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(require both main diagonals to have one of every digit in addition to all the usual constraints) and Jigsaw Sudoku (replace the array of rectangular sub-blocks with the sub-blocks being random polyominoes). To implement the latter, I've moved my `divvy.c' library routine out of the `unfinished' subdirectory. Jigsaw mode is currently an undocumented feature: you enable it by setting the rows parameter to 1 (and the columns parameter to your desired grid size, which unlike normal Sudoku can be anything you like including a prime number). The reason it's undocumented is because generation times are not yet reliably short: sometimes generating a jigsaw-type puzzle can hang for hours and still get nowhere. (The algorithm should terminate in principle, but not in any time you're prepared to wait.) I _think_ I know how to solve this, but have yet to try it. Until then, jigsaw mode will remain a hidden feature. Printing of X-type puzzles is also substandard at present, because the current print-colour API replaces the desired light shading of the X-cells with heavy diagonal hatching. I plan to adjust the API imminently to address this. [originally from svn r7974]
This is the README accompanying the source code to Simon Tatham's puzzle collection. The collection's web site is at <http://www.chiark.greenend.org.uk/~sgtatham/puzzles/>. If you've obtained the source code by downloading a .tar.gz archive from the Puzzles web site, you should find several Makefiles in the source code. However, if you've checked the source code out from the Puzzles Subversion repository, you won't find the Makefiles: they're automatically generated by `mkfiles.pl', so run that to create them. The Makefiles include: - `Makefile' should work under GNU make on Linux, provided you have GTK installed to compile and link against. It builds GTK binaries of the puzzle games. - `Makefile.vc' should work under MS Visual C++ on Windows. - `Makefile.cyg' should work under Cygwin / MinGW. With appropriate tweaks and setting of TOOLPATH, it should work for both compiling on Windows and cross-compiling on Unix. - `Makefile.osx' should work under Mac OS X, provided the Xcode tools are installed. It builds a single monolithic OS X application capable of running any of the puzzles, or even more than one of them at a time. - `Makefile.wce' should work under MS eMbedded Visual C++ on Windows and the Pocket PC SDK; it builds Pocket PC binaries. Many of these Makefiles build a program called `nullgame' in addition to the actual game binaries. This program doesn't do anything; it's just a template for people to start from when adding a new game to the collection, and it's compiled every time to ensure that it _does_ compile and link successfully (because otherwise it wouldn't be much use as a template). Once it's built, you can run it if you really want to (but it's very boring), and then you should ignore it. DO NOT EDIT THE MAKEFILES DIRECTLY, if you plan to send any changes back to the maintainer. The makefiles are generated automatically by the Perl script `mkfiles.pl' from the file `Recipe' and the various .R files. If you need to change the makefiles as part of a patch, you should change Recipe, *.R, and/or mkfiles.pl. The manual is provided in Windows Help format for the Windows build; in text format for anyone who needs it; and in HTML for the Mac OS X application and for the web site. It is generated from a Halibut source file (puzzles.but), which is the preferred form for modification. To generate the manual in other formats, rebuild it, or learn about Halibut, visit the Halibut website at <http://www.chiark.greenend.org.uk/~sgtatham/halibut/>.
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