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MongoDB Academy · Aula

Ordenação com sort() e várias chaves

Você ordenará os resultados das consultas por um ou mais campos em ordem crescente e decrescente e verá como sort interage com o uso de índices.

Ordenação com sort() e várias chaves é uma aula grátis de MongoDB Academy no CoddyKit. Esta é a aula 1 de 4. Você pode ler a aula completa abaixo gratuitamente — depois pratica ao vivo no navegador com um editor de código integrado e um tutor de IA 24/7. Faz parte do caminho de aprendizado de MongoDB Academy, e seu progresso é sincronizado entre a web e o app CoddyKit. O curso de MongoDB Academy inclui 4 aulas no total.

Partes desta aula ainda não foram traduzidas e aparecem em inglês.

Ordering Query Results With sort()

The sort() method appended to a find() cursor tells MongoDB to return documents in a specific order. Pass an object where each key is a field name and each value is 1 (ascending) or -1 (descending). Sorting happens on the server before documents are sent to the client, so you receive results in order regardless of how many documents match.

// Ascending: oldest first
db.posts.find({}).sort({ createdAt: 1 });

// Descending: newest first
db.posts.find({}).sort({ createdAt: -1 });

// With Node.js driver
const posts = await db.collection('posts')
  .find({})
  .sort({ createdAt: -1 })
  .toArray();

Sorting by Multiple Keys

MongoDB sorts by the first key first, then uses subsequent keys to break ties. Pass multiple fields in the sort object. The order of keys matters: the first key is the primary sort, the second is the tiebreaker. A common example is sorting products by category ascending, then by price descending within each category.

// Primary sort: category ASC; secondary sort: price DESC
db.products.find({}).sort({ category: 1, price: -1 });

// Sorting users by role then by username alphabetically
db.users.find({}).sort({ role: 1, username: 1 });

// Sorting blog posts: featured first, then newest
db.posts.find({}).sort({ isFeatured: -1, createdAt: -1 });

Sort and Index Interaction

When the sort fields match an index, MongoDB can satisfy the sort without loading and sorting all documents in memory. It walks the index in the requested direction instead. This is called an index sort and it is dramatically faster than an in-memory sort, especially on large collections. Always create an index that covers your most common sort operations.

// Create an index that supports category-then-price sorting
db.products.createIndex({ category: 1, price: -1 });

// This query now sorts via index — no in-memory sort needed
db.products.find({ isActive: true }).sort({ category: 1, price: -1 });

// verify with explain
db.products.find({}).sort({ category: 1, price: -1 }).explain('executionStats');

The 32 MB In-Memory Sort Limit

If a sort cannot use an index, MongoDB must load all matching documents into memory to sort them. This in-memory sort has a hard limit of 32 MB. If the matching documents exceed 32 MB, the sort fails with Executor error: OperationFailed: Sort exceeded memory limit. The fix is to add an index that supports the sort, or use allowDiskUse: true in aggregation pipelines.

// In an aggregation, allow spilling to disk for large sorts
db.logs.aggregate(
  [{ $sort: { timestamp: -1 } }],
  { allowDiskUse: true }  // allows spilling sort to temporary disk files
);

Sort Direction and Index Direction Must Align

For a compound index to serve a compound sort, the directions must align—either exactly match or completely reverse. An index on { a: 1, b: 1 } supports sorts on { a: 1, b: 1 } (forward scan) and { a: -1, b: -1 } (backward scan) but cannot support { a: 1, b: -1 } or { a: -1, b: 1 }. Mixed-direction sorts require an index that matches the mixed directions exactly.

// This index supports { a: 1, b: -1 } sorts
db.collection.createIndex({ a: 1, b: -1 });

// Supported: forward
db.collection.find({}).sort({ a: 1, b: -1 });
// Supported: backward (reverse scan)
db.collection.find({}).sort({ a: -1, b: 1 });
// NOT supported by this index:
// db.collection.find({}).sort({ a: 1, b: 1 });

Natural Order Sort

The $natural sort key returns documents in their natural on-disk insertion order. { $natural: 1 } returns documents in insertion order; { $natural: -1 } returns them in reverse. This bypasses all indexes and is rarely used in production—it is mainly useful for capped collections, which maintain strict insertion order for log-like workloads.

// Capped collection — return events in insertion order
db.eventLog.find({}).sort({ $natural: 1 });

// Reverse insertion order
db.eventLog.find({}).sort({ $natural: -1 });

Combining sort() With limit() and skip()

Sorting is almost always combined with limit() to fetch only the top N results, and sometimes with skip() for paginated results. The operation order is: filter → sort → skip → limit. MongoDB applies them in this sequence regardless of the order you chain them in your driver code. Sorting before limiting is what lets you get the 'top 10' results correctly.

// Top 10 highest-rated products in the 'electronics' category
const topProducts = await db.collection('products')
  .find({ category: 'electronics', isActive: true })
  .sort({ rating: -1 })
  .limit(10)
  .toArray();

// Page 3 of results (20 per page)
const page3 = await db.collection('products')
  .find({})
  .sort({ createdAt: -1 })
  .skip(40)   // skip pages 1 and 2
  .limit(20)
  .toArray();

Sorting in Mongoose

Mongoose's query builder exposes .sort() with the same syntax as the native driver, plus a convenience string form. Pass a string of field names prefixed with + (ascending) or - (descending), separated by spaces. Both forms are equivalent and the driver compiles them to the same MongoDB sort document.

// Object syntax
const posts = await Post.find({}).sort({ createdAt: -1, title: 1 });

// String syntax — '-' means descending, no prefix means ascending
const posts2 = await Post.find({}).sort('-createdAt title');

// Multi-field sort with limit in a chain
const recent = await Post
  .find({ isPublished: true })
  .sort('-createdAt')
  .limit(5)
  .select('title createdAt');

Sorting Null and Missing Fields

In MongoDB sort results, documents where the sort field is missing or null sort as if the field value is null. In ascending order, null and missing values appear first (before any other value). In descending order they appear last. Be aware of this behaviour when some documents are missing the sort field—it can cause unexpected ordering in mixed-schema collections.

Stable Sort With a Secondary _id Key

MongoDB's sort is not guaranteed stable when two documents have the same value for the sort key—their relative order is undefined and may change between queries. To get a deterministic, stable ordering, always include _id as a final tiebreaker. Since _id is unique, it guarantees a consistent order even when primary sort keys are equal.

// Stable sort: primary sort by rating DESC, tiebreaker by _id ASC
db.products.find({}).sort({ rating: -1, _id: 1 });

// Without _id as tiebreaker, documents with the same rating
// may appear in different order on repeated queries

Verifying Sort Uses an Index

Run explain('executionStats') and look for the SORT stage in the execution plan. If you see an IXSCAN feeding directly into a cursor without a SORT stage, the sort is served by the index (ideal). If there is a SORT stage, the sort is in-memory and an index might help. Also check memUsage inside the SORT stage to understand how much memory the sort consumed.

const plan = db.products.find({}).sort({ rating: -1 }).explain('executionStats');
// Look in plan.executionStats.executionStages for 'SORT' stage
// 'IXSCAN' without 'SORT' = index sort (best)
// 'SORT' stage = in-memory sort (may need an index)

Quick Check

Test your understanding of MongoDB & NoSQL Databases concepts from this lesson.

Lesson Recap

In this lesson you learned: sort() accepts a document of field-direction pairs where 1 is ascending and -1 is descending, compound sorts use later fields as tiebreakers, and matching an index avoids the 32 MB in-memory sort limit. Next up we explore skip and limit offset pagination and its performance trade-offs at scale.

Perguntas Frequentes

A aula “Ordenação com sort() e várias chaves” é grátis?

Sim — o texto completo de “Ordenação com sort() e várias chaves” é grátis para ler aqui na web. Para praticá-la interativamente (um editor de código integrado e um tutor de IA 24/7) e desbloquear o restante do curso de MongoDB Academy, atualize para CoddyKit PRO. O curso de MongoDB Academy inclui 4 aulas no total.

O que vou aprender em “Ordenação com sort() e várias chaves”?

Você ordenará os resultados das consultas por um ou mais campos em ordem crescente e decrescente e verá como sort interage com o uso de índices. Você pratica MongoDB Academy com código prático que executa diretamente no navegador, e um tutor de IA 24/7 responde suas dúvidas enquanto trabalha na aula.

Preciso ter experiência prévia para começar MongoDB Academy?

Nenhuma experiência prévia é necessária. MongoDB Academy no CoddyKit é estruturado para alunos iniciantes até avançados, então você pode começar aqui ou desde o início e aprender no seu ritmo. Esta é a aula 1 de 4.

Quanto tempo leva a aula “Ordenação com sort() e várias chaves”?

A maioria das aulas CoddyKit leva cerca de 5–10 minutos. Cada uma é compacta e interativa, então você faz progresso constante e retoma exatamente de onde parou entre web e app.

Posso escrever e executar código nesta aula de MongoDB Academy?

Sim. Cada aula de MongoDB Academy inclui um editor de código integrado, então você escreve e executa código real direto no navegador e recebe feedback de IA instantaneamente — nenhuma configuração local necessária.

Todas as aulas deste curso

  1. Ordenação com sort() e várias chaves
  2. Skip e limit: paginação por deslocamento
  3. Paginação por conjunto de chaves com consultas por intervalo
  4. Combinando sort, skip, limit e projeções
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