fef4ba3fcd
git-svn-id: svn://svn.code.sf.net/p/nuttx/code/trunk@3680 42af7a65-404d-4744-a932-0658087f49c3
362 lines
12 KiB
Plaintext
362 lines
12 KiB
Plaintext
README
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^^^^^
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This is the README file for the port of NuttX to the Micropendous 3 board.
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This board is develepmend by http://code.google.com/p/opendous/. The
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Micropendous 3 is based on an Atmel AT90USB646, 647, 1286 or 1287 MCU.
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NuttX was ported using the AT90USB647 version. As of this writing,
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documentation for the Micropendous board is available here:
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http://code.google.com/p/micropendous/wiki/Micropendous3
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Contents
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^^^^^^^^
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o Micropendous3 Features
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o Toolchains
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o Windows Native Toolchains
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o NuttX buildroot Toolchain
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o avr-libc
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o Micropendous3 Configuration Options
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o Configurations
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Micropendous3 Features
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^^^^^^^^^^^^^^^^^^^^^^
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o Based on the 64-pin USB AVR Microcontrollers: AT90USB646, AT90USB647,
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AT90USB1286, or AT90USB1287.
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o USB Full Speed (12Mbit/s)
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o USB Device Mode (Host mode supported with AT90USBxx7 devices)
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o 60kb (AT90USB64) or 120kb (AT90USB128) of available FLASH memory for
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your programs (4kb(AT90USB64)/8kb(AT90USB128) used by USB bootloader -
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stock Atmel or LUFA)
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o 4 kbytes SRAM and 2 kbytes of EEPROM (AT90USB64) or 8 kbytes SRAM and 4
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kbytes of EEPROM (AT90USB128)
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o external SRAM is possible
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o USB powered
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o 16MHz crystal
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o 48 General Purpose IO Pins (47 with external SRAM)
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o Vcc=VBUS jumper selects whether USB VBUS or an external supply is used
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to power the board
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o RESET and HWB buttons to enable firmware loading over USB (no external
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programmer required)
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o HWB can be used as a user button
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o USB-A Plug
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o JTAG header
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o Size LxWxH (including headers): 3.15" x 0.8" x 0.6" =~ 8cm x 2cm x 1.5cm
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o Completely OpenHardware Design
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Toolchains
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^^^^^^^^^^
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Buildroot:
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There is a DIY buildroot version for the AVR boards here:
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http://sourceforge.net/projects/nuttx/files/buildroot/. See the
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following section for details on building this toolchain.
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It is assumed in some places that buildroot toolchain is available
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at ../misc/buildroot/build_avr. Edit the setenv.sh file if
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this is not the case.
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After configuring NuttX, make sure that CONFIG_AVR_BUILDROOT=y is set in your
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.config file.
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WinAVR:
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For Cygwin development environment on Windows machines, you can use
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WinAVR: http://sourceforge.net/projects/winavr/files/
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It is assumed in some places that WinAVR is installed at C:/WinAVR. Edit the
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setenv.sh file if this is not the case.
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After configuring NuttX, make sure that CONFIG_AVR_WINAVR=y is set in your
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.config file.
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WARNING: There is an incompatible version of cygwin.dll in the WinAVR/bin
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directory! Make sure that the path to the correct cygwin.dll file precedes
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the path to the WinAVR binaries!
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Linux:
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For Linux, there are widely available avr-gcc packages. On Ubuntu, use:
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sudo apt-get install gcc-avr gdb-avr avr-libc
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After configuring NuttX, make sure that CONFIG_AVR_LINUXGCC=y is set in your
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.config file.
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Windows Native Toolchains
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^^^^^^^^^^^^^^^^^^^^^^^^^
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The WinAVR toolchain is a Windows native toolchain. There are several
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limitations to using a Windows native toolchain in a Cygwin environment.
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The three biggest are:
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1. The Windows toolchain cannot follow Cygwin paths. Path conversions are
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performed automatically in the Cygwin makefiles using the 'cygpath'
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utility but you might easily find some new path problems. If so, check
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out 'cygpath -w'
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2. Windows toolchains cannot follow Cygwin symbolic links. Many symbolic
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links are used in Nuttx (e.g., include/arch). The make system works
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around these problems for the Windows tools by copying directories
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instead of linking them. But this can also cause some confusion for
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you: For example, you may edit a file in a "linked" directory and find
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that your changes had not effect. That is because you are building the
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copy of the file in the "fake" symbolic directory. If you use a
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Windows toolchain, you should get in the habit of making like this:
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make clean_context all
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An alias in your .bashrc file might make that less painful.
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3. Dependencies are not made when using Windows versions of the GCC. This
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is because the dependencies are generated using Windows pathes which do
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not work with the Cygwin make.
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Support has been added for making dependencies with the windows-native
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toolchains. That support can be enabled by modifying your Make.defs
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file as follows:
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- MKDEP = $(TOPDIR)/tools/mknulldeps.sh
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+ MKDEP = $(TOPDIR)/tools/mkdeps.sh --winpaths "$(TOPDIR)"
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If you have problems with the dependency build (for example, if you are
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not building on C:), then you may need to modify tools/mkdeps.sh
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An additional issue with the WinAVR toolchain, in particular, is that it
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contains an incompatible version of the Cygwin DLL in its bin/ directory.
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You must take care that the correct Cygwin DLL is used.
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NuttX buildroot Toolchain
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^^^^^^^^^^^^^^^^^^^^^^^^^
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If NuttX buildroot toolchain source tarball cne can be downloaded from the
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NuttX SourceForge download site (https://sourceforge.net/projects/nuttx/files/).
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This GNU toolchain builds and executes in the Linux or Cygwin environment.
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1. You must have already configured Nuttx in <some-dir>/nuttx.
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cd tools
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./configure.sh micropendous3/<sub-dir>
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NOTE: you also must copy avr-libc header files into the NuttX include
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directory with command perhaps like:
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cp -a /cygdrive/c/WinAVR/include/avr include/.
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2. Download the latest buildroot package into <some-dir>
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3. unpack the buildroot tarball. The resulting directory may
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have versioning information on it like buildroot-x.y.z. If so,
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rename <some-dir>/buildroot-x.y.z to <some-dir>/buildroot.
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4. cd <some-dir>/buildroot
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5. cp configs/avr-defconfig-4.5.2 .config
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6. make oldconfig
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7. make
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8. Edit setenv.h, if necessary, so that the PATH variable includes
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the path to the newly built binaries.
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See the file configs/README.txt in the buildroot source tree. That has more
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detailed PLUS some special instructions that you will need to follow if you
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are building a toolchain for Cygwin under Windows.
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avr-libc
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^^^^^^^^
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Header Files
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In any case, header files from avr-libc are required: http://www.nongnu.org/avr-libc/.
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A snapshot of avr-lib is included in the WinAVR installation. For Linux
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development platforms, avr-libc package is readily available (and would
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be installed in the apt-get command shown above). But if you are using
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the NuttX buildroot configuration on Cygwin, then you will have to build
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get avr-libc from binaries.
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Header File Installation
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The NuttX build will required that the AVR header files be available via
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the NuttX include directory. This can be accomplished by either copying
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the avr-libc header files into the NuttX include directory:
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cp -a <avr-libc-path>/include/avr <nuttx-path>/include/.
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Or simply using a symbolic link:
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ln -s <avr-libc-path>/include/avr <nuttx-path>/include/.
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Build Notes:
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It may not necessary to have a built version of avr-lib; only header files
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are required. Bu if you choose to use the optimized libraru functions of
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the flowing point library, then you may have to build avr-lib from sources.
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Below are instructions for building avr-lib from fresh sources:
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1. Download the avr-libc package from:
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http://savannah.nongnu.org/projects/avr-libc/
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I am using avr-lib-1.7.1.tar.bz2
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2. Upack the tarball and cd into the
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tar jxf avr-lib-1.7.1.tar.bz2
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cd avr-lib-1.7.1
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3. Configure avr-lib. Assuming that WinAVR is installed at the following
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location:
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export PATH=/cygdrive/c/WinAVR/bin:$PATH
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./configure --build=`./config.guess` --host=avr
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This takes a *long* time.
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4. Make avr-lib.
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make
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This also takes a long time because it generates variants for nearly
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all AVR chips.
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5. Install avr-lib.
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make install
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Micropendous3 Configuration Options
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^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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CONFIG_ARCH - Identifies the arch/ subdirectory. This should
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be set to:
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CONFIG_ARCH=avr
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CONFIG_ARCH_family - For use in C code:
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CONFIG_ARCH_AVR=y
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CONFIG_ARCH_architecture - For use in C code:
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CONFIG_ARCH_AT90USB=y
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CONFIG_ARCH_CHIP - Identifies the arch/*/chip subdirectory
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CONFIG_ARCH_CHIP=at90usb
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CONFIG_ARCH_CHIP_name - For use in C code to identify the exact
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chip. This should be exactly one of
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CONFIG_ARCH_CHIP_AT90USB646=y
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CONFIG_ARCH_CHIP_AT90USB647=y
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CONFIG_ARCH_CHIP_AT90USB1286=y
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CONFIG_ARCH_CHIP_AT90USB1287=y
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Depending on which Micropendous3 version you have.
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CONFIG_ARCH_BOARD - Identifies the configs subdirectory and
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hence, the board that supports the particular chip or SoC.
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CONFIG_ARCH_BOARD=micropendous3
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CONFIG_ARCH_BOARD_name - For use in C code
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CONFIG_ARCH_BOARD_MICROPENOUS3=y
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CONFIG_ARCH_LOOPSPERMSEC - Must be calibrated for correct operation
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of delay loops
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CONFIG_ENDIAN_BIG - define if big endian (default is little
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endian)
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CONFIG_DRAM_SIZE - Describes the installed DRAM. One of:
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CONFIG_DRAM_SIZE=(4*1024) - (4Kb)
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CONFIG_DRAM_SIZE=(8*1024) - (8Kb)
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CONFIG_DRAM_START - The start address of installed DRAM
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CONFIG_DRAM_START=0x10000000
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CONFIG_DRAM_END - Last address+1 of installed RAM
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CONFIG_DRAM_END=(CONFIG_DRAM_START+CONFIG_DRAM_SIZE)
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CONFIG_ARCH_LEDS - Use LEDs to show state. Unique to boards that
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have LEDs
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CONFIG_ARCH_INTERRUPTSTACK - This architecture supports an interrupt
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stack. If defined, this symbol is the size of the interrupt
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stack in bytes. If not defined, the user task stacks will be
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used during interrupt handling.
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CONFIG_ARCH_STACKDUMP - Do stack dumps after assertions
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CONFIG_ARCH_LEDS - Use LEDs to show state. Unique to board architecture.
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CONFIG_ARCH_CALIBRATION - Enables some build in instrumentation that
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cause a 100 second delay during boot-up. This 100 second delay
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serves no purpose other than it allows you to calibratre
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CONFIG_ARCH_LOOPSPERMSEC. You simply use a stop watch to measure
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the 100 second delay then adjust CONFIG_ARCH_LOOPSPERMSEC until
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the delay actually is 100 seconds.
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Individual subsystems can be enabled:
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CONFIG_AVR_INT0=n
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CONFIG_AVR_INT1=n
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CONFIG_AVR_INT2=n
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CONFIG_AVR_INT3=n
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CONFIG_AVR_INT4=n
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CONFIG_AVR_INT5=n
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CONFIG_AVR_INT6=n
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CONFIG_AVR_INT7=n
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CONFIG_AVR_USBHOST=n
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CONFIG_AVR_USBDEV=n
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CONFIG_AVR_WDT=n
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CONFIG_AVR_TIMER0=n
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CONFIG_AVR_TIMER1=n
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CONFIG_AVR_TIMER2=n
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CONFIG_AVR_TIMER3=n
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CONFIG_AVR_SPI=n
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CONFIG_AVR_UART1=y
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CONFIG_AVR_ANACOMP=n
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CONFIG_AVR_ADC=n
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CONFIG_AVR_TWI=n
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AT90USB specific device driver settings
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CONFIG_UARTn_SERIAL_CONSOLE - selects the UARTn for the
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console and ttys0 (default is the UART0).
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CONFIG_UARTn_RXBUFSIZE - Characters are buffered as received.
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This specific the size of the receive buffer
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CONFIG_UARTn_TXBUFSIZE - Characters are buffered before
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being sent. This specific the size of the transmit buffer
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CONFIG_UARTn_BAUD - The configure BAUD of the UART. Must be
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CONFIG_UARTn_BITS - The number of bits. Must be either 7 or 8.
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CONFIG_UARTn_PARTIY - 0=no parity, 1=odd parity, 2=even parity
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CONFIG_UARTn_2STOP - Two stop bits
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Configurations
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^^^^^^^^^^^^^^
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Each Micropendous3 configuration is maintained in a sudirectory and can
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be selected as follow:
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cd tools
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./configure.sh micropendous3/<subdir>
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cd -
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. ./setenv.sh
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NOTE: You must also copy avr-libc header files, perhaps like:
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cp -a /cygdrive/c/WinAVR/include/avr include/.
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Where <subdir> is one of the following:
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ostest:
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This configuration directory, performs a simple OS test using
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apps/examples/ostest.
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