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Some engineers got tired of dealing with all the different ways of encoding |
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status messages, so they decided to invent their own. In their new scheme, an |
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encoded status message consists of a sequence of integers representing the |
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characters in the message, separated by spaces. Each integer is between 1 and |
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**M**, inclusive. The integers do not have leading zeroes. Unfortunately they |
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decided to compress the encoded status messages by removing all the spaces! |
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Your task is to figure out how many different encoded status messages a given |
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compressed status message could have originally been. Because this number can |
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be very large, you should return the answer modulo 4207849484 (0xfaceb00c in |
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hex). |
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For example, if the compressed status message is "12" it might have originally |
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been "1 2", or it might have originally been "12". The compressed status |
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messages are between 1 and 1000 characters long, inclusive. Due to database |
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corruption, a compressed status may contain sequences of digits that could not |
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result from removing the spaces in an encoded status message. |
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### Input |
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The input begins with a single integer, **N**, the number of compressed status |
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messages you must analyze. This will be followed by **N** compressed status |
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messages, each consisting of an integer **M**, the highest character code for |
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that database, then the compressed status message, which will be a string of |
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digits each in the range '0' to '9', inclusive. All tokens in the input will |
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be separated by some whitespace. |
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### Output |
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For each of the test cases numbered in order from 1 to **N**, output "Case |
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#**i**: " followed by a single integer containing the number of different |
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encoded status messages that could be represented by the corresponding |
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compressed sequence modulo 4207849484. If none are possible, output a 0. |
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### Constraints |
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5 ≤ **N** ≤ 25 |
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2 ≤ **M** ≤ 255 |
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1 ≤ length of encoded status ≤ 1000 |
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