安装ARM交叉编译器

1、开发平台

虚拟机:VMware 12

操作系统:Ubuntu 14.04 64bit

2、准备ARM交叉编译工具包

编译uboot和linux kernel都需要ARM交叉工具链支持,这里使用Linaro提供的交叉编译工具。下载地址为:http://releases.linaro.org/

注意:如果主机是64bit,请选择64位的交叉编译器工具链,32bit的主机选择32位的交叉工具链。


The Linaro Toolchain Working Group is pleased to announce this quarter’s release of the Linaro Toolchain Binaries, a pre-built version of Linaro GCC and Linaro GDB that runs on generic Linux or Windows and targets the glibc Linaro Engineering Build.

Beginning 2014.11, Linaro is changing the layout and structure of its prebuilt toolchain binary releases. 2014.11 is the first release built with ABE, adding more maintainable code base and automatic testing. For further details on ABE, please visit https://wiki.linaro.org/ABE.

The folder names above describe the target triplets, i.e. the system on which you want your programs/applications to run. For more details on triplets, please click here.

Inside each folder is also a manifest.txt file further describing the target and host systems meant for the toolchain, plus source component versions.

Essentially, the main folder contents are as follows:

aarch64-linux-gnu

·        gcc-linaro-*x86_64_aarch64-linux-gnu.tar.xz

o   Linux 64-bit binaries for the Aarch64 Linux cross-toolchain

·        gcc-linaro-*i686-mingw32_aarch64-linux-gnu.tar.xz

o   Windows 32-bit binaries for the Aarch64 Linux cross-toolchain

aarch64-none-elf

·        gcc-linaro-*x86_64_aarch64-elf.tar.xz

o   Linux 64-bit binaries for the Aarch64 bare-metal cross-toolchain

·        gcc-linaro-*i686-mingw32_aarch64-elf.tar.xz

o   Windows 32-bit binaries for the Aarch64 bare-metal cross-toolchain

aarch64_be-linux-gnu

·        gcc-linaro-*x86_64_aarch64_be-linux-gnu.tar.xz

o   Linux 64-bit binaries for the Aarch64 Linux Big Endian cross-toolchain

·        gcc-linaro-*i686-mingw32_aarch64_be-linux-gnu.tar.xz

o   Windows 32-bit binaries for the Aarch64 Linux Big Endian cross-toolchain

aarch64_be-none-elf

·        gcc-linaro-*x86_64_aarch64_be-elf.tar.xz

o   Linux 64-bit binaries for the Aarch64 bare-metal Big Endian cross-toolchain

·        gcc-linaro-*i686-mingw32_aarch64_be-elf.tar.xz

o   Windows 32-bit binaries for the Aarch64 bare-metal Big Endian cross-toolchain

arm-linux-gnueabi

·        gcc-linaro-*x86_64_arm-linux-gnueabi.tar.xz

o   Linux 64-bit binaries for the ARMv7 Linux soft float cross-toolchain

·        gcc-linaro-*i686-mingw32_arm-linux-gnueabi.tar.xz

o   Windows 32-bit binaries for the ARMv7 Linux soft float cross-toolchain

arm-linux-gnueabihf

·        gcc-linaro-*x86_64_arm-linux-gnueabihf.tar.xz

o   Linux 64-bit binaries for the ARMv7 Linux hard float cross-toolchain

·        gcc-linaro-*i686-mingw32_arm-linux-gnueabihf.tar.xz

o   Windows 32-bit binaries for the ARMv7 Linux hard float cross-toolchain

arm-none-eabi

·        gcc-linaro-*x86_64_arm-eabi.tar.xz

o   Linux 64-bit binaries for the ARMv7 bare-metal cross-toolchain

·        gcc-linaro-*i686-mingw32_arm-eabi.tar.xz

o   Windows 32-bit binaries for the ARMv7 bare-metal cross-toolchain

armeb-linux-gnueabihf

·        gcc-linaro-*x86_64_armeb-linux-gnueabihf.tar.xz

o   Linux 64-bit binaries for the ARMv7 Linux Big Endian hard float cross-toolchain

·        gcc-linaro-*i686-mingw32_armeb-linux-gnueabihf.tar.xz

o   Windows 32-bit binaries for the ARMv7 Linux Big Endian hard float cross-toolchain

armeb-none-eabi

·        gcc-linaro-*x86_64_armeb-eabi.tar.xz

o   Linux 64-bit binaries for the ARMv7 bare-metal Big Endian cross-toolchain

·        gcc-linaro-*i686-mingw32_armeb-eabi.tar.xz

o   Windows 32-bit binaries for the ARMv7 bare-metal Big Endian cross-toolchain

NOTE

·        The binary source package is no longer distributed as the components are now archived at http://abe.tcwglab.linaro.org/snapshots and downloaded automatically based on manifest.txt when (re)building with ABE.

·        The source package releases for the individual components are still at http://releases.linaro.org/latest/components/toolchain. Select the component (e.g. gcc, glibc, binutils, gdb) as necessary.

·        The binary tarball has been splitted into 3 parts. As a result, you can install only the parts needed:

o   gcc-linaro-*.tar.xz – the compiler and tools

o   runtime-linaro-*.tar.xz – runtime libraries needed on the target

o   sysroot-linaro-*.tar.xz – sysroot (a set of libraries and headers to develop against)

·        Beginning 2014.11, sysroots will use the latest glibc release provided by Linaro engineers in order that users get the latest features and optimizations in the system libraries.

·        Eglibc 2.15 compatible sysroots will no longer be released. Users that require Eglibc 2.15 sysroots that need the latest Linaro GCC compiler should use the previous quarterly released sysroot.

·        x86 (32-bit) Linux host toolchains are no longer provided. x86_64 (64-bit) Linux host toolchains are provided instead.

·        Soft-float targeted toolchains are no longer supported.

笔者使用的ARM交叉工具链版本为gcc-linaro-6.1.1-2016.08-x86_64_arm-linux-gnueabi.tar.xz

下载地址为:

http://releases.linaro.org/components/toolchain/binaries/6.1-2016.08/arm-linux-gnueabi/gcc-linaro-6.1.1-2016.08-x86_64_arm-linux-gnueabi.tar.xz

3、安装步骤

3.1、Ubuntu14.04  64bit系统下安装标准的C开发环境

    sudo apt-get install gcc g++ libgcc1 libg++ make gdb

或者  sudo apt-get install build-essential

3.2、下载gcc-linaro-6.1.1-2016.08-x86_64_arm-linux-gnueabi.tar.xz

1> 在/usr/local/文件夹下建立名为ARM-toolchain的文件夹


$ sudo mkdir /usr/local/ARM-toolchain

2> 下载gcc-linaro-6.1.1-2016.08-x86_64_arm-linux-gnueabi.tar.xz


$ cd /usr/local/ARM-toolchain

sudo wget http://releases.linaro.org/components/toolchain/binaries/6.1-2016.08/ arm-linux-gnueabi/gcc-linaro-6.1.1-2016.08-x86_64_arm-linux-gnueabi.tar.xz

3.3、安装gcc-linaro-6.1.1-2016.08-x86_64_arm-linux-gnueabi

解压gcc-linaro-6.1.1-2016.08-x86_64_arm-linux-gnueabi.tar.xz


$ xz –d gcc-linaro-6.1.1-2016.08-x86_64_arm-linux-gnueabi.tar.xz

$ tar xvf gcc-linaro-6.1.1-2016.08-x86_64_arm-linux-gnueabi.tar

3.4、修改环境变量,把交叉编译器的路径加入到PATH

修改/etc/bash.bashrc文件(此文件只对当前用户适用)

$sudo gedit  /etc/bash.bashrc

然后在文件的末尾空白处加入一下代码:


# Add ARM toolschain path

if [ -d /usr/local/ARM-toolchain/gcc-linaro-6.1.1-2016.08-x86_64_arm-linux-gnueabi ] ; then

PATH= /usr/local/ARM-toolchain/gcc-linaro-6.1.1-2016.08-x86_64_arm-linux-gnueabi/bin:"${PATH}"

fi

3.5、使新的环境变量生效(不用重启电脑)

$ source /etc/bash.bashrc

3.6. 检查是否将路径加入到PATH:

$ echo $PATH

若显示的内容中含有:/usr/local/ARM-toolchain/gcc-linaro-6.1.1-2016.08-x86_64_arm-linux-gnueabi/bin 说明已经将交叉编译器的路径加入PATH。

至此,交叉编译环境安装完成。

3.7. 测试是否安装成功

$ arm-linux-gnueabi-gcc -v

执行上面的命令,显示arm-linux-gnueabi-gcc -v信息和版本:


$ arm-linux-gnueabi-gcc -v

Using built-in specs.

COLLECT_GCC=arm-linux-gnueabi-gcc

COLLECT_LTO_WRAPPER=/usr/local/ARM-toolchain/gcc-linaro-6.1.1-2016.08-x86_64_arm-linux-gnueabi/bin/../libexec/gcc/arm-linux-gnueabi/6.1.1/lto-wrapper

Target: arm-linux-gnueabi

Configured with: /home/tcwg-buildslave/workspace/tcwg-make-release/label/docker-trusty-amd64-tcwg/target/arm-linux-gnueabi/snapshots/gcc-linaro-6.1-2016.08/configure SHELL=/bin/bash --with-mpc=/home/tcwg-buildslave/workspace/tcwg-make-release/label/docker-trusty-amd64-tcwg/target/arm-linux-gnueabi/_build/builds/destdir/x86_64-unknown-linux-gnu --with-mpfr=/home/tcwg-buildslave/workspace/tcwg-make-release/label/docker-trusty-amd64-tcwg/target/arm-linux-gnueabi/_build/builds/destdir/x86_64-unknown-linux-gnu --with-gmp=/home/tcwg-buildslave/workspace/tcwg-make-release/label/docker-trusty-amd64-tcwg/target/arm-linux-gnueabi/_build/builds/destdir/x86_64-unknown-linux-gnu --with-gnu-as --with-gnu-ld --disable-libstdcxx-pch --disable-libmudflap --with-cloog=no --with-ppl=no --with-isl=no --disable-nls --enable-c99 --enable-gnu-indirect-function --with-tune=cortex-a9 --with-arch=armv7-a --with-fpu=vfpv3-d16 --with-float=softfp --with-mode=thumb --disable-multilib --enable-multiarch --with-build-sysroot=/home/tcwg-buildslave/workspace/tcwg-make-release/label/docker-trusty-amd64-tcwg/target/arm-linux-gnueabi/_build/sysroots/arm-linux-gnueabi --enable-lto --enable-linker-build-id --enable-long-long --enable-shared --with-sysroot=/home/tcwg-buildslave/workspace/tcwg-make-release/label/docker-trusty-amd64-tcwg/target/arm-linux-gnueabi/_build/builds/destdir/x86_64-unknown-linux-gnu/arm-linux-gnueabi/libc --enable-languages=c,c++,fortran,lto --enable-checking=release --disable-bootstrap --build=x86_64-unknown-linux-gnu --host=x86_64-unknown-linux-gnu --target=arm-linux-gnueabi --prefix=/home/tcwg-buildslave/workspace/tcwg-make-release/label/docker-trusty-amd64-tcwg/target/arm-linux-gnueabi/_build/builds/destdir/x86_64-unknown-linux-gnu

Thread model: posix

gcc version 6.1.1 20160711 (Linaro GCC 6.1-2016.08)

时间: 2024-10-20 06:42:20

安装ARM交叉编译器的相关文章

ubuntu 10.04 安装arm交叉编译器

家里有一台cotext-A9(armv7-a) 的盒子,现在不用了, 一直想着废物利用.于是想怎么为这盒子编译程序. 目标机器: [email protected]:/# uname -a Linux routon-h1 2.6.34 #3 SMP Mon Oct 29 19:01:06 CST 2012 armv7l GNU/Linux 装了一台 ubuntu 10.04 X86 的虚拟机 [email protected]:~# uname -a Linux ubuntu 2.6.32-38

linux下ARM交叉编译器的安装

1.下载arm-linux-gcc编译器. 2.将下载好的编译器压缩文件拷贝到linux中,注意不要在windows中解压,因为RAR解压工具解压gzip压缩工具压缩的文件可能会出问题. 尽量将编译器的压缩文件放置到根目录下(其实也不一定是要根目录,但是我自己使用过程中发现有一个厂家提供的编译器没有安装在指定的位置,编译器提示库找不到),这样做的目的是为了尽量减少麻烦.拷贝好之后,在终端使用: # tar xvzf arm-linux-gcc-4.4.3.tar.gz 解压编译器. 3.解压好了

[转载]arm交叉编译器gnueabi、none-eabi、arm-eabi、gnueabihf、gnueabi区别

arm交叉编译器gnueabi.none-eabi.arm-eabi.gnueabihf.gnueabi区别 (http://www.veryarm.com/296.html) 命名规则 交叉编译工具链的命名规则为:arch [-vendor] [-os] [-(gnu)eabi] arch - 体系架构,如ARM,MIPS vendor - 工具链提供商 os - 目标操作系统 eabi - 嵌入式应用二进制接口(Embedded Application Binary Interface) 根

Linux ARM交叉编译器设定

在Host PC (x86)下编译ARM的应用时需要使用ARM交叉编译器, 虽然可以从头编译相关工具,但是实在是太麻烦了,而且一般都没有这必要. 目前可以使用的已编译好的二进制文件主要是由Mentor Graphics提供. 主要步骤如下: 1. 下载相关的软件包 $ wget https://sourcery.mentor.com/GNUToolchain/package12813/public/arm-none-linux-gnueabi/arm-2014.05-29-arm-none-li

安装arm-linux-gcc交叉编译器

1.开发平台 虚拟机:VMware 12 操作系统:Ubuntu 14.04 2.准备交叉编译工具包(arm-linux-gcc-4.5.1) 编译uboot和linux kernel都需要gnu交叉工具链支持,这里使用友善之臂提供的arm-linux-gcc-4.5.1-v6-vfp-20120301版交叉编译工具.使用eabi版本有诸多优势,具体大家可以到网上搜索,此文档以在ubuntu中安装arm-linux-gcc-4.5.1-v6-vfp-20120301为主要内容. 3.安装步骤 3

arm交叉编译器gnueabi、none-eabi、arm-eabi、gnueabihf的区别

命名规则 交叉编译工具链的命名规则为:arch [-vendor] [-os] [-(gnu)eabi] [-gcc] arch – 体系架构,如ARM,MIPS vendor – 工具链提供商 os – 目标操作系统 eabi – 嵌入式应用二进制接口(Embedded Application Binary Interface) 注意 没有vendor时,用none代替: 没有os支持时,也用none代替 同进没有vendor和os支持时,只用一个none代替,比如arm-none-eabi中

【转】arm交叉编译器gnueabi、none-eabi、arm-eabi、gnueabihf、gnueabi区别

原文网址:http://www.veryarm.com/296.html 命名规则 交叉编译工具链的命名规则为:arch [-vendor] [-os] [-(gnu)eabi] arch - 体系架构,如ARM,MIPS vendor - 工具链提供商 os - 目标操作系统 eabi - 嵌入式应用二进制接口(Embedded Application Binary Interface) 根据对操作系统的支持与否,ARM GCC可分为支持和不支持操作系统,如 arm-none-eabi:这个是

arm交叉编译器gnueabi、none-eabi、arm-eabi、gnueabihf、gnueabi区别

命名规则 交叉编译工具链的命名规则为:arch [-vendor] [-os] [-(gnu)eabi] arch – 体系架构,如ARM,MIPS vendor – 工具链提供商 os – 目标操作系统 eabi – 嵌入式应用二进制接口(Embedded Application Binary Interface) 根据对操作系统的支持与否,ARM GCC可分为支持和不支持操作系统,如 arm-none-eabi:这个是没有操作系统的,自然不可能支持那些跟操作系统关系密切的函数,比如fork(

ARM交叉编译器GNUEABI、NONE-EABI、ARM-EABI、GNUEABIHF等的区别

命名规则: 交叉编译工具链的命名规则为:arch [-vendor] [-os] [-(gnu)eabi] arch - 体系架构,如ARM,MIPS verdor - 工具链提供商 os - 目标操作系统 eabi - 嵌入式应用二进制接口 根据对操作系统的支持与否,ARM GCC可分为支持和不支持操作系统,如 arm-none-eabi:这个是没有操作系统的,自然不可能支持那些跟操作系统关系密切的函数,比如fork(2).他使用的是newlib这个专用于嵌 入式系统的C库. arm-none