DdsImagePlugin.py 7.9 KB

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  1. """
  2. A Pillow loader for .dds files (S3TC-compressed aka DXTC)
  3. Jerome Leclanche <jerome@leclan.ch>
  4. Documentation:
  5. https://web.archive.org/web/20170802060935/http://oss.sgi.com/projects/ogl-sample/registry/EXT/texture_compression_s3tc.txt
  6. The contents of this file are hereby released in the public domain (CC0)
  7. Full text of the CC0 license:
  8. https://creativecommons.org/publicdomain/zero/1.0/
  9. """
  10. import struct
  11. from io import BytesIO
  12. from . import Image, ImageFile
  13. from ._binary import o32le as o32
  14. # Magic ("DDS ")
  15. DDS_MAGIC = 0x20534444
  16. # DDS flags
  17. DDSD_CAPS = 0x1
  18. DDSD_HEIGHT = 0x2
  19. DDSD_WIDTH = 0x4
  20. DDSD_PITCH = 0x8
  21. DDSD_PIXELFORMAT = 0x1000
  22. DDSD_MIPMAPCOUNT = 0x20000
  23. DDSD_LINEARSIZE = 0x80000
  24. DDSD_DEPTH = 0x800000
  25. # DDS caps
  26. DDSCAPS_COMPLEX = 0x8
  27. DDSCAPS_TEXTURE = 0x1000
  28. DDSCAPS_MIPMAP = 0x400000
  29. DDSCAPS2_CUBEMAP = 0x200
  30. DDSCAPS2_CUBEMAP_POSITIVEX = 0x400
  31. DDSCAPS2_CUBEMAP_NEGATIVEX = 0x800
  32. DDSCAPS2_CUBEMAP_POSITIVEY = 0x1000
  33. DDSCAPS2_CUBEMAP_NEGATIVEY = 0x2000
  34. DDSCAPS2_CUBEMAP_POSITIVEZ = 0x4000
  35. DDSCAPS2_CUBEMAP_NEGATIVEZ = 0x8000
  36. DDSCAPS2_VOLUME = 0x200000
  37. # Pixel Format
  38. DDPF_ALPHAPIXELS = 0x1
  39. DDPF_ALPHA = 0x2
  40. DDPF_FOURCC = 0x4
  41. DDPF_PALETTEINDEXED8 = 0x20
  42. DDPF_RGB = 0x40
  43. DDPF_LUMINANCE = 0x20000
  44. # dds.h
  45. DDS_FOURCC = DDPF_FOURCC
  46. DDS_RGB = DDPF_RGB
  47. DDS_RGBA = DDPF_RGB | DDPF_ALPHAPIXELS
  48. DDS_LUMINANCE = DDPF_LUMINANCE
  49. DDS_LUMINANCEA = DDPF_LUMINANCE | DDPF_ALPHAPIXELS
  50. DDS_ALPHA = DDPF_ALPHA
  51. DDS_PAL8 = DDPF_PALETTEINDEXED8
  52. DDS_HEADER_FLAGS_TEXTURE = DDSD_CAPS | DDSD_HEIGHT | DDSD_WIDTH | DDSD_PIXELFORMAT
  53. DDS_HEADER_FLAGS_MIPMAP = DDSD_MIPMAPCOUNT
  54. DDS_HEADER_FLAGS_VOLUME = DDSD_DEPTH
  55. DDS_HEADER_FLAGS_PITCH = DDSD_PITCH
  56. DDS_HEADER_FLAGS_LINEARSIZE = DDSD_LINEARSIZE
  57. DDS_HEIGHT = DDSD_HEIGHT
  58. DDS_WIDTH = DDSD_WIDTH
  59. DDS_SURFACE_FLAGS_TEXTURE = DDSCAPS_TEXTURE
  60. DDS_SURFACE_FLAGS_MIPMAP = DDSCAPS_COMPLEX | DDSCAPS_MIPMAP
  61. DDS_SURFACE_FLAGS_CUBEMAP = DDSCAPS_COMPLEX
  62. DDS_CUBEMAP_POSITIVEX = DDSCAPS2_CUBEMAP | DDSCAPS2_CUBEMAP_POSITIVEX
  63. DDS_CUBEMAP_NEGATIVEX = DDSCAPS2_CUBEMAP | DDSCAPS2_CUBEMAP_NEGATIVEX
  64. DDS_CUBEMAP_POSITIVEY = DDSCAPS2_CUBEMAP | DDSCAPS2_CUBEMAP_POSITIVEY
  65. DDS_CUBEMAP_NEGATIVEY = DDSCAPS2_CUBEMAP | DDSCAPS2_CUBEMAP_NEGATIVEY
  66. DDS_CUBEMAP_POSITIVEZ = DDSCAPS2_CUBEMAP | DDSCAPS2_CUBEMAP_POSITIVEZ
  67. DDS_CUBEMAP_NEGATIVEZ = DDSCAPS2_CUBEMAP | DDSCAPS2_CUBEMAP_NEGATIVEZ
  68. # DXT1
  69. DXT1_FOURCC = 0x31545844
  70. # DXT3
  71. DXT3_FOURCC = 0x33545844
  72. # DXT5
  73. DXT5_FOURCC = 0x35545844
  74. # dxgiformat.h
  75. DXGI_FORMAT_R8G8B8A8_TYPELESS = 27
  76. DXGI_FORMAT_R8G8B8A8_UNORM = 28
  77. DXGI_FORMAT_R8G8B8A8_UNORM_SRGB = 29
  78. DXGI_FORMAT_BC5_TYPELESS = 82
  79. DXGI_FORMAT_BC5_UNORM = 83
  80. DXGI_FORMAT_BC5_SNORM = 84
  81. DXGI_FORMAT_BC7_TYPELESS = 97
  82. DXGI_FORMAT_BC7_UNORM = 98
  83. DXGI_FORMAT_BC7_UNORM_SRGB = 99
  84. class DdsImageFile(ImageFile.ImageFile):
  85. format = "DDS"
  86. format_description = "DirectDraw Surface"
  87. def _open(self):
  88. if not _accept(self.fp.read(4)):
  89. raise SyntaxError("not a DDS file")
  90. (header_size,) = struct.unpack("<I", self.fp.read(4))
  91. if header_size != 124:
  92. raise OSError(f"Unsupported header size {repr(header_size)}")
  93. header_bytes = self.fp.read(header_size - 4)
  94. if len(header_bytes) != 120:
  95. raise OSError(f"Incomplete header: {len(header_bytes)} bytes")
  96. header = BytesIO(header_bytes)
  97. flags, height, width = struct.unpack("<3I", header.read(12))
  98. self._size = (width, height)
  99. self.mode = "RGBA"
  100. pitch, depth, mipmaps = struct.unpack("<3I", header.read(12))
  101. struct.unpack("<11I", header.read(44)) # reserved
  102. # pixel format
  103. pfsize, pfflags = struct.unpack("<2I", header.read(8))
  104. fourcc = header.read(4)
  105. (bitcount,) = struct.unpack("<I", header.read(4))
  106. masks = struct.unpack("<4I", header.read(16))
  107. if pfflags & DDPF_RGB:
  108. # Texture contains uncompressed RGB data
  109. masks = {mask: ["R", "G", "B", "A"][i] for i, mask in enumerate(masks)}
  110. rawmode = ""
  111. if bitcount == 32:
  112. rawmode += masks[0xFF000000]
  113. else:
  114. self.mode = "RGB"
  115. rawmode += masks[0xFF0000] + masks[0xFF00] + masks[0xFF]
  116. self.tile = [("raw", (0, 0) + self.size, 0, (rawmode[::-1], 0, 1))]
  117. else:
  118. data_start = header_size + 4
  119. n = 0
  120. if fourcc == b"DXT1":
  121. self.pixel_format = "DXT1"
  122. n = 1
  123. elif fourcc == b"DXT3":
  124. self.pixel_format = "DXT3"
  125. n = 2
  126. elif fourcc == b"DXT5":
  127. self.pixel_format = "DXT5"
  128. n = 3
  129. elif fourcc == b"BC5S":
  130. self.pixel_format = "BC5S"
  131. n = 5
  132. self.mode = "RGB"
  133. elif fourcc == b"DX10":
  134. data_start += 20
  135. # ignoring flags which pertain to volume textures and cubemaps
  136. (dxgi_format,) = struct.unpack("<I", self.fp.read(4))
  137. self.fp.read(16)
  138. if dxgi_format in (DXGI_FORMAT_BC5_TYPELESS, DXGI_FORMAT_BC5_UNORM):
  139. self.pixel_format = "BC5"
  140. n = 5
  141. self.mode = "RGB"
  142. elif dxgi_format == DXGI_FORMAT_BC5_SNORM:
  143. self.pixel_format = "BC5S"
  144. n = 5
  145. self.mode = "RGB"
  146. elif dxgi_format in (DXGI_FORMAT_BC7_TYPELESS, DXGI_FORMAT_BC7_UNORM):
  147. self.pixel_format = "BC7"
  148. n = 7
  149. elif dxgi_format == DXGI_FORMAT_BC7_UNORM_SRGB:
  150. self.pixel_format = "BC7"
  151. self.info["gamma"] = 1 / 2.2
  152. n = 7
  153. elif dxgi_format in (
  154. DXGI_FORMAT_R8G8B8A8_TYPELESS,
  155. DXGI_FORMAT_R8G8B8A8_UNORM,
  156. DXGI_FORMAT_R8G8B8A8_UNORM_SRGB,
  157. ):
  158. self.tile = [("raw", (0, 0) + self.size, 0, ("RGBA", 0, 1))]
  159. if dxgi_format == DXGI_FORMAT_R8G8B8A8_UNORM_SRGB:
  160. self.info["gamma"] = 1 / 2.2
  161. return
  162. else:
  163. raise NotImplementedError(
  164. f"Unimplemented DXGI format {dxgi_format}"
  165. )
  166. else:
  167. raise NotImplementedError(f"Unimplemented pixel format {repr(fourcc)}")
  168. self.tile = [
  169. ("bcn", (0, 0) + self.size, data_start, (n, self.pixel_format))
  170. ]
  171. def load_seek(self, pos):
  172. pass
  173. def _save(im, fp, filename):
  174. if im.mode not in ("RGB", "RGBA"):
  175. raise OSError(f"cannot write mode {im.mode} as DDS")
  176. fp.write(
  177. o32(DDS_MAGIC)
  178. + o32(124) # header size
  179. + o32(
  180. DDSD_CAPS | DDSD_HEIGHT | DDSD_WIDTH | DDSD_PITCH | DDSD_PIXELFORMAT
  181. ) # flags
  182. + o32(im.height)
  183. + o32(im.width)
  184. + o32((im.width * (32 if im.mode == "RGBA" else 24) + 7) // 8) # pitch
  185. + o32(0) # depth
  186. + o32(0) # mipmaps
  187. + o32(0) * 11 # reserved
  188. + o32(32) # pfsize
  189. + o32(DDS_RGBA if im.mode == "RGBA" else DDPF_RGB) # pfflags
  190. + o32(0) # fourcc
  191. + o32(32 if im.mode == "RGBA" else 24) # bitcount
  192. + o32(0xFF0000) # rbitmask
  193. + o32(0xFF00) # gbitmask
  194. + o32(0xFF) # bbitmask
  195. + o32(0xFF000000 if im.mode == "RGBA" else 0) # abitmask
  196. + o32(DDSCAPS_TEXTURE) # dwCaps
  197. + o32(0) # dwCaps2
  198. + o32(0) # dwCaps3
  199. + o32(0) # dwCaps4
  200. + o32(0) # dwReserved2
  201. )
  202. if im.mode == "RGBA":
  203. r, g, b, a = im.split()
  204. im = Image.merge("RGBA", (a, r, g, b))
  205. ImageFile._save(im, fp, [("raw", (0, 0) + im.size, 0, (im.mode[::-1], 0, 1))])
  206. def _accept(prefix):
  207. return prefix[:4] == b"DDS "
  208. Image.register_open(DdsImageFile.format, DdsImageFile, _accept)
  209. Image.register_save(DdsImageFile.format, _save)
  210. Image.register_extension(DdsImageFile.format, ".dds")