Commit
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Parent(s):
58cb0a1
compatible with Llama (#29)
Browse files- compatible with Llama (fb27ecc0a9f7e6ff6ec99f506cab1b9a24c1550a)
Co-authored-by: cArlIcon <[email protected]>
- config.json +4 -7
- configuration_yi.py +0 -121
- md5 +7 -7
- model-00001-of-00007.safetensors +2 -2
- model-00002-of-00007.safetensors +2 -2
- model-00003-of-00007.safetensors +2 -2
- model-00004-of-00007.safetensors +2 -2
- model-00005-of-00007.safetensors +2 -2
- model-00006-of-00007.safetensors +2 -2
- model-00007-of-00007.safetensors +2 -2
- model.safetensors.index.json +120 -120
- modeling_yi.py +0 -1035
- pytorch_model-00001-of-00007.bin +2 -2
- pytorch_model-00002-of-00007.bin +2 -2
- pytorch_model-00003-of-00007.bin +2 -2
- pytorch_model-00004-of-00007.bin +2 -2
- pytorch_model-00005-of-00007.bin +2 -2
- pytorch_model-00006-of-00007.bin +2 -2
- pytorch_model-00007-of-00007.bin +2 -2
- pytorch_model.bin.index.json +120 -120
- tokenization_yi.py +0 -255
- tokenizer_config.json +8 -4
config.json
CHANGED
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@@ -1,12 +1,7 @@
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{
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"architectures": [
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"
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],
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"auto_map": {
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"AutoConfig": "configuration_yi.YiConfig",
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"AutoModel": "modeling_yi.YiModel",
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"AutoModelForCausalLM":"modeling_yi.YiForCausalLM"
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},
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"bos_token_id": 1,
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"eos_token_id": 2,
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"hidden_act": "silu",
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"initializer_range": 0.02,
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"intermediate_size": 20480,
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"max_position_embeddings": 4096,
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-
"model_type": "
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"num_attention_heads": 56,
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"num_hidden_layers": 60,
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"num_key_value_heads": 8,
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"pad_token_id": 0,
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"rms_norm_eps": 1e-05,
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"rope_theta": 5000000.0,
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"tie_word_embeddings": false,
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"torch_dtype": "bfloat16",
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{
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"architectures": [
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"LlamaForCausalLM"
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],
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"bos_token_id": 1,
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"eos_token_id": 2,
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"hidden_act": "silu",
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"initializer_range": 0.02,
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"intermediate_size": 20480,
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"max_position_embeddings": 4096,
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+
"model_type": "llama",
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"num_attention_heads": 56,
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"num_hidden_layers": 60,
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"num_key_value_heads": 8,
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"pad_token_id": 0,
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+
"pretraining_tp": 1,
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"rms_norm_eps": 1e-05,
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+
"rope_scaling": null,
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"rope_theta": 5000000.0,
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"tie_word_embeddings": false,
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"torch_dtype": "bfloat16",
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configuration_yi.py
DELETED
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""" Yi model configuration"""
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from transformers.configuration_utils import PretrainedConfig
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from transformers.utils import logging
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logger = logging.get_logger(__name__)
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Yi_PRETRAINED_CONFIG_ARCHIVE_MAP = {}
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class YiConfig(PretrainedConfig):
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r"""
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This is the configuration class to store the configuration of a [`YiModel`]. It is used to instantiate an Yi
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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 Yi model.
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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 64000):
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Vocabulary size of the Yi model. Defines the number of different tokens that can be represented by the
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`inputs_ids` passed when calling [`YiModel`]
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hidden_size (`int`, *optional*, defaults to 4096):
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Dimension of the hidden representations.
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intermediate_size (`int`, *optional*, defaults to 11008):
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Dimension of the MLP representations.
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num_hidden_layers (`int`, *optional*, defaults to 32):
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Number of hidden layers in the Transformer encoder.
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num_attention_heads (`int`, *optional*, defaults to 32):
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Number of attention heads for each attention layer in the Transformer encoder.
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num_key_value_heads (`int`, *optional*):
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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 checkout [this
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paper](https://arxiv.org/pdf/2305.13245.pdf). If it is not specified, will default to
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`num_attention_heads`.
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hidden_act (`str` or `function`, *optional*, defaults to `"silu"`):
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The non-linear activation function (function or string) in the decoder.
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max_position_embeddings (`int`, *optional*, defaults to 4096):
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The maximum sequence length that this model might ever be used with. Typically set this to something large
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just in case (e.g., 512 or 1024 or 2048 or 4096).
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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-5):
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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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tie_word_embeddings(`bool`, *optional*, defaults to `False`):
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Whether to tie weight embeddings
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output_attentions (`bool`, *optional*, defaults to `False`):
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Whether or not to output attentions.
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rope_theta (`float`, *optional*, defaults to 5000000.0):
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The base period of the RoPE embeddings.
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Example:
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```python
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>>> from transformers import YiModel, YiConfig
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>>> # Initializing a Yi style configuration
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>>> configuration = YiConfig()
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>>> # Initializing a model from the Yi style configuration
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>>> model = YiModel(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 = "Yi"
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keys_to_ignore_at_inference = ["past_key_values"]
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def __init__(
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self,
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vocab_size=64000,
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hidden_size=4096,
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intermediate_size=11008,
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num_hidden_layers=32,
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num_attention_heads=32,
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num_key_value_heads=4,
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hidden_act="silu",
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max_position_embeddings=4096,
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initializer_range=0.02,
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rms_norm_eps=1e-5,
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use_cache=True,
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pad_token_id=0,
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bos_token_id=1,
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eos_token_id=2,
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tie_word_embeddings=False,
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output_attentions=False,
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rope_theta=5000000.0,
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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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# for backward compatibility
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if num_key_value_heads is None:
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num_key_value_heads = num_attention_heads
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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.output_attentions = output_attentions
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self.rope_theta = rope_theta
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super().__init__(
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pad_token_id=pad_token_id,
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bos_token_id=bos_token_id,
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eos_token_id=eos_token_id,
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tie_word_embeddings=tie_word_embeddings,
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**kwargs,
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)
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md5
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291724ef50f729e45d68f474a7755bbc tokenizer.model
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93c0ef5a73e79306fcc5510d684c30b7 pytorch_model-00001-of-00007.bin
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69db6eb2f065bb3c08097054d7d0fcb1 pytorch_model-00002-of-00007.bin
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e47971db5e97ab7dd7e700a0f6a78c62 pytorch_model-00003-of-00007.bin
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52ce36edd7a89ec98c5ccf84b9b23791 pytorch_model-00004-of-00007.bin
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23faf3f93f2f48eb2512ac9302c8f454 pytorch_model-00005-of-00007.bin
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da88c3977a3f92faed0bfd80c1c716d1 pytorch_model-00006-of-00007.bin
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74055c9e8b7bf1877be59f2ab6763efc pytorch_model-00007-of-00007.bin
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291724ef50f729e45d68f474a7755bbc tokenizer.model
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model-00001-of-00007.safetensors
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|
modeling_yi.py
DELETED
|
@@ -1,1035 +0,0 @@
|
|
| 1 |
-
""" PyTorch Yi model."""
|
| 2 |
-
import math
|
| 3 |
-
from typing import List, Optional, Tuple, Union
|
| 4 |
-
|
| 5 |
-
import torch.utils.checkpoint
|
| 6 |
-
from einops import repeat
|
| 7 |
-
from packaging import version
|
| 8 |
-
from torch import nn
|
| 9 |
-
from torch.nn import BCEWithLogitsLoss, CrossEntropyLoss, MSELoss
|
| 10 |
-
from transformers.activations import ACT2FN
|
| 11 |
-
from transformers.modeling_outputs import (
|
| 12 |
-
BaseModelOutputWithPast,
|
| 13 |
-
CausalLMOutputWithPast,
|
| 14 |
-
SequenceClassifierOutputWithPast,
|
| 15 |
-
)
|
| 16 |
-
from transformers.modeling_utils import PreTrainedModel
|
| 17 |
-
from transformers.pytorch_utils import ALL_LAYERNORM_LAYERS
|
| 18 |
-
from transformers.utils import (
|
| 19 |
-
add_start_docstrings,
|
| 20 |
-
add_start_docstrings_to_model_forward,
|
| 21 |
-
logging,
|
| 22 |
-
replace_return_docstrings,
|
| 23 |
-
)
|
| 24 |
-
|
| 25 |
-
from .configuration_yi import YiConfig
|
| 26 |
-
|
| 27 |
-
is_flash_attn_available = True
|
| 28 |
-
try:
|
| 29 |
-
from flash_attn import flash_attn_func, __version__
|
| 30 |
-
|
| 31 |
-
assert version.parse(__version__) >= version.parse(
|
| 32 |
-
"2.3.0"
|
| 33 |
-
), "please update your flash_attn version (>= 2.3.0)"
|
| 34 |
-
except ModuleNotFoundError:
|
| 35 |
-
is_flash_attn_available = False
|
| 36 |
-
|
| 37 |
-
logger = logging.get_logger(__name__)
|
| 38 |
-
|
| 39 |
-
_CONFIG_FOR_DOC = "YiConfig"
|
| 40 |
-
|
| 41 |
-
|
| 42 |
-
# Copied from transformers.models.bart.modeling_bart._make_causal_mask
|
| 43 |
-
def _make_causal_mask(
|
| 44 |
-
input_ids_shape: torch.Size,
|
| 45 |
-
dtype: torch.dtype,
|
| 46 |
-
device: torch.device,
|
| 47 |
-
past_key_values_length: int = 0,
|
| 48 |
-
):
|
| 49 |
-
"""
|
| 50 |
-
Make causal mask used for bi-directional self-attention.
|
| 51 |
-
"""
|
| 52 |
-
bsz, tgt_len = input_ids_shape
|
| 53 |
-
mask = torch.full(
|
| 54 |
-
(tgt_len, tgt_len),
|
| 55 |
-
torch.tensor(torch.finfo(dtype).min, device=device),
|
| 56 |
-
device=device,
|
| 57 |
-
)
|
| 58 |
-
mask_cond = torch.arange(mask.size(-1), device=device)
|
| 59 |
-
mask.masked_fill_(mask_cond < (mask_cond + 1).view(mask.size(-1), 1), 0)
|
| 60 |
-
mask = mask.to(dtype)
|
| 61 |
-
|
| 62 |
-
if past_key_values_length > 0:
|
| 63 |
-
mask = torch.cat(
|
| 64 |
-
[
|
| 65 |
-
torch.zeros(
|
| 66 |
-
tgt_len, past_key_values_length, dtype=dtype, device=device
|
| 67 |
-
),
|
| 68 |
-
mask,
|
| 69 |
-
],
|
| 70 |
-
dim=-1,
|
| 71 |
-
)
|
| 72 |
-
return mask[None, None, :, :].expand(
|
| 73 |
-
bsz, 1, tgt_len, tgt_len + past_key_values_length
|
| 74 |
-
)
|
| 75 |
-
|
| 76 |
-
|
| 77 |
-
# Copied from transformers.models.bart.modeling_bart._expand_mask
|
| 78 |
-
def _expand_mask(mask: torch.Tensor, dtype: torch.dtype, tgt_len: Optional[int] = None):
|
| 79 |
-
"""
|
| 80 |
-
Expands attention_mask from `[bsz, seq_len]` to `[bsz, 1, tgt_seq_len, src_seq_len]`.
|
| 81 |
-
"""
|
| 82 |
-
bsz, src_len = mask.size()
|
| 83 |
-
tgt_len = tgt_len if tgt_len is not None else src_len
|
| 84 |
-
|
| 85 |
-
expanded_mask = mask[:, None, None, :].expand(bsz, 1, tgt_len, src_len).to(dtype)
|
| 86 |
-
|
| 87 |
-
inverted_mask = 1.0 - expanded_mask
|
| 88 |
-
|
| 89 |
-
return inverted_mask.masked_fill(
|
| 90 |
-
inverted_mask.to(torch.bool), torch.finfo(dtype).min
|
| 91 |
-
)
|
| 92 |
-
|
| 93 |
-
|
| 94 |
-
class YiRMSNorm(nn.Module):
|
| 95 |
-
def __init__(self, hidden_size, eps=1e-5):
|
| 96 |
-
"""
|
| 97 |
-
YiRMSNorm is equivalent to T5LayerNorm
|
| 98 |
-
"""
|
| 99 |
-
super().__init__()
|
| 100 |
-
self.weight = nn.Parameter(torch.ones(hidden_size))
|
| 101 |
-
self.variance_epsilon = eps
|
| 102 |
-
|
| 103 |
-
def forward(self, hidden_states):
|
| 104 |
-
input_dtype = hidden_states.dtype
|
| 105 |
-
hidden_states = hidden_states.to(torch.float32)
|
| 106 |
-
variance = hidden_states.pow(2).mean(-1, keepdim=True)
|
| 107 |
-
hidden_states = hidden_states * torch.rsqrt(variance + self.variance_epsilon)
|
| 108 |
-
|
| 109 |
-
return self.weight * hidden_states.to(input_dtype)
|
| 110 |
-
|
| 111 |
-
|
| 112 |
-
ALL_LAYERNORM_LAYERS.append(YiRMSNorm)
|
| 113 |
-
|
| 114 |
-
|
| 115 |
-
class YiRotaryEmbedding(torch.nn.Module):
|
| 116 |
-
def __init__(self, dim, max_position_embeddings=4096, base=5000000, device=None):
|
| 117 |
-
super().__init__()
|
| 118 |
-
|
| 119 |
-
self.dim = dim
|
| 120 |
-
self.max_position_embeddings = max_position_embeddings
|
| 121 |
-
self.base = base
|
| 122 |
-
|
| 123 |
-
# Build here to make `torch.jit.trace` work.
|
| 124 |
-
self._set_cos_sin_cache(seq_len=max_position_embeddings, device=device)
|
| 125 |
-
|
| 126 |
-
def _set_cos_sin_cache(self, seq_len, device):
|
| 127 |
-
self.max_seq_len_cached = seq_len
|
| 128 |
-
inv_freq = 1.0 / (
|
| 129 |
-
self.base ** (torch.arange(0, self.dim, 2).float().to(device) / self.dim)
|
| 130 |
-
)
|
| 131 |
-
t = torch.arange(self.max_seq_len_cached, device=device, dtype=torch.float32)
|
| 132 |
-
freqs = torch.einsum("i,j->ij", t, inv_freq)
|
| 133 |
-
# Different from paper, but it uses a different permutation in order to obtain the same calculation
|
| 134 |
-
emb = torch.cat((freqs, freqs), dim=-1)
|
| 135 |
-
self.register_buffer(
|
| 136 |
-
"cos_cached", emb.cos()[None, None, :, :], persistent=False
|
| 137 |
-
)
|
| 138 |
-
self.register_buffer(
|
| 139 |
-
"sin_cached", emb.sin()[None, None, :, :], persistent=False
|
| 140 |
-
)
|
| 141 |
-
|
| 142 |
-
def forward(self, x, seq_len=None):
|
| 143 |
-
# x: [bs, num_attention_heads, seq_len, head_size]
|
| 144 |
-
if seq_len > self.max_seq_len_cached:
|
| 145 |
-
self._set_cos_sin_cache(seq_len=seq_len, device=x.device)
|
| 146 |
-
|
| 147 |
-
return (
|
| 148 |
-
self.cos_cached[:, :, :seq_len, ...].to(dtype=x.dtype),
|
| 149 |
-
self.sin_cached[:, :, :seq_len, ...].to(dtype=x.dtype),
|
| 150 |
-
)
|
| 151 |
-
|
| 152 |
-
|
| 153 |
-
def rotate_half(x):
|
| 154 |
-
"""Rotates half the hidden dims of the input."""
|
| 155 |
-
x1 = x[..., : x.shape[-1] // 2]
|
| 156 |
-
x2 = x[..., x.shape[-1] // 2 :]
|
| 157 |
-
return torch.cat((-x2, x1), dim=-1)
|
| 158 |
-
|
| 159 |
-
|
| 160 |
-
def apply_rotary_pos_emb(q, k, cos, sin, position_ids, flash_attn_available):
|
| 161 |
-
# The first two dimensions of cos and sin are always 1, so we can `squeeze` them.
|
| 162 |
-
cos = cos.squeeze(1).squeeze(0) # [seq_len, dim]
|
| 163 |
-
sin = sin.squeeze(1).squeeze(0) # [seq_len, dim]
|
| 164 |
-
expand_dim = 2 if flash_attn_available else 1
|
| 165 |
-
cos = cos[position_ids].unsqueeze(expand_dim) # [bs, seq_len, dim]
|
| 166 |
-
sin = sin[position_ids].unsqueeze(expand_dim) # [bs, seq_len, dim]
|
| 167 |
-
q_embed = (q * cos) + (rotate_half(q) * sin)
|
| 168 |
-
k_embed = (k * cos) + (rotate_half(k) * sin)
|
| 169 |
-
return q_embed, k_embed
|
| 170 |
-
|
| 171 |
-
|
| 172 |
-
class YiMLP(nn.Module):
|
| 173 |
-
def __init__(self, hidden_size: int, intermediate_size: int, hidden_act: str):
|
| 174 |
-
super().__init__()
|
| 175 |
-
self.gate_proj = nn.Linear(hidden_size, intermediate_size, bias=False)
|
| 176 |
-
self.down_proj = nn.Linear(intermediate_size, hidden_size, bias=False)
|
| 177 |
-
self.up_proj = nn.Linear(hidden_size, intermediate_size, bias=False)
|
| 178 |
-
self.act_fn = ACT2FN[hidden_act]
|
| 179 |
-
|
| 180 |
-
def forward(self, x):
|
| 181 |
-
return self.down_proj(self.act_fn(self.gate_proj(x)) * self.up_proj(x))
|
| 182 |
-
|
| 183 |
-
|
| 184 |
-
class YiAttention(nn.Module):
|
| 185 |
-
"""Multi-headed attention from 'Attention Is All You Need' paper"""
|
| 186 |
-
|
| 187 |
-
def __init__(self, config: YiConfig):
|
| 188 |
-
super().__init__()
|
| 189 |
-
self.config = config
|
| 190 |
-
self.hidden_size = config.hidden_size
|
| 191 |
-
self.num_heads = config.num_attention_heads
|
| 192 |
-
self.head_dim = self.hidden_size // self.num_heads
|
| 193 |
-
self.num_key_value_heads = config.num_key_value_heads
|
| 194 |
-
self.num_key_value_groups = self.num_heads // self.num_key_value_heads
|
| 195 |
-
self.max_position_embeddings = config.max_position_embeddings
|
| 196 |
-
|
| 197 |
-
if (self.head_dim * self.num_heads) != self.hidden_size:
|
| 198 |
-
raise ValueError(
|
| 199 |
-
f"hidden_size must be divisible by num_heads (got `hidden_size`: {self.hidden_size}"
|
| 200 |
-
f" and `num_heads`: {self.num_heads})."
|
| 201 |
-
)
|
| 202 |
-
self.q_proj = nn.Linear(
|
| 203 |
-
self.hidden_size, self.num_heads * self.head_dim, bias=False
|
| 204 |
-
)
|
| 205 |
-
self.k_proj = nn.Linear(
|
| 206 |
-
self.hidden_size, self.num_key_value_heads * self.head_dim, bias=False
|
| 207 |
-
)
|
| 208 |
-
self.v_proj = nn.Linear(
|
| 209 |
-
self.hidden_size, self.num_key_value_heads * self.head_dim, bias=False
|
| 210 |
-
)
|
| 211 |
-
self.o_proj = nn.Linear(
|
| 212 |
-
self.num_heads * self.head_dim, self.hidden_size, bias=False
|
| 213 |
-
)
|
| 214 |
-
|
| 215 |
-
self.rotary_emb = YiRotaryEmbedding(
|
| 216 |
-
self.head_dim,
|
| 217 |
-
max_position_embeddings=self.max_position_embeddings,
|
| 218 |
-
base=self.config.rope_theta,
|
| 219 |
-
)
|
| 220 |
-
|
| 221 |
-
def forward(
|
| 222 |
-
self,
|
| 223 |
-
hidden_states: torch.Tensor,
|
| 224 |
-
attention_mask: Optional[torch.Tensor] = None,
|
| 225 |
-
position_ids: Optional[torch.LongTensor] = None,
|
| 226 |
-
past_key_value: Optional[Tuple[torch.Tensor]] = None,
|
| 227 |
-
output_attentions: bool = False,
|
| 228 |
-
use_cache: bool = False,
|
| 229 |
-
) -> Tuple[torch.Tensor, Optional[torch.Tensor], Optional[Tuple[torch.Tensor]]]:
|
| 230 |
-
bsz, q_len, _ = hidden_states.size()
|
| 231 |
-
|
| 232 |
-
query_states = self.q_proj(hidden_states).view(
|
| 233 |
-
bsz, q_len, self.num_heads, self.head_dim
|
| 234 |
-
)
|
| 235 |
-
|
| 236 |
-
key_states = self.k_proj(hidden_states).view(
|
| 237 |
-
bsz, q_len, self.num_key_value_heads, self.head_dim
|
| 238 |
-
)
|
| 239 |
-
value_states = self.v_proj(hidden_states).view(
|
| 240 |
-
bsz, q_len, self.num_key_value_heads, self.head_dim
|
| 241 |
-
)
|
| 242 |
-
|
| 243 |
-
if not is_flash_attn_available:
|
| 244 |
-
if self.num_key_value_groups > 1:
|
| 245 |
-
key_states = repeat(
|
| 246 |
-
key_states, f"b n h d -> b n (h {self.num_key_value_groups}) d"
|
| 247 |
-
)
|
| 248 |
-
value_states = repeat(
|
| 249 |
-
value_states, f"b n h d -> b n (h {self.num_key_value_groups}) d"
|
| 250 |
-
)
|
| 251 |
-
|
| 252 |
-
# b n h d -> b h n d
|
| 253 |
-
query_states = query_states.transpose(1, 2)
|
| 254 |
-
key_states = key_states.transpose(1, 2)
|
| 255 |
-
value_states = value_states.transpose(1, 2)
|
| 256 |
-
|
| 257 |
-
seq_dim = 1 if is_flash_attn_available else 2
|
| 258 |
-
kv_seq_len = key_states.shape[seq_dim]
|
| 259 |
-
if past_key_value is not None:
|
| 260 |
-
kv_seq_len += past_key_value[0].shape[seq_dim]
|
| 261 |
-
cos, sin = self.rotary_emb(value_states, seq_len=kv_seq_len)
|
| 262 |
-
query_states, key_states = apply_rotary_pos_emb(
|
| 263 |
-
query_states, key_states, cos, sin, position_ids, is_flash_attn_available
|
| 264 |
-
)
|
| 265 |
-
|
| 266 |
-
if past_key_value is not None:
|
| 267 |
-
# reuse k, v, self_attention
|
| 268 |
-
key_states = torch.cat([past_key_value[0], key_states], dim=seq_dim)
|
| 269 |
-
value_states = torch.cat([past_key_value[1], value_states], dim=seq_dim)
|
| 270 |
-
|
| 271 |
-
past_key_value = (key_states, value_states) if use_cache else None
|
| 272 |
-
|
| 273 |
-
if is_flash_attn_available:
|
| 274 |
-
attn_output = flash_attn_func(
|
| 275 |
-
query_states, key_states, value_states, dropout_p=0.0, causal=True
|
| 276 |
-
)
|
| 277 |
-
else:
|
| 278 |
-
attn_weights = torch.matmul(
|
| 279 |
-
query_states, key_states.transpose(2, 3)
|
| 280 |
-
) / math.sqrt(self.head_dim)
|
| 281 |
-
|
| 282 |
-
if attn_weights.size() != (bsz, self.num_heads, q_len, kv_seq_len):
|
| 283 |
-
raise ValueError(
|
| 284 |
-
f"Attention weights should be of size {(bsz, self.num_heads, q_len, kv_seq_len)}, but is"
|
| 285 |
-
f" {attn_weights.size()}"
|
| 286 |
-
)
|
| 287 |
-
|
| 288 |
-
if attention_mask is not None:
|
| 289 |
-
if attention_mask.size() != (bsz, 1, q_len, kv_seq_len):
|
| 290 |
-
raise ValueError(
|
| 291 |
-
f"Attention mask should be of size {(bsz, 1, q_len, kv_seq_len)}, but is"
|
| 292 |
-
f"{attention_mask.size()}"
|
| 293 |
-
)
|
| 294 |
-
attn_weights = attn_weights + attention_mask
|
| 295 |
-
dtype_min = torch.tensor(
|
| 296 |
-
torch.finfo(attn_weights.dtype).min,
|
| 297 |
-
device=attn_weights.device,
|
| 298 |
-
dtype=attn_weights.dtype,
|
| 299 |
-
)
|
| 300 |
-
attn_weights = torch.max(attn_weights, dtype_min)
|
| 301 |
-
|
| 302 |
-
# upcast attention to fp32
|
| 303 |
-
attn_weights = nn.functional.softmax(
|
| 304 |
-
attn_weights, dim=-1, dtype=torch.float32
|
| 305 |
-
).to(query_states.dtype)
|
| 306 |
-
attn_output = torch.matmul(attn_weights, value_states)
|
| 307 |
-
|
| 308 |
-
if attn_output.size() != (bsz, self.num_heads, q_len, self.head_dim):
|
| 309 |
-
raise ValueError(
|
| 310 |
-
f"`attn_output` should be of size {(bsz, self.num_heads, q_len, self.head_dim)}, but is"
|
| 311 |
-
f" {attn_output.size()}"
|
| 312 |
-
)
|
| 313 |
-
|
| 314 |
-
if not is_flash_attn_available:
|
| 315 |
-
attn_output = attn_output.transpose(1, 2)
|
| 316 |
-
|
| 317 |
-
attn_output = attn_output.reshape(bsz, q_len, self.hidden_size)
|
| 318 |
-
|
| 319 |
-
attn_output = self.o_proj(attn_output)
|
| 320 |
-
|
| 321 |
-
if not output_attentions:
|
| 322 |
-
attn_weights = None
|
| 323 |
-
|
| 324 |
-
return attn_output, attn_weights, past_key_value
|
| 325 |
-
|
| 326 |
-
|
| 327 |
-
class YiDecoderLayer(nn.Module):
|
| 328 |
-
def __init__(self, config: YiConfig):
|
| 329 |
-
super().__init__()
|
| 330 |
-
|
| 331 |
-
self.hidden_size = config.hidden_size
|
| 332 |
-
self.self_attn = YiAttention(config=config)
|
| 333 |
-
self.mlp = YiMLP(
|
| 334 |
-
hidden_size=self.hidden_size,
|
| 335 |
-
intermediate_size=config.intermediate_size,
|
| 336 |
-
hidden_act=config.hidden_act,
|
| 337 |
-
)
|
| 338 |
-
|
| 339 |
-
self.ln1 = YiRMSNorm(config.hidden_size, eps=config.rms_norm_eps)
|
| 340 |
-
self.ln2 = YiRMSNorm(config.hidden_size, eps=config.rms_norm_eps)
|
| 341 |
-
|
| 342 |
-
def forward(
|
| 343 |
-
self,
|
| 344 |
-
hidden_states: torch.Tensor,
|
| 345 |
-
attention_mask: Optional[torch.Tensor] = None,
|
| 346 |
-
position_ids: Optional[torch.LongTensor] = None,
|
| 347 |
-
past_key_value: Optional[Tuple[torch.Tensor]] = None,
|
| 348 |
-
output_attentions: Optional[bool] = False,
|
| 349 |
-
use_cache: Optional[bool] = False,
|
| 350 |
-
) -> Tuple[
|
| 351 |
-
torch.FloatTensor, Optional[Tuple[torch.FloatTensor, torch.FloatTensor]]
|
| 352 |
-
]:
|
| 353 |
-
"""
|
| 354 |
-
Args:
|
| 355 |
-
hidden_states (`torch.FloatTensor`): input to the layer of shape `(batch, seq_len, embed_dim)`
|
| 356 |
-
attention_mask (`torch.FloatTensor`, *optional*): attention mask of size
|
| 357 |
-
`(batch, 1, tgt_len, src_len)` where padding elements are indicated by very large negative values.
|
| 358 |
-
output_attentions (`bool`, *optional*):
|
| 359 |
-
Whether or not to return the attentions tensors of all attention layers. See `attentions` under
|
| 360 |
-
returned tensors for more detail.
|
| 361 |
-
use_cache (`bool`, *optional*):
|
| 362 |
-
If set to `True`, `past_key_values` key value states are returned and can be used to speed up decoding
|
| 363 |
-
(see `past_key_values`).
|
| 364 |
-
past_key_value (`Tuple(torch.FloatTensor)`, *optional*): cached past key and value projection states
|
| 365 |
-
"""
|
| 366 |
-
|
| 367 |
-
residual = hidden_states
|
| 368 |
-
|
| 369 |
-
hidden_states = self.ln1(hidden_states)
|
| 370 |
-
|
| 371 |
-
# Self Attention
|
| 372 |
-
hidden_states, self_attn_weights, present_key_value = self.self_attn(
|
| 373 |
-
hidden_states=hidden_states,
|
| 374 |
-
attention_mask=attention_mask,
|
| 375 |
-
position_ids=position_ids,
|
| 376 |
-
past_key_value=past_key_value,
|
| 377 |
-
output_attentions=output_attentions,
|
| 378 |
-
use_cache=use_cache,
|
| 379 |
-
)
|
| 380 |
-
hidden_states = residual + hidden_states
|
| 381 |
-
|
| 382 |
-
# Fully Connected
|
| 383 |
-
residual = hidden_states
|
| 384 |
-
hidden_states = self.ln2(hidden_states)
|
| 385 |
-
hidden_states = self.mlp(hidden_states)
|
| 386 |
-
hidden_states = residual + hidden_states
|
| 387 |
-
|
| 388 |
-
outputs = (hidden_states,)
|
| 389 |
-
|
| 390 |
-
if output_attentions:
|
| 391 |
-
outputs += (self_attn_weights,)
|
| 392 |
-
|
| 393 |
-
if use_cache:
|
| 394 |
-
outputs += (present_key_value,)
|
| 395 |
-
|
| 396 |
-
return outputs
|
| 397 |
-
|
| 398 |
-
|
| 399 |
-
Yi_START_DOCSTRING = r"""
|
| 400 |
-
This model inherits from [`PreTrainedModel`]. Check the superclass documentation for the generic methods the
|
| 401 |
-
library implements for all its model (such as downloading or saving, resizing the input embeddings, pruning heads
|
| 402 |
-
etc.)
|
| 403 |
-
|
| 404 |
-
This model is also a PyTorch [torch.nn.Module](https://pytorch.org/docs/stable/nn.html#torch.nn.Module) subclass.
|
| 405 |
-
Use it as a regular PyTorch Module and refer to the PyTorch documentation for all matter related to general usage
|
| 406 |
-
and behavior.
|
| 407 |
-
|
| 408 |
-
Parameters:
|
| 409 |
-
config ([`YiConfig`]):
|
| 410 |
-
Model configuration class with all the parameters of the model. Initializing with a config file does not
|
| 411 |
-
load the weights associated with the model, only the configuration. Check out the
|
| 412 |
-
[`~PreTrainedModel.from_pretrained`] method to load the model weights.
|
| 413 |
-
"""
|
| 414 |
-
|
| 415 |
-
|
| 416 |
-
@add_start_docstrings(
|
| 417 |
-
"The bare Yi Model outputting raw hidden-states without any specific head on top.",
|
| 418 |
-
Yi_START_DOCSTRING,
|
| 419 |
-
)
|
| 420 |
-
class YiPreTrainedModel(PreTrainedModel):
|
| 421 |
-
config_class = YiConfig
|
| 422 |
-
base_model_prefix = "model"
|
| 423 |
-
supports_gradient_checkpointing = True
|
| 424 |
-
_no_split_modules = ["YiDecoderLayer"]
|
| 425 |
-
_skip_keys_device_placement = "past_key_values"
|
| 426 |
-
|
| 427 |
-
def _init_weights(self, module):
|
| 428 |
-
std = self.config.initializer_range
|
| 429 |
-
if isinstance(module, nn.Linear):
|
| 430 |
-
module.weight.data.normal_(mean=0.0, std=std)
|
| 431 |
-
if module.bias is not None:
|
| 432 |
-
module.bias.data.zero_()
|
| 433 |
-
elif isinstance(module, nn.Embedding):
|
| 434 |
-
module.weight.data.normal_(mean=0.0, std=std)
|
| 435 |
-
if module.padding_idx is not None:
|
| 436 |
-
module.weight.data[module.padding_idx].zero_()
|
| 437 |
-
|
| 438 |
-
def _set_gradient_checkpointing(self, module, value=False):
|
| 439 |
-
if isinstance(module, YiModel):
|
| 440 |
-
module.gradient_checkpointing = value
|
| 441 |
-
|
| 442 |
-
|
| 443 |
-
Yi_INPUTS_DOCSTRING = r"""
|
| 444 |
-
Args:
|
| 445 |
-
input_ids (`torch.LongTensor` of shape `(batch_size, sequence_length)`):
|
| 446 |
-
Indices of input sequence tokens in the vocabulary. Padding will be ignored by default should you provide
|
| 447 |
-
it.
|
| 448 |
-
|
| 449 |
-
Indices can be obtained using [`AutoTokenizer`]. See [`PreTrainedTokenizer.encode`] and
|
| 450 |
-
[`PreTrainedTokenizer.__call__`] for details.
|
| 451 |
-
|
| 452 |
-
[What are input IDs?](../glossary#input-ids)
|
| 453 |
-
attention_mask (`torch.Tensor` of shape `(batch_size, sequence_length)`, *optional*):
|
| 454 |
-
Mask to avoid performing attention on padding token indices. Mask values selected in `[0, 1]`:
|
| 455 |
-
|
| 456 |
-
- 1 for tokens that are **not masked**,
|
| 457 |
-
- 0 for tokens that are **masked**.
|
| 458 |
-
|
| 459 |
-
[What are attention masks?](../glossary#attention-mask)
|
| 460 |
-
|
| 461 |
-
Indices can be obtained using [`AutoTokenizer`]. See [`PreTrainedTokenizer.encode`] and
|
| 462 |
-
[`PreTrainedTokenizer.__call__`] for details.
|
| 463 |
-
|
| 464 |
-
If `past_key_values` is used, optionally only the last `decoder_input_ids` have to be input (see
|
| 465 |
-
`past_key_values`).
|
| 466 |
-
|
| 467 |
-
If you want to change padding behavior, you should read [`modeling_opt._prepare_decoder_attention_mask`]
|
| 468 |
-
and modify to your needs. See diagram 1 in [the paper](https://arxiv.org/abs/1910.13461) for more
|
| 469 |
-
information on the default strategy.
|
| 470 |
-
|
| 471 |
-
- 1 indicates the head is **not masked**,
|
| 472 |
-
- 0 indicates the head is **masked**.
|
| 473 |
-
position_ids (`torch.LongTensor` of shape `(batch_size, sequence_length)`, *optional*):
|
| 474 |
-
Indices of positions of each input sequence tokens in the position embeddings. Selected in the range `[0,
|
| 475 |
-
config.n_positions - 1]`.
|
| 476 |
-
|
| 477 |
-
[What are position IDs?](../glossary#position-ids)
|
| 478 |
-
past_key_values (`tuple(tuple(torch.FloatTensor))`, *optional*, returned when `use_cache=True` is passed or when `config.use_cache=True`):
|
| 479 |
-
Tuple of `tuple(torch.FloatTensor)` of length `config.n_layers`, with each tuple having 2 tensors of shape
|
| 480 |
-
`(batch_size, num_heads, sequence_length, embed_size_per_head)`) and 2 additional tensors of shape
|
| 481 |
-
`(batch_size, num_heads, encoder_sequence_length, embed_size_per_head)`.
|
| 482 |
-
|
| 483 |
-
Contains pre-computed hidden-states (key and values in the self-attention blocks and in the cross-attention
|
| 484 |
-
blocks) that can be used (see `past_key_values` input) to speed up sequential decoding.
|
| 485 |
-
|
| 486 |
-
If `past_key_values` are used, the user can optionally input only the last `decoder_input_ids` (those that
|
| 487 |
-
don't have their past key value states given to this model) of shape `(batch_size, 1)` instead of all
|
| 488 |
-
`decoder_input_ids` of shape `(batch_size, sequence_length)`.
|
| 489 |
-
inputs_embeds (`torch.FloatTensor` of shape `(batch_size, sequence_length, hidden_size)`, *optional*):
|
| 490 |
-
Optionally, instead of passing `input_ids` you can choose to directly pass an embedded representation. This
|
| 491 |
-
is useful if you want more control over how to convert `input_ids` indices into associated vectors than the
|
| 492 |
-
model's internal embedding lookup matrix.
|
| 493 |
-
use_cache (`bool`, *optional*):
|
| 494 |
-
If set to `True`, `past_key_values` key value states are returned and can be used to speed up decoding (see
|
| 495 |
-
`past_key_values`).
|
| 496 |
-
output_attentions (`bool`, *optional*):
|
| 497 |
-
Whether or not to return the attentions tensors of all attention layers. See `attentions` under returned
|
| 498 |
-
tensors for more detail.
|
| 499 |
-
output_hidden_states (`bool`, *optional*):
|
| 500 |
-
Whether or not to return the hidden states of all layers. See `hidden_states` under returned tensors for
|
| 501 |
-
more detail.
|
| 502 |
-
return_dict (`bool`, *optional*):
|
| 503 |
-
Whether or not to return a [`~utils.ModelOutput`] instead of a plain tuple.
|
| 504 |
-
"""
|
| 505 |
-
|
| 506 |
-
|
| 507 |
-
@add_start_docstrings(
|
| 508 |
-
"The bare Yi Model outputting raw hidden-states without any specific head on top.",
|
| 509 |
-
Yi_START_DOCSTRING,
|
| 510 |
-
)
|
| 511 |
-
class YiModel(YiPreTrainedModel):
|
| 512 |
-
"""
|
| 513 |
-
Transformer decoder consisting of *config.num_hidden_layers* layers. Each layer is a [`YiDecoderLayer`]
|
| 514 |
-
|
| 515 |
-
Args:
|
| 516 |
-
config: YiConfig
|
| 517 |
-
"""
|
| 518 |
-
|
| 519 |
-
def __init__(self, config: YiConfig):
|
| 520 |
-
super().__init__(config)
|
| 521 |
-
self.padding_idx = config.pad_token_id
|
| 522 |
-
self.vocab_size = config.vocab_size
|
| 523 |
-
|
| 524 |
-
self.embed_tokens = nn.Embedding(
|
| 525 |
-
config.vocab_size, config.hidden_size, self.padding_idx
|
| 526 |
-
)
|
| 527 |
-
self.layers = nn.ModuleList(
|
| 528 |
-
[YiDecoderLayer(config) for _ in range(config.num_hidden_layers)]
|
| 529 |
-
)
|
| 530 |
-
|
| 531 |
-
self.norm = YiRMSNorm(config.hidden_size, eps=config.rms_norm_eps)
|
| 532 |
-
|
| 533 |
-
self.gradient_checkpointing = False
|
| 534 |
-
# Initialize weights and apply final processing
|
| 535 |
-
self.post_init()
|
| 536 |
-
|
| 537 |
-
def get_input_embeddings(self):
|
| 538 |
-
return self.embed_tokens
|
| 539 |
-
|
| 540 |
-
def set_input_embeddings(self, value):
|
| 541 |
-
self.embed_tokens = value
|
| 542 |
-
|
| 543 |
-
# Copied from transformers.models.bart.modeling_bart.BartDecoder._prepare_decoder_attention_mask
|
| 544 |
-
def _prepare_decoder_attention_mask(
|
| 545 |
-
self, attention_mask, input_ids, inputs_embeds, past_key_values_length
|
| 546 |
-
):
|
| 547 |
-
input_shape = (
|
| 548 |
-
input_ids.shape if input_ids is not None else inputs_embeds.shape[:-1]
|
| 549 |
-
)
|
| 550 |
-
# create causal mask
|
| 551 |
-
# [bsz, seq_len] -> [bsz, 1, tgt_seq_len, src_seq_len]
|
| 552 |
-
combined_attention_mask = None
|
| 553 |
-
if input_shape[-1] > 1:
|
| 554 |
-
combined_attention_mask = _make_causal_mask(
|
| 555 |
-
input_shape,
|
| 556 |
-
inputs_embeds.dtype,
|
| 557 |
-
device=inputs_embeds.device,
|
| 558 |
-
past_key_values_length=past_key_values_length,
|
| 559 |
-
)
|
| 560 |
-
|
| 561 |
-
if attention_mask is not None:
|
| 562 |
-
# [bsz, seq_len] -> [bsz, 1, tgt_seq_len, src_seq_len]
|
| 563 |
-
expanded_attn_mask = _expand_mask(
|
| 564 |
-
attention_mask, inputs_embeds.dtype, tgt_len=input_shape[-1]
|
| 565 |
-
).to(inputs_embeds.device)
|
| 566 |
-
combined_attention_mask = (
|
| 567 |
-
expanded_attn_mask
|
| 568 |
-
if combined_attention_mask is None
|
| 569 |
-
else expanded_attn_mask + combined_attention_mask
|
| 570 |
-
)
|
| 571 |
-
|
| 572 |
-
return combined_attention_mask
|
| 573 |
-
|
| 574 |
-
@add_start_docstrings_to_model_forward(Yi_INPUTS_DOCSTRING)
|
| 575 |
-
def forward(
|
| 576 |
-
self,
|
| 577 |
-
input_ids: torch.LongTensor = None,
|
| 578 |
-
attention_mask: Optional[torch.Tensor] = None,
|
| 579 |
-
position_ids: Optional[torch.LongTensor] = None,
|
| 580 |
-
past_key_values: Optional[List[torch.FloatTensor]] = None,
|
| 581 |
-
inputs_embeds: Optional[torch.FloatTensor] = None,
|
| 582 |
-
use_cache: Optional[bool] = None,
|
| 583 |
-
output_attentions: Optional[bool] = None,
|
| 584 |
-
output_hidden_states: Optional[bool] = None,
|
| 585 |
-
return_dict: Optional[bool] = None,
|
| 586 |
-
) -> Union[Tuple, BaseModelOutputWithPast]:
|
| 587 |
-
output_attentions = (
|
| 588 |
-
output_attentions
|
| 589 |
-
if output_attentions is not None
|
| 590 |
-
else self.config.output_attentions
|
| 591 |
-
)
|
| 592 |
-
output_hidden_states = (
|
| 593 |
-
output_hidden_states
|
| 594 |
-
if output_hidden_states is not None
|
| 595 |
-
else self.config.output_hidden_states
|
| 596 |
-
)
|
| 597 |
-
use_cache = use_cache if use_cache is not None else self.config.use_cache
|
| 598 |
-
|
| 599 |
-
return_dict = (
|
| 600 |
-
return_dict if return_dict is not None else self.config.use_return_dict
|
| 601 |
-
)
|
| 602 |
-
|
| 603 |
-
# retrieve input_ids and inputs_embeds
|
| 604 |
-
if input_ids is not None and inputs_embeds is not None:
|
| 605 |
-
raise ValueError(
|
| 606 |
-
"You cannot specify both decoder_input_ids and decoder_inputs_embeds at the same time"
|
| 607 |
-
)
|
| 608 |
-
elif input_ids is not None:
|
| 609 |
-
batch_size, seq_length = input_ids.shape
|
| 610 |
-
elif inputs_embeds is not None:
|
| 611 |
-
batch_size, seq_length, _ = inputs_embeds.shape
|
| 612 |
-
else:
|
| 613 |
-
raise ValueError(
|
| 614 |
-
"You have to specify either decoder_input_ids or decoder_inputs_embeds"
|
| 615 |
-
)
|
| 616 |
-
|
| 617 |
-
seq_length_with_past = seq_length
|
| 618 |
-
past_key_values_length = 0
|
| 619 |
-
|
| 620 |
-
if past_key_values is not None:
|
| 621 |
-
past_key_values_length = past_key_values[0][0].shape[2]
|
| 622 |
-
seq_length_with_past = seq_length_with_past + past_key_values_length
|
| 623 |
-
|
| 624 |
-
if position_ids is None:
|
| 625 |
-
device = input_ids.device if input_ids is not None else inputs_embeds.device
|
| 626 |
-
position_ids = torch.arange(
|
| 627 |
-
past_key_values_length,
|
| 628 |
-
seq_length + past_key_values_length,
|
| 629 |
-
dtype=torch.long,
|
| 630 |
-
device=device,
|
| 631 |
-
)
|
| 632 |
-
position_ids = position_ids.unsqueeze(0).view(-1, seq_length)
|
| 633 |
-
else:
|
| 634 |
-
position_ids = position_ids.view(-1, seq_length).long()
|
| 635 |
-
|
| 636 |
-
if inputs_embeds is None:
|
| 637 |
-
inputs_embeds = self.embed_tokens(input_ids)
|
| 638 |
-
|
| 639 |
-
if not is_flash_attn_available:
|
| 640 |
-
# embed positions
|
| 641 |
-
if attention_mask is None:
|
| 642 |
-
attention_mask = torch.ones(
|
| 643 |
-
(batch_size, seq_length_with_past),
|
| 644 |
-
dtype=torch.bool,
|
| 645 |
-
device=inputs_embeds.device,
|
| 646 |
-
)
|
| 647 |
-
attention_mask = self._prepare_decoder_attention_mask(
|
| 648 |
-
attention_mask,
|
| 649 |
-
input_ids,
|
| 650 |
-
inputs_embeds,
|
| 651 |
-
past_key_values_length,
|
| 652 |
-
)
|
| 653 |
-
else:
|
| 654 |
-
attention_mask = None
|
| 655 |
-
|
| 656 |
-
hidden_states = inputs_embeds
|
| 657 |
-
if self.gradient_checkpointing and self.training:
|
| 658 |
-
if use_cache:
|
| 659 |
-
logger.warning_once(
|
| 660 |
-
"`use_cache=True` is incompatible with gradient checkpointing. Setting `use_cache=False`..."
|
| 661 |
-
)
|
| 662 |
-
use_cache = False
|
| 663 |
-
|
| 664 |
-
# decoder layers
|
| 665 |
-
all_hidden_states = () if output_hidden_states else None
|
| 666 |
-
all_self_attns = () if output_attentions else None
|
| 667 |
-
next_decoder_cache = () if use_cache else None
|
| 668 |
-
|
| 669 |
-
for idx, decoder_layer in enumerate(self.layers):
|
| 670 |
-
if output_hidden_states:
|
| 671 |
-
all_hidden_states += (hidden_states,)
|
| 672 |
-
|
| 673 |
-
past_key_value = (
|
| 674 |
-
past_key_values[idx] if past_key_values is not None else None
|
| 675 |
-
)
|
| 676 |
-
|
| 677 |
-
if self.gradient_checkpointing and self.training:
|
| 678 |
-
|
| 679 |
-
def create_custom_forward(module):
|
| 680 |
-
def custom_forward(*inputs):
|
| 681 |
-
# None for past_key_value
|
| 682 |
-
return module(*inputs, past_key_value, output_attentions)
|
| 683 |
-
|
| 684 |
-
return custom_forward
|
| 685 |
-
|
| 686 |
-
layer_outputs = torch.utils.checkpoint.checkpoint(
|
| 687 |
-
create_custom_forward(decoder_layer),
|
| 688 |
-
hidden_states,
|
| 689 |
-
attention_mask,
|
| 690 |
-
position_ids,
|
| 691 |
-
)
|
| 692 |
-
else:
|
| 693 |
-
layer_outputs = decoder_layer(
|
| 694 |
-
hidden_states,
|
| 695 |
-
attention_mask=attention_mask,
|
| 696 |
-
position_ids=position_ids,
|
| 697 |
-
past_key_value=past_key_value,
|
| 698 |
-
output_attentions=output_attentions,
|
| 699 |
-
use_cache=use_cache,
|
| 700 |
-
)
|
| 701 |
-
|
| 702 |
-
hidden_states = layer_outputs[0]
|
| 703 |
-
|
| 704 |
-
if use_cache:
|
| 705 |
-
next_decoder_cache += (layer_outputs[2 if output_attentions else 1],)
|
| 706 |
-
|
| 707 |
-
if output_attentions:
|
| 708 |
-
all_self_attns += (layer_outputs[1],)
|
| 709 |
-
|
| 710 |
-
hidden_states = self.norm(hidden_states)
|
| 711 |
-
# add hidden states from the last decoder layer
|
| 712 |
-
if output_hidden_states:
|
| 713 |
-
all_hidden_states += (hidden_states,)
|
| 714 |
-
|
| 715 |
-
next_cache = next_decoder_cache if use_cache else None
|
| 716 |
-
if not return_dict:
|
| 717 |
-
return tuple(
|
| 718 |
-
v
|
| 719 |
-
for v in [hidden_states, next_cache, all_hidden_states, all_self_attns]
|
| 720 |
-
if v is not None
|
| 721 |
-
)
|
| 722 |
-
return BaseModelOutputWithPast(
|
| 723 |
-
last_hidden_state=hidden_states,
|
| 724 |
-
past_key_values=next_cache,
|
| 725 |
-
hidden_states=all_hidden_states,
|
| 726 |
-
attentions=all_self_attns,
|
| 727 |
-
)
|
| 728 |
-
|
| 729 |
-
|
| 730 |
-
class YiForCausalLM(YiPreTrainedModel):
|
| 731 |
-
_tied_weights_keys = ["lm_head.weight"]
|
| 732 |
-
|
| 733 |
-
def __init__(self, config):
|
| 734 |
-
super().__init__(config)
|
| 735 |
-
self.model = YiModel(config)
|
| 736 |
-
|
| 737 |
-
self.lm_head = nn.Linear(config.hidden_size, config.vocab_size, bias=False)
|
| 738 |
-
|
| 739 |
-
# Initialize weights and apply final processing
|
| 740 |
-
self.post_init()
|
| 741 |
-
|
| 742 |
-
def get_input_embeddings(self):
|
| 743 |
-
return self.model.embed_tokens
|
| 744 |
-
|
| 745 |
-
def set_input_embeddings(self, value):
|
| 746 |
-
self.model.embed_tokens = value
|
| 747 |
-
|
| 748 |
-
def get_output_embeddings(self):
|
| 749 |
-
return self.lm_head
|
| 750 |
-
|
| 751 |
-
def set_output_embeddings(self, new_embeddings):
|
| 752 |
-
self.lm_head = new_embeddings
|
| 753 |
-
|
| 754 |
-
def set_decoder(self, decoder):
|
| 755 |
-
self.model = decoder
|
| 756 |
-
|
| 757 |
-
def get_decoder(self):
|
| 758 |
-
return self.model
|
| 759 |
-
|
| 760 |
-
@add_start_docstrings_to_model_forward(Yi_INPUTS_DOCSTRING)
|
| 761 |
-
@replace_return_docstrings(
|
| 762 |
-
output_type=CausalLMOutputWithPast, config_class=_CONFIG_FOR_DOC
|
| 763 |
-
)
|
| 764 |
-
def forward(
|
| 765 |
-
self,
|
| 766 |
-
input_ids: torch.LongTensor = None,
|
| 767 |
-
attention_mask: Optional[torch.Tensor] = None,
|
| 768 |
-
position_ids: Optional[torch.LongTensor] = None,
|
| 769 |
-
past_key_values: Optional[List[torch.FloatTensor]] = None,
|
| 770 |
-
inputs_embeds: Optional[torch.FloatTensor] = None,
|
| 771 |
-
labels: Optional[torch.LongTensor] = None,
|
| 772 |
-
use_cache: Optional[bool] = None,
|
| 773 |
-
output_attentions: Optional[bool] = None,
|
| 774 |
-
output_hidden_states: Optional[bool] = None,
|
| 775 |
-
return_dict: Optional[bool] = None,
|
| 776 |
-
) -> Union[Tuple, CausalLMOutputWithPast]:
|
| 777 |
-
r"""
|
| 778 |
-
Args:
|
| 779 |
-
labels (`torch.LongTensor` of shape `(batch_size, sequence_length)`, *optional*):
|
| 780 |
-
Labels for computing the masked language modeling loss. Indices should either be in `[0, ...,
|
| 781 |
-
config.vocab_size]` or -100 (see `input_ids` docstring). Tokens with indices set to `-100` are ignored
|
| 782 |
-
(masked), the loss is only computed for the tokens with labels in `[0, ..., config.vocab_size]`.
|
| 783 |
-
|
| 784 |
-
Returns:
|
| 785 |
-
|
| 786 |
-
Example:
|
| 787 |
-
|
| 788 |
-
```python
|
| 789 |
-
>>> from transformers import AutoTokenizer, YiForCausalLM
|
| 790 |
-
|
| 791 |
-
>>> model = YiForCausalLM.from_pretrained(PATH_TO_CONVERTED_WEIGHTS)
|
| 792 |
-
>>> tokenizer = AutoTokenizer.from_pretrained(PATH_TO_CONVERTED_TOKENIZER)
|
| 793 |
-
|
| 794 |
-
>>> prompt = "Hey, are you conscious? Can you talk to me?"
|
| 795 |
-
>>> inputs = tokenizer(prompt, return_tensors="pt")
|
| 796 |
-
|
| 797 |
-
>>> # Generate
|
| 798 |
-
>>> generate_ids = model.generate(inputs.input_ids, max_length=30)
|
| 799 |
-
>>> tokenizer.batch_decode(generate_ids, skip_special_tokens=True, clean_up_tokenization_spaces=False)[0]
|
| 800 |
-
"Hey, are you conscious? Can you talk to me?\nI'm not conscious, but I can talk to you."
|
| 801 |
-
```"""
|
| 802 |
-
|
| 803 |
-
output_attentions = (
|
| 804 |
-
output_attentions
|
| 805 |
-
if output_attentions is not None
|
| 806 |
-
else self.config.output_attentions
|
| 807 |
-
)
|
| 808 |
-
output_hidden_states = (
|
| 809 |
-
output_hidden_states
|
| 810 |
-
if output_hidden_states is not None
|
| 811 |
-
else self.config.output_hidden_states
|
| 812 |
-
)
|
| 813 |
-
return_dict = (
|
| 814 |
-
return_dict if return_dict is not None else self.config.use_return_dict
|
| 815 |
-
)
|
| 816 |
-
|
| 817 |
-
# decoder outputs consists of (dec_features, layer_state, dec_hidden, dec_attn)
|
| 818 |
-
outputs = self.model(
|
| 819 |
-
input_ids=input_ids,
|
| 820 |
-
attention_mask=attention_mask,
|
| 821 |
-
position_ids=position_ids,
|
| 822 |
-
past_key_values=past_key_values,
|
| 823 |
-
inputs_embeds=inputs_embeds,
|
| 824 |
-
use_cache=use_cache,
|
| 825 |
-
output_attentions=output_attentions,
|
| 826 |
-
output_hidden_states=output_hidden_states,
|
| 827 |
-
return_dict=return_dict,
|
| 828 |
-
)
|
| 829 |
-
|
| 830 |
-
hidden_states = outputs[0]
|
| 831 |
-
logits = self.lm_head(hidden_states)
|
| 832 |
-
|
| 833 |
-
loss = None
|
| 834 |
-
if labels is not None:
|
| 835 |
-
# Shift so that tokens < n predict n
|
| 836 |
-
shift_logits = logits[..., :-1, :].contiguous()
|
| 837 |
-
shift_labels = labels[..., 1:].contiguous()
|
| 838 |
-
# Flatten the tokens
|
| 839 |
-
loss_fct = CrossEntropyLoss()
|
| 840 |
-
shift_logits = shift_logits.view(-1, self.config.vocab_size)
|
| 841 |
-
shift_labels = shift_labels.view(-1)
|
| 842 |
-
# Enable model parallelism
|
| 843 |
-
shift_labels = shift_labels.to(shift_logits.device)
|
| 844 |
-
loss = loss_fct(shift_logits, shift_labels)
|
| 845 |
-
|
| 846 |
-
if not return_dict:
|
| 847 |
-
output = (logits,) + outputs[1:]
|
| 848 |
-
return (loss,) + output if loss is not None else output
|
| 849 |
-
|
| 850 |
-
return CausalLMOutputWithPast(
|
| 851 |
-
loss=loss,
|
| 852 |
-
logits=logits,
|
| 853 |
-
past_key_values=outputs.past_key_values,
|
| 854 |
-
hidden_states=outputs.hidden_states,
|
| 855 |
-
attentions=outputs.attentions,
|
| 856 |
-
)
|
| 857 |
-
|
| 858 |
-
def prepare_inputs_for_generation(
|
| 859 |
-
self,
|
| 860 |
-
input_ids,
|
| 861 |
-
past_key_values=None,
|
| 862 |
-
attention_mask=None,
|
| 863 |
-
inputs_embeds=None,
|
| 864 |
-
**kwargs,
|
| 865 |
-
):
|
| 866 |
-
if past_key_values:
|
| 867 |
-
input_ids = input_ids[:, -1:]
|
| 868 |
-
|
| 869 |
-
position_ids = kwargs.get("position_ids", None)
|
| 870 |
-
if attention_mask is not None and position_ids is None:
|
| 871 |
-
# create position_ids on the fly for batch generation
|
| 872 |
-
position_ids = attention_mask.long().cumsum(-1) - 1
|
| 873 |
-
position_ids.masked_fill_(attention_mask == 0, 1)
|
| 874 |
-
if past_key_values:
|
| 875 |
-
position_ids = position_ids[:, -1].unsqueeze(-1)
|
| 876 |
-
|
| 877 |
-
# if `inputs_embeds` are passed, we only want to use them in the 1st generation step
|
| 878 |
-
if inputs_embeds is not None and past_key_values is None:
|
| 879 |
-
model_inputs = {"inputs_embeds": inputs_embeds}
|
| 880 |
-
else:
|
| 881 |
-
model_inputs = {"input_ids": input_ids}
|
| 882 |
-
|
| 883 |
-
model_inputs.update(
|
| 884 |
-
{
|
| 885 |
-
"position_ids": position_ids,
|
| 886 |
-
"past_key_values": past_key_values,
|
| 887 |
-
"use_cache": kwargs.get("use_cache"),
|
| 888 |
-
"attention_mask": attention_mask,
|
| 889 |
-
}
|
| 890 |
-
)
|
| 891 |
-
return model_inputs
|
| 892 |
-
|
| 893 |
-
@staticmethod
|
| 894 |
-
def _reorder_cache(past_key_values, beam_idx):
|
| 895 |
-
reordered_past = ()
|
| 896 |
-
for layer_past in past_key_values:
|
| 897 |
-
reordered_past += (
|
| 898 |
-
tuple(
|
| 899 |
-
past_state.index_select(0, beam_idx.to(past_state.device))
|
| 900 |
-
for past_state in layer_past
|
| 901 |
-
),
|
| 902 |
-
)
|
| 903 |
-
return reordered_past
|
| 904 |
-
|
| 905 |
-
|
| 906 |
-
@add_start_docstrings(
|
| 907 |
-
"""
|
| 908 |
-
The Yi Model transformer with a sequence classification head on top (linear layer).
|
| 909 |
-
|
| 910 |
-
[`YiForSequenceClassification`] uses the last token in order to do the classification, as other causal models
|
| 911 |
-
(e.g. GPT-2) do.
|
| 912 |
-
|
| 913 |
-
Since it does classification on the last token, it requires to know the position of the last token. If a
|
| 914 |
-
`pad_token_id` is defined in the configuration, it finds the last token that is not a padding token in each row. If
|
| 915 |
-
no `pad_token_id` is defined, it simply takes the last value in each row of the batch. Since it cannot guess the
|
| 916 |
-
padding tokens when `inputs_embeds` are passed instead of `input_ids`, it does the same (take the last value in
|
| 917 |
-
each row of the batch).
|
| 918 |
-
""",
|
| 919 |
-
Yi_START_DOCSTRING,
|
| 920 |
-
)
|
| 921 |
-
class YiForSequenceClassification(YiPreTrainedModel):
|
| 922 |
-
def __init__(self, config):
|
| 923 |
-
super().__init__(config)
|
| 924 |
-
self.num_labels = config.num_labels
|
| 925 |
-
self.model = YiModel(config)
|
| 926 |
-
self.score = nn.Linear(config.hidden_size, self.num_labels, bias=False)
|
| 927 |
-
|
| 928 |
-
# Initialize weights and apply final processing
|
| 929 |
-
self.post_init()
|
| 930 |
-
|
| 931 |
-
def get_input_embeddings(self):
|
| 932 |
-
return self.model.embed_tokens
|
| 933 |
-
|
| 934 |
-
def set_input_embeddings(self, value):
|
| 935 |
-
self.model.embed_tokens = value
|
| 936 |
-
|
| 937 |
-
@add_start_docstrings_to_model_forward(Yi_INPUTS_DOCSTRING)
|
| 938 |
-
def forward(
|
| 939 |
-
self,
|
| 940 |
-
input_ids: torch.LongTensor = None,
|
| 941 |
-
attention_mask: Optional[torch.Tensor] = None,
|
| 942 |
-
position_ids: Optional[torch.LongTensor] = None,
|
| 943 |
-
past_key_values: Optional[List[torch.FloatTensor]] = None,
|
| 944 |
-
inputs_embeds: Optional[torch.FloatTensor] = None,
|
| 945 |
-
labels: Optional[torch.LongTensor] = None,
|
| 946 |
-
use_cache: Optional[bool] = None,
|
| 947 |
-
output_attentions: Optional[bool] = None,
|
| 948 |
-
output_hidden_states: Optional[bool] = None,
|
| 949 |
-
return_dict: Optional[bool] = None,
|
| 950 |
-
) -> Union[Tuple, SequenceClassifierOutputWithPast]:
|
| 951 |
-
r"""
|
| 952 |
-
labels (`torch.LongTensor` of shape `(batch_size,)`, *optional*):
|
| 953 |
-
Labels for computing the sequence classification/regression loss. Indices should be in `[0, ...,
|
| 954 |
-
config.num_labels - 1]`. If `config.num_labels == 1` a regression loss is computed (Mean-Square loss), If
|
| 955 |
-
`config.num_labels > 1` a classification loss is computed (Cross-Entropy).
|
| 956 |
-
"""
|
| 957 |
-
return_dict = (
|
| 958 |
-
return_dict if return_dict is not None else self.config.use_return_dict
|
| 959 |
-
)
|
| 960 |
-
|
| 961 |
-
transformer_outputs = self.model(
|
| 962 |
-
input_ids,
|
| 963 |
-
attention_mask=attention_mask,
|
| 964 |
-
position_ids=position_ids,
|
| 965 |
-
past_key_values=past_key_values,
|
| 966 |
-
inputs_embeds=inputs_embeds,
|
| 967 |
-
use_cache=use_cache,
|
| 968 |
-
output_attentions=output_attentions,
|
| 969 |
-
output_hidden_states=output_hidden_states,
|
| 970 |
-
return_dict=return_dict,
|
| 971 |
-
)
|
| 972 |
-
hidden_states = transformer_outputs[0]
|
| 973 |
-
logits = self.score(hidden_states)
|
| 974 |
-
|
| 975 |
-
if input_ids is not None:
|
| 976 |
-
batch_size = input_ids.shape[0]
|
| 977 |
-
else:
|
| 978 |
-
batch_size = inputs_embeds.shape[0]
|
| 979 |
-
|
| 980 |
-
if self.config.pad_token_id is None and batch_size != 1:
|
| 981 |
-
raise ValueError(
|
| 982 |
-
"Cannot handle batch sizes > 1 if no padding token is defined."
|
| 983 |
-
)
|
| 984 |
-
if self.config.pad_token_id is None:
|
| 985 |
-
sequence_lengths = -1
|
| 986 |
-
else:
|
| 987 |
-
if input_ids is not None:
|
| 988 |
-
sequence_lengths = (
|
| 989 |
-
torch.eq(input_ids, self.config.pad_token_id).long().argmax(-1) - 1
|
| 990 |
-
).to(logits.device)
|
| 991 |
-
else:
|
| 992 |
-
sequence_lengths = -1
|
| 993 |
-
|
| 994 |
-
pooled_logits = logits[
|
| 995 |
-
torch.arange(batch_size, device=logits.device), sequence_lengths
|
| 996 |
-
]
|
| 997 |
-
|
| 998 |
-
loss = None
|
| 999 |
-
if labels is not None:
|
| 1000 |
-
labels = labels.to(logits.device)
|
| 1001 |
-
if self.config.problem_type is None:
|
| 1002 |
-
if self.num_labels == 1:
|
| 1003 |
-
self.config.problem_type = "regression"
|
| 1004 |
-
elif self.num_labels > 1 and (
|
| 1005 |
-
labels.dtype == torch.long or labels.dtype == torch.int
|
| 1006 |
-
):
|
| 1007 |
-
self.config.problem_type = "single_label_classification"
|
| 1008 |
-
else:
|
| 1009 |
-
self.config.problem_type = "multi_label_classification"
|
| 1010 |
-
|
| 1011 |
-
if self.config.problem_type == "regression":
|
| 1012 |
-
loss_fct = MSELoss()
|
| 1013 |
-
if self.num_labels == 1:
|
| 1014 |
-
loss = loss_fct(pooled_logits.squeeze(), labels.squeeze())
|
| 1015 |
-
else:
|
| 1016 |
-
loss = loss_fct(pooled_logits, labels)
|
| 1017 |
-
elif self.config.problem_type == "single_label_classification":
|
| 1018 |
-
loss_fct = CrossEntropyLoss()
|
| 1019 |
-
loss = loss_fct(
|
| 1020 |
-
pooled_logits.view(-1, self.num_labels), labels.view(-1)
|
| 1021 |
-
)
|
| 1022 |
-
elif self.config.problem_type == "multi_label_classification":
|
| 1023 |
-
loss_fct = BCEWithLogitsLoss()
|
| 1024 |
-
loss = loss_fct(pooled_logits, labels)
|
| 1025 |
-
if not return_dict:
|
| 1026 |
-
output = (pooled_logits,) + transformer_outputs[1:]
|
| 1027 |
-
return ((loss,) + output) if loss is not None else output
|
| 1028 |
-
|
| 1029 |
-
return SequenceClassifierOutputWithPast(
|
| 1030 |
-
loss=loss,
|
| 1031 |
-
logits=pooled_logits,
|
| 1032 |
-
past_key_values=transformer_outputs.past_key_values,
|
| 1033 |
-
hidden_states=transformer_outputs.hidden_states,
|
| 1034 |
-
attentions=transformer_outputs.attentions,
|
| 1035 |
-
)
|
|
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|
@@ -32,8 +32,8 @@
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| 32 |
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| 33 |
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| 39 |
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|
@@ -41,8 +41,8 @@
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| 41 |
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| 42 |
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| 48 |
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|
@@ -50,8 +50,8 @@
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| 50 |
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| 52 |
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|
tokenization_yi.py
DELETED
|
@@ -1,255 +0,0 @@
|
|
| 1 |
-
import os
|
| 2 |
-
from shutil import copyfile
|
| 3 |
-
from typing import Any, Dict, List, Optional, Tuple
|
| 4 |
-
|
| 5 |
-
import sentencepiece as spm
|
| 6 |
-
from transformers.tokenization_utils import AddedToken, PreTrainedTokenizer
|
| 7 |
-
from transformers.utils import logging
|
| 8 |
-
|
| 9 |
-
logger = logging.get_logger(__name__)
|
| 10 |
-
|
| 11 |
-
VOCAB_FILES_NAMES = {"vocab_file": "tokenizer.model"}
|
| 12 |
-
|
| 13 |
-
PRETRAINED_VOCAB_FILES_MAP = {
|
| 14 |
-
"vocab_file": {},
|
| 15 |
-
"tokenizer_file": {},
|
| 16 |
-
}
|
| 17 |
-
PRETRAINED_POSITIONAL_EMBEDDINGS_SIZES = {}
|
| 18 |
-
|
| 19 |
-
|
| 20 |
-
class YiTokenizer(PreTrainedTokenizer):
|
| 21 |
-
"""
|
| 22 |
-
Construct a Yi tokenizer. Based on byte-level Byte-Pair-Encoding.
|
| 23 |
-
|
| 24 |
-
Args:
|
| 25 |
-
vocab_file (`str`):
|
| 26 |
-
Path to the vocabulary file.
|
| 27 |
-
"""
|
| 28 |
-
|
| 29 |
-
vocab_files_names = VOCAB_FILES_NAMES
|
| 30 |
-
pretrained_vocab_files_map = PRETRAINED_VOCAB_FILES_MAP
|
| 31 |
-
max_model_input_sizes = PRETRAINED_POSITIONAL_EMBEDDINGS_SIZES
|
| 32 |
-
model_input_names = ["input_ids", "attention_mask"]
|
| 33 |
-
|
| 34 |
-
def __init__(
|
| 35 |
-
self,
|
| 36 |
-
vocab_file,
|
| 37 |
-
unk_token="<unk>",
|
| 38 |
-
bos_token="<|startoftext|>",
|
| 39 |
-
eos_token="<|endoftext|>",
|
| 40 |
-
pad_token="<unk>",
|
| 41 |
-
sp_model_kwargs: Optional[Dict[str, Any]] = None,
|
| 42 |
-
add_bos_token=True,
|
| 43 |
-
add_eos_token=False,
|
| 44 |
-
clean_up_tokenization_spaces=False,
|
| 45 |
-
**kwargs,
|
| 46 |
-
):
|
| 47 |
-
self.sp_model_kwargs = {} if sp_model_kwargs is None else sp_model_kwargs
|
| 48 |
-
bos_token = (
|
| 49 |
-
AddedToken(bos_token, lstrip=False, rstrip=False)
|
| 50 |
-
if isinstance(bos_token, str)
|
| 51 |
-
else bos_token
|
| 52 |
-
)
|
| 53 |
-
eos_token = (
|
| 54 |
-
AddedToken(eos_token, lstrip=False, rstrip=False)
|
| 55 |
-
if isinstance(eos_token, str)
|
| 56 |
-
else eos_token
|
| 57 |
-
)
|
| 58 |
-
unk_token = (
|
| 59 |
-
AddedToken(unk_token, lstrip=False, rstrip=False)
|
| 60 |
-
if isinstance(unk_token, str)
|
| 61 |
-
else unk_token
|
| 62 |
-
)
|
| 63 |
-
pad_token = (
|
| 64 |
-
AddedToken(pad_token, lstrip=False, rstrip=False)
|
| 65 |
-
if isinstance(pad_token, str)
|
| 66 |
-
else pad_token
|
| 67 |
-
)
|
| 68 |
-
self.vocab_file = vocab_file
|
| 69 |
-
self.add_bos_token = add_bos_token
|
| 70 |
-
self.add_eos_token = add_eos_token
|
| 71 |
-
self.sp_model = spm.SentencePieceProcessor(**self.sp_model_kwargs)
|
| 72 |
-
self.sp_model.Load(vocab_file)
|
| 73 |
-
super().__init__(
|
| 74 |
-
bos_token=bos_token,
|
| 75 |
-
eos_token=eos_token,
|
| 76 |
-
unk_token=unk_token,
|
| 77 |
-
pad_token=pad_token,
|
| 78 |
-
add_bos_token=add_bos_token,
|
| 79 |
-
add_eos_token=add_eos_token,
|
| 80 |
-
sp_model_kwargs=self.sp_model_kwargs,
|
| 81 |
-
clean_up_tokenization_spaces=clean_up_tokenization_spaces,
|
| 82 |
-
**kwargs,
|
| 83 |
-
)
|
| 84 |
-
|
| 85 |
-
def __getstate__(self):
|
| 86 |
-
state = self.__dict__.copy()
|
| 87 |
-
state["sp_model"] = None
|
| 88 |
-
return state
|
| 89 |
-
|
| 90 |
-
def __setstate__(self, d):
|
| 91 |
-
self.__dict__ = d
|
| 92 |
-
self.sp_model = spm.SentencePieceProcessor(**self.sp_model_kwargs)
|
| 93 |
-
self.sp_model.Load(self.vocab_file)
|
| 94 |
-
|
| 95 |
-
@property
|
| 96 |
-
def vocab_size(self):
|
| 97 |
-
"""Returns vocab size"""
|
| 98 |
-
return self.sp_model.get_piece_size()
|
| 99 |
-
|
| 100 |
-
def get_vocab(self):
|
| 101 |
-
"""Returns vocab as a dict"""
|
| 102 |
-
vocab = {self.convert_ids_to_tokens(i): i for i in range(self.vocab_size)}
|
| 103 |
-
vocab.update(self.added_tokens_encoder)
|
| 104 |
-
return vocab
|
| 105 |
-
|
| 106 |
-
def _tokenize(self, text):
|
| 107 |
-
"""Returns a tokenized string."""
|
| 108 |
-
return self.sp_model.encode(text, out_type=str)
|
| 109 |
-
|
| 110 |
-
def _convert_token_to_id(self, token):
|
| 111 |
-
"""Converts a token (str) in an id using the vocab."""
|
| 112 |
-
return self.sp_model.piece_to_id(token)
|
| 113 |
-
|
| 114 |
-
def _convert_id_to_token(self, index):
|
| 115 |
-
"""Converts an index (integer) in a token (str) using the vocab."""
|
| 116 |
-
token = self.sp_model.IdToPiece(index)
|
| 117 |
-
return token
|
| 118 |
-
|
| 119 |
-
def convert_tokens_to_string(self, tokens):
|
| 120 |
-
"""Converts a sequence of tokens (string) in a single string."""
|
| 121 |
-
current_sub_tokens = []
|
| 122 |
-
out_string = ""
|
| 123 |
-
prev_is_special = False
|
| 124 |
-
for i, token in enumerate(tokens):
|
| 125 |
-
# make sure that special tokens are not decoded using sentencepiece model
|
| 126 |
-
if token in self.all_special_tokens:
|
| 127 |
-
if not prev_is_special and i != 0:
|
| 128 |
-
out_string += " "
|
| 129 |
-
out_string += self.sp_model.decode(current_sub_tokens) + token
|
| 130 |
-
prev_is_special = True
|
| 131 |
-
current_sub_tokens = []
|
| 132 |
-
else:
|
| 133 |
-
current_sub_tokens.append(token)
|
| 134 |
-
prev_is_special = False
|
| 135 |
-
out_string += self.sp_model.decode(current_sub_tokens)
|
| 136 |
-
return out_string
|
| 137 |
-
|
| 138 |
-
def save_vocabulary(
|
| 139 |
-
self, save_directory, filename_prefix: Optional[str] = None
|
| 140 |
-
) -> Tuple[str]:
|
| 141 |
-
"""
|
| 142 |
-
Save the vocabulary and special tokens file to a directory.
|
| 143 |
-
|
| 144 |
-
Args:
|
| 145 |
-
save_directory (`str`):
|
| 146 |
-
The directory in which to save the vocabulary.
|
| 147 |
-
|
| 148 |
-
Returns:
|
| 149 |
-
`Tuple(str)`: Paths to the files saved.
|
| 150 |
-
"""
|
| 151 |
-
if not os.path.isdir(save_directory):
|
| 152 |
-
logger.error(f"Vocabulary path ({save_directory}) should be a directory")
|
| 153 |
-
return
|
| 154 |
-
out_vocab_file = os.path.join(
|
| 155 |
-
save_directory,
|
| 156 |
-
(filename_prefix + "-" if filename_prefix else "")
|
| 157 |
-
+ VOCAB_FILES_NAMES["vocab_file"],
|
| 158 |
-
)
|
| 159 |
-
|
| 160 |
-
if os.path.abspath(self.vocab_file) != os.path.abspath(
|
| 161 |
-
out_vocab_file
|
| 162 |
-
) and os.path.isfile(self.vocab_file):
|
| 163 |
-
copyfile(self.vocab_file, out_vocab_file)
|
| 164 |
-
elif not os.path.isfile(self.vocab_file):
|
| 165 |
-
with open(out_vocab_file, "wb") as fi:
|
| 166 |
-
content_spiece_model = self.sp_model.serialized_model_proto()
|
| 167 |
-
fi.write(content_spiece_model)
|
| 168 |
-
|
| 169 |
-
return (out_vocab_file,)
|
| 170 |
-
|
| 171 |
-
def build_inputs_with_special_tokens(self, token_ids_0, token_ids_1=None):
|
| 172 |
-
bos_token_id = [self.bos_token_id] if self.add_bos_token else []
|
| 173 |
-
eos_token_id = [self.eos_token_id] if self.add_eos_token else []
|
| 174 |
-
|
| 175 |
-
output = bos_token_id + token_ids_0 + eos_token_id
|
| 176 |
-
|
| 177 |
-
if token_ids_1 is not None:
|
| 178 |
-
output = output + bos_token_id + token_ids_1 + eos_token_id
|
| 179 |
-
|
| 180 |
-
return output
|
| 181 |
-
|
| 182 |
-
def get_special_tokens_mask(
|
| 183 |
-
self,
|
| 184 |
-
token_ids_0: List[int],
|
| 185 |
-
token_ids_1: Optional[List[int]] = None,
|
| 186 |
-
already_has_special_tokens: bool = False,
|
| 187 |
-
) -> List[int]:
|
| 188 |
-
"""
|
| 189 |
-
Retrieve sequence ids from a token list that has no special tokens added. This method is called when adding
|
| 190 |
-
special tokens using the tokenizer `prepare_for_model` method.
|
| 191 |
-
|
| 192 |
-
Args:
|
| 193 |
-
token_ids_0 (`List[int]`):
|
| 194 |
-
List of IDs.
|
| 195 |
-
token_ids_1 (`List[int]`, *optional*):
|
| 196 |
-
Optional second list of IDs for sequence pairs.
|
| 197 |
-
already_has_special_tokens (`bool`, *optional*, defaults to `False`):
|
| 198 |
-
Whether or not the token list is already formatted with special tokens for the model.
|
| 199 |
-
|
| 200 |
-
Returns:
|
| 201 |
-
`List[int]`: A list of integers in the range [0, 1]: 1 for a special token, 0 for a sequence token.
|
| 202 |
-
"""
|
| 203 |
-
if already_has_special_tokens:
|
| 204 |
-
return super().get_special_tokens_mask(
|
| 205 |
-
token_ids_0=token_ids_0,
|
| 206 |
-
token_ids_1=token_ids_1,
|
| 207 |
-
already_has_special_tokens=True,
|
| 208 |
-
)
|
| 209 |
-
|
| 210 |
-
bos_token_id = [1] if self.add_bos_token else []
|
| 211 |
-
eos_token_id = [1] if self.add_eos_token else []
|
| 212 |
-
|
| 213 |
-
if token_ids_1 is None:
|
| 214 |
-
return bos_token_id + ([0] * len(token_ids_0)) + eos_token_id
|
| 215 |
-
return (
|
| 216 |
-
bos_token_id
|
| 217 |
-
+ ([0] * len(token_ids_0))
|
| 218 |
-
+ eos_token_id
|
| 219 |
-
+ bos_token_id
|
| 220 |
-
+ ([0] * len(token_ids_1))
|
| 221 |
-
+ eos_token_id
|
| 222 |
-
)
|
| 223 |
-
|
| 224 |
-
def create_token_type_ids_from_sequences(
|
| 225 |
-
self, token_ids_0: List[int], token_ids_1: Optional[List[int]] = None
|
| 226 |
-
) -> List[int]:
|
| 227 |
-
"""
|
| 228 |
-
Creates a mask from the two sequences passed to be used in a sequence-pair classification task. An ALBERT
|
| 229 |
-
sequence pair mask has the following format:
|
| 230 |
-
|
| 231 |
-
```
|
| 232 |
-
0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1
|
| 233 |
-
| first sequence | second sequence |
|
| 234 |
-
```
|
| 235 |
-
|
| 236 |
-
if token_ids_1 is None, only returns the first portion of the mask (0s).
|
| 237 |
-
|
| 238 |
-
Args:
|
| 239 |
-
token_ids_0 (`List[int]`):
|
| 240 |
-
List of ids.
|
| 241 |
-
token_ids_1 (`List[int]`, *optional*):
|
| 242 |
-
Optional second list of IDs for sequence pairs.
|
| 243 |
-
|
| 244 |
-
Returns:
|
| 245 |
-
`List[int]`: List of [token type IDs](../glossary#token-type-ids) according to the given sequence(s).
|
| 246 |
-
"""
|
| 247 |
-
bos_token_id = [self.bos_token_id] if self.add_bos_token else []
|
| 248 |
-
eos_token_id = [self.eos_token_id] if self.add_eos_token else []
|
| 249 |
-
|
| 250 |
-
output = [0] * len(bos_token_id + token_ids_0 + eos_token_id)
|
| 251 |
-
|
| 252 |
-
if token_ids_1 is not None:
|
| 253 |
-
output += [1] * len(bos_token_id + token_ids_1 + eos_token_id)
|
| 254 |
-
|
| 255 |
-
return output
|
|
|
|
|
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|
tokenizer_config.json
CHANGED
|
@@ -1,9 +1,13 @@
|
|
| 1 |
{
|
| 2 |
-
"auto_map": {
|
| 3 |
-
"AutoTokenizer": ["tokenization_yi.YiTokenizer", null]
|
| 4 |
-
},
|
| 5 |
"add_bos_token": false,
|
| 6 |
"add_eos_token": false,
|
| 7 |
"model_max_length": 4096,
|
| 8 |
-
"
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 9 |
}
|
|
|
|
| 1 |
{
|
|
|
|
|
|
|
|
|
|
| 2 |
"add_bos_token": false,
|
| 3 |
"add_eos_token": false,
|
| 4 |
"model_max_length": 4096,
|
| 5 |
+
"unk_token": "<unk>",
|
| 6 |
+
"bos_token": "<|startoftext|>",
|
| 7 |
+
"eos_token": "<|endoftext|>",
|
| 8 |
+
"pad_token": "<unk>",
|
| 9 |
+
"sp_model_kwargs": {},
|
| 10 |
+
"clean_up_tokenization_spaces": false,
|
| 11 |
+
"legacy": true,
|
| 12 |
+
"tokenizer_class": "LlamaTokenizer"
|
| 13 |
}
|