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  1. #------------------------------------------------------------------------------
  2. # JPEG images
  3. # SunOS 5.5.1 had
  4. #
  5. # 0 string \377\330\377\340 JPEG file
  6. # 0 string \377\330\377\356 JPG file
  7. #
  8. # both of which turn into "JPEG image data" here.
  9. #
  10. 0 beshort 0xffd8 JPEG image data
  11. !:mime image/jpeg
  12. !:apple 8BIMJPEG
  13. !:strength +1
  14. >6 string JFIF \b, JFIF standard
  15. # The following added by Erik Rossen <rossen@freesurf.ch> 1999-09-06
  16. # in a vain attempt to add image size reporting for JFIF. Note that these
  17. # tests are not fool-proof since some perfectly valid JPEGs are currently
  18. # impossible to specify in magic(4) format.
  19. # First, a little JFIF version info:
  20. >>11 byte x \b %d.
  21. >>12 byte x \b%02d
  22. # Next, the resolution or aspect ratio of the image:
  23. #>>13 byte 0 \b, aspect ratio
  24. #>>13 byte 1 \b, resolution (DPI)
  25. #>>13 byte 2 \b, resolution (DPCM)
  26. #>>4 beshort x \b, segment length %d
  27. # Next, show thumbnail info, if it exists:
  28. >>18 byte !0 \b, thumbnail %dx
  29. >>>19 byte x \b%d
  30. # EXIF moved down here to avoid reporting a bogus version number,
  31. # and EXIF version number printing added.
  32. # - Patrik R=E5dman <patrik+file-magic@iki.fi>
  33. >6 string Exif \b, EXIF standard
  34. # Look for EXIF IFD offset in IFD 0, and then look for EXIF version tag in EXIF IFD.
  35. # All possible combinations of entries have to be enumerated, since no looping
  36. # is possible. And both endians are possible...
  37. # The combinations included below are from real-world JPEGs.
  38. # Little-endian
  39. >>12 string II
  40. # IFD 0 Entry #5:
  41. >>>70 leshort 0x8769
  42. # EXIF IFD Entry #1:
  43. >>>>(78.l+14) leshort 0x9000
  44. >>>>>(78.l+23) byte x %c
  45. >>>>>(78.l+24) byte x \b.%c
  46. >>>>>(78.l+25) byte !0x30 \b%c
  47. # IFD 0 Entry #9:
  48. >>>118 leshort 0x8769
  49. # EXIF IFD Entry #3:
  50. >>>>(126.l+38) leshort 0x9000
  51. >>>>>(126.l+47) byte x %c
  52. >>>>>(126.l+48) byte x \b.%c
  53. >>>>>(126.l+49) byte !0x30 \b%c
  54. # IFD 0 Entry #10
  55. >>>130 leshort 0x8769
  56. # EXIF IFD Entry #3:
  57. >>>>(138.l+38) leshort 0x9000
  58. >>>>>(138.l+47) byte x %c
  59. >>>>>(138.l+48) byte x \b.%c
  60. >>>>>(138.l+49) byte !0x30 \b%c
  61. # EXIF IFD Entry #4:
  62. >>>>(138.l+50) leshort 0x9000
  63. >>>>>(138.l+59) byte x %c
  64. >>>>>(138.l+60) byte x \b.%c
  65. >>>>>(138.l+61) byte !0x30 \b%c
  66. # EXIF IFD Entry #5:
  67. >>>>(138.l+62) leshort 0x9000
  68. >>>>>(138.l+71) byte x %c
  69. >>>>>(138.l+72) byte x \b.%c
  70. >>>>>(138.l+73) byte !0x30 \b%c
  71. # IFD 0 Entry #11
  72. >>>142 leshort 0x8769
  73. # EXIF IFD Entry #3:
  74. >>>>(150.l+38) leshort 0x9000
  75. >>>>>(150.l+47) byte x %c
  76. >>>>>(150.l+48) byte x \b.%c
  77. >>>>>(150.l+49) byte !0x30 \b%c
  78. # EXIF IFD Entry #4:
  79. >>>>(150.l+50) leshort 0x9000
  80. >>>>>(150.l+59) byte x %c
  81. >>>>>(150.l+60) byte x \b.%c
  82. >>>>>(150.l+61) byte !0x30 \b%c
  83. # EXIF IFD Entry #5:
  84. >>>>(150.l+62) leshort 0x9000
  85. >>>>>(150.l+71) byte x %c
  86. >>>>>(150.l+72) byte x \b.%c
  87. >>>>>(150.l+73) byte !0x30 \b%c
  88. # Big-endian
  89. >>12 string MM
  90. # IFD 0 Entry #9:
  91. >>>118 beshort 0x8769
  92. # EXIF IFD Entry #1:
  93. >>>>(126.L+14) beshort 0x9000
  94. >>>>>(126.L+23) byte x %c
  95. >>>>>(126.L+24) byte x \b.%c
  96. >>>>>(126.L+25) byte !0x30 \b%c
  97. # EXIF IFD Entry #3:
  98. >>>>(126.L+38) beshort 0x9000
  99. >>>>>(126.L+47) byte x %c
  100. >>>>>(126.L+48) byte x \b.%c
  101. >>>>>(126.L+49) byte !0x30 \b%c
  102. # IFD 0 Entry #10
  103. >>>130 beshort 0x8769
  104. # EXIF IFD Entry #3:
  105. >>>>(138.L+38) beshort 0x9000
  106. >>>>>(138.L+47) byte x %c
  107. >>>>>(138.L+48) byte x \b.%c
  108. >>>>>(138.L+49) byte !0x30 \b%c
  109. # EXIF IFD Entry #5:
  110. >>>>(138.L+62) beshort 0x9000
  111. >>>>>(138.L+71) byte x %c
  112. >>>>>(138.L+72) byte x \b.%c
  113. >>>>>(138.L+73) byte !0x30 \b%c
  114. # IFD 0 Entry #11
  115. >>>142 beshort 0x8769
  116. # EXIF IFD Entry #4:
  117. >>>>(150.L+50) beshort 0x9000
  118. >>>>>(150.L+59) byte x %c
  119. >>>>>(150.L+60) byte x \b.%c
  120. >>>>>(150.L+61) byte !0x30 \b%c
  121. # Here things get sticky. We can do ONE MORE marker segment with
  122. # indirect addressing, and that's all. It would be great if we could
  123. # do pointer arithemetic like in an assembler language. Christos?
  124. # And if there was some sort of looping construct to do searches, plus a few
  125. # named accumulators, it would be even more effective...
  126. # At least we can show a comment if no other segments got inserted before:
  127. >(4.S+5) byte 0xFE
  128. >>(4.S+8) string >\0 \b, comment: "%s"
  129. # FIXME: When we can do non-byte counted strings, we can use that to get
  130. # the string's count, and fix Debian bug #283760
  131. #>(4.S+5) byte 0xFE \b, comment
  132. #>>(4.S+6) beshort x \b length=%d
  133. #>>(4.S+8) string >\0 \b, "%s"
  134. # Or, we can show the encoding type (I've included only the three most common)
  135. # and image dimensions if we are lucky and the SOFn (image segment) is here:
  136. >(4.S+5) byte 0xC0 \b, baseline
  137. >>(4.S+6) byte x \b, precision %d
  138. >>(4.S+7) beshort x \b, %dx
  139. >>(4.S+9) beshort x \b%d
  140. >(4.S+5) byte 0xC1 \b, extended sequential
  141. >>(4.S+6) byte x \b, precision %d
  142. >>(4.S+7) beshort x \b, %dx
  143. >>(4.S+9) beshort x \b%d
  144. >(4.S+5) byte 0xC2 \b, progressive
  145. >>(4.S+6) byte x \b, precision %d
  146. >>(4.S+7) beshort x \b, %dx
  147. >>(4.S+9) beshort x \b%d
  148. # I've commented-out quantisation table reporting. I doubt anyone cares yet.
  149. #>(4.S+5) byte 0xDB \b, quantisation table
  150. #>>(4.S+6) beshort x \b length=%d
  151. #>14 beshort x \b, %d x
  152. #>16 beshort x \b %d
  153. # HSI is Handmade Software's proprietary JPEG encoding scheme
  154. 0 string hsi1 JPEG image data, HSI proprietary
  155. # From: David Santinoli <david@santinoli.com>
  156. 0 string \x00\x00\x00\x0C\x6A\x50\x20\x20\x0D\x0A\x87\x0A JPEG 2000 image data
  157. # Type: JPEG 2000 codesream
  158. # From: Mathieu Malaterre <mathieu.malaterre@gmail.com>
  159. 0 belong 0xff4fff51 JPEG 2000 codestream
  160. 45 beshort 0xff52