azure-search-documents-dotnet
Develop high-performance search applications using Azure AI Search for .NET.
Install
mkdir -p .claude/skills/azure-search-documents-dotnet && curl -L -o skill.zip "https://agentskills.codes/api/skills/download/18390" && unzip -o skill.zip -d .claude/skills/azure-search-documents-dotnet && rm skill.zipInstalls to .claude/skills/azure-search-documents-dotnet
Activation
This is the description your AI agent reads to decide when to run this skill — the better it matches your request, the more reliably it fires.
Azure AI Search SDK for .NET (Azure.Search.Documents). Use for building search applications with full-text, vector, semantic, and hybrid search.Key capabilities
- →Install Azure.Search.Documents and Azure.Identity packages
- →Authenticate using DefaultAzureCredential or API Key
- →Create and manage search indexes with FieldBuilder or manual definition
- →Perform document operations like upload, merge, and delete
- →Execute basic, faceted, autocomplete, and suggestion searches
- →Implement vector search and hybrid search queries
How it works
This skill uses the Azure.Search.Documents .NET SDK to interact with Azure AI Search, allowing for index creation, document management, and various search operations including full-text, vector, semantic, and hybrid search.
Inputs & outputs
When to use azure-search-documents-dotnet
- →Implementing vector search
- →Creating search indexes
- →Configuring semantic search
About this skill
Azure.Search.Documents (.NET)
Build search applications with full-text, vector, semantic, and hybrid search capabilities.
Installation
dotnet add package Azure.Search.Documents
dotnet add package Azure.Identity
Current Versions: Stable v11.7.0, Preview v11.8.0-beta.1
Environment Variables
SEARCH_ENDPOINT=https://<search-service>.search.windows.net
SEARCH_INDEX_NAME=<index-name>
# For API key auth (not recommended for production)
SEARCH_API_KEY=<api-key>
Authentication
DefaultAzureCredential (preferred):
using Azure.Identity;
using Azure.Search.Documents;
var credential = new DefaultAzureCredential();
var client = new SearchClient(
new Uri(Environment.GetEnvironmentVariable("SEARCH_ENDPOINT")),
Environment.GetEnvironmentVariable("SEARCH_INDEX_NAME"),
credential);
API Key:
using Azure;
using Azure.Search.Documents;
var credential = new AzureKeyCredential(
Environment.GetEnvironmentVariable("SEARCH_API_KEY"));
var client = new SearchClient(
new Uri(Environment.GetEnvironmentVariable("SEARCH_ENDPOINT")),
Environment.GetEnvironmentVariable("SEARCH_INDEX_NAME"),
credential);
Client Selection
| Client | Purpose |
|---|---|
SearchClient | Query indexes, upload/update/delete documents |
SearchIndexClient | Create/manage indexes, synonym maps |
SearchIndexerClient | Manage indexers, skillsets, data sources |
Index Creation
Using FieldBuilder (Recommended)
using Azure.Search.Documents.Indexes;
using Azure.Search.Documents.Indexes.Models;
// Define model with attributes
public class Hotel
{
[SimpleField(IsKey = true, IsFilterable = true)]
public string HotelId { get; set; }
[SearchableField(IsSortable = true)]
public string HotelName { get; set; }
[SearchableField(AnalyzerName = LexicalAnalyzerName.EnLucene)]
public string Description { get; set; }
[SimpleField(IsFilterable = true, IsSortable = true, IsFacetable = true)]
public double? Rating { get; set; }
[VectorSearchField(VectorSearchDimensions = 1536, VectorSearchProfileName = "vector-profile")]
public ReadOnlyMemory<float>? DescriptionVector { get; set; }
}
// Create index
var indexClient = new SearchIndexClient(endpoint, credential);
var fieldBuilder = new FieldBuilder();
var fields = fieldBuilder.Build(typeof(Hotel));
var index = new SearchIndex("hotels")
{
Fields = fields,
VectorSearch = new VectorSearch
{
Profiles = { new VectorSearchProfile("vector-profile", "hnsw-algo") },
Algorithms = { new HnswAlgorithmConfiguration("hnsw-algo") }
}
};
await indexClient.CreateOrUpdateIndexAsync(index);
Manual Field Definition
var index = new SearchIndex("hotels")
{
Fields =
{
new SimpleField("hotelId", SearchFieldDataType.String) { IsKey = true, IsFilterable = true },
new SearchableField("hotelName") { IsSortable = true },
new SearchableField("description") { AnalyzerName = LexicalAnalyzerName.EnLucene },
new SimpleField("rating", SearchFieldDataType.Double) { IsFilterable = true, IsSortable = true },
new SearchField("descriptionVector", SearchFieldDataType.Collection(SearchFieldDataType.Single))
{
VectorSearchDimensions = 1536,
VectorSearchProfileName = "vector-profile"
}
}
};
Document Operations
var searchClient = new SearchClient(endpoint, indexName, credential);
// Upload (add new)
var hotels = new[] { new Hotel { HotelId = "1", HotelName = "Hotel A" } };
await searchClient.UploadDocumentsAsync(hotels);
// Merge (update existing)
await searchClient.MergeDocumentsAsync(hotels);
// Merge or Upload (upsert)
await searchClient.MergeOrUploadDocumentsAsync(hotels);
// Delete
await searchClient.DeleteDocumentsAsync("hotelId", new[] { "1", "2" });
// Batch operations
var batch = IndexDocumentsBatch.Create(
IndexDocumentsAction.Upload(hotel1),
IndexDocumentsAction.Merge(hotel2),
IndexDocumentsAction.Delete(hotel3));
await searchClient.IndexDocumentsAsync(batch);
Search Patterns
Basic Search
var options = new SearchOptions
{
Filter = "rating ge 4",
OrderBy = { "rating desc" },
Select = { "hotelId", "hotelName", "rating" },
Size = 10,
Skip = 0,
IncludeTotalCount = true
};
SearchResults<Hotel> results = await searchClient.SearchAsync<Hotel>("luxury", options);
Console.WriteLine($"Total: {results.TotalCount}");
await foreach (SearchResult<Hotel> result in results.GetResultsAsync())
{
Console.WriteLine($"{result.Document.HotelName} (Score: {result.Score})");
}
Faceted Search
var options = new SearchOptions
{
Facets = { "rating,count:5", "category" }
};
var results = await searchClient.SearchAsync<Hotel>("*", options);
foreach (var facet in results.Value.Facets["rating"])
{
Console.WriteLine($"Rating {facet.Value}: {facet.Count}");
}
Autocomplete and Suggestions
// Autocomplete
var autocompleteOptions = new AutocompleteOptions { Mode = AutocompleteMode.OneTermWithContext };
var autocomplete = await searchClient.AutocompleteAsync("lux", "suggester-name", autocompleteOptions);
// Suggestions
var suggestOptions = new SuggestOptions { UseFuzzyMatching = true };
var suggestions = await searchClient.SuggestAsync<Hotel>("lux", "suggester-name", suggestOptions);
Vector Search
See references/vector-search.md for detailed patterns.
using Azure.Search.Documents.Models;
// Pure vector search
var vectorQuery = new VectorizedQuery(embedding)
{
KNearestNeighborsCount = 5,
Fields = { "descriptionVector" }
};
var options = new SearchOptions
{
VectorSearch = new VectorSearchOptions
{
Queries = { vectorQuery }
}
};
var results = await searchClient.SearchAsync<Hotel>(null, options);
Semantic Search
See references/semantic-search.md for detailed patterns.
var options = new SearchOptions
{
QueryType = SearchQueryType.Semantic,
SemanticSearch = new SemanticSearchOptions
{
SemanticConfigurationName = "my-semantic-config",
QueryCaption = new QueryCaption(QueryCaptionType.Extractive),
QueryAnswer = new QueryAnswer(QueryAnswerType.Extractive)
}
};
var results = await searchClient.SearchAsync<Hotel>("best hotel for families", options);
// Access semantic answers
foreach (var answer in results.Value.SemanticSearch.Answers)
{
Console.WriteLine($"Answer: {answer.Text} (Score: {answer.Score})");
}
// Access captions
await foreach (var result in results.Value.GetResultsAsync())
{
var caption = result.SemanticSearch?.Captions?.FirstOrDefault();
Console.WriteLine($"Caption: {caption?.Text}");
}
Hybrid Search (Vector + Keyword + Semantic)
var vectorQuery = new VectorizedQuery(embedding)
{
KNearestNeighborsCount = 5,
Fields = { "descriptionVector" }
};
var options = new SearchOptions
{
QueryType = SearchQueryType.Semantic,
SemanticSearch = new SemanticSearchOptions
{
SemanticConfigurationName = "my-semantic-config"
},
VectorSearch = new VectorSearchOptions
{
Queries = { vectorQuery }
}
};
// Combines keyword search, vector search, and semantic ranking
var results = await searchClient.SearchAsync<Hotel>("luxury beachfront", options);
Field Attributes Reference
| Attribute | Purpose |
|---|---|
SimpleField | Non-searchable field (filters, sorting, facets) |
SearchableField | Full-text searchable field |
VectorSearchField | Vector embedding field |
IsKey = true | Document key (required, one per index) |
IsFilterable = true | Enable $filter expressions |
IsSortable = true | Enable $orderby |
IsFacetable = true | Enable faceted navigation |
IsHidden = true | Exclude from results |
AnalyzerName | Specify text analyzer |
Error Handling
using Azure;
try
{
var results = await searchClient.SearchAsync<Hotel>("query");
}
catch (RequestFailedException ex) when (ex.Status == 404)
{
Console.WriteLine("Index not found");
}
catch (RequestFailedException ex)
{
Console.WriteLine($"Search error: {ex.Status} - {ex.ErrorCode}: {ex.Message}");
}
Best Practices
- Use
DefaultAzureCredentialover API keys for production - Use
FieldBuilderwith model attributes for type-safe index definitions - Use
CreateOrUpdateIndexAsyncfor idempotent index creation - Batch document operations for better throughput
- Use
Selectto return only needed fields - Configure semantic search for natural language queries
- Combine vector + keyword + semantic for best relevance
Reference Files
| File | Contents |
|---|---|
| references/vector-search.md | Vector search, hybrid search, vectorizers |
| references/semantic-search.md | Semantic ranking, captions, answers |
When to Use
This skill is applicable to execute the workflow or actions described in the overview.
Limitations
- Use this skill only when the task clearly matches the scope described above.
- Do not treat the output as a substitute for environment-specific validation, testing, or expert review.
- Stop and ask for clarification if required inputs, permissions, safety boundaries, or success criteria are missing.
When not to use it
- →When the task does not involve Azure AI Search
- →When working with a language other than .NET
- →When the task is not related to building search applications
Prerequisites
Limitations
- →This skill is specific to the .NET environment.
- →The skill does not cover all possible Azure AI Search functionalities beyond the documented scope.
- →API key authentication is not recommended for production environments.
How it compares
This skill provides a programmatic way to build and manage search applications in .NET, offering fine-grained control over indexing and querying compared to using a pre-built search interface.
Compared to similar skills
azure-search-documents-dotnet side by side with the closest alternatives in the catalog.
| Skill | Installs | Updated | Safety | Difficulty |
|---|---|---|---|---|
| azure-search-documents-dotnet (this skill) | 0 | 2mo | Review | Intermediate |
| azure-mgmt-mongodbatlas-dotnet | 0 | 2mo | Review | Intermediate |
| backend-developer | 0 | 5mo | No flags | Advanced |
| dotnet-backend-patterns | 7 | 4mo | No flags | Advanced |
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