check_repo.py 46.9 KB
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# coding=utf-8
# Copyright 2020 The HuggingFace Inc. team.
#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
#     http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.
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"""
Utility that performs several consistency checks on the repo. This includes:
- checking all models are properly defined in the __init__ of models/
- checking all models are in the main __init__
- checking all models are properly tested
- checking all object in the main __init__ are documented
- checking all models are in at least one auto class
- checking all the auto mapping are properly defined (no typos, importable)
- checking the list of deprecated models is up to date

Use from the root of the repo with (as used in `make repo-consistency`):

```bash
python utils/check_repo.py
```

It has no auto-fix mode.
"""
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import inspect
import os
import re
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import sys
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import types
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import warnings
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from collections import OrderedDict
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from difflib import get_close_matches
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from pathlib import Path
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from typing import List, Tuple
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from transformers import is_flax_available, is_tf_available, is_torch_available
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from transformers.models.auto import get_values
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from transformers.models.auto.configuration_auto import CONFIG_MAPPING_NAMES
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from transformers.models.auto.feature_extraction_auto import FEATURE_EXTRACTOR_MAPPING_NAMES
from transformers.models.auto.image_processing_auto import IMAGE_PROCESSOR_MAPPING_NAMES
from transformers.models.auto.processing_auto import PROCESSOR_MAPPING_NAMES
from transformers.models.auto.tokenization_auto import TOKENIZER_MAPPING_NAMES
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from transformers.utils import ENV_VARS_TRUE_VALUES, direct_transformers_import
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# All paths are set with the intent you should run this script from the root of the repo with the command
# python utils/check_repo.py
PATH_TO_TRANSFORMERS = "src/transformers"
PATH_TO_TESTS = "tests"
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PATH_TO_DOC = "docs/source/en"
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# Update this list with models that are supposed to be private.
PRIVATE_MODELS = [
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    "AltRobertaModel",
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    "DPRSpanPredictor",
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    "UdopStack",
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    "LongT5Stack",
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    "RealmBertModel",
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    "T5Stack",
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    "MT5Stack",
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    "UMT5Stack",
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    "Pop2PianoStack",
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    "SwitchTransformersStack",
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    "TFDPRSpanPredictor",
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    "MaskFormerSwinModel",
    "MaskFormerSwinPreTrainedModel",
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    "BridgeTowerTextModel",
    "BridgeTowerVisionModel",
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    "Kosmos2TextModel",
    "Kosmos2TextForCausalLM",
    "Kosmos2VisionModel",
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    "SeamlessM4Tv2TextToUnitModel",
    "SeamlessM4Tv2CodeHifiGan",
    "SeamlessM4Tv2TextToUnitForConditionalGeneration",
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]

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# Update this list for models that are not tested with a comment explaining the reason it should not be.
# Being in this list is an exception and should **not** be the rule.
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IGNORE_NON_TESTED = PRIVATE_MODELS.copy() + [
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    # models to ignore for not tested
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    "RecurrentGemmaModel",  # Building part of bigger (tested) model.
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    "FuyuForCausalLM",  # Not tested fort now
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    "InstructBlipQFormerModel",  # Building part of bigger (tested) model.
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    "InstructBlipVideoQFormerModel",  # Building part of bigger (tested) model.
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    "UMT5EncoderModel",  # Building part of bigger (tested) model.
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    "Blip2QFormerModel",  # Building part of bigger (tested) model.
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    "ErnieMForInformationExtraction",
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    "FastSpeech2ConformerHifiGan",  # Already tested by SpeechT5HifiGan (# Copied from)
    "FastSpeech2ConformerWithHifiGan",  # Built with two smaller (tested) models.
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    "GraphormerDecoderHead",  # Building part of bigger (tested) model.
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    "JukeboxVQVAE",  # Building part of bigger (tested) model.
    "JukeboxPrior",  # Building part of bigger (tested) model.
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    "DecisionTransformerGPT2Model",  # Building part of bigger (tested) model.
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    "SegformerDecodeHead",  # Building part of bigger (tested) model.
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    "MgpstrModel",  # Building part of bigger (tested) model.
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    "BertLMHeadModel",  # Needs to be setup as decoder.
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    "MegatronBertLMHeadModel",  # Building part of bigger (tested) model.
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    "RealmBertModel",  # Building part of bigger (tested) model.
    "RealmReader",  # Not regular model.
    "RealmScorer",  # Not regular model.
    "RealmForOpenQA",  # Not regular model.
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    "ReformerForMaskedLM",  # Needs to be setup as decoder.
    "TFElectraMainLayer",  # Building part of bigger (tested) model (should it be a TFPreTrainedModel ?)
    "TFRobertaForMultipleChoice",  # TODO: fix
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    "TFRobertaPreLayerNormForMultipleChoice",  # TODO: fix
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    "SeparableConv1D",  # Building part of bigger (tested) model.
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    "FlaxBartForCausalLM",  # Building part of bigger (tested) model.
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    "FlaxBertForCausalLM",  # Building part of bigger (tested) model. Tested implicitly through FlaxRobertaForCausalLM.
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    "OPTDecoderWrapper",
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    "TFSegformerDecodeHead",  # Not a regular model.
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    "AltRobertaModel",  # Building part of bigger (tested) model.
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    "BlipTextLMHeadModel",  # No need to test it as it is tested by BlipTextVision models
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    "TFBlipTextLMHeadModel",  # No need to test it as it is tested by BlipTextVision models
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    "BridgeTowerTextModel",  # No need to test it as it is tested by BridgeTowerModel model.
    "BridgeTowerVisionModel",  # No need to test it as it is tested by BridgeTowerModel model.
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    "BarkCausalModel",  # Building part of bigger (tested) model.
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    "BarkModel",  # Does not have a forward signature - generation tested with integration tests.
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    "SeamlessM4TTextToUnitModel",  # Building part of bigger (tested) model.
    "SeamlessM4TCodeHifiGan",  # Building part of bigger (tested) model.
    "SeamlessM4TTextToUnitForConditionalGeneration",  # Building part of bigger (tested) model.
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]

# Update this list with test files that don't have a tester with a `all_model_classes` variable and which don't
# trigger the common tests.
TEST_FILES_WITH_NO_COMMON_TESTS = [
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    "models/decision_transformer/test_modeling_decision_transformer.py",
    "models/camembert/test_modeling_camembert.py",
    "models/mt5/test_modeling_flax_mt5.py",
    "models/mbart/test_modeling_mbart.py",
    "models/mt5/test_modeling_mt5.py",
    "models/pegasus/test_modeling_pegasus.py",
    "models/camembert/test_modeling_tf_camembert.py",
    "models/mt5/test_modeling_tf_mt5.py",
    "models/xlm_roberta/test_modeling_tf_xlm_roberta.py",
    "models/xlm_roberta/test_modeling_flax_xlm_roberta.py",
    "models/xlm_prophetnet/test_modeling_xlm_prophetnet.py",
    "models/xlm_roberta/test_modeling_xlm_roberta.py",
    "models/vision_text_dual_encoder/test_modeling_vision_text_dual_encoder.py",
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    "models/vision_text_dual_encoder/test_modeling_tf_vision_text_dual_encoder.py",
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    "models/vision_text_dual_encoder/test_modeling_flax_vision_text_dual_encoder.py",
    "models/decision_transformer/test_modeling_decision_transformer.py",
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    "models/bark/test_modeling_bark.py",
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]

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# Update this list for models that are not in any of the auto MODEL_XXX_MAPPING. Being in this list is an exception and
# should **not** be the rule.
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IGNORE_NON_AUTO_CONFIGURED = PRIVATE_MODELS.copy() + [
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    # models to ignore for model xxx mapping
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    "AlignTextModel",
    "AlignVisionModel",
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    "ClapTextModel",
    "ClapTextModelWithProjection",
    "ClapAudioModel",
    "ClapAudioModelWithProjection",
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    "Blip2ForConditionalGeneration",
    "Blip2QFormerModel",
    "Blip2VisionModel",
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    "ErnieMForInformationExtraction",
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    "FastSpeech2ConformerHifiGan",
    "FastSpeech2ConformerWithHifiGan",
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    "GitVisionModel",
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    "GraphormerModel",
    "GraphormerForGraphClassification",
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    "BlipForConditionalGeneration",
    "BlipForImageTextRetrieval",
    "BlipForQuestionAnswering",
    "BlipVisionModel",
    "BlipTextLMHeadModel",
    "BlipTextModel",
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    "BrosSpadeEEForTokenClassification",
    "BrosSpadeELForTokenClassification",
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    "TFBlipForConditionalGeneration",
    "TFBlipForImageTextRetrieval",
    "TFBlipForQuestionAnswering",
    "TFBlipVisionModel",
    "TFBlipTextLMHeadModel",
    "TFBlipTextModel",
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    "Swin2SRForImageSuperResolution",
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    "BridgeTowerForImageAndTextRetrieval",
    "BridgeTowerForMaskedLM",
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    "BridgeTowerForContrastiveLearning",
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    "CLIPSegForImageSegmentation",
    "CLIPSegVisionModel",
    "CLIPSegTextModel",
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    "EsmForProteinFolding",
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    "GPTSanJapaneseModel",
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    "TimeSeriesTransformerForPrediction",
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    "InformerForPrediction",
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    "AutoformerForPrediction",
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    "PatchTSTForPretraining",
    "PatchTSTForPrediction",
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    "JukeboxVQVAE",
    "JukeboxPrior",
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    "SamModel",
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    "DPTForDepthEstimation",
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    "DecisionTransformerGPT2Model",
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    "GLPNForDepthEstimation",
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    "ViltForImagesAndTextClassification",
    "ViltForImageAndTextRetrieval",
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    "ViltForTokenClassification",
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    "ViltForMaskedLM",
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    "PerceiverForMultimodalAutoencoding",
    "PerceiverForOpticalFlow",
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    "SegformerDecodeHead",
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    "TFSegformerDecodeHead",
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    "FlaxBeitForMaskedImageModeling",
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    "BeitForMaskedImageModeling",
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    "ChineseCLIPTextModel",
    "ChineseCLIPVisionModel",
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    "CLIPTextModel",
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    "CLIPTextModelWithProjection",
    "CLIPVisionModelWithProjection",
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    "ClvpForCausalLM",
    "ClvpModel",
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    "GroupViTTextModel",
    "GroupViTVisionModel",
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    "TFCLIPTextModel",
    "TFCLIPVisionModel",
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    "TFGroupViTTextModel",
    "TFGroupViTVisionModel",
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    "FlaxCLIPTextModel",
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    "FlaxCLIPTextModelWithProjection",
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    "FlaxCLIPVisionModel",
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    "FlaxWav2Vec2ForCTC",
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    "DetrForSegmentation",
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    "Pix2StructVisionModel",
    "Pix2StructTextModel",
    "Pix2StructForConditionalGeneration",
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    "ConditionalDetrForSegmentation",
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    "DPRReader",
    "FlaubertForQuestionAnswering",
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    "FlavaImageCodebook",
    "FlavaTextModel",
    "FlavaImageModel",
    "FlavaMultimodalModel",
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    "GPT2DoubleHeadsModel",
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    "GPTSw3DoubleHeadsModel",
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    "InstructBlipVisionModel",
    "InstructBlipQFormerModel",
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    "InstructBlipVideoVisionModel",
    "InstructBlipVideoQFormerModel",
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    "LayoutLMForQuestionAnswering",
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    "LukeForMaskedLM",
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    "LukeForEntityClassification",
    "LukeForEntityPairClassification",
    "LukeForEntitySpanClassification",
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    "MgpstrModel",
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    "OpenAIGPTDoubleHeadsModel",
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    "OwlViTTextModel",
    "OwlViTVisionModel",
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    "Owlv2TextModel",
    "Owlv2VisionModel",
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    "OwlViTForObjectDetection",
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    "PatchTSMixerForPrediction",
    "PatchTSMixerForPretraining",
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    "RagModel",
    "RagSequenceForGeneration",
    "RagTokenForGeneration",
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    "RealmEmbedder",
    "RealmForOpenQA",
    "RealmScorer",
    "RealmReader",
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    "TFDPRReader",
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    "TFGPT2DoubleHeadsModel",
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    "TFLayoutLMForQuestionAnswering",
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    "TFOpenAIGPTDoubleHeadsModel",
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    "TFRagModel",
    "TFRagSequenceForGeneration",
    "TFRagTokenForGeneration",
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    "Wav2Vec2ForCTC",
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    "HubertForCTC",
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    "SEWForCTC",
    "SEWDForCTC",
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    "XLMForQuestionAnswering",
    "XLNetForQuestionAnswering",
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    "SeparableConv1D",
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    "VisualBertForRegionToPhraseAlignment",
    "VisualBertForVisualReasoning",
    "VisualBertForQuestionAnswering",
    "VisualBertForMultipleChoice",
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    "TFWav2Vec2ForCTC",
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    "TFHubertForCTC",
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    "XCLIPVisionModel",
    "XCLIPTextModel",
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    "AltCLIPTextModel",
    "AltCLIPVisionModel",
    "AltRobertaModel",
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    "TvltForAudioVisualClassification",
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    "BarkCausalModel",
    "BarkCoarseModel",
    "BarkFineModel",
    "BarkSemanticModel",
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    "MusicgenMelodyModel",
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    "MusicgenModel",
    "MusicgenForConditionalGeneration",
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    "SpeechT5ForSpeechToSpeech",
    "SpeechT5ForTextToSpeech",
    "SpeechT5HifiGan",
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    "VitMatteForImageMatting",
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    "SeamlessM4TTextToUnitModel",
    "SeamlessM4TTextToUnitForConditionalGeneration",
    "SeamlessM4TCodeHifiGan",
    "SeamlessM4TForSpeechToSpeech",  # no auto class for speech-to-speech
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    "TvpForVideoGrounding",
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    "UdopForConditionalGeneration",
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    "SeamlessM4Tv2NARTextToUnitModel",
    "SeamlessM4Tv2NARTextToUnitForConditionalGeneration",
    "SeamlessM4Tv2CodeHifiGan",
    "SeamlessM4Tv2ForSpeechToSpeech",  # no auto class for speech-to-speech
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    "SegGptForImageSegmentation",
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    "SiglipVisionModel",
    "SiglipTextModel",
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]

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# DO NOT edit this list!
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# (The corresponding pytorch objects should never have been in the main `__init__`, but it's too late to remove)
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OBJECT_TO_SKIP_IN_MAIN_INIT_CHECK = [
    "FlaxBertLayer",
    "FlaxBigBirdLayer",
    "FlaxRoFormerLayer",
    "TFBertLayer",
    "TFLxmertEncoder",
    "TFLxmertXLayer",
    "TFMPNetLayer",
    "TFMobileBertLayer",
    "TFSegformerLayer",
    "TFViTMAELayer",
]

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# Update this list for models that have multiple model types for the same model doc.
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MODEL_TYPE_TO_DOC_MAPPING = OrderedDict(
    [
        ("data2vec-text", "data2vec"),
        ("data2vec-audio", "data2vec"),
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        ("data2vec-vision", "data2vec"),
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        ("donut-swin", "donut"),
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    ]
)


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# This is to make sure the transformers module imported is the one in the repo.
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transformers = direct_transformers_import(PATH_TO_TRANSFORMERS)
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def check_missing_backends():
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    """
    Checks if all backends are installed (otherwise the check of this script is incomplete). Will error in the CI if
    that's not the case but only throw a warning for users running this.
    """
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    missing_backends = []
    if not is_torch_available():
        missing_backends.append("PyTorch")
    if not is_tf_available():
        missing_backends.append("TensorFlow")
    if not is_flax_available():
        missing_backends.append("Flax")
    if len(missing_backends) > 0:
        missing = ", ".join(missing_backends)
        if os.getenv("TRANSFORMERS_IS_CI", "").upper() in ENV_VARS_TRUE_VALUES:
            raise Exception(
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                "Full repo consistency checks require all backends to be installed (with `pip install -e '.[dev]'` in the "
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                f"Transformers repo, the following are missing: {missing}."
            )
        else:
            warnings.warn(
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                "Full repo consistency checks require all backends to be installed (with `pip install -e '.[dev]'` in the "
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                f"Transformers repo, the following are missing: {missing}. While it's probably fine as long as you "
                "didn't make any change in one of those backends modeling files, you should probably execute the "
                "command above to be on the safe side."
            )


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def check_model_list():
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    """
    Checks the model listed as subfolders of `models` match the models available in `transformers.models`.
    """
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    # Get the models from the directory structure of `src/transformers/models/`
    models_dir = os.path.join(PATH_TO_TRANSFORMERS, "models")
    _models = []
    for model in os.listdir(models_dir):
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        if model == "deprecated":
            continue
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        model_dir = os.path.join(models_dir, model)
        if os.path.isdir(model_dir) and "__init__.py" in os.listdir(model_dir):
            _models.append(model)

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    # Get the models in the submodule `transformers.models`
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    models = [model for model in dir(transformers.models) if not model.startswith("__")]

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    missing_models = sorted(set(_models).difference(models))
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    if missing_models:
        raise Exception(
            f"The following models should be included in {models_dir}/__init__.py: {','.join(missing_models)}."
        )


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# If some modeling modules should be ignored for all checks, they should be added in the nested list
# _ignore_modules of this function.
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def get_model_modules() -> List[str]:
    """Get all the model modules inside the transformers library (except deprecated models)."""
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    _ignore_modules = [
        "modeling_auto",
        "modeling_encoder_decoder",
        "modeling_marian",
        "modeling_mmbt",
        "modeling_outputs",
        "modeling_retribert",
        "modeling_utils",
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        "modeling_flax_auto",
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        "modeling_flax_encoder_decoder",
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        "modeling_flax_utils",
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        "modeling_speech_encoder_decoder",
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        "modeling_flax_speech_encoder_decoder",
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        "modeling_flax_vision_encoder_decoder",
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        "modeling_timm_backbone",
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        "modeling_tf_auto",
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        "modeling_tf_encoder_decoder",
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        "modeling_tf_outputs",
        "modeling_tf_pytorch_utils",
        "modeling_tf_utils",
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        "modeling_tf_vision_encoder_decoder",
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        "modeling_vision_encoder_decoder",
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    ]
    modules = []
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    for model in dir(transformers.models):
        # There are some magic dunder attributes in the dir, we ignore them
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        if model == "deprecated" or model.startswith("__"):
            continue

        model_module = getattr(transformers.models, model)
        for submodule in dir(model_module):
            if submodule.startswith("modeling") and submodule not in _ignore_modules:
                modeling_module = getattr(model_module, submodule)
                if inspect.ismodule(modeling_module):
                    modules.append(modeling_module)
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    return modules


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def get_models(module: types.ModuleType, include_pretrained: bool = False) -> List[Tuple[str, type]]:
    """
    Get the objects in a module that are models.

    Args:
        module (`types.ModuleType`):
            The module from which we are extracting models.
        include_pretrained (`bool`, *optional*, defaults to `False`):
            Whether or not to include the `PreTrainedModel` subclass (like `BertPreTrainedModel`) or not.

    Returns:
        List[Tuple[str, type]]: List of models as tuples (class name, actual class).
    """
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    models = []
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    model_classes = (transformers.PreTrainedModel, transformers.TFPreTrainedModel, transformers.FlaxPreTrainedModel)
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    for attr_name in dir(module):
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        if not include_pretrained and ("Pretrained" in attr_name or "PreTrained" in attr_name):
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            continue
        attr = getattr(module, attr_name)
        if isinstance(attr, type) and issubclass(attr, model_classes) and attr.__module__ == module.__name__:
            models.append((attr_name, attr))
    return models


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def is_building_block(model: str) -> bool:
    """
    Returns `True` if a model is a building block part of a bigger model.
    """
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    if model.endswith("Wrapper"):
        return True
    if model.endswith("Encoder"):
        return True
    if model.endswith("Decoder"):
        return True
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    if model.endswith("Prenet"):
        return True
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def is_a_private_model(model: str) -> bool:
    """Returns `True` if the model should not be in the main init."""
    if model in PRIVATE_MODELS:
        return True
    return is_building_block(model)
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def check_models_are_in_init():
    """Checks all models defined in the library are in the main init."""
    models_not_in_init = []
    dir_transformers = dir(transformers)
    for module in get_model_modules():
        models_not_in_init += [
            model[0] for model in get_models(module, include_pretrained=True) if model[0] not in dir_transformers
        ]

    # Remove private models
    models_not_in_init = [model for model in models_not_in_init if not is_a_private_model(model)]
    if len(models_not_in_init) > 0:
        raise Exception(f"The following models should be in the main init: {','.join(models_not_in_init)}.")


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# If some test_modeling files should be ignored when checking models are all tested, they should be added in the
# nested list _ignore_files of this function.
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def get_model_test_files() -> List[str]:
    """
    Get the model test files.
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    Returns:
        `List[str]`: The list of test files. The returned files will NOT contain the `tests` (i.e. `PATH_TO_TESTS`
        defined in this script). They will be considered as paths relative to `tests`. A caller has to use
        `os.path.join(PATH_TO_TESTS, ...)` to access the files.
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    """

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    _ignore_files = [
        "test_modeling_common",
        "test_modeling_encoder_decoder",
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        "test_modeling_flax_encoder_decoder",
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        "test_modeling_flax_speech_encoder_decoder",
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        "test_modeling_marian",
        "test_modeling_tf_common",
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        "test_modeling_tf_encoder_decoder",
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    ]
    test_files = []
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    model_test_root = os.path.join(PATH_TO_TESTS, "models")
    model_test_dirs = []
    for x in os.listdir(model_test_root):
        x = os.path.join(model_test_root, x)
        if os.path.isdir(x):
            model_test_dirs.append(x)

    for target_dir in [PATH_TO_TESTS] + model_test_dirs:
        for file_or_dir in os.listdir(target_dir):
            path = os.path.join(target_dir, file_or_dir)
            if os.path.isfile(path):
                filename = os.path.split(path)[-1]
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                if "test_modeling" in filename and os.path.splitext(filename)[0] not in _ignore_files:
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                    file = os.path.join(*path.split(os.sep)[1:])
                    test_files.append(file)

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    return test_files


# This is a bit hacky but I didn't find a way to import the test_file as a module and read inside the tester class
# for the all_model_classes variable.
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def find_tested_models(test_file: str) -> List[str]:
    """
    Parse the content of test_file to detect what's in `all_model_classes`. This detects the models that inherit from
    the common test class.

    Args:
        test_file (`str`): The path to the test file to check

    Returns:
        `List[str]`: The list of models tested in that file.
    """
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    with open(os.path.join(PATH_TO_TESTS, test_file), "r", encoding="utf-8", newline="\n") as f:
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        content = f.read()
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    all_models = re.findall(r"all_model_classes\s+=\s+\(\s*\(([^\)]*)\)", content)
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    # Check with one less parenthesis as well
    all_models += re.findall(r"all_model_classes\s+=\s+\(([^\)]*)\)", content)
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    if len(all_models) > 0:
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        model_tested = []
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        for entry in all_models:
            for line in entry.split(","):
                name = line.strip()
                if len(name) > 0:
                    model_tested.append(name)
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        return model_tested


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def should_be_tested(model_name: str) -> bool:
    """
    Whether or not a model should be tested.
    """
    if model_name in IGNORE_NON_TESTED:
        return False
    return not is_building_block(model_name)


def check_models_are_tested(module: types.ModuleType, test_file: str) -> List[str]:
    """Check models defined in a module are all tested in a given file.

    Args:
        module (`types.ModuleType`): The module in which we get the models.
        test_file (`str`): The path to the file where the module is tested.

    Returns:
        `List[str]`: The list of error messages corresponding to models not tested.
    """
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    # XxxPreTrainedModel are not tested
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    defined_models = get_models(module)
    tested_models = find_tested_models(test_file)
    if tested_models is None:
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        if test_file.replace(os.path.sep, "/") in TEST_FILES_WITH_NO_COMMON_TESTS:
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            return
        return [
            f"{test_file} should define `all_model_classes` to apply common tests to the models it tests. "
            + "If this intentional, add the test filename to `TEST_FILES_WITH_NO_COMMON_TESTS` in the file "
            + "`utils/check_repo.py`."
        ]
    failures = []
    for model_name, _ in defined_models:
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        if model_name not in tested_models and should_be_tested(model_name):
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            failures.append(
                f"{model_name} is defined in {module.__name__} but is not tested in "
                + f"{os.path.join(PATH_TO_TESTS, test_file)}. Add it to the all_model_classes in that file."
                + "If common tests should not applied to that model, add its name to `IGNORE_NON_TESTED`"
                + "in the file `utils/check_repo.py`."
            )
    return failures


def check_all_models_are_tested():
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    """Check all models are properly tested."""
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    modules = get_model_modules()
    test_files = get_model_test_files()
    failures = []
    for module in modules:
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        # Matches a module to its test file.
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        test_file = [file for file in test_files if f"test_{module.__name__.split('.')[-1]}.py" in file]
        if len(test_file) == 0:
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            failures.append(f"{module.__name__} does not have its corresponding test file {test_file}.")
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        elif len(test_file) > 1:
            failures.append(f"{module.__name__} has several test files: {test_file}.")
        else:
            test_file = test_file[0]
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            new_failures = check_models_are_tested(module, test_file)
            if new_failures is not None:
                failures += new_failures
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    if len(failures) > 0:
        raise Exception(f"There were {len(failures)} failures:\n" + "\n".join(failures))


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def get_all_auto_configured_models() -> List[str]:
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    """Return the list of all models in at least one auto class."""
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    result = set()  # To avoid duplicates we concatenate all model classes in a set.
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    if is_torch_available():
        for attr_name in dir(transformers.models.auto.modeling_auto):
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            if attr_name.startswith("MODEL_") and attr_name.endswith("MAPPING_NAMES"):
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                result = result | set(get_values(getattr(transformers.models.auto.modeling_auto, attr_name)))
    if is_tf_available():
        for attr_name in dir(transformers.models.auto.modeling_tf_auto):
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            if attr_name.startswith("TF_MODEL_") and attr_name.endswith("MAPPING_NAMES"):
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                result = result | set(get_values(getattr(transformers.models.auto.modeling_tf_auto, attr_name)))
    if is_flax_available():
        for attr_name in dir(transformers.models.auto.modeling_flax_auto):
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            if attr_name.startswith("FLAX_MODEL_") and attr_name.endswith("MAPPING_NAMES"):
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                result = result | set(get_values(getattr(transformers.models.auto.modeling_flax_auto, attr_name)))
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    return list(result)
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def ignore_unautoclassed(model_name: str) -> bool:
    """Rules to determine if a model should be in an auto class."""
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    # Special white list
    if model_name in IGNORE_NON_AUTO_CONFIGURED:
        return True
    # Encoder and Decoder should be ignored
    if "Encoder" in model_name or "Decoder" in model_name:
        return True
    return False


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def check_models_are_auto_configured(module: types.ModuleType, all_auto_models: List[str]) -> List[str]:
    """
    Check models defined in module are each in an auto class.

    Args:
        module (`types.ModuleType`):
            The module in which we get the models.
        all_auto_models (`List[str]`):
            The list of all models in an auto class (as obtained with `get_all_auto_configured_models()`).

    Returns:
        `List[str]`: The list of error messages corresponding to models not tested.
    """
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    defined_models = get_models(module)
    failures = []
    for model_name, _ in defined_models:
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        if model_name not in all_auto_models and not ignore_unautoclassed(model_name):
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            failures.append(
                f"{model_name} is defined in {module.__name__} but is not present in any of the auto mapping. "
                "If that is intended behavior, add its name to `IGNORE_NON_AUTO_CONFIGURED` in the file "
                "`utils/check_repo.py`."
            )
    return failures


def check_all_models_are_auto_configured():
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    """Check all models are each in an auto class."""
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    # This is where we need to check we have all backends or the check is incomplete.
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    check_missing_backends()
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    modules = get_model_modules()
    all_auto_models = get_all_auto_configured_models()
    failures = []
    for module in modules:
        new_failures = check_models_are_auto_configured(module, all_auto_models)
        if new_failures is not None:
            failures += new_failures
    if len(failures) > 0:
        raise Exception(f"There were {len(failures)} failures:\n" + "\n".join(failures))


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def check_all_auto_object_names_being_defined():
    """Check all names defined in auto (name) mappings exist in the library."""
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    # This is where we need to check we have all backends or the check is incomplete.
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    check_missing_backends()
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    failures = []
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    mappings_to_check = {
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        "TOKENIZER_MAPPING_NAMES": TOKENIZER_MAPPING_NAMES,
        "IMAGE_PROCESSOR_MAPPING_NAMES": IMAGE_PROCESSOR_MAPPING_NAMES,
        "FEATURE_EXTRACTOR_MAPPING_NAMES": FEATURE_EXTRACTOR_MAPPING_NAMES,
        "PROCESSOR_MAPPING_NAMES": PROCESSOR_MAPPING_NAMES,
    }

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    # Each auto modeling files contains multiple mappings. Let's get them in a dynamic way.
    for module_name in ["modeling_auto", "modeling_tf_auto", "modeling_flax_auto"]:
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        module = getattr(transformers.models.auto, module_name, None)
        if module is None:
            continue
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        # all mappings in a single auto modeling file
        mapping_names = [x for x in dir(module) if x.endswith("_MAPPING_NAMES")]
        mappings_to_check.update({name: getattr(module, name) for name in mapping_names})

    for name, mapping in mappings_to_check.items():
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        for _, class_names in mapping.items():
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            if not isinstance(class_names, tuple):
                class_names = (class_names,)
                for class_name in class_names:
                    if class_name is None:
                        continue
                    # dummy object is accepted
                    if not hasattr(transformers, class_name):
                        # If the class name is in a model name mapping, let's not check if there is a definition in any modeling
                        # module, if it's a private model defined in this file.
                        if name.endswith("MODEL_MAPPING_NAMES") and is_a_private_model(class_name):
                            continue
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                        if name.endswith("MODEL_FOR_IMAGE_MAPPING_NAMES") and is_a_private_model(class_name):
                            continue
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                        failures.append(
                            f"`{class_name}` appears in the mapping `{name}` but it is not defined in the library."
                        )
    if len(failures) > 0:
        raise Exception(f"There were {len(failures)} failures:\n" + "\n".join(failures))


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def check_all_auto_mapping_names_in_config_mapping_names():
    """Check all keys defined in auto mappings (mappings of names) appear in `CONFIG_MAPPING_NAMES`."""
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    # This is where we need to check we have all backends or the check is incomplete.
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    check_missing_backends()
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    failures = []
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    # `TOKENIZER_PROCESSOR_MAPPING_NAMES` and `AutoTokenizer` is special, and don't need to follow the rule.
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    mappings_to_check = {
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        "IMAGE_PROCESSOR_MAPPING_NAMES": IMAGE_PROCESSOR_MAPPING_NAMES,
        "FEATURE_EXTRACTOR_MAPPING_NAMES": FEATURE_EXTRACTOR_MAPPING_NAMES,
        "PROCESSOR_MAPPING_NAMES": PROCESSOR_MAPPING_NAMES,
    }

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    # Each auto modeling files contains multiple mappings. Let's get them in a dynamic way.
    for module_name in ["modeling_auto", "modeling_tf_auto", "modeling_flax_auto"]:
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        module = getattr(transformers.models.auto, module_name, None)
        if module is None:
            continue
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        # all mappings in a single auto modeling file
        mapping_names = [x for x in dir(module) if x.endswith("_MAPPING_NAMES")]
        mappings_to_check.update({name: getattr(module, name) for name in mapping_names})

    for name, mapping in mappings_to_check.items():
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        for model_type in mapping:
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            if model_type not in CONFIG_MAPPING_NAMES:
                failures.append(
                    f"`{model_type}` appears in the mapping `{name}` but it is not defined in the keys of "
                    "`CONFIG_MAPPING_NAMES`."
                )
    if len(failures) > 0:
        raise Exception(f"There were {len(failures)} failures:\n" + "\n".join(failures))


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def check_all_auto_mappings_importable():
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    """Check all auto mappings can be imported."""
    # This is where we need to check we have all backends or the check is incomplete.
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    check_missing_backends()

    failures = []
    mappings_to_check = {}
    # Each auto modeling files contains multiple mappings. Let's get them in a dynamic way.
    for module_name in ["modeling_auto", "modeling_tf_auto", "modeling_flax_auto"]:
        module = getattr(transformers.models.auto, module_name, None)
        if module is None:
            continue
        # all mappings in a single auto modeling file
        mapping_names = [x for x in dir(module) if x.endswith("_MAPPING_NAMES")]
        mappings_to_check.update({name: getattr(module, name) for name in mapping_names})

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    for name in mappings_to_check:
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        name = name.replace("_MAPPING_NAMES", "_MAPPING")
        if not hasattr(transformers, name):
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            failures.append(f"`{name}`")
    if len(failures) > 0:
        raise Exception(f"There were {len(failures)} failures:\n" + "\n".join(failures))


def check_objects_being_equally_in_main_init():
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    """
    Check if a (TensorFlow or Flax) object is in the main __init__ iif its counterpart in PyTorch is.
    """
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    attrs = dir(transformers)

    failures = []
    for attr in attrs:
        obj = getattr(transformers, attr)
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        if not hasattr(obj, "__module__") or "models.deprecated" in obj.__module__:
            continue

        module_path = obj.__module__
        module_name = module_path.split(".")[-1]
        module_dir = ".".join(module_path.split(".")[:-1])
        if (
            module_name.startswith("modeling_")
            and not module_name.startswith("modeling_tf_")
            and not module_name.startswith("modeling_flax_")
        ):
            parent_module = sys.modules[module_dir]

            frameworks = []
            if is_tf_available():
                frameworks.append("TF")
            if is_flax_available():
                frameworks.append("Flax")

            for framework in frameworks:
                other_module_path = module_path.replace("modeling_", f"modeling_{framework.lower()}_")
                if os.path.isfile("src/" + other_module_path.replace(".", "/") + ".py"):
                    other_module_name = module_name.replace("modeling_", f"modeling_{framework.lower()}_")
                    other_module = getattr(parent_module, other_module_name)
                    if hasattr(other_module, f"{framework}{attr}"):
                        if not hasattr(transformers, f"{framework}{attr}"):
                            if f"{framework}{attr}" not in OBJECT_TO_SKIP_IN_MAIN_INIT_CHECK:
                                failures.append(f"{framework}{attr}")
                    if hasattr(other_module, f"{framework}_{attr}"):
                        if not hasattr(transformers, f"{framework}_{attr}"):
                            if f"{framework}_{attr}" not in OBJECT_TO_SKIP_IN_MAIN_INIT_CHECK:
                                failures.append(f"{framework}_{attr}")
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    if len(failures) > 0:
        raise Exception(f"There were {len(failures)} failures:\n" + "\n".join(failures))


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_re_decorator = re.compile(r"^\s*@(\S+)\s+$")


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def check_decorator_order(filename: str) -> List[int]:
    """
    Check that in a given test file, the slow decorator is always last.

    Args:
        filename (`str`): The path to a test file to check.

    Returns:
        `List[int]`: The list of failures as a list of indices where there are problems.
    """
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    with open(filename, "r", encoding="utf-8", newline="\n") as f:
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        lines = f.readlines()
    decorator_before = None
    errors = []
    for i, line in enumerate(lines):
        search = _re_decorator.search(line)
        if search is not None:
            decorator_name = search.groups()[0]
            if decorator_before is not None and decorator_name.startswith("parameterized"):
                errors.append(i)
            decorator_before = decorator_name
        elif decorator_before is not None:
            decorator_before = None
    return errors


def check_all_decorator_order():
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    """Check that in all test files, the slow decorator is always last."""
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    errors = []
    for fname in os.listdir(PATH_TO_TESTS):
        if fname.endswith(".py"):
            filename = os.path.join(PATH_TO_TESTS, fname)
            new_errors = check_decorator_order(filename)
            errors += [f"- {filename}, line {i}" for i in new_errors]
    if len(errors) > 0:
        msg = "\n".join(errors)
        raise ValueError(
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            "The parameterized decorator (and its variants) should always be first, but this is not the case in the"
            f" following files:\n{msg}"
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        )


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def find_all_documented_objects() -> List[str]:
    """
    Parse the content of all doc files to detect which classes and functions it documents.

    Returns:
        `List[str]`: The list of all object names being documented.
    """
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    documented_obj = []
    for doc_file in Path(PATH_TO_DOC).glob("**/*.rst"):
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        with open(doc_file, "r", encoding="utf-8", newline="\n") as f:
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            content = f.read()
        raw_doc_objs = re.findall(r"(?:autoclass|autofunction):: transformers.(\S+)\s+", content)
        documented_obj += [obj.split(".")[-1] for obj in raw_doc_objs]
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    for doc_file in Path(PATH_TO_DOC).glob("**/*.md"):
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        with open(doc_file, "r", encoding="utf-8", newline="\n") as f:
            content = f.read()
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        raw_doc_objs = re.findall(r"\[\[autodoc\]\]\s+(\S+)\s+", content)
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        documented_obj += [obj.split(".")[-1] for obj in raw_doc_objs]
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    return documented_obj


# One good reason for not being documented is to be deprecated. Put in this list deprecated objects.
DEPRECATED_OBJECTS = [
    "AutoModelWithLMHead",
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    "BartPretrainedModel",
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    "DataCollator",
    "DataCollatorForSOP",
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    "GlueDataset",
    "GlueDataTrainingArguments",
    "LineByLineTextDataset",
    "LineByLineWithRefDataset",
    "LineByLineWithSOPTextDataset",
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    "NerPipeline",
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    "PretrainedBartModel",
    "PretrainedFSMTModel",
    "SingleSentenceClassificationProcessor",
    "SquadDataTrainingArguments",
    "SquadDataset",
    "SquadExample",
    "SquadFeatures",
    "SquadV1Processor",
    "SquadV2Processor",
    "TFAutoModelWithLMHead",
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    "TFBartPretrainedModel",
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    "TextDataset",
    "TextDatasetForNextSentencePrediction",
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    "Wav2Vec2ForMaskedLM",
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    "Wav2Vec2Tokenizer",
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    "glue_compute_metrics",
    "glue_convert_examples_to_features",
    "glue_output_modes",
    "glue_processors",
    "glue_tasks_num_labels",
    "squad_convert_examples_to_features",
    "xnli_compute_metrics",
    "xnli_output_modes",
    "xnli_processors",
    "xnli_tasks_num_labels",
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    "TFTrainingArguments",
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]

# Exceptionally, some objects should not be documented after all rules passed.
# ONLY PUT SOMETHING IN THIS LIST AS A LAST RESORT!
UNDOCUMENTED_OBJECTS = [
    "AddedToken",  # This is a tokenizers class.
    "BasicTokenizer",  # Internal, should never have been in the main init.
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    "CharacterTokenizer",  # Internal, should never have been in the main init.
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    "DPRPretrainedReader",  # Like an Encoder.
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    "DummyObject",  # Just picked by mistake sometimes.
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    "MecabTokenizer",  # Internal, should never have been in the main init.
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    "ModelCard",  # Internal type.
    "SqueezeBertModule",  # Internal building block (should have been called SqueezeBertLayer)
    "TFDPRPretrainedReader",  # Like an Encoder.
    "TransfoXLCorpus",  # Internal type.
    "WordpieceTokenizer",  # Internal, should never have been in the main init.
    "absl",  # External module
    "add_end_docstrings",  # Internal, should never have been in the main init.
    "add_start_docstrings",  # Internal, should never have been in the main init.
    "convert_tf_weight_name_to_pt_weight_name",  # Internal used to convert model weights
    "logger",  # Internal logger
    "logging",  # External module
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    "requires_backends",  # Internal function
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    "AltRobertaModel",  # Internal module
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]

# This list should be empty. Objects in it should get their own doc page.
SHOULD_HAVE_THEIR_OWN_PAGE = [
    # Benchmarks
    "PyTorchBenchmark",
    "PyTorchBenchmarkArguments",
    "TensorFlowBenchmark",
    "TensorFlowBenchmarkArguments",
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    "AutoBackbone",
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    "BeitBackbone",
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    "BitBackbone",
    "ConvNextBackbone",
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    "ConvNextV2Backbone",
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    "DinatBackbone",
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    "Dinov2Backbone",
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    "FocalNetBackbone",
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    "HieraBackbone",
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    "MaskFormerSwinBackbone",
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    "MaskFormerSwinConfig",
    "MaskFormerSwinModel",
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    "NatBackbone",
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    "PvtV2Backbone",
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    "ResNetBackbone",
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    "SwinBackbone",
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    "Swinv2Backbone",
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    "TimmBackbone",
    "TimmBackboneConfig",
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    "VitDetBackbone",
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]


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def ignore_undocumented(name: str) -> bool:
    """Rules to determine if `name` should be undocumented (returns `True` if it should not be documented)."""
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    # NOT DOCUMENTED ON PURPOSE.
    # Constants uppercase are not documented.
    if name.isupper():
        return True
    # PreTrainedModels / Encoders / Decoders / Layers / Embeddings / Attention are not documented.
    if (
        name.endswith("PreTrainedModel")
        or name.endswith("Decoder")
        or name.endswith("Encoder")
        or name.endswith("Layer")
        or name.endswith("Embeddings")
        or name.endswith("Attention")
    ):
        return True
    # Submodules are not documented.
    if os.path.isdir(os.path.join(PATH_TO_TRANSFORMERS, name)) or os.path.isfile(
        os.path.join(PATH_TO_TRANSFORMERS, f"{name}.py")
    ):
        return True
    # All load functions are not documented.
    if name.startswith("load_tf") or name.startswith("load_pytorch"):
        return True
    # is_xxx_available functions are not documented.
    if name.startswith("is_") and name.endswith("_available"):
        return True
    # Deprecated objects are not documented.
    if name in DEPRECATED_OBJECTS or name in UNDOCUMENTED_OBJECTS:
        return True
    # MMBT model does not really work.
    if name.startswith("MMBT"):
        return True
    if name in SHOULD_HAVE_THEIR_OWN_PAGE:
        return True
    return False


def check_all_objects_are_documented():
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    """Check all models are properly documented."""
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    documented_objs = find_all_documented_objects()
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    modules = transformers._modules
    objects = [c for c in dir(transformers) if c not in modules and not c.startswith("_")]
    undocumented_objs = [c for c in objects if c not in documented_objs and not ignore_undocumented(c)]
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    if len(undocumented_objs) > 0:
        raise Exception(
            "The following objects are in the public init so should be documented:\n - "
            + "\n - ".join(undocumented_objs)
        )
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    check_docstrings_are_in_md()
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    check_model_type_doc_match()


def check_model_type_doc_match():
    """Check all doc pages have a corresponding model type."""
    model_doc_folder = Path(PATH_TO_DOC) / "model_doc"
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    model_docs = [m.stem for m in model_doc_folder.glob("*.md")]
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    model_types = list(transformers.models.auto.configuration_auto.MODEL_NAMES_MAPPING.keys())
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    model_types = [MODEL_TYPE_TO_DOC_MAPPING[m] if m in MODEL_TYPE_TO_DOC_MAPPING else m for m in model_types]
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    errors = []
    for m in model_docs:
        if m not in model_types and m != "auto":
            close_matches = get_close_matches(m, model_types)
            error_message = f"{m} is not a proper model identifier."
            if len(close_matches) > 0:
                close_matches = "/".join(close_matches)
                error_message += f" Did you mean {close_matches}?"
            errors.append(error_message)

    if len(errors) > 0:
        raise ValueError(
            "Some model doc pages do not match any existing model type:\n"
            + "\n".join(errors)
            + "\nYou can add any missing model type to the `MODEL_NAMES_MAPPING` constant in "
            "models/auto/configuration_auto.py."
        )
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# Re pattern to catch :obj:`xx`, :class:`xx`, :func:`xx` or :meth:`xx`.
_re_rst_special_words = re.compile(r":(?:obj|func|class|meth):`([^`]+)`")
# Re pattern to catch things between double backquotes.
_re_double_backquotes = re.compile(r"(^|[^`])``([^`]+)``([^`]|$)")
# Re pattern to catch example introduction.
_re_rst_example = re.compile(r"^\s*Example.*::\s*$", flags=re.MULTILINE)


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def is_rst_docstring(docstring: str) -> True:
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    """
    Returns `True` if `docstring` is written in rst.
    """
    if _re_rst_special_words.search(docstring) is not None:
        return True
    if _re_double_backquotes.search(docstring) is not None:
        return True
    if _re_rst_example.search(docstring) is not None:
        return True
    return False


def check_docstrings_are_in_md():
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    """Check all docstrings are written in md and nor rst."""
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    files_with_rst = []
    for file in Path(PATH_TO_TRANSFORMERS).glob("**/*.py"):
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        with open(file, encoding="utf-8") as f:
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            code = f.read()
        docstrings = code.split('"""')

        for idx, docstring in enumerate(docstrings):
            if idx % 2 == 0 or not is_rst_docstring(docstring):
                continue
            files_with_rst.append(file)
            break

    if len(files_with_rst) > 0:
        raise ValueError(
            "The following files have docstrings written in rst:\n"
            + "\n".join([f"- {f}" for f in files_with_rst])
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            + "\nTo fix this run `doc-builder convert path_to_py_file` after installing `doc-builder`\n"
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            "(`pip install git+https://github.com/huggingface/doc-builder`)"
        )
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def check_deprecated_constant_is_up_to_date():
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    """
    Check if the constant `DEPRECATED_MODELS` in `models/auto/configuration_auto.py` is up to date.
    """
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    deprecated_folder = os.path.join(PATH_TO_TRANSFORMERS, "models", "deprecated")
    deprecated_models = [m for m in os.listdir(deprecated_folder) if not m.startswith("_")]

    constant_to_check = transformers.models.auto.configuration_auto.DEPRECATED_MODELS
    message = []
    missing_models = sorted(set(deprecated_models) - set(constant_to_check))
    if len(missing_models) != 0:
        missing_models = ", ".join(missing_models)
        message.append(
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            f"`models/auto/configuration_auto.py`: {missing_models}."
        )

    extra_models = sorted(set(constant_to_check) - set(deprecated_models))
    if len(extra_models) != 0:
        extra_models = ", ".join(extra_models)
        message.append(
            "The following models are in the `DEPRECATED_MODELS` constant but not in the deprecated folder. Either "
            f"remove them from the constant or move to the deprecated folder: {extra_models}."
        )

    if len(message) > 0:
        raise Exception("\n".join(message))


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def check_repo_quality():
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    """Check all models are properly tested and documented."""
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    print("Checking all models are included.")
    check_model_list()
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    print("Checking all models are public.")
    check_models_are_in_init()
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    print("Checking all models are properly tested.")
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    check_all_decorator_order()
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    check_all_models_are_tested()
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    print("Checking all objects are properly documented.")
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    check_all_objects_are_documented()
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    print("Checking all models are in at least one auto class.")
    check_all_models_are_auto_configured()
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    print("Checking all names in auto name mappings are defined.")
    check_all_auto_object_names_being_defined()
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    print("Checking all keys in auto name mappings are defined in `CONFIG_MAPPING_NAMES`.")
    check_all_auto_mapping_names_in_config_mapping_names()
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    print("Checking all auto mappings could be imported.")
    check_all_auto_mappings_importable()
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    print("Checking all objects are equally (across frameworks) in the main __init__.")
    check_objects_being_equally_in_main_init()
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    print("Checking the DEPRECATED_MODELS constant is up to date.")
    check_deprecated_constant_is_up_to_date()
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if __name__ == "__main__":
    check_repo_quality()