Two-way sync
Changes in IBM Db2 or Ldap instantly reflect in both systems. No stale data, no manual imports.
Keep IBM Db2 and Ldap in sync without custom scripts. Cut weeks of integration work, eliminate silent data drift, and give your team a single, reliable source of truth.
IBM Db2 is where your application's durable data lives; Ldap is where engineering and operations teams track the issues, events, messages, or identities that run alongside it. The two overlap constantly, a row should open a ticket, an alert should land as a record, a user in one should exist in the other, but bridging them today means per-tool integration code: auth, webhooks, pagination, rate limits, and retries, built and maintained separately for every tool.
Stacksync syncs Databases, Schemas, Tables, Views in IBM Db2 with Entries, Person entries (inetOrgPerson / user), Groups (groupOfNames / posixGroup), Organizational units (ou) in Ldap field by field, in real time, and in both directions. You decide which system owns which fields; Stacksync keeps every copy consistent and resolves conflicts by rules you set, so the database and the tooling around it never drift apart.
Read and write the synced tables in IBM Db2 and Stacksync keeps Ldap current, replacing the auth, webhooks, rate limits, and retry logic you would otherwise maintain for each tool.
Updates in Ldap arrive as row changes in IBM Db2, and writes to IBM Db2 propagate to Ldap within seconds, so triggers, jobs, and alerts fire without polling.
Directory and identity records in Ldap stay matched to the users or owners table in IBM Db2, so provisioning and de-provisioning flow from one source.
Representative objects on each side — any object or custom field can map to any target. Schemas are auto-detected; types are converted between the two systems.
| IBM Db2 objects | Ldap objects | How this pairing syncs | |
|---|---|---|---|
| Sequences ID generation relevant when external systems insert rows. | Operational attributes Server-maintained metadata such as modifyTimestamp, createTimestamp, entryUUID, entryCSN, and uSNChanged; read to drive incremental polling and to key entries stably across syncs. | Sequences is specific to IBM Db2 and Operational attributes to Ldap — each maps to any object or custom field on the other side. | |
| Tablespaces Physical storage layout that operators consider when adding synced tables. | Schema (subschema subentry) The objectClass and attribute-type definitions the server exposes; read to validate that written attributes exist and are single- or multi-valued as expected. | Tablespaces is specific to IBM Db2 and Schema (subschema subentry) to Ldap — each maps to any object or custom field on the other side. | |
| Databases The connection target; each database holds the schemas a sync addresses. | Entries The fundamental unit of an LDAP directory, each addressed by a distinguished name (DN) and typed by its objectClass; synced two-way as records, with the DN driving upserts and attribute-level updates. | Databases is specific to IBM Db2 and Entries to Ldap — each maps to any object or custom field on the other side. | |
| Schemas Namespaces separating synced data from application and system objects. | Person entries (inetOrgPerson / user) People held under objectClasses such as inetOrgPerson, person, or Active Directory user; synced two-way to create accounts and update attributes like mail, cn, and telephoneNumber. | Schemas is specific to IBM Db2 and Person entries (inetOrgPerson / user) to Ldap — each maps to any object or custom field on the other side. | |
| Tables Primary read/write target for syncing rows with SaaS systems or other databases. | Groups (groupOfNames / posixGroup) Group entries whose member or uniqueMember attributes list DNs; synced two-way to add and remove membership as teams and entitlements change. | Tables is specific to IBM Db2 and Groups (groupOfNames / posixGroup) to Ldap — each maps to any object or custom field on the other side. | |
| Views Read-only projections often used to expose curated slices to a sync. | Organizational units (ou) Container entries that structure the DIT and scope which subtree a sync reads or writes; used to limit a sync to a branch such as ou=People,dc=corp,dc=com. | Views is specific to IBM Db2 and Organizational units (ou) to Ldap — each maps to any object or custom field on the other side. |
Each direction of the sync is driven by what the source system can signal and what the destination accepts — detection, delivery, and expected latency below.
DetectionChanges in IBM Db2 are captured at the source via change data capture — no polling loop against its API. Log-based CDC through IBM's replication tooling where licensed.
DeliveryEach detected change is written to Ldap through its API, with automatic retries and rate-limit backoff.
DetectionStacksync polls Ldap for changes on an incremental schedule, reading only records changed since the previous pass. No universal native change feed.
DeliveryEach detected change is applied to IBM Db2 as a row-level write, with types converted between the two schemas.
Real-time sync, workflow automation, event queues, EDI, and monitoring, for every IBM Db2–Ldap connection.
Changes in IBM Db2 or Ldap instantly reflect in both systems. No stale data, no manual imports.
Trigger automated workflows whenever IBM Db2 or Ldap data changes, update records, fire webhooks, or kick off sequences without brittle API scripts.
Handle millions of events per minute without losing a single IBM Db2 or Ldap record.
Track your IBM Db2 ⇄ Ldap sync health, view errors, and replay failed events in one click.
Transform legacy EDI complexity into simple database interactions between IBM Db2 and Ldap.
Configure and sync within minutes, no code. Whether you sync 50k or 100M+ records, Stacksync handles the queues, infra, and plumbing. Integrations are non-invasive and need zero setup on your systems.
Authenticate IBM Db2 and Ldap with each platform's native method — OAuth, API keys, or service accounts — plus secure options like SSH tunneling, IP whitelisting, and VPC peering.
Pick the IBM Db2 and Ldap objects to sync — Stacksync auto-detects both schemas, including custom fields where the platform exposes them. Sync to existing tables, or let Stacksync create new ones with ideal data types.
Fields map automatically even when names and types differ. Stacksync handles transformation and type casting for you, zero configuration required.
Yes. Stacksync provides a managed, real-time two-way integration between IBM Db2 and Ldap: authenticate both systems, choose the objects to sync (such as IBM Db2's Sequences and Tablespaces), map fields visually, and changes propagate both ways in milliseconds — no code required.
IBM Db2: Db2 LUW supports both row-organized and column-organized tables, letting the same database serve transactional and analytical access. Ldap: There is no universal change feed; incremental sync polls modifyTimestamp (or entryCSN / uSNChanged on specific servers), and detecting deletes needs a server changelog or tombstones because a search cannot see removed entries. Stacksync's field mapping accounts for these differences between IBM Db2 and Ldap without custom code.
Stacksync is SOC 2 Type II and ISO 27001 certified with HIPAA BAA support. Data is encrypted in transit, and a zero-persistent-storage architecture means IBM Db2 and Ldap records are not retained after a sync operation.
Stacksync pricing is usage-based and starts at $1,000/month, including the managed IBM Db2 and Ldap connectors, real-time two-way sync, monitoring, and support. That replaces building and maintaining a custom IBM Db2–Ldap integration in-house.
Yes — Stacksync ships production-grade connectors for both IBM Db2 and Ldap. The connectors handle authentication, schema detection, rate limits, and retries; you configure the sync, and Stacksync operates it.
Change detection on IBM Db2: Log-based CDC through IBM's replication tooling where licensed; otherwise polling on timestamp or audit columns. On Ldap: No universal native change feed. Incremental sync polls the modifyTimestamp operational attribute (or entryCSN / uSNChanged on servers that expose them) for entries changed since the last cursor; detecting deletes needs a server changelog or tombstones because a plain search cannot see removed entries. Some servers add Persistent Search or RFC 4533 content-sync (syncrepl), but that support is server-specific. No webhooks. Each detected change propagates to the other side in milliseconds, with field-level conflict resolution and an inspectable event log.
As a data company, we understand the importance of keeping your data secure. Stacksync is built with security best practices to keep your data safe at every layer, and is DPF-certified for US, EU, UK and CH data transfers.
Let your users access Stacksync from your centralized user management systems. Works with Okta, Azure, Google SSO and more.
Immediately get alerted about record syncing issues over email, Slack, PagerDuty and WhatsApp. Resolve issues from a centralized dashboard with retry and revert options.
Securely connects to your systems with:
Every pair below is a real-time, two-way sync. Search all 331 integrations available for IBM Db2 and Ldap.