AI-Studio/app/MindWork AI Studio/Tools/Services/DataSourceEmbeddingService.cs

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C#
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using System.Collections.Concurrent;
using System.Diagnostics.CodeAnalysis;
using System.Threading.Channels;
using AIStudio.Provider;
using AIStudio.Settings;
using AIStudio.Settings.DataModel;
using AIStudio.Tools.Databases;
using AIStudio.Tools.Databases.IndexStore;
using AIStudio.Tools.Databases.VectorStore;
using AIStudio.Tools.PluginSystem;
using AIStudio.Tools.Security;
namespace AIStudio.Tools.Services;
public sealed partial class DataSourceEmbeddingService(SettingsManager settingsManager, RustService rustService, DatabaseClientProvider databaseClientProvider,
PromptInjectionGuardService guardService, ILogger<DataSourceEmbeddingService> logger) : BackgroundService
{
private const int VECTOR_STORE_OPTIMIZATION_CHUNK_THRESHOLD = 100_000;
private readonly Channel<DataSourceEmbeddingQueueItem> queue = Channel.CreateUnbounded<DataSourceEmbeddingQueueItem>();
private readonly ConcurrentDictionary<string, byte> queuedIds = new(StringComparer.OrdinalIgnoreCase);
private readonly ConcurrentDictionary<string, byte> runningIds = new(StringComparer.OrdinalIgnoreCase);
private readonly ConcurrentDictionary<string, byte> pendingQueueIds = new(StringComparer.OrdinalIgnoreCase);
private readonly ConcurrentDictionary<string, DataSourceRunControl> activeRuns = new(StringComparer.OrdinalIgnoreCase);
private readonly ConcurrentDictionary<string, DataSourceEmbeddingStatus> statuses = new(StringComparer.OrdinalIgnoreCase);
private readonly object queueStateLock = new();
private int startupHashCheckStarted;
private int startupHashCheckCompleted;
private static string TB(string fallbackEN) => I18N.I.T(fallbackEN, typeof(DataSourceEmbeddingService).Namespace, nameof(DataSourceEmbeddingService));
private enum DataSourceQueueRequestResult
{
QUEUED,
ALREADY_QUEUED,
RUNNING,
RUNNING_MARKED_PENDING,
}
private enum DataSourceEmbeddingRefreshMode
{
STARTUP_HASH_CHECK,
HASH_CHECK,
WATCHER_HASH_CHECK,
MANUAL_RETRY,
}
private sealed record DataSourceEmbeddingQueueItem(string DataSourceId, DataSourceEmbeddingRefreshMode RefreshMode);
private sealed record DataSourceRunControl(CancellationTokenSource TokenSource, TaskCompletionSource<object?> Completion);
private sealed class VectorStoreOptimizationTracker
{
public long StoredChunksSinceLastOptimization { get; private set; }
public bool HasPendingChanges { get; private set; }
public void MarkChanged()
{
this.HasPendingChanges = true;
}
public void RecordStoredChunks(int chunkCount)
{
if (chunkCount <= 0)
return;
this.HasPendingChanges = true;
this.StoredChunksSinceLastOptimization += chunkCount;
}
public void Reset()
{
this.StoredChunksSinceLastOptimization = 0;
this.HasPendingChanges = false;
}
}
public IReadOnlyList<DataSourceEmbeddingStatus> GetStatuses()
{
return this.statuses.Values
.OrderBy(status => status.SortOrder)
.ThenBy(status => status.DataSourceName, StringComparer.OrdinalIgnoreCase)
.ToList();
}
public DataSourceEmbeddingOverview GetOverview()
{
var orderedStatuses = this.GetStatuses();
var activeStatus = orderedStatuses
.FirstOrDefault(status => status.State is DataSourceEmbeddingState.QUEUED or DataSourceEmbeddingState.RUNNING);
if (activeStatus is not null)
{
var total = Math.Max(activeStatus.TotalFiles, 1);
return new(
activeStatus.State,
activeStatus.IndexedFiles,
total,
activeStatus.FailedFiles);
}
var failedStatus = orderedStatuses
.FirstOrDefault(status => status.State is DataSourceEmbeddingState.FAILED || status.FailedFiles > 0);
if (failedStatus is not null)
return new(DataSourceEmbeddingState.FAILED, failedStatus.IndexedFiles, failedStatus.TotalFiles, failedStatus.FailedFiles);
return new(DataSourceEmbeddingState.COMPLETED, 0, 0, 0);
}
public Task QueueAllInternalDataSourcesAsync()
{
return this.QueueAllInternalDataSourcesAsync(true);
}
private Task QueueAllInternalDataSourcesAsync(bool queueAfterCurrentRun)
{
this.RefreshWatchers();
var supportedDataSources = settingsManager.ConfigurationData.DataSources
.Where(this.IsSupportedInternalDataSource)
.ToList();
logger.LogInformation(
"Queueing {DataSourceCount} supported internal data source(s) for background embedding hash checks. QueueAfterCurrentRun={QueueAfterCurrentRun}.",
supportedDataSources.Count,
queueAfterCurrentRun);
var tasks = supportedDataSources.Select(dataSource => this.QueueDataSourceAsync(dataSource, queueAfterCurrentRun, DataSourceEmbeddingRefreshMode.HASH_CHECK));
return Task.WhenAll(tasks);
}
public Task QueueAllInternalDataSourcesIfAutomaticRefreshAsync()
{
if (!settingsManager.ConfigurationData.App.DataSourceIndexing.AutomaticRefresh)
{
this.RefreshWatchers();
return Task.CompletedTask;
}
logger.LogDebug("Automatic startup embedding hash check is handled by the background service. Ignoring duplicate startup queue request.");
return Task.CompletedTask;
}
public void RefreshAutomaticWatchers()
{
if (!settingsManager.ConfigurationData.App.DataSourceIndexing.AutomaticRefresh)
{
Volatile.Write(ref this.startupHashCheckCompleted, 0);
Interlocked.Exchange(ref this.startupHashCheckStarted, 0);
this.RemoveAllWatchers();
return;
}
if (Volatile.Read(ref this.startupHashCheckCompleted) == 0)
{
_ = Task.Run(async () =>
{
try
{
await this.RunInitialDataSourceHashCheckAsync(CancellationToken.None);
}
catch (Exception exception)
{
logger.LogWarning(exception, "Failed to run the initial data source hash check after automatic refresh was enabled.");
}
});
return;
}
this.RefreshWatchers();
}
public bool CanRefreshDataSource(IDataSource dataSource)
{
return this.IsSupportedInternalDataSource(dataSource);
}
public bool CanRefreshDataSource(string dataSourceId)
{
return this.TryGetConfiguredDataSource(dataSourceId, out var dataSource) &&
this.CanRefreshDataSource(dataSource);
}
public async Task<bool> ShouldLockDataSourceIdentityAsync(string dataSourceId, CancellationToken token = default)
{
var indexStore = await databaseClientProvider.GetIndexStoreAsync(token);
if (!indexStore.IsAvailable)
{
logger.LogWarning("Locking identity settings for data source '{DataSourceId}' because the local RAG index database '{DatabaseName}' is unavailable.", dataSourceId, indexStore.Name);
return true;
}
var manifest = await indexStore.GetManifestAsync(dataSourceId, token);
return !string.IsNullOrWhiteSpace(manifest.EmbeddingProviderId)
|| !string.IsNullOrWhiteSpace(manifest.EmbeddingSignature)
|| !string.IsNullOrWhiteSpace(manifest.SourceHash)
|| manifest.VectorSize > 0
|| manifest.Files.Count > 0
// A data source whose files were all skipped for good has index state as well,
// even though nothing was indexed of it:
|| manifest.PermanentFailures.Count > 0;
}
public Task QueueDataSourceAsync(IDataSource dataSource)
{
return this.QueueDataSourceAsync(dataSource, true, DataSourceEmbeddingRefreshMode.HASH_CHECK);
}
public Task QueueDataSourceAsync(string dataSourceId)
{
return this.TryGetConfiguredDataSource(dataSourceId, out var dataSource)
? this.QueueDataSourceAsync(dataSource)
: Task.CompletedTask;
}
public Task RetryDataSourceAsync(string dataSourceId)
{
return this.TryGetConfiguredDataSource(dataSourceId, out var dataSource)
? this.QueueDataSourceAsync(dataSource, true, DataSourceEmbeddingRefreshMode.MANUAL_RETRY)
: Task.CompletedTask;
}
private async Task QueueDataSourceAsync(IDataSource dataSource, bool queueAfterCurrentRun, DataSourceEmbeddingRefreshMode refreshMode)
{
if (!this.IsSupportedInternalDataSource(dataSource))
return;
this.RefreshWatchers();
logger.LogDebug("Refreshed watcher state for data source '{DataSourceName}' ({DataSourceId}).", dataSource.Name, dataSource.Id);
var queueRequestResult = this.TryReserveDataSourceQueueSlot(dataSource.Id, queueAfterCurrentRun);
switch (queueRequestResult)
{
case DataSourceQueueRequestResult.ALREADY_QUEUED:
logger.LogDebug("Data source '{DataSourceName}' ({DataSourceId}) is already queued for background embeddings. Ignoring duplicate queue request.", dataSource.Name, dataSource.Id);
return;
case DataSourceQueueRequestResult.RUNNING:
logger.LogDebug("Data source '{DataSourceName}' ({DataSourceId}) is already being embedded. Ignoring duplicate queue request.", dataSource.Name, dataSource.Id);
return;
case DataSourceQueueRequestResult.RUNNING_MARKED_PENDING:
logger.LogDebug("Data source '{DataSourceName}' ({DataSourceId}) is already being embedded. Scheduled one follow-up embedding run.", dataSource.Name, dataSource.Id);
return;
}
logger.LogInformation(
"Queueing data source '{DataSourceName}' ({DataSourceId}) for background embedding hash check. RefreshMode={RefreshMode}.",
dataSource.Name,
dataSource.Id,
refreshMode);
if (!this.statuses.TryGetValue(dataSource.Id, out var currentStatus) || currentStatus.State is not DataSourceEmbeddingState.RUNNING)
{
this.UpsertStatus(this.CreateStatus(
dataSource,
DataSourceEmbeddingState.QUEUED,
currentStatus?.TotalFiles ?? 0,
currentStatus?.IndexedFiles ?? 0,
currentStatus?.FailedFiles ?? 0,
failures: currentStatus?.Failures ?? []));
}
logger.LogDebug("Upserting status for data source '{DataSourceName}' ({DataSourceId}).", dataSource.Name, dataSource.Id);
await this.queue.Writer.WriteAsync(new DataSourceEmbeddingQueueItem(dataSource.Id, refreshMode));
logger.LogDebug("Queued data source '{DataSourceName}' ({DataSourceId}).", dataSource.Name, dataSource.Id);
}
public async Task RemoveDataSourceAsync(IDataSource dataSource)
{
if (!this.IsSupportedInternalDataSource(dataSource))
return;
this.RemoveWatcher(dataSource.Id);
var activeRun = this.CancelActiveDataSourceRun(dataSource);
this.ClearQueuedDataSourceState(dataSource.Id);
this.statuses.TryRemove(dataSource.Id, out _);
if (activeRun is not null)
{
logger.LogInformation(
"Waiting for the active embedding run for deleted data source '{DataSourceName}' ({DataSourceId}) to stop before deleting persisted embeddings.",
dataSource.Name,
dataSource.Id);
await activeRun.Completion.Task;
}
this.statuses.TryRemove(dataSource.Id, out _);
await this.ResetPersistedStateAsync(dataSource.Id, null, null, CancellationToken.None);
this.statuses.TryRemove(dataSource.Id, out _);
this.PublishStatusChanged();
}
protected override async Task ExecuteAsync(CancellationToken stoppingToken)
{
await this.WaitForInitialSettingsAndBootstrapAsync(stoppingToken);
while (!stoppingToken.IsCancellationRequested)
{
var queueItem = await this.queue.Reader.ReadAsync(stoppingToken);
var dataSourceId = queueItem.DataSourceId;
this.MarkDataSourceRunStarted(dataSourceId);
IDataSource? dataSource = null;
try
{
dataSource = settingsManager.ConfigurationData.DataSources
.FirstOrDefault(source => source.Id.Equals(dataSourceId, StringComparison.OrdinalIgnoreCase));
if (dataSource is null || !this.IsSupportedInternalDataSource(dataSource))
continue;
await this.ProcessDataSourceRunAsync(dataSource, queueItem.RefreshMode, stoppingToken);
}
catch (OperationCanceledException) when (stoppingToken.IsCancellationRequested)
{
break;
}
catch (Exception exception)
{
if (dataSource is null)
{
logger.LogError(exception, "Background embedding failed for data source '{DataSourceId}'.", dataSourceId);
}
else
{
logger.LogError(exception, "Background embedding failed for data source '{DataSourceName}' ({DataSourceId}).", dataSource.Name, dataSource.Id);
this.UpsertStatus(this.GetFallbackStatus(dataSource, string.Format(TB("The data source '{0}' could not be processed. The log file holds the details."), dataSource.Name)));
}
}
finally
{
await this.QueuePendingDataSourceRunAsync(dataSourceId, stoppingToken);
}
}
}
public override void Dispose()
{
this.DisposeWatchers();
base.Dispose();
}
private async Task ProcessDataSourceRunAsync(IDataSource dataSource, DataSourceEmbeddingRefreshMode refreshMode, CancellationToken parentToken)
{
if (!this.TryGetConfiguredDataSource(dataSource.Id, out var configuredDataSource) ||
!this.IsSupportedInternalDataSource(configuredDataSource))
{
logger.LogDebug(
"Skipping embedding run for data source '{DataSourceName}' ({DataSourceId}) because it is no longer configured. RefreshMode={RefreshMode}.",
dataSource.Name,
dataSource.Id,
refreshMode);
return;
}
dataSource = configuredDataSource;
var runTokenSource = CancellationTokenSource.CreateLinkedTokenSource(parentToken);
var runControl = new DataSourceRunControl(
runTokenSource,
new TaskCompletionSource<object?>(TaskCreationOptions.RunContinuationsAsynchronously));
if (!this.activeRuns.TryAdd(dataSource.Id, runControl))
{
runTokenSource.Dispose();
logger.LogDebug(
"Data source '{DataSourceName}' ({DataSourceId}) already has an active embedding run. Skipping duplicate process request. RefreshMode={RefreshMode}.",
dataSource.Name,
dataSource.Id,
refreshMode);
return;
}
try
{
await this.ProcessDataSourceAsync(dataSource, refreshMode, runTokenSource.Token);
}
catch (OperationCanceledException) when (!parentToken.IsCancellationRequested && runTokenSource.IsCancellationRequested)
{
logger.LogInformation(
"Stopped background embeddings for data source '{DataSourceName}' ({DataSourceId}) because the data source was removed or canceled. RefreshMode={RefreshMode}.",
dataSource.Name,
dataSource.Id,
refreshMode);
}
finally
{
this.activeRuns.TryRemove(dataSource.Id, out _);
runControl.Completion.TrySetResult(null);
runTokenSource.Dispose();
}
}
private async Task ProcessDataSourceAsync(IDataSource dataSource, DataSourceEmbeddingRefreshMode refreshMode, CancellationToken token)
{
if (dataSource is not IInternalDataSource internalDataSource)
{
logger.LogWarning(
"Skipping background embeddings for non-internal data source '{DataSourceName}' ({DataSourceId}).",
dataSource.Name,
dataSource.Id);
return;
}
logger.LogInformation(
"Starting background embedding hash check for data source '{DataSourceName}' ({DataSourceId}). RefreshMode={RefreshMode}.",
dataSource.Name,
dataSource.Id,
refreshMode);
token.ThrowIfCancellationRequested();
var vectorStore = await databaseClientProvider.GetVectorStoreAsync(token);
var indexStore = await databaseClientProvider.GetIndexStoreAsync(token);
token.ThrowIfCancellationRequested();
if (!vectorStore.IsAvailable)
{
logger.LogWarning(
"Skipping background embeddings for data source '{DataSourceName}' ({DataSourceId}) because the database client '{DatabaseName}' is unavailable.",
dataSource.Name,
dataSource.Id,
vectorStore.Name);
token.ThrowIfCancellationRequested();
this.UpsertStatus(this.GetFallbackStatus(dataSource, TB("The vector database is not available.")));
return;
}
if (!indexStore.IsAvailable)
{
logger.LogWarning(
"Skipping background embeddings for data source '{DataSourceName}' ({DataSourceId}) because the database client '{DatabaseName}' is unavailable.",
dataSource.Name,
dataSource.Id,
indexStore.Name);
token.ThrowIfCancellationRequested();
this.UpsertStatus(this.GetFallbackStatus(dataSource, TB("The local RAG index database is not available.")));
return;
}
var collectionName = DataSourceEmbeddingNames.GetCollectionName(dataSource.Id);
var persistedManifest = await indexStore.GetManifestAsync(dataSource.Id, token);
if (persistedManifest.VectorSize > 0)
{
var ensureResult = await vectorStore.EnsureVectorStoreExists(collectionName, dataSource.Name, persistedManifest.VectorSize, token);
if (ensureResult.Created)
{
logger.LogWarning(
"Vector store '{CollectionName}' for data source '{DataSourceName}' ({DataSourceId}) was missing although persisted embedding state exists. Resetting the stale state so all vectors are rebuilt.",
collectionName,
dataSource.Name,
dataSource.Id);
await this.ResetPersistedStateAsync(dataSource.Id, vectorStore, indexStore, token);
}
}
if (!this.TryResolveEmbeddingProvider(dataSource, out var embeddingProvider))
{
token.ThrowIfCancellationRequested();
this.UpsertStatus(this.GetFallbackStatus(dataSource, TB("The selected embedding provider is not available. Please check it in the settings.")));
return;
}
if (!embeddingProvider.GetConfidenceLevel(settingsManager).AllowsDataSourceConfidenceLevel(internalDataSource.ConfidenceLevel))
{
var errorMessage = string.Format(TB("The selected embedding provider is not allowed to index this data source. The data source asks for the confidence level '{0}', while the embedding provider has '{1}'."), internalDataSource.ConfidenceLevel.GetName(), embeddingProvider.GetConfidenceLevel(settingsManager).GetName());
logger.LogWarning(
"Skipping background embeddings for data source '{DataSourceName}' ({DataSourceId}) because embedding provider '{EmbeddingProviderName}' ({EmbeddingProviderId}) does not meet the required confidence. RequiredConfidence={RequiredConfidence}, EmbeddingProviderConfidence={EmbeddingProviderConfidence}.",
dataSource.Name,
dataSource.Id,
embeddingProvider.Name,
embeddingProvider.Id,
internalDataSource.ConfidenceLevel.GetName(),
embeddingProvider.GetConfidenceLevel(settingsManager).GetName());
token.ThrowIfCancellationRequested();
this.UpsertStatus(this.GetFallbackStatus(dataSource, errorMessage));
return;
}
logger.LogInformation(
"Using embedding provider '{EmbeddingProviderId}' with model '{EmbeddingModelId}' for data source '{DataSourceName}' ({DataSourceId}).",
embeddingProvider.Id,
embeddingProvider.Model.Id,
dataSource.Name,
dataSource.Id);
var manifest = await this.EnsureCompatibleManifestAsync(dataSource, embeddingProvider, collectionName, vectorStore, indexStore, token);
token.ThrowIfCancellationRequested();
var inputFiles = this.GetInputFiles(dataSource);
var indexedFiles = inputFiles.Files;
var totalFiles = indexedFiles.Count + inputFiles.FailedFiles;
foreach (var failure in inputFiles.Failures)
{
logger.LogWarning(
"Cannot index data source input '{FilePath}' for data source '{DataSourceName}' ({DataSourceId}). Reason='{Reason}'.",
failure.FilePath,
dataSource.Name,
dataSource.Id,
failure.Reason);
}
logger.LogInformation(
"Prepared data source '{DataSourceName}' ({DataSourceId}) for embedding. AccessibleFiles={AccessibleFiles}, FailedFiles={FailedFiles}, Collection='{CollectionName}'.",
dataSource.Name,
dataSource.Id,
indexedFiles.Count,
inputFiles.FailedFiles,
collectionName);
var metadataSnapshot = this.BuildDataSourceMetadataSnapshot(dataSource, indexedFiles);
var removedMissingFiles = await this.RemoveMissingFileEmbeddingsAsync(vectorStore, indexStore, dataSource, collectionName, manifest, indexedFiles, token);
var optimizationTracker = new VectorStoreOptimizationTracker();
if (removedMissingFiles > 0)
optimizationTracker.MarkChanged();
token.ThrowIfCancellationRequested();
logger.LogInformation(
"Compared data source hash for '{DataSourceName}' ({DataSourceId}). StoredSourceHashPrefix={StoredSourceHashPrefix}, CurrentSourceHashPrefix={CurrentSourceHashPrefix}, StoredFileRecords={StoredFileRecords}, CurrentFiles={CurrentFiles}, RemovedMissingFiles={RemovedMissingFiles}.",
dataSource.Name,
dataSource.Id,
ShortHash(manifest.SourceHash),
ShortHash(metadataSnapshot.SourceHash),
manifest.Files.Count,
indexedFiles.Count,
removedMissingFiles);
if (this.CanSkipDataSourceByHash(manifest, metadataSnapshot, indexedFiles))
{
logger.LogInformation(
"Skipping data source '{DataSourceName}' ({DataSourceId}) because the persisted data source hash and all persisted file hashes match. RefreshMode={RefreshMode}, PermanentlySkippedFiles={PermanentlySkippedFiles}.",
dataSource.Name,
dataSource.Id,
refreshMode,
manifest.PermanentFailures.Count);
await this.OptimizeCollectionIfNeededAsync(
optimizationTracker,
vectorStore,
collectionName,
dataSource,
"data source finished after removing missing files",
token);
token.ThrowIfCancellationRequested();
await indexStore.UpdateDataSourceHashAsync(dataSource.Id, metadataSnapshot.SourceHash, token);
//
// The files which were skipped for good are none of the indexed ones, and their stored
// reasons belong into the list even on a run which read nothing at all:
//
this.UpsertStatus(this.CreateCompletedStatus(
dataSource,
totalFiles,
indexedFiles.Count - manifest.PermanentFailures.Count,
inputFiles.FailedFiles,
inputFiles.LastError,
[..inputFiles.Failures, ..CreatePermanentFailureDetails(manifest)],
manifest.PermanentFailures.Count));
return;
}
token.ThrowIfCancellationRequested();
this.UpsertStatus(this.CreateStatus(
dataSource,
DataSourceEmbeddingState.RUNNING,
totalFiles,
0,
inputFiles.FailedFiles,
lastError: inputFiles.LastError,
failures: inputFiles.Failures));
var provider = embeddingProvider.CreateProvider();
var skippedFiles = 0;
var permanentlySkippedFiles = 0;
var completedFiles = 0;
var newFiles = 0;
var changedFiles = 0;
var failedFiles = inputFiles.FailedFiles;
var lastError = inputFiles.LastError;
var failureDetails = inputFiles.Failures.ToList();
//
// Which kinds of provider failure the user was already told about in this run. A rejected
// API key is the same problem for every one of a few thousand documents, and one message
// is what it takes to send the user to the settings.
//
var reportedFailureReasons = new HashSet<ProviderRequestFailureReason>();
//
// Everything the runtime filters out of these files is reported once for the whole data
// source. A run over a few thousand documents which removes something in forty of them
// is one thing that happened to the user, not forty. The scope ends with this method, so
// the report arrives when the run is finished rather than in the middle of it.
//
await using var promptInjectionReportingScope = guardService.BeginAction();
foreach (var file in indexedFiles)
{
token.ThrowIfCancellationRequested();
var fingerprint = metadataSnapshot.FileHashes[file.FullName];
if (manifest.Files.TryGetValue(file.FullName, out var existingRecord) &&
string.Equals(existingRecord.Fingerprint, fingerprint, StringComparison.Ordinal))
{
logger.LogDebug(
"Skipping unchanged file '{FilePath}' for data source '{DataSourceName}' ({DataSourceId}) because the persisted metadata hash matches. MetadataHashPrefix={MetadataHashPrefix}, LastWriteUtc={LastWriteUtc:O}, FileSize={FileSize}.",
file.FullName,
dataSource.Name,
dataSource.Id,
ShortHash(fingerprint),
file.LastWriteTimeUtc,
file.Length);
skippedFiles++;
this.UpsertStatus(this.CreateStatus(dataSource, DataSourceEmbeddingState.RUNNING, totalFiles, skippedFiles + completedFiles, failedFiles, lastError: lastError, failures: failureDetails, permanentlySkippedFiles: permanentlySkippedFiles));
continue;
}
//
// A file which failed for a reason of its own is not read again until it changes.
// Without this, a folder holding hundreds of scanned documents without a text layer
// would spend half an hour on every start to arrive at the result we already have:
//
if (manifest.PermanentFailures.TryGetValue(file.FullName, out var permanentFailure) &&
string.Equals(permanentFailure.Fingerprint, fingerprint, StringComparison.Ordinal))
{
logger.LogDebug(
"Skipping file '{FilePath}' for data source '{DataSourceName}' ({DataSourceId}) because reading it failed permanently before. FailureCode={FailureCode}, MetadataHashPrefix={MetadataHashPrefix}, OccurredAtUtc={OccurredAtUtc:O}.",
file.FullName,
dataSource.Name,
dataSource.Id,
permanentFailure.Code,
ShortHash(fingerprint),
permanentFailure.OccurredAtUtc);
permanentlySkippedFiles++;
// The stored reason keeps its place in the list, so the user still sees why:
failureDetails.Add(new DataSourceEmbeddingFailure(file.FullName, permanentFailure.Message, permanentFailure.OccurredAtUtc, ExtractionCode: permanentFailure.Code, IsPermanent: true));
this.UpsertStatus(this.CreateStatus(dataSource, DataSourceEmbeddingState.RUNNING, totalFiles, skippedFiles + completedFiles, failedFiles, lastError: lastError, failures: failureDetails, permanentlySkippedFiles: permanentlySkippedFiles));
continue;
}
this.UpsertStatus(this.CreateStatus(dataSource, DataSourceEmbeddingState.RUNNING, totalFiles, skippedFiles + completedFiles, failedFiles, file.Name, lastError, failureDetails, permanentlySkippedFiles));
try
{
logger.LogInformation(
"Embedding file '{FilePath}' for data source '{DataSourceName}' ({DataSourceId}) because {EmbeddingReason}. CurrentMetadataHashPrefix={CurrentMetadataHashPrefix}. Progress={CompletedFiles}/{TotalFiles}.",
file.FullName,
dataSource.Name,
dataSource.Id,
GetFileEmbeddingReason(file, fingerprint, existingRecord),
ShortHash(fingerprint),
skippedFiles + completedFiles + 1,
totalFiles);
var startedAtUtc = DateTimeOffset.UtcNow;
var chunkCount = await this.IndexOneFileAsync(indexStore, vectorStore, dataSource, file, fingerprint, embeddingProvider, provider, manifest, optimizationTracker, token);
token.ThrowIfCancellationRequested();
var fingerprintAfterEmbedding = BuildFileMetadataHash(file);
if (!string.Equals(fingerprint, fingerprintAfterEmbedding, StringComparison.Ordinal))
throw new IOException(string.Format(TB("The file '{0}' changed while it was being indexed. What was indexed of it is discarded, and the file is tried again during the next run."), file.FullName));
var embeddedAtUtc = DateTimeOffset.UtcNow;
var record = new EmbeddedFileRecord(
fingerprint,
file.Length,
new DateTimeOffset(file.LastWriteTimeUtc),
embeddedAtUtc,
chunkCount);
await indexStore.UpsertFileAsync(
dataSource.Id,
this.CreateEmbeddingStateFile(dataSource, file, fingerprint, chunkCount, embeddedAtUtc),
token);
manifest.Files[file.FullName] = record;
await this.ForgetPermanentFailureAsync(indexStore, dataSource, manifest, file.FullName, token);
completedFiles++;
if (existingRecord is null)
newFiles++;
else
changedFiles++;
logger.LogInformation(
"Embedded file '{FilePath}' for data source '{DataSourceName}' ({DataSourceId}) successfully. Chunks={ChunkCount}, DurationMs={DurationMs}.",
file.FullName,
dataSource.Name,
dataSource.Id,
chunkCount,
(DateTimeOffset.UtcNow - startedAtUtc).TotalMilliseconds);
}
catch (OperationCanceledException) when (token.IsCancellationRequested)
{
throw;
}
catch (ProviderRequestException exception)
{
//
// The provider said what went wrong and what the user can do about it. That
// sentence is what goes into the status, together with the classification the UI
// needs to offer the matching way out.
//
failedFiles++;
lastError = exception.UserMessage;
failureDetails.Add(new DataSourceEmbeddingFailure(file.FullName, exception.UserMessage, DateTimeOffset.UtcNow, exception.FailureReason, exception.StatusCode, embeddingProvider.Name));
manifest.Files.Remove(file.FullName);
await this.ForgetPermanentFailureAsync(indexStore, dataSource, manifest, file.FullName, token);
await this.CleanupFailedFileAsync(indexStore, vectorStore, dataSource, collectionName, file.FullName, optimizationTracker, token);
logger.LogWarning(
exception,
"Failed to embed file '{FilePath}' for data source '{DataSourceName}' because the embedding provider '{EmbeddingProviderName}' failed. FailureReason={FailureReason}, StatusCode={StatusCode}.",
file.FullName,
dataSource.Name,
embeddingProvider.Name,
exception.FailureReason,
exception.StatusCode);
this.UpsertStatus(this.CreateStatus(dataSource, DataSourceEmbeddingState.RUNNING, totalFiles, skippedFiles + completedFiles, failedFiles, file.Name, exception.UserMessage, failureDetails));
// Once per kind of failure, not once per file:
if (reportedFailureReasons.Add(exception.FailureReason))
await MessageBus.INSTANCE.SendError(new(Icons.Material.Filled.CloudOff, exception.UserMessage));
}
catch (FileExtractionException exception) when (exception.Code.IsPermanentIndexingFailure())
{
//
// The file itself is why this failed, so trying it again changes nothing until the
// file does. The reason is written into the index, and the fingerprint next to it
// decides when to come back: an OCR run over a scanned PDF changes both size and
// write time, which is exactly the moment the file deserves another attempt.
//
permanentlySkippedFiles++;
var occurredAtUtc = DateTimeOffset.UtcNow;
var indexingMessage = exception.Code.ToIndexingUserMessage(file.Name);
failureDetails.Add(new DataSourceEmbeddingFailure(file.FullName, indexingMessage, occurredAtUtc, ExtractionCode: exception.Code, IsPermanent: true));
manifest.Files.Remove(file.FullName);
await this.CleanupFailedFileAsync(indexStore, vectorStore, dataSource, collectionName, file.FullName, optimizationTracker, token);
var absolutePath = Path.GetFullPath(file.FullName);
manifest.PermanentFailures[absolutePath] = new PermanentIndexingFailureRecord(fingerprint, exception.Code, indexingMessage, occurredAtUtc);
await indexStore.UpsertPermanentFailureAsync(
dataSource.Id,
new PermanentIndexingFailure(this.CreateParentFileId(dataSource.Id, absolutePath), absolutePath, fingerprint, exception.Code, indexingMessage, occurredAtUtc),
token);
logger.LogInformation(
exception,
"Skipping file '{FilePath}' of data source '{DataSourceName}' ({DataSourceId}) from now on because reading it failed for a reason which lies in the file. FailureCode={FailureCode}, MetadataHashPrefix={MetadataHashPrefix}.",
file.FullName,
dataSource.Name,
dataSource.Id,
exception.Code,
ShortHash(fingerprint));
this.UpsertStatus(this.CreateStatus(dataSource, DataSourceEmbeddingState.RUNNING, totalFiles, skippedFiles + completedFiles, failedFiles, file.Name, lastError, failureDetails, permanentlySkippedFiles));
}
catch (Exception exception)
{
//
// Everything which is not the provider's doing: a file which changed while it was
// read, one which yielded no text, a vector store which refused to store. These
// are about this one file, so they go into the list and not into a message which
// would interrupt whatever the user is doing right now.
//
failedFiles++;
var extractionCode = exception is FileExtractionException extractionFailure ? extractionFailure.Code : FileExtractionErrorCode.NONE;
//
// Deliberately not the message of the exception: that one is written for the log
// file, in English, and repeats the path which the list shows anyway.
//
var failureMessage = extractionCode.ToIndexingUserMessage(file.Name);
lastError = failureMessage;
failureDetails.Add(new DataSourceEmbeddingFailure(file.FullName, failureMessage, DateTimeOffset.UtcNow, EmbeddingProviderName: embeddingProvider.Name, ExtractionCode: extractionCode));
manifest.Files.Remove(file.FullName);
await this.ForgetPermanentFailureAsync(indexStore, dataSource, manifest, file.FullName, token);
await this.CleanupFailedFileAsync(indexStore, vectorStore, dataSource, collectionName, file.FullName, optimizationTracker, token);
logger.LogWarning(exception, "Failed to embed file '{FilePath}' for data source '{DataSourceName}'.", file.FullName, dataSource.Name);
this.UpsertStatus(this.CreateStatus(dataSource, DataSourceEmbeddingState.RUNNING, totalFiles, skippedFiles + completedFiles, failedFiles, file.Name, failureMessage, failureDetails, permanentlySkippedFiles));
}
}
manifest.SourceHash = metadataSnapshot.SourceHash;
token.ThrowIfCancellationRequested();
await this.OptimizeCollectionIfNeededAsync(
optimizationTracker,
vectorStore,
collectionName,
dataSource,
"data source embedding run finished",
token);
token.ThrowIfCancellationRequested();
await indexStore.UpdateDataSourceHashAsync(dataSource.Id, metadataSnapshot.SourceHash, token);
token.ThrowIfCancellationRequested();
this.UpsertStatus(this.CreateCompletedStatus(dataSource, totalFiles, skippedFiles + completedFiles, failedFiles, lastError, failureDetails, permanentlySkippedFiles));
logger.LogInformation(
"Finished background embeddings for data source '{DataSourceName}' ({DataSourceId}). RefreshMode={RefreshMode}, Embedded={EmbeddedFiles}, New={NewFiles}, Changed={ChangedFiles}, Skipped={SkippedFiles}, PermanentlySkipped={PermanentlySkippedFiles}, RemovedMissing={RemovedMissingFiles}, Failed={FailedFiles}, Total={TotalFiles}, SourceHashPrefix={SourceHashPrefix}.",
dataSource.Name,
dataSource.Id,
refreshMode,
completedFiles,
newFiles,
changedFiles,
skippedFiles,
permanentlySkippedFiles,
removedMissingFiles,
failedFiles,
totalFiles,
ShortHash(metadataSnapshot.SourceHash));
}
private async Task<int> IndexOneFileAsync(
IndexStoreClient indexStore,
VectorStoreClient vectorStore,
IDataSource dataSource,
FileInfo file,
string fingerprint,
EmbeddingProvider embeddingProvider,
IProvider provider,
DataSourceEmbeddingManifest manifest,
VectorStoreOptimizationTracker optimizationTracker,
CancellationToken token)
{
var collectionName = DataSourceEmbeddingNames.GetCollectionName(dataSource.Id);
logger.LogDebug(
"Resetting stored embeddings for file '{FilePath}' in collection '{CollectionName}' before re-indexing.",
file.FullName,
collectionName);
await this.DeleteFilePointsAsync(vectorStore, collectionName, file.FullName, token);
optimizationTracker.MarkChanged();
await indexStore.DeleteFileAsync(dataSource.Id, file.FullName, token);
var parentFile = this.CreateEmbeddingStateFile(dataSource, file, fingerprint, 0, DateTimeOffset.UtcNow);
await indexStore.UpsertFileAsync(dataSource.Id, parentFile, token);
var embeddingBatchSize = Math.Max(1, embeddingProvider.EffectiveEmbeddingBatchSize);
var batch = new List<EmbeddingChunkDraft>(embeddingBatchSize);
var totalChunkCount = 0;
await foreach (var chunk in this.StreamEmbeddingChunksAsync(file.FullName, dataSource, embeddingProvider, token))
{
batch.Add(new(this.CreatePointId(dataSource.Id, fingerprint, totalChunkCount), chunk, totalChunkCount, TryExtractPageNumber(chunk)));
totalChunkCount++;
if (batch.Count >= embeddingBatchSize)
await this.FlushBatchAsync(indexStore, vectorStore, dataSource, file, fingerprint, parentFile, embeddingProvider, provider, manifest, optimizationTracker, collectionName, batch, token);
}
if (batch.Count > 0)
await this.FlushBatchAsync(indexStore, vectorStore, dataSource, file, fingerprint, parentFile, embeddingProvider, provider, manifest, optimizationTracker, collectionName, batch, token);
//
// The extraction itself did not report a failure, but nothing usable came out of it. For
// the index this is the same case as a scanned page without a text layer, which is why it
// carries a code of its own instead of an unclassified exception:
//
if (totalChunkCount == 0)
throw new FileExtractionException(FileExtractionErrorCode.NO_CONTENT, string.Format(TB("No text could be read from the file '{0}'."), file.Name));
logger.LogDebug(
"Generated {ChunkCount} chunks for file '{FilePath}' in data source '{DataSourceName}' ({DataSourceId}).",
totalChunkCount,
file.FullName,
dataSource.Name,
dataSource.Id);
return totalChunkCount;
}
private async Task FlushBatchAsync(
IndexStoreClient indexStore,
VectorStoreClient vectorStore,
IDataSource dataSource,
FileInfo file,
string fingerprint,
EmbeddingStateFile parentFile,
EmbeddingProvider embeddingProvider,
IProvider provider,
DataSourceEmbeddingManifest manifest,
VectorStoreOptimizationTracker optimizationTracker,
string collectionName,
List<EmbeddingChunkDraft> batch,
CancellationToken token)
{
logger.LogDebug(
"Requesting embeddings for batch of {ChunkCount} chunks from file '{FilePath}' in data source '{DataSourceName}' ({DataSourceId}).",
batch.Count,
file.FullName,
dataSource.Name,
dataSource.Id);
var texts = batch.Select(item => item.Text).ToList();
IReadOnlyList<IReadOnlyList<float>> vectors;
try
{
vectors = await provider.EmbedTextAsync(embeddingProvider.Model, settingsManager, token, texts);
token.ThrowIfCancellationRequested();
}
catch (OperationCanceledException) when (token.IsCancellationRequested)
{
throw;
}
catch (ProviderRequestException)
{
//
// The provider already named the cause and what to do about it. Wrapping that in a
// sentence about a batch of chunks would replace the one thing the user can act on
// with the fact that something failed:
//
throw;
}
catch (Exception exception)
{
throw new InvalidOperationException(string.Format(TB("The embedding provider was not able to embed {0} part(s) of the file '{1}'. The provider reported: {2}"), batch.Count, file.Name, exception.Message), exception);
}
if (vectors.Count != batch.Count)
throw new InvalidOperationException(string.Format(TB("The embedding provider answered with {0} vectors for {1} parts of the file '{2}'. Please select another embedding model or provider."), vectors.Count, batch.Count, file.Name));
var vectorSize = vectors.FirstOrDefault()?.Count ?? 0;
if (vectorSize <= 0)
throw new InvalidOperationException(TB("The embedding provider answered with an empty vector. Please select another embedding model or provider."));
if (vectors.Any(vector => vector.Count != vectorSize))
throw new InvalidOperationException(TB("The embedding provider answered with vectors of different sizes. Please select another embedding model or provider."));
if (vectors.Any(vector => vector.Any(value => !float.IsFinite(value))))
throw new InvalidOperationException(TB("The embedding provider answered with a vector containing an invalid number. Please select another embedding model or provider."));
if (manifest.VectorSize > 0 && manifest.VectorSize != vectorSize)
throw new InvalidOperationException(string.Format(TB("The size of the embedding vectors changed from {0} to {1}. Please save the data source again to index it from scratch."), manifest.VectorSize, vectorSize));
if (manifest.VectorSize == 0)
{
token.ThrowIfCancellationRequested();
var ensureResult = await vectorStore.EnsureVectorStoreExists(collectionName, dataSource.Name, vectorSize, token);
if (!ensureResult.Created)
{
logger.LogWarning(
"Vector store '{CollectionName}' exists for data source '{DataSourceName}' ({DataSourceId}) although no persisted embedding state exists. Replacing the orphaned store before indexing.",
collectionName,
dataSource.Name,
dataSource.Id);
await vectorStore.DeleteVectorStore(collectionName, token);
ensureResult = await vectorStore.EnsureVectorStoreExists(collectionName, dataSource.Name, vectorSize, token);
if (!ensureResult.Created)
throw new InvalidOperationException(string.Format(TB("The local index '{0}' could not be created again. Please restart AI Studio and try once more."), collectionName));
}
await indexStore.UpdateVectorSizeAsync(dataSource.Id, vectorSize, token);
manifest.VectorSize = vectorSize;
logger.LogInformation(
"Created embedding collection '{CollectionName}' with vector size {VectorSize} for data source '{DataSourceName}' ({DataSourceId}).",
collectionName,
vectorSize,
dataSource.Name,
dataSource.Id);
}
token.ThrowIfCancellationRequested();
var embeddedAtUtc = DateTimeOffset.UtcNow;
await this.UpsertPointsAsync(
vectorStore,
collectionName,
dataSource,
file,
fingerprint,
parentFile,
batch,
vectors,
embeddedAtUtc,
token);
token.ThrowIfCancellationRequested();
await indexStore.UpsertChunksAsync(
dataSource.Id,
this.CreateEmbeddingStateChunks(parentFile, batch, embeddedAtUtc),
token);
optimizationTracker.RecordStoredChunks(batch.Count);
if (optimizationTracker.StoredChunksSinceLastOptimization >= VECTOR_STORE_OPTIMIZATION_CHUNK_THRESHOLD)
await this.OptimizeCollectionIfNeededAsync(
optimizationTracker,
vectorStore,
collectionName,
dataSource,
"stored chunk threshold reached",
token);
logger.LogDebug(
"Stored {ChunkCount} embedded chunks for file '{FilePath}' in collection '{CollectionName}'.",
batch.Count,
file.FullName,
collectionName);
batch.Clear();
}
private async Task UpsertPointsAsync(
VectorStoreClient vectorStore,
string collectionName,
IDataSource dataSource,
FileInfo file,
string fingerprint,
EmbeddingStateFile parentFile,
IReadOnlyList<EmbeddingChunkDraft> batch,
IReadOnlyList<IReadOnlyList<float>> vectors,
DateTimeOffset embeddedAtUtc,
CancellationToken token)
{
var points = batch.Select((item, index) => new VectorStoragePoint(
item.ChunkId,
vectors[index],
dataSource.Id,
dataSource.Name,
dataSource.Type.ToString(),
item.ChunkId,
parentFile.ParentFileId,
file.FullName,
parentFile.AbsolutePath,
parentFile.FileName,
parentFile.RelativePath,
parentFile.FileType,
item.PageNumber,
item.ChunkIndex,
item.Text,
fingerprint,
parentFile.CreationUtc,
parentFile.LastWriteUtc,
embeddedAtUtc,
parentFile.ConfidenceLevel,
parentFile.ConfidenceLevelRank)).ToList();
await vectorStore.InsertEmbedding(collectionName, points, token);
}
private async Task DeleteFilePointsAsync(VectorStoreClient vectorStore, string collectionName, string filePath, CancellationToken token)
{
await vectorStore.DeleteEmbeddingByFile(collectionName, filePath, token);
}
private async Task CleanupFailedFileAsync(
IndexStoreClient indexStore,
VectorStoreClient vectorStore,
IDataSource dataSource,
string collectionName,
string filePath,
VectorStoreOptimizationTracker optimizationTracker,
CancellationToken token)
{
try
{
await this.DeleteFilePointsAsync(vectorStore, collectionName, filePath, token);
optimizationTracker.MarkChanged();
}
catch (OperationCanceledException) when (token.IsCancellationRequested)
{
throw;
}
catch (Exception exception)
{
logger.LogWarning(
exception,
"Could not remove vector points while cleaning up failed embedding for file '{FilePath}' in data source '{DataSourceName}' ({DataSourceId}).",
filePath,
dataSource.Name,
dataSource.Id);
}
try
{
await indexStore.DeleteFileAsync(dataSource.Id, filePath, token);
}
catch (OperationCanceledException) when (token.IsCancellationRequested)
{
throw;
}
catch (Exception exception)
{
logger.LogWarning(
exception,
"Could not remove embedding state while cleaning up failed embedding for file '{FilePath}' in data source '{DataSourceName}' ({DataSourceId}).",
filePath,
dataSource.Name,
dataSource.Id);
}
}
private async Task OptimizeCollectionIfNeededAsync(
VectorStoreOptimizationTracker optimizationTracker,
VectorStoreClient vectorStore,
string collectionName,
IDataSource dataSource,
string reason,
CancellationToken token)
{
if (!optimizationTracker.HasPendingChanges)
return;
logger.LogInformation(
"Optimizing embedding collection '{CollectionName}' for data source '{DataSourceName}' ({DataSourceId}). Reason='{Reason}', StoredChunksSinceLastOptimization={StoredChunksSinceLastOptimization}, ChunkThreshold={ChunkThreshold}.",
collectionName,
dataSource.Name,
dataSource.Id,
reason,
optimizationTracker.StoredChunksSinceLastOptimization,
VECTOR_STORE_OPTIMIZATION_CHUNK_THRESHOLD);
await vectorStore.OptimizeVectorStore(collectionName, token);
optimizationTracker.Reset();
}
private async Task DeleteCollectionAsync(string collectionName, VectorStoreClient? vectorStore, CancellationToken token)
{
vectorStore ??= await databaseClientProvider.GetVectorStoreAsync(token);
if (!vectorStore.IsAvailable)
{
logger.LogWarning("Could not delete embedding collection '{CollectionName}' because the vector store '{VectorStoreName}' is unavailable.", collectionName, vectorStore.Name);
return;
}
await vectorStore.DeleteVectorStore(collectionName, token);
}
private async Task WaitForInitialSettingsAndBootstrapAsync(CancellationToken token)
{
while (!token.IsCancellationRequested)
{
if (settingsManager.HasCompletedInitialSettingsLoad
&& !string.IsNullOrWhiteSpace(SettingsManager.ConfigDirectory)
&& !string.IsNullOrWhiteSpace(SettingsManager.DataDirectory))
{
break;
}
await Task.Delay(250, token);
}
token.ThrowIfCancellationRequested();
logger.LogInformation("Embedding background service is ready. Running the initial persisted hash check before activating file watchers.");
await this.RunInitialDataSourceHashCheckAsync(token);
}
private async Task RunInitialDataSourceHashCheckAsync(CancellationToken token)
{
if (!settingsManager.ConfigurationData.App.DataSourceIndexing.AutomaticRefresh)
{
logger.LogInformation("Automatic local data source refresh is disabled. Startup hash checks and file watchers are disabled.");
this.RemoveAllWatchers();
return;
}
if (Interlocked.Exchange(ref this.startupHashCheckStarted, 1) == 1)
return;
this.RemoveAllWatchers();
var supportedDataSources = settingsManager.ConfigurationData.DataSources
.Where(this.IsSupportedInternalDataSource)
.ToList();
logger.LogInformation(
"Starting initial persisted hash check for {DataSourceCount} supported internal data source(s). Incomplete or failed local RAG embedding state will be retried during this pass. File watchers will be activated after this check completes.",
supportedDataSources.Count);
foreach (var dataSource in supportedDataSources)
{
token.ThrowIfCancellationRequested();
try
{
await this.ProcessDataSourceRunAsync(dataSource, DataSourceEmbeddingRefreshMode.STARTUP_HASH_CHECK, token);
}
catch (OperationCanceledException) when (token.IsCancellationRequested)
{
throw;
}
catch (Exception exception)
{
logger.LogError(exception, "Initial embedding hash check failed for data source '{DataSourceName}' ({DataSourceId}).", dataSource.Name, dataSource.Id);
this.UpsertStatus(this.GetFallbackStatus(dataSource, string.Format(TB("The data source '{0}' could not be processed. The log file holds the details."), dataSource.Name)));
}
}
if (!settingsManager.ConfigurationData.App.DataSourceIndexing.AutomaticRefresh)
{
Volatile.Write(ref this.startupHashCheckCompleted, 0);
Interlocked.Exchange(ref this.startupHashCheckStarted, 0);
logger.LogInformation("Automatic local data source refresh was disabled before the initial hash check completed. File watchers remain inactive.");
this.RemoveAllWatchers();
return;
}
Volatile.Write(ref this.startupHashCheckCompleted, 1);
logger.LogInformation("Completed initial persisted hash check. Activating file watchers for automatic local data source refresh.");
this.RefreshWatchers();
}
private bool IsSupportedInternalDataSource(IDataSource dataSource)
{
//
// Local RAG is a preview feature, so nothing here may run while it is switched off. This is
// the one place to decide that: every path which scans files, starts a watcher, creates the
// index database or sends text to an embedding provider asks this question first.
//
// Checking the feature instead of relying on "no data sources configured" also covers the
// case where somebody enabled the feature, configured local data sources, and switched the
// feature off again. Their data sources stay in the settings, and without this check the
// service would keep indexing them.
//
if (!PreviewFeatures.PRE_RAG_2024.IsEnabled(settingsManager))
return false;
return dataSource is DataSourceLocalDirectory or DataSourceLocalFile;
}
private bool TryGetConfiguredDataSource(string dataSourceId, [NotNullWhen(true)] out IDataSource? dataSource)
{
dataSource = settingsManager.ConfigurationData.DataSources
.FirstOrDefault(source => source.Id.Equals(dataSourceId, StringComparison.OrdinalIgnoreCase));
return dataSource is not null;
}
private bool TryResolveEmbeddingProvider(IDataSource dataSource, [NotNullWhen(true)] out EmbeddingProvider? embeddingProvider)
=> DataSourceEmbeddingProviders.TryResolve(settingsManager, dataSource, out embeddingProvider);
private async Task<DataSourceEmbeddingManifest> EnsureCompatibleManifestAsync(
IDataSource dataSource,
EmbeddingProvider embeddingProvider,
string collectionName,
VectorStoreClient vectorStore,
IndexStoreClient indexStore,
CancellationToken token)
{
var chunkingOptions = this.GetChunkingOptions(dataSource, embeddingProvider);
var embeddingSignature = this.BuildEmbeddingSignature(dataSource, embeddingProvider, chunkingOptions);
var manifest = await indexStore.GetManifestAsync(dataSource.Id, token);
logger.LogInformation(
"Loaded persisted local RAG index manifest for data source '{DataSourceName}' ({DataSourceId}). StoredFiles={StoredFiles}, StoredPermanentFailures={StoredPermanentFailures}, StoredSourceHashPrefix={StoredSourceHashPrefix}, StoredSignaturePrefix={StoredSignaturePrefix}, CurrentSignaturePrefix={CurrentSignaturePrefix}.",
dataSource.Name,
dataSource.Id,
manifest.Files.Count,
manifest.PermanentFailures.Count,
ShortHash(manifest.SourceHash),
ShortHash(manifest.EmbeddingSignature),
ShortHash(embeddingSignature));
if (!string.Equals(manifest.EmbeddingSignature, embeddingSignature, StringComparison.Ordinal))
{
logger.LogInformation(
"Embedding configuration changed for data source '{DataSourceName}' ({DataSourceId}). Resetting persisted embedding state and collection '{CollectionName}'.",
dataSource.Name,
dataSource.Id,
collectionName);
logger.LogDebug(
"Embedding signature mismatch for data source '{DataSourceName}' ({DataSourceId}). StoredSignature='{StoredEmbeddingSignature}', CurrentSignature='{CurrentEmbeddingSignature}'.",
dataSource.Name,
dataSource.Id,
manifest.EmbeddingSignature,
embeddingSignature);
await this.ResetPersistedStateAsync(dataSource.Id, vectorStore, indexStore, token);
manifest = await indexStore.GetManifestAsync(dataSource.Id, token);
}
if (!string.Equals(manifest.EmbeddingProviderId, embeddingProvider.Id, StringComparison.OrdinalIgnoreCase) ||
!string.Equals(manifest.EmbeddingSignature, embeddingSignature, StringComparison.Ordinal))
{
manifest.EmbeddingProviderId = embeddingProvider.Id;
manifest.EmbeddingSignature = embeddingSignature;
}
await indexStore.UpsertDataSourceAsync(
dataSource.Id,
dataSource.Name,
dataSource.Type.ToString(),
manifest.EmbeddingProviderId,
manifest.EmbeddingSignature,
manifest.SourceHash,
manifest.VectorSize,
token);
return manifest;
}
private async Task<int> RemoveMissingFileEmbeddingsAsync(
VectorStoreClient vectorStore,
IndexStoreClient indexStore,
IDataSource dataSource,
string collectionName,
DataSourceEmbeddingManifest manifest,
IReadOnlyCollection<FileInfo> indexedFiles,
CancellationToken token)
{
var existingPaths = indexedFiles
.Select(file => file.FullName)
.ToHashSet(StringComparer.OrdinalIgnoreCase);
var removedFiles = 0;
foreach (var removedFilePath in manifest.Files.Keys.Except(existingPaths, StringComparer.OrdinalIgnoreCase).ToList())
{
await this.DeleteFilePointsAsync(vectorStore, collectionName, removedFilePath, token);
await indexStore.DeleteFileAsync(dataSource.Id, removedFilePath, token);
manifest.Files.Remove(removedFilePath);
removedFiles++;
logger.LogInformation(
"Removed stale embeddings for deleted file '{FilePath}' from data source '{DataSourceName}' ({DataSourceId}).",
removedFilePath,
dataSource.Name,
dataSource.Id);
}
//
// A file which is gone needs no mark keeping it out of the index. Without this, the table
// would grow with every document the user ever deleted:
//
foreach (var removedFilePath in manifest.PermanentFailures.Keys.Except(existingPaths, StringComparer.OrdinalIgnoreCase).ToList())
await this.ForgetPermanentFailureAsync(indexStore, dataSource, manifest, removedFilePath, token);
return removedFiles;
}
/// <remarks>
/// A file counts as settled when it was indexed or when it was skipped for good, both with a
/// matching fingerprint. Counting only the indexed ones would let a single unreadable document
/// send the whole folder through the slow path on every run.
/// </remarks>
private bool CanSkipDataSourceByHash(DataSourceEmbeddingManifest manifest, DataSourceMetadataSnapshot metadataSnapshot, IReadOnlyCollection<FileInfo> indexedFiles)
{
if (!string.Equals(manifest.SourceHash, metadataSnapshot.SourceHash, StringComparison.Ordinal))
return false;
if (manifest.Files.Count + manifest.PermanentFailures.Count != indexedFiles.Count)
return false;
foreach (var file in indexedFiles)
{
if (!metadataSnapshot.FileHashes.TryGetValue(file.FullName, out var currentHash))
return false;
if (manifest.Files.TryGetValue(file.FullName, out var existingRecord))
{
if (!string.Equals(existingRecord.Fingerprint, currentHash, StringComparison.Ordinal))
return false;
continue;
}
if (!manifest.PermanentFailures.TryGetValue(file.FullName, out var permanentFailure))
return false;
if (!string.Equals(permanentFailure.Fingerprint, currentHash, StringComparison.Ordinal))
return false;
}
return true;
}
/// <summary>
/// Drops the mark which keeps a file out of the index, in the store as well as in the manifest.
/// </summary>
/// <remarks>
/// Called whenever a file was read, and whenever it failed for a reason outside of itself. The
/// state heals on its own that way: a document which becomes readable, or a drive which comes
/// back, leaves nothing behind.
/// </remarks>
private async Task ForgetPermanentFailureAsync(IndexStoreClient indexStore, IDataSource dataSource, DataSourceEmbeddingManifest manifest, string filePath, CancellationToken token)
{
if (!manifest.PermanentFailures.Remove(filePath))
return;
await indexStore.DeletePermanentFailureAsync(dataSource.Id, filePath, token);
logger.LogDebug(
"Removed the permanent indexing failure of file '{FilePath}' from data source '{DataSourceName}' ({DataSourceId}).",
filePath,
dataSource.Name,
dataSource.Id);
}
private static List<DataSourceEmbeddingFailure> CreatePermanentFailureDetails(DataSourceEmbeddingManifest manifest) => manifest.PermanentFailures
.Select(failure => new DataSourceEmbeddingFailure(failure.Key, failure.Value.Message, failure.Value.OccurredAtUtc, ExtractionCode: failure.Value.Code, IsPermanent: true))
.ToList();
private static string GetFileEmbeddingReason(FileInfo file, string currentHash, EmbeddedFileRecord? existingRecord)
{
if (existingRecord is null)
return "no stored file hash exists";
var reasons = new List<string>();
if (!string.Equals(existingRecord.Fingerprint, currentHash, StringComparison.Ordinal))
reasons.Add($"stored hash {ShortHash(existingRecord.Fingerprint)} differs from current hash {ShortHash(currentHash)}");
if (existingRecord.FileSize != file.Length)
reasons.Add($"file size changed from {existingRecord.FileSize} to {file.Length} bytes");
if (existingRecord.LastWriteUtc != new DateTimeOffset(file.LastWriteTimeUtc))
reasons.Add($"last modified time changed from {existingRecord.LastWriteUtc:O} to {file.LastWriteTimeUtc:O}");
return reasons.Count == 0
? "the file hash changed"
: string.Join("; ", reasons);
}
private static string ShortHash(string value)
{
if (string.IsNullOrWhiteSpace(value))
return "<empty>";
return value.Length <= 12 ? value : value[..12];
}
private DataSourceEmbeddingStatus CreateStatus(
IDataSource dataSource,
DataSourceEmbeddingState state,
int totalFiles,
int indexedFiles,
int failedFiles,
string currentFile = "",
string lastError = "",
IReadOnlyList<DataSourceEmbeddingFailure>? failures = null,
int permanentlySkippedFiles = 0)
{
return new DataSourceEmbeddingStatus(
dataSource.Id,
dataSource.Name,
dataSource.Type,
state,
totalFiles,
indexedFiles,
failedFiles,
currentFile,
lastError,
failures?.ToList() ?? [],
permanentlySkippedFiles);
}
/// <remarks>
/// Files which were skipped for good do not make a run unsuccessful: nothing is left to try,
/// and a data source made of nothing but scanned images would otherwise ask for attention
/// forever.
/// </remarks>
private DataSourceEmbeddingStatus CreateCompletedStatus(IDataSource dataSource, int totalFiles, int indexedFiles, int failedFiles, string lastError, IReadOnlyList<DataSourceEmbeddingFailure>? failures = null, int permanentlySkippedFiles = 0)
{
return this.CreateStatus(
dataSource,
failedFiles > 0 ? DataSourceEmbeddingState.FAILED : DataSourceEmbeddingState.COMPLETED,
totalFiles,
indexedFiles,
failedFiles,
lastError: failedFiles > 0
? string.IsNullOrWhiteSpace(lastError)
? TB("Some files could not be indexed. The list below says which ones and why.")
: lastError
: string.Empty,
failures: failures,
permanentlySkippedFiles: permanentlySkippedFiles);
}
private DataSourceEmbeddingStatus GetFallbackStatus(IDataSource dataSource, string errorMessage)
{
return this.CreateStatus(
dataSource,
DataSourceEmbeddingState.FAILED,
0,
0,
1,
lastError: errorMessage,
failures: [new DataSourceEmbeddingFailure(dataSource.Name, errorMessage, DateTimeOffset.UtcNow)]);
}
private DataSourceQueueRequestResult TryReserveDataSourceQueueSlot(string dataSourceId, bool queueAfterCurrentRun)
{
lock (this.queueStateLock)
{
if (this.runningIds.ContainsKey(dataSourceId))
{
if (queueAfterCurrentRun && this.pendingQueueIds.TryAdd(dataSourceId, 0))
return DataSourceQueueRequestResult.RUNNING_MARKED_PENDING;
return DataSourceQueueRequestResult.RUNNING;
}
if (!this.queuedIds.TryAdd(dataSourceId, 0))
return DataSourceQueueRequestResult.ALREADY_QUEUED;
return DataSourceQueueRequestResult.QUEUED;
}
}
private void MarkDataSourceRunStarted(string dataSourceId)
{
lock (this.queueStateLock)
{
this.queuedIds.TryRemove(dataSourceId, out _);
this.runningIds.TryAdd(dataSourceId, 0);
}
}
private bool TryCompleteDataSourceRun(string dataSourceId, bool allowPendingRequeue)
{
lock (this.queueStateLock)
{
this.runningIds.TryRemove(dataSourceId, out _);
if (!this.pendingQueueIds.TryRemove(dataSourceId, out _))
return false;
return allowPendingRequeue && this.queuedIds.TryAdd(dataSourceId, 0);
}
}
private void ReleaseQueuedDataSourceRun(string dataSourceId)
{
lock (this.queueStateLock)
{
this.queuedIds.TryRemove(dataSourceId, out _);
}
}
private void ClearQueuedDataSourceState(string dataSourceId)
{
lock (this.queueStateLock)
{
this.queuedIds.TryRemove(dataSourceId, out _);
this.pendingQueueIds.TryRemove(dataSourceId, out _);
}
}
private DataSourceRunControl? CancelActiveDataSourceRun(IDataSource dataSource)
{
if (!this.activeRuns.TryGetValue(dataSource.Id, out var activeRun))
return null;
logger.LogInformation(
"Canceling active embedding run for deleted data source '{DataSourceName}' ({DataSourceId}).",
dataSource.Name,
dataSource.Id);
try
{
activeRun.TokenSource.Cancel();
}
catch (ObjectDisposedException)
{
return null;
}
return activeRun;
}
private async Task QueuePendingDataSourceRunAsync(string dataSourceId, CancellationToken token)
{
var dataSource = token.IsCancellationRequested
? null
: settingsManager.ConfigurationData.DataSources
.FirstOrDefault(source => source.Id.Equals(dataSourceId, StringComparison.OrdinalIgnoreCase));
if (!this.TryCompleteDataSourceRun(dataSourceId, dataSource is not null && this.IsSupportedInternalDataSource(dataSource)))
return;
if (dataSource is null)
{
this.ReleaseQueuedDataSourceRun(dataSourceId);
return;
}
logger.LogInformation("Queueing one follow-up embedding run for data source '{DataSourceName}' ({DataSourceId}) after changes arrived during the previous run.", dataSource.Name, dataSource.Id);
this.statuses.TryGetValue(dataSource.Id, out var currentStatus);
this.UpsertStatus(this.CreateStatus(
dataSource,
DataSourceEmbeddingState.QUEUED,
currentStatus?.TotalFiles ?? 0,
currentStatus?.IndexedFiles ?? 0,
currentStatus?.FailedFiles ?? 0,
lastError: currentStatus?.LastError ?? string.Empty,
failures: currentStatus?.Failures ?? []));
try
{
await this.queue.Writer.WriteAsync(new DataSourceEmbeddingQueueItem(dataSourceId, DataSourceEmbeddingRefreshMode.HASH_CHECK), token);
}
catch (OperationCanceledException) when (token.IsCancellationRequested)
{
this.ReleaseQueuedDataSourceRun(dataSourceId);
}
}
private void UpsertStatus(DataSourceEmbeddingStatus status)
{
this.statuses[status.DataSourceId] = status;
this.PublishStatusChanged();
}
private void PublishStatusChanged()
{
_ = MessageBus.INSTANCE.SendMessage(null, Event.RAG_EMBEDDING_STATUS_CHANGED, true);
}
}