| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104 | require 'image'local iproc = require 'iproc'local data_augmentation = {}local function pcacov(x)   local mean = torch.mean(x, 1)   local xm = x - torch.ger(torch.ones(x:size(1)), mean:squeeze())   local c = torch.mm(xm:t(), xm)   c:div(x:size(1) - 1)   local ce, cv = torch.symeig(c, 'V')   return ce, cvendfunction data_augmentation.color_noise(src, p, factor)   factor = factor or 0.1   if torch.uniform() < p then      local src, conversion = iproc.byte2float(src)      local src_t = src:reshape(src:size(1), src:nElement() / src:size(1)):t():contiguous()      local ce, cv = pcacov(src_t)      local color_scale = torch.Tensor(3):uniform(1 / (1 + factor), 1 + factor)            pca_space = torch.mm(src_t, cv):t():contiguous()      for i = 1, 3 do	 pca_space[i]:mul(color_scale[i])      end      local dest = torch.mm(pca_space:t(), cv:t()):t():contiguous():resizeAs(src)      dest[torch.lt(dest, 0.0)] = 0.0      dest[torch.gt(dest, 1.0)] = 1.0      if conversion then	 dest = iproc.float2byte(dest)      end      return dest   else      return src   endendfunction data_augmentation.overlay(src, p)   if torch.uniform() < p then      local r = torch.uniform()      local src, conversion = iproc.byte2float(src)      src = src:contiguous()      local flip = data_augmentation.flip(src)      flip:mul(r):add(src * (1.0 - r))      if conversion then	 flip = iproc.float2byte(flip)      end      return flip   else      return src   endendfunction data_augmentation.shift_1px(src)   -- reducing the even/odd issue in nearest neighbor scaler.   local direction = torch.random(1, 4)   local x_shift = 0   local y_shift = 0   if direction == 1 then      x_shift = 1      y_shift = 0   elseif direction == 2 then      x_shift = 0      y_shift = 1   elseif direction == 3 then      x_shift = 1      y_shift = 1   elseif flip == 4 then      x_shift = 0      y_shift = 0   end   local w = src:size(3) - x_shift   local h = src:size(2) - y_shift   w = w - (w % 4)   h = h - (h % 4)   local dest = iproc.crop(src, x_shift, y_shift, x_shift + w, y_shift + h)   return destendfunction data_augmentation.flip(src)   local flip = torch.random(1, 4)   local tr = torch.random(1, 2)   local src, conversion = iproc.byte2float(src)   local dest      src = src:contiguous()   if tr == 1 then      -- pass   elseif tr == 2 then      src = src:transpose(2, 3):contiguous()   end   if flip == 1 then      dest = image.hflip(src)   elseif flip == 2 then      dest = image.vflip(src)   elseif flip == 3 then      dest = image.hflip(image.vflip(src))   elseif flip == 4 then      dest = src   end   if conversion then      dest = iproc.float2byte(dest)   end   return destendreturn data_augmentation
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