MoE torch compile (#1497)
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117
python/sglang/srt/layers/fused_moe/patch.py
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117
python/sglang/srt/layers/fused_moe/patch.py
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from typing import Optional
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import torch
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from torch.nn import functional as F
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def fused_topk_native(
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hidden_states: torch.Tensor,
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gating_output: torch.Tensor,
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topk: int,
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renormalize: bool,
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):
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assert hidden_states.shape[0] == gating_output.shape[0], "Number of tokens mismatch"
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M, _ = hidden_states.shape
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topk_weights = torch.empty(
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M, topk, dtype=torch.float32, device=hidden_states.device
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)
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topk_ids = torch.empty(M, topk, dtype=torch.int32, device=hidden_states.device)
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topk_weights = F.softmax(gating_output.float(), dim=-1)
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topk_weights, topk_ids = torch.topk(topk_weights, topk, dim=-1)
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if renormalize:
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topk_weights = topk_weights / topk_weights.sum(dim=-1, keepdim=True)
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return topk_weights, topk_ids
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# This is used by the Deepseek-V2 model
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def grouped_topk(
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hidden_states: torch.Tensor,
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gating_output: torch.Tensor,
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topk: int,
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renormalize: bool,
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num_expert_group: int = 0,
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topk_group: int = 0,
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):
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assert hidden_states.shape[0] == gating_output.shape[0], "Number of tokens mismatch"
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scores = torch.softmax(gating_output, dim=-1)
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num_token = scores.shape[0]
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group_scores = (
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scores.view(num_token, num_expert_group, -1).max(dim=-1).values
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) # [n, n_group]
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group_idx = torch.topk(group_scores, k=topk_group, dim=-1, sorted=False)[
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1
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] # [n, top_k_group]
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group_mask = torch.zeros_like(group_scores) # [n, n_group]
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group_mask.scatter_(1, group_idx, 1) # [n, n_group]
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score_mask = (
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group_mask.unsqueeze(-1)
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.expand(num_token, num_expert_group, scores.shape[-1] // num_expert_group)
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.reshape(num_token, -1)
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) # [n, e]
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tmp_scores = scores.masked_fill(~score_mask.bool(), 0.0) # [n, e]
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topk_weights, topk_ids = torch.topk(tmp_scores, k=topk, dim=-1, sorted=False)
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if renormalize:
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topk_weights = topk_weights / topk_weights.sum(dim=-1, keepdim=True)
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return topk_weights, topk_ids
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def select_experts_native(
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hidden_states: torch.Tensor,
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router_logits: torch.Tensor,
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top_k: int,
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use_grouped_topk: bool,
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renormalize: bool,
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topk_group: Optional[int] = None,
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num_expert_group: Optional[int] = None,
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):
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# DeekSeekv2 uses grouped_top_k
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if use_grouped_topk:
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assert topk_group is not None
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assert num_expert_group is not None
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topk_weights, topk_ids = grouped_topk(
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hidden_states=hidden_states,
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gating_output=router_logits,
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topk=top_k,
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renormalize=renormalize,
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num_expert_group=num_expert_group,
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topk_group=topk_group,
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)
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else:
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topk_weights, topk_ids = fused_topk_native(
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hidden_states=hidden_states,
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gating_output=router_logits,
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topk=top_k,
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renormalize=renormalize,
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)
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return topk_weights, topk_ids
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def fused_moe_forward_native(
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layer: torch.nn.Module,
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x: torch.Tensor,
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use_grouped_topk: bool,
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top_k: int,
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router_logits: torch.Tensor,
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renormalize: bool,
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topk_group: Optional[int] = None,
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num_expert_group: Optional[int] = None,
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) -> torch.Tensor:
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topk_weights, topk_ids = select_experts_native(
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hidden_states=x,
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router_logits=router_logits,
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use_grouped_topk=use_grouped_topk,
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top_k=top_k,
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renormalize=renormalize,
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topk_group=topk_group,
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num_expert_group=num_expert_group,
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)
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w13_weights = layer.w13_weight[topk_ids]
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w1_weights, w3_weights = torch.chunk(w13_weights, 2, dim=2)
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w2_weights = layer.w2_weight[topk_ids]
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x1 = F.silu(torch.einsum("ti,taoi -> tao", x, w1_weights))
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x3 = torch.einsum("ti, taoi -> tao", x, w3_weights)
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expert_outs = torch.einsum("tao, taio -> tai", (x1 * x3), w2_weights)
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return torch.einsum("tai,ta -> ti", expert_outs, topk_weights)
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