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xiaozhi-esp32-server/main/xiaozhi-server/core/providers/tts/base.py
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import os
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import re
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import uuid
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import queue
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import asyncio
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import threading
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import traceback
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from core.utils import p3
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from datetime import datetime
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from core.utils import textUtils
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from typing import Callable, Any
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from abc import ABC, abstractmethod
from config.logger import setup_logging
from core.utils import opus_encoder_utils
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from core.utils.tts import MarkdownCleaner, convert_percentage_to_range
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from core.utils.output_counter import add_device_output
from core.handle.reportHandle import enqueue_tts_report
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from core.handle.sendAudioHandle import sendAudioMessage
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from core.utils.util import audio_bytes_to_data_stream, audio_to_data_stream
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from core.providers.tts.dto.dto import (
TTSMessageDTO,
SentenceType,
ContentType,
InterfaceType,
)
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TAG = __name__
logger = setup_logging()
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class TTSProviderBase(ABC):
def __init__(self, config, delete_audio_file):
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self.interface_type = InterfaceType.NON_STREAM
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self.conn = None
self.delete_audio_file = delete_audio_file
self.audio_file_type = "wav"
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self.output_file = config.get("output_dir", "tmp/")
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self.tts_text_queue = queue.Queue()
self.tts_audio_queue = queue.Queue()
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self.tts_audio_first_sentence = True
self.before_stop_play_files = []
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self.report_on_last = False
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self.tts_text_buff = []
self.punctuations = (
"。",
"",
"?",
"",
"!",
"",
";",
"",
)
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self.first_sentence_punctuations = (
"",
"~",
"、",
",",
"。",
"",
"?",
"",
"!",
"",
";",
"",
)
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self.tts_stop_request = False
self.processed_chars = 0
self.is_first_sentence = True
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def generate_filename(self, extension=".wav"):
return os.path.join(
self.output_file,
f"tts-{datetime.now().date()}@{uuid.uuid4().hex}{extension}",
)
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def handle_opus(self, opus_data: bytes):
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logger.bind(tag=TAG).debug(f"推送数据到队列里面帧数~~ {len(opus_data)}")
self.tts_audio_queue.put((SentenceType.MIDDLE, opus_data, None))
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def handle_audio_file(self, file_audio: bytes, text):
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self.before_stop_play_files.append((file_audio, text))
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def to_tts_stream(self, text, opus_handler: Callable[[bytes], None] = None) -> None:
text = MarkdownCleaner.clean_markdown(text)
max_repeat_time = 5
if self.delete_audio_file:
# 需要删除文件的直接转为音频数据
while max_repeat_time > 0:
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try:
audio_bytes = asyncio.run(self.text_to_speak(text, None))
if audio_bytes:
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self.tts_audio_queue.put((SentenceType.FIRST, None, text))
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audio_bytes_to_data_stream(
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audio_bytes,
file_type=self.audio_file_type,
is_opus=True,
callback=opus_handler,
sample_rate=self.conn.sample_rate,
opus_encoder=self.opus_encoder,
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)
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break
else:
max_repeat_time -= 1
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except Exception as e:
logger.bind(tag=TAG).warning(
f"语音生成失败{5 - max_repeat_time + 1}次: {text},错误: {e}"
)
max_repeat_time -= 1
if max_repeat_time > 0:
logger.bind(tag=TAG).info(
f"语音生成成功: {text},重试{5 - max_repeat_time}次"
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)
else:
logger.bind(tag=TAG).error(
f"语音生成失败: {text},请检查网络或服务是否正常"
)
return None
else:
tmp_file = self.generate_filename()
try:
while not os.path.exists(tmp_file) and max_repeat_time > 0:
try:
asyncio.run(self.text_to_speak(text, tmp_file))
except Exception as e:
logger.bind(tag=TAG).warning(
f"语音生成失败{5 - max_repeat_time + 1}次: {text},错误: {e}"
)
# 未执行成功,删除文件
if os.path.exists(tmp_file):
os.remove(tmp_file)
max_repeat_time -= 1
if max_repeat_time > 0:
logger.bind(tag=TAG).info(
f"语音生成成功: {text}:{tmp_file},重试{5 - max_repeat_time}次"
)
else:
logger.bind(tag=TAG).error(
f"语音生成失败: {text},请检查网络或服务是否正常"
)
self.tts_audio_queue.put((SentenceType.FIRST, None, text))
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self._process_audio_file_stream(tmp_file, callback=opus_handler)
except Exception as e:
logger.bind(tag=TAG).error(f"Failed to generate TTS file: {e}")
return None
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def to_tts(self, text):
text = MarkdownCleaner.clean_markdown(text)
max_repeat_time = 5
if self.delete_audio_file:
# 需要删除文件的直接转为音频数据
while max_repeat_time > 0:
try:
audio_bytes = asyncio.run(self.text_to_speak(text, None))
if audio_bytes:
audio_datas = []
audio_bytes_to_data_stream(
audio_bytes,
file_type=self.audio_file_type,
is_opus=True,
callback=lambda data: audio_datas.append(data),
sample_rate=self.conn.sample_rate,
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)
return audio_datas
else:
max_repeat_time -= 1
except Exception as e:
logger.bind(tag=TAG).warning(
f"语音生成失败{5 - max_repeat_time + 1}次: {text},错误: {e}"
)
max_repeat_time -= 1
if max_repeat_time > 0:
logger.bind(tag=TAG).info(
f"语音生成成功: {text},重试{5 - max_repeat_time}次"
)
else:
logger.bind(tag=TAG).error(
f"语音生成失败: {text},请检查网络或服务是否正常"
)
return None
else:
tmp_file = self.generate_filename()
try:
while not os.path.exists(tmp_file) and max_repeat_time > 0:
try:
asyncio.run(self.text_to_speak(text, tmp_file))
except Exception as e:
logger.bind(tag=TAG).warning(
f"语音生成失败{5 - max_repeat_time + 1}次: {text},错误: {e}"
)
# 未执行成功,删除文件
if os.path.exists(tmp_file):
os.remove(tmp_file)
max_repeat_time -= 1
if max_repeat_time > 0:
logger.bind(tag=TAG).info(
f"语音生成成功: {text}:{tmp_file},重试{5 - max_repeat_time}次"
)
else:
logger.bind(tag=TAG).error(
f"语音生成失败: {text},请检查网络或服务是否正常"
)
return tmp_file
except Exception as e:
logger.bind(tag=TAG).error(f"Failed to generate TTS file: {e}")
return None
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@abstractmethod
async def text_to_speak(self, text, output_file):
pass
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def audio_to_pcm_data_stream(
self, audio_file_path, callback: Callable[[Any], Any] = None
):
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"""音频文件转换为PCM编码"""
return audio_to_data_stream(audio_file_path, is_opus=False, callback=callback, sample_rate=self.conn.sample_rate, opus_encoder=None)
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def audio_to_opus_data_stream(
self, audio_file_path, callback: Callable[[Any], Any] = None
):
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"""音频文件转换为Opus编码"""
return audio_to_data_stream(audio_file_path, is_opus=True, callback=callback, sample_rate=self.conn.sample_rate, opus_encoder=self.opus_encoder)
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def tts_one_sentence(
self,
conn,
content_type,
content_detail=None,
content_file=None,
sentence_id=None,
):
"""发送一句话"""
if not sentence_id:
if conn.sentence_id:
sentence_id = conn.sentence_id
else:
sentence_id = str(uuid.uuid4().hex)
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conn.sentence_id = sentence_id
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# 对于单句的文本,进行分段处理
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segments = re.split(r"([。!?!?;\n])", content_detail)
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for seg in segments:
self.tts_text_queue.put(
TTSMessageDTO(
sentence_id=sentence_id,
sentence_type=SentenceType.MIDDLE,
content_type=content_type,
content_detail=seg,
content_file=content_file,
)
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)
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async def open_audio_channels(self, conn):
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self.conn = conn
# 根据conn的sample_rate创建编码器,如果子类已经创建则不覆盖(IndexTTS接口返回为24kHZ-待重采样处理)
if not hasattr(self, 'opus_encoder') or self.opus_encoder is None:
self.opus_encoder = opus_encoder_utils.OpusEncoderUtils(
sample_rate=conn.sample_rate, channels=1, frame_size_ms=60
)
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# tts 消化线程
self.tts_priority_thread = threading.Thread(
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target=self.tts_text_priority_thread, daemon=True
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)
self.tts_priority_thread.start()
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# 音频播放 消化线程
self.audio_play_priority_thread = threading.Thread(
target=self._audio_play_priority_thread, daemon=True
)
self.audio_play_priority_thread.start()
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# 这里默认是非流式的处理方式
# 流式处理方式请在子类中重写
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def tts_text_priority_thread(self):
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while not self.conn.stop_event.is_set():
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try:
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message = self.tts_text_queue.get(timeout=1)
if message.sentence_type == SentenceType.FIRST:
self.conn.client_abort = False
if self.conn.client_abort:
logger.bind(tag=TAG).info("收到打断信息,终止TTS文本处理线程")
continue
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if message.sentence_type == SentenceType.FIRST:
# 初始化参数
self.tts_stop_request = False
self.processed_chars = 0
self.tts_text_buff = []
self.is_first_sentence = True
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self.tts_audio_first_sentence = True
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elif ContentType.TEXT == message.content_type:
self.tts_text_buff.append(message.content_detail)
segment_text = self._get_segment_text()
if segment_text:
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self.to_tts_stream(segment_text, opus_handler=self.handle_opus)
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elif ContentType.FILE == message.content_type:
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self._process_remaining_text_stream(opus_handler=self.handle_opus)
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tts_file = message.content_file
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if tts_file and os.path.exists(tts_file):
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self._process_audio_file_stream(
tts_file, callback=self.handle_opus
)
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if message.sentence_type == SentenceType.LAST:
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self._process_remaining_text_stream(opus_handler=self.handle_opus)
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self.tts_audio_queue.put(
(message.sentence_type, [], message.content_detail)
)
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except queue.Empty:
continue
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except Exception as e:
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logger.bind(tag=TAG).error(
f"处理TTS文本失败: {str(e)}, 类型: {type(e).__name__}, 堆栈: {traceback.format_exc()}"
)
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continue
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def _audio_play_priority_thread(self):
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# 需要上报的文本和音频列表
enqueue_text = None
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enqueue_audio = []
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while not self.conn.stop_event.is_set():
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text = None
try:
try:
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sentence_type, audio_datas, text = self.tts_audio_queue.get(
timeout=0.1
)
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except queue.Empty:
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if self.conn.stop_event.is_set():
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break
continue
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if self.conn.client_abort:
logger.bind(tag=TAG).debug("收到打断信号,跳过当前音频数据")
enqueue_text, enqueue_audio = None, []
continue
# 收到下一个文本开始或会话结束时进行上报
if sentence_type is not SentenceType.MIDDLE:
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if self.report_on_last:
# 累积模式:适用于全程只有一个语音流的TTS(如seed-tts-2.0
# FIRST时只记录文本,音频持续累积,仅在LAST时统一上报
if text:
enqueue_text = text
if sentence_type == SentenceType.LAST:
enqueue_tts_report(self.conn, enqueue_text, enqueue_audio)
enqueue_audio = []
enqueue_text = None
else:
# 非累积模式:每个句子分别上报
if enqueue_text is not None:
enqueue_tts_report(self.conn, enqueue_text, enqueue_audio)
enqueue_audio = []
enqueue_text = text
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# 收集上报音频数据
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if isinstance(audio_datas, bytes):
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enqueue_audio.append(audio_datas)
# 发送音频
future = asyncio.run_coroutine_threadsafe(
sendAudioMessage(self.conn, sentence_type, audio_datas, text),
self.conn.loop,
)
future.result()
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# 记录输出和报告
if self.conn.max_output_size > 0 and text:
add_device_output(self.conn.headers.get("device-id"), len(text))
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except Exception as e:
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logger.bind(tag=TAG).error(f"audio_play_priority_thread: {text} {e}")
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async def start_session(self, session_id):
pass
async def finish_session(self, session_id):
pass
async def close(self):
"""资源清理方法"""
if hasattr(self, "ws") and self.ws:
await self.ws.close()
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def _get_segment_text(self):
# 合并当前全部文本并处理未分割部分
full_text = "".join(self.tts_text_buff)
current_text = full_text[self.processed_chars :] # 从未处理的位置开始
last_punct_pos = -1
# 根据是否是第一句话选择不同的标点符号集合
punctuations_to_use = (
self.first_sentence_punctuations
if self.is_first_sentence
else self.punctuations
)
for punct in punctuations_to_use:
pos = current_text.rfind(punct)
if (pos != -1 and last_punct_pos == -1) or (
pos != -1 and pos < last_punct_pos
):
last_punct_pos = pos
if last_punct_pos != -1:
segment_text_raw = current_text[: last_punct_pos + 1]
segment_text = textUtils.get_string_no_punctuation_or_emoji(
segment_text_raw
)
self.processed_chars += len(segment_text_raw) # 更新已处理字符位置
# 如果是第一句话,在找到第一个逗号后,将标志设置为False
if self.is_first_sentence:
self.is_first_sentence = False
return segment_text
elif self.tts_stop_request and current_text:
segment_text = current_text
self.is_first_sentence = True # 重置标志
return segment_text
else:
return None
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def _process_audio_file_stream(
self, tts_file, callback: Callable[[Any], Any]
) -> None:
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"""处理音频文件并转换为指定格式
Args:
tts_file: 音频文件路径
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callback: 文件处理函数
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"""
if tts_file.endswith(".p3"):
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p3.decode_opus_from_file_stream(tts_file, callback=callback)
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elif self.conn.audio_format == "pcm":
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self.audio_to_pcm_data_stream(tts_file, callback=callback)
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else:
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self.audio_to_opus_data_stream(tts_file, callback=callback)
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if (
self.delete_audio_file
and tts_file is not None
and os.path.exists(tts_file)
and tts_file.startswith(self.output_file)
):
os.remove(tts_file)
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def _process_before_stop_play_files(self):
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for audio_datas, text in self.before_stop_play_files:
self.tts_audio_queue.put((SentenceType.MIDDLE, audio_datas, text))
self.before_stop_play_files.clear()
self.tts_audio_queue.put((SentenceType.LAST, [], None))
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def _process_remaining_text_stream(
self, opus_handler: Callable[[bytes], None] = None
):
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"""处理剩余的文本并生成语音
Returns:
bool: 是否成功处理了文本
"""
full_text = "".join(self.tts_text_buff)
remaining_text = full_text[self.processed_chars :]
if remaining_text:
segment_text = textUtils.get_string_no_punctuation_or_emoji(remaining_text)
if segment_text:
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self.to_tts_stream(segment_text, opus_handler=opus_handler)
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self.processed_chars += len(full_text)
return True
return False
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def _apply_percentage_params(self, config):
"""根据子类定义的 TTS_PARAM_CONFIG 批量应用百分比参数"""
for config_key, attr_name, min_val, max_val, base_val, transform in self.TTS_PARAM_CONFIG:
if config_key in config:
val = convert_percentage_to_range(config[config_key], min_val, max_val, base_val)
setattr(self, attr_name, transform(val) if transform else val)