generate.proto 5.68 KB
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syntax = "proto3";

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package generate.v2;
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service TextGenerationService {
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    /// Model Info
    rpc Info (InfoRequest) returns (InfoResponse) {}
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    /// Service discovery
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    rpc ServiceDiscovery (ServiceDiscoveryRequest) returns (ServiceDiscoveryResponse) {}
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    /// Empties batch cache
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    rpc ClearCache (ClearCacheRequest) returns (ClearCacheResponse);
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    /// Remove requests from a cached batch
    rpc FilterBatch (FilterBatchRequest) returns (FilterBatchResponse);
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    /// Warmup the model and compute max cache size
    rpc Warmup (WarmupRequest) returns (WarmupResponse);
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    /// Prefill batch and decode first token
    rpc Prefill (PrefillRequest) returns (PrefillResponse);
    /// Decode token for a list of prefilled batches
    rpc Decode (DecodeRequest) returns (DecodeResponse);
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    /// Health check
    rpc Health (HealthRequest) returns (HealthResponse);
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}

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message HealthRequest {}
message HealthResponse {}

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/// Empty request
message InfoRequest {}

message InfoResponse {
    bool requires_padding = 1;
    string dtype = 2;
    string device_type = 3;
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    optional uint32 window_size = 4;
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    uint32 speculate = 5;
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}

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/// Empty request
message ServiceDiscoveryRequest {}

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message ServiceDiscoveryResponse {
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    /// Other shards urls
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    repeated string urls = 1;
}

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message ClearCacheRequest {
    /// Optional batch id
    optional uint64 id = 1;
}
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/// Empty response
message ClearCacheResponse {}

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message NextTokenChooserParameters {
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    /// exponential scaling output probability distribution
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    float temperature = 1;
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    /// restricting to the k highest probability elements
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    uint32 top_k = 2;
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    /// restricting to top tokens summing to prob_cut_off <= prob_cut_off
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    float top_p = 3;
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    /// restricting to top tokens summing to prob_cut_off <= prob_cut_off
    float typical_p = 4;
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    /// apply sampling on the logits
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    bool do_sample = 5;
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    /// random seed for sampling
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    uint64 seed = 6;
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    /// repetition penalty
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    float repetition_penalty = 7;
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    /// frequency penalty
    float frequency_penalty = 9;
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    /// token watermarking using "A Watermark for Large Language Models"
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    bool watermark = 8;
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}

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message StoppingCriteriaParameters {
    /// Maximum number of generated tokens
    uint32 max_new_tokens = 1;
    /// Optional stopping sequences
    repeated string stop_sequences = 2;
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    /// Ignore end of sequence token
    /// used for benchmarking
    bool ignore_eos_token = 3;
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}

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message Request {
    /// Request ID
    uint64 id = 1;
    /// The generation context
    string inputs = 2;
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    /// Context truncation
    uint32 truncate = 3;
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    /// Next Token Chooser Parameters
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    NextTokenChooserParameters parameters = 4;
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    /// Stopping Criteria Parameters
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    StoppingCriteriaParameters stopping_parameters = 5;
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    /// Return prefill logprobs
    bool prefill_logprobs = 6;
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    /// Return most likely n tokens
    uint32 top_n_tokens = 7;
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}

message Batch {
    /// Batch ID
    uint64 id = 1;
    /// Individual requests
    repeated Request requests = 2;
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    /// Batch size (==len(requests))
    uint32 size = 3;
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    /// Maximum number of tokens this batch will grow to
    uint32 max_tokens = 4;
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}

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message CachedBatch {
    /// Batch ID
    uint64 id = 1;
    /// Individual requests ids
    repeated uint64 request_ids = 2;
    /// Batch size (==len(requests))
    uint32 size = 3;
    /// Maximum number of tokens this batch will grow to
    uint32 max_tokens = 4;
}

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enum FinishReason {
    FINISH_REASON_LENGTH = 0;
    FINISH_REASON_EOS_TOKEN = 1;
    FINISH_REASON_STOP_SEQUENCE = 2;
}

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message GeneratedText {
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    /// Output
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    string text = 1;
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    /// Number of generated tokens
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    uint32 generated_tokens = 2;
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    /// Finish reason
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    FinishReason finish_reason = 3;
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    /// Seed
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    optional uint64 seed = 4;
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}

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message Tokens {
    /// Token IDs
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    repeated uint32 ids = 1;
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    /// Logprobs
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    repeated float logprobs = 2;
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    /// tokens
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    repeated string texts = 3;
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    /// special
    repeated bool is_special = 4;
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}

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message Generation {
    /// Request ID
    uint64 request_id = 1;
    /// Prefill tokens (optional)
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    Tokens prefill_tokens = 2;
    Tokens tokens = 3;
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    /// Complete generated text
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    optional GeneratedText generated_text = 4;
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    /// Top tokens
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    repeated Tokens top_tokens = 5;
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}

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message FilterBatchRequest {
    /// Batch ID
    uint64 batch_id = 1;
    /// Requests to keep
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    repeated uint64 request_ids = 2;
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}

message FilterBatchResponse {
    /// Filtered Batch (cached)
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    CachedBatch batch = 1;
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}


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message PrefillRequest {
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    /// Batch
    Batch batch = 1;
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}

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message PrefillResponse {
    /// Generation
    repeated Generation generations = 1;
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    /// Next batch (cached)
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    optional CachedBatch batch = 2;
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    /// Forward elapsed time in nanoseconds
    uint64 forward_ns = 3;
    /// Decode elapsed time in nanoseconds
    uint64 decode_ns = 4;
    /// Total elapsed time in nanoseconds
    uint64 total_ns = 5;
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}

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message DecodeRequest {
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    /// Cached batches
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    repeated CachedBatch batches = 1;
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}
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message DecodeResponse {
    /// Decodes
    repeated Generation generations = 1;
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    /// Next batch (cached)
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    optional CachedBatch batch = 2;
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    /// Forward elapsed time in nanoseconds
    uint64 forward_ns = 3;
    /// Decode elapsed time in nanoseconds
    uint64 decode_ns = 4;
    /// Total elapsed time in nanoseconds
    uint64 total_ns = 5;
    /// Concatenate elapsed time in nanoseconds
    optional uint64 concat_ns = 6;
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}
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message WarmupRequest {
    /// Batch to warmup on
    Batch batch = 1;
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    uint32 max_input_length = 2;
    uint32 max_prefill_tokens = 3;
    uint32 max_total_tokens = 4;
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}

/// Empty response
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message WarmupResponse {
    /// Maximum number of tokens supported by the model
    optional uint32 max_supported_total_tokens = 1;
}