sampler.py 11 KB
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# SPDX-License-Identifier: Apache-2.0
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# SPDX-FileCopyrightText: Copyright contributors to the vLLM project
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"""A layer that samples the next tokens from the model's outputs."""

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from typing import Optional

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import torch
import torch.nn as nn

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from vllm.config import LogprobsMode
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from vllm.utils import is_pin_memory_available
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from vllm.v1.outputs import LogprobsTensors, SamplerOutput
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from vllm.v1.sample.metadata import SamplingMetadata
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from vllm.v1.sample.ops.bad_words import apply_bad_words
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from vllm.v1.sample.ops.logprobs import batched_count_greater_than
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from vllm.v1.sample.ops.penalties import apply_all_penalties
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from vllm.v1.sample.ops.topk_topp_sampler import TopKTopPSampler
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_SAMPLING_EPS = 1e-5


class Sampler(nn.Module):
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    """
    A layer that samples the next tokens from the model's outputs
    with the following steps in order:

    1. If logprobs are requested:  
        a) If `logprobs_mode` is `raw_logprobs`, compute logprobs
           as the final logprobs to return.  
        b) If `logprobs_mode` is `raw_logits`, clone the logits
           as the final logprobs to return.  
    2. Convert logits to float32.  
    3. Apply allowed token ids whitelist.  
    4. Apply bad words exclusion.  
    5. Apply logit processors which are not argmax-invariant,
       i.e. that can impact greedy sampling.  
        a) Min tokens processor  
        b) Logit bias processor  
    6. Apply penalties  
        a) Repetition penalty  
        b) Frequency penalty  
        c) Presence penalty  
    7. Sample the next tokens. `sample` method performs the following steps:  
        a) If not `all_random`, perform greedy sampling. If `all_greedy`,
           return the greedily sampled tokens and final logprobs if requested.  
        b) Apply temperature.  
        c) Apply logit processors which are argmax-invariant, by default
           the min_p processor.  
        d) Apply top_k and/or top_p.  
        e) Sample the next tokens with the probability distribution.  
        f) If `all_random` or temperature >= epsilon (1e-5), return the
           randomly sampled tokens and final logprobs if requested. Else,
           return the greedily sampled tokens and logprobs if requested.  
    8. Gather the logprobs of the top `max_num_logprobs` and sampled token
       (if requested). Note that if the sampled token is within the top
       `max_num_logprobs`, the logprob will be eventually merged in
       `LogprobsProcessor` during output processing. Therefore, the
       final output may contain either `max_num_logprobs + 1` or
       `max_num_logprobs` logprobs.  
    9. Return the final `SamplerOutput`.
    """

    def __init__(self,
                 logprobs_mode: LogprobsMode = LogprobsMode.RAW_LOGPROBS):
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        super().__init__()
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        self.topk_topp_sampler = TopKTopPSampler(logprobs_mode)
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        self.pin_memory = is_pin_memory_available()
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        self.logprobs_mode = logprobs_mode
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    def forward(
        self,
        logits: torch.Tensor,
        sampling_metadata: SamplingMetadata,
    ) -> SamplerOutput:
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        # NOTE(woosuk): Use the original logits (before any penalties or
        # temperature scaling) for the top-k logprobs.
        # This is different from the V0 sampler, which uses the logits that
        # is used for sampling (after penalties and temperature scaling).
        num_logprobs = sampling_metadata.max_num_logprobs
        if num_logprobs is not None:
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            if self.logprobs_mode == LogprobsMode.RAW_LOGPROBS:
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                raw_logprobs = self.compute_logprobs(logits)
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            elif self.logprobs_mode == LogprobsMode.RAW_LOGITS:
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                raw_logprobs = logits.clone()
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        # Use float32 for the logits.
        logits = logits.to(torch.float32)
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        # Apply allowed token ids.
        logits = self.apply_allowed_token_ids(logits, sampling_metadata)
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        # Apply bad words exclusion.
        logits = self.apply_bad_words(logits, sampling_metadata)
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        # Apply logits processors which can impact greedy sampling
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        for processor in sampling_metadata.logitsprocs.non_argmax_invariant:
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            logits = processor.apply(logits)

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        # Apply penalties (e.g., min_tokens, freq_penalties).
        logits = self.apply_penalties(logits, sampling_metadata)
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        # Sample the next token.
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        sampled, processed_logprobs = self.sample(logits, sampling_metadata)
        if processed_logprobs is not None:
            raw_logprobs = processed_logprobs
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        # Convert sampled token ids to int64 (long) type to ensure compatibility
        # with subsequent operations that may use these values as indices.
        # This conversion is necessary because FlashInfer sampling operations
        # return int32 (while PyTorch argmax and topk return int64).
        sampled = sampled.long()
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        # Gather the logprobs of the topk and sampled token (if requested).
        # Get logprobs and rank tensors (if requested)
        logprobs_tensors = None if num_logprobs is None else \
            self.gather_logprobs(raw_logprobs, num_logprobs, token_ids=sampled)

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        # Use int32 to reduce the tensor size.
        sampled = sampled.to(torch.int32)

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        # These are GPU tensors.
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        sampler_output = SamplerOutput(
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            # The sampled tokens are expanded to 2D tensor with shape
            # [num_requests, 1], where each row represents one generated
            # token per request.
            sampled_token_ids=sampled.unsqueeze(-1),
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            logprobs_tensors=logprobs_tensors,
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        )
        return sampler_output

    def apply_temperature(
        self,
        logits: torch.Tensor,
        temp: torch.Tensor,
    ) -> torch.Tensor:
        # Use in-place division to avoid creating a new tensor.
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        return logits.div_(temp.unsqueeze(dim=1))
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    def greedy_sample(self, logits: torch.Tensor) -> torch.Tensor:
        return logits.argmax(dim=-1).view(-1)

    def sample(
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        self,
        logits: torch.Tensor,
        sampling_metadata: SamplingMetadata,
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    ) -> tuple[torch.Tensor, Optional[torch.Tensor]]:
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        """Sample logits based on sampling metadata.

        The various logits processing functions called in this method
        may update the logits tensor in-place.
        """

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        assert not (sampling_metadata.all_greedy
                    and sampling_metadata.all_random)
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        if sampling_metadata.all_random:
            greedy_sampled = None
        else:
            greedy_sampled = self.greedy_sample(logits)
            if sampling_metadata.all_greedy:
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                processed_logprobs = None
                if sampling_metadata.max_num_logprobs is not None:
                    if self.logprobs_mode == LogprobsMode.PROCESSED_LOGITS:
                        processed_logprobs = logits
                    elif self.logprobs_mode == LogprobsMode.PROCESSED_LOGPROBS:
                        processed_logprobs = self.compute_logprobs(logits)
                return greedy_sampled, processed_logprobs
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        assert sampling_metadata.temperature is not None

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        # Apply temperature.
        logits = self.apply_temperature(logits, sampling_metadata.temperature)

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        # Apply logits processors that only apply to random sampling
        # (argmax invariant)
        for processor in sampling_metadata.logitsprocs.argmax_invariant:
            logits = processor.apply(logits)
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        # Apply top_k and/or top_p.
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        random_sampled, processed_logprobs = self.topk_topp_sampler(
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            logits,
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            sampling_metadata.generators,
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            sampling_metadata.top_k,
            sampling_metadata.top_p,
        )
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        if greedy_sampled is None:
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            return random_sampled, processed_logprobs
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        sampled = torch.where(
            sampling_metadata.temperature < _SAMPLING_EPS,
            greedy_sampled,
            random_sampled,
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            out=greedy_sampled,  # Reuse tensor
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        )
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        return sampled, processed_logprobs
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    def compute_logprobs(self, logits: torch.Tensor) -> torch.Tensor:
        return logits.log_softmax(dim=-1, dtype=torch.float32)

    def gather_logprobs(
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        self,
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        logprobs: torch.Tensor,
        num_logprobs: int,
        token_ids: torch.Tensor,
    ) -> LogprobsTensors:
        """
        Gather logprobs for topk and sampled/prompt token.

        Args:
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          logprobs: (num tokens) x (vocab) tensor
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          num_logprobs: minimum number of logprobs to
                        retain per token
          token_ids: prompt tokens (if prompt logprobs)
                     or sampled tokens (if sampled
                     logprobs); 1D token ID tensor
                     with (num tokens) elements
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                     Must be int64.
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        Returns:
          Top-k int indices tensor, (num tokens) x (num_logprobs + 1)
          Top-k float logprobs tensor, (num tokens) x (num_logprobs + 1)
          Sampled token rank tensor, (num tokens)
        """
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        assert token_ids.dtype == torch.int64
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        # Find the topK values.
        topk_logprobs, topk_indices = torch.topk(logprobs,
                                                 num_logprobs,
                                                 dim=-1)

        # Get with the logprob of the prompt or sampled token.
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        token_ids = token_ids.unsqueeze(-1)
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        token_logprobs = logprobs.gather(-1, token_ids)

        # Compute the ranks of the actual token.
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        token_ranks = batched_count_greater_than(logprobs, token_logprobs)
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        # Concatenate together with the topk.
        indices = torch.cat((token_ids, topk_indices), dim=1)
        logprobs = torch.cat((token_logprobs, topk_logprobs), dim=1)

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        # Use int32 to reduce the tensor size.
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        indices = indices.to(torch.int32)

        return LogprobsTensors(indices, logprobs, token_ranks)
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    def apply_penalties(
        self,
        logits: torch.Tensor,
        sampling_metadata: SamplingMetadata,
    ) -> torch.Tensor:
        if not sampling_metadata.no_penalties:
            assert sampling_metadata.prompt_token_ids is not None
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            logits = apply_all_penalties(
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                logits,
                sampling_metadata.prompt_token_ids,
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                sampling_metadata.presence_penalties,
                sampling_metadata.frequency_penalties,
                sampling_metadata.repetition_penalties,
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                sampling_metadata.output_token_ids,
            )
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        return logits
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    def apply_allowed_token_ids(
        self,
        logits: torch.Tensor,
        sampling_metadata: SamplingMetadata,
    ) -> torch.Tensor:
        if sampling_metadata.allowed_token_ids_mask is not None:
            logits.masked_fill_(sampling_metadata.allowed_token_ids_mask,
                                float("-inf"))
        return logits
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    def apply_bad_words(
        self,
        logits: torch.Tensor,
        sampling_metadata: SamplingMetadata,
    ) -> torch.Tensor:
        if sampling_metadata.bad_words_token_ids:
            apply_bad_words(
                logits,
                sampling_metadata.bad_words_token_ids,
                sampling_metadata.output_token_ids,
            )
        return logits