)]}'
{
  "commit": "505c7de51fe5ebb81fac096cb8cebd7cb45b7955",
  "tree": "ff406ac0b768aaa16227cc5eeadc99d81d61d276",
  "parents": [
    "dc48665fae5aa360e80dfdb2d6cab4fa58b27ee4"
  ],
  "author": {
    "name": "Laurent Pinchart",
    "email": "laurent.pinchart@ideasonboard.com",
    "time": "Wed Jul 13 12:13:47 2011 +0200"
  },
  "committer": {
    "name": "Laurent Pinchart",
    "email": "laurent.pinchart@ideasonboard.com",
    "time": "Fri Aug 19 08:22:39 2011 +0200"
  },
  "message": "fbdev: sh_mobile_lcdc: Compute clock pattern using divider denominator\n\nThe clock divider pattern is computed based on the dot clock register\nvalue which stores the divider denumerator. However, when using a 1:1\ndivider ratio, the register is programmed with a value that must not be\ninterpreted as a denominator. This results in a shift left operation\nwith a value of 32, which produces undefined behaviour.\n\nCompute the clock pattern using the divider denominator, not the dot\nclock register value.\n\nSigned-off-by: Laurent Pinchart \u003claurent.pinchart@ideasonboard.com\u003e\n",
  "tree_diff": [
    {
      "type": "modify",
      "old_id": "99656f593de480140c27ca3ac01a45210dc8b9f5",
      "old_mode": 33188,
      "old_path": "drivers/video/sh_mobile_lcdcfb.c",
      "new_id": "2d935db57eac886492b8622c463fd724b746d2e0",
      "new_mode": 33188,
      "new_path": "drivers/video/sh_mobile_lcdcfb.c"
    }
  ]
}
