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I need to fit a certain amount of block shapes with varying dimensions in a collection of available boxes as efficiently(least used boxes and wasted space) as possible. The shapes and boxes don't really align to any grid but if a grid helps, I would sacrifice some accuracy for better performance or simpler code.

This is for a product order system that should fit the ordered products in boxes in the most cost-effective way for shipping.

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could you enlighten us what's the exact metric? "least used boxes and wasted space" is a bit vague. –  Karoly Horvath Jul 15 '11 at 12:10
    
First priority is reducing the number of boxes, since each box adds a fee to the shipment. Second priority is choosing as small boxes as possible without adding to the box count. –  Pichan Jul 15 '11 at 23:50
    
Then I will pick the biggest boxes :) Try to come up with a good metric, then you can start optimizing. –  Karoly Horvath Jul 15 '11 at 23:54
    
I accidentally hit enter and posted an incomplete comment before. The previous comment is now completely rewritten. –  Pichan Jul 15 '11 at 23:57
    
I came up with a less accurate system that seems to work for now. It's still in developement, so I can't really post working code or verfied methods yet. I'm still very interested in seeing different approaches to solving the bin packing problem, so I guess I'll leave this open and see what other people suggest :) –  Pichan Jul 16 '11 at 0:01

1 Answer 1

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This is a 2D bin packing problem. Depending on the size of The problem, optimal solution is probably not feasible.

http://en.wikipedia.org/wiki/Bin_packing_problem

There are a few different strategies to solve this suboptimally, see links from wiki article.

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this is product shipping, so probably 3d packing ;) –  Karoly Horvath Jul 15 '11 at 13:15
    
I finally remembered to accept this answer. Sorry for the delay. –  Pichan Feb 20 '12 at 23:49

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