reconstruct.lua 6.6 KB

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  1. require 'image'
  2. local iproc = require './iproc'
  3. local function reconstruct_y(model, x, offset, block_size)
  4. if x:dim() == 2 then
  5. x = x:reshape(1, x:size(1), x:size(2))
  6. end
  7. local new_x = torch.Tensor():resizeAs(x):zero()
  8. local output_size = block_size - offset * 2
  9. local input = torch.CudaTensor(1, 1, block_size, block_size)
  10. for i = 1, x:size(2), output_size do
  11. for j = 1, x:size(3), output_size do
  12. if i + block_size - 1 <= x:size(2) and j + block_size - 1 <= x:size(3) then
  13. local index = {{},
  14. {i, i + block_size - 1},
  15. {j, j + block_size - 1}}
  16. input:copy(x[index])
  17. local output = model:forward(input):float():view(1, output_size, output_size)
  18. local output_index = {{},
  19. {i + offset, offset + i + output_size - 1},
  20. {offset + j, offset + j + output_size - 1}}
  21. new_x[output_index]:copy(output)
  22. end
  23. end
  24. end
  25. return new_x
  26. end
  27. local function reconstruct_rgb(model, x, offset, block_size)
  28. local new_x = torch.Tensor():resizeAs(x):zero()
  29. local output_size = block_size - offset * 2
  30. local input = torch.CudaTensor(1, 3, block_size, block_size)
  31. for i = 1, x:size(2), output_size do
  32. for j = 1, x:size(3), output_size do
  33. if i + block_size - 1 <= x:size(2) and j + block_size - 1 <= x:size(3) then
  34. local index = {{},
  35. {i, i + block_size - 1},
  36. {j, j + block_size - 1}}
  37. input:copy(x[index])
  38. local output = model:forward(input):float():view(3, output_size, output_size)
  39. local output_index = {{},
  40. {i + offset, offset + i + output_size - 1},
  41. {offset + j, offset + j + output_size - 1}}
  42. new_x[output_index]:copy(output)
  43. end
  44. end
  45. end
  46. return new_x
  47. end
  48. function model_is_rgb(model)
  49. if model:get(model:size() - 1).weight:size(1) == 3 then
  50. -- 3ch RGB
  51. return true
  52. else
  53. -- 1ch Y
  54. return false
  55. end
  56. end
  57. local reconstruct = {}
  58. function reconstruct.image_y(model, x, offset, block_size)
  59. block_size = block_size or 128
  60. local output_size = block_size - offset * 2
  61. local h_blocks = math.floor(x:size(2) / output_size) +
  62. ((x:size(2) % output_size == 0 and 0) or 1)
  63. local w_blocks = math.floor(x:size(3) / output_size) +
  64. ((x:size(3) % output_size == 0 and 0) or 1)
  65. local h = offset + h_blocks * output_size + offset
  66. local w = offset + w_blocks * output_size + offset
  67. local pad_h1 = offset
  68. local pad_w1 = offset
  69. local pad_h2 = (h - offset) - x:size(2)
  70. local pad_w2 = (w - offset) - x:size(3)
  71. local yuv = image.rgb2yuv(iproc.padding(x, pad_w1, pad_w2, pad_h1, pad_h2))
  72. local y = reconstruct_y(model, yuv[1], offset, block_size)
  73. y[torch.lt(y, 0)] = 0
  74. y[torch.gt(y, 1)] = 1
  75. yuv[1]:copy(y)
  76. local output = image.yuv2rgb(image.crop(yuv,
  77. pad_w1, pad_h1,
  78. yuv:size(3) - pad_w2, yuv:size(2) - pad_h2))
  79. output[torch.lt(output, 0)] = 0
  80. output[torch.gt(output, 1)] = 1
  81. collectgarbage()
  82. return output
  83. end
  84. function reconstruct.scale_y(model, scale, x, offset, block_size)
  85. block_size = block_size or 128
  86. local x_jinc = iproc.scale(x, x:size(3) * scale, x:size(2) * scale, "Jinc")
  87. x = iproc.scale(x, x:size(3) * scale, x:size(2) * scale, "Box")
  88. local output_size = block_size - offset * 2
  89. local h_blocks = math.floor(x:size(2) / output_size) +
  90. ((x:size(2) % output_size == 0 and 0) or 1)
  91. local w_blocks = math.floor(x:size(3) / output_size) +
  92. ((x:size(3) % output_size == 0 and 0) or 1)
  93. local h = offset + h_blocks * output_size + offset
  94. local w = offset + w_blocks * output_size + offset
  95. local pad_h1 = offset
  96. local pad_w1 = offset
  97. local pad_h2 = (h - offset) - x:size(2)
  98. local pad_w2 = (w - offset) - x:size(3)
  99. local yuv_nn = image.rgb2yuv(iproc.padding(x, pad_w1, pad_w2, pad_h1, pad_h2))
  100. local yuv_jinc = image.rgb2yuv(iproc.padding(x_jinc, pad_w1, pad_w2, pad_h1, pad_h2))
  101. local y = reconstruct_y(model, yuv_nn[1], offset, block_size)
  102. y[torch.lt(y, 0)] = 0
  103. y[torch.gt(y, 1)] = 1
  104. yuv_jinc[1]:copy(y)
  105. local output = image.yuv2rgb(image.crop(yuv_jinc,
  106. pad_w1, pad_h1,
  107. yuv_jinc:size(3) - pad_w2, yuv_jinc:size(2) - pad_h2))
  108. output[torch.lt(output, 0)] = 0
  109. output[torch.gt(output, 1)] = 1
  110. collectgarbage()
  111. return output
  112. end
  113. function reconstruct.image_rgb(model, x, offset, block_size)
  114. block_size = block_size or 128
  115. local output_size = block_size - offset * 2
  116. local h_blocks = math.floor(x:size(2) / output_size) +
  117. ((x:size(2) % output_size == 0 and 0) or 1)
  118. local w_blocks = math.floor(x:size(3) / output_size) +
  119. ((x:size(3) % output_size == 0 and 0) or 1)
  120. local h = offset + h_blocks * output_size + offset
  121. local w = offset + w_blocks * output_size + offset
  122. local pad_h1 = offset
  123. local pad_w1 = offset
  124. local pad_h2 = (h - offset) - x:size(2)
  125. local pad_w2 = (w - offset) - x:size(3)
  126. local input = iproc.padding(x, pad_w1, pad_w2, pad_h1, pad_h2)
  127. local y = reconstruct_rgb(model, input, offset, block_size)
  128. local output = image.crop(y,
  129. pad_w1, pad_h1,
  130. y:size(3) - pad_w2, y:size(2) - pad_h2)
  131. collectgarbage()
  132. output[torch.lt(output, 0)] = 0
  133. output[torch.gt(output, 1)] = 1
  134. return output
  135. end
  136. function reconstruct.scale_rgb(model, scale, x, offset, block_size)
  137. block_size = block_size or 128
  138. x = iproc.scale(x, x:size(3) * scale, x:size(2) * scale, "Box")
  139. local output_size = block_size - offset * 2
  140. local h_blocks = math.floor(x:size(2) / output_size) +
  141. ((x:size(2) % output_size == 0 and 0) or 1)
  142. local w_blocks = math.floor(x:size(3) / output_size) +
  143. ((x:size(3) % output_size == 0 and 0) or 1)
  144. local h = offset + h_blocks * output_size + offset
  145. local w = offset + w_blocks * output_size + offset
  146. local pad_h1 = offset
  147. local pad_w1 = offset
  148. local pad_h2 = (h - offset) - x:size(2)
  149. local pad_w2 = (w - offset) - x:size(3)
  150. local input = iproc.padding(x, pad_w1, pad_w2, pad_h1, pad_h2)
  151. local y = reconstruct_rgb(model, input, offset, block_size)
  152. local output = image.crop(y,
  153. pad_w1, pad_h1,
  154. y:size(3) - pad_w2, y:size(2) - pad_h2)
  155. output[torch.lt(output, 0)] = 0
  156. output[torch.gt(output, 1)] = 1
  157. collectgarbage()
  158. return output
  159. end
  160. function reconstruct.image(model, x, offset, block_size)
  161. if model_is_rgb(model) then
  162. return reconstruct.image_rgb(model, x, offset, block_size)
  163. else
  164. return reconstruct.image_y(model, x, offset, block_size)
  165. end
  166. end
  167. function reconstruct.scale(model, scale, x, offset, block_size)
  168. if model_is_rgb(model) then
  169. return reconstruct.scale_rgb(model, scale, x, offset, block_size)
  170. else
  171. return reconstruct.scale_y(model, scale, x, offset, block_size)
  172. end
  173. end
  174. return reconstruct