1060 lines
48 KiB
Plaintext
1060 lines
48 KiB
Plaintext
Board-Specific Configurations
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^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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Table of Contents
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^^^^^^^^^^^^^^^^^
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o Board-Specific Configurations
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o Summary of Files
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o Supported Architectures
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o Configuring NuttX
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Board-Specific Configurations
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^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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The NuttX configuration consists of:
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o Processor architecture specific files. These are the files contained
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in the arch/<arch-name>/ directory.
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o Chip/SoC specific files. Each processor processor architecture
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is embedded in chip or System-on-a-Chip (SoC) architecture. The
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full chip architecture includes the processor architecture plus
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chip-specific interrupt logic, general purpose I/O (GIO) logic, and
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specialized, internal peripherals (such as UARTs, USB, etc.).
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These chip-specific files are contained within chip-specific
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sub-directories in the arch/<arch-name>/ directory and are selected
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via the CONFIG_ARCH_name selection
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o Board specific files. In order to be usable, the chip must be
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contained in a board environment. The board configuration defines
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additional properties of the board including such things as
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peripheral LEDs, external peripherals (such as network, USB, etc.).
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These board-specific configuration files can be found in the
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configs/<board-name>/ sub-directories and are discussed in this
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README. Additional configuration information maybe available in
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board-specific configs/<board-name>/README.txt files.
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The configs/ subdirectory contains configuration data for each board. These
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board-specific configurations plus the architecture-specific configurations in
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the arch/ subdirectory completely define a customized port of NuttX.
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Directory Structure
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^^^^^^^^^^^^^^^^^^^
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The configs directory contains board specific configurationlogic. Each
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board must provide a subdirectory <board-name> under configs/ with the
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following characteristics:
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<board-name>
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|-- README.txt
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|-- include/
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| `-- (board-specific header files)
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|-- src/
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| |-- Makefile
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| `-- (board-specific source files)
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|-- <config1-dir>
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| |-- Make.defs
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| |-- defconfig
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| `-- setenv.sh
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|-- <config2-dir>
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| |-- Make.defs
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| |-- defconfig
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| `-- setenv.sh
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...
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Summary of Files
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^^^^^^^^^^^^^^^^
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README.txt -- This text file provides additional information unique to
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each board configuration sub-directory.
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include/ -- This directory contains board specific header files. This
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directory will be linked as include/arch/board at configuration time and
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can be included via '#include <arch/board/header.h>'. These header file
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can only be included by files in arch/<arch-name>include/ and
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arch/<arch-name>/src
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src/ -- This directory contains board specific drivers. This
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directory will be linked as arch/<arch-name>/src/board at configuration
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time and will be integrated into the build system.
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src/Makefile -- This makefile will be invoked to build the board specific
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drivers. It must support the following targets: libext$(LIBEXT), clean,
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and distclean.
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A board may have various different configurations using these common source
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files. Each board configuration is described by three files: Make.defs,
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defconfig, and setenv.sh. Typically, each set of configuration files is
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retained in a separate configuration sub-directory (<config1-dir>,
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<config2-dir>, .. in the above diagram).
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Make.defs -- This makefile fragment provides architecture and
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tool-specific build options. It will be included by all other
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makefiles in the build (once it is installed). This make fragment
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should define:
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Tools: CC, LD, AR, NM, OBJCOPY, OBJDUMP
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Tool options: CFLAGS, LDFLAGS
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COMPILE, ASSEMBLE, ARCHIVE, CLEAN, and MKDEP macros
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When this makefile fragment runs, it will be passed TOPDIR which
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is the path to the root directory of the build. This makefile
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fragment may include ${TOPDIR}/.config to perform configuration
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specific settings. For example, the CFLAGS will most likely be
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different if CONFIG_DEBUG=y.
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defconfig -- This is a configuration file similar to the Linux
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configuration file. In contains variable/value pairs like:
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CONFIG_VARIABLE=value
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This configuration file will be used at build time:
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(1) as a makefile fragment included in other makefiles, and
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(2) to generate include/nuttx/config.h which is included by
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most C files in the system.
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The following variables are recognized by the build (you may
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also include architecture/board-specific settings).
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Architecture selection:
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CONFIG_ARCH - Identifies the arch/ subdirectory
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CONFIG_ARCH_name - For use in C code
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CONFIG_ARCH_CHIP - Identifies the arch/*/chip subdirectory
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CONFIG_ARCH_CHIP_name - For use in C code
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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_name - For use in C code
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CONFIG_ENDIAN_BIG - define if big endian (default is little
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endian)
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CONFIG_ARCH_NOINTC - define if the architecture does not
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support an interrupt controller or otherwise cannot support
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APIs like up_enable_irq() and up_disable_irq().
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CONFIG_ARCH_IRQPRIO
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Define if the architecture suports prioritizaton of interrupts
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and the up_prioritize_irq() API.
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Some architectures require a description of the RAM configuration:
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CONFIG_DRAM_SIZE - Describes the installed DRAM.
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CONFIG_DRAM_START - The start address of DRAM (physical)
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CONFIG_DRAM_VSTART - The start address of DRAM (virtual)
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General build options:
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CONFIG_RRLOAD_BINARY - make the rrload binary format used with
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BSPs from www.ridgerun.com using the tools/mkimage.sh script.
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CONFIG_INTELHEX_BINARY - make the Intel HEX binary format
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used with many different loaders using the GNU objcopy program
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Should not be selected if you are not using the GNU toolchain.
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CONFIG_MOTOROLA_SREC - make the Motorola S-Record binary format
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used with many different loaders using the GNU objcopy program
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Should not be selected if you are not using the GNU toolchain.
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CONFIG_RAW_BINARY - make a raw binary format file used with many
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different loaders using the GNU objcopy program. This option
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should not be selected if you are not using the GNU toolchain.
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CONFIG_HAVE_LIBM - toolchain supports libm.a
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CONFIG_HAVE_CXX - toolchain supports C++ and CXX, CXXFLAGS, and
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COMPILEXX have been defined in the configuratins Make.defs
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file.
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Building application code:
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CONFIG_APP_DIR - Identifies the directory that builds the
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application to link with NuttX. This symbol must be assigned
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to the path to the application build directory *relative* to
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the NuttX top build direcory. As an an example, there are
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several example applicatins in the NuttX examples/ sub-directory.
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To use one of these example applications, say nsh, you would
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set CONFIG_APP_DIR=examples/nsh. If you had an application
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directory and the NuttX directory both within another directory
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like this:
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build
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|-nuttx
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| `- Makefile
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`-application
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`- Makefile
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Then you would set CONFIG_APP_DIR=../application.
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The application direction must contain Makefile and this make
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file must support the following targets:
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- libapp$(LIBEXT) (usually libapp.a). libapp.a is a static
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library ( an archive) that contains all of application object
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files.
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- clean. Do whatever is appropriate to clean the application
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directories for a fresh build.
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- distclean. Clean everthing -- auto-generated files, symbolic
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links etc. -- so that the directory contents are the same as
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the contents in your configuration management system.
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This is only done when you change the NuttX configuration.
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- depend. Make or update the application build dependencies.
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When this application is invoked it will receive the setting TOPDIR< like:
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$(MAKE) -C $(CONFIG_APP_DIR) TOPDIR="$(TOPDIR)" <target>
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TOPDIR is the full path to the NuttX directory. It can be used, for
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example, to include makefile fragments (e.g., .config or Make.defs)
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or to set up include file paths.
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Two-pass build options. If the 2 pass build option is selected, then these
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options configure the make system build a extra link object. This link object
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is assumed to be an incremental (relative) link object, but could be a static
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library (archive) (some modification to this Makefile would be required if
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CONFIG_PASS1_OBJECT is an archive). Pass 1 1ncremental (relative) link objects
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should be put into the processor-specific source directory (where other
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link objects will be created). If the pass1 obect is an archive, it could
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go anywhere.
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CONFIG_BUILD_2PASS - Enables the two pass build options.
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When the two pass build option is enabled, the following also apply:
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CONFIG_PASS1_OBJECT - The name of the first pass object.
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CONFIG_PASS1_BUILDIR - The path, relative to the top NuttX build
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directory to directory that contains the Makefile to build the
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first pass object. The Makefile must support the following targets:
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- The special target arch/$(CONFIG_ARCH)/src/$(CONFIG_PASS1_OBJECT)
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- and the usual depend, clean, and distclean targets.
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General OS setup
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CONFIG_DEBUG - enables built-in debug options
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CONFIG_DEBUG_VERBOSE - enables verbose debug output
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CONFIG_DEBUG_SYMBOLS - build without optimization and with
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debug symbols (needed for use with a debugger).
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CONFIG_DEBUG_SCHED - enable OS debug output (disabled by
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default)
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CONFIG_DEBUG_MM - enable memory management debug output
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(disabled by default)
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CONFIG_DEBUG_NET - enable network debug output (disabled
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by default)
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CONFIG_DEBUG_USB - enable usb debug output (disabled by
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default)
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CONFIG_DEBUG_FS - enable filesystem debug output (disabled
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by default)
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CONFIG_DEBUG_LIB - enable C library debug output (disabled
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by default)
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CONFIG_DEBUG_BINFMT - enable binary loader debug output (disabled
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by default)
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CONFIG_DEBUG_GRAPHICS - enable NX graphics debug output
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(disabled by default)
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CONFIG_ARCH_LOWPUTC - architecture supports low-level, boot
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time console output
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CONFIG_MM_REGIONS - If the architecture includes multiple
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regions of memory to allocate from, this specifies the
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number of memory regions that the memory manager must
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handle and enables the API mm_addregion(start, end);
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CONFIG_TICKS_PER_MSEC - The default system timer is 100Hz
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or TICKS_PER_MSEC=10. This setting may be defined to
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inform NuttX that the processor hardware is providing
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system timer interrupts at some interrupt interval other
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than 10 msec.
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CONFIG_RR_INTERVAL - The round robin timeslice will be set
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this number of milliseconds; Round robin scheduling can
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be disabled by setting this value to zero.
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CONFIG_SCHED_INSTRUMENTATION - enables instrumentation in
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scheduler to monitor system performance
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CONFIG_TASK_NAME_SIZE - Specifies that maximum size of a
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task name to save in the TCB. Useful if scheduler
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instrumentation is selected. Set to zero to disable.
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CONFIG_START_YEAR, CONFIG_START_MONTH, CONFIG_START_DAY -
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Used to initialize the internal time logic.
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CONFIG_GREGORIAN_TIME - Enables Gregorian time conversions.
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You would only need this if you are concerned about accurate
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time conversions in the past or in the distant future.
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CONFIG_JULIAN_TIME - Enables Julian time conversions. You
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would only need this if you are concerned about accurate
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time conversion in the distand past. You must also define
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CONFIG_GREGORIAN_TIME in order to use Julian time.
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CONFIG_DEV_CONSOLE - Set if architecture-specific logic
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provides /dev/console. Enables stdout, stderr, stdin.
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CONFIG_MUTEX_TYPES - Set to enable support for recursive and
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errorcheck mutexes. Enables pthread_mutexattr_settype().
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CONFIG_PRIORITY_INHERITANCE - Set to enable support for
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priority inheritance on mutexes and semaphores.
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CONFIG_SEM_PREALLOCHOLDERS: This setting is only used if priority
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inheritance is enabled. It defines the maximum number of
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different threads (minus one) that can take counts on a
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semaphore with priority inheritance support. This may be
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set to zero if priority inheritance is disabled OR if you
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are only using semaphores as mutexes (only one holder) OR
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if no more than two threads participate using a counting
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semaphore.
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CONFIG_SEM_NNESTPRIO. If priority inheritance is enabled,
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then this setting is the maximum number of higher priority
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threads (minus 1) than can be waiting for another thread
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to release a count on a semaphore. This value may be set
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to zero if no more than one thread is expected to wait for
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a semaphore.
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CONFIG_FDCLONE_DISABLE. Disable cloning of all file descriptors
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by task_create() when a new task is started. If set, all
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files/drivers will appear to be closed in the new task.
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CONFIG_FDCLONE_STDIO. Disable cloning of all but the first
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three file descriptors (stdin, stdout, stderr) by task_create()
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when a new task is started. If set, all files/drivers will
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appear to be closed in the new task except for stdin, stdout,
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and stderr.
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CONFIG_SDCLONE_DISABLE. Disable cloning of all socket
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desciptors by task_create() when a new task is started. If
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set, all sockets will appear to be closed in the new task.
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CONFIG_NXFLAT. Enable support for the NXFLAT binary format.
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This format will support execution of NuttX binaries located
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in a ROMFS filesystem (see examples/nxflat).
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CONFIG_SCHED_WORKQUEUE. Create a dedicated "worker" thread to
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handle delayed processing from interrupt handlers. This feature
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is required for some drivers but, if there are not complaints,
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can be safely disabled. The worker thread also performs
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garbage collection -- completing any delayed memory deallocations
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from interrupt handlers. If the worker thread is disabled,
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then that clean will be performed by the IDLE thread instead
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(which runs at the lowest of priority and may not be appropriate
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if memory reclamation is of high priority). If CONFIG_SCHED_WORKQUEUE
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is enabled, then the following options can also be used:
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CONFIG_SCHED_WORKPRIORITY - The execution priority of the worker
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thread. Default: 50
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CONFIG_SCHED_WORKPERIOD - How often the worker thread checks for
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work in units of microseconds. Default: 50*1000 (50 MS).
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CONFIG_SCHED_WORKSTACKSIZE - The stack size allocated for the worker
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thread. Default: CONFIG_IDLETHREAD_STACKSIZE.
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CONFIG_SIG_SIGWORK - The signal number that will be used to wake-up
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the worker thread. Default: 4
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OS setup related to on-demand paging:
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CONFIG_PAGING - If set =y in your configation file, this setting will
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enable the on-demand paging feature as described in
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http://www.nuttx.org/NuttXDemandPaging.html.
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If CONFIG_PAGING is selected, then you will probabaly need CONFIG_BUILD_2PASS to
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correctly position the code and the following configuration options also apply:
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CONFIG_PAGING_PAGESIZE - The size of one managed page. This must
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be a value supported by the processor's memory management unit.
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CONFIG_PAGING_NLOCKED - This is the number of locked pages in the
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memory map. The locked address region will then be from
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CONFIG_DRAM_VSTART through (CONFIG_DRAM_VSTART +
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CONFIG_PAGING_PAGESIZE*CONFIG_PAGING_NLOCKED)
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CONFIG_PAGING_LOCKED_PBASE and CONFIG_PAGING_LOCKED_VBASE - These
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may be defined to determine the base address of the locked page
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regions. If neither are defined, the logic will be set the bases
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to CONFIG_DRAM_START and CONFIG_DRAM_VSTART (i.e., it assumes
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that the base address of the locked region is at the beginning
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of RAM).
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NOTE: In some architectures, it may be necessary to take some
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memory from the beginning of this region for vectors or for a
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page table. In such cases, CONFIG_PAGING_LOCKED_P/VBASE should
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take that into consideration to prevent overlapping the locked
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memory region and the system data at the beginning of SRAM.
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CONFIG_PAGING_NPPAGED - This is the number of physical pages
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available to support the paged text region. This paged region
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begins at (CONFIG_PAGING_LOCKED_PBASE + CONFIG_PAGING_PAGESIZE*CONFIG_PAGING_NPPAGED)
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and continues until (CONFIG_PAGING_LOCKED_PBASE + CONFIG_PAGING_PAGESIZE*(CONFIG_PAGING_NLOCKED +
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CONFIG_PAGING_NPPAGED)
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CONFIG_PAGING_NVPAGED - This actual size of the paged text region
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(in pages). This is also the number of virtual pages required to
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support the entire paged region. The on-demand paging feature is
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intended to support only the case where the virtual paged text
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area is much larger the available physical pages. Otherwise, why
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would you enable on-demand paging?
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CONFIG_PAGING_NDATA - This is the number of data pages in the memory
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map. The data region will extend to the end of RAM unless overridden
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by a setting in the configuration file.
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NOTE: In some architectures, it may be necessary to take some memory
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from the end of RAM for page tables or other system usage. The
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configuration settings and linker directives must be cognizant of that:
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CONFIG_PAGING_NDATA should be defined to prevent the data region from
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extending all the way to the end of memory.
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CONFIG_PAGING_DEFPRIO - The default, minimum priority of the page fill
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worker thread. The priority of the page fill work thread will be boosted
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boosted dynmically so that it matches the priority of the task on behalf
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of which it peforms the fill. This defines the minimum priority that
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will be used. Default: 50.
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CONFIG_PAGING_STACKSIZE - Defines the size of the allocated stack
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for the page fill worker thread. Default: 1024.
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CONFIG_PAGING_BLOCKINGFILL - The architecture specific up_fillpage()
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function may be blocking or non-blocking. If defined, this setting
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indicates that the up_fillpage() implementation will block until the
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transfer is completed. Default: Undefined (non-blocking).
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CONFIG_PAGING_WORKPERIOD - The page fill worker thread will wake periodically
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even if there is no mapping to do. This selection controls that wake-up
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period (in microseconds). This wake-up a failsafe that will handle any
|
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cases where a single is lost (that would really be a bug and shouldn't
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happen!) and also supports timeouts for case of non-blocking, asynchronous
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fills (see CONFIG_PAGING_TIMEOUT_TICKS).
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CONFIG_PAGING_TIMEOUT_TICKS - If defined, the implementation will monitor
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the (asynchronous) page fill logic. If the fill takes longer than this
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number if microseconds, then a fatal error will be declared.
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Default: No timeouts monitored.
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Some architecture-specific settings. Defaults are architecture specific.
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If you don't know what you are doing, it is best to leave these undefined
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and try the system defaults:
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CONFIG_PAGING_VECPPAGE - This the physical address of the page in
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memory to be mapped to the vector address.
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CONFIG_PAGING_VECL2PADDR - This is the physical address of the L2
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page table entry to use for the vector mapping.
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CONFIG_PAGING_VECL2VADDR - This is the virtual address of the L2
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page table entry to use for the vector mapping.
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CONFIG_PAGING_BINPATH - If CONFIG_PAGING_BINPATH is defined, then it
|
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is the full path to a file on a mounted file system that contains
|
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a binary image of the NuttX executable. Pages will be filled by
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reading from offsets into this file that correspond to virtual
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fault addresses.
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CONFIG_PAGING_MOUNTPT - If CONFIG_PAGING_BINPATH is defined, additional
|
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options may be provided to control the initialization of underlying
|
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devices. CONFIG_PAGING_MOUNTPT identifies the mountpoint to be used
|
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if a device is mounted.
|
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CONFIG_PAGING_MINOR - Some mount operations require a "minor" number
|
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to identify the specific device instance. Default: 0
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CONFIG_PAGING_SDSLOT - If CONFIG_PAGING_BINPATH is defined, additional
|
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options may be provided to control the initialization of underlying
|
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devices. CONFIG_PAGING_SDSLOT identifies the slot number of the SD
|
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device to initialize. This must be undefined if SD is not being used.
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This should be defined to be zero for the typical device that has
|
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only a single slot (See CONFIG_MMCSD_NSLOTS). If defined,
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CONFIG_PAGING_SDSLOT will instruct certain board-specific logic to
|
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initialize the media in this SD slot.
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CONFIG_PAGING_M25PX - Use the m25px.c FLASH driver. If this is selected,
|
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then the MTD interface to the M25Px device will be used to support
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paging.
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CONFIG_PAGING_AT45DB - Use the at45db.c FLASH driver. If this is selected,
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then the MTD interface to the Atmel AT45DB device will be used to support
|
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paging.
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CONFIG_PAGING_BINOFFSET - If CONFIG_PAGING_M25PX or is CONFIG_PAGING_AT45DB
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defined then CONFIG_PAGING_BINOFFSET will be used to specify the offset
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|
in bytes into the FLASH device where the NuttX binary image is located.
|
|
Default: 0
|
|
CONFIG_PAGING_SPIPORT - If CONFIG_PAGING_M25PX CONFIG_PAGING_AT45DB is
|
|
defined and the device has multiple SPI busses (ports), then this
|
|
configuration should be set to indicate which SPI port the device is
|
|
connected. Default: 0
|
|
|
|
The following can be used to disable categories of APIs supported
|
|
by the OS. If the compiler supports weak functions, then it
|
|
should not be necessary to disable functions unless you want to
|
|
restrict usage of those APIs.
|
|
|
|
There are certain dependency relationships in these features.
|
|
|
|
o mq_notify logic depends on signals to awaken tasks
|
|
waiting for queues to become full or empty.
|
|
o pthread_condtimedwait() depends on signals to wake
|
|
up waiting tasks.
|
|
|
|
CONFIG_DISABLE_CLOCK, CONFIG_DISABLE_POSIX_TIMERS, CONFIG_DISABLE_PTHREAD.
|
|
CONFIG_DISABLE_SIGNALS, CONFIG_DISABLE_MQUEUE, CONFIG_DISABLE_MOUNTPOUNT,
|
|
CONFIG_DISABLE_ENVIRON, CONFIG_DISABLE_POLL
|
|
|
|
Misc libc settings
|
|
|
|
CONFIG_NOPRINTF_FIELDWIDTH - sprintf-related logic is a
|
|
little smaller if we do not support fieldwidthes
|
|
CONFIG_LIBC_FLOATINGPOINT - By default, floating point
|
|
support in printf, sscanf, etc. is disabled.
|
|
|
|
Allow for architecture optimized implementations
|
|
|
|
The architecture can provide optimized versions of the
|
|
following to improve system performance
|
|
|
|
CONFIG_ARCH_MEMCPY, CONFIG_ARCH_MEMCMP, CONFIG_ARCH_MEMMOVE
|
|
CONFIG_ARCH_MEMSET, CONFIG_ARCH_STRCMP, CONFIG_ARCH_STRCPY
|
|
CONFIG_ARCH_STRNCPY, CONFIG_ARCH_STRLEN, CONFIG_ARCH_STRNLEN
|
|
CONFIG_ARCH_BZERO, CONFIG_ARCH_KMALLOC, CONFIG_ARCH_KZMALLOC
|
|
CONFIG_ARCH_KFREE
|
|
|
|
Sizes of configurable things (0 disables)
|
|
|
|
CONFIG_MAX_TASKS - The maximum number of simultaneously
|
|
active tasks. This value must be a power of two.
|
|
CONFIG_NPTHREAD_KEYS - The number of items of thread-
|
|
specific data that can be retained
|
|
CONFIG_NFILE_DESCRIPTORS - The maximum number of file
|
|
descriptors (one for each open)
|
|
CONFIG_NFILE_STREAMS - The maximum number of streams that
|
|
can be fopen'ed
|
|
CONFIG_NAME_MAX - The maximum size of a file name.
|
|
CONFIG_STDIO_BUFFER_SIZE - Size of the buffer to allocate
|
|
on fopen. (Only if CONFIG_NFILE_STREAMS > 0)
|
|
CONFIG_NUNGET_CHARS - Number of characters that can be
|
|
buffered by ungetc() (Only if CONFIG_NFILE_STREAMS > 0)
|
|
CONFIG_PREALLOC_MQ_MSGS - The number of pre-allocated message
|
|
structures. The system manages a pool of preallocated
|
|
message structures to minimize dynamic allocations
|
|
CONFIG_PREALLOC_IGMPGROUPS - Pre-allocated IGMP groups are used
|
|
only if needed from interrupt level group created (by the IGMP server).
|
|
Default: 4.
|
|
CONFIG_MQ_MAXMSGSIZE - Message structures are allocated with
|
|
a fixed payload size given by this settin (does not include
|
|
other message structure overhead.
|
|
CONFIG_PREALLOC_WDOGS - The number of pre-allocated watchdog
|
|
structures. The system manages a pool of preallocated
|
|
watchdog structures to minimize dynamic allocations
|
|
CONFIG_DEV_PIPE_SIZE - Size, in bytes, of the buffer to allocated
|
|
for pipe and FIFO support
|
|
|
|
Filesystem configuration
|
|
CONFIG_FS_FAT - Enable FAT filesystem support
|
|
CONFIG_FAT_SECTORSIZE - Max supported sector size
|
|
CONFIG_FS_ROMFS - Enable ROMFS filesystem support
|
|
|
|
SPI driver
|
|
CONFIG_SPI_OWNBUS - Set if there is only one active device
|
|
on the SPI bus. No locking or SPI configuration will be performed.
|
|
It is not necessary for clients to lock, re-configure, etc..
|
|
CONFIG_SPI_EXCHANGE - Driver supports a single exchange method
|
|
(vs a recvblock() and sndblock ()methods)
|
|
|
|
SPI-based MMC/SD driver
|
|
CONFIG_MMCSD_NSLOTS - Number of MMC/SD slots supported by the
|
|
driver. Default is one.
|
|
CONFIG_MMCSD_READONLY - Provide read-only access. Default is
|
|
Read/Write
|
|
CONFIG_MMCSD_SPICLOCK - Maximum SPI clock to drive MMC/SD card.
|
|
Default is 20MHz.
|
|
|
|
SDIO-based MMC/SD driver
|
|
CONFIG_FS_READAHEAD - Enable read-ahead buffering
|
|
CONFIG_FS_WRITEBUFFER - Enable write buffering
|
|
CONFIG_SDIO_DMA - SDIO driver supports DMA
|
|
CONFIG_MMCSD_MMCSUPPORT - Enable support for MMC cards
|
|
CONFIG_MMCSD_HAVECARDDETECT - SDIO driver card detection is
|
|
100% accurate
|
|
|
|
RiT P14201 OLED driver
|
|
CONFIG_LCD_P14201 - Enable P14201 support
|
|
CONFIG_P14201_SPIMODE - Controls the SPI mode
|
|
CONFIG_P14201_FREQUENCY - Define to use a different bus frequency
|
|
CONFIG_P14201_NINTERFACES - Specifies the number of physical P14201
|
|
devices that will be supported.
|
|
CONFIG_P14201_FRAMEBUFFER - If defined, accesses will be performed
|
|
using an in-memory copy of the OLEDs GDDRAM. This cost of this
|
|
buffer is 128 * 96 / 2 = 6Kb. If this is defined, then the driver
|
|
will be fully functional. If not, then it will have the following
|
|
limitations:
|
|
- Reading graphics memory cannot be supported, and
|
|
- All pixel writes must be aligned to byte boundaries.
|
|
The latter limitation effectively reduces the 128x96 disply to 64x96.
|
|
|
|
Nokia 6100 Configuration Settings:
|
|
|
|
CONFIG_NOKIA6100_SPIMODE - Controls the SPI mode
|
|
CONFIG_NOKIA6100_FREQUENCY - Define to use a different bus frequency
|
|
CONFIG_NOKIA6100_NINTERFACES - Specifies the number of physical Nokia
|
|
6100 devices that will be supported.
|
|
CONFIG_NOKIA6100_BPP - Device supports 8, 12, and 16 bits per pixel.
|
|
CONFIG_NOKIA6100_S1D15G10 - Selects the Epson S1D15G10 display controller
|
|
CONFIG_NOKIA6100_PCF8833 - Selects the Phillips PCF8833 display controller
|
|
CONFIG_NOKIA6100_BLINIT - Initial backlight setting
|
|
|
|
The following may need to be tuned for your hardware:
|
|
CONFIG_NOKIA6100_INVERT - Display inversion, 0 or 1, Default: 1
|
|
CONFIG_NOKIA6100_MY - Display row direction, 0 or 1, Default: 0
|
|
CONFIG_NOKIA6100_MX - Display column direction, 0 or 1, Default: 1
|
|
CONFIG_NOKIA6100_V - Display address direction, 0 or 1, Default: 0
|
|
CONFIG_NOKIA6100_ML - Display scan direction, 0 or 1, Default: 0
|
|
CONFIG_NOKIA6100_RGBORD - Display RGB order, 0 or 1, Default: 0
|
|
|
|
Required LCD driver settings:
|
|
CONFIG_LCD_NOKIA6100 - Enable Nokia 6100 support
|
|
CONFIG_LCD_MAXCONTRAST - must be 63 with the Epson controller and 127 with
|
|
the Phillips controller.
|
|
CONFIG_LCD_MAXPOWER - Maximum value of backlight setting. The backlight
|
|
control is managed outside of the 6100 driver so this value has no
|
|
meaning to the driver. Board-specific logic may place restrictions on
|
|
this value.
|
|
|
|
ENC28J60 Ethernet Driver Configuration Settings:
|
|
CONFIG_NET_ENC28J60 - Enabled ENC28J60 support
|
|
CONFIG_ENC28J60_SPIMODE - Controls the SPI mode
|
|
CONFIG_ENC28J60_FREQUENCY - Define to use a different bus frequency
|
|
CONFIG_ENC28J60_NINTERFACES - Specifies the number of physical ENC28J60
|
|
devices that will be supported.
|
|
CONFIG_ENC28J60_STATS - Collect network statistics
|
|
CONFIG_ENC28J60_HALFDUPPLEX - Default is full duplex
|
|
|
|
TCP/IP and UDP support via uIP
|
|
CONFIG_NET - Enable or disable all network features
|
|
CONFIG_NET_IPv6 - Build in support for IPv6
|
|
CONFIG_NSOCKET_DESCRIPTORS - Maximum number of socket descriptors
|
|
per task/thread.
|
|
CONFIG_NET_NACTIVESOCKETS - Maximum number of concurrent socket
|
|
operations (recv, send, etc.). Default: CONFIG_NET_TCP_CONNS+CONFIG_NET_UDP_CONNS
|
|
CONFIG_NET_SOCKOPTS - Enable or disable support for socket options
|
|
|
|
CONFIG_NET_BUFSIZE - uIP buffer size
|
|
CONFIG_NET_TCPURGDATA - Determines if support for TCP urgent data
|
|
notification should be compiled in. Urgent data (out-of-band data)
|
|
is a rarely used TCP feature that is very seldom would be required.
|
|
CONFIG_NET_TCP - TCP support on or off
|
|
CONFIG_NET_TCP_CONNS - Maximum number of TCP connections (all tasks)
|
|
CONFIG_NET_MAX_LISTENPORTS - Maximum number of listening TCP ports (all tasks)
|
|
CONFIG_NET_TCP_READAHEAD_BUFSIZE - Size of TCP read-ahead buffers
|
|
CONFIG_NET_NTCP_READAHEAD_BUFFERS - Number of TCP read-ahead buffers
|
|
(may be zero)
|
|
CONFIG_NET_TCPBACKLOG - Incoming connections pend in a backlog until
|
|
accept() is called. The size of the backlog is selected when listen()
|
|
is called.
|
|
CONFIG_NET_UDP - UDP support on or off
|
|
CONFIG_NET_UDP_CHECKSUMS - UDP checksums on or off
|
|
CONFIG_NET_UDP_CONNS - The maximum amount of concurrent UDP
|
|
connections
|
|
CONFIG_NET_ICMP - Enable minimal ICMP support. Includes built-in support
|
|
for sending replies to received ECHO (ping) requests.
|
|
CONFIG_NET_ICMP_PING - Provide interfaces to support application level
|
|
support for sending ECHO (ping) requests and associating ECHO
|
|
replies.
|
|
CONFIG_NET_IGMP - Enable IGMPv2 client support.
|
|
CONFIG_PREALLOC_IGMPGROUPS - Pre-allocated IGMP groups are used
|
|
only if needed from interrupt level group created (by the IGMP server).
|
|
Default: 4.
|
|
CONFIG_NET_PINGADDRCONF - Use "ping" packet for setting IP address
|
|
CONFIG_NET_STATISTICS - uIP statistics on or off
|
|
CONFIG_NET_RECEIVE_WINDOW - The size of the advertised receiver's
|
|
window
|
|
CONFIG_NET_ARPTAB_SIZE - The size of the ARP table
|
|
CONFIG_NET_ARP_IPIN - Harvest IP/MAC address mappings from the ARP table
|
|
from incoming IP packets.
|
|
CONFIG_NET_BROADCAST - Incoming UDP broadcast support
|
|
CONFIG_NET_MULTICAST - Outgoing multi-cast address support
|
|
CONFIG_NET_LLH_LEN - The link level header length
|
|
CONFIG_NET_FWCACHE_SIZE - number of packets to remember when
|
|
looking for duplicates
|
|
|
|
UIP Network Utilities
|
|
CONFIG_NET_DHCP_LIGHT - Reduces size of DHCP
|
|
CONFIG_NET_RESOLV_ENTRIES - Number of resolver entries
|
|
|
|
THTTPD:
|
|
CONFIG_THTTPD_PORT - THTTPD Server port number
|
|
CONFIG_THTTPD_IPADDR - Server IP address (no host name)
|
|
CONFIG_THTTPD_SERVER_ADDRESS - SERVER_ADDRESS: response
|
|
CONFIG_THTTPD_SERVER_SOFTWARE - SERVER_SOFTWARE: response
|
|
CONFIG_THTTPD_PATH - Server working directory
|
|
CONFIG_THTTPD_CGI_PATH - Path to CGI executables
|
|
CONFIG_THTTPD_CGI_PATTERN - Only CGI programs matching this
|
|
pattern will be executed. In fact, if this value is not defined
|
|
then no CGI logic will be built.
|
|
CONFIG_THTTPD_CGI_PRIORITY - Provides the priority of CGI child tasks
|
|
CONFIG_THTTPD_CGI_STACKSIZE - Provides the initial stack size of
|
|
CGI child task (will be overridden by the stack size in the NXFLAT
|
|
header)
|
|
CONFIG_THTTPD_CGI_BYTECOUNT - Byte output limit for CGI tasks.
|
|
CONFIG_THTTPD_CGI_TIMELIMIT - How many seconds to allow CGI programs
|
|
to run before killing them.
|
|
CONFIG_THTTPD_CHARSET- The default character set name to use with
|
|
text MIME types.
|
|
CONFIG_THTTPD_IOBUFFERSIZE -
|
|
CONFIG_THTTPD_INDEX_NAMES - A list of index filenames to check. The
|
|
files are searched for in this order.
|
|
CONFIG_AUTH_FILE - The file to use for authentication. If this is
|
|
defined then thttpd checks for this file in the local directory
|
|
before every fetch. If the file exists then authentication is done,
|
|
otherwise the fetch proceeds as usual. If you leave this undefined
|
|
then thttpd will not implement authentication at all and will not
|
|
check for auth files, which saves a bit of CPU time. A typical
|
|
value is ".htpasswd"
|
|
CONFIG_THTTPD_LISTEN_BACKLOG - The listen() backlog queue length.
|
|
CONFIG_THTTPD_LINGER_MSEC - How many milliseconds to leave a connection
|
|
open while doing a lingering close.
|
|
CONFIG_THTTPD_OCCASIONAL_MSEC - How often to run the occasional
|
|
cleanup job.
|
|
CONFIG_THTTPD_IDLE_READ_LIMIT_SEC - How many seconds to allow for
|
|
reading the initial request on a new connection.
|
|
CONFIG_THTTPD_IDLE_SEND_LIMIT_SEC - How many seconds before an
|
|
idle connection gets closed.
|
|
CONFIG_THTTPD_TILDE_MAP1 and CONFIG_THTTPD_TILDE_MAP2 - Tilde mapping.
|
|
Many URLs use ~username to indicate a user's home directory. thttpd
|
|
provides two options for mapping this construct to an actual filename.
|
|
1) Map ~username to <prefix>/username. This is the recommended choice.
|
|
Each user gets a subdirectory in the main web tree, and the tilde
|
|
construct points there. The prefix could be something like "users",
|
|
or it could be empty.
|
|
2) Map ~username to <user's homedir>/<postfix>. The postfix would be
|
|
the name of a subdirectory off of the user's actual home dir,
|
|
something like "public_html".
|
|
You can also leave both options undefined, and thttpd will not do
|
|
anything special about tildes. Enabling both options is an error.
|
|
Typical values, if they're defined, are "users" for
|
|
CONFIG_THTTPD_TILDE_MAP1 and "public_html"forCONFIG_THTTPD_TILDE_MAP2.
|
|
CONFIG_THTTPD_GENERATE_INDICES
|
|
CONFIG_THTTPD_URLPATTERN - If defined, then it will be used to match
|
|
and verify referrers.
|
|
|
|
USB device controller driver
|
|
CONFIG_USBDEV - Enables USB device support
|
|
CONFIG_USBDEV_ISOCHRONOUS - Build in extra support for isochronous
|
|
endpoints
|
|
CONFIG_USBDEV_DUALSPEED -Hardware handles high and full speed
|
|
operation (USB 2.0)
|
|
CONFIG_USBDEV_SELFPOWERED - Will cause USB features to indicate
|
|
that the device is self-powered
|
|
CONFIG_USBDEV_MAXPOWER - Maximum power consumption in mA
|
|
CONFIG_USBDEV_TRACE - Enables USB tracing for debug
|
|
CONFIG_USBDEV_TRACE_NRECORDS - Number of trace entries to remember
|
|
|
|
USB host controller driver
|
|
CONFIG_USBHOST
|
|
Enables USB host support
|
|
CONFIG_USBHOST_NPREALLOC
|
|
Number of pre-allocated class instances
|
|
CONFIG_USBHOST_BULK_DISABLE
|
|
On some architectures, selecting this setting will reduce driver size
|
|
by disabling bulk endpoint support
|
|
CONFIG_USBHOST_INT_DISABLE
|
|
On some architectures, selecting this setting will reduce driver size
|
|
by disabling interrupt endpoint support
|
|
CONFIG_USBHOST_ISOC_DISABLE
|
|
On some architectures, selecting this setting will reduce driver size
|
|
by disabling isochronous endpoint support
|
|
|
|
USB host HID class driver. Requires CONFIG_USBHOST=y,
|
|
CONFIG_USBHOST_INT_DISABLE=n, CONFIG_NFILE_DESCRIPTORS > 0,
|
|
CONFIG_SCHED_WORKQUEUE=y, and CONFIG_DISABLE_SIGNALS=n.
|
|
|
|
CONFIG_HIDKBD_POLLUSEC
|
|
Device poll rate in microseconds. Default: 100 milliseconds.
|
|
CONFIG_HIDKBD_DEFPRIO
|
|
Priority of the polling thread. Default: 50.
|
|
CONFIG_HIDKBD_STACKSIZE
|
|
Stack size for polling thread. Default: 1024
|
|
CONFIG_HIDKBD_BUFSIZE
|
|
Scancode buffer size. Default: 64.
|
|
CONFIG_HIDKBD_NPOLLWAITERS
|
|
If the poll() method is enabled, this defines the maximum number
|
|
of threads that can be waiting for keyboard events. Default: 2.
|
|
CONFIG_HIDKBD_RAWSCANCODES
|
|
If set to y no conversion will be made on the raw keyboard scan
|
|
codes. Default: ASCII conversion.
|
|
CONFIG_HIDKBD_ALLSCANCODES'
|
|
If set to y all 231 possible scancodes will be converted to
|
|
something. Default: 104 key US keyboard.
|
|
CONFIG_HIDKBD_NODEBOUNCE
|
|
If set to y normal debouncing is disabled. Default:
|
|
Debounce enabled (No repeat keys).
|
|
|
|
USB host mass storage class driver. Requires CONFIG_USBHOST=y,
|
|
CONFIG_USBHOST_BULK_DISABLE=n, CONFIG_NFILE_DESCRIPTORS > 0,
|
|
and CONFIG_SCHED_WORKQUEUE=y
|
|
|
|
USB serial device class driver
|
|
CONFIG_USBSER
|
|
Enable compilation of the USB serial driver
|
|
CONFIG_USBSER_EPINTIN
|
|
The logical 7-bit address of a hardware endpoint that supports
|
|
interrupt IN operation
|
|
CONFIG_USBSER_EPBULKOUT
|
|
The logical 7-bit address of a hardware endpoint that supports
|
|
bulk OUT operation
|
|
CONFIG_USBSER_EPBULKIN
|
|
The logical 7-bit address of a hardware endpoint that supports
|
|
bulk IN operation
|
|
CONFIG_USBSER_NWRREQS and CONFIG_USBSER_NRDREQS
|
|
The number of write/read requests that can be in flight
|
|
CONFIG_USBSER_VENDORID and CONFIG_USBSER_VENDORSTR
|
|
The vendor ID code/string
|
|
CONFIG_USBSER_PRODUCTID and CONFIG_USBSER_PRODUCTSTR
|
|
The product ID code/string
|
|
CONFIG_USBSER_RXBUFSIZE and CONFIG_USBSER_TXBUFSIZE
|
|
Size of the serial receive/transmit buffers
|
|
|
|
USB Storage Device Configuration
|
|
CONFIG_USBSTRG
|
|
Enable compilation of the USB storage driver
|
|
CONFIG_USBSTRG_EP0MAXPACKET
|
|
Max packet size for endpoint 0
|
|
CONFIG_USBSTRGEPBULKOUT and CONFIG_USBSTRG_EPBULKIN
|
|
The logical 7-bit address of a hardware endpoints that support
|
|
bulk OUT and IN operations
|
|
CONFIG_USBSTRG_NWRREQS and CONFIG_USBSTRG_NRDREQS
|
|
The number of write/read requests that can be in flight
|
|
CONFIG_USBSTRG_BULKINREQLEN and CONFIG_USBSTRG_BULKOUTREQLEN
|
|
The size of the buffer in each write/read request. This
|
|
value needs to be at least as large as the endpoint
|
|
maxpacket and ideally as large as a block device sector.
|
|
CONFIG_USBSTRG_VENDORID and CONFIG_USBSTRG_VENDORSTR
|
|
The vendor ID code/string
|
|
CONFIG_USBSTRG_PRODUCTID and CONFIG_USBSTRG_PRODUCTSTR
|
|
The product ID code/string
|
|
CONFIG_USBSTRG_REMOVABLE
|
|
Select if the media is removable
|
|
|
|
Graphics related configuration settings
|
|
|
|
CONFIG_NX
|
|
Enables overall support for graphics library and NX
|
|
CONFIG_NX_MULTIUSER
|
|
Configures NX in multi-user mode
|
|
CONFIG_NX_NPLANES
|
|
Some YUV color formats requires support for multiple planes,
|
|
one for each color component. Unless you have such special
|
|
hardware, this value should be undefined or set to 1.
|
|
CONFIG_NX_DISABLE_1BPP, CONFIG_NX_DISABLE_2BPP,
|
|
CONFIG_NX_DISABLE_4BPP, CONFIG_NX_DISABLE_8BPP,
|
|
CONFIG_NX_DISABLE_16BPP, CONFIG_NX_DISABLE_24BPP, and
|
|
CONFIG_NX_DISABLE_32BPP
|
|
NX supports a variety of pixel depths. You can save some
|
|
memory by disabling support for unused color depths.
|
|
CONFIG_NX_PACKEDMSFIRST
|
|
If a pixel depth of less than 8-bits is used, then NX needs
|
|
to know if the pixels pack from the MS to LS or from LS to MS
|
|
CONFIG_NX_LCDDRIVER
|
|
By default, NX builds to use a framebuffer driver (see
|
|
include/nuttx/fb.h). If this option is defined, NX will
|
|
build to use an LCD driver (see include/nuttx/lcd/lcd.h).
|
|
CONFIG_LCD_MAXPOWER - The full-on power setting for an LCD
|
|
device.
|
|
CONFIG_LCD_MAXCONTRAST - The maximum contrast value for an
|
|
LCD device.
|
|
CONFIG_NX_MOUSE
|
|
Build in support for mouse input.
|
|
CONFIG_NX_KBD
|
|
Build in support of keypad/keyboard input.
|
|
CONFIG_NXTK_BORDERWIDTH
|
|
Specifies with with of the border (in pixels) used with
|
|
framed windows. The default is 4.
|
|
CONFIG_NXTK_BORDERCOLOR1 and CONFIG_NXTK_BORDERCOLOR2
|
|
Specify the colors of the border used with framed windows.
|
|
CONFIG_NXTK_BORDERCOLOR2 is the shadow side color and so
|
|
is normally darker. The default is medium and dark grey,
|
|
respectively
|
|
CONFIG_NXTK_AUTORAISE
|
|
If set, a window will be raised to the top if the mouse position
|
|
is over a visible portion of the window. Default: A mouse
|
|
button must be clicked over a visible portion of the window.
|
|
CONFIG_NXFONTS_CHARBITS
|
|
The number of bits in the character set. Current options are
|
|
only 7 and 8. The default is 7.
|
|
CONFIG_NXFONT_SANS
|
|
At present, there is only one font. But if there were were more,
|
|
then this option would select the sans serif font.
|
|
|
|
NX Multi-user only options:
|
|
|
|
CONFIG_NX_BLOCKING
|
|
Open the client message queues in blocking mode. In this case,
|
|
nx_eventhandler() will never return.
|
|
CONFIG_NX_MXSERVERMSGS and CONFIG_NX_MXCLIENTMSGS
|
|
Specifies the maximum number of messages that can fit in
|
|
the message queues. No additional resources are allocated, but
|
|
this can be set to prevent flooding of the client or server with
|
|
too many messages (CONFIG_PREALLOC_MQ_MSGS controls how many
|
|
messages are pre-allocated).
|
|
|
|
Stack and heap information
|
|
|
|
CONFIG_BOOT_RUNFROMFLASH - Some configurations support XIP
|
|
operation from FLASH but must copy initialized .data sections to RAM.
|
|
CONFIG_BOOT_COPYTORAM - Some configurations boot in FLASH
|
|
but copy themselves entirely into RAM for better performance.
|
|
CONFIG_STACK_POINTER - The initial stack pointer
|
|
CONFIG_IDLETHREAD_STACKSIZE - The size of the initial stack.
|
|
This is the thread that (1) performs the inital boot of the system up
|
|
to the point where user_start() is spawned, and (2) there after is the
|
|
IDLE thread that executes only when there is no other thread ready to
|
|
run.
|
|
CONFIG_USERMAIN_STACKSIZE - The size of the stack to allocate
|
|
for the main user thread that begins at the user_start() entry point.
|
|
CONFIG_PTHREAD_STACK_MIN - Minimum pthread stack size
|
|
CONFIG_PTHREAD_STACK_DEFAULT - Default pthread stack size
|
|
CONFIG_HEAP_BASE - The beginning of the heap
|
|
CONFIG_HEAP_SIZE - The size of the heap
|
|
|
|
setenv.sh -- This is a script that you can include that will be installed at
|
|
the toplevel of the directory structure and can be sourced to set any
|
|
necessary environment variables.
|
|
|
|
Supported Boards
|
|
^^^^^^^^^^^^^^^^
|
|
|
|
configs/avr32dev1
|
|
This is a port of NuttX to the Atmel AVR32DEV1 board. That board is
|
|
based on the Atmel AT32UC3B0256 MCU and uses a specially patched
|
|
version of the GNU toolchain: The patches provide support for the
|
|
AVR32 family. That patched GNU toolchain is available only from the
|
|
Atmel website. STATUS: the ostest configuration is functional, but
|
|
there are issues with the NSH configuration (thought to be a hardware
|
|
configuration issue, but that has not been confirmed).
|
|
|
|
configs/c5471evm
|
|
This is a port to the Spectrum Digital C5471 evaluation board. The
|
|
TMS320C5471 is a dual core processor from TI with an ARM7TDMI general
|
|
purpose processor and a c54 DSP. It is also known as TMS320DA180 or just DA180.
|
|
NuttX runs on the ARM core and is built with a GNU arm-elf toolchain*.
|
|
This port is complete, verified, and included in the NuttX release.
|
|
|
|
configs/demo9s12ne64
|
|
Feescale DMO9S12NE64 board based on the MC9S12NE64 hcs12 cpu. This
|
|
port uses the m9s12x GCC toolchain. STATUS: Under development.
|
|
|
|
configs/ea3131
|
|
Embedded Artists EA3131 Development bard. This board is based on the
|
|
an NXP LPC3131 MCU. This OS is built with the arm-elf toolchain*.
|
|
STATUS: This port is complete and mature.
|
|
|
|
configs/eagle100
|
|
Micromint Eagle-100 Development board. This board is based on the
|
|
an ARM Cortex-M3 MCU, the Luminary LM3S6918. This OS is built with the
|
|
arm-elf toolchain*. STATUS: This port is complete and mature.
|
|
|
|
configs/ez80f0910200kitg
|
|
ez80Acclaim! Microcontroller. This port use the Zilog ez80f0910200kitg
|
|
development kit, eZ80F091 part, and the Zilog ZDS-II Windows command line
|
|
tools. The development environment is Cygwin under WinXP.
|
|
|
|
configs/ez80f0910200zco
|
|
ez80Acclaim! Microcontroller. This port use the Zilog ez80f0910200zco
|
|
development kit, eZ80F091 part, and the Zilog ZDS-II Windows command line
|
|
tools. The development environment is Cygwin under WinXP.
|
|
|
|
configs/lm3s6965-ek
|
|
Stellaris LM3S6965 Evaluation Kit. This board is based on the
|
|
an ARM Cortex-M3 MCU, the Luminary/TI LM3S6965. This OS is built with the
|
|
arm-elf toolchain*. STATUS: This port is complete and mature.
|
|
|
|
configs/m68322evb
|
|
This is a work in progress for the venerable m68322evb board from
|
|
Motorola. This OS is also built with the arm-elf toolchain*. STATUS:
|
|
This port was never completed.
|
|
|
|
configs/mbed
|
|
The configurations in this directory support the mbed board (http://mbed.org)
|
|
that features the NXP LPC1768 microcontroller. This OS is also built
|
|
with the arm-elf toolchain*. STATUS: Contributed.
|
|
|
|
configs/mcu123-lpc214x
|
|
This port is for the NXP LPC2148 as provided on the mcu123.com
|
|
lpc214x development board. This OS is also built with the arm-elf
|
|
toolchain*. The port supports serial, timer0, spi, and usb.
|
|
|
|
configs/mx1ads
|
|
This is a port to the Motorola MX1ADS development board. That board
|
|
is based on the Freescale i.MX1 processor. The i.MX1 is an ARM920T.
|
|
STATUS: This port is nearly code complete but still under development
|
|
(work is stalled until I devote time to the Micromint Eagle-100)
|
|
|
|
configs/ne64badge
|
|
Future Electronics Group NE64 /PoE Badge board based on the
|
|
MC9S12NE64 hcs12 cpu. This port uses the m9s12x GCC toolchain.
|
|
STATUS: Under development.
|
|
|
|
configs/ntosd-dm320
|
|
This port uses the Neuros OSD v1.0 Dev Board with a GNU arm-elf
|
|
toolchain*: see
|
|
|
|
http://wiki.neurostechnology.com/index.php/OSD_1.0_Developer_Home
|
|
|
|
There are some differences between the Dev Board and the currently
|
|
available commercial v1.0 Boards. See
|
|
|
|
http://wiki.neurostechnology.com/index.php/OSD_Developer_Board_v1
|
|
|
|
NuttX operates on the ARM9EJS of this dual core processor.
|
|
STATUS: This port is code complete, verified, and included in the
|
|
NuttX 0.2.1 release.
|
|
|
|
configs/nucleus2g
|
|
This port uses the Nucleus 2G board (with Babel CAN board). This board
|
|
features an NXP LPC1768 processor. See the 2G website (http://www.2g-eng.com/)
|
|
for more information about the Nucleus 2G.
|
|
|
|
configs/olimex-lpc1766stk
|
|
This port uses the Olimex LPC1766-STK board and a GNU GCC toolchain* under
|
|
Linux or Cygwin. STATUS: under development.
|
|
|
|
configs/olimex-lpc2378
|
|
This port uses the Olimex-lpc2378 board and a GNU arm-elf toolchain* under
|
|
Linux or Cygwin. STATUS: ostest and NSH configurations available.
|
|
|
|
configs/olimex-lpc2378
|
|
This port for the NXP LPC2378 was contributed by Rommel Marcelo.
|
|
|
|
configs/olimex-strp711
|
|
This port uses the Olimex STR-P711 board and a GNU arm-elf toolchain* under
|
|
Linux or Cygwin. See the http://www.olimex.com/dev/str-p711.html" for
|
|
further information. STATUS: Coding for the basic port -- serial console
|
|
and system timer -- is complete but untested to problems I am having using
|
|
OpenOCD with a wiggler clone JTAG.
|
|
|
|
configs/pjrc-8051
|
|
8051 Microcontroller. This port uses the PJRC 87C52 development system
|
|
and the SDCC toolchain. This port is not quite ready for prime time.
|
|
|
|
configs/sim
|
|
A user-mode port of NuttX to the x86 Linux platform is available.
|
|
The purpose of this port is primarily to support OS feature development.
|
|
This port does not support interrupts or a real timer (and hence no
|
|
round robin scheduler) Otherwise, it is complete.
|
|
|
|
NOTE: This target will not run on Cygwin probably for many reasons but
|
|
first off because it uses some of the same symbols as does cygwin.dll.
|
|
|
|
configs/skp16c26
|
|
Renesas M16C processor on the Renesas SKP16C26 StarterKit. This port
|
|
uses the GNU m32c toolchain.
|
|
|
|
configs/stm3210e-evel
|
|
STMicrco STM3210E-EVAL development board based on the STMicro STM32F103ZET6
|
|
microcontroller (ARM Cortex-M3). This port uses the GNU Cortex-M3
|
|
toolchain.
|
|
|
|
configs/us7032evb1
|
|
This is a port of the Hitachi SH-1 on the Hitachi SH-1/US7032EVB1 board.
|
|
STATUS: Work has just began on this port.
|
|
|
|
configs/xtrs
|
|
TRS80 Model 3. This port uses a vintage computer based on the Z80.
|
|
An emulator for this computer is available to run TRS80 programs on a
|
|
linux platform (http://www.tim-mann.org/xtrs.html).
|
|
|
|
configs/z16f2800100zcog
|
|
z16f Microcontroller. This port use the Zilog z16f2800100zcog
|
|
development kit and the Zilog ZDS-II Windows command line tools. The
|
|
development environment is Cygwin under WinXP.
|
|
|
|
configs/z80sim
|
|
z80 Microcontroller. This port uses a Z80 instruction set simulator.
|
|
That simulator can be found in the NuttX SVN at
|
|
http://nuttx.svn.sourceforge.net/viewvc/nuttx/trunk/misc/sims/z80sim.
|
|
This port also uses the SDCC toolchain (http://sdcc.sourceforge.net/")
|
|
(verified with version 2.6.0).
|
|
|
|
configs/z8encore000zco
|
|
z8Encore! Microcontroller. This port use the Zilog z8encore000zco
|
|
development kit, Z8F6403 part, and the Zilog ZDS-II Windows command line
|
|
tools. The development environment is Cygwin under WinXP.
|
|
|
|
configs/z8f64200100kit
|
|
z8Encore! Microcontroller. This port use the Zilog z8f64200100kit
|
|
development kit, Z8F6423 part, and the Zilog ZDS-II Windows command line
|
|
tools. The development environment is Cygwin under WinXP.
|
|
|
|
Other ports for the for the TI TMS320DM270, M683222 and for MIPS are in various
|
|
states of progress
|
|
|
|
Configuring NuttX
|
|
^^^^^^^^^^^^^^^^^
|
|
|
|
Configuring NuttX requires only copying
|
|
|
|
configs/<board-name>/<config-dir>/Make.def to ${TOPDIR}/Make.defs
|
|
configs/<board-name>/<config-dir>/setenv.sh to ${TOPDIR}/setenv.sh
|
|
configs/<board-name>/<config-dir>/defconfig to ${TOPDIR}/.config
|
|
|
|
tools/configure.sh
|
|
There is a script that automates these steps. The following steps will
|
|
accomplish the same configuration:
|
|
|
|
cd tools
|
|
./configure.sh <board-name>/<config-dir>
|