brainy/src/pipeline.ts
2025-06-24 11:41:30 -07:00

919 lines
30 KiB
TypeScript

/**
* Unified Pipeline
*
* This module combines the functionality of the primary augmentation pipeline and the streamlined pipeline
* into a single, unified pipeline system. It provides both the registry functionality of the primary pipeline
* and the simplified execution API of the streamlined pipeline.
*/
import {
IAugmentation,
AugmentationType,
AugmentationResponse,
IWebSocketSupport,
BrainyAugmentations
} from './types/augmentations.js'
import { AugmentationRegistry, IPipeline } from './types/pipelineTypes.js'
import { isThreadingAvailable } from './utils/environment.js'
import { executeInThread } from './utils/workerUtils.js'
import { executeAugmentation } from './augmentationFactory.js'
import { setDefaultPipeline } from './augmentationRegistry.js'
/**
* Execution mode for the pipeline
*/
export enum ExecutionMode {
SEQUENTIAL = 'sequential',
PARALLEL = 'parallel',
FIRST_SUCCESS = 'firstSuccess',
FIRST_RESULT = 'firstResult',
THREADED = 'threaded' // Execute in separate threads when available
}
/**
* Options for pipeline execution
*/
export interface PipelineOptions {
mode?: ExecutionMode;
timeout?: number;
stopOnError?: boolean;
forceThreading?: boolean; // Force threading even if not in THREADED mode
disableThreading?: boolean; // Disable threading even if in THREADED mode
}
/**
* Default pipeline options
*/
const DEFAULT_PIPELINE_OPTIONS: PipelineOptions = {
mode: ExecutionMode.SEQUENTIAL,
timeout: 30000,
stopOnError: false,
forceThreading: false,
disableThreading: false
}
/**
* Result of a pipeline execution
*/
export interface PipelineResult<T> {
results: AugmentationResponse<T>[];
errors: Error[];
successful: AugmentationResponse<T>[];
}
/**
* Pipeline class
*
* Manages multiple augmentations of each type and provides methods to execute them.
* Implements the IPipeline interface to avoid circular dependencies.
*/
export class Pipeline implements IPipeline {
private registry: AugmentationRegistry = {
sense: [],
conduit: [],
cognition: [],
memory: [],
perception: [],
dialog: [],
activation: [],
webSocket: []
}
/**
* Register an augmentation with the pipeline
*
* @param augmentation The augmentation to register
* @returns The pipeline instance for chaining
*/
public register<T extends IAugmentation>(augmentation: T): Pipeline {
let registered = false
// Check for specific augmentation types
if (this.isAugmentationType<BrainyAugmentations.ISenseAugmentation>(
augmentation,
'processRawData',
'listenToFeed'
)) {
this.registry.sense.push(augmentation)
registered = true
} else if (this.isAugmentationType<BrainyAugmentations.IConduitAugmentation>(
augmentation,
'establishConnection',
'readData',
'writeData',
'monitorStream'
)) {
this.registry.conduit.push(augmentation)
registered = true
} else if (this.isAugmentationType<BrainyAugmentations.ICognitionAugmentation>(
augmentation,
'reason',
'infer',
'executeLogic'
)) {
this.registry.cognition.push(augmentation)
registered = true
} else if (this.isAugmentationType<BrainyAugmentations.IMemoryAugmentation>(
augmentation,
'storeData',
'retrieveData',
'updateData',
'deleteData',
'listDataKeys'
)) {
this.registry.memory.push(augmentation)
registered = true
} else if (this.isAugmentationType<BrainyAugmentations.IPerceptionAugmentation>(
augmentation,
'interpret',
'organize',
'generateVisualization'
)) {
this.registry.perception.push(augmentation)
registered = true
} else if (this.isAugmentationType<BrainyAugmentations.IDialogAugmentation>(
augmentation,
'processUserInput',
'generateResponse',
'manageContext'
)) {
this.registry.dialog.push(augmentation)
registered = true
} else if (this.isAugmentationType<BrainyAugmentations.IActivationAugmentation>(
augmentation,
'triggerAction',
'generateOutput',
'interactExternal'
)) {
this.registry.activation.push(augmentation)
registered = true
}
// Check if the augmentation supports WebSocket
if (this.isAugmentationType<IWebSocketSupport>(
augmentation,
'connectWebSocket',
'sendWebSocketMessage',
'onWebSocketMessage',
'closeWebSocket'
)) {
this.registry.webSocket.push(augmentation as IWebSocketSupport)
registered = true
}
// If the augmentation wasn't registered as any known type, throw an error
if (!registered) {
throw new Error(`Unknown augmentation type: ${augmentation.name}`)
}
return this
}
/**
* Unregister an augmentation from the pipeline
*
* @param augmentationName The name of the augmentation to unregister
* @returns The pipeline instance for chaining
*/
public unregister(augmentationName: string): Pipeline {
let found = false
// Remove from all registries
for (const type in this.registry) {
const typedRegistry = this.registry[type as keyof AugmentationRegistry]
const index = typedRegistry.findIndex(aug => aug.name === augmentationName)
if (index !== -1) {
typedRegistry.splice(index, 1)
found = true
}
}
return this
}
/**
* Initialize all registered augmentations
*
* @returns A promise that resolves when all augmentations are initialized
*/
public async initialize(): Promise<void> {
const allAugmentations = this.getAllAugmentations()
await Promise.all(
allAugmentations.map(augmentation =>
augmentation.initialize().catch(error => {
console.error(`Failed to initialize augmentation ${augmentation.name}:`, error)
})
)
)
}
/**
* Shut down all registered augmentations
*
* @returns A promise that resolves when all augmentations are shut down
*/
public async shutDown(): Promise<void> {
const allAugmentations = this.getAllAugmentations()
await Promise.all(
allAugmentations.map(augmentation =>
augmentation.shutDown().catch(error => {
console.error(`Failed to shut down augmentation ${augmentation.name}:`, error)
})
)
)
}
/**
* Get all registered augmentations
*
* @returns An array of all registered augmentations
*/
public getAllAugmentations(): IAugmentation[] {
// Create a Set to avoid duplicates (an augmentation might be in multiple registries)
const allAugmentations = new Set<IAugmentation>([
...this.registry.sense,
...this.registry.conduit,
...this.registry.cognition,
...this.registry.memory,
...this.registry.perception,
...this.registry.dialog,
...this.registry.activation,
...this.registry.webSocket
])
// Convert back to array
return Array.from(allAugmentations)
}
/**
* Get all augmentations of a specific type
*
* @param type The type of augmentation to get
* @returns An array of all augmentations of the specified type
*/
public getAugmentationsByType(type: AugmentationType): IAugmentation[] {
switch (type) {
case AugmentationType.SENSE:
return [...this.registry.sense]
case AugmentationType.CONDUIT:
return [...this.registry.conduit]
case AugmentationType.COGNITION:
return [...this.registry.cognition]
case AugmentationType.MEMORY:
return [...this.registry.memory]
case AugmentationType.PERCEPTION:
return [...this.registry.perception]
case AugmentationType.DIALOG:
return [...this.registry.dialog]
case AugmentationType.ACTIVATION:
return [...this.registry.activation]
case AugmentationType.WEBSOCKET:
return [...this.registry.webSocket]
default:
return []
}
}
/**
* Get all available augmentation types
*
* @returns An array of all augmentation types that have at least one registered augmentation
*/
public getAvailableAugmentationTypes(): AugmentationType[] {
const availableTypes: AugmentationType[] = []
if (this.registry.sense.length > 0) availableTypes.push(AugmentationType.SENSE)
if (this.registry.conduit.length > 0) availableTypes.push(AugmentationType.CONDUIT)
if (this.registry.cognition.length > 0) availableTypes.push(AugmentationType.COGNITION)
if (this.registry.memory.length > 0) availableTypes.push(AugmentationType.MEMORY)
if (this.registry.perception.length > 0) availableTypes.push(AugmentationType.PERCEPTION)
if (this.registry.dialog.length > 0) availableTypes.push(AugmentationType.DIALOG)
if (this.registry.activation.length > 0) availableTypes.push(AugmentationType.ACTIVATION)
if (this.registry.webSocket.length > 0) availableTypes.push(AugmentationType.WEBSOCKET)
return availableTypes
}
/**
* Get all WebSocket-supporting augmentations
*
* @returns An array of all augmentations that support WebSocket connections
*/
public getWebSocketAugmentations(): IWebSocketSupport[] {
return [...this.registry.webSocket]
}
/**
* Check if an augmentation is of a specific type
*
* @param augmentation The augmentation to check
* @param methods The methods that should be present on the augmentation
* @returns True if the augmentation is of the specified type
*/
private isAugmentationType<T extends IAugmentation>(
augmentation: IAugmentation,
...methods: (keyof T)[]
): augmentation is T {
// First check that the augmentation has all the required base methods
const baseMethodsExist = [
'initialize',
'shutDown',
'getStatus'
].every(method => typeof (augmentation as any)[method] === 'function')
if (!baseMethodsExist) {
return false
}
// Then check that it has all the specific methods for this type
return methods.every(method => typeof (augmentation as any)[method] === 'function')
}
/**
* Determines if threading should be used based on options and environment
*
* @param options The pipeline options
* @returns True if threading should be used, false otherwise
*/
private shouldUseThreading(options: PipelineOptions): boolean {
// If threading is explicitly disabled, don't use it
if (options.disableThreading) {
return false
}
// If threading is explicitly forced, use it if available
if (options.forceThreading) {
return isThreadingAvailable()
}
// If in THREADED mode, use threading if available
if (options.mode === ExecutionMode.THREADED) {
return isThreadingAvailable()
}
// Otherwise, don't use threading
return false
}
/**
* Executes a method on multiple augmentations using the specified execution mode
*
* @param augmentations The augmentations to execute the method on
* @param method The method to execute
* @param args The arguments to pass to the method
* @param options Options for the execution
* @returns A promise that resolves with the results
*/
public async execute<T>(
augmentations: IAugmentation[],
method: string,
args: any[] = [],
options: PipelineOptions = {}
): Promise<PipelineResult<T>> {
const opts = { ...DEFAULT_PIPELINE_OPTIONS, ...options }
const enabledAugmentations = augmentations.filter(aug => aug.enabled !== false)
if (enabledAugmentations.length === 0) {
return { results: [], errors: [], successful: [] }
}
const result: PipelineResult<T> = {
results: [],
errors: [],
successful: []
}
// Create a function to execute with timeout
const executeWithTimeout = async (
augmentation: IAugmentation
): Promise<AugmentationResponse<T>> => {
try {
// Create a timeout promise if a timeout is specified
if (opts.timeout) {
const timeoutPromise = new Promise<never>((_, reject) => {
setTimeout(() => {
reject(
new Error(`Timeout executing ${method} on ${augmentation.name}`)
)
}, opts.timeout)
})
// Check if threading should be used
const useThreading = this.shouldUseThreading(opts)
// Execute the method on the augmentation, using threading if appropriate
let methodPromise: Promise<AugmentationResponse<T>>
if (useThreading) {
// Execute in a separate thread
try {
// Create a function that can be serialized and executed in a worker
const workerFn = (...workerArgs: any[]) => {
// This function will be stringified and executed in the worker
// It needs to be self-contained
const augFn = augmentation[method as string] as Function
return augFn.apply(augmentation, workerArgs)
}
methodPromise = executeInThread<AugmentationResponse<T>>(workerFn.toString(), args)
} catch (threadError) {
console.warn(`Failed to execute in thread, falling back to main thread: ${threadError}`)
// Fall back to executing in the main thread
methodPromise = Promise.resolve((augmentation[method] as Function)(...args) as AugmentationResponse<T>)
}
} else {
// Execute in the main thread
methodPromise = Promise.resolve((augmentation[method] as Function)(...args) as AugmentationResponse<T>)
}
// Race the method promise against the timeout promise
return await Promise.race([methodPromise, timeoutPromise])
} else {
// No timeout, just execute the method
return await executeAugmentation<any, T>(augmentation, method, ...args)
}
} catch (error) {
result.errors.push(
error instanceof Error ? error : new Error(String(error))
)
return {
success: false,
data: null as any,
error: error instanceof Error ? error.message : String(error)
}
}
}
// Execute based on the specified mode
switch (opts.mode) {
case ExecutionMode.PARALLEL:
case ExecutionMode.THREADED:
// Execute all augmentations in parallel
result.results = await Promise.all(
enabledAugmentations.map((aug) => executeWithTimeout(aug))
)
break
case ExecutionMode.FIRST_SUCCESS:
// Execute augmentations sequentially until one succeeds
for (const augmentation of enabledAugmentations) {
const response = await executeWithTimeout(augmentation)
result.results.push(response)
if (response.success) {
break
}
}
break
case ExecutionMode.FIRST_RESULT:
// Execute augmentations sequentially until one returns a non-null result
for (const augmentation of enabledAugmentations) {
const response = await executeWithTimeout(augmentation)
result.results.push(response)
if (
response.success &&
response.data !== null &&
response.data !== undefined
) {
break
}
}
break
case ExecutionMode.SEQUENTIAL:
default:
// Execute augmentations sequentially
for (const augmentation of enabledAugmentations) {
const response = await executeWithTimeout(augmentation)
result.results.push(response)
// Check if we need to stop on error
if (opts.stopOnError && !response.success) {
break
}
}
break
}
// Filter successful results
result.successful = result.results.filter((r) => r.success)
return result
}
/**
* Executes a method on augmentations of a specific type
*
* @param type The type of augmentations to execute the method on
* @param method The method to execute
* @param args The arguments to pass to the method
* @param options Options for the execution
* @returns A promise that resolves with the results
*/
public async executeByType<T>(
type: AugmentationType,
method: string,
args: any[] = [],
options: PipelineOptions = {}
): Promise<PipelineResult<T>> {
const augmentations = this.getAugmentationsByType(type)
return this.execute<T>(augmentations, method, args, options)
}
/**
* Executes a method on a single augmentation with automatic error handling
*
* @param augmentation The augmentation to execute the method on
* @param method The method to execute
* @param args The arguments to pass to the method
* @returns A promise that resolves with the result
*/
public async executeSingle<T>(
augmentation: IAugmentation,
method: string,
...args: any[]
): Promise<AugmentationResponse<T>> {
return executeAugmentation<any, T>(augmentation, method, ...args)
}
/**
* Process static data through a pipeline of augmentations
*
* @param data The data to process
* @param pipeline An array of processing steps, each with an augmentation, method, and optional args transformer
* @param options Options for the execution
* @returns A promise that resolves with the final result
*/
public async processStaticData<T, R = any>(
data: T,
pipeline: Array<{
augmentation: IAugmentation
method: string
transformArgs?: (data: any, prevResult?: any) => any[]
}>,
options: PipelineOptions = {}
): Promise<AugmentationResponse<R>> {
let currentData = data
let prevResult: any = undefined
for (const step of pipeline) {
// Transform args if a transformer is provided, otherwise use the current data as the only arg
const args = step.transformArgs
? step.transformArgs(currentData, prevResult)
: [currentData]
// Execute the method
const result = await this.executeSingle<any>(
step.augmentation,
step.method,
...args
)
// If the step failed, return the error
if (!result.success) {
return result as AugmentationResponse<R>
}
// Update the current data for the next step
currentData = result.data
prevResult = result
}
// Return the final result
return prevResult as AugmentationResponse<R>
}
/**
* Process streaming data through a pipeline of augmentations
*
* @param source The source augmentation that provides the data stream
* @param sourceMethod The method on the source augmentation that provides the data stream
* @param sourceArgs The arguments to pass to the source method
* @param pipeline An array of processing steps, each with an augmentation, method, and optional args transformer
* @param callback Function to call with the results of processing each data item
* @param options Options for the execution
* @returns A promise that resolves when the pipeline is set up
*/
public async processStreamingData<T>(
source: IAugmentation,
sourceMethod: string,
sourceArgs: any[],
pipeline: Array<{
augmentation: IAugmentation
method: string
transformArgs?: (data: any, prevResult?: any) => any[]
}>,
callback: (result: AugmentationResponse<T>) => void,
options: PipelineOptions = {}
): Promise<void> {
// Create a chain of processors
const processData = async (data: any) => {
let currentData = data
let prevResult: any = undefined
for (const step of pipeline) {
// Transform args if a transformer is provided, otherwise use the current data as the only arg
const args = step.transformArgs
? step.transformArgs(currentData, prevResult)
: [currentData]
// Execute the method
const result = await this.executeSingle<any>(
step.augmentation,
step.method,
...args
)
// If the step failed, return the error
if (!result.success) {
callback(result as AugmentationResponse<T>)
return
}
// Update the current data for the next step
currentData = result.data
prevResult = result
}
// Call the callback with the final result
callback(prevResult as AugmentationResponse<T>)
}
// The last argument to the source method should be a callback that receives the data
const dataCallback = (data: any) => {
processData(data).catch((error) => {
console.error('Error processing streaming data:', error)
callback({
success: false,
data: null as any,
error: error instanceof Error ? error.message : String(error)
})
})
}
// Execute the source method with the provided args and the data callback
await this.executeSingle(source, sourceMethod, ...sourceArgs, dataCallback)
}
/**
* Create a reusable pipeline for processing data
*
* @param pipeline An array of processing steps
* @param options Options for the execution
* @returns A function that processes data through the pipeline
*/
public createPipeline<T, R>(
pipeline: Array<{
augmentation: IAugmentation
method: string
transformArgs?: (data: any, prevResult?: any) => any[]
}>,
options: PipelineOptions = {}
): (data: T) => Promise<AugmentationResponse<R>> {
return (data: T) => this.processStaticData<T, R>(data, pipeline, options)
}
/**
* Create a reusable streaming pipeline
*
* @param source The source augmentation
* @param sourceMethod The method on the source augmentation
* @param pipeline An array of processing steps
* @param options Options for the execution
* @returns A function that sets up the streaming pipeline
*/
public createStreamingPipeline<T, R>(
source: IAugmentation,
sourceMethod: string,
pipeline: Array<{
augmentation: IAugmentation
method: string
transformArgs?: (data: any, prevResult?: any) => any[]
}>,
options: PipelineOptions = {}
): (
sourceArgs: any[],
callback: (result: AugmentationResponse<R>) => void
) => Promise<void> {
return (
sourceArgs: any[],
callback: (result: AugmentationResponse<R>) => void
) =>
this.processStreamingData<R>(
source,
sourceMethod,
sourceArgs,
pipeline,
callback,
options
)
}
// Legacy methods for backward compatibility
/**
* Execute a sense pipeline (legacy method)
*/
public async executeSensePipeline<
M extends keyof BrainyAugmentations.ISenseAugmentation & string,
R extends BrainyAugmentations.ISenseAugmentation[M] extends (...args: any[]) => AugmentationResponse<infer U> ? U : never
>(
method: M & (BrainyAugmentations.ISenseAugmentation[M] extends (...args: any[]) => any ? M : never),
args: Parameters<Extract<BrainyAugmentations.ISenseAugmentation[M], (...args: any[]) => any>>,
options: PipelineOptions = {}
): Promise<Promise<{ success: boolean; data: R; error?: string }>[]> {
const result = await this.executeByType<R>(AugmentationType.SENSE, method, args, options)
return result.results.map(r => Promise.resolve(r))
}
/**
* Execute a conduit pipeline (legacy method)
*/
public async executeConduitPipeline<
M extends keyof BrainyAugmentations.IConduitAugmentation & string,
R extends BrainyAugmentations.IConduitAugmentation[M] extends (...args: any[]) => AugmentationResponse<infer U> ? U : never
>(
method: M & (BrainyAugmentations.IConduitAugmentation[M] extends (...args: any[]) => any ? M : never),
args: Parameters<Extract<BrainyAugmentations.IConduitAugmentation[M], (...args: any[]) => any>>,
options: PipelineOptions = {}
): Promise<Promise<{ success: boolean; data: R; error?: string }>[]> {
const result = await this.executeByType<R>(AugmentationType.CONDUIT, method, args, options)
return result.results.map(r => Promise.resolve(r))
}
/**
* Execute a cognition pipeline (legacy method)
*/
public async executeCognitionPipeline<
M extends keyof BrainyAugmentations.ICognitionAugmentation & string,
R extends BrainyAugmentations.ICognitionAugmentation[M] extends (...args: any[]) => AugmentationResponse<infer U> ? U : never
>(
method: M & (BrainyAugmentations.ICognitionAugmentation[M] extends (...args: any[]) => any ? M : never),
args: Parameters<Extract<BrainyAugmentations.ICognitionAugmentation[M], (...args: any[]) => any>>,
options: PipelineOptions = {}
): Promise<Promise<{ success: boolean; data: R; error?: string }>[]> {
const result = await this.executeByType<R>(AugmentationType.COGNITION, method, args, options)
return result.results.map(r => Promise.resolve(r))
}
/**
* Execute a memory pipeline (legacy method)
*/
public async executeMemoryPipeline<
M extends keyof BrainyAugmentations.IMemoryAugmentation & string,
R extends BrainyAugmentations.IMemoryAugmentation[M] extends (...args: any[]) => AugmentationResponse<infer U> ? U : never
>(
method: M & (BrainyAugmentations.IMemoryAugmentation[M] extends (...args: any[]) => any ? M : never),
args: Parameters<Extract<BrainyAugmentations.IMemoryAugmentation[M], (...args: any[]) => any>>,
options: PipelineOptions = {}
): Promise<Promise<{ success: boolean; data: R; error?: string }>[]> {
const result = await this.executeByType<R>(AugmentationType.MEMORY, method, args, options)
return result.results.map(r => Promise.resolve(r))
}
/**
* Execute a perception pipeline (legacy method)
*/
public async executePerceptionPipeline<
M extends keyof BrainyAugmentations.IPerceptionAugmentation & string,
R extends BrainyAugmentations.IPerceptionAugmentation[M] extends (...args: any[]) => AugmentationResponse<infer U> ? U : never
>(
method: M & (BrainyAugmentations.IPerceptionAugmentation[M] extends (...args: any[]) => any ? M : never),
args: Parameters<Extract<BrainyAugmentations.IPerceptionAugmentation[M], (...args: any[]) => any>>,
options: PipelineOptions = {}
): Promise<Promise<{ success: boolean; data: R; error?: string }>[]> {
const result = await this.executeByType<R>(AugmentationType.PERCEPTION, method, args, options)
return result.results.map(r => Promise.resolve(r))
}
/**
* Execute a dialog pipeline (legacy method)
*/
public async executeDialogPipeline<
M extends keyof BrainyAugmentations.IDialogAugmentation & string,
R extends BrainyAugmentations.IDialogAugmentation[M] extends (...args: any[]) => AugmentationResponse<infer U> ? U : never
>(
method: M & (BrainyAugmentations.IDialogAugmentation[M] extends (...args: any[]) => any ? M : never),
args: Parameters<Extract<BrainyAugmentations.IDialogAugmentation[M], (...args: any[]) => any>>,
options: PipelineOptions = {}
): Promise<Promise<{ success: boolean; data: R; error?: string }>[]> {
const result = await this.executeByType<R>(AugmentationType.DIALOG, method, args, options)
return result.results.map(r => Promise.resolve(r))
}
/**
* Execute an activation pipeline (legacy method)
*/
public async executeActivationPipeline<
M extends keyof BrainyAugmentations.IActivationAugmentation & string,
R extends BrainyAugmentations.IActivationAugmentation[M] extends (...args: any[]) => AugmentationResponse<infer U> ? U : never
>(
method: M & (BrainyAugmentations.IActivationAugmentation[M] extends (...args: any[]) => any ? M : never),
args: Parameters<Extract<BrainyAugmentations.IActivationAugmentation[M], (...args: any[]) => any>>,
options: PipelineOptions = {}
): Promise<Promise<{ success: boolean; data: R; error?: string }>[]> {
const result = await this.executeByType<R>(AugmentationType.ACTIVATION, method, args, options)
return result.results.map(r => Promise.resolve(r))
}
}
// Create and export a default instance of the pipeline
export const pipeline = new Pipeline()
// Set the default pipeline instance for the augmentation registry
// This breaks the circular dependency between pipeline.ts and augmentationRegistry.ts
setDefaultPipeline(pipeline)
// Re-export the legacy pipeline for backward compatibility
export const augmentationPipeline = pipeline
// Re-export the streamlined execution functions for backward compatibility
export const executeStreamlined = <T>(
augmentations: IAugmentation[],
method: string,
args: any[] = [],
options: PipelineOptions = {}
): Promise<PipelineResult<T>> => {
return pipeline.execute<T>(augmentations, method, args, options)
}
export const executeByType = <T>(
type: AugmentationType,
method: string,
args: any[] = [],
options: PipelineOptions = {}
): Promise<PipelineResult<T>> => {
return pipeline.executeByType<T>(type, method, args, options)
}
export const executeSingle = <T>(
augmentation: IAugmentation,
method: string,
...args: any[]
): Promise<AugmentationResponse<T>> => {
return pipeline.executeSingle<T>(augmentation, method, ...args)
}
export const processStaticData = <T, R = any>(
data: T,
pipelineSteps: Array<{
augmentation: IAugmentation
method: string
transformArgs?: (data: any, prevResult?: any) => any[]
}>,
options: PipelineOptions = {}
): Promise<AugmentationResponse<R>> => {
return pipeline.processStaticData<T, R>(data, pipelineSteps, options)
}
export const processStreamingData = <T>(
source: IAugmentation,
sourceMethod: string,
sourceArgs: any[],
pipelineSteps: Array<{
augmentation: IAugmentation
method: string
transformArgs?: (data: any, prevResult?: any) => any[]
}>,
callback: (result: AugmentationResponse<T>) => void,
options: PipelineOptions = {}
): Promise<void> => {
return pipeline.processStreamingData<T>(source, sourceMethod, sourceArgs, pipelineSteps, callback, options)
}
export const createPipeline = <T, R>(
pipelineSteps: Array<{
augmentation: IAugmentation
method: string
transformArgs?: (data: any, prevResult?: any) => any[]
}>,
options: PipelineOptions = {}
): (data: T) => Promise<AugmentationResponse<R>> => {
return pipeline.createPipeline<T, R>(pipelineSteps, options)
}
export const createStreamingPipeline = <T, R>(
source: IAugmentation,
sourceMethod: string,
pipelineSteps: Array<{
augmentation: IAugmentation
method: string
transformArgs?: (data: any, prevResult?: any) => any[]
}>,
options: PipelineOptions = {}
): (
sourceArgs: any[],
callback: (result: AugmentationResponse<R>) => void
) => Promise<void> => {
return pipeline.createStreamingPipeline<T, R>(source, sourceMethod, pipelineSteps, options)
}
// For backward compatibility with StreamlinedExecutionMode
export const StreamlinedExecutionMode = ExecutionMode
export type StreamlinedPipelineOptions = PipelineOptions
export type StreamlinedPipelineResult<T> = PipelineResult<T>