With all due respect to beelsr, I have to take exception to his statement:
"You will also see ther is no vapor barrier in the celing. You want the moisture to go into the attic."
While contractors frequently will omit a vapor barrier in ceilings, this is certainly not the ideal approach. Just as in walls, a vapor retarder is needed in ceilings exposed to outdoor temperatures. The greater the difference between indoor and outdoor conditions, the more important the vapor retarder becomes.
For any insulating system, at some point in the depth of the insulation you will reach the dew point temperature. For an (over simplified) example, let's assume 70 degrees in your garage and 30 degrees outside. At the mid point of the insulation it's roughly 50 degrees. As you move closer to the outside, the temperature drops further. Once you reach about 48 degrees you have hit the dew point and moisture from inside the garage will condense in the insulation. The more interior moisture entering the wall or ceiling, the more that moisture will condense on the insulation. Wet insulation does not insulate well and typically leads to other long term problems - mold, mildew, rot, fungus, etc..
it is quite easy to calculate the precise point of condensation for any indoor/outdoor conditions as well as any wall or ceiling construction. Indoor swimming pools, for example, are a real challenge in northern areas. I would always recommend a carefully installed vapor barrier/retarder for any surfaces
exposed to outdoor conditions.
Here is linky for a typical garage ceiling insulation:
http://www.hammerzone.com/archives/energy/insulation/ceiling_1/garage_r11.htm