72 lines
1.8 KiB
Markdown
72 lines
1.8 KiB
Markdown
MC1322x
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=======
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libmc1322x is a library, build system, test code, and utilities for using the
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mc13224v from Freescale.
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Getting Started
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---------------
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cd tests
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make
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this will build all the test files in libmc1322x/tests for each board
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defined in libmc1322x/board. You will have programs like:
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rftest-tx_redbee-dev.bin
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rftest-tx_redbee-r1.bin
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rftest-rx_redbee-dev.bin
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rftest-rx_redbee-r1.bin
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if you only wanted to build binaries for one board you can do:
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make BOARD=redbee-dev
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You can use mc1322x-load.pl in libmc1322x/tools to run your code:
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../tools/mc1322x-load.pl -f rftest-tx_redbee-dev.bin
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Incorporating libmc1322x into your own code
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-------------------------------------------
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The best way to incorporate libmc1322x into your code is as a git submodule:
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mkdir newproject
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cd newproject
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git init
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Initialized empty Git repository in /home/malvira/newproject/.git/
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git submodule add git://git.devl.org/git/malvira/libmc1322x.git
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This will add libmc1322x to your repository. Now to setup the Makefile:
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cp libmc1322x/tests/Makefile .
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You need to edit the Makefile to point MC1322X to your libmc1322x submodule:
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Change line 1
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MC1322X := ..
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to
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MC1322X := libmc1322x
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and edit COBJS and TARGETS accordings. COBJS are all of your common code for
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any of your programs. TARGETS are the names of your programs.
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For instance, you can have a common routine that prints a welcome message that
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is used by two programs a and b. You would add common.o to COBJS:
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COBJS:= common.o
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and your target line would read:
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TARGETS := a b
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COBJS are made for each board so it is ok to have board specific code in there.
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As an example, tests uses this in tests.c to print the name of the board in the
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welcome message. You could also use this to change your GPIO mappings between
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boards.
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