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PostgreSQL Performance & Query Optimization · 강의

발행, 구독과 복제 식별자

올바른 UPDATE 및 DELETE 스트리밍에 필요한 선택적 복제와 복제 식별자를 구성하는 방법을 배웁니다.

발행, 구독과 복제 식별자은(는) CoddyKit의 무료 PostgreSQL Performance & Query Optimization 강의입니다. 이것은 4개 중 1번째 강의입니다. 아래에서 전체 강의를 무료로 읽을 수 있으며, 내장 코드 에디터와 24/7 AI 튜터와 함께 브라우저에서 직접 실습할 수 있습니다. 이 강의는 PostgreSQL Performance & Query Optimization 학습 경로의 일부이며, 진행 상황이 웹과 CoddyKit 앱에 동기화됩니다. PostgreSQL Performance & Query Optimization 강의에는 총 4개의 강의가 포함되어 있습니다.

이 강의의 일부는 아직 번역되지 않았으며 영어로 표시됩니다.

Why Logical Replication for Performance

Physical (streaming) replication ships the entire WAL byte-for-byte to identical replicas. Logical replication instead decodes the WAL into row-level change events (INSERT/UPDATE/DELETE) and streams only the tables you choose.

  • Selective: replicate a hot subset of tables, not the whole cluster.
  • Cross-version & cross-schema: publisher and subscriber can differ in major version and have extra columns or indexes.
  • Performance use cases: offload reporting queries to a read replica, build a slimmer OLAP copy, or shard write traffic.

The two building blocks are a PUBLICATION on the source and a SUBSCRIPTION on the target.

Enabling Logical Decoding

Logical replication requires the WAL to carry enough information to reconstruct rows. Set wal_level = logical on the publisher (a server restart is required).

  • max_wal_senders must allow one slot per subscription plus headroom.
  • max_replication_slots bounds the number of logical slots.

Each subscription consumes one replication slot, which pins WAL on the publisher until the subscriber confirms it. An inactive subscriber can therefore cause unbounded WAL growth.

SHOW wal_level;

ALTER SYSTEM SET wal_level = 'logical';
ALTER SYSTEM SET max_wal_senders = 10;
ALTER SYSTEM SET max_replication_slots = 10;

-- Restart PostgreSQL, then verify
SHOW wal_level;

Creating a Publication

A publication is a named set of changes from one or more tables. You decide which tables and which operations are published.

  • FOR TABLE lists specific tables.
  • FOR ALL TABLES publishes every current and future table (superuser only).
  • publish controls which DML types stream: insert, update, delete, truncate.

Publishing only the operations you need reduces WAL decoding work and network traffic.

CREATE PUBLICATION orders_pub
  FOR TABLE orders, order_items
  WITH (publish = 'insert, update, delete');

-- A reporting feed that ignores deletes entirely
CREATE PUBLICATION analytics_pub
  FOR TABLE orders
  WITH (publish = 'insert, update');

Row and Column Filtering (PG 15+)

PostgreSQL 15 added row filters and column lists to publications, letting you replicate only the slice of data the subscriber needs. This shrinks the replicated dataset and the decoding cost.

  • A WHERE clause filters rows; it may only reference replicated columns.
  • A column list replicates a subset of columns and must include the replica identity columns.

This is ideal for building a lean reporting copy that excludes archived rows or sensitive columns.

-- Only stream active, recent orders, and only chosen columns
CREATE PUBLICATION active_orders_pub
  FOR TABLE orders (id, customer_id, total, status)
    WHERE (status = 'active' AND created_at > '2025-01-01');

Creating a Subscription

On the target server, a SUBSCRIPTION connects to the publisher, creates a replication slot, and starts applying changes. The target tables must already exist with compatible columns.

  • copy_data = true (default) snapshots existing rows first, then streams live changes.
  • Each subscription spawns an apply worker on the subscriber.

The connection string points back to the publisher with a role that has REPLICATION (or is superuser) and can read the published tables.

CREATE SUBSCRIPTION orders_sub
  CONNECTION 'host=pub.db port=5432 dbname=shop user=repl password=secret'
  PUBLICATION orders_pub
  WITH (copy_data = true, create_slot = true, enabled = true);

The Core Problem: Identifying Rows

An INSERT carries the full new row, so the subscriber can simply insert it. But an UPDATE or DELETE must tell the subscriber which existing row to change. That requires the WAL to contain an identifying "old" image of the row.

This identifying image is the replica identity. Without it, the publisher cannot encode the old key values, and the change either fails to apply or is silently dropped.

  • INSERT: needs no replica identity.
  • UPDATE / DELETE: requires a usable replica identity on the published table.

Replica Identity Modes

Every table has a REPLICA IDENTITY setting that controls what old-row data is written to the WAL for UPDATE and DELETE:

  • DEFAULT: logs the columns of the primary key. The usual, efficient choice.
  • USING INDEX: logs the columns of a chosen unique, non-partial, NOT NULL index.
  • FULL: logs the entire old row; the subscriber matches on all columns. Correct but expensive.
  • NOTHING: logs no old image; UPDATE/DELETE on the table then fail to replicate.
ALTER TABLE orders REPLICA IDENTITY DEFAULT;
ALTER TABLE orders REPLICA IDENTITY USING INDEX orders_uniq_idx;
ALTER TABLE orders REPLICA IDENTITY FULL;
ALTER TABLE orders REPLICA IDENTITY NOTHING;

Tables Without a Primary Key

With the DEFAULT replica identity but no primary key, a table effectively behaves like NOTHING: UPDATE and DELETE cannot be replicated. PostgreSQL raises an error such as "cannot update table because it does not have a replica identity and publishes updates".

You have three fixes, in order of preference:

  • Add a primary key (best for performance).
  • Add a unique, NOT NULL index and set REPLICA IDENTITY USING INDEX.
  • Set REPLICA IDENTITY FULL as a last resort.
-- Preferred: give the table a stable key
ALTER TABLE events ADD COLUMN id bigint GENERATED ALWAYS AS IDENTITY;
ALTER TABLE events ADD PRIMARY KEY (id);

-- Or pin an existing unique index as the identity
CREATE UNIQUE INDEX events_key ON events (tenant_id, occurred_at);
ALTER TABLE events REPLICA IDENTITY USING INDEX events_key;

The Cost of REPLICA IDENTITY FULL

REPLICA IDENTITY FULL writes every column of the old row into the WAL on each UPDATE and DELETE. On wide or high-churn tables this inflates WAL volume and slows the publisher.

It also hurts the subscriber: to find the matching row it must compare all columns. Before PostgreSQL 16 this meant a sequential scan per change; PG 16+ can use a usable index on the subscriber, but full-row matching is still costlier than a key lookup.

Use FULL only when no unique key exists and you cannot add one.

Inspecting Replica Identity

The replica identity is stored in pg_class.relreplident: d = default (primary key), i = using index, f = full, n = nothing. Audit your published tables before going live so no UPDATE/DELETE silently fails to replicate.

  • Tables published with update or delete must not have relreplident = 'n' unless they also lack a usable key.
  • psql's \d+ tablename also prints the replica identity.
SELECT n.nspname AS schema,
       c.relname AS table,
       c.relreplident AS replica_identity
FROM pg_class c
JOIN pg_namespace n ON n.oid = c.relnamespace
WHERE c.relkind = 'r'
  AND n.nspname = 'public'
ORDER BY c.relname;

Monitoring Lag and Slot Health

For a performance architecture you must watch replication health. The publisher exposes apply progress via pg_stat_replication, and slot retention via pg_replication_slots.

  • pg_replication_slots.active false plus growing restart_lsn distance means WAL is piling up because a subscriber is stuck.
  • On the subscriber, pg_stat_subscription.latest_end_lsn versus the publisher's current LSN shows apply lag.

Set max_slot_wal_keep_size so a dead subscriber cannot fill the publisher's disk.

SELECT slot_name,
       active,
       wal_status,
       pg_size_pretty(
         pg_wal_lsn_diff(pg_current_wal_lsn(), restart_lsn)
       ) AS retained_wal
FROM pg_replication_slots
WHERE slot_type = 'logical';

Quick Check: Replica Identity

A published table needs the right replica identity for UPDATE/DELETE streaming. Test your understanding.

Recap

You configured selective logical replication and the replica identity that makes UPDATE/DELETE streaming correct.

  • Publisher: wal_level = logical, then CREATE PUBLICATION with chosen tables, operations, and (PG 15+) row/column filters.
  • Subscriber: CREATE SUBSCRIPTION spawns an apply worker and a replication slot; copy_data seeds existing rows.
  • Replica identity: INSERT needs none; UPDATE/DELETE need DEFAULT (primary key), USING INDEX (unique NOT NULL index), or FULL. NOTHING and PK-less DEFAULT break UPDATE/DELETE.
  • Performance: prefer a key-based identity over FULL; monitor slots and lag, and cap retained WAL with max_slot_wal_keep_size.

자주 묻는 질문

“발행, 구독과 복제 식별자” 강의는 무료인가요?

네 — “발행, 구독과 복제 식별자” 전체 내용을 이 웹사이트에서 무료로 읽을 수 있습니다. 인터랙티브하게 실습하려면(내장 코드 에디터와 24/7 AI 튜터), CoddyKit PRO로 업그레이드하면 PostgreSQL Performance & Query Optimization 강의 전체를 잠금 해제할 수 있습니다. PostgreSQL Performance & Query Optimization 강의에는 총 4개의 강의가 포함되어 있습니다.

“발행, 구독과 복제 식별자”에서 뭘 배우나요?

올바른 UPDATE 및 DELETE 스트리밍에 필요한 선택적 복제와 복제 식별자를 구성하는 방법을 배웁니다. 브라우저에서 직접 실행하는 실습 코드로 PostgreSQL Performance & Query Optimization을(를) 배우며, 24/7 AI 튜터가 강의를 진행하면서 질문에 답변해줍니다.

PostgreSQL Performance & Query Optimization을(를) 시작하는 데 경험이 필요한가요?

사전 경험은 필요하지 않습니다. CoddyKit의 PostgreSQL Performance & Query Optimization은(는) 초급자부터 고급 학습자까지를 위해 구성되어 있으므로, 여기서 시작하거나 처음부터 시작할 수 있으며 자신의 속도대로 진행할 수 있습니다. 이것은 4개 중 1번째 강의입니다.

“발행, 구독과 복제 식별자” 강의는 얼마나 걸리나요?

대부분의 CoddyKit 강의는 약 5~10분이 소요됩니다. 각 강의는 간결하고 인터랙티브하여 꾸준한 진행이 가능하며, 웹과 앱에서 중단한 부분부터 바로 시작할 수 있습니다.

이 PostgreSQL Performance & Query Optimization 강의에서 코드를 작성하고 실행할 수 있나요?

네. 모든 PostgreSQL Performance & Query Optimization 강의에는 내장 코드 에디터가 포함되어 있으므로, 브라우저에서 바로 실제 코드를 작성하고 실행한 후 즉시 AI 피드백을 받을 수 있습니다 — 로컬 설정이 필요 없습니다.

이 강의의 모든 강의

  1. 발행, 구독과 복제 식별자
  2. 읽기 및 분석 작업 오프로딩
  3. 다운타임에 가까운 수준으로 줄인 메이저 버전 업그레이드
  4. 복제 지연과 슬롯 팽창 모니터링
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