max/min mel invalid fix
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@ -81,6 +81,9 @@ class TextMelLoader(torch.utils.data.Dataset):
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print(f'{filename} has a sample rate of {sampling_rate} which is lower than the requested sample rate of {self.input_sample_rate}. This is not a good idea.')
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print(f'{filename} has a sample rate of {sampling_rate} which is lower than the requested sample rate of {self.input_sample_rate}. This is not a good idea.')
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audio = torch.nn.functional.interpolate(audio.unsqueeze(0).unsqueeze(1), scale_factor=self.input_sample_rate/sampling_rate, mode='area', recompute_scale_factor=False)
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audio = torch.nn.functional.interpolate(audio.unsqueeze(0).unsqueeze(1), scale_factor=self.input_sample_rate/sampling_rate, mode='area', recompute_scale_factor=False)
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audio = (audio.squeeze().clip(-1,1)+1)/2
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audio = (audio.squeeze().clip(-1,1)+1)/2
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if (audio.min() < -1).any() or (audio.max() > 1).any():
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print(f"Error with audio ranging for {filename}; min={audio.min()} max={audio.max()}")
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return None
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audio_norm = audio.unsqueeze(0)
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audio_norm = audio.unsqueeze(0)
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audio_norm = torch.autograd.Variable(audio_norm, requires_grad=False)
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audio_norm = torch.autograd.Variable(audio_norm, requires_grad=False)
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if self.input_sample_rate != self.sampling_rate:
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if self.input_sample_rate != self.sampling_rate:
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@ -105,15 +108,16 @@ class TextMelLoader(torch.utils.data.Dataset):
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def __getitem__(self, index):
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def __getitem__(self, index):
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t, m, p = self.get_mel_text_pair(self.audiopaths_and_text[index])
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t, m, p = self.get_mel_text_pair(self.audiopaths_and_text[index])
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orig_output = m.shape[-1]
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if m is None or \
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orig_text_len = t.shape[0]
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(self.max_mel_len is not None and m.shape[-1] > self.max_mel_len) or \
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mel_oversize = self.max_mel_len is not None and m.shape[-1] > self.max_mel_len
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(self.max_text_len is not None and t.shape[0] > self.max_text_len):
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text_oversize = self.max_text_len is not None and t.shape[0] > self.max_text_len
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if m is not None:
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if mel_oversize or text_oversize:
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print(f"Exception {index} mel_len:{m.shape[-1]} text_len:{t.shape[0]} fname: {p}")
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print(f"Exception {index} mel_len:{m.shape[-1]} text_len:{t.shape[0]} fname: {p}")
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# It's hard to handle this situation properly. Best bet is to return the a random valid token and skew the dataset somewhat as a result.
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# It's hard to handle this situation properly. Best bet is to return the a random valid token and skew the dataset somewhat as a result.
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rv = random.randint(0,len(self)-1)
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rv = random.randint(0,len(self)-1)
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return self[rv]
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return self[rv]
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orig_output = m.shape[-1]
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orig_text_len = t.shape[0]
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if not self.needs_collate:
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if not self.needs_collate:
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if m.shape[-1] != self.max_mel_len:
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if m.shape[-1] != self.max_mel_len:
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m = F.pad(m, (0, self.max_mel_len - m.shape[-1]))
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m = F.pad(m, (0, self.max_mel_len - m.shape[-1]))
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@ -191,9 +195,9 @@ class TextMelCollate():
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if __name__ == '__main__':
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if __name__ == '__main__':
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params = {
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params = {
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'mode': 'nv_tacotron',
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'mode': 'nv_tacotron',
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'path': 'E:\\audio\\MozillaCommonVoice\\en\\test.tsv',
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'path': 'E:\\audio\\MozillaCommonVoice\\en\\train.tsv',
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'phase': 'train',
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'phase': 'train',
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'n_workers': 0,
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'n_workers': 12,
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'batch_size': 32,
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'batch_size': 32,
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'fetcher_mode': 'mozilla_cv',
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'fetcher_mode': 'mozilla_cv',
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'needs_collate': False,
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'needs_collate': False,
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@ -209,6 +213,7 @@ if __name__ == '__main__':
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dl = create_dataloader(ds, params, collate_fn=c)
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dl = create_dataloader(ds, params, collate_fn=c)
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i = 0
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i = 0
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m = None
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m = None
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for k in range(1000):
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for i, b in tqdm(enumerate(dl)):
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for i, b in tqdm(enumerate(dl)):
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continue
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continue
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pm = b['padded_mel']
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pm = b['padded_mel']
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