事务隔离级别的影响
了解不同事务隔离级别如何影响并发性和数据一致性。
事务隔离级别的影响 是 CoddyKit 上的免费 PostgreSQL Performance & Query Optimization 课时。 这是第 3 节课,共 4 节。 你可以在下方免费阅读本课时的完整内容 — 然后在浏览器中使用内置代码编辑器和全天候 AI 导师进行实践。 这是 PostgreSQL Performance & Query Optimization 学习路径的一部分,你的进度在网页和 CoddyKit 应用中同步。 PostgreSQL Performance & Query Optimization 课程共包含 4 节课。
本课时的部分内容尚未翻译,以英文显示。
Welcome to Transactions!
Imagine managing money in a bank. When you transfer funds, you don't want the money to disappear or duplicate. This is where transactions come in!
A transaction is a sequence of operations performed as a single logical unit of work. It either completely succeeds (commits) or completely fails (rolls back).
Transactions ensure database reliability through ACID properties:
- Atomicity: All or nothing.
- Consistency: Valid state before and after.
- Isolation: Concurrent transactions don't interfere.
- Durability: Committed changes are permanent.
Concurrency Challenges
When multiple users or applications access the database at the same time, strange things can happen without proper control. These are called concurrency anomalies:
- Dirty Read: Reading uncommitted data from another transaction.
- Non-Repeatable Read: Reading the same row twice in one transaction, but getting different values because another transaction committed a change in between.
- Phantom Read: Rerunning a query and seeing new rows (or missing rows) that another transaction committed.
Isolation levels help prevent these issues.
SQL Isolation Levels
SQL databases define different isolation levels to control how much one transaction is affected by others running concurrently.
These levels are a trade-off: higher isolation means fewer concurrency anomalies but often comes with increased overhead or reduced concurrency, as transactions might wait for each other.
PostgreSQL supports three standard isolation levels: READ COMMITTED, REPEATABLE READ, and SERIALIZABLE. (It also technically has READ UNCOMMITTED, but it behaves like READ COMMITTED).
PostgreSQL's Default: READ COMMITTED
READ COMMITTED is PostgreSQL's default and most commonly used isolation level. It's a good balance between concurrency and consistency for many applications.
With READ COMMITTED:
- You cannot see uncommitted changes from other transactions (prevents Dirty Reads).
- You can see changes committed by other transactions *after* your current statement began.
This means if you run the same SELECT query multiple times within a transaction, you might get different results if another transaction commits changes in between your SELECTs.
READ COMMITTED in Action
Let's visualize READ COMMITTED with two sessions:
- Session A starts a transaction.
- Session A reads
balance = 100. - Session B starts, updates
balanceto90, and commits. - Session A reads
balanceagain. Because Session B committed, Session A now seesbalance = 90.
This behavior is generally acceptable for many applications, as you always see committed data, even if it changes during your transaction.
Experiment with READ COMMITTED
Try running these commands in a PostgreSQL client. Pay attention to the output of the two SELECT statements.
If you were to run UPDATE products SET price = 950 WHERE id = 1; COMMIT; in a separate client session *between* the two SELECT statements below, the second SELECT would show the updated price (950), while the first would show the original (1000).
-- Setup: Create a table and insert data
DROP TABLE IF EXISTS products;
CREATE TABLE products (id INT PRIMARY KEY, name TEXT, price INT);
INSERT INTO products VALUES (1, 'Laptop', 1000);
-- Start a transaction with READ COMMITTED
BEGIN TRANSACTION ISOLATION LEVEL READ COMMITTED;
-- First SELECT within the transaction
SELECT 'First SELECT:' AS stage, id, name, price FROM products WHERE id = 1;
-- Second SELECT within the transaction
SELECT 'Second SELECT:' AS stage, id, name, price FROM products WHERE id = 1;
-- End the transaction
COMMIT;
-- Cleanup
DROP TABLE products;Moving Up: REPEATABLE READ
The REPEATABLE READ isolation level offers stronger guarantees than READ COMMITTED. It ensures that any data a transaction reads will remain unchanged for the duration of that transaction.
With REPEATABLE READ:
- You cannot see uncommitted changes (prevents Dirty Reads).
- You cannot see committed changes from other transactions *after* your transaction started (prevents Non-Repeatable Reads).
This means if you run the same SELECT query multiple times, you are guaranteed to get the same result set, even if other transactions commit changes to those rows.
The Strongest: SERIALIZABLE
SERIALIZABLE is the highest isolation level. It guarantees that the outcome of concurrently executing transactions is the same as if they had executed one after another, serially.
With SERIALIZABLE:
- It prevents all concurrency anomalies (Dirty, Non-Repeatable, and Phantom Reads).
- It provides the strongest data consistency.
However, this comes at a cost. Transactions might be forced to wait or even be rolled back (a serialization failure) if they conflict with another transaction, leading to higher overhead and potential retries.
Choosing Your Level
Selecting the right isolation level is crucial:
- READ COMMITTED: Good for most applications where high concurrency is needed and slight data changes within a transaction are acceptable. It's PostgreSQL's default for a reason.
- REPEATABLE READ: Use when you need to ensure that data you've read doesn't change during your transaction, like for complex reports or data analysis where consistency of a snapshot is vital.
- SERIALIZABLE: Reserve for critical operations requiring absolute data consistency, such as financial transactions or inventory systems, where any anomaly is unacceptable. Be prepared to handle serialization failures in your application logic.
Quick Check: Isolation Levels
Which PostgreSQL isolation level prevents Non-Repeatable Reads but still allows Phantom Reads?
Recap: Transaction Isolation
Great job! In this lesson, we explored PostgreSQL's transaction isolation levels.
- We learned about concurrency anomalies like Dirty Reads, Non-Repeatable Reads, and Phantom Reads.
- We understood how READ COMMITTED (the default) prevents dirty reads but allows others.
- We saw that REPEATABLE READ adds protection against non-repeatable reads.
- Finally, SERIALIZABLE offers the strongest guarantee, preventing all anomalies at the cost of potential serialization failures.
Choosing the right isolation level is key to balancing data consistency with application performance and concurrency.
常见问题解答
「事务隔离级别的影响」课时是免费的吗?
是的 — 「事务隔离级别的影响」的完整文本可在网页上免费阅读。要进行交互式练习(内置代码编辑器和全天候 AI 导师)并解锁 PostgreSQL Performance & Query Optimization 课程的其余内容,请升级到 CoddyKit PRO。 PostgreSQL Performance & Query Optimization 课程共包含 4 节课。
「事务隔离级别的影响」这节课中我会学到什么?
了解不同事务隔离级别如何影响并发性和数据一致性。 你通过在浏览器中直接运行的动手代码来练习 PostgreSQL Performance & Query Optimization,全天候 AI 导师会在你学习这节课的过程中回答你的问题。
学习 PostgreSQL Performance & Query Optimization 需要有经验吗?
无需任何先前经验。CoddyKit 上的 PostgreSQL Performance & Query Optimization 课程适合初学者到高级学习者,你可以从这里开始或从头开始,按照自己的节奏学习。 这是第 3 节课,共 4 节。
「事务隔离级别的影响」课时需要多长时间?
大多数 CoddyKit 课程大约需要 5–10 分钟。每节课都很精短且互动,所以你能稳步进步,并在网页和应用中从离开的地方继续。
我能在这节 PostgreSQL Performance & Query Optimization 课中编写并运行代码吗?
能。每节 PostgreSQL Performance & Query Optimization 课都包含内置代码编辑器,你可以在浏览器中直接编写并运行真实代码,并获得即时 AI 反馈 — 无需本地设置。
此课程中的所有课时
- 了解 MVCC 与 VACUUM
- 自动清理配置与调优
- 事务隔离级别的影响
- 防止事务 ID 回绕