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34419b5
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lib/infer_pack/modules/F0Predictor/DioF0Predictor.py ADDED
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+ from lib.infer_pack.modules.F0Predictor.F0Predictor import F0Predictor
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+ import pyworld
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+ import numpy as np
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+
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+
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+ class DioF0Predictor(F0Predictor):
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+ def __init__(self, hop_length=512, f0_min=50, f0_max=1100, sampling_rate=44100):
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+ self.hop_length = hop_length
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+ self.f0_min = f0_min
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+ self.f0_max = f0_max
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+ self.sampling_rate = sampling_rate
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+
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+ def interpolate_f0(self, f0):
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+ """
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+ 对F0进行插值处理
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+ """
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+
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+ data = np.reshape(f0, (f0.size, 1))
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+
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+ vuv_vector = np.zeros((data.size, 1), dtype=np.float32)
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+ vuv_vector[data > 0.0] = 1.0
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+ vuv_vector[data <= 0.0] = 0.0
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+
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+ ip_data = data
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+
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+ frame_number = data.size
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+ last_value = 0.0
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+ for i in range(frame_number):
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+ if data[i] <= 0.0:
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+ j = i + 1
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+ for j in range(i + 1, frame_number):
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+ if data[j] > 0.0:
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+ break
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+ if j < frame_number - 1:
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+ if last_value > 0.0:
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+ step = (data[j] - data[i - 1]) / float(j - i)
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+ for k in range(i, j):
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+ ip_data[k] = data[i - 1] + step * (k - i + 1)
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+ else:
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+ for k in range(i, j):
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+ ip_data[k] = data[j]
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+ else:
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+ for k in range(i, frame_number):
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+ ip_data[k] = last_value
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+ else:
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+ ip_data[i] = data[i] # 这里可能存在一个没有必要的拷贝
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+ last_value = data[i]
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+
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+ return ip_data[:, 0], vuv_vector[:, 0]
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+
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+ def resize_f0(self, x, target_len):
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+ source = np.array(x)
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+ source[source < 0.001] = np.nan
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+ target = np.interp(
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+ np.arange(0, len(source) * target_len, len(source)) / target_len,
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+ np.arange(0, len(source)),
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+ source,
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+ )
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+ res = np.nan_to_num(target)
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+ return res
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+
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+ def compute_f0(self, wav, p_len=None):
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+ if p_len is None:
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+ p_len = wav.shape[0] // self.hop_length
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+ f0, t = pyworld.dio(
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+ wav.astype(np.double),
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+ fs=self.sampling_rate,
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+ f0_floor=self.f0_min,
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+ f0_ceil=self.f0_max,
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+ frame_period=1000 * self.hop_length / self.sampling_rate,
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+ )
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+ f0 = pyworld.stonemask(wav.astype(np.double), f0, t, self.sampling_rate)
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+ for index, pitch in enumerate(f0):
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+ f0[index] = round(pitch, 1)
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+ return self.interpolate_f0(self.resize_f0(f0, p_len))[0]
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+
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+ def compute_f0_uv(self, wav, p_len=None):
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+ if p_len is None:
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+ p_len = wav.shape[0] // self.hop_length
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+ f0, t = pyworld.dio(
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+ wav.astype(np.double),
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+ fs=self.sampling_rate,
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+ f0_floor=self.f0_min,
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+ f0_ceil=self.f0_max,
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+ frame_period=1000 * self.hop_length / self.sampling_rate,
86
+ )
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+ f0 = pyworld.stonemask(wav.astype(np.double), f0, t, self.sampling_rate)
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+ for index, pitch in enumerate(f0):
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+ f0[index] = round(pitch, 1)
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+ return self.interpolate_f0(self.resize_f0(f0, p_len))
lib/infer_pack/modules/F0Predictor/F0Predictor.py ADDED
@@ -0,0 +1,16 @@
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1
+ class F0Predictor(object):
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+ def compute_f0(self, wav, p_len):
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+ """
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+ input: wav:[signal_length]
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+ p_len:int
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+ output: f0:[signal_length//hop_length]
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+ """
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+ pass
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+
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+ def compute_f0_uv(self, wav, p_len):
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+ """
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+ input: wav:[signal_length]
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+ p_len:int
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+ output: f0:[signal_length//hop_length],uv:[signal_length//hop_length]
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+ """
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+ pass
lib/infer_pack/modules/F0Predictor/HarvestF0Predictor.py ADDED
@@ -0,0 +1,86 @@
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1
+ from lib.infer_pack.modules.F0Predictor.F0Predictor import F0Predictor
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+ import pyworld
3
+ import numpy as np
4
+
5
+
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+ class HarvestF0Predictor(F0Predictor):
7
+ def __init__(self, hop_length=512, f0_min=50, f0_max=1100, sampling_rate=44100):
8
+ self.hop_length = hop_length
9
+ self.f0_min = f0_min
10
+ self.f0_max = f0_max
11
+ self.sampling_rate = sampling_rate
12
+
13
+ def interpolate_f0(self, f0):
14
+ """
15
+ 对F0进行插值处理
16
+ """
17
+
18
+ data = np.reshape(f0, (f0.size, 1))
19
+
20
+ vuv_vector = np.zeros((data.size, 1), dtype=np.float32)
21
+ vuv_vector[data > 0.0] = 1.0
22
+ vuv_vector[data <= 0.0] = 0.0
23
+
24
+ ip_data = data
25
+
26
+ frame_number = data.size
27
+ last_value = 0.0
28
+ for i in range(frame_number):
29
+ if data[i] <= 0.0:
30
+ j = i + 1
31
+ for j in range(i + 1, frame_number):
32
+ if data[j] > 0.0:
33
+ break
34
+ if j < frame_number - 1:
35
+ if last_value > 0.0:
36
+ step = (data[j] - data[i - 1]) / float(j - i)
37
+ for k in range(i, j):
38
+ ip_data[k] = data[i - 1] + step * (k - i + 1)
39
+ else:
40
+ for k in range(i, j):
41
+ ip_data[k] = data[j]
42
+ else:
43
+ for k in range(i, frame_number):
44
+ ip_data[k] = last_value
45
+ else:
46
+ ip_data[i] = data[i] # 这里可能存在一个没有必要的拷贝
47
+ last_value = data[i]
48
+
49
+ return ip_data[:, 0], vuv_vector[:, 0]
50
+
51
+ def resize_f0(self, x, target_len):
52
+ source = np.array(x)
53
+ source[source < 0.001] = np.nan
54
+ target = np.interp(
55
+ np.arange(0, len(source) * target_len, len(source)) / target_len,
56
+ np.arange(0, len(source)),
57
+ source,
58
+ )
59
+ res = np.nan_to_num(target)
60
+ return res
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+
62
+ def compute_f0(self, wav, p_len=None):
63
+ if p_len is None:
64
+ p_len = wav.shape[0] // self.hop_length
65
+ f0, t = pyworld.harvest(
66
+ wav.astype(np.double),
67
+ fs=self.hop_length,
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+ f0_ceil=self.f0_max,
69
+ f0_floor=self.f0_min,
70
+ frame_period=1000 * self.hop_length / self.sampling_rate,
71
+ )
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+ f0 = pyworld.stonemask(wav.astype(np.double), f0, t, self.fs)
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+ return self.interpolate_f0(self.resize_f0(f0, p_len))[0]
74
+
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+ def compute_f0_uv(self, wav, p_len=None):
76
+ if p_len is None:
77
+ p_len = wav.shape[0] // self.hop_length
78
+ f0, t = pyworld.harvest(
79
+ wav.astype(np.double),
80
+ fs=self.sampling_rate,
81
+ f0_floor=self.f0_min,
82
+ f0_ceil=self.f0_max,
83
+ frame_period=1000 * self.hop_length / self.sampling_rate,
84
+ )
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+ f0 = pyworld.stonemask(wav.astype(np.double), f0, t, self.sampling_rate)
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+ return self.interpolate_f0(self.resize_f0(f0, p_len))
lib/infer_pack/modules/F0Predictor/PMF0Predictor.py ADDED
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1
+ from lib.infer_pack.modules.F0Predictor.F0Predictor import F0Predictor
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+ import parselmouth
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+ import numpy as np
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+
5
+
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+ class PMF0Predictor(F0Predictor):
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+ def __init__(self, hop_length=512, f0_min=50, f0_max=1100, sampling_rate=44100):
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+ self.hop_length = hop_length
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+ self.f0_min = f0_min
10
+ self.f0_max = f0_max
11
+ self.sampling_rate = sampling_rate
12
+
13
+ def interpolate_f0(self, f0):
14
+ """
15
+ 对F0进行插值处理
16
+ """
17
+
18
+ data = np.reshape(f0, (f0.size, 1))
19
+
20
+ vuv_vector = np.zeros((data.size, 1), dtype=np.float32)
21
+ vuv_vector[data > 0.0] = 1.0
22
+ vuv_vector[data <= 0.0] = 0.0
23
+
24
+ ip_data = data
25
+
26
+ frame_number = data.size
27
+ last_value = 0.0
28
+ for i in range(frame_number):
29
+ if data[i] <= 0.0:
30
+ j = i + 1
31
+ for j in range(i + 1, frame_number):
32
+ if data[j] > 0.0:
33
+ break
34
+ if j < frame_number - 1:
35
+ if last_value > 0.0:
36
+ step = (data[j] - data[i - 1]) / float(j - i)
37
+ for k in range(i, j):
38
+ ip_data[k] = data[i - 1] + step * (k - i + 1)
39
+ else:
40
+ for k in range(i, j):
41
+ ip_data[k] = data[j]
42
+ else:
43
+ for k in range(i, frame_number):
44
+ ip_data[k] = last_value
45
+ else:
46
+ ip_data[i] = data[i] # 这里可能存在一个没有必要的拷贝
47
+ last_value = data[i]
48
+
49
+ return ip_data[:, 0], vuv_vector[:, 0]
50
+
51
+ def compute_f0(self, wav, p_len=None):
52
+ x = wav
53
+ if p_len is None:
54
+ p_len = x.shape[0] // self.hop_length
55
+ else:
56
+ assert abs(p_len - x.shape[0] // self.hop_length) < 4, "pad length error"
57
+ time_step = self.hop_length / self.sampling_rate * 1000
58
+ f0 = (
59
+ parselmouth.Sound(x, self.sampling_rate)
60
+ .to_pitch_ac(
61
+ time_step=time_step / 1000,
62
+ voicing_threshold=0.6,
63
+ pitch_floor=self.f0_min,
64
+ pitch_ceiling=self.f0_max,
65
+ )
66
+ .selected_array["frequency"]
67
+ )
68
+
69
+ pad_size = (p_len - len(f0) + 1) // 2
70
+ if pad_size > 0 or p_len - len(f0) - pad_size > 0:
71
+ f0 = np.pad(f0, [[pad_size, p_len - len(f0) - pad_size]], mode="constant")
72
+ f0, uv = self.interpolate_f0(f0)
73
+ return f0
74
+
75
+ def compute_f0_uv(self, wav, p_len=None):
76
+ x = wav
77
+ if p_len is None:
78
+ p_len = x.shape[0] // self.hop_length
79
+ else:
80
+ assert abs(p_len - x.shape[0] // self.hop_length) < 4, "pad length error"
81
+ time_step = self.hop_length / self.sampling_rate * 1000
82
+ f0 = (
83
+ parselmouth.Sound(x, self.sampling_rate)
84
+ .to_pitch_ac(
85
+ time_step=time_step / 1000,
86
+ voicing_threshold=0.6,
87
+ pitch_floor=self.f0_min,
88
+ pitch_ceiling=self.f0_max,
89
+ )
90
+ .selected_array["frequency"]
91
+ )
92
+
93
+ pad_size = (p_len - len(f0) + 1) // 2
94
+ if pad_size > 0 or p_len - len(f0) - pad_size > 0:
95
+ f0 = np.pad(f0, [[pad_size, p_len - len(f0) - pad_size]], mode="constant")
96
+ f0, uv = self.interpolate_f0(f0)
97
+ return f0, uv