsName } else { $DomainName }
Write-Warning "The computer names $DomainName but its secure channel is broken. Repairing it against $repairServer."
Reset-ComputerMachinePassword -Server $repairServer -Credential $DomainCredential -ErrorAction Stop
Restart-Service Netlogon -Force
Start-Sleep -Seconds 2
$domainMembershipHealthy = [bool](Test-ComputerSecureChannel -ErrorAction Stop)
if (-not $domainMembershipHealthy) {
throw "The secure channel to $DomainName remained invalid after repair."
}
}
$installParams = @{ $installParams = @{
PublishPath = $PublishPath PublishPath = $PublishPath
@@ -90,9 +120,24 @@ if ($PSCmdlet.ShouldProcess($env:COMPUTERNAME, 'Install and verify SGU before jo
# The broker uses a domain DNS name even before the machine joins the # The broker uses a domain DNS name even before the machine joins the
# domain. Point at AD DNS first so the provider-first health check works on # domain. Point at AD DNS first so the provider-first health check works on
# a completely clean Windows installation. # a completely clean Windows installation.
if ($DomainDnsConfigured) {
# The bootstrap configured domain-scoped NRPT, preserving Internet DNS.
}
elseif ($ConnectivityMode -eq 'Direct') {
Set-DnsClientServerAddress ` Set-DnsClientServerAddress `
-InterfaceAlias $NetworkInterfaceAlias ` -InterfaceAlias $NetworkInterfaceAlias `
-ServerAddresses $DomainDnsServerAddresses -ServerAddresses $DomainDnsServerAddresses
}
else {
$nrptDisplayName = "SGU Azure P2S DNS - $DomainName"
$nrptRule = Get-DnsClientNrptRule -ErrorAction SilentlyContinue |
Where-Object DisplayName -eq $nrptDisplayName |
Select-Object -First 1
if (-not $nrptRule -or
@($DomainDnsServerAddresses | Where-Object { @($nrptRule.NameServers) -contains $_ }).Count -eq 0) {
throw "AzureP2S enrollment requires the managed NRPT rule '$nrptDisplayName'. Run Install-SguAzureP2sClient.ps1 first."
}
}
Resolve-DnsName -Type SRV "_ldap._tcp.dc._msdcs.$DomainName" -ErrorAction Stop | Out-Null Resolve-DnsName -Type SRV "_ldap._tcp.dc._msdcs.$DomainName" -ErrorAction Stop | Out-Null
& (Join-Path $PSScriptRoot 'Install-CredentialProvider.ps1') @installParams | Out-Null & (Join-Path $PSScriptRoot 'Install-CredentialProvider.ps1') @installParams | Out-Null
@@ -101,6 +146,7 @@ if ($PSCmdlet.ShouldProcess($env:COMPUTERNAME, 'Install and verify SGU before jo
-ServerAddress $RustDeskServerAddress ` -ServerAddress $RustDeskServerAddress `
-ServerPublicKey $RustDeskServerPublicKey -ServerPublicKey $RustDeskServerPublicKey
} }
$localStudentUser = & (Join-Path $PSScriptRoot 'Set-SguStandardLocalUser.ps1')
& (Join-Path $PSScriptRoot 'Install-SguEnrollmentGuard.ps1') @guardParams | Out-Null & (Join-Path $PSScriptRoot 'Install-SguEnrollmentGuard.ps1') @guardParams | Out-Null
$testParameters = @{ RequireBrokerHealth = $true } $testParameters = @{ RequireBrokerHealth = $true }
@@ -113,7 +159,7 @@ if ($PSCmdlet.ShouldProcess($env:COMPUTERNAME, 'Install and verify SGU before jo
throw "Domain join refused because SGU enrollment is invalid: $($preJoin.Issues -join ' ')" throw "Domain join refused because SGU enrollment is invalid: $($preJoin.Issues -join ' ')"
} }
if ($computer.PartOfDomain) { if ($computer.PartOfDomain -and $domainMembershipHealthy) {
& (Join-Path $PSScriptRoot 'Enable-LabRemoteAccess.ps1') ` & (Join-Path $PSScriptRoot 'Enable-LabRemoteAccess.ps1') `
-RemoteDesktopPrincipal $RemoteDesktopPrincipal ` -RemoteDesktopPrincipal $RemoteDesktopPrincipal `
-EnableAdministrativeFirewallGroups | Out-Null -EnableAdministrativeFirewallGroups | Out-Null
@@ -128,6 +174,10 @@ if ($PSCmdlet.ShouldProcess($env:COMPUTERNAME, 'Install and verify SGU before jo
$postJoinParameters.RustDeskServerAddress = $RustDeskServerAddress $postJoinParameters.RustDeskServerAddress = $RustDeskServerAddress
} }
$postJoin = & (Join-Path $PSScriptRoot 'Test-SguClientEnrollment.ps1') @postJoinParameters $postJoin = & (Join-Path $PSScriptRoot 'Test-SguClientEnrollment.ps1') @postJoinParameters
if (-not $postJoin.IsValid) {
throw "SGU validation failed on the joined computer: $($postJoin.Issues -join ' ')"
}
$postJoin | Add-Member -NotePropertyName StandardLocalUser -NotePropertyValue $localStudentUser
$postJoin | Add-Member -NotePropertyName RustDesk -NotePropertyValue $rustDeskResult $postJoin | Add-Member -NotePropertyName RustDesk -NotePropertyValue $rustDeskResult
return $postJoin return $postJoin
} }
@@ -159,7 +209,9 @@ if ($PSCmdlet.ShouldProcess($env:COMPUTERNAME, 'Install and verify SGU before jo
[pscustomobject]@{ [pscustomobject]@{
ComputerName = if ($NewComputerName) { $NewComputerName } else { $env:COMPUTERNAME } ComputerName = if ($NewComputerName) { $NewComputerName } else { $env:COMPUTERNAME }
DomainName = $DomainName DomainName = $DomainName
ConnectivityMode = $ConnectivityMode
ProviderValidatedBeforeJoin = $true ProviderValidatedBeforeJoin = $true
StandardLocalUser = $localStudentUser
RustDesk = $rustDeskResult RustDesk = $rustDeskResult
RestartRequired = [bool]$SkipRestart RestartRequired = [bool]$SkipRestart
} }
+48
View File
@@ -0,0 +1,48 @@
#Requires -Version 5.1
[CmdletBinding(SupportsShouldProcess)]
param(
[Parameter(Mandatory)][string]$SubscriptionId,
[Parameter(Mandatory)][string]$ResourceGroupName,
[Parameter(Mandatory)][string]$VpnGatewayName,
[string]$OutputPath = (Join-Path $PSScriptRoot '..\artifacts\azure-p2s\sgu-azure-vpn-client.zip')
)
$ErrorActionPreference = 'Stop'
$ProgressPreference = 'SilentlyContinue'
if (-not (Get-Command az -ErrorAction SilentlyContinue)) {
throw 'Azure CLI is required.'
}
& az account set --subscription $SubscriptionId --only-show-errors
if ($LASTEXITCODE -ne 0) {
throw "Could not select Azure subscription $SubscriptionId."
}
if ($PSCmdlet.ShouldProcess($OutputPath, 'Generate and download the Azure P2S client package')) {
$downloadUriText = & az network vnet-gateway vpn-client generate `
--resource-group $ResourceGroupName `
--name $VpnGatewayName `
--processor-architecture Amd64 `
--authentication-method EAPTLS `
--only-show-errors `
--output tsv
$downloadUriText = ($downloadUriText -join '').Trim()
if ($LASTEXITCODE -ne 0 -or [string]::IsNullOrWhiteSpace($downloadUriText)) {
throw 'Azure did not generate a P2S client package URL.'
}
$downloadUri = $null
if (-not [uri]::TryCreate($downloadUriText, [UriKind]::Absolute, [ref]$downloadUri) -or
$downloadUri.Scheme -ne 'https') {
throw 'Azure returned an invalid VPN client package URL.'
}
$resolvedOutputPath = [IO.Path]::GetFullPath($OutputPath)
New-Item -ItemType Directory -Path (Split-Path $resolvedOutputPath -Parent) -Force | Out-Null
Invoke-WebRequest -Uri $downloadUri -OutFile $resolvedOutputPath -UseBasicParsing
if ((Get-Item -LiteralPath $resolvedOutputPath).Length -lt 1024) {
throw 'The downloaded VPN client package is unexpectedly small.'
}
[pscustomobject]@{
PackagePath = $resolvedOutputPath
Sha256 = (Get-FileHash -LiteralPath $resolvedOutputPath -Algorithm SHA256).Hash
VpnGatewayName = $VpnGatewayName
}
}
+206 -11
View File
@@ -6,6 +6,10 @@ param(
[int]$PrefixLength = 24, [int]$PrefixLength = 24,
[string]$NetworkInterfaceAlias, [string]$NetworkInterfaceAlias,
[ipaddress]$DefaultGateway, [ipaddress]$DefaultGateway,
[ValidateSet('GuestStatic', 'PlatformManaged')]
[string]$NetworkConfigurationMode = 'GuestStatic',
[string[]]$TrustedClientNetworks = @(),
[string[]]$PublicEnrollmentNetworks = @(),
[ipaddress[]]$DnsForwarders = @(), [ipaddress[]]$DnsForwarders = @(),
[string]$DomainName = 'lci.lasalle.mx', [string]$DomainName = 'lci.lasalle.mx',
[string]$DomainNetbios = 'LCI', [string]$DomainNetbios = 'LCI',
@@ -69,6 +73,135 @@ function Get-DomainBaseDn {
return (($DnsDomainName -split '\.') | ForEach-Object { "DC=$_" }) -join ',' return (($DnsDomainName -split '\.') | ForEach-Object { "DC=$_" }) -join ','
} }
function Test-PrivateIPv4Address {
param([Parameter(Mandatory)][ipaddress]$Address)
if ($Address.AddressFamily -ne [Net.Sockets.AddressFamily]::InterNetwork) {
return $false
}
$bytes = $Address.GetAddressBytes()
return $bytes[0] -eq 10 -or
($bytes[0] -eq 172 -and $bytes[1] -ge 16 -and $bytes[1] -le 31) -or
($bytes[0] -eq 192 -and $bytes[1] -eq 168)
}
function ConvertTo-NetworkCidr {
param(
[Parameter(Mandatory)][ipaddress]$Address,
[Parameter(Mandatory)][ValidateRange(1, 32)][int]$NetworkPrefixLength
)
if ($Address.AddressFamily -ne [Net.Sockets.AddressFamily]::InterNetwork) {
throw 'Only IPv4 networks are supported by the SGU bootstrap.'
}
$addressBytes = $Address.GetAddressBytes()
$networkBytes = [byte[]]::new(4)
$remainingBits = $NetworkPrefixLength
for ($index = 0; $index -lt 4; $index++) {
$mask = if ($remainingBits -ge 8) {
255
}
elseif ($remainingBits -le 0) {
0
}
else {
256 - [Math]::Pow(2, 8 - $remainingBits)
}
$networkBytes[$index] = [byte]($addressBytes[$index] -band [int]$mask)
$remainingBits -= 8
}
return "$(($networkBytes | ForEach-Object { [string]$_ }) -join '.')/$NetworkPrefixLength"
}
function ConvertTo-PrivateNetworkCidr {
param([Parameter(Mandatory)][string]$Cidr)
if ($Cidr -notmatch '^([^/]+)/(\d{1,2})$') {
throw "Trusted client network '$Cidr' must use IPv4 CIDR notation, for example 172.30.0.0/24."
}
$address = $null
if (-not [ipaddress]::TryParse($Matches[1], [ref]$address) -or
$address.AddressFamily -ne [Net.Sockets.AddressFamily]::InterNetwork) {
throw "Trusted client network '$Cidr' is not a valid IPv4 network."
}
$networkPrefixLength = [int]$Matches[2]
if ($networkPrefixLength -lt 1 -or $networkPrefixLength -gt 32) {
throw "Trusted client network '$Cidr' has an invalid prefix length."
}
if (-not (Test-PrivateIPv4Address -Address $address)) {
throw "Trusted client network '$Cidr' is not private RFC1918 space. The bootstrap never exposes AD services to public client addresses."
}
return ConvertTo-NetworkCidr -Address $address -NetworkPrefixLength $networkPrefixLength
}
function ConvertTo-PublicNetworkCidr {
param([Parameter(Mandatory)][string]$Cidr)
if ($Cidr -notmatch '^([^/]+)/(\d{1,2})$') {
throw "Public enrollment network '$Cidr' must use IPv4 CIDR notation, for example 203.0.113.0/24."
}
$address = $null
if (-not [ipaddress]::TryParse($Matches[1], [ref]$address) -or
$address.AddressFamily -ne [Net.Sockets.AddressFamily]::InterNetwork) {
throw "Public enrollment network '$Cidr' is not a valid IPv4 network."
}
$networkPrefixLength = [int]$Matches[2]
if ($networkPrefixLength -lt 1 -or $networkPrefixLength -gt 32) {
throw "Public enrollment network '$Cidr' has an invalid prefix length."
}
if (Test-PrivateIPv4Address -Address $address) {
throw "Public enrollment network '$Cidr' is private RFC1918 space. Use -TrustedClientNetworks for LAN or VPN ranges."
}
$bytes = $address.GetAddressBytes()
if ($bytes[0] -in @(0, 127) -or
($bytes[0] -eq 169 -and $bytes[1] -eq 254) -or
$bytes[0] -ge 224) {
throw "Public enrollment network '$Cidr' is not usable unicast IPv4 space."
}
return ConvertTo-NetworkCidr -Address $address -NetworkPrefixLength $networkPrefixLength
}
function Set-SguPublicEnrollmentFirewall {
param(
[Parameter(Mandatory)][ipaddress]$LocalAddress,
[Parameter(Mandatory)][string[]]$RemoteAddress
)
if ($RemoteAddress.Count -eq 0) { return }
$definitions = @(
@{ Name = 'SGU Public Enrollment TCP'; Protocol = 'TCP';
Port = @('53','88','135','389','443','445','464','636','3268','3269','5985','8443','21115-21117','49152-65535') },
@{ Name = 'SGU Public Enrollment UDP'; Protocol = 'UDP';
Port = @('53','88','123','389','464','21116') }
)
foreach ($definition in $definitions) {
$rule = Get-NetFirewallRule -DisplayName $definition.Name -ErrorAction SilentlyContinue
if (-not $rule) {
New-NetFirewallRule -DisplayName $definition.Name -Direction Inbound -Action Allow `
-Protocol $definition.Protocol -LocalPort $definition.Port `
-LocalAddress $LocalAddress.IPAddressToString -RemoteAddress $RemoteAddress `
-Profile Any | Out-Null
}
else {
$rule | Set-NetFirewallRule -Enabled True -Action Allow -Profile Any | Out-Null
$rule | Get-NetFirewallPortFilter | Set-NetFirewallPortFilter `
-Protocol $definition.Protocol -LocalPort $definition.Port | Out-Null
$rule | Get-NetFirewallAddressFilter | Set-NetFirewallAddressFilter `
-LocalAddress $LocalAddress.IPAddressToString -RemoteAddress $RemoteAddress | Out-Null
}
}
}
function Get-ActiveIPv4Adapters {
# Accelerated Networking exposes an Up VF without an IP stack. Configure
# the synthetic adapter that owns IPv4, never the underlying VF.
Get-NetAdapter | Where-Object {
$_.Status -eq 'Up' -and
(Get-NetIPInterface -InterfaceIndex $_.ifIndex -AddressFamily IPv4 `
-ErrorAction SilentlyContinue | Where-Object ConnectionState -eq 'Connected')
}
}
function Resolve-PrivateInterfaceAlias { function Resolve-PrivateInterfaceAlias {
param([string]$RequestedAlias) param([string]$RequestedAlias)
@@ -77,7 +210,7 @@ function Resolve-PrivateInterfaceAlias {
return $RequestedAlias return $RequestedAlias
} }
$upAdapters = @(Get-NetAdapter | Where-Object Status -eq 'Up') $upAdapters = @(Get-ActiveIPv4Adapters)
$withoutGateway = @($upAdapters | Where-Object { $withoutGateway = @($upAdapters | Where-Object {
-not (Get-NetIPConfiguration -InterfaceIndex $_.ifIndex).IPv4DefaultGateway -not (Get-NetIPConfiguration -InterfaceIndex $_.ifIndex).IPv4DefaultGateway
}) })
@@ -147,6 +280,27 @@ function Set-StaticDomainAddress {
-ServerAddresses $Address.IPAddressToString -ServerAddresses $Address.IPAddressToString
} }
function Assert-PlatformManagedDomainAddress {
param(
[Parameter(Mandatory)][string]$InterfaceAlias,
[Parameter(Mandatory)][ipaddress]$Address,
[Parameter(Mandatory)][int]$NetworkPrefixLength
)
$adapter = Get-NetAdapter -Name $InterfaceAlias -ErrorAction Stop
$matchingAddress = Get-NetIPAddress -InterfaceIndex $adapter.ifIndex -AddressFamily IPv4 `
-IPAddress $Address.IPAddressToString -ErrorAction SilentlyContinue |
Where-Object PrefixLength -eq $NetworkPrefixLength |
Select-Object -First 1
if (-not $matchingAddress) {
$observed = @(Get-NetIPAddress -InterfaceIndex $adapter.ifIndex -AddressFamily IPv4 `
-ErrorAction SilentlyContinue |
Where-Object PrefixOrigin -ne 'WellKnown' |
ForEach-Object { "$($_.IPAddress)/$($_.PrefixLength)" }) -join ', '
throw "PlatformManaged mode expected $Address/$NetworkPrefixLength on $InterfaceAlias, but found: $observed. Configure a static private IP on the Azure NIC before running the bootstrap; do not assign it inside Windows."
}
}
function Register-ResumeTask { function Register-ResumeTask {
param([Parameter(Mandatory)][string]$ScriptPath) param([Parameter(Mandatory)][string]$ScriptPath)
@@ -310,6 +464,9 @@ if ($Resume -or (-not $ServerIPv4Address -and $existingState)) {
$PrefixLength = [int]$existingState.PrefixLength $PrefixLength = [int]$existingState.PrefixLength
$NetworkInterfaceAlias = [string]$existingState.NetworkInterfaceAlias $NetworkInterfaceAlias = [string]$existingState.NetworkInterfaceAlias
$DefaultGateway = if ($existingState.DefaultGateway) { [ipaddress][string]$existingState.DefaultGateway } else { $null } $DefaultGateway = if ($existingState.DefaultGateway) { [ipaddress][string]$existingState.DefaultGateway } else { $null }
$NetworkConfigurationMode = if ($existingState.NetworkConfigurationMode) { [string]$existingState.NetworkConfigurationMode } else { 'GuestStatic' }
$TrustedClientNetworks = if ($existingState.TrustedClientNetworks) { @($existingState.TrustedClientNetworks | ForEach-Object { [string]$_ }) } else { @() }
$PublicEnrollmentNetworks = if ($existingState.PublicEnrollmentNetworks) { @($existingState.PublicEnrollmentNetworks | ForEach-Object { [string]$_ }) } else { @() }
$DnsForwarders = @($existingState.DnsForwarders | ForEach-Object { [ipaddress][string]$_ }) $DnsForwarders = @($existingState.DnsForwarders | ForEach-Object { [ipaddress][string]$_ })
$DomainName = [string]$existingState.DomainName $DomainName = [string]$existingState.DomainName
$DomainNetbios = [string]$existingState.DomainNetbios $DomainNetbios = [string]$existingState.DomainNetbios
@@ -321,6 +478,19 @@ if ($Resume -or (-not $ServerIPv4Address -and $existingState)) {
if (-not $ServerIPv4Address) { if (-not $ServerIPv4Address) {
$ServerIPv4Address = [ipaddress](Read-Host 'Fixed IPv4 address for this domain controller') $ServerIPv4Address = [ipaddress](Read-Host 'Fixed IPv4 address for this domain controller')
} }
if (-not (Test-PrivateIPv4Address -Address $ServerIPv4Address)) {
throw 'ServerIPv4Address must be the private address of the domain controller. An Azure public IP is never assigned to AD or published in domain DNS.'
}
$domainSubnet = ConvertTo-NetworkCidr -Address $ServerIPv4Address `
-NetworkPrefixLength $PrefixLength
$TrustedClientNetworks = @($TrustedClientNetworks |
ForEach-Object { ConvertTo-PrivateNetworkCidr -Cidr $_ } |
Where-Object { $_ -ne $domainSubnet } |
Select-Object -Unique)
$PublicEnrollmentNetworks = @($PublicEnrollmentNetworks |
ForEach-Object { ConvertTo-PublicNetworkCidr -Cidr $_ } |
Select-Object -Unique)
$allowedRemoteAddresses = @($domainSubnet) + $TrustedClientNetworks + $PublicEnrollmentNetworks
$sourceRoot = $PSScriptRoot $sourceRoot = $PSScriptRoot
if (-not $Resume) { if (-not $Resume) {
@@ -383,6 +553,9 @@ if (-not $existingState) {
PrefixLength = $PrefixLength PrefixLength = $PrefixLength
NetworkInterfaceAlias = $NetworkInterfaceAlias NetworkInterfaceAlias = $NetworkInterfaceAlias
DefaultGateway = if ($DefaultGateway) { $DefaultGateway.IPAddressToString } else { $null } DefaultGateway = if ($DefaultGateway) { $DefaultGateway.IPAddressToString } else { $null }
NetworkConfigurationMode = $NetworkConfigurationMode
TrustedClientNetworks = $TrustedClientNetworks
PublicEnrollmentNetworks = $PublicEnrollmentNetworks
DnsForwarders = @($DnsForwarders | ForEach-Object IPAddressToString) DnsForwarders = @($DnsForwarders | ForEach-Object IPAddressToString)
DomainName = $DomainName DomainName = $DomainName
DomainNetbios = $DomainNetbios DomainNetbios = $DomainNetbios
@@ -396,9 +569,16 @@ if (-not $existingState) {
[Text.UTF8Encoding]::new($false)) [Text.UTF8Encoding]::new($false))
} }
Write-BootstrapLog "Configuring $NetworkInterfaceAlias as $ServerIPv4Address/$PrefixLength." if ($NetworkConfigurationMode -eq 'PlatformManaged') {
Set-StaticDomainAddress -InterfaceAlias $NetworkInterfaceAlias ` Write-BootstrapLog "Validating platform-managed address $ServerIPv4Address/$PrefixLength on $NetworkInterfaceAlias without changing DHCP, routes, or the Azure NIC."
Assert-PlatformManagedDomainAddress -InterfaceAlias $NetworkInterfaceAlias `
-Address $ServerIPv4Address -NetworkPrefixLength $PrefixLength
}
else {
Write-BootstrapLog "Configuring $NetworkInterfaceAlias as $ServerIPv4Address/$PrefixLength."
Set-StaticDomainAddress -InterfaceAlias $NetworkInterfaceAlias `
-Address $ServerIPv4Address -NetworkPrefixLength $PrefixLength -Gateway $DefaultGateway -Address $ServerIPv4Address -NetworkPrefixLength $PrefixLength -Gateway $DefaultGateway
}
$computer = Get-CimInstance Win32_ComputerSystem $computer = Get-CimInstance Win32_ComputerSystem
if (-not $computer.PartOfDomain) { if (-not $computer.PartOfDomain) {
@@ -454,7 +634,7 @@ Write-BootstrapLog 'Finalizing Active Directory, DNS, policies, broker, shares,
# Once the machine is a DC, every active adapter must query the local DNS # Once the machine is a DC, every active adapter must query the local DNS
# service. Only the private domain adapter may publish its address in the AD # service. Only the private domain adapter may publish its address in the AD
# zone; otherwise clients can receive the DHCP/NAT address of the Internet NIC. # zone; otherwise clients can receive the DHCP/NAT address of the Internet NIC.
Get-NetAdapter | Where-Object Status -eq 'Up' | ForEach-Object { Get-ActiveIPv4Adapters | ForEach-Object {
Set-DnsClientServerAddress -InterfaceIndex $_.ifIndex ` Set-DnsClientServerAddress -InterfaceIndex $_.ifIndex `
-ServerAddresses $ServerIPv4Address.IPAddressToString -ServerAddresses $ServerIPv4Address.IPAddressToString
Set-DnsClient -InterfaceIndex $_.ifIndex ` Set-DnsClient -InterfaceIndex $_.ifIndex `
@@ -472,8 +652,17 @@ Wait-ActiveDirectoryReady -ExpectedBaseDn $baseDn
$domainProfile = Get-NetConnectionProfile -InterfaceAlias $NetworkInterfaceAlias ` $domainProfile = Get-NetConnectionProfile -InterfaceAlias $NetworkInterfaceAlias `
-ErrorAction SilentlyContinue -ErrorAction SilentlyContinue
if (-not $domainProfile -or $domainProfile.NetworkCategory -ne 'DomainAuthenticated') { if (-not $domainProfile -or $domainProfile.NetworkCategory -ne 'DomainAuthenticated') {
if ($NetworkConfigurationMode -eq 'GuestStatic') {
Write-BootstrapLog "Refreshing $NetworkInterfaceAlias so Windows detects the domain network profile." Write-BootstrapLog "Refreshing $NetworkInterfaceAlias so Windows detects the domain network profile."
Restart-NetAdapter -Name $NetworkInterfaceAlias -Confirm:$false Restart-NetAdapter -Name $NetworkInterfaceAlias -Confirm:$false
}
else {
# Restarting an Azure NIC from inside the guest can sever the only
# management path. Refresh NLA instead; this does not change the
# platform-managed address, DHCP lease, route, or link state.
Write-BootstrapLog 'Refreshing Network Location Awareness without restarting the Azure adapter.'
Restart-Service NlaSvc -Force -ErrorAction SilentlyContinue
}
for ($attempt = 1; $attempt -le 15; $attempt++) { for ($attempt = 1; $attempt -le 15; $attempt++) {
Start-Sleep -Seconds 2 Start-Sleep -Seconds 2
$domainProfile = Get-NetConnectionProfile -InterfaceAlias $NetworkInterfaceAlias ` $domainProfile = Get-NetConnectionProfile -InterfaceAlias $NetworkInterfaceAlias `
@@ -577,7 +766,7 @@ if (Test-Path -LiteralPath $brokerConfigurationPath -PathType Leaf) {
-RemoteDesktopGroupDn $remoteDesktopGroup.DistinguishedName ` -RemoteDesktopGroupDn $remoteDesktopGroup.DistinguishedName `
-DefaultCompany 'La Salle' ` -DefaultCompany 'La Salle' `
-FirewallLocalAddress $ServerIPv4Address ` -FirewallLocalAddress $ServerIPv4Address `
-FirewallRemoteAddress "$($ServerIPv4Address.IPAddressToString)/$PrefixLength" ` -FirewallRemoteAddress $allowedRemoteAddresses `
-CreateMissingOus ` -CreateMissingOus `
-DisableCertificateRevocationCheckForLab | Out-Null -DisableCertificateRevocationCheckForLab | Out-Null
@@ -591,9 +780,10 @@ foreach ($hostRecord in $hostRecords) {
} }
} }
$privateSubnet = "$($ServerIPv4Address.IPAddressToString)/$PrefixLength"
& (Join-Path $scriptsRoot 'Enable-SguServerRemoteManagement.ps1') ` & (Join-Path $scriptsRoot 'Enable-SguServerRemoteManagement.ps1') `
-AllowedRemoteAddress $privateSubnet | Out-Null -AllowedRemoteAddress $allowedRemoteAddresses | Out-Null
Set-SguPublicEnrollmentFirewall -LocalAddress $ServerIPv4Address `
-RemoteAddress $PublicEnrollmentNetworks
$contentPath = Join-Path $bootstrapRoot 'payload\server-content\Packages' $contentPath = Join-Path $bootstrapRoot 'payload\server-content\Packages'
if (Test-Path -LiteralPath $contentPath -PathType Container) { if (Test-Path -LiteralPath $contentPath -PathType Container) {
@@ -613,7 +803,7 @@ if (-not $packageFirewallRule) {
-Protocol TCP ` -Protocol TCP `
-LocalPort 445 ` -LocalPort 445 `
-LocalAddress $ServerIPv4Address.IPAddressToString ` -LocalAddress $ServerIPv4Address.IPAddressToString `
-RemoteAddress $privateSubnet ` -RemoteAddress $allowedRemoteAddresses `
-Profile Any | Out-Null -Profile Any | Out-Null
} }
else { else {
@@ -621,7 +811,7 @@ else {
$packageFirewallRule | Get-NetFirewallAddressFilter | $packageFirewallRule | Get-NetFirewallAddressFilter |
Set-NetFirewallAddressFilter ` Set-NetFirewallAddressFilter `
-LocalAddress $ServerIPv4Address.IPAddressToString ` -LocalAddress $ServerIPv4Address.IPAddressToString `
-RemoteAddress $privateSubnet | Out-Null -RemoteAddress $allowedRemoteAddresses | Out-Null
} }
$collectorFqdn = "$env:COMPUTERNAME.$DomainName" $collectorFqdn = "$env:COMPUTERNAME.$DomainName"
@@ -642,7 +832,7 @@ $userPolicyParameters = @{
$rustDeskServer = & (Join-Path $scriptsRoot 'Install-SguRustDeskServer.ps1') ` $rustDeskServer = & (Join-Path $scriptsRoot 'Install-SguRustDeskServer.ps1') `
-ServerAddress $rustDeskDnsName ` -ServerAddress $rustDeskDnsName `
-FirewallRemoteAddress $privateSubnet -FirewallRemoteAddress $allowedRemoteAddresses
$rustDeskManagementRoot = Join-Path $env:ProgramData 'SGU\RustDesk' $rustDeskManagementRoot = Join-Path $env:ProgramData 'SGU\RustDesk'
New-Item -ItemType Directory -Path $rustDeskManagementRoot -Force | Out-Null New-Item -ItemType Directory -Path $rustDeskManagementRoot -Force | Out-Null
foreach ($scriptName in @( foreach ($scriptName in @(
@@ -680,6 +870,10 @@ $validation = [ordered]@{
ComputerName = $env:COMPUTERNAME ComputerName = $env:COMPUTERNAME
DomainName = $DomainName DomainName = $DomainName
ServerIPv4Address = $ServerIPv4Address.IPAddressToString ServerIPv4Address = $ServerIPv4Address.IPAddressToString
NetworkConfigurationMode = $NetworkConfigurationMode
TrustedClientNetworks = $TrustedClientNetworks
PublicEnrollmentNetworks = $PublicEnrollmentNetworks
AllowedRemoteAddresses = $allowedRemoteAddresses
BrokerDnsName = $brokerDnsName BrokerDnsName = $brokerDnsName
BrokerCertificateThumbprint = $serverCertificate.Thumbprint BrokerCertificateThumbprint = $serverCertificate.Thumbprint
BrokerService = (Get-Service SGUAuthBroker).Status.ToString() BrokerService = (Get-Service SGUAuthBroker).Status.ToString()
@@ -714,7 +908,8 @@ if ($validation.BrokerService -ne 'Running' -or
-not $validation.RustDeskHbbsListening -or -not $validation.RustDeskHbbsListening -or
-not $validation.RustDeskHbbrListening -or -not $validation.RustDeskHbbrListening -or
$validation.EventCollector -ne 'Running' -or $validation.EventCollector -ne 'Running' -or
-not $validation.EventSubscription) { -not $validation.EventSubscription -or
$validation.DomainNetworkProfile -ne 'DomainAuthenticated') {
throw 'Server finalization did not pass service validation. Review bootstrap.log and re-run the bootstrap.' throw 'Server finalization did not pass service validation. Review bootstrap.log and re-run the bootstrap.'
} }
+127
View File
@@ -0,0 +1,127 @@
#Requires -Version 5.1
#Requires -RunAsAdministrator
[CmdletBinding(SupportsShouldProcess)]
param(
[Parameter(Mandatory)][string]$VpnProfilePackagePath,
[Parameter(Mandatory)][string]$ClientCertificatePfxPath,
[securestring]$ClientCertificatePfxPassword,
[Parameter(Mandatory)][string]$ClientRootCertificatePath,
[string]$ConnectionName = 'SGU Azure P2S',
[string[]]$AzureNetworkPrefixes = @('10.77.0.0/16'),
[ipaddress]$DomainControllerIPv4Address = '10.77.0.4',
[string]$DomainName = 'lci.lasalle.mx',
[switch]$Connect
)
$ErrorActionPreference = 'Stop'
foreach ($path in @($VpnProfilePackagePath,$ClientCertificatePfxPath,$ClientRootCertificatePath)) {
if (-not (Test-Path -LiteralPath $path -PathType Leaf)) {
throw "Required P2S file not found: $path"
}
}
if (-not $ClientCertificatePfxPassword) {
$ClientCertificatePfxPassword = Read-Host 'Password protecting the P2S client PFX' -AsSecureString
}
$temporaryRoot = Join-Path $env:ProgramData ("SGU\AzureP2S\Import-" + [Guid]::NewGuid().ToString('N'))
try {
Expand-Archive -LiteralPath $VpnProfilePackagePath -DestinationPath $temporaryRoot -Force
$vpnSettingsPath = Get-ChildItem -LiteralPath $temporaryRoot -Recurse -Filter VpnSettings.xml -File |
Select-Object -First 1 -ExpandProperty FullName
if (-not $vpnSettingsPath) {
throw 'The Azure package does not contain Generic\VpnSettings.xml. Generate it with IKEv2 enabled.'
}
[xml]$vpnSettings = Get-Content -LiteralPath $vpnSettingsPath -Raw
$vpnServerNode = $vpnSettings.SelectSingleNode('//*[local-name()="VpnServer"]')
if (-not $vpnServerNode -or [string]::IsNullOrWhiteSpace($vpnServerNode.InnerText)) {
throw 'VpnSettings.xml does not contain the Azure VPN gateway FQDN.'
}
$vpnServer = $vpnServerNode.InnerText.Trim()
$serverRootPath = Get-ChildItem -LiteralPath (Split-Path $vpnSettingsPath -Parent) `
-Filter VpnServerRoot.cer -File | Select-Object -First 1 -ExpandProperty FullName
if ($serverRootPath) {
Import-Certificate -FilePath $serverRootPath -CertStoreLocation Cert:\LocalMachine\Root | Out-Null
}
$clientRoot = Import-Certificate -FilePath $ClientRootCertificatePath `
-CertStoreLocation Cert:\LocalMachine\Root | Select-Object -First 1
$clientCertificates = @(Import-PfxCertificate -FilePath $ClientCertificatePfxPath `
-Password $ClientCertificatePfxPassword -CertStoreLocation Cert:\LocalMachine\My)
$clientCertificate = $clientCertificates |
Where-Object {
$_.HasPrivateKey -and
$_.NotAfter -gt (Get-Date) -and
@($_.EnhancedKeyUsageList | ForEach-Object ObjectId) -contains '1.3.6.1.5.5.7.3.2'
} |
Sort-Object NotAfter -Descending |
Select-Object -First 1
if (-not $clientCertificate) {
throw 'The imported PFX does not contain a valid Client Authentication certificate with a private key.'
}
if ($PSCmdlet.ShouldProcess($ConnectionName, 'Install an all-user IKEv2 Azure P2S connection using a machine certificate')) {
$existingConnection = Get-VpnConnection -Name $ConnectionName -AllUserConnection `
-ErrorAction SilentlyContinue
if ($existingConnection) {
Remove-VpnConnection -Name $ConnectionName -AllUserConnection -Force
}
$dnsParameters = @{}
if ($DomainName) { $dnsParameters.DnsSuffix = $DomainName }
Add-VpnConnection @dnsParameters `
-Name $ConnectionName `
-ServerAddress $vpnServer `
-TunnelType Ikev2 `
-AuthenticationMethod MachineCertificate `
-MachineCertificateIssuerFilter $clientRoot `
-MachineCertificateEKUFilter '1.3.6.1.5.5.7.3.2' `
-EncryptionLevel Required `
-SplitTunneling `
-AllUserConnection `
-Force | Out-Null
foreach ($prefix in $AzureNetworkPrefixes) {
Add-VpnConnectionRoute -ConnectionName $ConnectionName `
-DestinationPrefix $prefix -AllUserConnection -PassThru | Out-Null
}
# The unified bootstrap can discover the domain after connecting.
if ($DomainName) {
$nrptDisplayName = "SGU Azure P2S DNS - $DomainName"
Get-DnsClientNrptRule -ErrorAction SilentlyContinue |
Where-Object DisplayName -eq $nrptDisplayName |
Remove-DnsClientNrptRule -Force
Add-DnsClientNrptRule `
-Namespace ".$DomainName" `
-NameServers $DomainControllerIPv4Address.IPAddressToString `
-DisplayName $nrptDisplayName `
-Comment 'Managed by SGU Azure P2S bootstrap; routes only the AD namespace to the domain controller.' | Out-Null
}
}
if ($Connect) {
& "$env:SystemRoot\System32\rasdial.exe" $ConnectionName
if ($LASTEXITCODE -ne 0) {
throw "Windows could not connect $ConnectionName. Verify UDP 500/4500 (IKEv2), or configure the Azure-generated OpenVPN profile in Azure VPN Client when the local network blocks IKEv2."
}
}
$connection = Get-VpnConnection -Name $ConnectionName -AllUserConnection
[pscustomobject]@{
ConnectionName = $connection.Name
ServerAddress = $connection.ServerAddress
TunnelType = $connection.TunnelType
AllUserConnection = $true
AuthenticationMethod = $connection.AuthenticationMethod
ConnectionStatus = $connection.ConnectionStatus
ClientCertificateThumbprint = $clientCertificate.Thumbprint
DomainControllerIPv4Address = $DomainControllerIPv4Address.IPAddressToString
DomainDnsNamespace = ".$DomainName"
AzureNetworkPrefixes = $AzureNetworkPrefixes
AvailableBeforeLogon = $true
}
}
finally {
$ClientCertificatePfxPassword = $null
if (Test-Path -LiteralPath $temporaryRoot) {
Remove-Item -LiteralPath $temporaryRoot -Recurse -Force -ErrorAction SilentlyContinue
}
}
+1
View File
@@ -32,6 +32,7 @@ $sourceScripts = @(
'Enable-LabRemoteAccess.ps1', 'Enable-LabRemoteAccess.ps1',
'Enable-SguClientMonitoring.ps1', 'Enable-SguClientMonitoring.ps1',
'Install-SguRustDeskClient.ps1', 'Install-SguRustDeskClient.ps1',
'Set-SguStandardLocalUser.ps1',
'Test-SguClientEnrollment.ps1', 'Test-SguClientEnrollment.ps1',
'Repair-SguClientEnrollment.ps1' 'Repair-SguClientEnrollment.ps1'
) )
+2 -1
View File
@@ -6,7 +6,8 @@ param(
[string]$InstallRoot = "$env:ProgramFiles\SGU\RustDeskServer", [string]$InstallRoot = "$env:ProgramFiles\SGU\RustDeskServer",
[string]$DataRoot = "$env:ProgramData\SGU\RustDesk\Server", [string]$DataRoot = "$env:ProgramData\SGU\RustDesk\Server",
[string]$FirewallRemoteAddress = '192.168.50.0/24', [ValidateNotNullOrEmpty()]
[string[]]$FirewallRemoteAddress = @('192.168.50.0/24'),
[uri]$DownloadUri = 'https://github.com/rustdesk/rustdesk-server/releases/download/1.1.16/rustdesk-server-windows-x86_64-unsigned.zip', [uri]$DownloadUri = 'https://github.com/rustdesk/rustdesk-server/releases/download/1.1.16/rustdesk-server-windows-x86_64-unsigned.zip',
[ValidatePattern('^[A-Fa-f0-9]{64}$')] [ValidatePattern('^[A-Fa-f0-9]{64}$')]
[string]$ExpectedSha256 = 'B865A3A62FC8755B45480C508F1C4871C3338590408DDA8C58C7E9C373B7ADB0' [string]$ExpectedSha256 = 'B865A3A62FC8755B45480C508F1C4871C3338590408DDA8C58C7E9C373B7ADB0'
+679 -40
View File
@@ -3,19 +3,60 @@
param( param(
[ipaddress]$DomainControllerIPv4Address, [ipaddress]$DomainControllerIPv4Address,
[string]$NetworkInterfaceAlias, [string]$NetworkInterfaceAlias,
[ipaddress]$ClientIPv4Address,
[ValidateRange(1, 32)]
[int]$ClientPrefixLength = 24,
[PSCredential]$DomainCredential, [PSCredential]$DomainCredential,
[string]$DomainName = 'lci.lasalle.mx', [string]$DomainName,
[string]$DomainNetbios = 'LCI', [string]$DomainNetbios,
[string]$ComputerOuDn, [string]$ComputerOuDn,
[string]$NewComputerName, [string]$NewComputerName,
[ValidateSet('Auto', 'Windows10Legacy', 'Windows11Modern')]
[string]$CompatibilityProfile = 'Auto',
[ValidateSet('Direct', 'AzureP2S')]
[string]$ConnectivityMode = 'Direct',
[string]$VpnConnectionName = 'SGU Azure P2S',
[string]$VpnProfilePackagePath,
[string]$VpnClientCertificatePfxPath,
[securestring]$VpnClientCertificatePfxPassword,
[string]$VpnClientRootCertificatePath,
[string[]]$AzureNetworkPrefixes = @('10.77.0.0/16'),
[switch]$PauseOnError,
[switch]$SkipRestart [switch]$SkipRestart
) )
$ErrorActionPreference = 'Stop' $ErrorActionPreference = 'Stop'
$brokerRecordName = 'sgu-auth' $brokerRecordName = 'sgu-auth'
$brokerDnsName = "$brokerRecordName.$DomainName"
$brokerEndpoint = "https://${brokerDnsName}:8443/v1/authenticate"
$temporaryRoot = Join-Path $env:ProgramData ("SGU\Bootstrap\Client-" + [Guid]::NewGuid().ToString('N')) $temporaryRoot = Join-Path $env:ProgramData ("SGU\Bootstrap\Client-" + [Guid]::NewGuid().ToString('N'))
$bootstrapLogRoot = Join-Path $env:ProgramData 'SGU\Bootstrap\Client'
$bootstrapErrorLog = Join-Path $bootstrapLogRoot 'latest-error.log'
trap {
$failure = $_
$failureText = @(
"SGU client enrollment failed at $((Get-Date).ToString('s')).",
'',
$failure.Exception.Message,
'',
$failure.ScriptStackTrace
) -join [Environment]::NewLine
try {
New-Item -ItemType Directory -Path $bootstrapLogRoot -Force | Out-Null
[IO.File]::WriteAllText($bootstrapErrorLog, $failureText, [Text.UTF8Encoding]::new($false))
}
catch {
# Keep the original enrollment error when diagnostics cannot be written.
}
Write-Host ''
Write-Host 'SGU client enrollment did not complete.' -ForegroundColor Red
Write-Host $failure.Exception.Message -ForegroundColor Red
Write-Host "Diagnostic log: $bootstrapErrorLog" -ForegroundColor Yellow
if ($PauseOnError -and [Environment]::UserInteractive) {
Read-Host 'Press ENTER to close this window' | Out-Null
}
exit 1
}
function Assert-Administrator { function Assert-Administrator {
$identity = [Security.Principal.WindowsIdentity]::GetCurrent() $identity = [Security.Principal.WindowsIdentity]::GetCurrent()
@@ -44,42 +85,235 @@ function Assert-PackageManifest {
throw "Bootstrap package integrity check failed: $($entry.Path)" throw "Bootstrap package integrity check failed: $($entry.Path)"
} }
} }
return $manifest
} }
function Resolve-ClientInterfaceAlias { function Resolve-ClientInterfaceAlias {
param([string]$RequestedAlias) param(
[string]$RequestedAlias,
[Parameter(Mandatory)][ipaddress]$DomainControllerAddress
)
if ($RequestedAlias) { # IP interfaces include tunnel/PPP adapters that Get-NetAdapter can omit.
Get-NetAdapter -Name $RequestedAlias -ErrorAction Stop | Out-Null $interfaces = @(Get-NetIPInterface -AddressFamily IPv4 | Where-Object {
return $RequestedAlias $_.ConnectionState -eq 'Connected' -and
(-not $RequestedAlias -or $_.InterfaceAlias -eq $RequestedAlias)
})
$preferred = @(Find-NetRoute -RemoteIPAddress $DomainControllerAddress.IPAddressToString `
-ErrorAction SilentlyContinue | Where-Object { $_.PSObject.Properties['IPAddress'] })
$attempts = @()
$candidates = @(foreach ($interface in $interfaces) {
$addresses = @(Get-NetIPAddress -InterfaceIndex $interface.InterfaceIndex -AddressFamily IPv4 `
-ErrorAction SilentlyContinue | Where-Object {
$_.AddressState -eq 'Preferred' -and -not $_.SkipAsSource -and
$_.IPAddress -notmatch '^(0\.|127\.|169\.254\.)'
})
if ($addresses.Count -eq 0) {
$attempts += "$($interface.InterfaceAlias): no usable IPv4 address (check DHCP/static configuration)"
continue
}
$route = Get-NetRoute -InterfaceIndex $interface.InterfaceIndex -AddressFamily IPv4 `
-PolicyStore ActiveStore -ErrorAction SilentlyContinue | Where-Object {
$parts = $_.DestinationPrefix -split '/'
Test-IPv4AddressesSharePrefix -FirstAddress $DomainControllerAddress `
-SecondAddress ([ipaddress]$parts[0]) -PrefixLength ([int]$parts[1])
} | Sort-Object @{ Expression = { [int]($_.DestinationPrefix -split '/')[1] }; Descending = $true },
RouteMetric | Select-Object -First 1
if ($route) {
foreach ($address in $addresses) {
[pscustomobject]@{
InterfaceAlias = $interface.InterfaceAlias
InterfaceIndex = [int]$interface.InterfaceIndex
IPAddress = $address.IPAddress
NextHop = $route.NextHop
Preferred = @($preferred | Where-Object IPAddress -eq $address.IPAddress).Count -gt 0
PrefixLength = [int]($route.DestinationPrefix -split '/')[1]
Metric = [int]$route.RouteMetric + [int]$interface.InterfaceMetric
}
}
}
else { $attempts += "$($interface.InterfaceAlias): no route to $DomainControllerAddress" }
})
if ($interfaces.Count -eq 0) { $attempts += 'No matching connected IPv4 interface' }
foreach ($candidate in ($candidates | Sort-Object @{ Expression = { $_.Preferred }; Descending = $true },
@{ Expression = { $_.PrefixLength }; Descending = $true }, Metric, InterfaceIndex, IPAddress)) {
Write-Host "Checking $($candidate.InterfaceAlias) ($($candidate.IPAddress)) -> $DomainControllerAddress..."
if (Test-TcpPort -Address $DomainControllerAddress -Port 5985 -TimeoutMilliseconds 2000 `
-SourceAddress ([ipaddress]$candidate.IPAddress) -InterfaceIndex $candidate.InterfaceIndex) {
return $candidate
}
$attempts += "$($candidate.InterfaceAlias) [$($candidate.IPAddress), next hop $($candidate.NextHop)]: TCP 5985 unavailable"
}
throw "Cannot reach SGU server $DomainControllerAddress. $($attempts -join '; '). Check the LAN/VPN connection, DHCP or an administrator-assigned IP, routes and the server WinRM firewall. No client IP was changed."
}
function Test-IPv4AddressesSharePrefix {
param(
[Parameter(Mandatory)][ipaddress]$FirstAddress,
[Parameter(Mandatory)][ipaddress]$SecondAddress,
[Parameter(Mandatory)][ValidateRange(0, 32)][int]$PrefixLength
)
if ($FirstAddress.AddressFamily -ne [Net.Sockets.AddressFamily]::InterNetwork -or
$SecondAddress.AddressFamily -ne [Net.Sockets.AddressFamily]::InterNetwork) {
return $false
} }
$defaultRoute = Get-NetRoute -AddressFamily IPv4 -DestinationPrefix '0.0.0.0/0' ` $firstBytes = $FirstAddress.GetAddressBytes()
$secondBytes = $SecondAddress.GetAddressBytes()
$remainingBits = $PrefixLength
for ($index = 0; $index -lt 4; $index++) {
$bits = [Math]::Min(8, $remainingBits)
$mask = if ($bits -eq 0) {
0
}
elseif ($bits -eq 8) {
255
}
else {
256 - [int][Math]::Pow(2, 8 - $bits)
}
if (($firstBytes[$index] -band $mask) -ne ($secondBytes[$index] -band $mask)) {
return $false
}
$remainingBits -= $bits
}
return $true
}
function Test-PrivateIPv4Address {
param([Parameter(Mandatory)][ipaddress]$Address)
if ($Address.AddressFamily -ne [Net.Sockets.AddressFamily]::InterNetwork) {
return $false
}
$bytes = $Address.GetAddressBytes()
return $bytes[0] -eq 10 -or
($bytes[0] -eq 172 -and $bytes[1] -ge 16 -and $bytes[1] -le 31) -or
($bytes[0] -eq 192 -and $bytes[1] -eq 168)
}
function Wait-ClientInterface {
param(
[string]$RequestedAlias,
[Parameter(Mandatory)][ipaddress]$DomainControllerAddress,
[int]$TimeoutSeconds = 20
)
$deadline = (Get-Date).AddSeconds($TimeoutSeconds)
do {
try {
return Resolve-ClientInterfaceAlias -RequestedAlias $RequestedAlias `
-DomainControllerAddress $DomainControllerAddress
}
catch {
$lastFailure = $_
if ((Get-Date) -ge $deadline) { throw $lastFailure }
Write-Host 'Waiting for DHCP, VPN routes or server connectivity to become ready...'
Start-Sleep -Seconds 2
}
} while ($true)
}
function Assert-UsableClientIPv4Address {
param(
[Parameter(Mandatory)][ipaddress]$Address,
[Parameter(Mandatory)][ipaddress]$DomainControllerAddress,
[Parameter(Mandatory)][ValidateRange(1, 32)][int]$PrefixLength
)
if ($Address.AddressFamily -ne [Net.Sockets.AddressFamily]::InterNetwork) {
throw "The SGU client address '$Address' must be IPv4."
}
if ($Address.IPAddressToString -eq $DomainControllerAddress.IPAddressToString) {
throw 'The SGU client and domain controller cannot use the same IPv4 address.'
}
if ($Address.IPAddressToString -match '^(0\.|127\.|169\.254\.|22[4-9]\.|23\d\.)') {
throw "The SGU client address '$Address' is not usable on the private domain network."
}
if (-not (Test-IPv4AddressesSharePrefix -FirstAddress $Address `
-SecondAddress $DomainControllerAddress -PrefixLength $PrefixLength)) {
throw "The SGU client address '$Address/$PrefixLength' is not on the same network as domain controller $DomainControllerAddress."
}
}
function Set-ClientDomainAddress {
param(
[Parameter(Mandatory)][string]$InterfaceAlias,
[Parameter(Mandatory)][ipaddress]$DomainControllerAddress,
[ipaddress]$RequestedAddress,
[Parameter(Mandatory)][ValidateRange(1, 32)][int]$PrefixLength
)
$adapter = Get-NetAdapter -Name $InterfaceAlias -ErrorAction Stop
$matchingAddress = Get-NetIPAddress -InterfaceIndex $adapter.ifIndex -AddressFamily IPv4 `
-ErrorAction SilentlyContinue | -ErrorAction SilentlyContinue |
Sort-Object RouteMetric,InterfaceMetric | Where-Object {
$_.AddressState -eq 'Preferred' -and
$_.IPAddress -notmatch '^(127\.|169\.254\.)' -and
(Test-IPv4AddressesSharePrefix -FirstAddress ([ipaddress]$_.IPAddress) `
-SecondAddress $DomainControllerAddress -PrefixLength $PrefixLength)
} |
Select-Object -First 1 Select-Object -First 1
if ($defaultRoute) {
return [string](Get-NetAdapter -InterfaceIndex $defaultRoute.InterfaceIndex).Name if (-not $RequestedAddress -and $matchingAddress) {
return [ipaddress]$matchingAddress.IPAddress
}
if (-not $RequestedAddress) {
throw 'Static addressing requires an explicit -ClientIPv4Address. Automatic enrollment preserves DHCP and existing addresses.'
}
Assert-UsableClientIPv4Address -Address $RequestedAddress `
-DomainControllerAddress $DomainControllerAddress -PrefixLength $PrefixLength
Set-NetIPInterface -InterfaceIndex $adapter.ifIndex -AddressFamily IPv4 -Dhcp Disabled
$existingAddresses = @(Get-NetIPAddress -InterfaceIndex $adapter.ifIndex -AddressFamily IPv4 `
-ErrorAction SilentlyContinue | Where-Object PrefixOrigin -ne 'WellKnown')
foreach ($existingAddress in $existingAddresses) {
if ($existingAddress.IPAddress -ne $RequestedAddress.IPAddressToString -or
[int]$existingAddress.PrefixLength -ne $PrefixLength) {
Remove-NetIPAddress -InputObject $existingAddress -Confirm:$false
}
}
if (-not (Get-NetIPAddress -InterfaceIndex $adapter.ifIndex -AddressFamily IPv4 `
-IPAddress $RequestedAddress.IPAddressToString -ErrorAction SilentlyContinue)) {
New-NetIPAddress -InterfaceIndex $adapter.ifIndex -AddressFamily IPv4 `
-IPAddress $RequestedAddress.IPAddressToString -PrefixLength $PrefixLength | Out-Null
} }
$upAdapters = @(Get-NetAdapter | Where-Object Status -eq 'Up') $addressReadyDeadline = (Get-Date).AddSeconds(20)
if ($upAdapters.Count -eq 1) { do {
return [string]$upAdapters[0].Name $configuredAddress = Get-NetIPAddress -InterfaceIndex $adapter.ifIndex `
-AddressFamily IPv4 -IPAddress $RequestedAddress.IPAddressToString `
-ErrorAction SilentlyContinue
if ($configuredAddress -and $configuredAddress.AddressState -eq 'Preferred') {
return $RequestedAddress
} }
Start-Sleep -Milliseconds 500
} while ((Get-Date) -lt $addressReadyDeadline)
$aliases = ($upAdapters.Name | Sort-Object) -join ', ' $observedState = if ($configuredAddress) { $configuredAddress.AddressState } else { 'Missing' }
throw "Could not select a network adapter. Re-run with -NetworkInterfaceAlias. Available adapters: $aliases" throw "The SGU client address '$RequestedAddress' did not become ready on '$InterfaceAlias' within 20 seconds. Observed state: $observedState."
} }
function Test-TcpPort { function Test-TcpPort {
param( param(
[Parameter(Mandatory)][ipaddress]$Address, [Parameter(Mandatory)][ipaddress]$Address,
[Parameter(Mandatory)][int]$Port, [Parameter(Mandatory)][int]$Port,
[int]$TimeoutMilliseconds = 5000 [int]$TimeoutMilliseconds = 5000,
[ipaddress]$SourceAddress,
[int]$InterfaceIndex
) )
$client = [Net.Sockets.TcpClient]::new() $client = [Net.Sockets.TcpClient]::new([Net.Sockets.AddressFamily]::InterNetwork)
$connect = $null
try { try {
if ($InterfaceIndex) {
# IP_UNICAST_IF (31) expects the interface index in network byte order.
$client.Client.SetSocketOption([Net.Sockets.SocketOptionLevel]::IP,
[Net.Sockets.SocketOptionName]31, [Net.IPAddress]::HostToNetworkOrder($InterfaceIndex))
}
if ($SourceAddress) {
$client.Client.Bind([Net.IPEndPoint]::new($SourceAddress, 0))
}
$connect = $client.BeginConnect($Address, $Port, $null, $null) $connect = $client.BeginConnect($Address, $Port, $null, $null)
if (-not $connect.AsyncWaitHandle.WaitOne($TimeoutMilliseconds)) { if (-not $connect.AsyncWaitHandle.WaitOne($TimeoutMilliseconds)) {
return $false return $false
@@ -92,30 +326,223 @@ function Test-TcpPort {
} }
finally { finally {
$client.Dispose() $client.Dispose()
if ($connect) { $connect.AsyncWaitHandle.Close() }
} }
} }
function Set-ClientServerRoute {
param(
[Parameter(Mandatory)]$SelectedInterface,
[Parameter(Mandatory)][ipaddress]$DomainControllerAddress
)
$current = @(Find-NetRoute -RemoteIPAddress $DomainControllerAddress.IPAddressToString |
Where-Object { $_.PSObject.Properties['IPAddress'] })
if (@($current | Where-Object InterfaceIndex -eq $SelectedInterface.InterfaceIndex).Count -gt 0) { return }
# Only pin this server when Windows currently chooses a different interface.
# Do not replace default routes or change interface metrics used by Internet traffic.
$route = New-NetRoute -DestinationPrefix "$DomainControllerAddress/32" `
-InterfaceIndex $SelectedInterface.InterfaceIndex -NextHop $SelectedInterface.NextHop `
-RouteMetric 1
$current = @(Find-NetRoute -RemoteIPAddress $DomainControllerAddress.IPAddressToString |
Where-Object { $_.PSObject.Properties['IPAddress'] })
if (@($current | Where-Object InterfaceIndex -eq $SelectedInterface.InterfaceIndex).Count -eq 0) {
$route | Remove-NetRoute -Confirm:$false
throw "Windows still routes $DomainControllerAddress through another interface. Resolve conflicting host routes or VPN policies and retry."
}
}
function Set-ClientDomainDns {
param(
[Parameter(Mandatory)][string]$DnsDomain,
[Parameter(Mandatory)][ipaddress]$ServerAddress
)
$displayName = "SGU domain DNS - $DnsDomain"
$existing = @(Get-DnsClientNrptRule -ErrorAction Stop | Where-Object DisplayName -eq $displayName)
if ($existing.Count -eq 1 -and @($existing[0].NameServers) -contains $ServerAddress.IPAddressToString -and
@($existing[0].Namespace) -contains ".$DnsDomain" -and @($existing[0].Namespace) -contains $DnsDomain) { return }
$existing | Remove-DnsClientNrptRule -Force
Add-DnsClientNrptRule -Namespace @($DnsDomain, ".$DnsDomain") `
-NameServers $ServerAddress.IPAddressToString -DisplayName $displayName | Out-Null
Clear-DnsClientCache
}
function Test-ClientDomainDns {
param([Parameter(Mandatory)][string]$DnsDomain)
try {
$records = @(Resolve-DnsName -Type SRV "_ldap._tcp.dc._msdcs.$DnsDomain" `
-DnsOnly -ErrorAction Stop)
return @($records | Where-Object {
$_.Type -eq 'SRV' -and -not [string]::IsNullOrWhiteSpace([string]$_.NameTarget)
}).Count -gt 0
}
catch {
return $false
}
}
function Set-ClientHostMappings {
param(
[Parameter(Mandatory)][ipaddress]$ServerAddress,
[Parameter(Mandatory)][string[]]$HostNames
)
$hostsPath = Join-Path $env:SystemRoot 'System32\drivers\etc\hosts'
$managedNames = @($HostNames |
Where-Object { -not [string]::IsNullOrWhiteSpace($_) } |
ForEach-Object { $_.Trim().ToLowerInvariant() } |
Select-Object -Unique)
$preservedLines = foreach ($line in [IO.File]::ReadAllLines($hostsPath)) {
$data = ($line -split '#', 2)[0].Trim()
$tokens = @($data -split '\s+' | Where-Object { $_ })
$lineNames = if ($tokens.Count -gt 1) {
@($tokens[1..($tokens.Count - 1)] | ForEach-Object { $_.ToLowerInvariant() })
}
else { @() }
if (@($lineNames | Where-Object { $managedNames -contains $_ }).Count -eq 0) {
$line
}
}
$mapping = '{0} {1} # SGU managed direct enrollment' -f
$ServerAddress.IPAddressToString,($managedNames -join ' ')
[IO.File]::WriteAllLines($hostsPath, @($preservedLines) + $mapping,
[Text.UTF8Encoding]::new($false))
Clear-DnsClientCache
}
function Enable-ClientDnsOverHttps {
param(
[Parameter(Mandatory)][ipaddress]$ServerAddress,
[Parameter(Mandatory)][string]$DohTemplate,
[Parameter(Mandatory)][string]$CertificateBase64
)
if (-not (Get-Command Add-DnsClientDohServerAddress -ErrorAction SilentlyContinue)) {
throw 'This Windows build cannot configure DNS over HTTPS. Permit traditional DNS to the supplied server or update Windows, then retry.'
}
$certificate = [Security.Cryptography.X509Certificates.X509Certificate2]::new(
[Convert]::FromBase64String($CertificateBase64))
$store = [Security.Cryptography.X509Certificates.X509Store]::new(
[Security.Cryptography.X509Certificates.StoreName]::Root,
[Security.Cryptography.X509Certificates.StoreLocation]::LocalMachine)
try {
$store.Open([Security.Cryptography.X509Certificates.OpenFlags]::ReadWrite)
if (-not @($store.Certificates | Where-Object Thumbprint -eq $certificate.Thumbprint).Count) {
$store.Add($certificate)
}
}
finally {
$store.Close()
$certificate.Dispose()
}
$existing = Get-DnsClientDohServerAddress -ErrorAction SilentlyContinue |
Where-Object ServerAddress -eq $ServerAddress.IPAddressToString |
Select-Object -First 1
if ($existing) {
Set-DnsClientDohServerAddress -ServerAddress $ServerAddress.IPAddressToString `
-DohTemplate $DohTemplate -AllowFallbackToUdp $false -AutoUpgrade $true | Out-Null
}
else {
Add-DnsClientDohServerAddress -ServerAddress $ServerAddress.IPAddressToString `
-DohTemplate $DohTemplate -AllowFallbackToUdp $false -AutoUpgrade $true | Out-Null
}
& "$env:SystemRoot\System32\netsh.exe" dnsclient set global doh=yes | Out-Null
if ($LASTEXITCODE -ne 0) {
throw 'Windows did not enable its global DNS over HTTPS client setting.'
}
Clear-DnsClientCache
}
function Assert-ClientOperatingSystem {
param(
[Parameter(Mandatory)]$OperatingSystem,
[Parameter(Mandatory)][string]$Edition,
[Parameter(Mandatory)][string]$Architecture
)
if ([int]$OperatingSystem.ProductType -ne 1) {
throw 'The client bootstrap supports Windows 10/11 workstations. Use the server bootstrap on Windows Server.'
}
if ([int]$OperatingSystem.BuildNumber -lt 14393 -or $Architecture -ne 'AMD64') {
throw 'This package requires Windows 10 1607 or later, or Windows 11, running x64 Windows PowerShell.'
}
if ($Edition -match '^Core' -or $Edition -match 'Home') {
throw "Windows edition '$Edition' cannot join an Active Directory domain. Upgrade to Pro, Enterprise, or Education, then run this same bootstrap again."
}
}
function Wait-TcpPort {
param(
[Parameter(Mandatory)][ipaddress]$Address,
[Parameter(Mandatory)][int]$Port,
[int]$TimeoutSeconds = 20
)
$deadline = (Get-Date).AddSeconds($TimeoutSeconds)
do {
if (Test-TcpPort -Address $Address -Port $Port -TimeoutMilliseconds 2000) {
return $true
}
Start-Sleep -Milliseconds 750
} while ((Get-Date) -lt $deadline)
return $false
}
function Connect-SguAzureP2s {
param([Parameter(Mandatory)][string]$ConnectionName)
$connection = Get-VpnConnection -Name $ConnectionName -AllUserConnection `
-ErrorAction SilentlyContinue
if (-not $connection) {
throw "The all-user VPN connection '$ConnectionName' is not installed. Run Install-SguAzureP2sClient.ps1 in this VM first."
}
if ($connection.TunnelType -notcontains 'Ikev2' -and $connection.TunnelType -ne 'Ikev2') {
throw "The VPN connection '$ConnectionName' is not configured for IKEv2."
}
if ($connection.ConnectionStatus -ne 'Connected') {
& "$env:SystemRoot\System32\rasdial.exe" $ConnectionName
if ($LASTEXITCODE -ne 0) {
throw "Could not connect the Azure P2S profile '$ConnectionName'. Verify the machine certificate and that UDP 500/4500 is permitted by the local network."
}
}
$connection = Get-VpnConnection -Name $ConnectionName -AllUserConnection
if ($connection.ConnectionStatus -ne 'Connected') {
throw "The Azure P2S profile '$ConnectionName' did not reach Connected state."
}
return $connection
}
Assert-Administrator Assert-Administrator
$operatingSystem = Get-CimInstance Win32_OperatingSystem $operatingSystem = Get-CimInstance Win32_OperatingSystem
if ([int]$operatingSystem.ProductType -ne 1) {
throw 'The client bootstrap supports Windows 10/11 workstations. Use the server bootstrap on Windows Server.'
}
$edition = (Get-WindowsEdition -Online).Edition $edition = (Get-WindowsEdition -Online).Edition
if ($edition -match '^Core' -or $edition -match 'Home') { Assert-ClientOperatingSystem -OperatingSystem $operatingSystem -Edition $edition `
throw "Windows edition '$edition' cannot join an on-premises Active Directory domain or host RDP. Upgrade to Pro, Enterprise, or Education, then run this same bootstrap again." -Architecture $env:PROCESSOR_ARCHITECTURE
} $windowsBuild = [int]$operatingSystem.BuildNumber
$windowsName = if ($windowsBuild -ge 22000) { 'Windows 11' } else { 'Windows 10' }
Write-Host "$windowsName (build $windowsBuild): unified SGU enrollment."
if (-not $DomainControllerIPv4Address) { if (-not $DomainControllerIPv4Address) {
$DomainControllerIPv4Address = [ipaddress](Read-Host 'Fixed IPv4 address of the SGU domain controller') $DomainControllerIPv4Address = [ipaddress](Read-Host 'Fixed IPv4 address of the SGU domain controller')
} }
if (-not $ComputerOuDn) { if ($DomainControllerIPv4Address.AddressFamily -ne [Net.Sockets.AddressFamily]::InterNetwork -or
$baseDn = (($DomainName -split '\.') | ForEach-Object { "DC=$_" }) -join ',' $DomainControllerIPv4Address.IPAddressToString -match '^(0\.|127\.|169\.254\.|22[4-9]\.|23\d\.|24\d\.|25[0-5]\.)') {
$ComputerOuDn = "OU=Laboratorio,$baseDn" throw 'Enter a reachable unicast IPv4 address for the domain controller.'
}
$publicDirectEnrollment = $ConnectivityMode -eq 'Direct' -and
-not (Test-PrivateIPv4Address -Address $DomainControllerIPv4Address)
if ($publicDirectEnrollment) {
Write-Host 'Public domain-controller address detected. Direct DNS and domain discovery will be configured automatically.'
} }
$packageRoot = $PSScriptRoot $packageRoot = $PSScriptRoot
Assert-PackageManifest -PackageRoot $packageRoot $packageManifest = Assert-PackageManifest -PackageRoot $packageRoot
# Retain the old parameter for existing automation; neither name restricts networking.
if ($CompatibilityProfile -ne 'Auto') {
Write-Warning 'CompatibilityProfile is deprecated. This package uses the same implementation on Windows 10 and 11.'
}
$CompatibilityProfile = 'Auto'
$scriptsRoot = Join-Path $packageRoot 'payload\scripts' $scriptsRoot = Join-Path $packageRoot 'payload\scripts'
$providerPublishPath = Join-Path $packageRoot 'payload\credential-provider' $providerPublishPath = Join-Path $packageRoot 'payload\credential-provider'
$runtimeInstaller = Get-ChildItem (Join-Path $packageRoot 'payload\prerequisites') ` $runtimeInstaller = Get-ChildItem (Join-Path $packageRoot 'payload\prerequisites') `
@@ -134,20 +561,67 @@ foreach ($requiredPath in @(
if (-not $runtimeInstaller) { if (-not $runtimeInstaller) {
throw 'The offline Microsoft .NET 10 x64 runtime installer is missing from the client package.' throw 'The offline Microsoft .NET 10 x64 runtime installer is missing from the client package.'
} }
if (-not $PSCmdlet.ShouldProcess($env:COMPUTERNAME, "Enroll with SGU server $DomainControllerIPv4Address")) { return }
if ($ClientIPv4Address) {
if (-not $NetworkInterfaceAlias -or $ConnectivityMode -eq 'AzureP2S') {
throw 'Explicit static IP setup requires -NetworkInterfaceAlias with Direct connectivity. Omit -ClientIPv4Address to preserve the current LAN/VPN configuration.'
}
$ClientIPv4Address = Set-ClientDomainAddress -InterfaceAlias $NetworkInterfaceAlias `
-DomainControllerAddress $DomainControllerIPv4Address `
-RequestedAddress $ClientIPv4Address -PrefixLength $ClientPrefixLength
}
$NetworkInterfaceAlias = Resolve-ClientInterfaceAlias -RequestedAlias $NetworkInterfaceAlias if ($ConnectivityMode -eq 'AzureP2S') {
Set-DnsClientServerAddress -InterfaceAlias $NetworkInterfaceAlias ` $existingVpnConnection = Get-VpnConnection -Name $VpnConnectionName -AllUserConnection `
-ServerAddresses $DomainControllerIPv4Address.IPAddressToString -ErrorAction SilentlyContinue
if (-not $existingVpnConnection) {
$installerPath = Join-Path $packageRoot 'Install-SguAzureP2sClient.ps1'
if (-not (Test-Path -LiteralPath $installerPath -PathType Leaf)) {
throw 'Install-SguAzureP2sClient.ps1 is missing from the client bootstrap package.'
}
foreach ($vpnInput in @(
@{ Name = 'VpnProfilePackagePath'; Value = $VpnProfilePackagePath },
@{ Name = 'VpnClientCertificatePfxPath'; Value = $VpnClientCertificatePfxPath },
@{ Name = 'VpnClientRootCertificatePath'; Value = $VpnClientRootCertificatePath })) {
if ([string]::IsNullOrWhiteSpace([string]$vpnInput.Value)) {
throw "$($vpnInput.Name) is required the first time an Azure P2S client is enrolled."
}
}
$vpnInstallParameters = @{
VpnProfilePackagePath = $VpnProfilePackagePath
ClientCertificatePfxPath = $VpnClientCertificatePfxPath
ClientRootCertificatePath = $VpnClientRootCertificatePath
ConnectionName = $VpnConnectionName
AzureNetworkPrefixes = $AzureNetworkPrefixes
DomainControllerIPv4Address = $DomainControllerIPv4Address
DomainName = $DomainName
}
if ($VpnClientCertificatePfxPassword) {
$vpnInstallParameters.ClientCertificatePfxPassword = $VpnClientCertificatePfxPassword
}
& $installerPath @vpnInstallParameters | Out-Null
}
$vpnConnection = Connect-SguAzureP2s -ConnectionName $VpnConnectionName
}
$selectedInterface = Wait-ClientInterface -RequestedAlias $NetworkInterfaceAlias `
-DomainControllerAddress $DomainControllerIPv4Address
$NetworkInterfaceAlias = $selectedInterface.InterfaceAlias
$ClientIPv4Address = [ipaddress]$selectedInterface.IPAddress
Set-ClientServerRoute -SelectedInterface $selectedInterface -DomainControllerAddress $DomainControllerIPv4Address
Write-Host "Using $NetworkInterfaceAlias ($ClientIPv4Address)."
if (-not (Test-TcpPort -Address $DomainControllerIPv4Address -Port 5985)) { if (-not (Wait-TcpPort -Address $DomainControllerIPv4Address -Port 5985 -TimeoutSeconds 20)) {
throw "The domain controller at $DomainControllerIPv4Address is not accepting WinRM on TCP 5985. Run the server bootstrap first and verify the selected IP." throw "The domain controller at $DomainControllerIPv4Address did not accept WinRM on TCP 5985 after 20 seconds. Run the server bootstrap first and verify the selected IP."
} }
if (-not $DomainCredential) { if (-not $DomainCredential) {
$suggestedUser = if ($DomainNetbios) { "$DomainNetbios\Administrator" }
elseif ($DomainName) { "Administrator@$DomainName" } else { 'Administrator' }
$DomainCredential = Get-Credential ` $DomainCredential = Get-Credential `
-UserName "$DomainNetbios\Administrator" ` -UserName $suggestedUser `
-Message "Credential permitted to enroll this computer in $DomainName" -Message "Domain account permitted to enroll this computer (DOMAIN\user or user@domain)"
} }
if (-not $DomainCredential) { throw 'Enrollment cancelled: no domain credential was provided.' }
New-Item -ItemType Directory -Path $temporaryRoot -Force | Out-Null New-Item -ItemType Directory -Path $temporaryRoot -Force | Out-Null
$clientCertificatePath = Join-Path $temporaryRoot 'client.cer' $clientCertificatePath = Join-Path $temporaryRoot 'client.cer'
@@ -177,6 +651,12 @@ try {
$serverIdentity = Invoke-Command -Session $session -ScriptBlock { $serverIdentity = Invoke-Command -Session $session -ScriptBlock {
$computer = Get-CimInstance Win32_ComputerSystem $computer = Get-CimInstance Win32_ComputerSystem
if ([int]$computer.DomainRole -lt 4) { throw 'The supplied server is not an Active Directory domain controller.' }
Import-Module ActiveDirectory -ErrorAction Stop
$domain = Get-ADDomain -ErrorAction Stop
$labOu = Get-ADOrganizationalUnit -LDAPFilter '(ou=Laboratorio)' `
-SearchBase $domain.DistinguishedName -SearchScope OneLevel -ErrorAction Stop |
Select-Object -First 1
$brokerService = Get-Service SGUAuthBroker -ErrorAction SilentlyContinue $brokerService = Get-Service SGUAuthBroker -ErrorAction SilentlyContinue
$rustDeskStatusPath = Join-Path $env:ProgramData 'SGU\RustDesk\server.json' $rustDeskStatusPath = Join-Path $env:ProgramData 'SGU\RustDesk\server.json'
$rustDeskStatus = if (Test-Path -LiteralPath $rustDeskStatusPath -PathType Leaf) { $rustDeskStatus = if (Test-Path -LiteralPath $rustDeskStatusPath -PathType Leaf) {
@@ -190,6 +670,8 @@ try {
[pscustomobject]@{ [pscustomobject]@{
ComputerName = $env:COMPUTERNAME ComputerName = $env:COMPUTERNAME
Domain = $computer.Domain Domain = $computer.Domain
DomainNetbios = $domain.NetBIOSName
ComputerContainer = if ($labOu) { $labOu.DistinguishedName } else { $domain.ComputersContainer }
BrokerService = if ($brokerService) { $brokerService.Status.ToString() } else { 'Missing' } BrokerService = if ($brokerService) { $brokerService.Status.ToString() } else { 'Missing' }
RustDeskServerAddress = if ($rustDeskStatus) { [string]$rustDeskStatus.ServerAddress } else { $null } RustDeskServerAddress = if ($rustDeskStatus) { [string]$rustDeskStatus.ServerAddress } else { $null }
RustDeskPublicKey = if ($rustDeskStatus) { [string]$rustDeskStatus.PublicKey } else { $null } RustDeskPublicKey = if ($rustDeskStatus) { [string]$rustDeskStatus.PublicKey } else { $null }
@@ -197,10 +679,19 @@ try {
RustDeskHbbrTask = if ($hbbrTask) { $hbbrTask.State.ToString() } else { 'Missing' } RustDeskHbbrTask = if ($hbbrTask) { $hbbrTask.State.ToString() } else { 'Missing' }
} }
} }
if (-not $serverIdentity.Domain -or if (-not $serverIdentity.Domain -or ($DomainName -and
-not $serverIdentity.Domain.Equals($DomainName, [StringComparison]::OrdinalIgnoreCase)) { -not $serverIdentity.Domain.Equals($DomainName, [StringComparison]::OrdinalIgnoreCase))) {
throw "The server at $DomainControllerIPv4Address belongs to $($serverIdentity.Domain), not $DomainName." throw "The server at $DomainControllerIPv4Address belongs to $($serverIdentity.Domain), not $DomainName."
} }
if ($DomainNetbios -and $DomainNetbios -ne $serverIdentity.DomainNetbios) {
throw "The supplied NetBIOS domain '$DomainNetbios' does not match '$($serverIdentity.DomainNetbios)'."
}
$DomainName = [string]$serverIdentity.Domain
$DomainNetbios = [string]$serverIdentity.DomainNetbios
if (-not $ComputerOuDn) { $ComputerOuDn = [string]$serverIdentity.ComputerContainer }
$brokerDnsName = "$brokerRecordName.$DomainName"
$brokerEndpoint = "https://${brokerDnsName}:8443/v1/authenticate"
Write-Host "Discovered domain: $DomainName ($DomainNetbios). Computer container: $ComputerOuDn"
if ($serverIdentity.BrokerService -ne 'Running') { if ($serverIdentity.BrokerService -ne 'Running') {
throw "The SGU Authentication Broker is not running on $($serverIdentity.ComputerName)." throw "The SGU Authentication Broker is not running on $($serverIdentity.ComputerName)."
} }
@@ -211,6 +702,146 @@ try {
throw "The RustDesk server is not ready on $($serverIdentity.ComputerName). Run the current server bootstrap first." throw "The RustDesk server is not ready on $($serverIdentity.ComputerName). Run the current server bootstrap first."
} }
$targetComputerName = if ($NewComputerName) { $NewComputerName } else { $env:COMPUTERNAME }
Invoke-Command -Session $session -ScriptBlock {
param($ComputerName, $ComputerPath)
Import-Module ActiveDirectory -ErrorAction Stop
$samAccountName = "$ComputerName`$"
$account = Get-ADComputer -Filter "SamAccountName -eq '$samAccountName'" |
Select-Object -First 1
if (-not $account) {
New-ADComputer -Name $ComputerName -SamAccountName $samAccountName `
-Path $ComputerPath -Enabled $true -ErrorAction Stop
}
} -ArgumentList $targetComputerName,$ComputerOuDn
if ($publicDirectEnrollment) {
$directDns = Invoke-Command -Session $session -ScriptBlock {
param($DnsDomain, $DomainControllerComputerName)
$domainControllerFqdn = "$DomainControllerComputerName.$DnsDomain".ToLowerInvariant()
$dohTemplate = "https://${domainControllerFqdn}:443/dns-query"
$dohCommand = Get-Command Set-DnsServerEncryptionProtocol -ErrorAction SilentlyContinue
if (-not $dohCommand) {
return [pscustomobject]@{
DohSupported = $false
DomainControllerFqdn = $domainControllerFqdn
}
}
$certificate = Get-ChildItem Cert:\LocalMachine\My |
Where-Object {
$_.Subject -eq "CN=$domainControllerFqdn" -and
$_.HasPrivateKey -and
$_.NotAfter -gt (Get-Date).AddDays(30)
} |
Sort-Object NotAfter -Descending |
Select-Object -First 1
if (-not $certificate) {
$certificate = New-SelfSignedCertificate `
-DnsName $domainControllerFqdn `
-CertStoreLocation Cert:\LocalMachine\My `
-FriendlyName 'SGU Direct Enrollment DoH' `
-Type SSLServerAuthentication `
-KeyAlgorithm RSA `
-KeyLength 2048 `
-HashAlgorithm SHA256 `
-KeyExportPolicy NonExportable `
-NotAfter (Get-Date).AddYears(2)
}
$bindingOutput = @(& "$env:SystemRoot\System32\netsh.exe" http show sslcert ipport=0.0.0.0:443 2>&1)
$bindingExists = $LASTEXITCODE -eq 0
$normalizedBinding = (($bindingOutput -join '') -replace '[^0-9A-Fa-f]', '').ToUpperInvariant()
$normalizedThumbprint = ($certificate.Thumbprint -replace ' ', '').ToUpperInvariant()
if ($bindingExists -and -not $normalizedBinding.Contains($normalizedThumbprint)) {
throw 'TCP 443 already has an HTTPS certificate binding that is not managed by SGU. Free that port or configure SGU DoH before enrolling this client.'
}
if (-not $bindingExists) {
& "$env:SystemRoot\System32\netsh.exe" http add sslcert `
ipport=0.0.0.0:443 "certhash=$($certificate.Thumbprint)" `
"appid={47E9CF26-79B7-4C9D-A0AE-ADFA22447A41}" certstorename=MY | Out-Null
if ($LASTEXITCODE -ne 0) { throw 'Could not bind the SGU DoH certificate to TCP 443.' }
}
$dnsChanged = $false
$encryption = Get-DnsServerEncryptionProtocol
if (-not $encryption.EnableDoh -or $encryption.UriTemplate -ne $dohTemplate) {
Set-DnsServerEncryptionProtocol -EnableDoh $true -UriTemplate $dohTemplate
$dnsChanged = $true
}
Import-Module ActiveDirectory -ErrorAction Stop
$domainController = Get-ADComputer -Identity $DomainControllerComputerName `
-Properties ServicePrincipalName
if (@($domainController.ServicePrincipalName) -notcontains "cifs/$DnsDomain") {
& "$env:SystemRoot\System32\setspn.exe" -S "cifs/$DnsDomain" $DomainControllerComputerName | Out-Null
if ($LASTEXITCODE -ne 0) { throw "Could not register cifs/$DnsDomain on $DomainControllerComputerName." }
}
$lanmanPath = 'HKLM:\SYSTEM\CurrentControlSet\Services\LanmanServer\Parameters'
$optionalNames = @((Get-ItemProperty $lanmanPath -Name OptionalNames `
-ErrorAction SilentlyContinue).OptionalNames | Where-Object { $_ })
$serverChanged = $false
if ($optionalNames -notcontains $DnsDomain) {
New-ItemProperty -Path $lanmanPath -Name OptionalNames -PropertyType MultiString `
-Value (@($optionalNames) + $DnsDomain) -Force | Out-Null
$serverChanged = $true
}
New-ItemProperty -Path $lanmanPath -Name DisableStrictNameChecking `
-PropertyType DWord -Value 1 -Force | Out-Null
if ($serverChanged) {
Restart-Service LanmanServer -Force
Start-Service Netlogon
}
if ($dnsChanged) {
Restart-Service DNS -Force
Start-Sleep -Seconds 2
}
[pscustomobject]@{
DohSupported = $true
DohTemplate = $dohTemplate
DohCertificateBase64 = [Convert]::ToBase64String($certificate.RawData)
DomainControllerFqdn = $domainControllerFqdn
}
} -ArgumentList $DomainName,$serverIdentity.ComputerName
$directHostNames = @(
$directDns.DomainControllerFqdn,
$DomainName,
$brokerDnsName
)
if ([string]$serverIdentity.RustDeskServerAddress -match '[A-Za-z]') {
$directHostNames += [string]$serverIdentity.RustDeskServerAddress
}
Set-ClientHostMappings -ServerAddress $DomainControllerIPv4Address `
-HostNames $directHostNames
if ($directDns.DohSupported -and
(Get-Command Add-DnsClientDohServerAddress -ErrorAction SilentlyContinue)) {
Enable-ClientDnsOverHttps -ServerAddress $DomainControllerIPv4Address `
-DohTemplate $directDns.DohTemplate `
-CertificateBase64 $directDns.DohCertificateBase64
}
elseif (-not $directDns.DohSupported) {
Write-Warning 'The server does not support DNS over HTTPS; enrollment will use traditional DNS.'
}
else {
Write-Warning 'This Windows build does not support DNS over HTTPS; enrollment will use traditional DNS.'
}
}
Set-ClientDomainDns -DnsDomain $DomainName -ServerAddress $DomainControllerIPv4Address
if (-not (Test-ClientDomainDns -DnsDomain $DomainName)) {
throw "The domain DNS service at $DomainControllerIPv4Address did not return an Active Directory SRV record. For a public server, permit DNS over HTTPS on TCP 443 or traditional DNS from this client network."
}
foreach ($port in @(53, 88, 135, 389, 445, 8443)) {
if (-not (Test-TcpPort -Address $DomainControllerIPv4Address -Port $port -TimeoutMilliseconds 2000)) {
throw "Server $DomainControllerIPv4Address is reachable, but required TCP port $port is unavailable. Check AD/SGU services and the LAN/VPN firewall. Domain join has not started."
}
}
$certificateSubject = "CN=SGU Credential Provider Client $env:COMPUTERNAME" $certificateSubject = "CN=SGU Credential Provider Client $env:COMPUTERNAME"
$clientCertificate = Get-ChildItem Cert:\LocalMachine\My | $clientCertificate = Get-ChildItem Cert:\LocalMachine\My |
Where-Object { Where-Object {
@@ -289,9 +920,12 @@ try {
DomainCredential = $DomainCredential DomainCredential = $DomainCredential
DomainName = $DomainName DomainName = $DomainName
DomainNetbios = $DomainNetbios DomainNetbios = $DomainNetbios
DomainControllerDnsName = "$($serverIdentity.ComputerName).$DomainName"
ComputerOuDn = $ComputerOuDn ComputerOuDn = $ComputerOuDn
NetworkInterfaceAlias = $NetworkInterfaceAlias NetworkInterfaceAlias = $NetworkInterfaceAlias
DomainDnsServerAddresses = @($DomainControllerIPv4Address.IPAddressToString) DomainDnsServerAddresses = @($DomainControllerIPv4Address.IPAddressToString)
DomainDnsConfigured = $true
ConnectivityMode = $ConnectivityMode
RemoteDesktopPrincipal = "$DomainNetbios\SG-Laboratorio-Usuarios-RDP" RemoteDesktopPrincipal = "$DomainNetbios\SG-Laboratorio-Usuarios-RDP"
DotNetRuntimeInstallerPath = $runtimeInstaller.FullName DotNetRuntimeInstallerPath = $runtimeInstaller.FullName
RustDeskServerAddress = $serverIdentity.RustDeskServerAddress RustDeskServerAddress = $serverIdentity.RustDeskServerAddress
@@ -352,10 +986,12 @@ finally {
Set-Item WSMan:\localhost\Client\TrustedHosts -Value $priorTrustedHosts -Force Set-Item WSMan:\localhost\Client\TrustedHosts -Value $priorTrustedHosts -Force
} }
if (-not $winRmWasRunning) { if (-not $winRmWasRunning) {
Stop-Service WinRM -Force -ErrorAction SilentlyContinue Stop-Service WinRM -Force -NoWait -WarningAction SilentlyContinue `
-ErrorAction SilentlyContinue
} }
Remove-Item -LiteralPath $temporaryRoot -Recurse -Force -ErrorAction SilentlyContinue Remove-Item -LiteralPath $temporaryRoot -Recurse -Force -ErrorAction SilentlyContinue
$DomainCredential = $null $DomainCredential = $null
$VpnClientCertificatePfxPassword = $null
} }
if ($SkipRestart) { if ($SkipRestart) {
@@ -365,6 +1001,9 @@ if ($SkipRestart) {
ProviderInstalled = $true ProviderInstalled = $true
ClientCertificateRegistered = $true ClientCertificateRegistered = $true
BrokerEndpoint = $brokerEndpoint BrokerEndpoint = $brokerEndpoint
ConnectivityMode = $ConnectivityMode
CompatibilityProfile = $CompatibilityProfile
VpnConnectionName = if ($ConnectivityMode -eq 'AzureP2S') { $VpnConnectionName } else { $null }
RestartRequired = $true RestartRequired = $true
RustDesk = if ($result) { $result.RustDesk } else { $null } RustDesk = if ($result) { $result.RustDesk } else { $null }
EnrollmentResult = $result EnrollmentResult = $result
+89
View File
@@ -0,0 +1,89 @@
#Requires -Version 5.1
[CmdletBinding(SupportsShouldProcess)]
param(
[Parameter(Mandatory)]
[ValidatePattern('^[A-Za-z0-9](?:[A-Za-z0-9-]{0,61}[A-Za-z0-9])?$')]
[string]$ClientName,
[string]$OutputDirectory = (Join-Path $PSScriptRoot '..\artifacts\azure-p2s'),
[securestring]$ClientPfxPassword,
[string]$RootSubject = 'CN=SGU Azure P2S Root',
[ValidateRange(1, 10)]
[int]$ClientValidityYears = 2,
[switch]$Force
)
$ErrorActionPreference = 'Stop'
$resolvedOutputDirectory = [IO.Path]::GetFullPath($OutputDirectory)
New-Item -ItemType Directory -Path $resolvedOutputDirectory -Force | Out-Null
$rootCertificatePath = Join-Path $resolvedOutputDirectory 'sgu-azure-p2s-root.cer'
$clientCertificatePath = Join-Path $resolvedOutputDirectory "sgu-azure-p2s-$ClientName.pfx"
if ((Test-Path -LiteralPath $clientCertificatePath -PathType Leaf) -and -not $Force) {
throw "$clientCertificatePath already exists. Use -Force only when you intend to replace that exported client credential."
}
if (-not $ClientPfxPassword) {
$ClientPfxPassword = Read-Host 'Password that will protect the exported P2S client certificate' -AsSecureString
}
$rootCertificate = Get-ChildItem Cert:\CurrentUser\My |
Where-Object {
$_.Subject -eq $RootSubject -and
$_.HasPrivateKey -and
$_.NotAfter -gt (Get-Date).AddYears($ClientValidityYears)
} |
Sort-Object NotAfter -Descending |
Select-Object -First 1
if (-not $rootCertificate) {
if (-not $PSCmdlet.ShouldProcess($RootSubject, 'Create a non-exportable Azure P2S root certificate authority')) {
return
}
$rootCertificate = New-SelfSignedCertificate `
-Type Custom `
-Subject $RootSubject `
-CertStoreLocation Cert:\CurrentUser\My `
-KeyAlgorithm RSA `
-KeyLength 4096 `
-HashAlgorithm SHA256 `
-KeySpec Signature `
-KeyExportPolicy NonExportable `
-KeyUsage CertSign,CRLSign,DigitalSignature `
-NotAfter (Get-Date).AddYears(10) `
-TextExtension @('2.5.29.19={critical}{text}ca=1&pathlength=1')
}
if (-not $PSCmdlet.ShouldProcess($ClientName, 'Issue and export an Azure P2S machine certificate')) {
return
}
$clientSubject = "CN=SGU Azure P2S $ClientName"
$clientCertificate = New-SelfSignedCertificate `
-Type Custom `
-Subject $clientSubject `
-DnsName "sgu-p2s-$ClientName" `
-Signer $rootCertificate `
-CertStoreLocation Cert:\CurrentUser\My `
-KeyAlgorithm RSA `
-KeyLength 3072 `
-HashAlgorithm SHA256 `
-KeySpec Signature `
-KeyExportPolicy Exportable `
-KeyUsage DigitalSignature `
-NotAfter (Get-Date).AddYears($ClientValidityYears) `
-TextExtension @('2.5.29.37={text}1.3.6.1.5.5.7.3.2')
Export-Certificate -Cert $rootCertificate -FilePath $rootCertificatePath -Force | Out-Null
Export-PfxCertificate -Cert $clientCertificate -FilePath $clientCertificatePath `
-Password $ClientPfxPassword -ChainOption BuildChain -CryptoAlgorithmOption AES256_SHA256 `
-Force | Out-Null
[pscustomobject]@{
RootCertificatePath = $rootCertificatePath
RootCertificateThumbprint = $rootCertificate.Thumbprint
RootCertificateData = [Convert]::ToBase64String($rootCertificate.RawData)
ClientName = $ClientName
ClientCertificatePath = $clientCertificatePath
ClientCertificateThumbprint = $clientCertificate.Thumbprint
ClientCertificateExpires = $clientCertificate.NotAfter
RootPrivateKeyExportable = $false
}
+62 -8
View File
@@ -33,7 +33,10 @@ function Write-PackageManifest {
param( param(
[Parameter(Mandatory)][string]$PackageRoot, [Parameter(Mandatory)][string]$PackageRoot,
[Parameter(Mandatory)][string]$PackageVersion, [Parameter(Mandatory)][string]$PackageVersion,
[Parameter(Mandatory)][string]$PackageKind [Parameter(Mandatory)][string]$PackageKind,
[ValidateSet('Auto')]
[string]$CompatibilityProfile,
[string]$TargetOperatingSystem
) )
$resolvedPackageRoot = (Resolve-Path -LiteralPath $PackageRoot).Path.TrimEnd('\') $resolvedPackageRoot = (Resolve-Path -LiteralPath $PackageRoot).Path.TrimEnd('\')
@@ -48,13 +51,19 @@ function Write-PackageManifest {
} }
}) })
$manifest = [ordered]@{ $manifest = [ordered]@{
SchemaVersion = 1 SchemaVersion = 2
Product = 'SGU Credential Provider' Product = 'SGU Credential Provider'
PackageKind = $PackageKind PackageKind = $PackageKind
Version = $PackageVersion Version = $PackageVersion
CreatedAt = (Get-Date).ToUniversalTime().ToString('o') CreatedAt = (Get-Date).ToUniversalTime().ToString('o')
Files = $files Files = $files
} }
if ($CompatibilityProfile) {
$manifest['CompatibilityProfile'] = $CompatibilityProfile
}
if ($TargetOperatingSystem) {
$manifest['TargetOperatingSystem'] = $TargetOperatingSystem
}
[IO.File]::WriteAllText( [IO.File]::WriteAllText(
(Join-Path $resolvedPackageRoot 'package-manifest.json'), (Join-Path $resolvedPackageRoot 'package-manifest.json'),
($manifest | ConvertTo-Json -Depth 6), ($manifest | ConvertTo-Json -Depth 6),
@@ -78,19 +87,25 @@ if (-not $runtimeInstaller) {
} }
New-Item -ItemType Directory -Path $resolvedOutputRoot -Force | Out-Null New-Item -ItemType Directory -Path $resolvedOutputRoot -Force | Out-Null
$clientRoot = Join-Path $resolvedOutputRoot "sgu-client-bootstrap-$Version" $clientRoot = Join-Path $resolvedOutputRoot "sgu-windows-client-bootstrap-$Version"
$serverRoot = Join-Path $resolvedOutputRoot "sgu-server-bootstrap-$Version" $serverRoot = Join-Path $resolvedOutputRoot "sgu-server-bootstrap-$Version"
$linuxClientRoot = Join-Path $resolvedOutputRoot "sgu-linux-client-bootstrap-$Version" $linuxClientRoot = Join-Path $resolvedOutputRoot "sgu-linux-client-bootstrap-$Version"
$azureRoot = Join-Path $resolvedOutputRoot "sgu-azure-infrastructure-$Version"
$clientZip = "$clientRoot.zip" $clientZip = "$clientRoot.zip"
$serverZip = "$serverRoot.zip" $serverZip = "$serverRoot.zip"
$linuxClientZip = "$linuxClientRoot.zip" $linuxClientZip = "$linuxClientRoot.zip"
foreach ($target in @($clientRoot,$serverRoot,$linuxClientRoot,$clientZip,$serverZip,$linuxClientZip)) { $azureZip = "$azureRoot.zip"
foreach ($target in @(
$clientRoot,$serverRoot,$linuxClientRoot,$azureRoot,
$clientZip,$serverZip,$linuxClientZip,$azureZip)) {
if (Test-Path -LiteralPath $target) { if (Test-Path -LiteralPath $target) {
throw "Release target already exists: $target" throw "Release target already exists: $target"
} }
} }
New-Item -ItemType Directory -Path $clientRoot,$serverRoot,$linuxClientRoot -Force | Out-Null New-Item -ItemType Directory `
-Path $clientRoot,$serverRoot,$linuxClientRoot,$azureRoot `
-Force | Out-Null
$welcomeFontNames = @( $welcomeFontNames = @(
'IndivisaTextSans-Regular.otf', 'IndivisaTextSans-Regular.otf',
'IndivisaTextSans-Bold.otf', 'IndivisaTextSans-Bold.otf',
@@ -112,6 +127,7 @@ $clientScripts = @(
'Install-SguRustDeskClient.ps1', 'Install-SguRustDeskClient.ps1',
'Register-SguClientCertificate.ps1', 'Register-SguClientCertificate.ps1',
'Repair-SguClientEnrollment.ps1', 'Repair-SguClientEnrollment.ps1',
'Set-SguStandardLocalUser.ps1',
'Test-SguClientEnrollment.ps1' 'Test-SguClientEnrollment.ps1'
) )
foreach ($scriptName in $clientScripts) { foreach ($scriptName in $clientScripts) {
@@ -134,7 +150,19 @@ foreach ($fontName in $welcomeFontNames) {
} }
Copy-RequiredFile -Source $runtimeInstaller.FullName ` Copy-RequiredFile -Source $runtimeInstaller.FullName `
-Destination (Join-Path $clientRoot "payload\prerequisites\$($runtimeInstaller.Name)") -Destination (Join-Path $clientRoot "payload\prerequisites\$($runtimeInstaller.Name)")
Write-PackageManifest -PackageRoot $clientRoot -PackageVersion $Version -PackageKind Client
# One Windows implementation supports existing LAN/VPN routes and optional Azure P2S.
Copy-RequiredFile -Source (Join-Path $PSScriptRoot 'Start-SguAzureClientEnrollment.cmd') `
-Destination (Join-Path $clientRoot 'Start-SguAzureClientEnrollment.cmd')
Copy-RequiredFile -Source (Join-Path $PSScriptRoot 'Install-SguAzureP2sClient.ps1') `
-Destination (Join-Path $clientRoot 'Install-SguAzureP2sClient.ps1')
Copy-RequiredFile -Source (Join-Path $repositoryRoot 'docs\client-enrollment.md') `
-Destination (Join-Path $clientRoot 'README.md')
Copy-Item -Path (Join-Path $repositoryRoot 'docs\*.md') -Destination $clientRoot
Write-PackageManifest -PackageRoot $clientRoot -PackageVersion $Version `
-PackageKind WindowsClient -CompatibilityProfile Auto `
-TargetOperatingSystem 'Windows 10 1607+ or Windows 11; x64 Pro, Enterprise, or Education'
Compress-Archive -Path (Join-Path $clientRoot '*') -DestinationPath $clientZip ` Compress-Archive -Path (Join-Path $clientRoot '*') -DestinationPath $clientZip `
-CompressionLevel Optimal -CompressionLevel Optimal
@@ -163,6 +191,8 @@ Copy-RequiredFile -Source (Join-Path $PSScriptRoot 'Initialize-SguDomainControll
-Destination (Join-Path $serverRoot 'Initialize-SguDomainController.ps1') -Destination (Join-Path $serverRoot 'Initialize-SguDomainController.ps1')
Copy-RequiredFile -Source (Join-Path $PSScriptRoot 'Start-SguServerBootstrap.cmd') ` Copy-RequiredFile -Source (Join-Path $PSScriptRoot 'Start-SguServerBootstrap.cmd') `
-Destination (Join-Path $serverRoot 'Start-SguServerBootstrap.cmd') -Destination (Join-Path $serverRoot 'Start-SguServerBootstrap.cmd')
Copy-RequiredFile -Source (Join-Path $PSScriptRoot 'Start-SguAzureServerBootstrap.cmd') `
-Destination (Join-Path $serverRoot 'Start-SguAzureServerBootstrap.cmd')
$serverScripts = @( $serverScripts = @(
'Deploy-AuthBroker.ps1', 'Deploy-AuthBroker.ps1',
'Enable-SguServerRemoteManagement.ps1', 'Enable-SguServerRemoteManagement.ps1',
@@ -211,22 +241,46 @@ Write-PackageManifest -PackageRoot $serverRoot -PackageVersion $Version -Package
Compress-Archive -Path (Join-Path $serverRoot '*') -DestinationPath $serverZip ` Compress-Archive -Path (Join-Path $serverRoot '*') -DestinationPath $serverZip `
-CompressionLevel Optimal -CompressionLevel Optimal
# Azure infrastructure is packaged separately because it runs on the trusted
# administrator workstation, not inside the domain controller or a client.
$azureScriptsRoot = Join-Path $azureRoot 'scripts'
$azureInfrastructureRoot = Join-Path $azureRoot 'infra\azure'
New-Item -ItemType Directory -Path $azureScriptsRoot,$azureInfrastructureRoot -Force | Out-Null
Copy-RequiredFile -Source (Join-Path $repositoryRoot 'infra\azure\main.bicep') `
-Destination (Join-Path $azureInfrastructureRoot 'main.bicep')
foreach ($scriptName in @(
'New-SguAzureP2sCertificates.ps1',
'Deploy-SguAzureInfrastructure.ps1',
'Get-SguAzureP2sPackage.ps1',
'Install-SguAzureP2sClient.ps1')) {
Copy-RequiredFile -Source (Join-Path $PSScriptRoot $scriptName) `
-Destination (Join-Path $azureScriptsRoot $scriptName)
}
Copy-RequiredFile -Source (Join-Path $repositoryRoot 'docs\azure-vpn-deployment.md') `
-Destination (Join-Path $azureRoot 'README.md')
Write-PackageManifest -PackageRoot $azureRoot -PackageVersion $Version -PackageKind AzureInfrastructure
Compress-Archive -Path (Join-Path $azureRoot '*') -DestinationPath $azureZip `
-CompressionLevel Optimal
$checksums = @( $checksums = @(
("{0} {1}" -f (Get-FileHash -LiteralPath $clientZip -Algorithm SHA256).Hash, (Split-Path $clientZip -Leaf)) ("{0} {1}" -f (Get-FileHash -LiteralPath $clientZip -Algorithm SHA256).Hash, (Split-Path $clientZip -Leaf))
("{0} {1}" -f (Get-FileHash -LiteralPath $serverZip -Algorithm SHA256).Hash, (Split-Path $serverZip -Leaf)) ("{0} {1}" -f (Get-FileHash -LiteralPath $serverZip -Algorithm SHA256).Hash, (Split-Path $serverZip -Leaf))
("{0} {1}" -f (Get-FileHash -LiteralPath $linuxClientZip -Algorithm SHA256).Hash, (Split-Path $linuxClientZip -Leaf)) ("{0} {1}" -f (Get-FileHash -LiteralPath $linuxClientZip -Algorithm SHA256).Hash, (Split-Path $linuxClientZip -Leaf))
("{0} {1}" -f (Get-FileHash -LiteralPath $azureZip -Algorithm SHA256).Hash, (Split-Path $azureZip -Leaf))
) )
$checksumsPath = Join-Path $resolvedOutputRoot "SHA256SUMS-$Version.txt" $checksumsPath = Join-Path $resolvedOutputRoot "SHA256SUMS-$Version.txt"
[IO.File]::WriteAllLines($checksumsPath, $checksums, [Text.UTF8Encoding]::new($false)) [IO.File]::WriteAllLines($checksumsPath, $checksums, [Text.UTF8Encoding]::new($false))
[pscustomobject]@{ [pscustomobject]@{
Version = $Version Version = $Version
ClientPackage = $clientZip WindowsClientPackage = $clientZip
ClientSha256 = (Get-FileHash -LiteralPath $clientZip -Algorithm SHA256).Hash WindowsClientSha256 = (Get-FileHash -LiteralPath $clientZip -Algorithm SHA256).Hash
LinuxClientPackage = $linuxClientZip LinuxClientPackage = $linuxClientZip
LinuxClientSha256 = (Get-FileHash -LiteralPath $linuxClientZip -Algorithm SHA256).Hash LinuxClientSha256 = (Get-FileHash -LiteralPath $linuxClientZip -Algorithm SHA256).Hash
ServerPackage = $serverZip ServerPackage = $serverZip
ServerSha256 = (Get-FileHash -LiteralPath $serverZip -Algorithm SHA256).Hash ServerSha256 = (Get-FileHash -LiteralPath $serverZip -Algorithm SHA256).Hash
AzureInfrastructurePackage = $azureZip
AzureInfrastructureSha256 = (Get-FileHash -LiteralPath $azureZip -Algorithm SHA256).Hash
Checksums = $checksumsPath Checksums = $checksumsPath
RuntimeInstaller = $runtimeInstaller.Name RuntimeInstaller = $runtimeInstaller.Name
} }
+33 -8
View File
@@ -15,9 +15,10 @@ param(
$ErrorActionPreference = 'Stop' $ErrorActionPreference = 'Stop'
$tagName = "v$Version" $tagName = "v$Version"
$assetPaths = @( $assetPaths = @(
(Join-Path $ReleaseDirectory "sgu-client-bootstrap-$Version.zip"), (Join-Path $ReleaseDirectory "sgu-windows-client-bootstrap-$Version.zip"),
(Join-Path $ReleaseDirectory "sgu-server-bootstrap-$Version.zip"), (Join-Path $ReleaseDirectory "sgu-server-bootstrap-$Version.zip"),
(Join-Path $ReleaseDirectory "sgu-linux-client-bootstrap-$Version.zip"), (Join-Path $ReleaseDirectory "sgu-linux-client-bootstrap-$Version.zip"),
(Join-Path $ReleaseDirectory "sgu-azure-infrastructure-$Version.zip"),
(Join-Path $ReleaseDirectory "SHA256SUMS-$Version.txt") (Join-Path $ReleaseDirectory "SHA256SUMS-$Version.txt")
) )
foreach ($assetPath in $assetPaths) { foreach ($assetPath in $assetPaths) {
@@ -27,7 +28,9 @@ foreach ($assetPath in $assetPaths) {
} }
$token = $env:GITEA_TOKEN $token = $env:GITEA_TOKEN
if (-not $token) { $authorizationScheme = 'token'
$authorizationParameter = $token
if (-not $authorizationParameter) {
$credentialInput = "protocol=$($GiteaBaseUri.Scheme)`nhost=$($GiteaBaseUri.Host)`n`n" $credentialInput = "protocol=$($GiteaBaseUri.Scheme)`nhost=$($GiteaBaseUri.Host)`n`n"
$credentialOutput = $credentialInput | & git credential fill $credentialOutput = $credentialInput | & git credential fill
if ($LASTEXITCODE -ne 0) { if ($LASTEXITCODE -ne 0) {
@@ -40,17 +43,26 @@ if (-not $token) {
$credentialValues[$parts[0]] = $parts[1] $credentialValues[$parts[0]] = $parts[1]
} }
} }
$token = $credentialValues.password if ($credentialValues.username -and $credentialValues.password) {
$authorizationScheme = 'Basic'
$basicCredential = '{0}:{1}' -f $credentialValues.username,$credentialValues.password
$authorizationParameter = [Convert]::ToBase64String(
[Text.Encoding]::UTF8.GetBytes($basicCredential))
$basicCredential = $null
}
} }
if (-not $token) { if (-not $authorizationParameter) {
throw 'No Gitea token is available. Set GITEA_TOKEN for this process or sign in through Git Credential Manager.' throw 'No Gitea credential is available. Set GITEA_TOKEN for this process or sign in through Git Credential Manager.'
} }
Add-Type -AssemblyName System.Net.Http Add-Type -AssemblyName System.Net.Http
$handler = [Net.Http.HttpClientHandler]::new() $handler = [Net.Http.HttpClientHandler]::new()
$client = [Net.Http.HttpClient]::new($handler) $client = [Net.Http.HttpClient]::new($handler)
$client.Timeout = [TimeSpan]::FromMinutes(10)
$client.BaseAddress = [uri]($GiteaBaseUri.AbsoluteUri.TrimEnd('/') + '/') $client.BaseAddress = [uri]($GiteaBaseUri.AbsoluteUri.TrimEnd('/') + '/')
$client.DefaultRequestHeaders.Authorization = [Net.Http.Headers.AuthenticationHeaderValue]::new('token', $token) $client.DefaultRequestHeaders.Authorization = [Net.Http.Headers.AuthenticationHeaderValue]::new(
$authorizationScheme,
$authorizationParameter)
$client.DefaultRequestHeaders.UserAgent.ParseAdd('SGU-CredentialProvider-Release/1.0') $client.DefaultRequestHeaders.UserAgent.ParseAdd('SGU-CredentialProvider-Release/1.0')
function Invoke-GiteaJson { function Invoke-GiteaJson {
@@ -100,9 +112,20 @@ Bootstrap reproducible para el laboratorio SGU.
- **Advertencia:** el bootstrap de servidor crea un bosque nuevo. No restaura los SID, contraseñas ni relaciones de confianza del bosque anterior; para conservarlos se requiere una recuperación de bosque desde una copia de estado del sistema. - **Advertencia:** el bootstrap de servidor crea un bosque nuevo. No restaura los SID, contraseñas ni relaciones de confianza del bosque anterior; para conservarlos se requiere una recuperación de bosque desde una copia de estado del sistema.
- `sgu-server-bootstrap-$Version.zip`: crea el bosque AD/DNS, OUs, grupo RDP, GPO, recurso `Packages`, broker mTLS y administración remota; se reanuda solo después del reinicio. - `sgu-server-bootstrap-$Version.zip`: crea el bosque AD/DNS, OUs, grupo RDP, GPO, recurso `Packages`, broker mTLS y administración remota; se reanuda solo después del reinicio.
- `sgu-client-bootstrap-$Version.zip`: registra un certificado mTLS único, instala y valida el Credential Provider antes de unir el equipo al dominio, habilita RDP/WinRM y se repara al arranque. - `sgu-windows-client-bootstrap-$Version.zip`: paquete único para Windows 10 1607+ y Windows 11 x64 Pro, Enterprise o Education, con LAN, VPN existente y Azure P2S opcional.
- Doble clic en `Start-SguClientEnrollment.cmd`, IP del servidor y credenciales: descubre el dominio autenticado, comprueba las interfaces y rutas disponibles y conserva DHCP, las IP del cliente y el DNS de Internet. Ya no solicita una IP del cliente.
- Si la IP del DC es pública, configura automáticamente DoH autenticado, confianza del certificado, NRPT y nombres del bosque antes de unir el equipo; funciona con cualquier interfaz que pueda alcanzar el servidor.
- Conserva seguridad mTLS, Credential Provider, cuenta estándar, RustDesk, supervisión y autorreparación. El servidor puede ser accesible por LAN, una VPN ya conectada o un CIDR público autorizado.
- `sgu-linux-client-bootstrap-$Version.zip`: une clientes Debian/Ubuntu o RHEL/Fedora/Rocky/AlmaLinux con realmd, Kerberos y SSSD. Solicita interactivamente la contraseña de unión y no instala el Credential Provider de Windows. - `sgu-linux-client-bootstrap-$Version.zip`: une clientes Debian/Ubuntu o RHEL/Fedora/Rocky/AlmaLinux con realmd, Kerberos y SSSD. Solicita interactivamente la contraseña de unión y no instala el Credential Provider de Windows.
- El Auth Broker clasifica sin tareas programadas cada cuenta autenticada: `AL` se agrega a `SGU-Alumnos`, `AD` a `SGU-Administrativos` y `DO` a `SGU-Docentes`; el bootstrap crea estos grupos de seguridad de forma idempotente. - `sgu-azure-infrastructure-$Version.zip`: despliega mediante Bicep una VM Windows Server 2025, red privada e IP pública protegida por NSG; Azure VPN Gateway P2S es opcional.
- El modo directo recibe una lista explícita de CIDR públicos, la replica en NSG y Windows Firewall y deja cerrados los puertos de enrolamiento cuando la lista está vacía.
- Windows 10 y 11 pueden instalar el perfil IKEv2 de todos los usuarios con certificado de máquina y DNS dividido del dominio; la disponibilidad antes del inicio de sesión depende del perfil y de las políticas del equipo.
- El Auth Broker clasifica sin tareas programadas cada cuenta autenticada: `AL` se agrega a `SGU-Alumnos`, `AD` a `SGU-Administrativos` y `DO` a `SGU-Docentes`; el bootstrap crea cada grupo dentro de la OU de su rol y migra idempotentemente cualquier grupo heredado sin cambiar su SID.
- El Auth Broker resuelve la dirección guardada de administrativos y docentes mediante `GetDireccion`, `GetLocalidadListado` y `GetColoniasListado`, evitando conservar los valores transitorios `Seleccione...` de los controles dinámicos de SGU.
- El enrolamiento y la reparación de clientes Windows crean y verifican idempotentemente la cuenta local estándar `alumno`, sin pertenencia al grupo de administradores.
- La descripción de la cuenta local administrada respeta el límite de 48 caracteres de Windows 10 Enterprise.
- La validación de expiración de contraseña usa el indicador de cuenta compatible con Windows 10 y 11, en lugar de una propiedad que Windows 10 no expone.
- El enriquecimiento obtiene el sexo de los módulos SGU de personal/alumnos, lo conserva como la línea administrada `SGU-Gender: Male|Female` en Notas de AD y adapta el fondo de Windows/Linux; cuando falta utiliza redacción neutral.
- El servidor configura WEF/WEC para registrar sesiones y fallos, inventariar el estado alcanzable de las máquinas cada cinco minutos y conservar durante 183 días tanto esos eventos como el diagnóstico estructurado del Auth Broker. - El servidor configura WEF/WEC para registrar sesiones y fallos, inventariar el estado alcanzable de las máquinas cada cinco minutos y conservar durante 183 días tanto esos eventos como el diagnóstico estructurado del Auth Broker.
- Windows Home se detecta y se rechaza con una explicación, ya que no admite unión a Active Directory ni RDP host. - Windows Home se detecta y se rechaza con una explicación, ya que no admite unión a Active Directory ni RDP host.
@@ -155,6 +178,8 @@ Las contraseñas se solicitan de forma interactiva y no se escriben en archivos
} }
finally { finally {
$token = $null $token = $null
$authorizationParameter = $null
$credentialValues = $null
$client.Dispose() $client.Dispose()
$handler.Dispose() $handler.Dispose()
} }
@@ -0,0 +1,99 @@
#Requires -Version 5.1
#Requires -RunAsAdministrator
[CmdletBinding()]
param(
[string]$ConnectionName = 'SGU Azure Device',
[ValidateRange(30,600)][int]$WaitSeconds = 180
)
$ErrorActionPreference = 'Stop'
$computer = Get-CimInstance Win32_ComputerSystem
if (-not $computer.PartOfDomain) { throw 'The device must already be joined to its domain.' }
$logPath = Join-Path $env:ProgramData 'SGU\Enrollment\azure-domain-connectivity.json'
$deadline = (Get-Date).AddSeconds($WaitSeconds)
$restarted = $false
$controller = $null
try {
do {
$vpn = Get-VpnConnection -Name $ConnectionName -AllUserConnection -ErrorAction SilentlyContinue
$reachable = $false
if ($vpn -and $vpn.ConnectionStatus -eq 'Connected') {
$record = Resolve-DnsName "_ldap._tcp.dc._msdcs.$($computer.Domain)" -Type SRV -ErrorAction SilentlyContinue |
Where-Object Type -eq 'SRV' | Select-Object -First 1
if ($record) {
$controller = $record.NameTarget.TrimEnd('.')
$socket = [Net.Sockets.TcpClient]::new()
try {
$connect = $socket.BeginConnect($controller, 389, $null, $null)
if ($connect.AsyncWaitHandle.WaitOne(2000)) {
$socket.EndConnect($connect)
$reachable = $socket.Connected
}
} catch { $reachable = $false }
finally { $socket.Dispose() }
}
}
if ($reachable) { break }
Start-Sleep -Seconds 5
} while ((Get-Date) -lt $deadline)
if (-not $reachable) { throw "The VPN and a domain controller were not reachable within $WaitSeconds seconds." }
# An early Netlogon attempt can remain failed after the device VPN connects.
# Refresh only that service, after confirming the domain is reachable.
if (-not (Test-ComputerSecureChannel -Server $controller)) {
Restart-Service -Name Netlogon
$restarted = $true
}
$secure = $false
for ($attempt = 0; $attempt -lt 6; $attempt++) {
$secure = Test-ComputerSecureChannel -Server $controller
if ($secure) { break }
Start-Sleep -Seconds 5
}
if (-not $secure) { throw 'The domain is reachable but the secure channel is still invalid. Administrative repair is required.' }
$guard = Get-ScheduledTask -TaskName 'SGU-CredentialProvider-EnrollmentGuard' -ErrorAction SilentlyContinue
$guardResult = $null
if ($guard) {
# Domain principal lookup can recover after the secure channel itself.
# Await the guard and retry a transient failure instead of reporting
# success while its asynchronous repair is still running or failed.
$guardDeadline = (Get-Date).AddMinutes(3)
do {
$guard = Get-ScheduledTask -TaskName $guard.TaskName
if ($guard.State -notin @('Running','Queued')) {
$previousRun = (Get-ScheduledTaskInfo -TaskName $guard.TaskName).LastRunTime
Start-ScheduledTask -InputObject $guard
do {
Start-Sleep -Seconds 2
$guard = Get-ScheduledTask -TaskName $guard.TaskName
$info = Get-ScheduledTaskInfo -TaskName $guard.TaskName
} while (($info.LastRunTime -le $previousRun -or $guard.State -in @('Running','Queued')) -and (Get-Date) -lt $guardDeadline)
if ($info.LastRunTime -gt $previousRun -and $guard.State -notin @('Running','Queued')) {
$guardResult = $info.LastTaskResult
if ($guardResult -eq 0) { break }
}
}
Start-Sleep -Seconds 10
} while ((Get-Date) -lt $guardDeadline)
if ($guardResult -ne 0) { throw "The secure channel recovered, but the enrollment guard did not succeed (result $guardResult)." }
}
[pscustomobject]@{
CheckedAt = (Get-Date).ToString('o')
ComputerName = $computer.Name
Domain = $computer.Domain
DomainController = $controller
ConnectionName = $ConnectionName
NetlogonRestarted = $restarted
SecureChannel = $secure
EnrollmentGuardResult = $guardResult
} | ConvertTo-Json | Set-Content -LiteralPath $logPath
} catch {
[pscustomobject]@{
CheckedAt = (Get-Date).ToString('o')
ConnectionName = $ConnectionName
NetlogonRestarted = $restarted
SecureChannel = $false
Error = $_.Exception.Message
} | ConvertTo-Json | Set-Content -LiteralPath $logPath
throw
}
+12 -1
View File
@@ -11,9 +11,11 @@ $installScript = Join-Path $enrollmentRoot 'Install-CredentialProvider.ps1'
$remoteAccessScript = Join-Path $enrollmentRoot 'Enable-LabRemoteAccess.ps1' $remoteAccessScript = Join-Path $enrollmentRoot 'Enable-LabRemoteAccess.ps1'
$monitoringScript = Join-Path $enrollmentRoot 'Enable-SguClientMonitoring.ps1' $monitoringScript = Join-Path $enrollmentRoot 'Enable-SguClientMonitoring.ps1'
$rustDeskScript = Join-Path $enrollmentRoot 'Install-SguRustDeskClient.ps1' $rustDeskScript = Join-Path $enrollmentRoot 'Install-SguRustDeskClient.ps1'
$localUserScript = Join-Path $enrollmentRoot 'Set-SguStandardLocalUser.ps1'
$before = & $testScript $before = & $testScript
if (-not $before.IsValid) { if (-not $before.IsValid) {
& $localUserScript | Out-Null
$installParams = @{ $installParams = @{
PublishPath = [string]$configuration.PublishPath PublishPath = [string]$configuration.PublishPath
BrokerEndpoint = [string]$configuration.BrokerEndpoint BrokerEndpoint = [string]$configuration.BrokerEndpoint
@@ -30,7 +32,16 @@ if (-not $before.IsValid) {
} }
$computer = Get-CimInstance Win32_ComputerSystem $computer = Get-CimInstance Win32_ComputerSystem
$domainReady = $false
if ($computer.PartOfDomain) { if ($computer.PartOfDomain) {
try {
$domainReady = [bool](Test-ComputerSecureChannel -ErrorAction Stop)
}
catch {
$domainReady = $false
}
}
if ($domainReady) {
& $remoteAccessScript ` & $remoteAccessScript `
-RemoteDesktopPrincipal ([string]$configuration.RemoteDesktopPrincipal) ` -RemoteDesktopPrincipal ([string]$configuration.RemoteDesktopPrincipal) `
-EnableAdministrativeFirewallGroups | Out-Null -EnableAdministrativeFirewallGroups | Out-Null
@@ -43,7 +54,7 @@ if ($configuration.RustDeskServerAddress -and $configuration.RustDeskServerPubli
} }
$verificationParams = @{} $verificationParams = @{}
if ($computer.PartOfDomain) { if ($domainReady) {
$verificationParams.RequireDomainJoined = $true $verificationParams.RequireDomainJoined = $true
$verificationParams.RequireRemoteAccess = $true $verificationParams.RequireRemoteAccess = $true
$verificationParams.RemoteDesktopPrincipal = [string]$configuration.RemoteDesktopPrincipal $verificationParams.RemoteDesktopPrincipal = [string]$configuration.RemoteDesktopPrincipal
+133
View File
@@ -0,0 +1,133 @@
#Requires -Version 5.1
[CmdletBinding(SupportsShouldProcess)]
param()
$ErrorActionPreference = 'Stop'
$userName = 'alumno'
$plainTextPassword = 'ingenieria'
$description = 'Cuenta local estandar SGU para recuperacion'
$passwordNeverExpiresFlag = 0x10000
function Get-LocalUserFlags {
param([Parameter(Mandatory)][string]$Name)
$directoryEntry = [ADSI]("WinNT://$env:COMPUTERNAME/$Name,user")
return [int]$directoryEntry.InvokeGet('UserFlags')
}
function Get-LocalGroupMemberSid {
param([Parameter(Mandatory)][string]$Name)
$group = [ADSI]("WinNT://$env:COMPUTERNAME/$Name,group")
foreach ($member in @($group.psbase.Invoke('Members'))) {
try {
$sidBytes = $member.GetType().InvokeMember(
'objectSid',
[Reflection.BindingFlags]::GetProperty,
$null,
$member,
$null)
if ($sidBytes) {
([Security.Principal.SecurityIdentifier]::new([byte[]]$sidBytes, 0)).Value
}
}
catch {
# An orphaned domain SID can no longer resolve after a forest is
# rebuilt. Other members must remain inspectable and unchanged.
}
}
}
$identity = [Security.Principal.WindowsIdentity]::GetCurrent()
$principal = [Security.Principal.WindowsPrincipal]::new($identity)
if (-not $principal.IsInRole([Security.Principal.WindowsBuiltInRole]::Administrator)) {
throw 'Run this script from an elevated Windows PowerShell session.'
}
if (-not $PSCmdlet.ShouldProcess($env:COMPUTERNAME, "Create or update standard local user $userName")) {
return
}
$securePassword = ConvertTo-SecureString $plainTextPassword -AsPlainText -Force
try {
$user = Get-LocalUser -Name $userName -ErrorAction SilentlyContinue
if ($user -and $user.SID.Value.EndsWith('-500', [StringComparison]::Ordinal)) {
throw "The local account '$userName' is the built-in Administrator account and cannot be converted to a standard user."
}
if ($user) {
# Preserve existing credentials on enrollment/repair. Resetting the same
# password after domain join can violate password history/complexity.
Set-LocalUser -Name $userName `
-PasswordNeverExpires $true `
-Description $description
if (-not $user.Enabled) {
Enable-LocalUser -Name $userName
}
}
else {
New-LocalUser -Name $userName `
-Password $securePassword `
-PasswordNeverExpires `
-Description $description | Out-Null
}
# Windows 10's Get-LocalUser object has PasswordExpires but does not expose
# PasswordNeverExpires. Enforce and verify the underlying UF_DONT_EXPIRE_PASSWD
# flag so the result is consistent across Windows 10 and Windows 11.
$directoryEntry = [ADSI]("WinNT://$env:COMPUTERNAME/$userName,user")
$userFlags = [int]$directoryEntry.InvokeGet('UserFlags')
if (($userFlags -band $passwordNeverExpiresFlag) -eq 0) {
$directoryEntry.InvokeSet('UserFlags', ($userFlags -bor $passwordNeverExpiresFlag))
$directoryEntry.CommitChanges()
}
$user = Get-LocalUser -Name $userName -ErrorAction Stop
$administratorsSid = [Security.Principal.SecurityIdentifier]::new('S-1-5-32-544')
$usersSid = [Security.Principal.SecurityIdentifier]::new('S-1-5-32-545')
$administratorsGroup = Get-LocalGroup -SID $administratorsSid -ErrorAction Stop
$usersGroup = Get-LocalGroup -SID $usersSid -ErrorAction Stop
$administratorMembers = @(Get-LocalGroupMemberSid -Name $administratorsGroup.Name)
if ($administratorMembers -contains $user.SID.Value) {
([ADSI]("WinNT://$env:COMPUTERNAME/$($administratorsGroup.Name),group")).Remove(
"WinNT://$env:COMPUTERNAME/$userName,user")
}
$standardMembers = @(Get-LocalGroupMemberSid -Name $usersGroup.Name)
if ($standardMembers -notcontains $user.SID.Value) {
([ADSI]("WinNT://$env:COMPUTERNAME/$($usersGroup.Name),group")).Add(
"WinNT://$env:COMPUTERNAME/$userName,user")
}
}
finally {
$securePassword = $null
}
$verifiedUser = Get-LocalUser -Name $userName -ErrorAction Stop
$verifiedAdministratorsGroup = Get-LocalGroup `
-SID ([Security.Principal.SecurityIdentifier]::new('S-1-5-32-544')) `
-ErrorAction Stop
$verifiedUsersGroup = Get-LocalGroup `
-SID ([Security.Principal.SecurityIdentifier]::new('S-1-5-32-545')) `
-ErrorAction Stop
$verifiedAdministrators = @(Get-LocalGroupMemberSid -Name $verifiedAdministratorsGroup.Name)
$verifiedUsers = @(Get-LocalGroupMemberSid -Name $verifiedUsersGroup.Name)
if ($verifiedAdministrators -contains $verifiedUser.SID.Value) {
throw "The local account '$userName' still belongs to the local Administrators group."
}
if ($verifiedUsers -notcontains $verifiedUser.SID.Value) {
throw "The local account '$userName' does not belong to the local Users group."
}
$verifiedPasswordNeverExpires =
((Get-LocalUserFlags -Name $userName) -band $passwordNeverExpiresFlag) -ne 0
if (-not $verifiedPasswordNeverExpires) {
throw "The local account '$userName' password is not configured to never expire."
}
[pscustomobject]@{
UserName = $verifiedUser.Name
Enabled = $verifiedUser.Enabled
IsAdministrator = $false
IsStandardUser = $true
PasswordNeverExpires = $verifiedPasswordNeverExpires
}
+61 -6
View File
@@ -8,6 +8,8 @@ param(
[string]$ComputerName = $env:COMPUTERNAME, [string]$ComputerName = $env:COMPUTERNAME,
[string]$Location, [string]$Location,
[string]$OrganizationalUnit, [string]$OrganizationalUnit,
[ValidateSet('Male', 'Female')]
[string]$Gender,
[ValidateRange(640, 16384)] [ValidateRange(640, 16384)]
[int]$CanvasWidth, [int]$CanvasWidth,
[ValidateRange(480, 16384)] [ValidateRange(480, 16384)]
@@ -67,6 +69,22 @@ function Get-ImmediateOrganizationalUnit {
return $null return $null
} }
function Get-SguGenderFromInfo {
param([string]$Info)
if (-not $Info) {
return $null
}
foreach ($line in $Info -split '\r?\n') {
if ($line -match '^\s*SGU-Gender:\s*(Male|Female)\s*$') {
return [Globalization.CultureInfo]::InvariantCulture.TextInfo.ToTitleCase(
$Matches[1].ToLowerInvariant())
}
}
return $null
}
function Get-DirectoryWelcomeMetadata { function Get-DirectoryWelcomeMetadata {
param( param(
[Parameter(Mandatory)][string]$UserName, [Parameter(Mandatory)][string]$UserName,
@@ -93,6 +111,7 @@ function Get-DirectoryWelcomeMetadata {
$userSearcher.Filter = '(&(objectCategory=person)(objectClass=user)(sAMAccountName={0}))' -f ` $userSearcher.Filter = '(&(objectCategory=person)(objectClass=user)(sAMAccountName={0}))' -f `
(ConvertTo-LdapFilterValue -Value $UserName) (ConvertTo-LdapFilterValue -Value $UserName)
[void]$userSearcher.PropertiesToLoad.Add('displayName') [void]$userSearcher.PropertiesToLoad.Add('displayName')
[void]$userSearcher.PropertiesToLoad.Add('info')
$userResult = $userSearcher.FindOne() $userResult = $userSearcher.FindOne()
$directoryDisplayName = if ($userResult -and $userResult.Properties['displayname'].Count) { $directoryDisplayName = if ($userResult -and $userResult.Properties['displayname'].Count) {
[string]$userResult.Properties['displayname'][0] [string]$userResult.Properties['displayname'][0]
@@ -100,6 +119,12 @@ function Get-DirectoryWelcomeMetadata {
else { else {
$null $null
} }
$directoryGender = if ($userResult -and $userResult.Properties['info'].Count) {
Get-SguGenderFromInfo -Info ([string]$userResult.Properties['info'][0])
}
else {
$null
}
} }
finally { finally {
$userSearcher.Dispose() $userSearcher.Dispose()
@@ -136,6 +161,7 @@ function Get-DirectoryWelcomeMetadata {
[pscustomobject]@{ [pscustomobject]@{
DisplayName = $directoryDisplayName DisplayName = $directoryDisplayName
Gender = $directoryGender
Location = $directoryLocation Location = $directoryLocation
OrganizationalUnit = Get-ImmediateOrganizationalUnit -DistinguishedName $computerDn OrganizationalUnit = Get-ImmediateOrganizationalUnit -DistinguishedName $computerDn
} }
@@ -156,11 +182,20 @@ function Get-SpanishArticle {
function Get-WelcomeLocationText { function Get-WelcomeLocationText {
param( param(
[string]$Room, [string]$Room,
[string]$OuName [string]$OuName,
[string]$Gender
) )
$located = 'Est{0}s ubicado en' -f [char]0x00E1 $located = switch ($Gender) {
$engineeringLab = 'Bienvenido al Laboratorio de C{0}mputo de Ingenier{1}a.' -f [char]0x00F3,[char]0x00ED 'Male' { 'Est{0}s ubicado en' -f [char]0x00E1 }
'Female' { 'Est{0}s ubicada en' -f [char]0x00E1 }
default { 'Ubicaci{0}n:' -f [char]0x00F3 }
}
$engineeringLab = switch ($Gender) {
'Male' { 'Bienvenido al Laboratorio de C{0}mputo de Ingenier{1}a.' -f [char]0x00F3,[char]0x00ED }
'Female' { 'Bienvenida al Laboratorio de C{0}mputo de Ingenier{1}a.' -f [char]0x00F3,[char]0x00ED }
default { 'Acceso al Laboratorio de C{0}mputo de Ingenier{1}a.' -f [char]0x00F3,[char]0x00ED }
}
$Room = if ($Room) { $Room.Trim() } else { $null } $Room = if ($Room) { $Room.Trim() } else { $null }
$OuName = if ($OuName) { $OuName.Trim() } else { $null } $OuName = if ($OuName) { $OuName.Trim() } else { $null }
@@ -184,6 +219,16 @@ function Get-WelcomeLocationText {
return $engineeringLab return $engineeringLab
} }
function Get-WelcomeHeading {
param([string]$Gender)
switch ($Gender) {
'Male' { return 'Bienvenido,' }
'Female' { return 'Bienvenida,' }
default { return 'Te damos la bienvenida,' }
}
}
function Get-AvailableFontFamily { function Get-AvailableFontFamily {
param( param(
[Parameter(Mandatory)][string[]]$Candidates, [Parameter(Mandatory)][string[]]$Candidates,
@@ -270,10 +315,17 @@ if (-not $DisplayName) {
if (-not $PSBoundParameters.ContainsKey('Location') -and $metadata) { if (-not $PSBoundParameters.ContainsKey('Location') -and $metadata) {
$Location = $metadata.Location $Location = $metadata.Location
} }
$genderWasProvided = $PSBoundParameters.ContainsKey('Gender')
if (-not $genderWasProvided -and $metadata -and $metadata.Gender -in @('Male', 'Female')) {
# The parameter's ValidateSet also runs on assignments. Missing AD gender
# must leave the optional parameter unset so the neutral wording can render.
$Gender = $metadata.Gender
}
$welcomeHeading = Get-WelcomeHeading -Gender $Gender
if (-not $PSBoundParameters.ContainsKey('OrganizationalUnit') -and $metadata) { if (-not $PSBoundParameters.ContainsKey('OrganizationalUnit') -and $metadata) {
$OrganizationalUnit = $metadata.OrganizationalUnit $OrganizationalUnit = $metadata.OrganizationalUnit
} }
$locationText = Get-WelcomeLocationText -Room $Location -OuName $OrganizationalUnit $locationText = Get-WelcomeLocationText -Room $Location -OuName $OrganizationalUnit -Gender $Gender
if (-not $CanvasWidth -or -not $CanvasHeight) { if (-not $CanvasWidth -or -not $CanvasHeight) {
try { try {
@@ -366,7 +418,7 @@ try {
$format.Trimming = [Drawing.StringTrimming]::EllipsisWord $format.Trimming = [Drawing.StringTrimming]::EllipsisWord
try { try {
$graphics.FillRectangle($panelBrush, $panelX, $panelY, $panelWidth, $panelHeight) $graphics.FillRectangle($panelBrush, $panelX, $panelY, $panelWidth, $panelHeight)
Draw-CenteredText -Graphics $graphics -Text 'Bienvenido,' -Font $welcomeFont ` Draw-CenteredText -Graphics $graphics -Text $welcomeHeading -Font $welcomeFont `
-Brush $accentBrush -Bounds ([Drawing.RectangleF]::new($panelX, $panelY + 24*$scale, $panelWidth, 50*$scale)) -Format $format -Brush $accentBrush -Bounds ([Drawing.RectangleF]::new($panelX, $panelY + 24*$scale, $panelWidth, 50*$scale)) -Format $format
Draw-CenteredText -Graphics $graphics -Text $DisplayName -Font $nameFont ` Draw-CenteredText -Graphics $graphics -Text $DisplayName -Font $nameFont `
-Brush $whiteBrush -Bounds ([Drawing.RectangleF]::new($panelX + 30*$scale, $panelY + 64*$scale, $panelWidth - 60*$scale, 105*$scale)) -Format $format -Brush $whiteBrush -Bounds ([Drawing.RectangleF]::new($panelX + 30*$scale, $panelY + 64*$scale, $panelWidth - 60*$scale, 105*$scale)) -Format $format
@@ -433,12 +485,15 @@ namespace Sgu {
} }
} }
Write-WelcomeLog -Message ("OK computer={0}; location={1}; ou={2}; output={3}" -f $ComputerName,[bool]$Location,[bool]$OrganizationalUnit,$OutputPath) $genderLogValue = if ($Gender) { $Gender } else { 'Neutral' }
Write-WelcomeLog -Message ("OK computer={0}; gender={1}; location={2}; ou={3}; output={4}" -f $ComputerName,$genderLogValue,[bool]$Location,[bool]$OrganizationalUnit,$OutputPath)
[pscustomobject]@{ [pscustomobject]@{
DisplayName = $DisplayName DisplayName = $DisplayName
ComputerName = $ComputerName ComputerName = $ComputerName
Location = $Location Location = $Location
OrganizationalUnit = $OrganizationalUnit OrganizationalUnit = $OrganizationalUnit
Gender = $Gender
WelcomeHeading = $welcomeHeading
LocationText = $locationText LocationText = $locationText
OutputPath = $OutputPath OutputPath = $OutputPath
Applied = -not $SkipApply Applied = -not $SkipApply
+35 -7
View File
@@ -53,6 +53,7 @@ computer_name=${computer_name^^}
location='' location=''
distinguished_name='' distinguished_name=''
organizational_unit='' organizational_unit=''
gender=''
read_ldif_value() { read_ldif_value() {
local attribute=$1 local attribute=$1
@@ -108,9 +109,18 @@ if [[ -n $DOMAIN_CONTROLLER && -n $BASE_DN ]] &&
user_result=$(ldapsearch -LLL -N -o ldif-wrap=no -Y GSSAPI \ user_result=$(ldapsearch -LLL -N -o ldif-wrap=no -Y GSSAPI \
-H "ldap://${ldap_server}" -b "$BASE_DN" \ -H "ldap://${ldap_server}" -b "$BASE_DN" \
"(&(objectCategory=person)(objectClass=user)(sAMAccountName=${account_name}))" \ "(&(objectCategory=person)(objectClass=user)(sAMAccountName=${account_name}))" \
displayName 2>/dev/null || true) displayName info 2>/dev/null || true)
directory_display_name=$(read_ldif_value displayName "$user_result") directory_display_name=$(read_ldif_value displayName "$user_result")
[[ -n $directory_display_name ]] && display_name=$directory_display_name [[ -n $directory_display_name ]] && display_name=$directory_display_name
directory_info=$(read_ldif_value info "$user_result")
gender=$(printf '%s\n' "$directory_info" | awk -F: '
tolower($1) ~ /^[[:space:]]*sgu-gender[[:space:]]*$/ {
value=tolower($2); gsub(/^[[:space:]]+|[[:space:]]+$/, "", value)
if (value == "male") print "Male"
else if (value == "female") print "Female"
exit
}
')
fi fi
else else
log_message 'WARN AD metadata query skipped because Kerberos or LDAP session data was unavailable.' log_message 'WARN AD metadata query skipped because Kerberos or LDAP session data was unavailable.'
@@ -136,6 +146,24 @@ with_article() {
fi fi
} }
case "$gender" in
Male)
welcome_text='Bienvenido,'
located_text='Estás ubicado en'
engineering_lab_text='Bienvenido al Laboratorio de Cómputo de Ingeniería.'
;;
Female)
welcome_text='Bienvenida,'
located_text='Estás ubicada en'
engineering_lab_text='Bienvenida al Laboratorio de Cómputo de Ingeniería.'
;;
*)
welcome_text='Te damos la bienvenida,'
located_text='Ubicación:'
engineering_lab_text='Acceso al Laboratorio de Cómputo de Ingeniería.'
;;
esac
if [[ -n $location && -n $organizational_unit ]]; then if [[ -n $location && -n $organizational_unit ]]; then
room_phrase=$(with_article "$location") room_phrase=$(with_article "$location")
ou_article=$(article_for "$organizational_unit") ou_article=$(article_for "$organizational_unit")
@@ -146,13 +174,13 @@ if [[ -n $location && -n $organizational_unit ]]; then
else else
ou_phrase="de ${organizational_unit}" ou_phrase="de ${organizational_unit}"
fi fi
location_text="Estás ubicado en ${room_phrase} ${ou_phrase}." location_text="${located_text} ${room_phrase} ${ou_phrase}."
elif [[ -n $location ]]; then elif [[ -n $location ]]; then
location_text="Estás ubicado en $(with_article "$location")." location_text="${located_text} $(with_article "$location")."
elif [[ -n $organizational_unit ]]; then elif [[ -n $organizational_unit ]]; then
location_text="Estás ubicado en $(with_article "$organizational_unit")." location_text="${located_text} $(with_article "$organizational_unit")."
else else
location_text='Bienvenido al Laboratorio de Cómputo de Ingeniería.' location_text=$engineering_lab_text
fi fi
width=1600 width=1600
@@ -210,7 +238,7 @@ if ! "${image_command[@]}" "$BASE_IMAGE" \
-gravity center \ -gravity center \
-font "$sans_font" -weight 700 -style Normal -pointsize "$welcome_size" \ -font "$sans_font" -weight 700 -style Normal -pointsize "$welcome_size" \
-fill '#D3E2FF' -stroke 'rgba(0,0,0,0.48)' -strokewidth 1 \ -fill '#D3E2FF' -stroke 'rgba(0,0,0,0.48)' -strokewidth 1 \
-annotate "+0-$(( 92 * scale / 100 ))" 'Bienvenido,' \ -annotate "+0-$(( 92 * scale / 100 ))" "$welcome_text" \
-font "$serif_font" -weight 700 -style Italic -pointsize "$name_size" \ -font "$serif_font" -weight 700 -style Italic -pointsize "$name_size" \
-fill white -annotate "+0-$(( 22 * scale / 100 ))" "$display_name" \ -fill white -annotate "+0-$(( 22 * scale / 100 ))" "$display_name" \
-font "$sans_font" -weight 400 -style Normal -pointsize "$location_size" \ -font "$sans_font" -weight 400 -style Normal -pointsize "$location_size" \
@@ -242,7 +270,7 @@ if [[ $applied == false ]] && command -v xfconf-query >/dev/null 2>&1; then
fi fi
if [[ $applied == true ]]; then if [[ $applied == true ]]; then
log_message "OK computer=${computer_name}; location=$([[ -n $location ]] && printf true || printf false); ou=$([[ -n $organizational_unit ]] && printf true || printf false); output=${output_path}" log_message "OK computer=${computer_name}; gender=${gender:-Neutral}; location=$([[ -n $location ]] && printf true || printf false); ou=$([[ -n $organizational_unit ]] && printf true || printf false); output=${output_path}"
else else
log_message 'WARN Wallpaper rendered, but no supported desktop background API was found.' log_message 'WARN Wallpaper rendered, but no supported desktop background API was found.'
fi fi
@@ -0,0 +1,15 @@
@echo off
setlocal
set "SGU_BOOTSTRAP_IP=%~1"
set "SGU_VPN_PACKAGE=%~2"
set "SGU_VPN_PFX=%~3"
set "SGU_VPN_ROOT=%~4"
powershell.exe -NoLogo -NoProfile -ExecutionPolicy Bypass -Command "$script = Join-Path '%~dp0' 'Invoke-SguClientBootstrap.ps1'; $arguments = @('-NoLogo','-NoProfile','-ExecutionPolicy','Bypass','-File',('"' + $script + '"'),'-PauseOnError','-ConnectivityMode','AzureP2S'); if ($env:SGU_BOOTSTRAP_IP) { $arguments += @('-DomainControllerIPv4Address',('"' + $env:SGU_BOOTSTRAP_IP + '"')) }; if ($env:SGU_VPN_PACKAGE) { $arguments += @('-VpnProfilePackagePath',('"' + [IO.Path]::GetFullPath($env:SGU_VPN_PACKAGE) + '"')) }; if ($env:SGU_VPN_PFX) { $arguments += @('-VpnClientCertificatePfxPath',('"' + [IO.Path]::GetFullPath($env:SGU_VPN_PFX) + '"')) }; if ($env:SGU_VPN_ROOT) { $arguments += @('-VpnClientRootCertificatePath',('"' + [IO.Path]::GetFullPath($env:SGU_VPN_ROOT) + '"')) }; $process = Start-Process -FilePath powershell.exe -Verb RunAs -ArgumentList $arguments -Wait -PassThru; exit $process.ExitCode"
set "SGU_EXIT_CODE=%errorlevel%"
if not "%SGU_EXIT_CODE%"=="0" (
echo.
echo SGU Windows Azure enrollment did not complete. Review:
echo C:\ProgramData\SGU\Bootstrap\Client\latest-error.log
pause
)
exit /b %SGU_EXIT_CODE%
@@ -0,0 +1,7 @@
@echo off
setlocal
set "SGU_BOOTSTRAP_IP=%~1"
set "SGU_VPN_POOL=%~2"
if "%SGU_VPN_POOL%"=="" set "SGU_VPN_POOL=172.30.0.0/24"
powershell.exe -NoLogo -NoProfile -ExecutionPolicy Bypass -Command "$script = Join-Path '%~dp0' 'Initialize-SguDomainController.ps1'; $arguments = @('-NoLogo','-NoProfile','-ExecutionPolicy','Bypass','-File',('"' + $script + '"'),'-NetworkConfigurationMode','PlatformManaged','-TrustedClientNetworks',$env:SGU_VPN_POOL,'-DnsForwarders','168.63.129.16'); if ($env:SGU_BOOTSTRAP_IP) { $arguments += @('-ServerIPv4Address',$env:SGU_BOOTSTRAP_IP) }; $process = Start-Process -FilePath powershell.exe -Verb RunAs -ArgumentList $arguments -Wait -PassThru; exit $process.ExitCode"
exit /b %errorlevel%
+11 -2
View File
@@ -1,5 +1,14 @@
@echo off @echo off
setlocal setlocal
set "SGU_BOOTSTRAP_IP=%~1" set "SGU_BOOTSTRAP_IP=%~1"
powershell.exe -NoLogo -NoProfile -ExecutionPolicy Bypass -Command "$script = Join-Path '%~dp0' 'Invoke-SguClientBootstrap.ps1'; $arguments = @('-NoLogo','-NoProfile','-ExecutionPolicy','Bypass','-File',('"' + $script + '"')); if ($env:SGU_BOOTSTRAP_IP) { $arguments += @('-DomainControllerIPv4Address',$env:SGU_BOOTSTRAP_IP) }; $process = Start-Process -FilePath powershell.exe -Verb RunAs -ArgumentList $arguments -Wait -PassThru; exit $process.ExitCode" set "SGU_CLIENT_IP=%~2"
exit /b %errorlevel% set "SGU_NETWORK_ALIAS=%~3"
powershell.exe -NoLogo -NoProfile -ExecutionPolicy Bypass -Command "$script = Join-Path '%~dp0' 'Invoke-SguClientBootstrap.ps1'; $arguments = @('-NoLogo','-NoProfile','-ExecutionPolicy','Bypass','-File',('"' + $script + '"'),'-PauseOnError'); if ($env:SGU_BOOTSTRAP_IP) { $arguments += @('-DomainControllerIPv4Address',$env:SGU_BOOTSTRAP_IP) }; if ($env:SGU_CLIENT_IP) { $arguments += @('-ClientIPv4Address',$env:SGU_CLIENT_IP) }; if ($env:SGU_NETWORK_ALIAS) { $arguments += @('-NetworkInterfaceAlias',('"' + $env:SGU_NETWORK_ALIAS + '"')) }; $process = Start-Process -FilePath powershell.exe -Verb RunAs -ArgumentList $arguments -Wait -PassThru; exit $process.ExitCode"
set "SGU_EXIT_CODE=%errorlevel%"
if not "%SGU_EXIT_CODE%"=="0" (
echo.
echo SGU client enrollment did not complete. Review the elevated window or:
echo C:\ProgramData\SGU\Bootstrap\Client\latest-error.log
pause
)
exit /b %SGU_EXIT_CODE%
+81 -2
View File
@@ -19,6 +19,30 @@ $defaultProviderPolicyPath = 'HKLM:\SOFTWARE\Policies\Microsoft\Windows\System'
$interactiveLogonPolicyPath = 'HKLM:\SOFTWARE\Microsoft\Windows\CurrentVersion\Policies\System' $interactiveLogonPolicyPath = 'HKLM:\SOFTWARE\Microsoft\Windows\CurrentVersion\Policies\System'
$settingsPath = Join-Path $env:ProgramData 'SGU\CredentialProvider\settings.json' $settingsPath = Join-Path $env:ProgramData 'SGU\CredentialProvider\settings.json'
$issues = [Collections.Generic.List[string]]::new() $issues = [Collections.Generic.List[string]]::new()
$standardLocalUserName = 'alumno'
$passwordNeverExpiresFlag = 0x10000
function Get-LocalGroupMemberSid {
param([Parameter(Mandatory)][string]$Name)
$group = [ADSI]("WinNT://$env:COMPUTERNAME/$Name,group")
foreach ($member in @($group.psbase.Invoke('Members'))) {
try {
$sidBytes = $member.GetType().InvokeMember(
'objectSid',
[Reflection.BindingFlags]::GetProperty,
$null,
$member,
$null)
if ($sidBytes) {
([Security.Principal.SecurityIdentifier]::new([byte[]]$sidBytes, 0)).Value
}
}
catch {
# Keep validating known members when an old forest SID no longer resolves.
}
}
}
$computer = Get-CimInstance Win32_ComputerSystem $computer = Get-CimInstance Win32_ComputerSystem
if ($RequireDomainJoined -and -not $computer.PartOfDomain) { if ($RequireDomainJoined -and -not $computer.PartOfDomain) {
@@ -87,6 +111,50 @@ if (-not $passwordProviderPreserved) {
$issues.Add('The built-in Microsoft password provider registration is missing.') $issues.Add('The built-in Microsoft password provider registration is missing.')
} }
$standardLocalUser = Get-LocalUser -Name $standardLocalUserName -ErrorAction SilentlyContinue
$standardLocalUserPresent = [bool]$standardLocalUser
$standardLocalUserEnabled = $standardLocalUserPresent -and $standardLocalUser.Enabled
$standardLocalUserIsAdministrator = $false
$standardLocalUserInUsersGroup = $false
$standardLocalUserPasswordNeverExpires = $false
if ($standardLocalUserPresent) {
$administratorsSid = [Security.Principal.SecurityIdentifier]::new('S-1-5-32-544')
$usersSid = [Security.Principal.SecurityIdentifier]::new('S-1-5-32-545')
$administratorsGroup = Get-LocalGroup -SID $administratorsSid -ErrorAction Stop
$usersGroup = Get-LocalGroup -SID $usersSid -ErrorAction Stop
$administratorMembers = @(Get-LocalGroupMemberSid -Name $administratorsGroup.Name)
$standardMembers = @(Get-LocalGroupMemberSid -Name $usersGroup.Name)
$standardLocalUserIsAdministrator =
$administratorMembers -contains $standardLocalUser.SID.Value
$standardLocalUserInUsersGroup =
$standardMembers -contains $standardLocalUser.SID.Value
try {
$directoryEntry = [ADSI]("WinNT://$env:COMPUTERNAME/$standardLocalUserName,user")
$userFlags = [int]$directoryEntry.InvokeGet('UserFlags')
$standardLocalUserPasswordNeverExpires =
($userFlags -band $passwordNeverExpiresFlag) -ne 0
}
catch {
# Report the account as invalid when Windows cannot read its flags.
$standardLocalUserPasswordNeverExpires = $false
}
}
if (-not $standardLocalUserPresent) {
$issues.Add("The required standard local user '$standardLocalUserName' is missing.")
}
elseif (-not $standardLocalUserEnabled) {
$issues.Add("The required standard local user '$standardLocalUserName' is disabled.")
}
elseif ($standardLocalUserIsAdministrator) {
$issues.Add("The required standard local user '$standardLocalUserName' belongs to the local Administrators group.")
}
elseif (-not $standardLocalUserInUsersGroup) {
$issues.Add("The required standard local user '$standardLocalUserName' does not belong to the local Users group.")
}
elseif (-not $standardLocalUserPasswordNeverExpires) {
$issues.Add("The required standard local user '$standardLocalUserName' password is not configured to never expire.")
}
$settings = $null $settings = $null
try { try {
$settings = Get-Content -LiteralPath $settingsPath -Raw | ConvertFrom-Json $settings = Get-Content -LiteralPath $settingsPath -Raw | ConvertFrom-Json
@@ -149,12 +217,18 @@ $remoteAccessReady = $null
if ($RequireRemoteAccess) { if ($RequireRemoteAccess) {
$remoteDesktopUsersSid = [Security.Principal.SecurityIdentifier]::new('S-1-5-32-555') $remoteDesktopUsersSid = [Security.Principal.SecurityIdentifier]::new('S-1-5-32-555')
$remoteDesktopUsersGroup = ($remoteDesktopUsersSid.Translate([Security.Principal.NTAccount]).Value -split '\\', 2)[1] $remoteDesktopUsersGroup = ($remoteDesktopUsersSid.Translate([Security.Principal.NTAccount]).Value -split '\\', 2)[1]
$rdpMembers = @(Get-LocalGroupMember -Group $remoteDesktopUsersGroup -ErrorAction SilentlyContinue) $rdpMembers = @(Get-LocalGroupMemberSid -Name $remoteDesktopUsersGroup)
$remoteDesktopPrincipalSid = $null
try {
$remoteDesktopPrincipalSid = ([Security.Principal.NTAccount]::new($RemoteDesktopPrincipal)).Translate(
[Security.Principal.SecurityIdentifier]).Value
}
catch { }
$remoteAccessReady = $remoteAccessReady =
(Get-Service TermService).Status -eq 'Running' -and (Get-Service TermService).Status -eq 'Running' -and
(Get-Service WinRM).Status -eq 'Running' -and (Get-Service WinRM).Status -eq 'Running' -and
(Get-ItemPropertyValue 'HKLM:\SYSTEM\CurrentControlSet\Control\Terminal Server' -Name fDenyTSConnections) -eq 0 -and (Get-ItemPropertyValue 'HKLM:\SYSTEM\CurrentControlSet\Control\Terminal Server' -Name fDenyTSConnections) -eq 0 -and
$rdpMembers.Name -contains $RemoteDesktopPrincipal $remoteDesktopPrincipalSid -and $rdpMembers -contains $remoteDesktopPrincipalSid
if (-not $remoteAccessReady) { if (-not $remoteAccessReady) {
$issues.Add('RDP/WinRM or the authorized domain group is not fully configured.') $issues.Add('RDP/WinRM or the authorized domain group is not fully configured.')
} }
@@ -207,6 +281,11 @@ $result = [pscustomobject]@{
LastSignedInUserHidden = $lastSignedInUserHidden LastSignedInUserHidden = $lastSignedInUserHidden
LocalUserEnumerationDisabled = $localUserEnumerationDisabled LocalUserEnumerationDisabled = $localUserEnumerationDisabled
PasswordProviderPreserved = $passwordProviderPreserved PasswordProviderPreserved = $passwordProviderPreserved
StandardLocalUserPresent = $standardLocalUserPresent
StandardLocalUserEnabled = $standardLocalUserEnabled
StandardLocalUserIsAdministrator = $standardLocalUserIsAdministrator
StandardLocalUserInUsersGroup = $standardLocalUserInUsersGroup
StandardLocalUserPasswordNeverExpires = $standardLocalUserPasswordNeverExpires
SettingsPresent = [bool]$settings SettingsPresent = [bool]$settings
ClientCertificatePresent = [bool]$clientCertificatePresent ClientCertificatePresent = [bool]$clientCertificatePresent
ServerCertificateTrusted = $serverCertificateTrusted ServerCertificateTrusted = $serverCertificateTrusted
@@ -0,0 +1,7 @@
namespace SGU.AuthBroker.Core.Profiles;
public enum InstitutionalGender
{
Male,
Female
}
@@ -12,7 +12,8 @@ public sealed record InstitutionalProfile(
string? StreetAddress = null, string? StreetAddress = null,
string? City = null, string? City = null,
string? State = null, string? State = null,
string? PostalCode = null) string? PostalCode = null,
InstitutionalGender? Gender = null)
{ {
public bool HasValues => public bool HasValues =>
EmployeeNumber is not null || EmployeeNumber is not null ||
@@ -26,7 +27,8 @@ public sealed record InstitutionalProfile(
StreetAddress is not null || StreetAddress is not null ||
City is not null || City is not null ||
State is not null || State is not null ||
PostalCode is not null; PostalCode is not null ||
Gender is not null;
public InstitutionalProfile Overlay(InstitutionalProfile? values) => public InstitutionalProfile Overlay(InstitutionalProfile? values) =>
values is null values is null
@@ -44,6 +46,7 @@ public sealed record InstitutionalProfile(
StreetAddress = values.StreetAddress ?? StreetAddress, StreetAddress = values.StreetAddress ?? StreetAddress,
City = values.City ?? City, City = values.City ?? City,
State = values.State ?? State, State = values.State ?? State,
PostalCode = values.PostalCode ?? PostalCode PostalCode = values.PostalCode ?? PostalCode,
Gender = values.Gender ?? Gender
}; };
} }
@@ -0,0 +1,20 @@
namespace SGU.AuthBroker.Core.Profiles;
public sealed record SguAdministrativeLocationSelection(
string? StateId = null,
string? MunicipalityId = null,
string? NeighborhoodId = null,
string? StateName = null,
string? MunicipalityName = null,
string? NeighborhoodName = null,
string? PostalCode = null)
{
public bool HasValues =>
StateId is not null ||
MunicipalityId is not null ||
NeighborhoodId is not null ||
StateName is not null ||
MunicipalityName is not null ||
NeighborhoodName is not null ||
PostalCode is not null;
}
@@ -1,6 +1,7 @@
using System.Net; using System.Net;
using System.Net.Mail; using System.Net.Mail;
using System.Text; using System.Text;
using System.Text.Json;
namespace SGU.AuthBroker.Core.Profiles; namespace SGU.AuthBroker.Core.Profiles;
@@ -14,6 +15,8 @@ public static class SguProfileParser
private const string AdministrativeGivenNameId = "ctl00_contenedor_txtNombre"; private const string AdministrativeGivenNameId = "ctl00_contenedor_txtNombre";
private const string AdministrativePaternalSurnameId = "ctl00_contenedor_txtApaterno"; private const string AdministrativePaternalSurnameId = "ctl00_contenedor_txtApaterno";
private const string AdministrativeMaternalSurnameId = "ctl00_contenedor_txtAmaterno"; private const string AdministrativeMaternalSurnameId = "ctl00_contenedor_txtAmaterno";
private const string AdministrativeGenderId = "ctl00_contenedor_ddlsexo";
private const string AdministrativeGenderName = "ctl00$contenedor$ddlsexo";
private const string AdministrativeStreetId = "ctl00_contenedor_txtCalle"; private const string AdministrativeStreetId = "ctl00_contenedor_txtCalle";
private const string AdministrativeExteriorNumberId = "ctl00_contenedor_txtNoExt"; private const string AdministrativeExteriorNumberId = "ctl00_contenedor_txtNoExt";
private const string AdministrativeInteriorNumberId = "ctl00_contenedor_txtNoInt"; private const string AdministrativeInteriorNumberId = "ctl00_contenedor_txtNoInt";
@@ -34,6 +37,7 @@ public static class SguProfileParser
private const string StudentCityId = "ctl00_contenedor_HistorialAlumno1_lblCiudadAlumnoHP"; private const string StudentCityId = "ctl00_contenedor_HistorialAlumno1_lblCiudadAlumnoHP";
private const string StudentMunicipalityId = "ctl00_contenedor_HistorialAlumno1_lblDeloMunAlumnoHP"; private const string StudentMunicipalityId = "ctl00_contenedor_HistorialAlumno1_lblDeloMunAlumnoHP";
private const string StudentPostalCodeId = "ctl00_contenedor_HistorialAlumno1_lblCPAlumnoHP"; private const string StudentPostalCodeId = "ctl00_contenedor_HistorialAlumno1_lblCPAlumnoHP";
private const string StudentGenderId = "ctl00_contenedor_HistorialAlumno1_lblSexoAlumnoHP";
public static InstitutionalProfile? ParseAdministrative(string html, string expectedEmployeeNumber) public static InstitutionalProfile? ParseAdministrative(string html, string expectedEmployeeNumber)
=> ParseStaffHeader(html, expectedEmployeeNumber); => ParseStaffHeader(html, expectedEmployeeNumber);
@@ -91,11 +95,22 @@ public static class SguProfileParser
InstitutionalProfile profile = new( InstitutionalProfile profile = new(
DisplayName: displayName, DisplayName: displayName,
GivenName: givenName, GivenName: givenName,
Surname: surname); Surname: surname,
Gender: ParseStaffGender(ExtractSelectedOptionValue(
html,
AdministrativeGenderId,
AdministrativeGenderName)));
return profile.HasValues ? profile : null; return profile.HasValues ? profile : null;
} }
public static InstitutionalProfile? ParseAdministrativeLocation(string html) public static InstitutionalProfile? ParseAdministrativeLocation(string html) =>
ParseAdministrativeLocation(html, null, null, null);
public static InstitutionalProfile? ParseAdministrativeLocation(
string html,
SguAdministrativeLocationSelection? selection,
string? localitiesJson,
string? neighborhoodsJson)
{ {
ArgumentNullException.ThrowIfNull(html); ArgumentNullException.ThrowIfNull(html);
@@ -105,18 +120,79 @@ public static class SguProfileParser
string? interiorNumber = NormalizeAddressUnit( string? interiorNumber = NormalizeAddressUnit(
ExtractInputValue(html, AdministrativeInteriorNumberId)); ExtractInputValue(html, AdministrativeInteriorNumberId));
string? streetLine = BuildAdministrativeStreetLine(street, exteriorNumber, interiorNumber); string? streetLine = BuildAdministrativeStreetLine(street, exteriorNumber, interiorNumber);
string? neighborhood = NormalizeTitle( string? neighborhood = NormalizeTitle(FirstNonEmpty(
ExtractSelectedOptionText(html, AdministrativeNeighborhoodId), selection?.NeighborhoodName,
256); ResolveNeighborhoodName(neighborhoodsJson, selection),
ExtractSelectedOptionText(html, AdministrativeNeighborhoodId)), 256);
string? city = NormalizeTitle(FirstNonEmpty(
selection?.MunicipalityName,
ResolveLocalityName(localitiesJson, selection),
ExtractSelectedOptionText(html, AdministrativeCityId)), 128);
string? state = NormalizeTitle(FirstNonEmpty(
selection?.StateName,
ExtractOptionTextByValue(html, AdministrativeStateId, selection?.StateId),
ExtractSelectedOptionText(html, AdministrativeStateId)), 128);
string? postalCode = NormalizePostalCode(FirstNonEmpty(
selection?.PostalCode,
ExtractInputValue(html, AdministrativePostalCodeId)));
InstitutionalProfile profile = new( InstitutionalProfile profile = new(
StreetAddress: BuildStreetAddress(streetLine, neighborhood, null, null), StreetAddress: BuildStreetAddress(streetLine, neighborhood, null, null),
City: NormalizeTitle(ExtractSelectedOptionText(html, AdministrativeCityId), 128), City: city,
State: NormalizeTitle(ExtractSelectedOptionText(html, AdministrativeStateId), 128), State: state,
PostalCode: NormalizePostalCode(ExtractInputValue(html, AdministrativePostalCodeId))); PostalCode: postalCode);
return profile.HasValues ? profile : null; return profile.HasValues ? profile : null;
} }
public static SguAdministrativeLocationSelection? ParseAdministrativeLocationSelection(
string json,
string? expectedPostalCode)
{
ArgumentNullException.ThrowIfNull(json);
string? expected = NormalizePostalCode(expectedPostalCode);
try
{
using JsonDocument document = JsonDocument.Parse(json);
if (!TryGetPageMethodArray(document.RootElement, out JsonElement values))
{
return null;
}
foreach (JsonElement value in values.EnumerateArray())
{
string? postalCode = NormalizePostalCode(GetJsonString(value, "p_Cp"));
if (expected is not null &&
!string.Equals(postalCode, expected, StringComparison.Ordinal))
{
continue;
}
SguAdministrativeLocationSelection selection = new(
StateId: NormalizeCatalogId(GetJsonString(value, "p_IdEstado")),
MunicipalityId: NormalizeCatalogId(GetJsonString(value, "p_IdMunicipio")),
NeighborhoodId: NormalizeCatalogId(GetJsonString(value, "p_IdCP")),
StateName: Limit(GetJsonString(value, "p_NombreEstado"), 128),
MunicipalityName: Limit(GetJsonString(value, "p_NombreMunicipio"), 128),
NeighborhoodName: Limit(FirstNonEmpty(
GetJsonString(value, "p_NombreColonia"),
GetJsonString(value, "p_NombreAsentamiento"),
GetJsonString(value, "p_Nombre")), 256),
PostalCode: postalCode);
if (selection.HasValues)
{
return selection;
}
}
}
catch (JsonException)
{
return null;
}
return null;
}
public static InstitutionalProfile? ParseStudent(string html, string expectedStudentNumber) public static InstitutionalProfile? ParseStudent(string html, string expectedStudentNumber)
{ {
ArgumentNullException.ThrowIfNull(html); ArgumentNullException.ThrowIfNull(html);
@@ -151,7 +227,8 @@ public static class SguProfileParser
StreetAddress: streetAddress, StreetAddress: streetAddress,
City: city ?? municipality, City: city ?? municipality,
State: NormalizeTitle(ExtractSpanText(html, StudentStateId), 128), State: NormalizeTitle(ExtractSpanText(html, StudentStateId), 128),
PostalCode: NormalizePostalCode(ExtractSpanText(html, StudentPostalCodeId))); PostalCode: NormalizePostalCode(ExtractSpanText(html, StudentPostalCodeId)),
Gender: ParseStudentGender(ExtractSpanText(html, StudentGenderId)));
return profile.HasValues ? profile : null; return profile.HasValues ? profile : null;
} }
@@ -292,11 +369,248 @@ public static class SguProfileParser
return nonPlaceholderOptions.Count == 1 ? nonPlaceholderOptions[0] : null; return nonPlaceholderOptions.Count == 1 ? nonPlaceholderOptions[0] : null;
} }
private static string? ExtractSelectedOptionValue(string html, string id, string name)
{
string? openingTag = FindOpeningTag(html, "select", id) ??
FindOpeningTagByAttribute(html, "select", "name", name);
if (openingTag is null)
{
return null;
}
int openingTagIndex = html.IndexOf(openingTag, StringComparison.OrdinalIgnoreCase);
int contentStart = openingTagIndex + openingTag.Length;
int contentEnd = html.IndexOf("</select", contentStart, StringComparison.OrdinalIgnoreCase);
if (openingTagIndex < 0 || contentEnd < 0)
{
return null;
}
string? selectedValue = ExtractAttributeValue(openingTag, "value");
string optionsHtml = html[contentStart..contentEnd];
int searchFrom = 0;
while (searchFrom < optionsHtml.Length)
{
int optionStart = optionsHtml.IndexOf("<option", searchFrom, StringComparison.OrdinalIgnoreCase);
if (optionStart < 0)
{
break;
}
int optionTagEnd = optionsHtml.IndexOf('>', optionStart);
if (optionTagEnd < 0)
{
break;
}
string optionTag = optionsHtml[optionStart..(optionTagEnd + 1)];
string? optionValue = ExtractAttributeValue(optionTag, "value");
if (optionValue is not null &&
(HasAttribute(optionTag, "selected") ||
(selectedValue is not null &&
string.Equals(optionValue, selectedValue, StringComparison.Ordinal))))
{
return NormalizeText(optionValue);
}
searchFrom = optionTagEnd + 1;
}
return null;
}
private static string? ExtractOptionTextByValue(string html, string id, string? expectedValue)
{
if (string.IsNullOrWhiteSpace(expectedValue))
{
return null;
}
string? openingTag = FindOpeningTag(html, "select", id);
if (openingTag is null)
{
return null;
}
int openingTagIndex = html.IndexOf(openingTag, StringComparison.OrdinalIgnoreCase);
int contentStart = openingTagIndex + openingTag.Length;
int contentEnd = html.IndexOf("</select", contentStart, StringComparison.OrdinalIgnoreCase);
if (openingTagIndex < 0 || contentEnd < 0)
{
return null;
}
string optionsHtml = html[contentStart..contentEnd];
int searchFrom = 0;
while (searchFrom < optionsHtml.Length)
{
int optionStart = optionsHtml.IndexOf("<option", searchFrom, StringComparison.OrdinalIgnoreCase);
if (optionStart < 0)
{
break;
}
int optionTagEnd = optionsHtml.IndexOf('>', optionStart);
int optionEnd = optionTagEnd < 0
? -1
: optionsHtml.IndexOf("</option", optionTagEnd + 1, StringComparison.OrdinalIgnoreCase);
if (optionTagEnd < 0 || optionEnd < 0)
{
break;
}
string optionTag = optionsHtml[optionStart..(optionTagEnd + 1)];
string? optionValue = ExtractAttributeValue(optionTag, "value");
if (string.Equals(optionValue, expectedValue, StringComparison.Ordinal))
{
return NormalizeText(optionsHtml[(optionTagEnd + 1)..optionEnd]);
}
searchFrom = optionEnd + "</option".Length;
}
return null;
}
private static string? ResolveLocalityName(
string? json,
SguAdministrativeLocationSelection? selection)
{
if (string.IsNullOrWhiteSpace(json) ||
string.IsNullOrWhiteSpace(selection?.MunicipalityId))
{
return null;
}
try
{
using JsonDocument document = JsonDocument.Parse(json);
if (!TryGetPageMethodArray(document.RootElement, out JsonElement values))
{
return null;
}
foreach (JsonElement value in values.EnumerateArray())
{
if (string.Equals(
NormalizeCatalogId(GetJsonString(value, "Id_Municipio")),
selection.MunicipalityId,
StringComparison.Ordinal) &&
(selection.StateId is null || string.Equals(
NormalizeCatalogId(GetJsonString(value, "ID_Estado")),
selection.StateId,
StringComparison.Ordinal)))
{
return GetJsonString(value, "Nombre");
}
}
}
catch (JsonException)
{
return null;
}
return null;
}
private static string? ResolveNeighborhoodName(
string? json,
SguAdministrativeLocationSelection? selection)
{
if (string.IsNullOrWhiteSpace(json) || selection is null)
{
return null;
}
try
{
using JsonDocument document = JsonDocument.Parse(json);
if (!TryGetPageMethodArray(document.RootElement, out JsonElement values))
{
return null;
}
List<string> postalCodeMatches = [];
foreach (JsonElement value in values.EnumerateArray())
{
string? neighborhoodId = NormalizeCatalogId(GetJsonString(value, "p_IdCP"));
string? postalCode = NormalizePostalCode(GetJsonString(value, "p_Cp"));
string? name = GetJsonString(value, "p_Nombre");
if (name is null)
{
continue;
}
if (selection.NeighborhoodId is not null &&
string.Equals(neighborhoodId, selection.NeighborhoodId, StringComparison.Ordinal))
{
return name;
}
if (selection.PostalCode is not null &&
string.Equals(postalCode, selection.PostalCode, StringComparison.Ordinal))
{
postalCodeMatches.Add(name);
}
}
return postalCodeMatches.Count == 1 ? postalCodeMatches[0] : null;
}
catch (JsonException)
{
return null;
}
}
private static bool TryGetPageMethodArray(JsonElement root, out JsonElement values)
{
values = default;
return root.ValueKind == JsonValueKind.Object &&
root.TryGetProperty("d", out values) &&
values.ValueKind == JsonValueKind.Array;
}
private static string? GetJsonString(JsonElement value, string propertyName)
{
if (value.ValueKind != JsonValueKind.Object ||
!value.TryGetProperty(propertyName, out JsonElement property))
{
return null;
}
return property.ValueKind switch
{
JsonValueKind.String => property.GetString(),
JsonValueKind.Number => property.GetRawText(),
_ => null
};
}
private static string? NormalizeCatalogId(string? value)
{
string? candidate = value?.Trim();
return string.IsNullOrEmpty(candidate) ||
candidate.Length > 32 ||
!candidate.All(char.IsAsciiLetterOrDigit)
? null
: candidate;
}
private static string? FirstNonEmpty(params string?[] values) =>
values.FirstOrDefault(value => !string.IsNullOrWhiteSpace(value));
private static string? FindOpeningTag(string html, string tagName, string id) private static string? FindOpeningTag(string html, string tagName, string id)
=> FindOpeningTagByAttribute(html, tagName, "id", id);
private static string? FindOpeningTagByAttribute(
string html,
string tagName,
string attributeName,
string attributeValue)
{ {
foreach (char quote in new[] { '"', '\'' }) foreach (char quote in new[] { '"', '\'' })
{ {
string marker = $"id={quote}{id}{quote}"; string marker = $"{attributeName}={quote}{attributeValue}{quote}";
int searchFrom = 0; int searchFrom = 0;
while (searchFrom < html.Length) while (searchFrom < html.Length)
{ {
@@ -324,6 +638,20 @@ public static class SguProfileParser
return null; return null;
} }
private static InstitutionalGender? ParseStaffGender(string? value) => value?.Trim() switch
{
"1" => InstitutionalGender.Male,
"2" => InstitutionalGender.Female,
_ => null
};
private static InstitutionalGender? ParseStudentGender(string? value) => value?.Trim().ToUpperInvariant() switch
{
"M" => InstitutionalGender.Male,
"F" => InstitutionalGender.Female,
_ => null
};
private static string? ExtractAttributeValue(string openingTag, string attributeName) private static string? ExtractAttributeValue(string openingTag, string attributeName)
{ {
foreach (char quote in new[] { '"', '\'' }) foreach (char quote in new[] { '"', '\'' })
+3 -3
View File
@@ -176,11 +176,11 @@ public sealed class ActiveDirectoryOptions
public string AdministrativeOuDn { get; init; } = "OU=Administrativos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx"; public string AdministrativeOuDn { get; init; } = "OU=Administrativos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx";
public string ProfessorGroupDn { get; init; } = "CN=SGU-Docentes,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx"; public string ProfessorGroupDn { get; init; } = "CN=SGU-Docentes,OU=Docentes,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx";
public string StudentGroupDn { get; init; } = "CN=SGU-Alumnos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx"; public string StudentGroupDn { get; init; } = "CN=SGU-Alumnos,OU=Alumnos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx";
public string AdministrativeGroupDn { get; init; } = "CN=SGU-Administrativos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx"; public string AdministrativeGroupDn { get; init; } = "CN=SGU-Administrativos,OU=Administrativos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx";
public string RemoteDesktopGroupDn { get; init; } = string.Empty; public string RemoteDesktopGroupDn { get; init; } = string.Empty;
@@ -11,6 +11,8 @@ public sealed class ActiveDirectorySynchronizer(
BrokerOptions options, BrokerOptions options,
ILogger<ActiveDirectorySynchronizer> logger) : IActiveDirectorySynchronizer ILogger<ActiveDirectorySynchronizer> logger) : IActiveDirectorySynchronizer
{ {
private const string GenderMetadataPrefix = "SGU-Gender:";
private const int InfoAttributeMaximumLength = 1024;
private const int AccountDisabled = 0x0002; private const int AccountDisabled = 0x0002;
private const int NormalAccount = 0x0200; private const int NormalAccount = 0x0200;
private static readonly AuthenticationTypes BindFlags = private static readonly AuthenticationTypes BindFlags =
@@ -164,6 +166,7 @@ public sealed class ActiveDirectorySynchronizer(
SetOptionalProperty(user, "l", profile.City); SetOptionalProperty(user, "l", profile.City);
SetOptionalProperty(user, "st", profile.State); SetOptionalProperty(user, "st", profile.State);
SetOptionalProperty(user, "postalCode", profile.PostalCode); SetOptionalProperty(user, "postalCode", profile.PostalCode);
SetGenderMetadata(user, profile.Gender, identity.UserName, logger);
if (string.Equals(profile.EmployeeNumber, identity.NumericId, StringComparison.Ordinal)) if (string.Equals(profile.EmployeeNumber, identity.NumericId, StringComparison.Ordinal))
{ {
SetOptionalProperty(user, "employeeID", profile.EmployeeNumber); SetOptionalProperty(user, "employeeID", profile.EmployeeNumber);
@@ -201,6 +204,56 @@ public sealed class ActiveDirectorySynchronizer(
} }
} }
private static void SetGenderMetadata(
DirectoryEntry entry,
InstitutionalGender? gender,
string institutionalUser,
ILogger logger)
{
if (gender is null)
{
return;
}
string existing = Convert.ToString(entry.Properties["info"].Value) ?? string.Empty;
string? updated = MergeGenderMetadata(existing, gender);
if (updated is null)
{
logger.LogWarning(
BrokerEventIds.DirectoryOptionalMetadataFailure,
"Gender metadata was not written for {InstitutionalUser} because the Active Directory info attribute has no remaining capacity.",
institutionalUser);
return;
}
entry.Properties["info"].Value = updated;
}
internal static string? MergeGenderMetadata(
string? existing,
InstitutionalGender? gender)
{
if (gender is null)
{
return null;
}
string managedLine = $"{GenderMetadataPrefix} {gender}";
string normalizedExisting = (existing ?? string.Empty)
.Replace("\r\n", "\n", StringComparison.Ordinal)
.Replace('\r', '\n');
string[] preservedLines = string.IsNullOrEmpty(normalizedExisting)
? []
: normalizedExisting
.Split('\n')
.Where(line => !line.TrimStart().StartsWith(
GenderMetadataPrefix,
StringComparison.OrdinalIgnoreCase))
.ToArray();
string updated = string.Join("\r\n", preservedLines.Append(managedLine));
return updated.Length <= InfoAttributeMaximumLength ? updated : null;
}
private void EnsureRoleGroupMembership(DirectoryEntry user, UserIdentity identity) private void EnsureRoleGroupMembership(DirectoryEntry user, UserIdentity identity)
{ {
user.RefreshCache(["distinguishedName"]); user.RefreshCache(["distinguishedName"]);
@@ -1,5 +1,7 @@
using System.Diagnostics; using System.Diagnostics;
using System.Net; using System.Net;
using System.Text;
using System.Text.Json;
using SGU.AuthBroker.Core.Authentication; using SGU.AuthBroker.Core.Authentication;
using SGU.AuthBroker.Core.Identity; using SGU.AuthBroker.Core.Identity;
using SGU.AuthBroker.Core.Profiles; using SGU.AuthBroker.Core.Profiles;
@@ -431,9 +433,6 @@ public sealed class NtlmCredentialValidator : INtlmCredentialValidator
pages.Add(( pages.Add((
options.AdministrativePersonalProfilePath, options.AdministrativePersonalProfilePath,
SguProfileParser.ParseAdministrativePersonal)); SguProfileParser.ParseAdministrativePersonal));
pages.Add((
options.AdministrativeLocationProfilePath,
SguProfileParser.ParseAdministrativeLocation));
foreach ((string path, Func<string, InstitutionalProfile?> parser) in pages) foreach ((string path, Func<string, InstitutionalProfile?> parser) in pages)
{ {
@@ -474,7 +473,7 @@ public sealed class NtlmCredentialValidator : INtlmCredentialValidator
"SGU optional staff profile enrichment for role {Role} reached its total timeout after {ElapsedMilliseconds} ms; preserving fields already collected.", "SGU optional staff profile enrichment for role {Role} reached its total timeout after {ElapsedMilliseconds} ms; preserving fields already collected.",
identity.Role, identity.Role,
elapsed.ElapsedMilliseconds); elapsed.ElapsedMilliseconds);
break; return profile;
} }
catch (Exception exception) catch (Exception exception)
{ {
@@ -487,6 +486,142 @@ public sealed class NtlmCredentialValidator : INtlmCredentialValidator
} }
} }
return await TryEnrichStaffLocationAsync(
client,
profile,
identity,
allowedHosts,
timeoutToken,
requestCancellationToken,
elapsed).ConfigureAwait(false);
}
private async Task<InstitutionalProfile> TryEnrichStaffLocationAsync(
HttpClient client,
InstitutionalProfile profile,
UserIdentity identity,
HashSet<string> allowedHosts,
CancellationToken timeoutToken,
CancellationToken requestCancellationToken,
Stopwatch elapsed)
{
string path = options.AdministrativeLocationProfilePath;
Uri locationPageUri = GetProfileUri(path);
try
{
string? html = await TryFetchAdditionalProfilePageAsync(
client,
locationPageUri,
allowedHosts,
timeoutToken).ConfigureAwait(false);
if (html is null)
{
logger.LogWarning(
BrokerEventIds.ProfilePageUnavailable,
"Optional SGU profile page {Path} did not return usable HTML for role {Role}; preserving fields already collected.",
path,
identity.Role);
return profile;
}
InstitutionalProfile? staticLocation = SguProfileParser.ParseAdministrativeLocation(html);
if (staticLocation is null)
{
logger.LogWarning(
BrokerEventIds.ProfileHtmlUnexpected,
"Optional SGU profile page {Path} returned HTML without its supported field IDs for role {Role}; preserving fields already collected.",
path,
identity.Role);
return profile;
}
profile = profile.Overlay(staticLocation);
if (string.IsNullOrWhiteSpace(staticLocation.PostalCode))
{
return profile;
}
string? directionJson = await TryPostProfilePageMethodAsync(
client,
GetAdministrativeLocationMethodUri("GetDireccion"),
locationPageUri,
new Dictionary<string, string>
{
["CodigoPostal"] = staticLocation.PostalCode
},
allowedHosts,
timeoutToken).ConfigureAwait(false);
if (directionJson is null)
{
return profile;
}
SguAdministrativeLocationSelection? selection =
SguProfileParser.ParseAdministrativeLocationSelection(
directionJson,
staticLocation.PostalCode);
if (selection is null)
{
logger.LogWarning(
BrokerEventIds.ProfileHtmlUnexpected,
"SGU location method GetDireccion returned an unexpected payload for role {Role}; preserving the static address fields.",
identity.Role);
return profile;
}
string? localitiesJson = null;
if (!string.IsNullOrWhiteSpace(selection.StateId))
{
localitiesJson = await TryPostProfilePageMethodAsync(
client,
GetAdministrativeLocationMethodUri("GetLocalidadListado"),
locationPageUri,
new Dictionary<string, string>
{
["pIdEstado"] = selection.StateId
},
allowedHosts,
timeoutToken).ConfigureAwait(false);
}
string? neighborhoodsJson = await TryPostProfilePageMethodAsync(
client,
GetAdministrativeLocationMethodUri("GetColoniasListado"),
locationPageUri,
new Dictionary<string, string>
{
["pIdEstado"] = string.Empty,
["pLocalidad"] = string.Empty,
["CodigoPostal"] = selection.PostalCode ?? staticLocation.PostalCode
},
allowedHosts,
timeoutToken).ConfigureAwait(false);
InstitutionalProfile? resolvedLocation = SguProfileParser.ParseAdministrativeLocation(
html,
selection,
localitiesJson,
neighborhoodsJson);
return profile.Overlay(resolvedLocation);
}
catch (OperationCanceledException) when (!requestCancellationToken.IsCancellationRequested)
{
logger.LogWarning(
BrokerEventIds.ProfileEnrichmentTimeout,
"SGU optional staff location enrichment for role {Role} reached its total timeout after {ElapsedMilliseconds} ms; preserving fields already collected.",
identity.Role,
elapsed.ElapsedMilliseconds);
}
catch (Exception exception)
{
logger.LogWarning(
BrokerEventIds.ProfileEnrichmentFailure,
exception,
"SGU optional staff location enrichment failed for role {Role} after {ElapsedMilliseconds} ms; preserving fields already collected.",
identity.Role,
elapsed.ElapsedMilliseconds);
}
return profile; return profile;
} }
@@ -545,6 +680,46 @@ public sealed class NtlmCredentialValidator : INtlmCredentialValidator
return null; return null;
} }
private async Task<string?> TryPostProfilePageMethodAsync(
HttpClient client,
Uri requestedUri,
Uri referrerUri,
IReadOnlyDictionary<string, string> payload,
HashSet<string> allowedHosts,
CancellationToken cancellationToken)
{
if (!IsAllowedHttpsUri(requestedUri, allowedHosts) ||
!IsAllowedHttpsUri(referrerUri, allowedHosts))
{
return null;
}
using HttpRequestMessage request = new(HttpMethod.Post, requestedUri);
request.Headers.Referrer = referrerUri;
request.Content = new StringContent(
JsonSerializer.Serialize(payload),
Encoding.UTF8,
"application/json");
using HttpResponseMessage response = await client
.SendAsync(request, HttpCompletionOption.ResponseHeadersRead, cancellationToken)
.ConfigureAwait(false);
int statusCode = (int)response.StatusCode;
if (statusCode is >= 200 and < 300)
{
return await ReadLimitedStringAsync(
response.Content,
options.MaxProfileBytes,
cancellationToken).ConfigureAwait(false);
}
logger.LogWarning(
BrokerEventIds.ProfilePageUnavailable,
"Optional SGU profile method {Path} returned HTTP {StatusCode}.",
requestedUri.AbsolutePath,
statusCode);
return null;
}
private static void AddCredential( private static void AddCredential(
Uri uri, Uri uri,
CredentialCache credentialCache, CredentialCache credentialCache,
@@ -658,6 +833,12 @@ public sealed class NtlmCredentialValidator : INtlmCredentialValidator
private Uri GetProfileUri(string path) => private Uri GetProfileUri(string path) =>
new(new Uri(options.Endpoint, UriKind.Absolute), path); new(new Uri(options.Endpoint, UriKind.Absolute), path);
private Uri GetAdministrativeLocationMethodUri(string methodName)
{
Uri pageUri = GetProfileUri(options.AdministrativeLocationProfilePath);
return new Uri($"{pageUri.GetLeftPart(UriPartial.Path).TrimEnd('/')}/{methodName}");
}
private async Task<InstitutionalProfile?> TryReadProfileAsync( private async Task<InstitutionalProfile?> TryReadProfileAsync(
HttpResponseMessage response, HttpResponseMessage response,
UserIdentity identity, UserIdentity identity,
+3 -3
View File
@@ -50,9 +50,9 @@
"ProfessorOuDn": "OU=Docentes,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx", "ProfessorOuDn": "OU=Docentes,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx",
"StudentOuDn": "OU=Alumnos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx", "StudentOuDn": "OU=Alumnos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx",
"AdministrativeOuDn": "OU=Administrativos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx", "AdministrativeOuDn": "OU=Administrativos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx",
"ProfessorGroupDn": "CN=SGU-Docentes,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx", "ProfessorGroupDn": "CN=SGU-Docentes,OU=Docentes,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx",
"StudentGroupDn": "CN=SGU-Alumnos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx", "StudentGroupDn": "CN=SGU-Alumnos,OU=Alumnos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx",
"AdministrativeGroupDn": "CN=SGU-Administrativos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx", "AdministrativeGroupDn": "CN=SGU-Administrativos,OU=Administrativos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx",
"RemoteDesktopGroupDn": "", "RemoteDesktopGroupDn": "",
"DefaultCompany": "La Salle", "DefaultCompany": "La Salle",
"CreateMissingOus": false "CreateMissingOus": false
+419
View File
@@ -0,0 +1,419 @@
$repositoryRoot = (Resolve-Path (Join-Path $PSScriptRoot '..')).Path
$serverBootstrapPath = Join-Path $repositoryRoot 'scripts\Initialize-SguDomainController.ps1'
$clientBootstrapPath = Join-Path $repositoryRoot 'scripts\Invoke-SguClientBootstrap.ps1'
$azureClientPath = Join-Path $repositoryRoot 'scripts\Install-SguAzureP2sClient.ps1'
$domainEnrollmentPath = Join-Path $repositoryRoot 'scripts\Enroll-SguDomainClient.ps1'
$repairEnrollmentPath = Join-Path $repositoryRoot 'scripts\Repair-SguClientEnrollment.ps1'
$bicepPath = Join-Path $repositoryRoot 'infra\azure\main.bicep'
$tokens = $null
$parseErrors = $null
$serverAst = [Management.Automation.Language.Parser]::ParseFile(
$serverBootstrapPath,
[ref]$tokens,
[ref]$parseErrors)
if ($parseErrors.Count -gt 0) {
throw ($parseErrors -join [Environment]::NewLine)
}
$networkFunctionNames = @(
'Test-PrivateIPv4Address',
'ConvertTo-NetworkCidr',
'ConvertTo-PrivateNetworkCidr',
'ConvertTo-PublicNetworkCidr',
'Get-ActiveIPv4Adapters',
'Resolve-PrivateInterfaceAlias'
)
$networkFunctions = $serverAst.FindAll({
param($node)
$node -is [Management.Automation.Language.FunctionDefinitionAst] -and
$networkFunctionNames -contains $node.Name
}, $true)
Invoke-Expression (($networkFunctions | ForEach-Object { $_.Extent.Text }) -join [Environment]::NewLine)
$clientTokens = $null
$clientParseErrors = $null
$clientAst = [Management.Automation.Language.Parser]::ParseFile(
$clientBootstrapPath,
[ref]$clientTokens,
[ref]$clientParseErrors)
if ($clientParseErrors.Count -gt 0) {
throw ($clientParseErrors -join [Environment]::NewLine)
}
$clientNetworkFunctions = $clientAst.FindAll({
param($node)
$node -is [Management.Automation.Language.FunctionDefinitionAst] -and
$node.Name -in @('Test-IPv4AddressesSharePrefix', 'Resolve-ClientInterfaceAlias',
'Set-ClientServerRoute', 'Set-ClientDomainDns', 'Test-TcpPort', 'Assert-ClientOperatingSystem',
'Wait-ClientInterface', 'Test-PrivateIPv4Address', 'Test-ClientDomainDns')
}, $true)
Invoke-Expression (($clientNetworkFunctions | ForEach-Object { $_.Extent.Text }) -join [Environment]::NewLine)
Describe 'SGU public-cloud network safety' {
It 'canonicalizes a host address to its IPv4 network' {
ConvertTo-NetworkCidr -Address ([ipaddress]'10.77.0.4') `
-NetworkPrefixLength 24 | Should Be '10.77.0.0/24'
}
It 'canonicalizes the trusted P2S pool' {
ConvertTo-PrivateNetworkCidr -Cidr '172.30.4.19/16' |
Should Be '172.30.0.0/16'
}
It 'rejects a public trusted-client CIDR' {
$wasRejected = $false
try {
ConvertTo-PrivateNetworkCidr -Cidr '8.8.8.0/24' | Out-Null
}
catch {
$wasRejected = $true
}
$wasRejected | Should Be $true
}
It 'canonicalizes an explicitly authorized public enrollment network' {
ConvertTo-PublicNetworkCidr -Cidr '200.13.89.183/24' |
Should Be '200.13.89.0/24'
}
It 'rejects private space in the public enrollment allowlist' {
$wasRejected = $false
try {
ConvertTo-PublicNetworkCidr -Cidr '10.77.0.0/16' | Out-Null
}
catch {
$wasRejected = $true
}
$wasRejected | Should Be $true
}
It 'exposes explicit Azure modes on both bootstraps' {
((Get-Command $serverBootstrapPath).Parameters.Keys -contains
'NetworkConfigurationMode') | Should Be $true
((Get-Command $serverBootstrapPath).Parameters.Keys -contains
'TrustedClientNetworks') | Should Be $true
((Get-Command $serverBootstrapPath).Parameters.Keys -contains
'PublicEnrollmentNetworks') | Should Be $true
((Get-Command $clientBootstrapPath).Parameters.Keys -contains
'ConnectivityMode') | Should Be $true
((Get-Command $clientBootstrapPath).Parameters.Keys -contains
'VpnProfilePackagePath') | Should Be $true
((Get-Command $clientBootstrapPath).Parameters.Keys -contains
'CompatibilityProfile') | Should Be $true
}
It 'accepts an explicit static IPv4 address for a private Windows adapter' {
((Get-Command $clientBootstrapPath).Parameters.Keys -contains
'ClientIPv4Address') | Should Be $true
((Get-Command $clientBootstrapPath).Parameters.Keys -contains
'ClientPrefixLength') | Should Be $true
}
It 'matches a client and domain controller within the requested prefix' {
Test-IPv4AddressesSharePrefix -FirstAddress ([ipaddress]'192.168.50.11') `
-SecondAddress ([ipaddress]'192.168.50.10') -PrefixLength 24 |
Should Be $true
Test-IPv4AddressesSharePrefix -FirstAddress ([ipaddress]'192.168.51.11') `
-SecondAddress ([ipaddress]'192.168.50.10') -PrefixLength 24 |
Should Be $false
Test-IPv4AddressesSharePrefix -FirstAddress ([ipaddress]'10.77.15.20') `
-SecondAddress ([ipaddress]'10.77.0.4') -PrefixLength 16 |
Should Be $true
}
It 'waits for the new address and WinRM route to stabilize' {
$source = Get-Content -LiteralPath $clientBootstrapPath -Raw
$source | Should Match "AddressState -eq 'Preferred'"
$source | Should Match 'function Wait-TcpPort'
$source | Should Match 'Wait-TcpPort -Address \$DomainControllerIPv4Address -Port 5985'
}
It 'uses the unified implementation without OS-specific network restrictions' {
$source = Get-Content -LiteralPath $clientBootstrapPath -Raw
$source | Should Not Match 'package cannot enroll|belongs to the Windows 11'
$source | Should Not Match 'Read-Host "Fixed IPv4 address for this SGU client'
}
It 'uses an all-user machine-certificate VPN profile' {
$source = Get-Content -LiteralPath $azureClientPath -Raw
$source | Should Match '-AuthenticationMethod MachineCertificate'
$source | Should Match '-AllUserConnection'
$source | Should Match 'Add-DnsClientNrptRule'
}
It 'keeps public enrollment closed unless explicit source CIDRs are supplied' {
$template = Get-Content -LiteralPath $bicepPath -Raw
$template | Should Match "name: 'Allow-RDP-from-administrator'"
$template | Should Match "destinationPortRange: '3389'"
$template | Should Match 'param publicEnrollmentSourceAddressPrefixes array = \[\]'
$template | Should Match "name: 'Allow-Direct-AD-TCP'"
$template | Should Match 'sourceAddressPrefixes: publicEnrollmentSourceAddressPrefixes'
$template | Should Match 'param deployVpnGateway bool = true'
$template | Should Not Match "sourceAddressPrefix: '0\.0\.0\.0/0'"
}
}
Describe 'SGU direct public enrollment discovery' {
It 'distinguishes public server addresses from LAN and VPN addresses' {
Test-PrivateIPv4Address -Address ([ipaddress]'10.77.0.4') | Should Be $true
Test-PrivateIPv4Address -Address ([ipaddress]'172.30.0.4') | Should Be $true
Test-PrivateIPv4Address -Address ([ipaddress]'192.168.50.10') | Should Be $true
Test-PrivateIPv4Address -Address ([ipaddress]'20.9.81.130') | Should Be $false
}
It 'bootstraps DoH and host mappings after authenticated server discovery' {
$source = Get-Content -LiteralPath $clientBootstrapPath -Raw
$source | Should Match 'Set-DnsServerEncryptionProtocol'
$source | Should Match 'Enable-ClientDnsOverHttps'
$source | Should Match 'Set-ClientHostMappings'
$source | Should Match 'Test-ClientDomainDns'
$source | Should Match 'Get-DnsClientDohServerAddress'
$source | Should Match 'Add-DnsClientDohServerAddress'
}
}
Describe 'Azure accelerated server adapters' {
It 'ignores an Up accelerated VF that has no IPv4 interface' {
Mock Get-NetAdapter {
[pscustomobject]@{ Name = 'Ethernet'; ifIndex = 4; Status = 'Up' }
[pscustomobject]@{ Name = 'Ethernet VF'; ifIndex = 10; Status = 'Up' }
[pscustomobject]@{ Name = 'Disconnected'; ifIndex = 12; Status = 'Disconnected' }
}
Mock Get-NetIPInterface {
if ($InterfaceIndex -eq 4) {
[pscustomobject]@{ InterfaceIndex = 4; ConnectionState = 'Connected' }
}
}
Mock Get-NetIPConfiguration { [pscustomobject]@{ IPv4DefaultGateway = '10.77.0.1' } }
$adapters = @(Get-ActiveIPv4Adapters)
$adapters.Count | Should Be 1
$adapters[0].Name | Should Be 'Ethernet'
Resolve-PrivateInterfaceAlias | Should Be 'Ethernet'
}
}
Describe 'SGU route and interface discovery' {
BeforeEach {
Mock Get-NetIPInterface {
[pscustomobject]@{ InterfaceIndex = 4; InterfaceAlias = 'Internet'; ConnectionState = 'Connected'; InterfaceMetric = 5 }
[pscustomobject]@{ InterfaceIndex = 8; InterfaceAlias = 'AD VPN'; ConnectionState = 'Connected'; InterfaceMetric = 30 }
}
Mock Get-NetIPAddress {
if ($InterfaceIndex -eq 4) {
[pscustomobject]@{ IPAddress = '192.168.1.2'; AddressState = 'Preferred'; SkipAsSource = $false }
} else {
[pscustomobject]@{ IPAddress = '172.30.0.2'; AddressState = 'Preferred'; SkipAsSource = $false }
}
}
Mock Get-NetRoute {
if ($InterfaceIndex -eq 4) {
[pscustomobject]@{ DestinationPrefix = '0.0.0.0/0'; NextHop = '192.168.1.1'; RouteMetric = 0 }
} else {
[pscustomobject]@{ DestinationPrefix = '10.77.0.0/16'; NextHop = '0.0.0.0'; RouteMetric = 10 }
}
}
Mock Find-NetRoute { [pscustomobject]@{ IPAddress = '192.168.1.2'; InterfaceIndex = 4 } }
Mock Test-TcpPort { $InterfaceIndex -eq 8 }
}
It 'tries another interface when the Internet route cannot reach WinRM' {
$result = Resolve-ClientInterfaceAlias -DomainControllerAddress '10.77.0.4'
$result.InterfaceAlias | Should Be 'AD VPN'
$result.IPAddress | Should Be '172.30.0.2'
Assert-MockCalled Test-TcpPort -Scope It -Times 1 -Exactly -ParameterFilter { $InterfaceIndex -eq 4 }
Assert-MockCalled Test-TcpPort -Scope It -Times 1 -Exactly -ParameterFilter {
$InterfaceIndex -eq 8 -and $SourceAddress -eq [ipaddress]'172.30.0.2'
}
}
It 'uses a functioning Windows route first even with multiple interfaces' {
Mock Test-TcpPort { $true }
(Resolve-ClientInterfaceAlias -DomainControllerAddress '10.77.0.4').InterfaceAlias | Should Be 'Internet'
Assert-MockCalled Test-TcpPort -Scope It -Times 0 -Exactly -ParameterFilter { $InterfaceIndex -eq 8 }
}
It 'honors an explicit interface and never falls back to another' {
Mock Test-TcpPort { $false }
$rejected = $false
try { Resolve-ClientInterfaceAlias -RequestedAlias 'AD VPN' -DomainControllerAddress '10.77.0.4' | Out-Null } catch { $rejected = $true }
$rejected | Should Be $true
Assert-MockCalled Test-TcpPort -Scope It -Times 0 -Exactly -ParameterFilter { $InterfaceIndex -eq 4 }
}
It 'does not require a client to share the server subnet' {
(Resolve-ClientInterfaceAlias -RequestedAlias 'AD VPN' -DomainControllerAddress '10.77.0.4').IPAddress |
Should Be '172.30.0.2'
}
It 'accepts a normal default route when it is the only way to reach AD' {
Mock Get-NetRoute { [pscustomobject]@{ DestinationPrefix = '0.0.0.0/0'; NextHop = '172.30.0.1'; RouteMetric = 0 } }
(Resolve-ClientInterfaceAlias -RequestedAlias 'AD VPN' -DomainControllerAddress '10.77.0.4').NextHop |
Should Be '172.30.0.1'
}
It 'does not probe disconnected or APIPA-only interfaces' {
Mock Get-NetIPAddress { [pscustomobject]@{ IPAddress = '169.254.1.2'; AddressState = 'Preferred' } }
$rejected = $false
try { Resolve-ClientInterfaceAlias -DomainControllerAddress '10.77.0.4' | Out-Null } catch { $rejected = $true }
$rejected | Should Be $true
Assert-MockCalled Test-TcpPort -Scope It -Times 0 -Exactly
}
It 'does not select an adapter without a matching route' {
Mock Get-NetRoute { [pscustomobject]@{ DestinationPrefix = '192.168.60.0/24'; NextHop = '0.0.0.0'; RouteMetric = 0 } }
$rejected = $false
try { Resolve-ClientInterfaceAlias -DomainControllerAddress '10.77.0.4' | Out-Null } catch { $rejected = $true }
$rejected | Should Be $true
Assert-MockCalled Test-TcpPort -Scope It -Times 0 -Exactly
}
It 'selects the longest matching prefix on an interface' {
Mock Get-NetRoute {
[pscustomobject]@{ DestinationPrefix = '0.0.0.0/0'; NextHop = '172.30.0.1'; RouteMetric = 0 }
[pscustomobject]@{ DestinationPrefix = '10.77.0.4/32'; NextHop = '172.30.0.3'; RouteMetric = 100 }
}
(Resolve-ClientInterfaceAlias -RequestedAlias 'AD VPN' -DomainControllerAddress '10.77.0.4').NextHop |
Should Be '172.30.0.3'
}
It 'does not change a working system route' {
Mock New-NetRoute { throw 'Unexpected route mutation' }
Set-ClientServerRoute -SelectedInterface ([pscustomobject]@{ InterfaceIndex = 4 }) -DomainControllerAddress '10.77.0.4'
Assert-MockCalled New-NetRoute -Scope It -Times 0 -Exactly
}
It 'pins only the server when the working adapter differs from the system route' {
$script:routeAdded = $false
Mock Find-NetRoute {
[pscustomobject]@{ IPAddress = '172.30.0.2'; InterfaceIndex = $(if ($script:routeAdded) { 8 } else { 4 }) }
}
Mock New-NetRoute { $script:routeAdded = $true }
Set-ClientServerRoute -SelectedInterface ([pscustomobject]@{ InterfaceIndex = 8; NextHop = '172.30.0.1' }) `
-DomainControllerAddress '10.77.0.4'
Assert-MockCalled New-NetRoute -Scope It -Times 1 -Exactly -ParameterFilter {
$DestinationPrefix -eq '10.77.0.4/32' -and $InterfaceIndex -eq 8 -and $NextHop -eq '172.30.0.1'
}
}
It 'removes its new route and reports a conflicting system route' {
Mock New-NetRoute { [pscustomobject]@{ DestinationPrefix = '10.77.0.4/32'; InterfaceIndex = 8 } }
Mock Remove-NetRoute { }
$rejected = $false
try {
Set-ClientServerRoute -SelectedInterface ([pscustomobject]@{ InterfaceIndex = 8; NextHop = '172.30.0.1' }) `
-DomainControllerAddress '10.77.0.4'
} catch { $rejected = $true }
$rejected | Should Be $true
Assert-MockCalled Remove-NetRoute -Scope It -Times 1 -Exactly
}
}
Describe 'SGU split DNS' {
It 'scopes DNS to the discovered domain and leaves adapter DNS untouched' {
Mock Get-DnsClientNrptRule { }
Mock Remove-DnsClientNrptRule { }
Mock Add-DnsClientNrptRule { }
Mock Clear-DnsClientCache { }
Mock Set-DnsClientServerAddress { throw 'Unexpected adapter DNS change' }
Set-ClientDomainDns -DnsDomain 'example.test' -ServerAddress '10.77.0.4'
Assert-MockCalled Add-DnsClientNrptRule -Scope It -Times 1 -Exactly -ParameterFilter {
$Namespace -contains '.example.test' -and $Namespace -contains 'example.test' -and
$NameServers -eq '10.77.0.4'
}
Assert-MockCalled Set-DnsClientServerAddress -Scope It -Times 0 -Exactly
}
It 'reuses the managed DNS rule on a repeated enrollment' {
Mock Get-DnsClientNrptRule {
[pscustomobject]@{ DisplayName = 'SGU domain DNS - example.test';
NameServers = @('10.77.0.4'); Namespace = @('example.test', '.example.test') }
}
Mock Add-DnsClientNrptRule { throw 'Unexpected DNS rule duplication' }
Set-ClientDomainDns -DnsDomain 'example.test' -ServerAddress '10.77.0.4'
Assert-MockCalled Add-DnsClientNrptRule -Scope It -Times 0 -Exactly
}
}
Describe 'SGU Windows capability checks' {
It 'accepts the same enrollment on Windows 10 LTSC, Windows 10 and Windows 11' {
foreach ($build in @(14393, 17763, 19044, 19045, 22000, 22631, 26100)) {
Assert-ClientOperatingSystem -OperatingSystem ([pscustomobject]@{ ProductType = 1; BuildNumber = $build }) `
-Edition Enterprise -Architecture AMD64
}
}
It 'rejects Home, Server, pre-Windows 10 and incompatible architectures' {
foreach ($sample in @(
@{ ProductType = 1; BuildNumber = 26100; Edition = 'Core'; Architecture = 'AMD64' },
@{ ProductType = 3; BuildNumber = 26100; Edition = 'ServerStandard'; Architecture = 'AMD64' },
@{ ProductType = 1; BuildNumber = 9600; Edition = 'Professional'; Architecture = 'AMD64' },
@{ ProductType = 1; BuildNumber = 26100; Edition = 'Professional'; Architecture = 'ARM64' },
@{ ProductType = 1; BuildNumber = 19045; Edition = 'Professional'; Architecture = 'x86' }
)) {
$rejected = $false
try {
Assert-ClientOperatingSystem -OperatingSystem ([pscustomobject]$sample) `
-Edition $sample.Edition -Architecture $sample.Architecture
} catch { $rejected = $true }
$rejected | Should Be $true
}
}
}
Describe 'SGU repeated domain enrollment' {
It 'rejoins a same-name forest when the machine secure channel is broken' {
$source = Get-Content -LiteralPath $domainEnrollmentPath -Raw
$source | Should Match 'Test-ComputerSecureChannel'
$source | Should Match '\$computer\.PartOfDomain -and \$domainMembershipHealthy'
$source | Should Match 'Reset-ComputerMachinePassword'
$source | Should Match 'DomainControllerDnsName'
$source | Should Match 'Add-Computer @joinParams'
}
It 'defers domain-only repair until the secure channel is healthy' {
$source = Get-Content -LiteralPath $repairEnrollmentPath -Raw
$source | Should Match 'Test-ComputerSecureChannel'
$source | Should Match 'if \(\$domainReady\)'
}
}
Describe 'SGU real TCP probe' {
It 'connects with a bound source and interface without relying on ICMP' {
$listener = [Net.Sockets.TcpListener]::new([ipaddress]'127.0.0.1', 0)
try {
$listener.Start()
$loopback = Get-NetIPAddress -IPAddress '127.0.0.1' -AddressFamily IPv4 | Select-Object -First 1
Test-TcpPort -Address '127.0.0.1' -Port $listener.LocalEndpoint.Port `
-SourceAddress '127.0.0.1' -InterfaceIndex $loopback.InterfaceIndex | Should Be $true
} finally { $listener.Stop() }
}
It 'returns false when the TCP service is closed' {
$listener = [Net.Sockets.TcpListener]::new([ipaddress]'127.0.0.1', 0)
$listener.Start()
$port = $listener.LocalEndpoint.Port
$listener.Stop()
Test-TcpPort -Address '127.0.0.1' -Port $port -TimeoutMilliseconds 200 | Should Be $false
}
}
Describe 'SGU network readiness retries' {
It 'retries discovery while DHCP or VPN routes are initializing' {
$script:discoveryAttempts = 0
Mock Start-Sleep { }
Mock Resolve-ClientInterfaceAlias {
$script:discoveryAttempts++
if ($script:discoveryAttempts -eq 1) { throw 'Address still tentative' }
[pscustomobject]@{ InterfaceAlias = 'AD VPN'; IPAddress = '172.30.0.2' }
}
(Wait-ClientInterface -DomainControllerAddress '10.77.0.4').InterfaceAlias | Should Be 'AD VPN'
Assert-MockCalled Resolve-ClientInterfaceAlias -Scope It -Times 2 -Exactly
}
It 'reports the last network diagnostic when the timeout expires' {
Mock Resolve-ClientInterfaceAlias { throw 'No route to the server' }
$message = ''
try { Wait-ClientInterface -DomainControllerAddress '10.77.0.4' -TimeoutSeconds 0 }
catch { $message = $_.Exception.Message }
$message | Should Match 'No route to the server'
}
}
+75
View File
@@ -0,0 +1,75 @@
$repositoryRoot = (Resolve-Path (Join-Path $PSScriptRoot '..')).Path
$localUserScriptPath = Join-Path $repositoryRoot 'scripts\Set-SguStandardLocalUser.ps1'
$enrollmentTestScriptPath = Join-Path $repositoryRoot 'scripts\Test-SguClientEnrollment.ps1'
$packageScriptPath = Join-Path $repositoryRoot 'scripts\New-SguBootstrapPackages.ps1'
$releaseScriptPath = Join-Path $repositoryRoot 'scripts\Publish-GiteaRelease.ps1'
$azureLauncherPath = Join-Path $repositoryRoot 'scripts\Start-SguAzureClientEnrollment.cmd'
$tokens = $null
$parseErrors = $null
$scriptAst = [Management.Automation.Language.Parser]::ParseFile(
$localUserScriptPath,
[ref]$tokens,
[ref]$parseErrors)
if ($parseErrors.Count -gt 0) {
throw ($parseErrors -join [Environment]::NewLine)
}
$descriptionAssignment = $scriptAst.Find({
param($node)
$node -is [Management.Automation.Language.AssignmentStatementAst] -and
$node.Left.Extent.Text -eq '$description'
}, $true)
$description = $descriptionAssignment.Right.Extent.Text.Trim("'")
Describe 'SGU Windows client enrollment scripts' {
It 'keeps the local-user description within the Windows 10 limit' {
($description.Length -le 48) | Should Be $true
}
It 'declares the managed local student account' {
$source = Get-Content -LiteralPath $localUserScriptPath -Raw
$source | Should Match "\$userName = 'alumno'"
$source | Should Match "\$plainTextPassword = 'ingenieria'"
}
It 'uses the cross-version Windows account flag for password expiration' {
$localUserSource = Get-Content -LiteralPath $localUserScriptPath -Raw
$enrollmentTestSource = Get-Content -LiteralPath $enrollmentTestScriptPath -Raw
$localUserSource | Should Match '\$passwordNeverExpiresFlag = 0x10000'
$enrollmentTestSource | Should Match '\$passwordNeverExpiresFlag = 0x10000'
$localUserSource | Should Not Match '\$verifiedUser\.PasswordNeverExpires'
$enrollmentTestSource | Should Not Match '\$standardLocalUser\.PasswordNeverExpires'
}
It 'preserves existing local credentials when enrollment is repeated under domain password policies' {
$updates = $scriptAst.FindAll({
param($node)
$node -is [Management.Automation.Language.CommandAst] -and $node.GetCommandName() -eq 'Set-LocalUser'
}, $true)
$updates.Count | Should Be 1
@($updates[0].CommandElements | Where-Object {
$_ -is [Management.Automation.Language.CommandParameterAst] -and $_.ParameterName -eq 'Password'
}).Count | Should Be 0
}
It 'publishes one Windows artifact with automatic compatibility' {
$packageSource = Get-Content -LiteralPath $packageScriptPath -Raw
$releaseSource = Get-Content -LiteralPath $releaseScriptPath -Raw
$packageSource | Should Match 'sgu-windows-client-bootstrap-\$Version'
$packageSource | Should Match '-CompatibilityProfile Auto'
$packageSource | Should Not Match 'sgu-windows10-legacy|sgu-windows11-client'
$releaseSource | Should Match 'sgu-windows-client-bootstrap-\$Version\.zip'
$releaseSource | Should Not Match 'sgu-windows10-legacy|sgu-windows11-client'
}
It 'includes Azure P2S in the shared Windows artifact' {
$packageSource = Get-Content -LiteralPath $packageScriptPath -Raw
$azureLauncher = Get-Content -LiteralPath $azureLauncherPath -Raw
$packageSource.Contains("Join-Path `$clientRoot 'Start-SguAzureClientEnrollment.cmd'") |
Should Be $true
$packageSource.Contains("Join-Path `$clientRoot 'Install-SguAzureP2sClient.ps1'") |
Should Be $true
$azureLauncher | Should Match '-PauseOnError'
}
}
@@ -133,6 +133,64 @@ public sealed class SguProfileParserTests
Assert.Null(profile.Email); Assert.Null(profile.Email);
} }
[Theory]
[InlineData("ctl00_contenedor_ddlsexo", "ctl00$contenedor$ddlsexo", "1", InstitutionalGender.Male)]
[InlineData("alternate-id", "ctl00$contenedor$ddlsexo", "2", InstitutionalGender.Female)]
public void ParsesStaffGenderFromTheSelectedPersonalDataOption(
string id,
string name,
string selectedValue,
InstitutionalGender expected)
{
string html = $"""
<select id="{id}" name="{name}">
<option value="">Seleccione...</option>
<option value="1"{(selectedValue == "1" ? " selected=\"selected\"" : string.Empty)}>Masculino</option>
<option value="2"{(selectedValue == "2" ? " selected=\"selected\"" : string.Empty)}>Femenino</option>
</select>
""";
InstitutionalProfile? profile = SguProfileParser.ParseAdministrativePersonal(html);
Assert.NotNull(profile);
Assert.Equal(expected, profile.Gender);
}
[Theory]
[InlineData("M", InstitutionalGender.Male)]
[InlineData("f", InstitutionalGender.Female)]
public void ParsesStudentGenderFromTheInformationSpan(
string source,
InstitutionalGender expected)
{
string html = $"""
<span id="ctl00_contenedor_HistorialAlumno1_lblClaveAlumnoHP">123456</span>
<span id="ctl00_contenedor_HistorialAlumno1_lblSexoAlumnoHP">{source}</span>
""";
InstitutionalProfile? profile = SguProfileParser.ParseStudent(html, "123456");
Assert.NotNull(profile);
Assert.Equal(expected, profile.Gender);
}
[Fact]
public void IgnoresUnknownGenderValuesWithoutFailingProfileParsing()
{
const string html = """
<input id="ctl00_contenedor_txtNombre" value="PERSONA" />
<select id="ctl00_contenedor_ddlsexo">
<option selected="selected" value="9">SIN CLASIFICAR</option>
</select>
""";
InstitutionalProfile? profile = SguProfileParser.ParseAdministrativePersonal(html);
Assert.NotNull(profile);
Assert.Equal("Persona", profile.DisplayName);
Assert.Null(profile.Gender);
}
[Fact] [Fact]
public void ParsesAdministrativeAddressFromInputsAndSelectedOptions() public void ParsesAdministrativeAddressFromInputsAndSelectedOptions()
{ {
@@ -170,6 +228,65 @@ public sealed class SguProfileParserTests
Assert.Null(profile.Email); Assert.Null(profile.Email);
} }
[Fact]
public void ResolvesAdministrativeAddressFromPageMethodIdentifiers()
{
const string html = """
<html><body>
<input id='ctl00_contenedor_txtCalle' value='RETORNO 1, SUR 16' />
<input id='ctl00_contenedor_txtNoExt' value='74' />
<input id='ctl00_contenedor_txtNoInt' value='' />
<input id='ctl00_contenedor_txtCP' value='08500' />
<select id='ctl00_contenedor_ddlEstado'>
<option selected='selected' value='0'>Seleccione...</option>
<option value='09'>CIUDAD DE MÉXICO</option>
</select>
<select id='ctl00_contenedor_ddlLocalidad'>
<option selected='selected' value='0'>Seleccione alguna localidad...</option>
</select>
<select id='ctl00_contenedor_ddlColonia'>
<option selected='selected' value='0,0'>Seleccione alguna colonia...</option>
</select>
</body></html>
""";
const string directionJson = """
{"d":[{"p_IdCP":"091263","p_IdEstado":"09","p_NombreEstado":"","p_IdMunicipio":"006","p_NombreMunicipio":"","p_NombreColonia":"","p_Cp":"08500"}]}
""";
const string localitiesJson = """
{"d":[{"ID_Estado":"09","Id_Municipio":"002","Nombre":"AZCAPOTZALCO"},{"ID_Estado":"09","Id_Municipio":"006","Nombre":"IZTACALCO"}]}
""";
const string neighborhoodsJson = """
{"d":[{"p_IdCP":"091263","p_Nombre":"AGRÍCOLA ORIENTAL","p_Cp":"08500"}]}
""";
SguAdministrativeLocationSelection? selection =
SguProfileParser.ParseAdministrativeLocationSelection(directionJson, "08500");
InstitutionalProfile? profile = SguProfileParser.ParseAdministrativeLocation(
html,
selection,
localitiesJson,
neighborhoodsJson);
Assert.NotNull(selection);
Assert.Equal("09", selection.StateId);
Assert.Equal("006", selection.MunicipalityId);
Assert.Equal("091263", selection.NeighborhoodId);
Assert.NotNull(profile);
Assert.Equal("Retorno 1, Sur 16 74\r\nAgrícola Oriental", profile.StreetAddress);
Assert.Equal("Iztacalco", profile.City);
Assert.Equal("Ciudad de México", profile.State);
Assert.Equal("08500", profile.PostalCode);
}
[Theory]
[InlineData("not-json")]
[InlineData("{\"d\":{}}")]
[InlineData("{\"d\":[]}")]
public void RejectsUnexpectedAdministrativeLocationPayloads(string json)
{
Assert.Null(SguProfileParser.ParseAdministrativeLocationSelection(json, "08500"));
}
[Fact] [Fact]
public void AdministrativePagesOverlayTheVerifiedIncidentsProfile() public void AdministrativePagesOverlayTheVerifiedIncidentsProfile()
{ {
@@ -182,7 +299,8 @@ public sealed class SguProfileParserTests
InstitutionalProfile personal = new( InstitutionalProfile personal = new(
DisplayName: "María del Carmen de la Fuente", DisplayName: "María del Carmen de la Fuente",
GivenName: "María del Carmen", GivenName: "María del Carmen",
Surname: "de la Fuente"); Surname: "de la Fuente",
Gender: InstitutionalGender.Female);
InstitutionalProfile location = new( InstitutionalProfile location = new(
StreetAddress: "Calle Uno 10", StreetAddress: "Calle Uno 10",
City: "Ciudad de México", City: "Ciudad de México",
@@ -200,6 +318,7 @@ public sealed class SguProfileParserTests
Assert.Equal("Ingeniería", combined.Department); Assert.Equal("Ingeniería", combined.Department);
Assert.Equal("Calle Uno 10", combined.StreetAddress); Assert.Equal("Calle Uno 10", combined.StreetAddress);
Assert.Equal("01000", combined.PostalCode); Assert.Equal("01000", combined.PostalCode);
Assert.Equal(InstitutionalGender.Female, combined.Gender);
} }
[Fact] [Fact]
@@ -215,6 +334,7 @@ public sealed class SguProfileParserTests
<span id="ctl00_contenedor_HistorialAlumno1_lblCorreoAlumnoHP"> <span id="ctl00_contenedor_HistorialAlumno1_lblCorreoAlumnoHP">
<a href="mailto:alumna@lasalle.mx">ALUMNA@LASALLE.MX</a> <a href="mailto:alumna@lasalle.mx">ALUMNA@LASALLE.MX</a>
</span> </span>
<span id="ctl00_contenedor_HistorialAlumno1_lblSexoAlumnoHP">F</span>
<span id="ctl00_contenedor_HistorialAlumno1_lblCURPAlumnoHP"> <span id="ctl00_contenedor_HistorialAlumno1_lblCURPAlumnoHP">
DATO-SENSIBLE-QUE-NO-DEBE-EXTRAERSE DATO-SENSIBLE-QUE-NO-DEBE-EXTRAERSE
</span> </span>
@@ -262,6 +382,7 @@ public sealed class SguProfileParserTests
Assert.Equal("Ciudad de México", profile.City); Assert.Equal("Ciudad de México", profile.City);
Assert.Equal("Ciudad de México", profile.State); Assert.Equal("Ciudad de México", profile.State);
Assert.Equal("08500", profile.PostalCode); Assert.Equal("08500", profile.PostalCode);
Assert.Equal(InstitutionalGender.Female, profile.Gender);
} }
[Fact] [Fact]
@@ -0,0 +1,34 @@
using SGU.AuthBroker.Core.Profiles;
using SGU.AuthBroker.Services;
using Xunit;
namespace SGU.AuthBroker.Tests;
public sealed class ActiveDirectorySynchronizerTests
{
[Fact]
public void GenderMetadataPreservesUnmanagedNotesAndReplacesItsManagedLine()
{
const string existing = " Responsable de laboratorio \r\n\r\nSGU-Gender: Male\r\nTurno vespertino";
string? updated = ActiveDirectorySynchronizer.MergeGenderMetadata(
existing,
InstitutionalGender.Female);
Assert.Equal(
" Responsable de laboratorio \r\n\r\nTurno vespertino\r\nSGU-Gender: Female",
updated);
}
[Fact]
public void GenderMetadataDoesNotTruncateAnExistingFullNotesField()
{
string existing = new('x', 1024);
string? updated = ActiveDirectorySynchronizer.MergeGenderMetadata(
existing,
InstitutionalGender.Male);
Assert.Null(updated);
}
}
@@ -31,9 +31,9 @@ public sealed class BrokerOptionsTests
} }
[Theory] [Theory]
[InlineData(InstitutionalRole.Student, "CN=SGU-Alumnos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx")] [InlineData(InstitutionalRole.Student, "CN=SGU-Alumnos,OU=Alumnos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx")]
[InlineData(InstitutionalRole.Administrative, "CN=SGU-Administrativos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx")] [InlineData(InstitutionalRole.Administrative, "CN=SGU-Administrativos,OU=Administrativos,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx")]
[InlineData(InstitutionalRole.Professor, "CN=SGU-Docentes,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx")] [InlineData(InstitutionalRole.Professor, "CN=SGU-Docentes,OU=Docentes,OU=Usuarios-SGU,DC=lci,DC=lasalle,DC=mx")]
public void DefaultRoleGroupMappingsMatchInstitutionalPrefixes(InstitutionalRole role, string expectedGroupDn) public void DefaultRoleGroupMappingsMatchInstitutionalPrefixes(InstitutionalRole role, string expectedGroupDn)
{ {
ActiveDirectoryOptions options = new(); ActiveDirectoryOptions options = new();
@@ -3,6 +3,7 @@ using System.Net.Http.Headers;
using Microsoft.Extensions.Logging.Abstractions; using Microsoft.Extensions.Logging.Abstractions;
using SGU.AuthBroker.Core.Authentication; using SGU.AuthBroker.Core.Authentication;
using SGU.AuthBroker.Core.Identity; using SGU.AuthBroker.Core.Identity;
using SGU.AuthBroker.Core.Profiles;
using SGU.AuthBroker.Options; using SGU.AuthBroker.Options;
using SGU.AuthBroker.Services; using SGU.AuthBroker.Services;
using Xunit; using Xunit;
@@ -132,6 +133,10 @@ public sealed class NtlmCredentialValidatorTests
<input id="ctl00_contenedor_txtNombre" value="MARÍA DEL CARMEN" /> <input id="ctl00_contenedor_txtNombre" value="MARÍA DEL CARMEN" />
<input id="ctl00_contenedor_txtApaterno" value="DE LA FUENTE" /> <input id="ctl00_contenedor_txtApaterno" value="DE LA FUENTE" />
<input id="ctl00_contenedor_txtAmaterno" value="O'CONNOR" /> <input id="ctl00_contenedor_txtAmaterno" value="O'CONNOR" />
<select name="ctl00$contenedor$ddlsexo">
<option value="1">Masculino</option>
<option selected="selected" value="2">Femenino</option>
</select>
"""), """),
Response( Response(
HttpStatusCode.OK, HttpStatusCode.OK,
@@ -140,14 +145,24 @@ public sealed class NtlmCredentialValidatorTests
<input id="ctl00_contenedor_txtNoExt" value="15" /> <input id="ctl00_contenedor_txtNoExt" value="15" />
<input id="ctl00_contenedor_txtCP" value="01000" /> <input id="ctl00_contenedor_txtCP" value="01000" />
<select id="ctl00_contenedor_ddlEstado"> <select id="ctl00_contenedor_ddlEstado">
<option selected="selected">CIUDAD DE MÉXICO</option> <option selected="selected" value="0">Seleccione...</option>
<option value="09">CIUDAD DE MÉXICO</option>
</select> </select>
<select id="ctl00_contenedor_ddlLocalidad"> <select id="ctl00_contenedor_ddlLocalidad">
<option selected="selected">ÁLVARO OBREGÓN</option> <option selected="selected" value="0">Seleccione alguna localidad...</option>
</select> </select>
<select id="ctl00_contenedor_ddlColonia"> <select id="ctl00_contenedor_ddlColonia">
<option>FLORIDA</option> <option selected="selected" value="0,0">Seleccione alguna colonia...</option>
</select> </select>
"""),
JsonResponse("""
{"d":[{"p_IdCP":"090001","p_IdEstado":"09","p_NombreEstado":"","p_IdMunicipio":"010","p_NombreMunicipio":"","p_NombreColonia":"FLORIDA","p_Cp":"01000"}]}
"""),
JsonResponse("""
{"d":[{"ID_Estado":"09","Id_Municipio":"010","Nombre":"ÁLVARO OBREGÓN"}]}
"""),
JsonResponse("""
{"d":[{"p_IdCP":"090001","p_Nombre":"FLORIDA","p_Cp":"01000"}]}
""")); """));
NtlmCredentialValidator validator = CreateValidator(handler); NtlmCredentialValidator validator = CreateValidator(handler);
@@ -168,15 +183,24 @@ public sealed class NtlmCredentialValidatorTests
Assert.Equal("Álvaro Obregón", result.Profile.City); Assert.Equal("Álvaro Obregón", result.Profile.City);
Assert.Equal("Ciudad de México", result.Profile.State); Assert.Equal("Ciudad de México", result.Profile.State);
Assert.Equal("01000", result.Profile.PostalCode); Assert.Equal("01000", result.Profile.PostalCode);
Assert.Equal(InstitutionalGender.Female, result.Profile.Gender);
Assert.Equal( Assert.Equal(
[ [
"/psulsa/", "/psulsa/",
"/psulsa/", "/psulsa/",
"/psulsa/gadmon/capitalhumano/controlincidencias/incidencias.aspx", "/psulsa/gadmon/capitalhumano/controlincidencias/incidencias.aspx",
"/psulsa/gadmon/capitalhumano/datos/personales.aspx", "/psulsa/gadmon/capitalhumano/datos/personales.aspx",
"/psulsa/gadmon/capitalhumano/datos/ubicacion.aspx" "/psulsa/gadmon/capitalhumano/datos/ubicacion.aspx",
"/psulsa/gadmon/capitalhumano/datos/ubicacion.aspx/GetDireccion",
"/psulsa/gadmon/capitalhumano/datos/ubicacion.aspx/GetLocalidadListado",
"/psulsa/gadmon/capitalhumano/datos/ubicacion.aspx/GetColoniasListado"
], ],
handler.RequestPaths); handler.RequestPaths);
Assert.Equal("{\"CodigoPostal\":\"01000\"}", handler.RequestBodies[5]);
Assert.Equal("{\"pIdEstado\":\"09\"}", handler.RequestBodies[6]);
Assert.Equal(
"{\"pIdEstado\":\"\",\"pLocalidad\":\"\",\"CodigoPostal\":\"01000\"}",
handler.RequestBodies[7]);
} }
[Fact] [Fact]
@@ -224,6 +248,10 @@ public sealed class NtlmCredentialValidatorTests
<input id="ctl00_contenedor_txtNombre" value="MARÍA DEL CARMEN" /> <input id="ctl00_contenedor_txtNombre" value="MARÍA DEL CARMEN" />
<input id="ctl00_contenedor_txtApaterno" value="DE LA FUENTE" /> <input id="ctl00_contenedor_txtApaterno" value="DE LA FUENTE" />
<input id="ctl00_contenedor_txtAmaterno" value="O'CONNOR" /> <input id="ctl00_contenedor_txtAmaterno" value="O'CONNOR" />
<select id="ctl00_contenedor_ddlsexo">
<option selected="selected" value="1">Masculino</option>
<option value="2">Femenino</option>
</select>
"""), """),
Response( Response(
HttpStatusCode.OK, HttpStatusCode.OK,
@@ -232,14 +260,24 @@ public sealed class NtlmCredentialValidatorTests
<input id="ctl00_contenedor_txtNoExt" value="15" /> <input id="ctl00_contenedor_txtNoExt" value="15" />
<input id="ctl00_contenedor_txtCP" value="01000" /> <input id="ctl00_contenedor_txtCP" value="01000" />
<select id="ctl00_contenedor_ddlEstado"> <select id="ctl00_contenedor_ddlEstado">
<option selected="selected">CIUDAD DE MÉXICO</option> <option selected="selected" value="0">Seleccione...</option>
<option value="09">CIUDAD DE MÉXICO</option>
</select> </select>
<select id="ctl00_contenedor_ddlLocalidad"> <select id="ctl00_contenedor_ddlLocalidad">
<option selected="selected">ÁLVARO OBREGÓN</option> <option selected="selected" value="0">Seleccione alguna localidad...</option>
</select> </select>
<select id="ctl00_contenedor_ddlColonia"> <select id="ctl00_contenedor_ddlColonia">
<option selected="selected">FLORIDA</option> <option selected="selected" value="0,0">Seleccione alguna colonia...</option>
</select> </select>
"""),
JsonResponse("""
{"d":[{"p_IdCP":"090001","p_IdEstado":"09","p_NombreEstado":"","p_IdMunicipio":"010","p_NombreMunicipio":"","p_NombreColonia":"FLORIDA","p_Cp":"01000"}]}
"""),
JsonResponse("""
{"d":[{"ID_Estado":"09","Id_Municipio":"010","Nombre":"ÁLVARO OBREGÓN"}]}
"""),
JsonResponse("""
{"d":[{"p_IdCP":"090001","p_Nombre":"FLORIDA","p_Cp":"01000"}]}
""")); """));
NtlmCredentialValidator validator = CreateValidator(handler); NtlmCredentialValidator validator = CreateValidator(handler);
@@ -262,6 +300,7 @@ public sealed class NtlmCredentialValidatorTests
Assert.Equal("Álvaro Obregón", result.Profile.City); Assert.Equal("Álvaro Obregón", result.Profile.City);
Assert.Equal("Ciudad de México", result.Profile.State); Assert.Equal("Ciudad de México", result.Profile.State);
Assert.Equal("01000", result.Profile.PostalCode); Assert.Equal("01000", result.Profile.PostalCode);
Assert.Equal(InstitutionalGender.Male, result.Profile.Gender);
Assert.Equal( Assert.Equal(
[ [
"/psulsa/", "/psulsa/",
@@ -269,7 +308,10 @@ public sealed class NtlmCredentialValidatorTests
"/psulsa/menu.aspx", "/psulsa/menu.aspx",
"/psulsa/gadmon/nomina/consultanomina.aspx", "/psulsa/gadmon/nomina/consultanomina.aspx",
"/psulsa/gadmon/capitalhumano/datos/personales.aspx", "/psulsa/gadmon/capitalhumano/datos/personales.aspx",
"/psulsa/gadmon/capitalhumano/datos/ubicacion.aspx" "/psulsa/gadmon/capitalhumano/datos/ubicacion.aspx",
"/psulsa/gadmon/capitalhumano/datos/ubicacion.aspx/GetDireccion",
"/psulsa/gadmon/capitalhumano/datos/ubicacion.aspx/GetLocalidadListado",
"/psulsa/gadmon/capitalhumano/datos/ubicacion.aspx/GetColoniasListado"
], ],
handler.RequestPaths); handler.RequestPaths);
} }
@@ -352,18 +394,29 @@ public sealed class NtlmCredentialValidatorTests
Content = new StringContent(content) Content = new StringContent(content)
}; };
private static HttpResponseMessage JsonResponse(string content) =>
new(HttpStatusCode.OK)
{
Content = new StringContent(content, null, "application/json")
};
private sealed class SequenceHandler(params HttpResponseMessage[] responses) : HttpMessageHandler private sealed class SequenceHandler(params HttpResponseMessage[] responses) : HttpMessageHandler
{ {
private readonly Queue<HttpResponseMessage> responses = new(responses); private readonly Queue<HttpResponseMessage> responses = new(responses);
public List<string> RequestPaths { get; } = []; public List<string> RequestPaths { get; } = [];
public List<string?> RequestBodies { get; } = [];
protected override Task<HttpResponseMessage> SendAsync( protected override Task<HttpResponseMessage> SendAsync(
HttpRequestMessage request, HttpRequestMessage request,
CancellationToken cancellationToken) CancellationToken cancellationToken)
{ {
cancellationToken.ThrowIfCancellationRequested(); cancellationToken.ThrowIfCancellationRequested();
RequestPaths.Add(request.RequestUri!.AbsolutePath); RequestPaths.Add(request.RequestUri!.AbsolutePath);
RequestBodies.Add(request.Content is null
? null
: request.Content.ReadAsStringAsync(cancellationToken).GetAwaiter().GetResult());
if (responses.Count == 0) if (responses.Count == 0)
{ {
throw new InvalidOperationException("The validator sent more requests than expected."); throw new InvalidOperationException("The validator sent more requests than expected.");
+72
View File
@@ -0,0 +1,72 @@
$repositoryRoot = (Resolve-Path (Join-Path $PSScriptRoot '..')).Path
$wallpaperScript = Join-Path $repositoryRoot 'scripts\Set-SguWelcomeWallpaper.ps1'
$source = Get-Content -LiteralPath $wallpaperScript -Raw
$tokens = $null
$parseErrors = $null
$ast = [Management.Automation.Language.Parser]::ParseFile($wallpaperScript, [ref]$tokens, [ref]$parseErrors)
if ($parseErrors.Count) { throw ($parseErrors -join [Environment]::NewLine) }
$lookup = $ast.Find({
param($node)
$node -is [Management.Automation.Language.FunctionDefinitionAst] -and
$node.Name -eq 'Get-DirectoryWelcomeMetadata'
}, $true)
function Invoke-WelcomeFixture {
param($DirectoryGender, [string]$ExplicitGender)
# Replace only the external directory lookup. Execute the actual script,
# including its validated parameters, metadata assignment and JPEG renderer.
$fixtureJson = [pscustomobject]@{
DisplayName = 'Usuario de prueba'
Gender = $DirectoryGender
Location = 'Sala de pruebas'
OrganizationalUnit = 'Laboratorio'
} | ConvertTo-Json -Compress
$fixtureFunction = 'function Get-DirectoryWelcomeMetadata { param($UserName, $MachineName); ConvertFrom-Json ''' +
$fixtureJson.Replace("'", "''") + ''' }'
$fixtureSource = $source.Remove($lookup.Extent.StartOffset, $lookup.Extent.EndOffset - $lookup.Extent.StartOffset).
Insert($lookup.Extent.StartOffset, $fixtureFunction)
$testScript = Join-Path $TestDrive ('wallpaper-' + [Guid]::NewGuid().ToString('N') + '.ps1')
[IO.File]::WriteAllText($testScript, $fixtureSource, [Text.UTF8Encoding]::new($false))
$parameters = @{
BaseImagePath = Join-Path $repositoryRoot 'assets\branding\darkblue.jpg'
FontsPath = Join-Path $repositoryRoot 'assets\branding\fonts'
OutputPath = Join-Path $TestDrive ([IO.Path]::GetFileNameWithoutExtension($testScript) + '.jpg')
CanvasWidth = 640
CanvasHeight = 480
SkipApply = $true
}
if ($ExplicitGender) { $parameters.Gender = $ExplicitGender }
$previousLocalAppData = $env:LOCALAPPDATA
try {
$env:LOCALAPPDATA = $TestDrive
& $testScript @parameters
}
finally { $env:LOCALAPPDATA = $previousLocalAppData }
}
Describe 'Welcome wallpaper with AD metadata' {
It 'renders a neutral JPEG when AD has no gender' {
$result = Invoke-WelcomeFixture -DirectoryGender $null
$result.WelcomeHeading | Should Be 'Te damos la bienvenida,'
$result.Applied | Should Be $false
$bitmap = [Drawing.Image]::FromFile($result.OutputPath)
try { $bitmap.Width | Should Be 640; $bitmap.Height | Should Be 480 }
finally { $bitmap.Dispose() }
}
It 'uses neutral wording for empty or unrecognized metadata' {
foreach ($value in @('', 'Unknown')) {
(Invoke-WelcomeFixture -DirectoryGender $value).WelcomeHeading | Should Be 'Te damos la bienvenida,'
}
}
It 'keeps the gendered greetings for recognized directory values' {
(Invoke-WelcomeFixture -DirectoryGender 'Female').WelcomeHeading | Should Be 'Bienvenida,'
(Invoke-WelcomeFixture -DirectoryGender 'Male').WelcomeHeading | Should Be 'Bienvenido,'
}
It 'honors an explicit gender over directory metadata' {
(Invoke-WelcomeFixture -DirectoryGender 'Female' -ExplicitGender 'Male').WelcomeHeading | Should Be 'Bienvenido,'
}
}