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from __future__ import absolute_import |
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from __future__ import print_function |
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from __future__ import division |
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import numpy as np |
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from PIL import Image |
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class Gridmask(object): |
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def __init__(self, |
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use_h=True, |
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use_w=True, |
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rotate=1, |
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offset=False, |
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ratio=0.5, |
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mode=1, |
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prob=0.7, |
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upper_iter=360000): |
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super(Gridmask, self).__init__() |
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self.use_h = use_h |
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self.use_w = use_w |
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self.rotate = rotate |
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self.offset = offset |
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self.ratio = ratio |
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self.mode = mode |
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self.prob = prob |
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self.st_prob = prob |
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self.upper_iter = upper_iter |
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def __call__(self, x, curr_iter): |
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self.prob = self.st_prob * min(1, 1.0 * curr_iter / self.upper_iter) |
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if np.random.rand() > self.prob: |
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return x |
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h, w, _ = x.shape |
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hh = int(1.5 * h) |
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ww = int(1.5 * w) |
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d = np.random.randint(2, h) |
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self.l = min(max(int(d * self.ratio + 0.5), 1), d - 1) |
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mask = np.ones((hh, ww), np.float32) |
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st_h = np.random.randint(d) |
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st_w = np.random.randint(d) |
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if self.use_h: |
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for i in range(hh // d): |
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s = d * i + st_h |
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t = min(s + self.l, hh) |
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mask[s:t, :] *= 0 |
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if self.use_w: |
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for i in range(ww // d): |
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s = d * i + st_w |
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t = min(s + self.l, ww) |
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mask[:, s:t] *= 0 |
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r = np.random.randint(self.rotate) |
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mask = Image.fromarray(np.uint8(mask)) |
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mask = mask.rotate(r) |
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mask = np.asarray(mask) |
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mask = mask[(hh - h) // 2:(hh - h) // 2 + h, (ww - w) // 2:(ww - w) // 2 |
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+ w].astype(np.float32) |
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if self.mode == 1: |
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mask = 1 - mask |
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mask = np.expand_dims(mask, axis=-1) |
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if self.offset: |
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offset = (2 * (np.random.rand(h, w) - 0.5)).astype(np.float32) |
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x = (x * mask + offset * (1 - mask)).astype(x.dtype) |
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else: |
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x = (x * mask).astype(x.dtype) |
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return x |
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