游雁
2023-11-23 c408a8847d4257f7a45cac54b512a791f450b3f4
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import torch
import json
import torch.distributed as dist
import numpy as np
import kaldiio
import librosa
 
 
 
def load_audio(audio_path: str, fs: int=16000):
    audio = None
    if audio_path.startswith("oss:"):
        pass
    elif audio_path.startswith("odps:"):
        pass
    else:
        if ".ark:" in audio_path:
            audio = kaldiio.load_mat(audio_path)
        else:
            audio, fs = librosa.load(audio_path, sr=fs)
    return audio
 
def extract_features(data, date_type: str="sound", frontend=None):
    if date_type == "sound":
<<<<<<< HEAD
        if isinstance(data, np.ndarray):
            data = torch.from_numpy(data).to(torch.float32)
        data_len = torch.tensor([data.shape[0]]).to(torch.int32)
        feat, feats_lens = frontend(data[None, :], data_len)
=======
        feat, feats_lens = frontend(data, len(data))
>>>>>>> 911fb3421b9867a0b27f57dfc0912f33d9e779e8
        feat = feat[0, :, :]
    else:
        feat, feats_lens = torch.from_numpy(data).to(torch.float32), torch.tensor([data.shape[0]]).to(torch.int32)
    return feat, feats_lens
    
    
 
class IndexedDatasetJsonl(torch.utils.data.Dataset):
    
    def __init__(self, path):
        super().__init__()
        # data_parallel_size = dist.get_world_size()
        data_parallel_size = 1
        contents = []
        with open(path, encoding='utf-8') as fin:
            for line in fin:
                data = json.loads(line.strip())
                if "text" in data:  # for sft
                    self.contents.append(data['text'])
                if "source" in data:  # for speech lab pretrain
                    prompt = data["prompt"]
                    source = data["source"]
                    target = data["target"]
                    source_len = data["source_len"]
                    target_len = data["target_len"]
 
                    contents.append({"source": source,
                                     "prompt": prompt,
                                     "target": target,
                                     "source_len": source_len,
                                     "target_len": target_len,
                                     }
                                    )
        
        self.contents = []
        total_num = len(contents)
        num_per_rank = total_num // data_parallel_size
        # rank = dist.get_rank()
        rank = 0
        # import ipdb; ipdb.set_trace()
        self.contents = contents[rank * num_per_rank:(rank + 1) * num_per_rank]
 
 
    def __len__(self):
        return len(self.contents)
    
    def __getitem__(self, index):
        return self.contents[index]
 
 
class AudioDataset(torch.utils.data.Dataset):
<<<<<<< HEAD
    def __init__(self, path, frontend=None, tokenizer=None, token_id_converter=None):
=======
    def __init__(self, path, frontend=None, tokenizer=None):
>>>>>>> 911fb3421b9867a0b27f57dfc0912f33d9e779e8
        super().__init__()
        self.indexed_dataset = IndexedDatasetJsonl(path)
        self.frontend = frontend.forward
        self.fs = 16000 if frontend is None else frontend.fs
        self.data_type = "sound"
        self.tokenizer = tokenizer
<<<<<<< HEAD
        self.token_id_converter = token_id_converter
=======
>>>>>>> 911fb3421b9867a0b27f57dfc0912f33d9e779e8
        self.int_pad_value = -1
        self.float_pad_value = 0.0
 
    
 
    
    def __len__(self):
        return len(self.indexed_dataset)
    
    def __getitem__(self, index):
        item = self.indexed_dataset[index]
<<<<<<< HEAD
        # return item
=======
>>>>>>> 911fb3421b9867a0b27f57dfc0912f33d9e779e8
        source = item["source"]
        data_src = load_audio(source, fs=self.fs)
        speech, speech_lengths = extract_features(data_src, self.data_type, self.frontend)
        target = item["target"]
<<<<<<< HEAD
        text = self.tokenizer.text2tokens(target)
        ids = self.token_id_converter.tokens2ids(text)
        ids_lengths = len(ids)
        text, text_lengths = torch.tensor(ids, dtype=torch.int64), torch.tensor([ids_lengths], dtype=torch.int32)
=======
        text = self.tokenizer.encode(target)
        text_lengths = len(text)
        text, text_lengths = torch.tensor(text, dtype=torch.int64), torch.tensor([text_lengths], dtype=torch.int32)
>>>>>>> 911fb3421b9867a0b27f57dfc0912f33d9e779e8
        return {"speech": speech,
                "speech_lengths": speech_lengths,
                "text": text,
                "text_lengths": text_lengths,
                }
    
    
    def collator(self, samples: list=None):
        
<<<<<<< HEAD
        # return samples
        
=======
>>>>>>> 911fb3421b9867a0b27f57dfc0912f33d9e779e8
        outputs = {}
        for sample in samples:
            for key in sample.keys():
                if key not in outputs:
                    outputs[key] = []
                outputs[key].append(sample[key])
<<<<<<< HEAD
 
        for key, data_list in outputs.items():
            if data_list[0].dtype == torch.int64:
=======
        
        for key, data_list in outputs.items():
            if data_list[0].dtype.kind == "i":
>>>>>>> 911fb3421b9867a0b27f57dfc0912f33d9e779e8
                pad_value = self.int_pad_value
            else:
                pad_value = self.float_pad_value
            outputs[key] = torch.nn.utils.rnn.pad_sequence(data_list, batch_first=True, padding_value=pad_value)
<<<<<<< HEAD
        return outputs
=======
        return samples
>>>>>>> 911fb3421b9867a0b27f57dfc0912f33d9e779e8