engines.rs 11 KB
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// SPDX-FileCopyrightText: Copyright (c) 2024-2026 NVIDIA CORPORATION & AFFILIATES. All rights reserved.
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// SPDX-License-Identifier: Apache-2.0

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use std::env;
use std::sync::Arc;
use std::sync::LazyLock;
use std::time::Duration;
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use async_stream::stream;
use async_trait::async_trait;
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use dynamo_runtime::engine::{AsyncEngine, AsyncEngineContextProvider, ResponseStream};
use dynamo_runtime::pipeline::{Error, ManyOut, SingleIn};
use dynamo_runtime::protocols::annotated::Annotated;
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use crate::protocols::openai::{
    chat_completions::{NvCreateChatCompletionRequest, NvCreateChatCompletionStreamResponse},
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    completions::{NvCreateCompletionRequest, NvCreateCompletionResponse, prompt_to_string},
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};
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use crate::types::openai::embeddings::NvCreateEmbeddingRequest;
use crate::types::openai::embeddings::NvCreateEmbeddingResponse;
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//
// The engines are each in their own crate under `lib/engines`
//
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#[derive(Debug, Clone)]
pub struct MultiNodeConfig {
    /// How many nodes / hosts we are using
    pub num_nodes: u32,
    /// Unique consecutive integer to identify this node
    pub node_rank: u32,
    /// host:port of head / control node
    pub leader_addr: String,
}

impl Default for MultiNodeConfig {
    fn default() -> Self {
        MultiNodeConfig {
            num_nodes: 1,
            node_rank: 0,
            leader_addr: "".to_string(),
        }
    }
}
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//
// Example echo engines
//

/// How long to sleep between echoed tokens.
/// Default is 10ms which gives us 100 tok/s.
/// Can be configured via the DYN_TOKEN_ECHO_DELAY_MS environment variable.
pub static TOKEN_ECHO_DELAY: LazyLock<Duration> = LazyLock::new(|| {
    const DEFAULT_DELAY_MS: u64 = 10;

    let delay_ms = env::var("DYN_TOKEN_ECHO_DELAY_MS")
        .ok()
        .and_then(|val| val.parse::<u64>().ok())
        .unwrap_or(DEFAULT_DELAY_MS);

    Duration::from_millis(delay_ms)
});

/// Engine that accepts un-preprocessed requests and echos the prompt back as the response
/// Useful for testing ingress such as service-http.
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struct EchoEngine {}
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/// Validate Engine that verifies request data
pub struct ValidateEngine<E> {
    inner: E,
}

impl<E> ValidateEngine<E> {
    pub fn new(inner: E) -> Self {
        Self { inner }
    }
}

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/// Engine that dispatches requests to either OpenAICompletions
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/// or OpenAIChatCompletions engine
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pub struct EngineDispatcher<E> {
    inner: E,
}

impl<E> EngineDispatcher<E> {
    pub fn new(inner: E) -> Self {
        EngineDispatcher { inner }
    }
}

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/// Trait on request types that allows us to validate the data
pub trait ValidateRequest {
    fn validate(&self) -> Result<(), anyhow::Error>;
}

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/// Trait that allows handling both completion and chat completions requests
#[async_trait]
pub trait StreamingEngine: Send + Sync {
    async fn handle_completion(
        &self,
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        req: SingleIn<NvCreateCompletionRequest>,
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    ) -> Result<ManyOut<Annotated<NvCreateCompletionResponse>>, Error>;
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    async fn handle_chat(
        &self,
        req: SingleIn<NvCreateChatCompletionRequest>,
    ) -> Result<ManyOut<Annotated<NvCreateChatCompletionStreamResponse>>, Error>;
}

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/// Trait that allows handling embedding requests
#[async_trait]
pub trait EmbeddingEngine: Send + Sync {
    async fn handle_embedding(
        &self,
        req: SingleIn<NvCreateEmbeddingRequest>,
    ) -> Result<ManyOut<Annotated<NvCreateEmbeddingResponse>>, Error>;
}

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pub fn make_echo_engine() -> Arc<dyn StreamingEngine> {
    let engine = EchoEngine {};
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    let data = EngineDispatcher::new(engine);
    Arc::new(data)
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}

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#[async_trait]
impl
    AsyncEngine<
        SingleIn<NvCreateChatCompletionRequest>,
        ManyOut<Annotated<NvCreateChatCompletionStreamResponse>>,
        Error,
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    > for EchoEngine
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{
    async fn generate(
        &self,
        incoming_request: SingleIn<NvCreateChatCompletionRequest>,
    ) -> Result<ManyOut<Annotated<NvCreateChatCompletionStreamResponse>>, Error> {
        let (request, context) = incoming_request.transfer(());
        let ctx = context.context();
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        let mut deltas = request.response_generator(ctx.id().to_string());
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        let Some(req) = request.inner.messages.into_iter().next_back() else {
            anyhow::bail!("Empty chat messages in request");
        };
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        let prompt = match req {
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            dynamo_async_openai::types::ChatCompletionRequestMessage::User(user_msg) => {
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                match user_msg.content {
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                    dynamo_async_openai::types::ChatCompletionRequestUserMessageContent::Text(
                        prompt,
                    ) => prompt,
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                    _ => anyhow::bail!("Invalid request content field, expected Content::Text"),
                }
            }
            _ => anyhow::bail!("Invalid request type, expected User message"),
        };

        let output = stream! {
            let mut id = 1;
            for c in prompt.chars() {
                // we are returning characters not tokens, so there will be some postprocessing overhead
                tokio::time::sleep(*TOKEN_ECHO_DELAY).await;
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                let response = deltas.create_choice(0, Some(c.to_string()), None, None, None);
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                yield Annotated{ id: Some(id.to_string()), data: Some(response), event: None, comment: None };
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                id += 1;
            }

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            let response = deltas.create_choice(0, None, Some(dynamo_async_openai::types::FinishReason::Stop), None, None);
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            yield Annotated { id: Some(id.to_string()), data: Some(response), event: None, comment: None };
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        };

        Ok(ResponseStream::new(Box::pin(output), ctx))
    }
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}
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#[async_trait]
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impl
    AsyncEngine<
        SingleIn<NvCreateCompletionRequest>,
        ManyOut<Annotated<NvCreateCompletionResponse>>,
        Error,
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    > for EchoEngine
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{
    async fn generate(
        &self,
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        incoming_request: SingleIn<NvCreateCompletionRequest>,
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    ) -> Result<ManyOut<Annotated<NvCreateCompletionResponse>>, Error> {
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        let (request, context) = incoming_request.transfer(());
        let ctx = context.context();
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        let deltas = request.response_generator(ctx.id().to_string());
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        let chars_string = prompt_to_string(&request.inner.prompt);
        let output = stream! {
            let mut id = 1;
            for c in chars_string.chars() {
                tokio::time::sleep(*TOKEN_ECHO_DELAY).await;
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                let response = deltas.create_choice(0, Some(c.to_string()), None, None);
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                yield Annotated{ id: Some(id.to_string()), data: Some(response), event: None, comment: None };
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                id += 1;
            }
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            let response = deltas.create_choice(0, None, Some(dynamo_async_openai::types::CompletionFinishReason::Stop), None);
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            yield Annotated { id: Some(id.to_string()), data: Some(response), event: None, comment: None };
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        };

        Ok(ResponseStream::new(Box::pin(output), ctx))
    }
}

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#[async_trait]
impl
    AsyncEngine<
        SingleIn<NvCreateEmbeddingRequest>,
        ManyOut<Annotated<NvCreateEmbeddingResponse>>,
        Error,
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    > for EchoEngine
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{
    async fn generate(
        &self,
        _incoming_request: SingleIn<NvCreateEmbeddingRequest>,
    ) -> Result<ManyOut<Annotated<NvCreateEmbeddingResponse>>, Error> {
        unimplemented!()
    }
}

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#[async_trait]
impl<E, Req, Resp> AsyncEngine<SingleIn<Req>, ManyOut<Annotated<Resp>>, Error> for ValidateEngine<E>
where
    E: AsyncEngine<SingleIn<Req>, ManyOut<Annotated<Resp>>, Error> + Send + Sync,
    Req: ValidateRequest + Send + Sync + 'static,
    Resp: Send + Sync + 'static,
{
    async fn generate(
        &self,
        incoming_request: SingleIn<Req>,
    ) -> Result<ManyOut<Annotated<Resp>>, Error> {
        let (request, context) = incoming_request.into_parts();

        // Validate the request first
        if let Err(validation_error) = request.validate() {
            return Err(anyhow::anyhow!("Validation failed: {}", validation_error));
        }

        // Forward to inner engine if validation passes
        let validated_request = SingleIn::rejoin(request, context);
        self.inner.generate(validated_request).await
    }
}

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#[async_trait]
impl<E> StreamingEngine for EngineDispatcher<E>
where
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    E: AsyncEngine<
            SingleIn<NvCreateCompletionRequest>,
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            ManyOut<Annotated<NvCreateCompletionResponse>>,
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            Error,
        > + AsyncEngine<
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            SingleIn<NvCreateChatCompletionRequest>,
            ManyOut<Annotated<NvCreateChatCompletionStreamResponse>>,
            Error,
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        > + AsyncEngine<
            SingleIn<NvCreateEmbeddingRequest>,
            ManyOut<Annotated<NvCreateEmbeddingResponse>>,
            Error,
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        > + Send
        + Sync,
{
    async fn handle_completion(
        &self,
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        req: SingleIn<NvCreateCompletionRequest>,
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    ) -> Result<ManyOut<Annotated<NvCreateCompletionResponse>>, Error> {
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        self.inner.generate(req).await
    }

    async fn handle_chat(
        &self,
        req: SingleIn<NvCreateChatCompletionRequest>,
    ) -> Result<ManyOut<Annotated<NvCreateChatCompletionStreamResponse>>, Error> {
        self.inner.generate(req).await
    }
}

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#[async_trait]
impl<E> EmbeddingEngine for EngineDispatcher<E>
where
    E: AsyncEngine<
            SingleIn<NvCreateEmbeddingRequest>,
            ManyOut<Annotated<NvCreateEmbeddingResponse>>,
            Error,
        > + Send
        + Sync,
{
    async fn handle_embedding(
        &self,
        req: SingleIn<NvCreateEmbeddingRequest>,
    ) -> Result<ManyOut<Annotated<NvCreateEmbeddingResponse>>, Error> {
        self.inner.generate(req).await
    }
}

pub struct EmbeddingEngineAdapter(Arc<dyn EmbeddingEngine>);

impl EmbeddingEngineAdapter {
    pub fn new(engine: Arc<dyn EmbeddingEngine>) -> Self {
        EmbeddingEngineAdapter(engine)
    }
}

#[async_trait]
impl
    AsyncEngine<
        SingleIn<NvCreateEmbeddingRequest>,
        ManyOut<Annotated<NvCreateEmbeddingResponse>>,
        Error,
    > for EmbeddingEngineAdapter
{
    async fn generate(
        &self,
        req: SingleIn<NvCreateEmbeddingRequest>,
    ) -> Result<ManyOut<Annotated<NvCreateEmbeddingResponse>>, Error> {
        self.0.handle_embedding(req).await
    }
}

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pub struct StreamingEngineAdapter(Arc<dyn StreamingEngine>);

impl StreamingEngineAdapter {
    pub fn new(engine: Arc<dyn StreamingEngine>) -> Self {
        StreamingEngineAdapter(engine)
    }
}

#[async_trait]
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impl
    AsyncEngine<
        SingleIn<NvCreateCompletionRequest>,
        ManyOut<Annotated<NvCreateCompletionResponse>>,
        Error,
    > for StreamingEngineAdapter
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{
    async fn generate(
        &self,
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        req: SingleIn<NvCreateCompletionRequest>,
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    ) -> Result<ManyOut<Annotated<NvCreateCompletionResponse>>, Error> {
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        self.0.handle_completion(req).await
    }
}

#[async_trait]
impl
    AsyncEngine<
        SingleIn<NvCreateChatCompletionRequest>,
        ManyOut<Annotated<NvCreateChatCompletionStreamResponse>>,
        Error,
    > for StreamingEngineAdapter
{
    async fn generate(
        &self,
        req: SingleIn<NvCreateChatCompletionRequest>,
    ) -> Result<ManyOut<Annotated<NvCreateChatCompletionStreamResponse>>, Error> {
        self.0.handle_chat(req).await
    }
}