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589 lines
21 KiB
Python
589 lines
21 KiB
Python
import weakref
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import torch
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from sglang.srt.mem_cache.allocator.base import BaseTokenToKVPoolAllocator
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from sglang.srt.mem_cache.allocator.paged import PagedTokenToKVPoolAllocator
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from sglang.srt.mem_cache.deepseek_v4_memory_pool import (
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DeepSeekV4TokenToKVPool,
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HiSparseC4DevicePool,
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)
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from sglang.srt.mem_cache.hisparse_memory_pool import HiSparseDSATokenToKVPool
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from sglang.srt.utils.common import get_num_new_pages
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class HiSparseTokenToKVPoolAllocator(BaseTokenToKVPoolAllocator):
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def __init__(
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self,
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size: int,
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page_size: int,
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dtype: torch.dtype,
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device: torch.device,
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kvcache: HiSparseDSATokenToKVPool,
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need_sort: bool,
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host_to_device_ratio: int = 2,
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):
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self._kvcache = kvcache
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self._size_full = size * host_to_device_ratio
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self._size_hisparse = size
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self.compress_ratio = 1
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self.dtype = dtype
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self.device = device
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self.page_size = page_size
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self.need_sort = need_sort
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self.logical_attn_allocator = PagedTokenToKVPoolAllocator(
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self._size_full,
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self.page_size,
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self.dtype,
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self.device,
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kvcache,
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need_sort,
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)
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self.hisparse_attn_allocator = PagedTokenToKVPoolAllocator(
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self._size_hisparse,
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self.page_size,
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self.dtype,
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self.device,
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kvcache,
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need_sort,
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)
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self.full_to_hisparse_device_index_mapping = torch.cat(
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[
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torch.zeros(
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self._size_full + self.page_size,
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dtype=torch.int64,
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device=self.device,
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),
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torch.tensor([-1], dtype=torch.int64, device=self.device),
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]
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)
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self.free_pages = None
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self.release_pages = None
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self.is_not_in_free_group = True
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self.free_group = []
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self.clear()
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self._kvcache.register_mapping(
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weakref.proxy(self.full_to_hisparse_device_index_mapping)
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)
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@property
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def size_full(self) -> int:
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return self._size_full
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@property
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def size(self) -> int:
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return self._size_full
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def available_size(self) -> int:
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return min(
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self.logical_attn_allocator.available_size(),
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self.hisparse_attn_allocator.available_size(),
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)
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def get_kvcache(self):
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return self._kvcache
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def alloc(self, need_size: int):
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if self.page_size != 1:
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raise NotImplementedError(
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"HiSparse generic allocation is only supported for page_size=1. "
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"Use alloc_extend for paged allocation."
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)
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logical_indices = self.logical_attn_allocator.alloc(need_size)
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if logical_indices is None:
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return None
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hisparse_indices = self.hisparse_attn_allocator.alloc(need_size)
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if hisparse_indices is None:
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self.logical_attn_allocator.free(logical_indices)
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return None
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self.full_to_hisparse_device_index_mapping[logical_indices] = hisparse_indices
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return logical_indices
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def alloc_logical_only(
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self,
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prefix_lens: torch.Tensor,
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prefix_lens_cpu: torch.Tensor,
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seq_lens: torch.Tensor,
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seq_lens_cpu: torch.Tensor,
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last_loc: torch.Tensor,
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extend_num_tokens: int,
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):
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"""Allocate only logical indices without hisparse device indices.
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Used in the direct-to-host transfer path where KV data is written
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directly to host memory by the prefill node, skipping GPU staging.
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"""
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return self.logical_attn_allocator.alloc_extend(
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prefix_lens,
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prefix_lens_cpu,
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seq_lens,
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seq_lens_cpu,
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last_loc,
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extend_num_tokens,
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)
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def alloc_device_buffer(self, allocated_indices, need_size: int):
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assert need_size % self.page_size == 0
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# clear original reference and isolate the buffer from outside addressing, allocate new buffer if needed
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hisparse_indices = self.full_to_hisparse_device_index_mapping[allocated_indices]
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self.full_to_hisparse_device_index_mapping[allocated_indices] = 0
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# Filter valid (non-zero) hisparse indices.
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# In the direct-to-host path, mapping is all zeros since no hisparse
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# device indices were pre-allocated.
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hisparse_indices = hisparse_indices[hisparse_indices > 0]
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if len(hisparse_indices) >= need_size:
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buffer_indices = hisparse_indices[:need_size]
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self.free_hisparse_indices(hisparse_indices[need_size:])
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else:
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# page alignment, claiming the residual space for an incomplete page
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page_residual_length = len(hisparse_indices) % self.page_size
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if page_residual_length != 0:
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hisparse_indices = torch.cat(
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[
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hisparse_indices,
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torch.arange(
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hisparse_indices[-1] + 1,
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hisparse_indices[-1]
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+ self.page_size
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- page_residual_length
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+ 1,
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device=self.device,
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),
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]
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)
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extra_indices = self.hisparse_attn_allocator.alloc(
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need_size - len(hisparse_indices)
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)
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assert (
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extra_indices is not None
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), "Hisparse allocation failed in alloc_device_buffer"
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buffer_indices = torch.cat([hisparse_indices, extra_indices])
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return buffer_indices
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def free_hisparse_indices(self, buffer_indices: torch.Tensor):
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# disable free group mechanism for device buffer free
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self.hisparse_attn_allocator.is_not_in_free_group = True
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self.hisparse_attn_allocator.free(buffer_indices[buffer_indices > 0])
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def get_last_loc_compressed(self, last_locs: torch.Tensor):
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return last_locs
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def get_last_loc_hisparse_device(self, last_locs: torch.Tensor):
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return self._kvcache._translate_loc_to_hisparse_device(last_locs)
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def alloc_extend(
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self,
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prefix_lens: torch.Tensor,
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prefix_lens_cpu: torch.Tensor,
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seq_lens: torch.Tensor,
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seq_lens_cpu: torch.Tensor,
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last_loc: torch.Tensor, # last_loc for full layers
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extend_num_tokens: int,
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):
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num_new_pages = get_num_new_pages(
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seq_lens=seq_lens_cpu, page_size=self.page_size, prefix_lens=prefix_lens_cpu
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)
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if (
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num_new_pages
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> self.logical_attn_allocator.available_size() // self.page_size
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):
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return None
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if (
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num_new_pages
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> self.hisparse_attn_allocator.available_size() // self.page_size
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):
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return None
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logical_indices = self.logical_attn_allocator.alloc_extend(
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prefix_lens,
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prefix_lens_cpu,
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seq_lens,
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seq_lens_cpu,
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last_loc,
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extend_num_tokens,
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)
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assert logical_indices is not None, "Logical allocation failed in alloc_extend"
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hisparse_last_loc = self.get_last_loc_hisparse_device(last_loc)
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hisparse_indices = self.hisparse_attn_allocator.alloc_extend(
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prefix_lens,
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prefix_lens_cpu,
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seq_lens,
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seq_lens_cpu,
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hisparse_last_loc,
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len(logical_indices),
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num_new_pages=num_new_pages,
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)
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assert (
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hisparse_indices is not None
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), "Hisparse allocation failed in alloc_extend"
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self.full_to_hisparse_device_index_mapping[logical_indices] = hisparse_indices
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return logical_indices
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def alloc_decode(
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self,
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seq_lens: torch.Tensor,
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seq_lens_cpu: torch.Tensor,
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last_loc: torch.Tensor, # last_loc for full layers
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):
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return self.logical_attn_allocator.alloc_decode(
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seq_lens, seq_lens_cpu, last_loc
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)
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def free_hisparse(self, free_indices: torch.Tensor):
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hisparse_indices = self._kvcache._translate_loc_to_hisparse_device(free_indices)
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hisparse_indices = hisparse_indices[hisparse_indices > 0]
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self.free_hisparse_indices(hisparse_indices)
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self.full_to_hisparse_device_index_mapping[free_indices] = 0
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def clear(self):
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self.logical_attn_allocator.clear()
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self.hisparse_attn_allocator.clear()
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# Note: the last item is -1, we don't clear it, see the comment in __init__
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self.full_to_hisparse_device_index_mapping[:-1].fill_(0)
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self.is_not_in_free_group = True
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self.free_group = []
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def free_group_begin(self):
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return
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def free_group_end(self):
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return
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def free(self, free_index: torch.Tensor):
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if free_index.numel() == 0:
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return
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if self.is_not_in_free_group:
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self.logical_attn_allocator.free(free_index)
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self.free_hisparse(free_index)
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else:
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self.free_group.append(free_index)
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assert (
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self.logical_attn_allocator.available_size()
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<= self.logical_attn_allocator.size
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)
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assert (
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self.hisparse_attn_allocator.available_size()
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<= self.hisparse_attn_allocator.size
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)
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class DeepSeekV4HiSparseTokenToKVPoolAllocator(BaseTokenToKVPoolAllocator):
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def __init__(
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self,
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logical_attn_allocator: BaseTokenToKVPoolAllocator,
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):
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assert isinstance(logical_attn_allocator._kvcache, DeepSeekV4TokenToKVPool)
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assert isinstance(
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logical_attn_allocator._kvcache.c4_kv_pool, HiSparseC4DevicePool
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)
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self.compress_ratio = 4
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self.hisparse_kvcache = logical_attn_allocator._kvcache.c4_kv_pool
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self._size_full = logical_attn_allocator.size_full
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self._size_hisparse = self.hisparse_kvcache.size
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self.dtype = self.hisparse_kvcache.dtype
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self.device = self.hisparse_kvcache.device
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# Keep the public page_size as the logical DSV4 full/SWA page size.
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# C4 HiSparse allocation/device-buffer code must use the compressed page size.
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self.page_size = logical_attn_allocator.page_size
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self.hisparse_page_size = self.hisparse_kvcache.page_size
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self.logical_attn_allocator = logical_attn_allocator
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self._kvcache = logical_attn_allocator._kvcache
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self.hisparse_attn_allocator = PagedTokenToKVPoolAllocator(
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self._size_hisparse,
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self.hisparse_page_size,
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self.dtype,
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self.device,
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self.hisparse_kvcache,
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logical_attn_allocator.need_sort,
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)
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self.full_to_hisparse_device_index_mapping = torch.cat(
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[
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torch.zeros(
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self._kvcache.c4_logical_size + self.hisparse_page_size,
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dtype=torch.int64,
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device=self.device,
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),
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torch.tensor([-1], dtype=torch.int64, device=self.device),
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]
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)
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self.need_sort = logical_attn_allocator.need_sort
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self.free_pages = None
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self.release_pages = None
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self.is_not_in_free_group = True
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self.free_group = []
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self.clear()
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self.hisparse_kvcache.register_mapping(
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weakref.proxy(self.full_to_hisparse_device_index_mapping)
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)
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@property
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def size_full(self) -> int:
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return self._size_full
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@property
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def size(self) -> int:
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return self.logical_attn_allocator.size
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@property
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def size_swa(self) -> int:
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return self.logical_attn_allocator.size_swa
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@property
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def full_to_swa_index_mapping(self):
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return self.logical_attn_allocator.full_to_swa_index_mapping
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def debug_print(self) -> str:
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msg = self.logical_attn_allocator.debug_print()
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msg += (
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f"#hisparse-available-size: "
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f"{self.hisparse_attn_allocator.available_size()}, "
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)
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return msg
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def get_kvcache(self):
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return self._kvcache
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def translate_loc_from_full_to_swa(self, kv_indices: torch.Tensor):
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return self.logical_attn_allocator.translate_loc_from_full_to_swa(kv_indices)
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def full_available_size(self):
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return min(
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self.logical_attn_allocator.full_available_size(),
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self.hisparse_attn_allocator.available_size() * self.compress_ratio,
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)
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def swa_available_size(self):
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return self.logical_attn_allocator.swa_available_size()
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def free_swa(self, free_indices: torch.Tensor):
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self.logical_attn_allocator.free_swa(free_indices)
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def available_size(self) -> int:
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return min(
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self.logical_attn_allocator.available_size(),
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self.hisparse_attn_allocator.available_size() * self.compress_ratio,
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)
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def alloc(self, need_size: int):
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raise NotImplementedError(
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"DeepSeek V4 HiSparse allocator does not support direct token allocation; "
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"use alloc_extend or alloc_decode instead."
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)
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def alloc_logical_only(
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self,
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prefix_lens: torch.Tensor,
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prefix_lens_cpu: torch.Tensor,
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seq_lens: torch.Tensor,
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seq_lens_cpu: torch.Tensor,
|
|
last_loc: torch.Tensor,
|
|
extend_num_tokens: int,
|
|
):
|
|
"""Allocate decode logical indices without allocating C4 hisparse device pages."""
|
|
return self.logical_attn_allocator.alloc_extend(
|
|
prefix_lens,
|
|
prefix_lens_cpu,
|
|
seq_lens,
|
|
seq_lens_cpu,
|
|
last_loc,
|
|
extend_num_tokens,
|
|
)
|
|
|
|
def alloc_extend_swa_tail(
|
|
self,
|
|
prefix_lens: torch.Tensor,
|
|
prefix_lens_cpu: torch.Tensor,
|
|
seq_lens: torch.Tensor,
|
|
seq_lens_cpu: torch.Tensor,
|
|
last_loc: torch.Tensor,
|
|
extend_num_tokens: int,
|
|
swa_tail_len: int,
|
|
):
|
|
return self.logical_attn_allocator.alloc_extend_swa_tail(
|
|
prefix_lens=prefix_lens,
|
|
prefix_lens_cpu=prefix_lens_cpu,
|
|
seq_lens=seq_lens,
|
|
seq_lens_cpu=seq_lens_cpu,
|
|
last_loc=last_loc,
|
|
extend_num_tokens=extend_num_tokens,
|
|
swa_tail_len=swa_tail_len,
|
|
)
|
|
|
|
def alloc_device_buffer(self, allocated_indices, need_size: int):
|
|
assert need_size % self.hisparse_page_size == 0
|
|
hisparse_indices = self.full_to_hisparse_device_index_mapping[allocated_indices]
|
|
self.full_to_hisparse_device_index_mapping[allocated_indices] = 0
|
|
hisparse_indices = hisparse_indices[hisparse_indices > 0]
|
|
|
|
device_buffer_size = need_size - self.hisparse_page_size
|
|
P = len(hisparse_indices)
|
|
if P > device_buffer_size + 1:
|
|
newest_src = hisparse_indices[P - 1].clone()
|
|
old_at_dbs = hisparse_indices[device_buffer_size].clone()
|
|
hisparse_indices[device_buffer_size] = newest_src
|
|
hisparse_indices[P - 1] = old_at_dbs
|
|
|
|
if len(hisparse_indices) >= need_size:
|
|
buffer_indices = hisparse_indices[:need_size]
|
|
surplus = hisparse_indices[need_size:]
|
|
if surplus.numel() > 0:
|
|
buffer_pages = torch.unique(buffer_indices // self.hisparse_page_size)
|
|
surplus_pages = torch.unique(surplus // self.hisparse_page_size)
|
|
pure_surplus = surplus_pages[~torch.isin(surplus_pages, buffer_pages)]
|
|
if pure_surplus.numel() > 0:
|
|
self.hisparse_attn_allocator.is_not_in_free_group = True
|
|
self.hisparse_attn_allocator.free(
|
|
pure_surplus * self.hisparse_page_size
|
|
)
|
|
else:
|
|
page_residual_length = len(hisparse_indices) % self.hisparse_page_size
|
|
if page_residual_length != 0:
|
|
hisparse_indices = torch.cat(
|
|
[
|
|
hisparse_indices,
|
|
torch.arange(
|
|
hisparse_indices[-1] + 1,
|
|
hisparse_indices[-1]
|
|
+ self.hisparse_page_size
|
|
- page_residual_length
|
|
+ 1,
|
|
device=self.device,
|
|
),
|
|
]
|
|
)
|
|
extra_indices = self.hisparse_attn_allocator.alloc(
|
|
need_size - len(hisparse_indices)
|
|
)
|
|
assert (
|
|
extra_indices is not None
|
|
), "Hisparse allocation failed in alloc_device_buffer"
|
|
buffer_indices = torch.cat([hisparse_indices, extra_indices])
|
|
return buffer_indices
|
|
|
|
def free_hisparse_indices(self, buffer_indices: torch.Tensor):
|
|
self.hisparse_attn_allocator.is_not_in_free_group = True
|
|
self.hisparse_attn_allocator.free(buffer_indices[buffer_indices > 0])
|
|
|
|
def get_last_loc_compressed(self, last_locs: torch.Tensor):
|
|
return (last_locs - 3) // self.compress_ratio
|
|
|
|
def get_last_loc_hisparse_device(self, last_locs: torch.Tensor):
|
|
return self.hisparse_kvcache._translate_loc_to_hisparse_device(
|
|
self.get_last_loc_compressed(last_locs)
|
|
)
|
|
|
|
def alloc_extend(
|
|
self,
|
|
prefix_lens: torch.Tensor,
|
|
prefix_lens_cpu: torch.Tensor,
|
|
seq_lens: torch.Tensor,
|
|
seq_lens_cpu: torch.Tensor,
|
|
last_loc: torch.Tensor,
|
|
extend_num_tokens: int,
|
|
):
|
|
assert self.page_size > 1
|
|
|
|
num_new_pages_logical = get_num_new_pages(
|
|
seq_lens=seq_lens_cpu, page_size=self.page_size, prefix_lens=prefix_lens_cpu
|
|
)
|
|
num_new_pages_hisparse = get_num_new_pages(
|
|
seq_lens=seq_lens_cpu // self.compress_ratio,
|
|
page_size=self.hisparse_page_size,
|
|
prefix_lens=prefix_lens_cpu // self.compress_ratio,
|
|
)
|
|
if (
|
|
num_new_pages_logical
|
|
> self.logical_attn_allocator.available_size() // self.page_size
|
|
):
|
|
return None
|
|
if (
|
|
num_new_pages_hisparse
|
|
> self.hisparse_attn_allocator.available_size() // self.hisparse_page_size
|
|
):
|
|
return None
|
|
|
|
logical_indices = self.logical_attn_allocator.alloc_extend(
|
|
prefix_lens,
|
|
prefix_lens_cpu,
|
|
seq_lens,
|
|
seq_lens_cpu,
|
|
last_loc,
|
|
extend_num_tokens,
|
|
)
|
|
assert logical_indices is not None, "Logical allocation failed in alloc_extend"
|
|
|
|
compressed_logical_indices = (
|
|
self.hisparse_kvcache.translate_loc_from_full_to_compressed(logical_indices)
|
|
)
|
|
hisparse_last_loc = self.get_last_loc_hisparse_device(last_loc)
|
|
hisparse_indices = self.hisparse_attn_allocator.alloc_extend(
|
|
prefix_lens // self.compress_ratio,
|
|
prefix_lens_cpu // self.compress_ratio,
|
|
seq_lens // self.compress_ratio,
|
|
seq_lens_cpu // self.compress_ratio,
|
|
hisparse_last_loc,
|
|
len(compressed_logical_indices),
|
|
)
|
|
assert (
|
|
hisparse_indices is not None
|
|
), "Hisparse allocation failed in alloc_extend"
|
|
|
|
self.full_to_hisparse_device_index_mapping[compressed_logical_indices] = (
|
|
hisparse_indices.to(torch.int64)
|
|
)
|
|
return logical_indices
|
|
|
|
def alloc_decode(
|
|
self,
|
|
seq_lens: torch.Tensor,
|
|
seq_lens_cpu: torch.Tensor,
|
|
last_loc: torch.Tensor,
|
|
):
|
|
return self.logical_attn_allocator.alloc_decode(
|
|
seq_lens, seq_lens_cpu, last_loc
|
|
)
|
|
|
|
def free_compressed(self, compressed_indices: torch.Tensor):
|
|
hisparse_indices = self.hisparse_kvcache.translate_loc_to_hisparse_device(
|
|
compressed_indices
|
|
)
|
|
hisparse_indices = hisparse_indices[hisparse_indices > 0]
|
|
self.free_hisparse_indices(hisparse_indices)
|
|
self.full_to_hisparse_device_index_mapping[compressed_indices] = 0
|
|
|
|
def free_hisparse(self, free_indices: torch.Tensor):
|
|
compressed_indices = (
|
|
self.hisparse_kvcache.translate_loc_from_full_to_compressed(free_indices)
|
|
)
|
|
self.free_compressed(compressed_indices)
|
|
|
|
def clear(self):
|
|
self.logical_attn_allocator.clear()
|
|
self.hisparse_attn_allocator.clear()
|
|
|
|
self.full_to_hisparse_device_index_mapping[:-1].fill_(0)
|
|
self.is_not_in_free_group = True
|
|
self.free_group = []
|
|
|
|
def free(self, free_index: torch.Tensor):
|
|
if free_index.numel() == 0:
|
|
return
|
|
|
|
if self.is_not_in_free_group:
|
|
self.logical_attn_allocator.free(free_index)
|
|
else:
|
|
self.free_group.append(free_index)
|