| name | postgresql-table-design |
| description | Use this skill when designing or reviewing a PostgreSQL-specific schema. Covers best-practices, data types, indexing, constraints, performance patterns, and advanced features |
PostgreSQL Table Design
When to Use
- Designing a new PostgreSQL schema, or reviewing one before it ships.
- Choosing column types, keys, constraints, or indexes for PostgreSQL specifically.
- Deciding whether and how to partition a large table, or how to store semi-structured data.
- Planning a schema change on a live database without downtime.
The rules and decision points for a PostgreSQL schema. The full data-type catalog, workload
patterns (update-heavy, insert-heavy, upsert, schema evolution), extensions, JSONB indexing,
and worked DDL examples are in references/details.md; open it when a section below points there.
Core Rules
- Define a PRIMARY KEY for reference tables (users, orders, etc.). Not always needed for time-series/event/log data. When used, prefer
BIGINT GENERATED ALWAYS AS IDENTITY; use UUID only when global uniqueness/opacity is needed.
- Normalize first (to 3NF) to eliminate data redundancy and update anomalies; denormalize only for measured, high-ROI reads where join performance is proven problematic.
- Add NOT NULL everywhere it is semantically required; use DEFAULTs for common values.
- Create indexes for access paths you actually query: PK/unique (auto), FK columns (manual!), frequent filters/sorts, and join keys.
- Prefer TIMESTAMPTZ for event time; NUMERIC for money; TEXT for strings; BIGINT for integers; DOUBLE PRECISION for floats (or
NUMERIC for exact decimal arithmetic).
PostgreSQL Gotchas
- Identifiers: unquoted → lowercased. Avoid quoted/mixed-case names; use
snake_case.
- Unique + NULLs: UNIQUE allows multiple NULLs. Use
UNIQUE NULLS NOT DISTINCT (...) (PG15+) to restrict to one NULL.
- FK indexes: PostgreSQL does not auto-index FK columns. Add them.
- No silent coercions: length/precision overflows error out (no truncation). Inserting 999 into
NUMERIC(2,0) fails, unlike databases that silently truncate or round.
- Sequences/identity have gaps (normal; don't "fix"). Rollbacks, crashes, and concurrent transactions leave gaps (1, 2, 5, 6...).
- Heap storage: no clustered PK by default;
CLUSTER is a one-off reorganization, not maintained on later inserts.
- MVCC: updates/deletes leave dead tuples; vacuum handles them—design to avoid hot wide-row churn.
Data Types
- IDs:
BIGINT GENERATED ALWAYS AS IDENTITY; UUID for distributed or opaque IDs, generated with uuidv7() (PG18+) or gen_random_uuid().
- Numbers:
BIGINT unless storage is critical; DOUBLE PRECISION over REAL; NUMERIC(p,s) for money and exact decimals.
- Strings:
TEXT, with CHECK (LENGTH(col) <= n) when a limit is needed; BYTEA for binary. Case-insensitive lookups: expression index on LOWER(col), or CITEXT when a constraint must be case-insensitive.
- Time:
TIMESTAMPTZ, DATE, INTERVAL. now() is transaction start; clock_timestamp() is wall clock.
- Booleans:
BOOLEAN NOT NULL unless tri-state is required.
- Enums:
CREATE TYPE ... AS ENUM only for small, stable sets; evolving business values get TEXT + CHECK or a lookup table.
- JSONB over JSON, indexed with GIN, for optional/semi-structured attributes only.
- Arrays, ranges, network, geometric, full-text, domain, composite, and vector types, plus TOAST storage and collation control: see
references/details.md.
Types to avoid
| Avoid | Use instead |
|---|
timestamp (without time zone) | timestamptz |
char(n), varchar(n) | text (+ CHECK on length if needed) |
money | numeric |
timetz | timestamptz |
timestamptz(0) or any precision | timestamptz |
serial | generated always as identity |
Constraints
- PK: implicit UNIQUE + NOT NULL; creates a B-tree index.
- FK: specify
ON DELETE/UPDATE (CASCADE, RESTRICT, SET NULL, SET DEFAULT). Index the referencing column. Use DEFERRABLE INITIALLY DEFERRED for circular dependencies checked at commit.
- UNIQUE: creates a B-tree index; allows multiple NULLs unless
NULLS NOT DISTINCT (PG15+). Prefer NULLS NOT DISTINCT unless duplicate NULLs are wanted.
- CHECK: row-local; NULL passes (three-valued logic). Combine with
NOT NULL: price NUMERIC NOT NULL CHECK (price > 0).
- EXCLUDE: prevents overlaps with operators, e.g.
EXCLUDE USING gist (room_id WITH =, booking_period WITH &&) stops double-booking. Needs a GiST-capable type.
Indexing
- B-tree: default for equality/range (
=, <, >, BETWEEN, ORDER BY).
- Composite: leftmost-prefix rule (
WHERE a = ? AND b > ? uses (a,b); WHERE b = ? does not). Most selective columns first.
- Covering:
CREATE INDEX ON tbl (id) INCLUDE (name, email) for index-only scans.
- Partial: hot subsets,
CREATE INDEX ON tbl (user_id) WHERE status = 'active'.
- Expression:
CREATE INDEX ON tbl (LOWER(email)); the query must use the same expression.
- GIN: JSONB containment/existence, arrays, full-text search. GiST: ranges, geometry, exclusion constraints.
- BRIN: large, naturally ordered data (time-series) at minimal storage cost; effective when disk order correlates with the indexed column.
Partitioning
- Use for large tables (>100M rows) whose queries consistently filter on the partition key, or where maintenance (pruning, bulk replacement) follows a key.
- RANGE for time-series (
PARTITION BY RANGE (created_at); TimescaleDB automates it with retention and compression), LIST for discrete values, HASH for even distribution without a natural key.
- Constraint exclusion: the planner prunes partitions through their
CHECK constraints; declarative partitioning (PG10+) creates them for you.
- Prefer declarative partitioning or hypertables. Do NOT use table inheritance.
- Limitations: no global UNIQUE constraints—include the partition key in PK/UNIQUE. FKs from partitioned tables need PG11+, FKs referencing a partitioned table need PG12+; on older versions, use triggers.
Examples
CREATE TABLE users (
user_id BIGINT GENERATED ALWAYS AS IDENTITY PRIMARY KEY,
email TEXT NOT NULL UNIQUE,
name TEXT NOT NULL,
created_at TIMESTAMPTZ NOT NULL DEFAULT now()
);
CREATE UNIQUE INDEX ON users (LOWER(email));
CREATE INDEX ON users (created_at);
CREATE TABLE orders (
order_id BIGINT GENERATED ALWAYS AS IDENTITY PRIMARY KEY,
user_id BIGINT NOT NULL REFERENCES users(user_id),
status TEXT NOT NULL DEFAULT 'PENDING' CHECK (status IN ('PENDING','PAID','CANCELED')),
total NUMERIC(10,2) NOT NULL CHECK (total > 0),
created_at TIMESTAMPTZ NOT NULL DEFAULT now()
);
CREATE INDEX ON orders (user_id);
CREATE INDEX ON orders (created_at);
CREATE TABLE profiles (
user_id BIGINT PRIMARY KEY REFERENCES users(user_id),
attrs JSONB NOT NULL DEFAULT '{}',
theme TEXT GENERATED ALWAYS AS (attrs->>'theme') STORED
);
CREATE INDEX profiles_attrs_gin ON profiles USING GIN (attrs);
Going deeper
references/details.md holds the material this file only names:
- The full data-type catalog: TOAST storage, collations, arrays, ranges, network, geometric, text search, domains, composites, vectors.
- Table types (
TEMPORARY, UNLOGGED) and row-level security.
- Constraint and index notes, and partitioning DDL for RANGE, LIST, and HASH.
- Workload patterns: update-heavy, insert-heavy, upsert design, safe schema evolution.
- Generated columns and extensions (
pg_trgm, citext, timescaledb, postgis, pgvector, and more).
- JSONB indexing strategies, including
jsonb_path_ops and extracted B-tree columns.