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import dotwiz |
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import torch |
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import torch.nn.functional as torchfunc |
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from torch.nn import Linear |
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from torch.nn import Sequential |
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from torch.nn import Tanh |
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from Modules.GeneralLayers.Conformer import Conformer |
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from Modules.GeneralLayers.LengthRegulator import LengthRegulator |
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from Modules.ToucanTTS.flow_matching import CFMDecoder |
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from Preprocessing.articulatory_features import get_feature_to_index_lookup |
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from Utility.utils import make_non_pad_mask |
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class ToucanTTS(torch.nn.Module): |
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def __init__(self, |
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weights, |
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config): |
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super().__init__() |
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self.config = config |
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config = dotwiz.DotWiz(config) |
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input_feature_dimensions = config.input_feature_dimensions |
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attention_dimension = config.attention_dimension |
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attention_heads = config.attention_heads |
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positionwise_conv_kernel_size = config.positionwise_conv_kernel_size |
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use_scaled_positional_encoding = config.use_scaled_positional_encoding |
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use_macaron_style_in_conformer = config.use_macaron_style_in_conformer |
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use_cnn_in_conformer = config.use_cnn_in_conformer |
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encoder_layers = config.encoder_layers |
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encoder_units = config.encoder_units |
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encoder_normalize_before = config.encoder_normalize_before |
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encoder_concat_after = config.encoder_concat_after |
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conformer_encoder_kernel_size = config.conformer_encoder_kernel_size |
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transformer_enc_dropout_rate = config.transformer_enc_dropout_rate |
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transformer_enc_positional_dropout_rate = config.transformer_enc_positional_dropout_rate |
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transformer_enc_attn_dropout_rate = config.transformer_enc_attn_dropout_rate |
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decoder_layers = config.decoder_layers |
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decoder_units = config.decoder_units |
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decoder_concat_after = config.decoder_concat_after |
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conformer_decoder_kernel_size = config.conformer_decoder_kernel_size |
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decoder_normalize_before = config.decoder_normalize_before |
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transformer_dec_dropout_rate = config.transformer_dec_dropout_rate |
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transformer_dec_positional_dropout_rate = config.transformer_dec_positional_dropout_rate |
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transformer_dec_attn_dropout_rate = config.transformer_dec_attn_dropout_rate |
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duration_predictor_layers = config.duration_predictor_layers |
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duration_predictor_kernel_size = config.duration_predictor_kernel_size |
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duration_predictor_dropout_rate = config.duration_predictor_dropout_rate |
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pitch_predictor_layers = config.pitch_predictor_layers |
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pitch_predictor_kernel_size = config.pitch_predictor_kernel_size |
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pitch_predictor_dropout = config.pitch_predictor_dropout |
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pitch_embed_kernel_size = config.pitch_embed_kernel_size |
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pitch_embed_dropout = config.pitch_embed_dropout |
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energy_predictor_layers = config.energy_predictor_layers |
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energy_predictor_kernel_size = config.energy_predictor_kernel_size |
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energy_predictor_dropout = config.energy_predictor_dropout |
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energy_embed_kernel_size = config.energy_embed_kernel_size |
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energy_embed_dropout = config.energy_embed_dropout |
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cfm_filter_channels = config.cfm_filter_channels |
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cfm_heads = config.cfm_heads |
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cfm_layers = config.cfm_layers |
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cfm_kernel_size = config.cfm_kernel_size |
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cfm_p_dropout = config.cfm_p_dropout |
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utt_embed_dim = config.utt_embed_dim |
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lang_embs = config.lang_embs |
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spec_channels = config.spec_channels |
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embedding_integration = config.embedding_integration |
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lang_emb_size = config.lang_emb_size |
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integrate_language_embedding_into_encoder_out = config.integrate_language_embedding_into_encoder_out |
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prosody_channels = config.prosody_channels |
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if lang_embs is None or lang_embs == 0: |
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lang_embs = None |
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integrate_language_embedding_into_encoder_out = False |
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if integrate_language_embedding_into_encoder_out: |
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utt_embed_dim = utt_embed_dim + lang_emb_size |
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self.input_feature_dimensions = input_feature_dimensions |
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self.attention_dimension = attention_dimension |
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self.use_scaled_pos_enc = use_scaled_positional_encoding |
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self.multilingual_model = lang_embs is not None |
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self.multispeaker_model = utt_embed_dim is not None |
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self.integrate_language_embedding_into_encoder_out = integrate_language_embedding_into_encoder_out |
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self.use_conditional_layernorm_embedding_integration = embedding_integration in ["AdaIN", "ConditionalLayerNorm"] |
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articulatory_feature_embedding = Sequential(Linear(input_feature_dimensions, 100), Tanh(), Linear(100, attention_dimension)) |
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self.encoder = Conformer(conformer_type="encoder", |
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attention_dim=attention_dimension, |
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attention_heads=attention_heads, |
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linear_units=encoder_units, |
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num_blocks=encoder_layers, |
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input_layer=articulatory_feature_embedding, |
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dropout_rate=transformer_enc_dropout_rate, |
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positional_dropout_rate=transformer_enc_positional_dropout_rate, |
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attention_dropout_rate=transformer_enc_attn_dropout_rate, |
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normalize_before=encoder_normalize_before, |
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concat_after=encoder_concat_after, |
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positionwise_conv_kernel_size=positionwise_conv_kernel_size, |
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macaron_style=use_macaron_style_in_conformer, |
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use_cnn_module=True, |
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cnn_module_kernel=conformer_encoder_kernel_size, |
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zero_triu=False, |
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utt_embed=utt_embed_dim, |
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lang_embs=lang_embs, |
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lang_emb_size=lang_emb_size, |
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use_output_norm=True, |
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embedding_integration=embedding_integration) |
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self.duration_predictor = CFMDecoder(hidden_channels=prosody_channels, |
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out_channels=1, |
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filter_channels=prosody_channels, |
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n_heads=1, |
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n_layers=duration_predictor_layers, |
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kernel_size=duration_predictor_kernel_size, |
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p_dropout=duration_predictor_dropout_rate, |
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gin_channels=utt_embed_dim) |
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self.pitch_predictor = CFMDecoder(hidden_channels=prosody_channels, |
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out_channels=1, |
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filter_channels=prosody_channels, |
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n_heads=1, |
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n_layers=pitch_predictor_layers, |
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kernel_size=pitch_predictor_kernel_size, |
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p_dropout=pitch_predictor_dropout, |
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gin_channels=utt_embed_dim) |
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self.energy_predictor = CFMDecoder(hidden_channels=prosody_channels, |
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out_channels=1, |
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filter_channels=prosody_channels, |
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n_heads=1, |
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n_layers=energy_predictor_layers, |
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kernel_size=energy_predictor_kernel_size, |
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p_dropout=energy_predictor_dropout, |
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gin_channels=utt_embed_dim) |
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self.pitch_embed = Sequential(torch.nn.Conv1d(in_channels=1, |
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out_channels=attention_dimension, |
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kernel_size=pitch_embed_kernel_size, |
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padding=(pitch_embed_kernel_size - 1) // 2), |
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torch.nn.Dropout(pitch_embed_dropout)) |
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self.energy_embed = Sequential(torch.nn.Conv1d(in_channels=1, |
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out_channels=attention_dimension, |
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kernel_size=energy_embed_kernel_size, |
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padding=(energy_embed_kernel_size - 1) // 2), |
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torch.nn.Dropout(energy_embed_dropout)) |
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self.length_regulator = LengthRegulator() |
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self.decoder = Conformer(conformer_type="decoder", |
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attention_dim=attention_dimension, |
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attention_heads=attention_heads, |
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linear_units=decoder_units, |
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num_blocks=decoder_layers, |
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input_layer=None, |
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dropout_rate=transformer_dec_dropout_rate, |
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positional_dropout_rate=transformer_dec_positional_dropout_rate, |
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attention_dropout_rate=transformer_dec_attn_dropout_rate, |
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normalize_before=decoder_normalize_before, |
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concat_after=decoder_concat_after, |
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positionwise_conv_kernel_size=positionwise_conv_kernel_size, |
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macaron_style=use_macaron_style_in_conformer, |
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use_cnn_module=use_cnn_in_conformer, |
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cnn_module_kernel=conformer_decoder_kernel_size, |
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use_output_norm=not embedding_integration in ["AdaIN", "ConditionalLayerNorm"], |
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utt_embed=utt_embed_dim, |
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embedding_integration=embedding_integration) |
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self.output_projection = torch.nn.Linear(attention_dimension, spec_channels) |
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self.pitch_latent_reduction = torch.nn.Linear(attention_dimension, prosody_channels) |
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self.energy_latent_reduction = torch.nn.Linear(attention_dimension, prosody_channels) |
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self.duration_latent_reduction = torch.nn.Linear(attention_dimension, prosody_channels) |
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self.flow_matching_decoder = CFMDecoder(hidden_channels=spec_channels, |
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out_channels=spec_channels, |
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filter_channels=cfm_filter_channels, |
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n_heads=cfm_heads, |
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n_layers=cfm_layers, |
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kernel_size=cfm_kernel_size, |
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p_dropout=cfm_p_dropout, |
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gin_channels=utt_embed_dim) |
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self.load_state_dict(weights) |
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self.eval() |
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def _forward(self, |
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text_tensors, |
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text_lengths, |
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gold_durations=None, |
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gold_pitch=None, |
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gold_energy=None, |
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duration_scaling_factor=1.0, |
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utterance_embedding=None, |
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lang_ids=None, |
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pitch_variance_scale=1.0, |
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energy_variance_scale=1.0, |
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pause_duration_scaling_factor=1.0, |
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prosody_creativity=0.1): |
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text_tensors = torch.clamp(text_tensors, max=1.0) |
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if not self.multilingual_model: |
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lang_ids = None |
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if not self.multispeaker_model: |
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utterance_embedding = None |
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if utterance_embedding is not None: |
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utterance_embedding = torch.nn.functional.normalize(utterance_embedding) |
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if self.integrate_language_embedding_into_encoder_out and lang_ids is not None: |
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lang_embs = self.encoder.language_embedding(lang_ids) |
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lang_embs = torch.nn.functional.normalize(lang_embs) |
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utterance_embedding = torch.cat([lang_embs, utterance_embedding], dim=1).detach() |
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text_masks = make_non_pad_mask(text_lengths, device=text_lengths.device).unsqueeze(-2) |
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encoded_texts, _ = self.encoder(text_tensors, text_masks, utterance_embedding=utterance_embedding, lang_ids=lang_ids) |
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reduced_pitch_space = torchfunc.dropout(self.pitch_latent_reduction(encoded_texts), p=0.1).transpose(1, 2) |
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pitch_predictions = self.pitch_predictor(mu=reduced_pitch_space, |
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mask=text_masks.float(), |
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n_timesteps=10, |
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temperature=prosody_creativity, |
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c=utterance_embedding) if gold_pitch is None else gold_pitch |
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pitch_predictions = _scale_variance(pitch_predictions, pitch_variance_scale) |
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embedded_pitch_curve = self.pitch_embed(pitch_predictions).transpose(1, 2) |
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reduced_energy_space = torchfunc.dropout(self.energy_latent_reduction(encoded_texts + embedded_pitch_curve), p=0.1).transpose(1, 2) |
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energy_predictions = self.energy_predictor(mu=reduced_energy_space, |
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mask=text_masks.float(), |
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n_timesteps=10, |
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temperature=prosody_creativity, |
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c=utterance_embedding) if gold_energy is None else gold_energy |
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energy_predictions = _scale_variance(energy_predictions, energy_variance_scale) |
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embedded_energy_curve = self.energy_embed(energy_predictions).transpose(1, 2) |
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reduced_duration_space = torchfunc.dropout(self.duration_latent_reduction(encoded_texts + embedded_pitch_curve + embedded_energy_curve), p=0.1).transpose(1, 2) |
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predicted_durations = torch.clamp(torch.ceil(self.duration_predictor(mu=reduced_duration_space, |
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mask=text_masks.float(), |
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n_timesteps=10, |
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temperature=prosody_creativity, |
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c=utterance_embedding)), min=0.0).long().squeeze(1) if gold_durations is None else gold_durations |
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for phoneme_index, phoneme_vector in enumerate(text_tensors.squeeze(0)): |
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if phoneme_vector[get_feature_to_index_lookup()["word-boundary"]] == 1: |
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predicted_durations[0][phoneme_index] = 0 |
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if phoneme_vector[get_feature_to_index_lookup()["silence"]] == 1 and pause_duration_scaling_factor != 1.0: |
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predicted_durations[0][phoneme_index] = torch.round(predicted_durations[0][phoneme_index].float() * pause_duration_scaling_factor).long() |
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if duration_scaling_factor != 1.0: |
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assert duration_scaling_factor > 0.0 |
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predicted_durations = torch.round(predicted_durations.float() * duration_scaling_factor).long() |
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enriched_encoded_texts = encoded_texts + embedded_pitch_curve + embedded_energy_curve |
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upsampled_enriched_encoded_texts = self.length_regulator(enriched_encoded_texts, predicted_durations) |
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decoded_speech, _ = self.decoder(upsampled_enriched_encoded_texts, None, utterance_embedding=utterance_embedding) |
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preliminary_spectrogram = self.output_projection(decoded_speech) |
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refined_codec_frames = self.flow_matching_decoder(mu=preliminary_spectrogram.transpose(1, 2), |
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mask=make_non_pad_mask([len(decoded_speech[0])], device=decoded_speech.device).unsqueeze(-2), |
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n_timesteps=15, |
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temperature=0.1, |
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c=None).transpose(1, 2) |
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return refined_codec_frames, predicted_durations.squeeze(), pitch_predictions.squeeze(), energy_predictions.squeeze() |
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@torch.inference_mode() |
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def forward(self, |
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text, |
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durations=None, |
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pitch=None, |
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energy=None, |
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utterance_embedding=None, |
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return_duration_pitch_energy=False, |
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lang_id=None, |
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duration_scaling_factor=1.0, |
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pitch_variance_scale=1.0, |
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energy_variance_scale=1.0, |
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pause_duration_scaling_factor=1.0, |
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prosody_creativity=0.1): |
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""" |
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Generate the sequence of spectrogram frames given the sequence of vectorized phonemes. |
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Args: |
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text: input sequence of vectorized phonemes |
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durations: durations to be used (optional, if not provided, they will be predicted) |
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pitch: token-averaged pitch curve to be used (optional, if not provided, it will be predicted) |
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energy: token-averaged energy curve to be used (optional, if not provided, it will be predicted) |
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return_duration_pitch_energy: whether to return the list of predicted durations for nicer plotting |
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utterance_embedding: embedding of speaker information |
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lang_id: id to be fed into the embedding layer that contains language information |
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duration_scaling_factor: reasonable values are 0.8 < scale < 1.2. |
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1.0 means no scaling happens, higher values increase durations for the whole |
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utterance, lower values decrease durations for the whole utterance. |
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pitch_variance_scale: reasonable values are 0.6 < scale < 1.4. |
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1.0 means no scaling happens, higher values increase variance of the pitch curve, |
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lower values decrease variance of the pitch curve. |
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energy_variance_scale: reasonable values are 0.6 < scale < 1.4. |
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1.0 means no scaling happens, higher values increase variance of the energy curve, |
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lower values decrease variance of the energy curve. |
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pause_duration_scaling_factor: reasonable values are 0.6 < scale < 1.4. |
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scales the durations of pauses on top of the regular duration scaling |
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Returns: |
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features spectrogram |
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""" |
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text_length = torch.tensor([text.shape[0]], dtype=torch.long, device=text.device) |
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if durations is not None: |
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durations = durations.unsqueeze(0).to(text.device) |
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if pitch is not None: |
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pitch = pitch.unsqueeze(0).to(text.device) |
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if energy is not None: |
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energy = energy.unsqueeze(0).to(text.device) |
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if lang_id is not None: |
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lang_id = lang_id.to(text.device) |
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outs, \ |
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predicted_durations, \ |
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pitch_predictions, \ |
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energy_predictions = self._forward(text.unsqueeze(0), |
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text_length, |
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gold_durations=durations, |
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gold_pitch=pitch, |
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gold_energy=energy, |
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utterance_embedding=utterance_embedding.unsqueeze(0) if utterance_embedding is not None else None, lang_ids=lang_id, |
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duration_scaling_factor=duration_scaling_factor, |
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pitch_variance_scale=pitch_variance_scale, |
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energy_variance_scale=energy_variance_scale, |
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pause_duration_scaling_factor=pause_duration_scaling_factor, |
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prosody_creativity=prosody_creativity) |
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if return_duration_pitch_energy: |
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return outs.squeeze().transpose(0, 1), predicted_durations, pitch_predictions, energy_predictions |
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return outs.squeeze().transpose(0, 1) |
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def store_inverse_all(self): |
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def remove_weight_norm(m): |
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try: |
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torch.nn.utils.remove_weight_norm(m) |
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except ValueError: |
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return |
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self.apply(remove_weight_norm) |
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def _scale_variance(sequence, scale): |
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if scale == 1.0: |
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return sequence |
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average = sequence[0][sequence[0] != 0.0].mean() |
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sequence = sequence - average |
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sequence = sequence * scale |
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sequence = sequence + average |
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for sequence_index in range(len(sequence[0][0])): |
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if sequence[0][0][sequence_index] < 0.0: |
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sequence[0][0][sequence_index] = 0.0 |
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return sequence |
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def smooth_time_series(matrix, n_neighbors): |
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""" |
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Smooth a 2D matrix along the time axis using a moving average. |
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Parameters: |
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- matrix (torch.Tensor): Input matrix (2D tensor) representing the time series. |
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- n_neighbors (int): Number of neighboring rows to include in the moving average. |
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Returns: |
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- torch.Tensor: Smoothed matrix. |
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""" |
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smoothed_matrix = torch.zeros_like(matrix) |
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for i in range(matrix.size(0)): |
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lower = max(0, i - n_neighbors) |
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upper = min(matrix.size(0), i + n_neighbors + 1) |
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smoothed_matrix[i] = torch.mean(matrix[lower:upper], dim=0) |
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return smoothed_matrix |
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def make_near_zero_to_zero(sequence): |
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for index in range(len(sequence)): |
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if sequence[index] < 0.2: |
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sequence[index] = 0.0 |
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return sequence |
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