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342 lines
14 KiB
342 lines
14 KiB
# Copyright 2024 Google Inc. HuggingFace Inc. team. All rights reserved.
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#
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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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from typing import TYPE_CHECKING
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import torch
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from torch import nn
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from ... import initialization as init
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from ...cache_utils import Cache, DynamicCache
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from ...configuration_utils import PreTrainedConfig
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from ...masking_utils import create_causal_mask
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from ...modeling_outputs import BaseModelOutputWithPast
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from ...modeling_rope_utils import RopeParameters
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from ...modeling_utils import PreTrainedModel
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from ...processing_utils import Unpack
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from ...utils import TransformersKwargs, logging
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from ..llama.modeling_llama import (
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LlamaAttention,
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LlamaForCausalLM,
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LlamaForSequenceClassification,
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LlamaForTokenClassification,
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LlamaMLP,
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LlamaModel,
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LlamaPreTrainedModel,
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LlamaRotaryEmbedding,
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)
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if TYPE_CHECKING:
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pass
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VOCAB_FILES_NAMES = {"vocab_file": "tokenizer.model"}
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SPIECE_UNDERLINE = "▁"
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logger = logging.get_logger(__name__)
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class GemmaConfig(PreTrainedConfig):
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r"""
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This is the configuration class to store the configuration of a [`GemmaModel`]. It is used to instantiate an Gemma
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model according to the specified arguments, defining the model architecture. Instantiating a configuration with the
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defaults will yield a similar configuration to that of the Gemma-7B.
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e.g. [google/gemma-7b](https://huggingface.co/google/gemma-7b)
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Configuration objects inherit from [`PreTrainedConfig`] and can be used to control the model outputs. Read the
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documentation from [`PreTrainedConfig`] for more information.
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Args:
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vocab_size (`int`, *optional*, defaults to 256000):
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Vocabulary size of the Gemma model. Defines the number of different tokens that can be represented by the
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`inputs_ids` passed when calling [`GemmaModel`]
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hidden_size (`int`, *optional*, defaults to 3072):
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Dimension of the hidden representations.
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intermediate_size (`int`, *optional*, defaults to 24576):
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Dimension of the MLP representations.
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num_hidden_layers (`int`, *optional*, defaults to 28):
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Number of hidden layers in the Transformer decoder.
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num_attention_heads (`int`, *optional*, defaults to 16):
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Number of attention heads for each attention layer in the Transformer decoder.
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num_key_value_heads (`int`, *optional*, defaults to 16):
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This is the number of key_value heads that should be used to implement Grouped Query Attention. If
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`num_key_value_heads=num_attention_heads`, the model will use Multi Head Attention (MHA), if
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`num_key_value_heads=1` the model will use Multi Query Attention (MQA) otherwise GQA is used. When
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converting a multi-head checkpoint to a GQA checkpoint, each group key and value head should be constructed
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by meanpooling all the original heads within that group. For more details, check out [this
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paper](https://huggingface.co/papers/2305.13245). If it is not specified, will default to
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`num_attention_heads`.
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head_dim (`int`, *optional*, defaults to 256):
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The attention head dimension.
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hidden_act (`str` or `function`, *optional*, defaults to `"gelu_pytorch_tanh"`):
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The legacy activation function. It is overwritten by the `hidden_activation`.
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max_position_embeddings (`int`, *optional*, defaults to 8192):
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The maximum sequence length that this model might ever be used with.
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initializer_range (`float`, *optional*, defaults to 0.02):
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The standard deviation of the truncated_normal_initializer for initializing all weight matrices.
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rms_norm_eps (`float`, *optional*, defaults to 1e-06):
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The epsilon used by the rms normalization layers.
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use_cache (`bool`, *optional*, defaults to `True`):
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Whether or not the model should return the last key/values attentions (not used by all models). Only
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relevant if `config.is_decoder=True`.
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pad_token_id (`int`, *optional*, defaults to 0):
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Padding token id.
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eos_token_id (`int`, *optional*, defaults to 1):
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End of stream token id.
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bos_token_id (`int`, *optional*, defaults to 2):
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Beginning of stream token id.
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tie_word_embeddings (`bool`, *optional*, defaults to `True`):
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Whether to tie weight embeddings
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rope_parameters (`RopeParameters`, *optional*):
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Dictionary containing the configuration parameters for the RoPE embeddings. The dictionary should contain
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a value for `rope_theta` and optionally parameters used for scaling in case you want to use RoPE
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with longer `max_position_embeddings`.
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attention_bias (`bool`, defaults to `False`, *optional*, defaults to `False`):
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Whether to use a bias in the query, key, value and output projection layers during self-attention.
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attention_dropout (`float`, *optional*, defaults to 0.0):
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The dropout ratio for the attention probabilities.
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use_bidirectional_attention (`bool`, *optional*):
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If True, the model will attend to all text tokens instead of using a causal mask.
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```python
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>>> from transformers import GemmaModel, GemmaConfig
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>>> # Initializing a Gemma gemma-7b style configuration
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>>> configuration = GemmaConfig()
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>>> # Initializing a model from the gemma-7b style configuration
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>>> model = GemmaModel(configuration)
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>>> # Accessing the model configuration
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>>> configuration = model.config
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```"""
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model_type = "gemma"
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keys_to_ignore_at_inference = ["past_key_values"]
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base_model_tp_plan = {
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"layers.*.self_attn.q_proj": "colwise",
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"layers.*.self_attn.k_proj": "colwise",
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"layers.*.self_attn.v_proj": "colwise",
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"layers.*.self_attn.o_proj": "rowwise",
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"layers.*.mlp.gate_proj": "colwise",
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"layers.*.mlp.up_proj": "colwise",
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"layers.*.mlp.down_proj": "rowwise",
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}
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base_model_pp_plan = {
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"embed_tokens": (["input_ids"], ["inputs_embeds"]),
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"layers": (["hidden_states", "attention_mask"], ["hidden_states"]),
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"norm": (["hidden_states"], ["hidden_states"]),
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}
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def __init__(
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self,
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vocab_size: int | None = 256000,
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hidden_size: int | None = 3072,
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intermediate_size: int | None = 24576,
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num_hidden_layers: int | None = 28,
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num_attention_heads: int | None = 16,
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num_key_value_heads: int | None = 16,
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head_dim: int | None = 256,
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hidden_act: str | None = "gelu_pytorch_tanh",
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max_position_embeddings: int | None = 8192,
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initializer_range: float | None = 0.02,
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rms_norm_eps: int | None = 1e-6,
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use_cache: bool | None = True,
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pad_token_id: int | None = 0,
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eos_token_id: int | None = 1,
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bos_token_id: int | None = 2,
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tie_word_embeddings: bool | None = True,
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rope_parameters: RopeParameters | dict[str, RopeParameters] | None = None,
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attention_bias: bool | None = False,
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attention_dropout: float | None = 0.0,
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use_bidirectional_attention: bool | None = None,
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**kwargs,
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):
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self.vocab_size = vocab_size
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self.max_position_embeddings = max_position_embeddings
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self.hidden_size = hidden_size
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self.intermediate_size = intermediate_size
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self.num_hidden_layers = num_hidden_layers
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self.num_attention_heads = num_attention_heads
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self.head_dim = head_dim
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self.num_key_value_heads = num_key_value_heads
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self.hidden_act = hidden_act
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self.initializer_range = initializer_range
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self.rms_norm_eps = rms_norm_eps
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self.use_cache = use_cache
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self.attention_bias = attention_bias
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self.attention_dropout = attention_dropout
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self.use_bidirectional_attention = use_bidirectional_attention
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self.pad_token_id = pad_token_id
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self.bos_token_id = bos_token_id
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self.eos_token_id = eos_token_id
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self.tie_word_embeddings = tie_word_embeddings
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self.rope_parameters = rope_parameters
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super().__init__(**kwargs)
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class GemmaRMSNorm(nn.Module):
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def __init__(self, dim: int, eps: float = 1e-6):
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super().__init__()
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self.eps = eps
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self.weight = nn.Parameter(torch.zeros(dim))
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def _norm(self, x):
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return x * torch.rsqrt(x.pow(2).mean(-1, keepdim=True) + self.eps)
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def forward(self, x):
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output = self._norm(x.float())
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# Llama does x.to(float16) * w whilst Gemma is (x * w).to(float16)
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# See https://github.com/huggingface/transformers/pull/29402
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output = output * (1.0 + self.weight.float())
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return output.type_as(x)
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def extra_repr(self):
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return f"{tuple(self.weight.shape)}, eps={self.eps}"
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class GemmaMLP(LlamaMLP):
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def __init__(self, config):
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super().__init__(config)
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self.gate_proj = nn.Linear(self.hidden_size, self.intermediate_size, bias=False)
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self.up_proj = nn.Linear(self.hidden_size, self.intermediate_size, bias=False)
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self.down_proj = nn.Linear(self.intermediate_size, self.hidden_size, bias=False)
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class GemmaRotaryEmbedding(LlamaRotaryEmbedding):
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pass
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class GemmaAttention(LlamaAttention):
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"""Multi-headed attention from 'Attention Is All You Need' paper"""
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def __init__(self, config: GemmaConfig, layer_idx: int):
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super().__init__()
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self.is_causal = not getattr(config, "use_bidirectional_attention", False)
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class GemmaPreTrainedModel(LlamaPreTrainedModel):
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@torch.no_grad()
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def _init_weights(self, module):
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PreTrainedModel._init_weights(self, module)
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# We initialize with 0s to be 1 centered as the RMSNorm here does (1 + weight)
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if "RMSNorm" in module.__class__.__name__:
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init.zeros_(module.weight)
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class GemmaModel(LlamaModel):
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def forward(
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self,
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input_ids: torch.LongTensor | None = None,
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attention_mask: torch.Tensor | None = None,
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position_ids: torch.LongTensor | None = None,
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past_key_values: Cache | None = None,
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inputs_embeds: torch.FloatTensor | None = None,
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use_cache: bool | None = None,
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cache_position: torch.LongTensor | None = None,
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**kwargs: Unpack[TransformersKwargs],
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) -> BaseModelOutputWithPast:
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if (input_ids is None) ^ (inputs_embeds is not None):
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raise ValueError("You must specify exactly one of input_ids or inputs_embeds")
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if inputs_embeds is None:
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inputs_embeds = self.embed_tokens(input_ids)
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if use_cache and past_key_values is None:
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past_key_values = DynamicCache(config=self.config)
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if cache_position is None:
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past_seen_tokens = past_key_values.get_seq_length() if past_key_values is not None else 0
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cache_position = torch.arange(
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past_seen_tokens, past_seen_tokens + inputs_embeds.shape[1], device=inputs_embeds.device
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)
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if position_ids is None:
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position_ids = cache_position.unsqueeze(0)
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causal_mask = create_causal_mask(
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config=self.config,
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input_embeds=inputs_embeds,
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attention_mask=attention_mask,
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cache_position=cache_position,
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past_key_values=past_key_values,
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position_ids=position_ids,
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)
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# embed positions
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hidden_states = inputs_embeds
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position_embeddings = self.rotary_emb(hidden_states, position_ids=position_ids)
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# normalized
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# Gemma downcasts the below to float16, causing sqrt(3072)=55.4256 to become 55.5
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# See https://github.com/huggingface/transformers/pull/29402
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normalizer = torch.tensor(self.config.hidden_size**0.5, dtype=hidden_states.dtype)
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hidden_states = hidden_states * normalizer
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for decoder_layer in self.layers[: self.config.num_hidden_layers]:
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hidden_states = decoder_layer(
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hidden_states,
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attention_mask=causal_mask,
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position_ids=position_ids,
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past_key_values=past_key_values,
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use_cache=use_cache,
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cache_position=cache_position,
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position_embeddings=position_embeddings,
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**kwargs,
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)
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hidden_states = self.norm(hidden_states)
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return BaseModelOutputWithPast(
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last_hidden_state=hidden_states,
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past_key_values=past_key_values if use_cache else None,
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)
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class GemmaForCausalLM(LlamaForCausalLM):
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def forward(**super_kwargs):
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r"""
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Example:
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```python
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>>> from transformers import AutoTokenizer, GemmaForCausalLM
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>>> model = GemmaForCausalLM.from_pretrained("google/gemma-7b")
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>>> tokenizer = AutoTokenizer.from_pretrained("google/gemma-7b")
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>>> prompt = "What is your favorite condiment?"
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>>> inputs = tokenizer(prompt, return_tensors="pt")
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>>> # Generate
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>>> generate_ids = model.generate(inputs.input_ids, max_length=30)
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>>> tokenizer.batch_decode(generate_ids, skip_special_tokens=True, clean_up_tokenization_spaces=False)[0]
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"What is your favorite condiment?"
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```"""
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return super().forward(**super_kwargs)
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class GemmaForSequenceClassification(LlamaForSequenceClassification):
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pass
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class GemmaForTokenClassification(LlamaForTokenClassification):
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pass
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__all__ = [
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"GemmaConfig",
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"GemmaModel",
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"GemmaForCausalLM",
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"GemmaForSequenceClassification",
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"GemmaForTokenClassification",
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"GemmaPreTrainedModel",
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]
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