[misc] remove xverse modeling file (#10814)
Signed-off-by: youkaichao <youkaichao@gmail.com>
This commit is contained in:
@@ -94,7 +94,7 @@ _TEXT_GENERATION_MODELS = {
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"Starcoder2ForCausalLM": ("starcoder2", "Starcoder2ForCausalLM"),
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"Starcoder2ForCausalLM": ("starcoder2", "Starcoder2ForCausalLM"),
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"SolarForCausalLM": ("solar", "SolarForCausalLM"),
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"SolarForCausalLM": ("solar", "SolarForCausalLM"),
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"TeleChat2ForCausalLM": ("telechat2", "TeleChat2ForCausalLM"),
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"TeleChat2ForCausalLM": ("telechat2", "TeleChat2ForCausalLM"),
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"XverseForCausalLM": ("xverse", "XverseForCausalLM"),
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"XverseForCausalLM": ("llama", "LlamaForCausalLM"),
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# [Encoder-decoder]
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# [Encoder-decoder]
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"BartModel": ("bart", "BartForConditionalGeneration"),
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"BartModel": ("bart", "BartForConditionalGeneration"),
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"BartForConditionalGeneration": ("bart", "BartForConditionalGeneration"),
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"BartForConditionalGeneration": ("bart", "BartForConditionalGeneration"),
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@@ -1,423 +0,0 @@
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# Adapted from
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# https://huggingface.co/xverse/XVERSE-7B/blob/main/modeling_xverse.py
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# Copyright 2022 EleutherAI and the HuggingFace Inc. team. All rights reserved.
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#
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# This code is based on EleutherAI's GPT-NeoX library and the GPT-NeoX
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# and OPT implementations in this library. It has been modified from its
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# original forms to accommodate minor architectural differences compared
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# to GPT-NeoX and OPT used by the Meta AI team that trained the model.
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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"""Inference-only Xverse model compatible with HuggingFace weights."""
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from typing import Any, Dict, Iterable, List, Optional, Set, Tuple, Union
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import torch
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from torch import nn
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from transformers import PretrainedConfig
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from vllm.attention import Attention, AttentionMetadata
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from vllm.compilation.decorators import support_torch_compile
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from vllm.config import CacheConfig, VllmConfig
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from vllm.distributed import get_pp_group, get_tensor_model_parallel_world_size
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from vllm.model_executor.layers.activation import SiluAndMul
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from vllm.model_executor.layers.layernorm import RMSNorm
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from vllm.model_executor.layers.linear import (MergedColumnParallelLinear,
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QKVParallelLinear,
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RowParallelLinear)
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from vllm.model_executor.layers.logits_processor import LogitsProcessor
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from vllm.model_executor.layers.quantization import QuantizationConfig
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from vllm.model_executor.layers.rotary_embedding import get_rope
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from vllm.model_executor.layers.sampler import SamplerOutput, get_sampler
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from vllm.model_executor.layers.vocab_parallel_embedding import (
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ParallelLMHead, VocabParallelEmbedding)
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from vllm.model_executor.model_loader.weight_utils import default_weight_loader
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from vllm.model_executor.sampling_metadata import SamplingMetadata
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from vllm.sequence import IntermediateTensors
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from .interfaces import SupportsLoRA, SupportsPP
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from .utils import (is_pp_missing_parameter,
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make_empty_intermediate_tensors_factory, make_layers,
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maybe_prefix)
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class XverseMLP(nn.Module):
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def __init__(
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self,
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hidden_size: int,
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intermediate_size: int,
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hidden_act: str,
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quant_config: Optional[QuantizationConfig] = None,
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) -> None:
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super().__init__()
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self.gate_up_proj = MergedColumnParallelLinear(
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hidden_size, [intermediate_size] * 2,
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bias=False,
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quant_config=quant_config)
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self.down_proj = RowParallelLinear(intermediate_size,
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hidden_size,
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bias=False,
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quant_config=quant_config)
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if hidden_act != "silu":
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raise ValueError(f"Unsupported activation: {hidden_act}. "
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"Only silu is supported for now.")
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self.act_fn = SiluAndMul()
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def forward(self, x):
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gate, _ = self.gate_up_proj(x)
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x = self.act_fn(gate)
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x, _ = self.down_proj(x)
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return x
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class XverseAttention(nn.Module):
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def __init__(
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self,
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hidden_size: int,
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num_heads: int,
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num_kv_heads: int,
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rope_theta: float = 10000,
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rope_scaling: Optional[Dict[str, Any]] = None,
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max_position_embeddings: int = 8192,
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quant_config: Optional[QuantizationConfig] = None,
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bias: bool = False,
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cache_config: Optional[CacheConfig] = None,
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prefix: str = "",
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) -> None:
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super().__init__()
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self.hidden_size = hidden_size
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tp_size = get_tensor_model_parallel_world_size()
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self.total_num_heads = num_heads
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assert self.total_num_heads % tp_size == 0
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self.num_heads = self.total_num_heads // tp_size
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self.total_num_kv_heads = num_kv_heads
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# partition the KV heads across multiple tensor parallel GPUs.
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assert self.total_num_kv_heads % tp_size == 0
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self.num_kv_heads = max(1, self.total_num_kv_heads // tp_size)
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self.head_dim = hidden_size // self.total_num_heads
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self.q_size = self.num_heads * self.head_dim
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self.kv_size = self.num_kv_heads * self.head_dim
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self.scaling = self.head_dim**-0.5
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self.rope_theta = rope_theta
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self.max_position_embeddings = max_position_embeddings
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self.qkv_proj = QKVParallelLinear(
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hidden_size,
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self.head_dim,
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self.total_num_heads,
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self.total_num_kv_heads,
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bias=bias,
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quant_config=quant_config,
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)
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self.o_proj = RowParallelLinear(
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self.total_num_heads * self.head_dim,
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hidden_size,
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bias=bias,
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quant_config=quant_config,
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)
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self.rotary_emb = get_rope(
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self.head_dim,
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rotary_dim=self.head_dim,
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max_position=max_position_embeddings,
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base=rope_theta,
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rope_scaling=rope_scaling,
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)
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self.attn = Attention(self.num_heads,
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self.head_dim,
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self.scaling,
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num_kv_heads=self.num_kv_heads,
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cache_config=cache_config,
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quant_config=quant_config,
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prefix=f"{prefix}.attn")
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def forward(
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self,
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positions: torch.Tensor,
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hidden_states: torch.Tensor,
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kv_cache: torch.Tensor,
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attn_metadata: AttentionMetadata,
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) -> torch.Tensor:
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qkv, _ = self.qkv_proj(hidden_states)
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q, k, v = qkv.split([self.q_size, self.kv_size, self.kv_size], dim=-1)
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q, k = self.rotary_emb(positions, q, k)
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attn_output = self.attn(q, k, v, kv_cache, attn_metadata)
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output, _ = self.o_proj(attn_output)
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return output
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class XverseDecoderLayer(nn.Module):
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def __init__(
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self,
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config: PretrainedConfig,
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cache_config: Optional[CacheConfig] = None,
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quant_config: Optional[QuantizationConfig] = None,
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prefix: str = "",
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) -> None:
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super().__init__()
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self.hidden_size = config.hidden_size
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rope_theta = getattr(config, "rope_theta", 10000)
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rope_scaling = getattr(config, "rope_scaling", None)
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max_position_embeddings = getattr(config, "max_position_embeddings",
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8192)
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self.self_attn = XverseAttention(
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hidden_size=self.hidden_size,
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num_heads=config.num_attention_heads,
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num_kv_heads=getattr(config, "num_key_value_heads",
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config.num_attention_heads),
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rope_theta=rope_theta,
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rope_scaling=rope_scaling,
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max_position_embeddings=max_position_embeddings,
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quant_config=quant_config,
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bias=getattr(config, "bias", False),
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cache_config=cache_config,
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prefix=f"{prefix}.self_attn",
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)
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self.mlp = XverseMLP(
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hidden_size=self.hidden_size,
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intermediate_size=config.intermediate_size,
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hidden_act=config.hidden_act,
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quant_config=quant_config,
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)
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self.input_layernorm = RMSNorm(config.hidden_size,
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eps=config.rms_norm_eps)
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self.post_attention_layernorm = RMSNorm(config.hidden_size,
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eps=config.rms_norm_eps)
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def forward(
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self,
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positions: torch.Tensor,
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hidden_states: torch.Tensor,
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kv_cache: torch.Tensor,
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attn_metadata: AttentionMetadata,
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residual: Optional[torch.Tensor],
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) -> Tuple[torch.Tensor, torch.Tensor]:
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# Self Attention
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if residual is None:
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residual = hidden_states
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hidden_states = self.input_layernorm(hidden_states)
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else:
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hidden_states, residual = self.input_layernorm(
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hidden_states, residual)
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hidden_states = self.self_attn(
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positions=positions,
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hidden_states=hidden_states,
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kv_cache=kv_cache,
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attn_metadata=attn_metadata,
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)
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# Fully Connected
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hidden_states, residual = self.post_attention_layernorm(
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hidden_states, residual)
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hidden_states = self.mlp(hidden_states)
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return hidden_states, residual
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@support_torch_compile
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class XverseModel(nn.Module):
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def __init__(self, *, vllm_config: VllmConfig, prefix: str = ""):
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super().__init__()
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config = vllm_config.model_config.hf_config
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cache_config = vllm_config.cache_config
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quant_config = vllm_config.quant_config
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lora_config = vllm_config.lora_config
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self.config = config
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self.padding_idx = config.pad_token_id
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lora_vocab = (lora_config.lora_extra_vocab_size *
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(lora_config.max_loras or 1)) if lora_config else 0
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self.vocab_size = config.vocab_size + lora_vocab
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self.org_vocab_size = config.vocab_size
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self.embed_tokens = VocabParallelEmbedding(
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self.vocab_size,
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config.hidden_size,
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org_num_embeddings=config.vocab_size,
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)
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self.start_layer, self.end_layer, self.layers = make_layers(
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config.num_hidden_layers,
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lambda prefix: XverseDecoderLayer(
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config, cache_config, quant_config, prefix=prefix),
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prefix=f"{prefix}.layers",
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)
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self.norm = RMSNorm(config.hidden_size, eps=config.rms_norm_eps)
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self.make_empty_intermediate_tensors = (
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make_empty_intermediate_tensors_factory(
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["hidden_states", "residual"], config.hidden_size))
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def get_input_embeddings(self, input_ids: torch.Tensor) -> torch.Tensor:
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return self.embed_tokens(input_ids)
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def forward(
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self,
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input_ids: torch.Tensor,
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positions: torch.Tensor,
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kv_caches: List[torch.Tensor],
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attn_metadata: AttentionMetadata,
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intermediate_tensors: Optional[IntermediateTensors],
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inputs_embeds: Optional[torch.Tensor] = None,
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) -> Union[torch.Tensor, IntermediateTensors]:
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if get_pp_group().is_first_rank:
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if inputs_embeds is not None:
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hidden_states = inputs_embeds
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else:
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hidden_states = self.get_input_embeddings(input_ids)
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residual = None
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else:
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hidden_states = intermediate_tensors["hidden_states"]
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residual = intermediate_tensors["residual"]
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for i in range(self.start_layer, self.end_layer):
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layer = self.layers[i]
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hidden_states, residual = layer(
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positions,
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hidden_states,
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kv_caches[i - self.start_layer],
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attn_metadata,
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residual,
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)
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if not get_pp_group().is_last_rank:
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return IntermediateTensors({
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"hidden_states": hidden_states,
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"residual": residual
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})
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hidden_states, _ = self.norm(hidden_states, residual)
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return hidden_states
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class XverseForCausalLM(nn.Module, SupportsLoRA, SupportsPP):
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packed_modules_mapping = {
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"qkv_proj": [
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"q_proj",
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"k_proj",
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"v_proj",
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],
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"gate_up_proj": [
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"gate_proj",
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"up_proj",
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],
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}
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# LoRA specific attributes
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supported_lora_modules = [
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"qkv_proj",
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"o_proj",
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"gate_up_proj",
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"down_proj",
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"embed_tokens",
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"lm_head",
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]
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embedding_modules = {
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"embed_tokens": "input_embeddings",
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"lm_head": "output_embeddings",
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}
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embedding_padding_modules = ["lm_head"]
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def __init__(self, *, vllm_config: VllmConfig, prefix: str = ""):
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super().__init__()
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config = vllm_config.model_config.hf_config
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quant_config = vllm_config.quant_config
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lora_config = vllm_config.lora_config
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self.config = config
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self.lora_config = lora_config
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self.quant_config = quant_config
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self.model = XverseModel(vllm_config=vllm_config,
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prefix=maybe_prefix(prefix, "model"))
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self.lm_head = ParallelLMHead(config.vocab_size,
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config.hidden_size,
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quant_config=quant_config)
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if self.config.tie_word_embeddings:
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self.lm_head.weight = self.model.embed_tokens.weight
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self.logits_processor = LogitsProcessor(config.vocab_size)
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self.sampler = get_sampler()
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self.make_empty_intermediate_tensors = (
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self.model.make_empty_intermediate_tensors)
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|
|
||||||
def get_input_embeddings(self, input_ids: torch.Tensor) -> torch.Tensor:
|
|
||||||
return self.model.get_input_embeddings(input_ids)
|
|
||||||
|
|
||||||
def forward(
|
|
||||||
self,
|
|
||||||
input_ids: torch.Tensor,
|
|
||||||
positions: torch.Tensor,
|
|
||||||
kv_caches: List[torch.Tensor],
|
|
||||||
attn_metadata: AttentionMetadata,
|
|
||||||
intermediate_tensors: Optional[IntermediateTensors] = None,
|
|
||||||
inputs_embeds: Optional[torch.Tensor] = None,
|
|
||||||
) -> Union[torch.Tensor, IntermediateTensors]:
|
|
||||||
hidden_states = self.model(input_ids, positions, kv_caches,
|
|
||||||
attn_metadata, intermediate_tensors,
|
|
||||||
inputs_embeds)
|
|
||||||
return hidden_states
|
|
||||||
|
|
||||||
def compute_logits(
|
|
||||||
self,
|
|
||||||
hidden_states: torch.Tensor,
|
|
||||||
sampling_metadata: SamplingMetadata,
|
|
||||||
) -> Optional[torch.Tensor]:
|
|
||||||
logits = self.logits_processor(self.lm_head, hidden_states,
|
|
||||||
sampling_metadata)
|
|
||||||
return logits
|
|
||||||
|
|
||||||
def sample(
|
|
||||||
self,
|
|
||||||
logits: torch.Tensor,
|
|
||||||
sampling_metadata: SamplingMetadata,
|
|
||||||
) -> Optional[SamplerOutput]:
|
|
||||||
next_tokens = self.sampler(logits, sampling_metadata)
|
|
||||||
return next_tokens
|
|
||||||
|
|
||||||
def load_weights(self, weights: Iterable[Tuple[str,
|
|
||||||
torch.Tensor]]) -> Set[str]:
|
|
||||||
stacked_params_mapping = [
|
|
||||||
("qkv_proj", "q_proj", "q"),
|
|
||||||
("qkv_proj", "k_proj", "k"),
|
|
||||||
("qkv_proj", "v_proj", "v"),
|
|
||||||
("gate_up_proj", "gate_proj", 0),
|
|
||||||
("gate_up_proj", "up_proj", 1),
|
|
||||||
]
|
|
||||||
params_dict = dict(self.named_parameters())
|
|
||||||
loaded_params: Set[str] = set()
|
|
||||||
for name, loaded_weight in weights:
|
|
||||||
if ("rotary_emb.inv_freq" in name
|
|
||||||
or "rotary_emb.cos_cached" in name
|
|
||||||
or "rotary_emb.sin_cached" in name):
|
|
||||||
continue
|
|
||||||
for (param_name, weight_name, shard_id) in stacked_params_mapping:
|
|
||||||
if weight_name not in name:
|
|
||||||
continue
|
|
||||||
name = name.replace(weight_name, param_name)
|
|
||||||
# Skip loading extra bias for GPTQ models.
|
|
||||||
if name.endswith(".bias") and name not in params_dict:
|
|
||||||
continue
|
|
||||||
if is_pp_missing_parameter(name, self):
|
|
||||||
continue
|
|
||||||
param = params_dict[name]
|
|
||||||
weight_loader = param.weight_loader
|
|
||||||
weight_loader(param, loaded_weight, shard_id)
|
|
||||||
break
|
|
||||||
else:
|
|
||||||
# Skip loading extra bias for GPTQ models.
|
|
||||||
if name.endswith(".bias") and name not in params_dict:
|
|
||||||
continue
|
|
||||||
if is_pp_missing_parameter(name, self):
|
|
||||||
continue
|
|
||||||
param = params_dict[name]
|
|
||||||
weight_loader = getattr(param, "weight_loader",
|
|
||||||
default_weight_loader)
|
|
||||||
weight_loader(param, loaded_weight)
|
|
||||||
loaded_params.add(name)
|
|
||||||
return loaded_params
|
|
||||||
Reference in New Issue
Block a user