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Fredrik Fornwall 150f95af27 Fix rpl_malloc when cross compiling
Work around rpl_malloc being used, see
http://wiki.buici.com/xwiki/bin/view/Programing+C+and+C%2B%2B/Autoconf+and+RPL_MALLOC
for more information:

"The AC_FUNC_MALLOC macro makes sure that the malloc function when passed a zero
argument returns a valid memory block instead of a NULL pointer. This behaviour
conforms to the GNU C library.  Normally, this is a reasonable test that autoconf
makes at build-time. In the case of cross-compilation, however, autoconf cannot
execute a program to verify proper behavior.  It makes the conservative assumption
that the target library will produce non-conforming code.

Failure of this test causes autconf to replace malloc() calls with rpl_malloc()
calls. At link time, if there is no rpl_malloc() function, the linker will fail
with an error describing the missing symbol. The autoconf documentation recommends
adding this harmless code to the application to implement the function."

In Termux the rpl_malloc() usage is useless at best, and may also prevent building
some packages as well as giving runtime crashes for libgc-using packages or others
expecting to intercept malloc.

Previously some packages specified worked around this themselves, but the configure
arguments are now moved into build-package.sh.
2015-11-15 16:04:37 -05:00
disabled-packages zile: Add information about current problem 2015-11-14 18:08:04 -05:00
ndk_patches Patch NDK to define AT_EACCESS to 0 2015-10-19 17:51:13 -04:00
packages Fix rpl_malloc when cross compiling 2015-11-15 16:04:37 -05:00
Dockerfile Added php5-cli to Dockerfile 2015-11-11 21:24:31 +01:00
README.md Fix rpl_malloc when cross compiling 2015-11-15 16:04:37 -05:00
build-all.sh Do not take path as argument for buildorder.py 2015-07-04 09:00:46 -04:00
build-package.sh Fix rpl_malloc when cross compiling 2015-11-15 16:04:37 -05:00
buildorder.py buildorder.py: Workaround libandroid-support-dev 2015-11-14 19:16:55 -05:00
check-pie.sh Initial push 2015-06-13 01:03:31 +02:00
check-versions.sh Initial push 2015-06-13 01:03:31 +02:00
clean-rebuild-all.sh Initial push 2015-06-13 01:03:31 +02:00
detect-hardlinks.sh detect-hardlinks.sh: Show which files are hard links 2015-10-11 11:32:19 -04:00
install-sdk.sh Update to android build-tools 23.0.0 2015-08-18 05:33:53 -04:00
list-packages.sh Make list-packages.sh be runnable by sh 2015-07-04 08:57:12 -04:00
termux.spec Initial push 2015-06-13 01:03:31 +02:00
ubuntu-setup.sh ubuntu-setup.sh: No need for mercurial after vim update 2015-08-25 17:48:18 -04:00

README.md

termux-packages

This project contains scripts and patches to cross compile and package packages for the Termux Android application.

The scripts and patches to build each package is licensed under the same license as the actual package (so the patches and scripts to build bash are licensed under the same license as bash, while the patches and scripts to build python are licensed under the same license as python, etc).

NOTE: This is in a rough state - be prepared for some work and frustrations, and give feedback if you find incorrect our outdated things!

Initial setup

Building packages are for now only tested to work on Ubuntu 15.04. Perform the following setup steps:

  • Run ubuntu-setup.sh to install required packages and setup the /data/ folder (see below).

  • Install the Android SDK at $HOME/lib/android-sdk. Override this by setting the environment variable $ANDROID_HOME to point at another location.

  • Install the Android NDK, version r10e, at $HOME/lib/android-ndk. Override this by setting the environment variable $NDK to point at another location.

Alternatively a Dockerfile is provided which sets up a pristine image suitable for building packages. To build the docker image, run the following command:

docker build --rm=true -t termux .

After build is successful, you can open an interactive prompt inside the container using:

docker run --rm=true -ti termux /bin/bash

Building a package

In a non-rooted Android device an app such as Termux may not write to system locations, which is why every package is installed inside the private file area of the Termux app:

PREFIX=/data/data/com.termux/files/usr

For simplicity while developing and building, the build scripts here assume that a /data folder is reserved for use on the host builder and install everything there.

The basic flow is then to run "./build-package.sh $PKG", which:

  • Sets up a patched stand-alone Android NDK toolchain

  • Reads packages/$PKG/build.sh to find out where to find the source code of the package and how to build it.

  • Applies all patches in packages/$PKG/*.patch

  • Builds the package and installs it to $PREFIX

  • Creates a dpkg package file for distribution.

Reading and following build-package.sh is the best way to understand what's going on here.

Additional utilities

  • build-all.sh: used for building all packages in the correct order (using buildorder.py)

  • check-pie.sh: Used for verifying that all binaries are using PIE, which is required for Android 5+

  • detect-hardlinks.sh: Used for finding if any packages uses hardlinks, which does not work on Android M

  • check-versions.sh: used for checking for package updates

  • clean-rebuild-all.sh: used for doing a clean rebuild of all packages (takes a couple of hours)

  • list-packages.sh: used for listing all packages with a one-line summary

Resources about cross-compiling packages

Common porting problems

  • The Android bionic libc does not have iconv and gettext/libintl functionality built in. A package from the NDK, libandroid-support, contains these and may be used by all packages.

  • "error: z: no archive symbol table (run ranlib)" usually means that the build machines libz is used instead of the one for cross compilation, due to the builder library -L path being setup incorrectly

  • rindex(3) is defined in <strings.h> but does not exist in NDK, but strrchr(3) from <string.h> is preferred anyway

  • <sys/termios.h> does not exist, but <termios.h> is the standard location.

  • <sys/fcntl.h> does not exist, but <fcntl.h> is the standard location.

  • glob(3) system function (glob.h) - not in bionic, but use the libandroid-glob package

  • cmake and cross compiling: http://www.cmake.org/Wiki/CMake_Cross_Compiling CMAKE_FIND_ROOT_PATH=$TERMUX_PREFIX to search there. CMAKE_FIND_ROOT_PATH_MODE_LIBRARY=ONLY and CMAKE_FIND_ROOT_PATH_MODE_INCLUDE=ONLY for only searching there and don't fall back to build machines

  • Android is removing sys/timeb.h because it was removed in POSIX 2008, but ftime(3) can be replaced with gettimeofday(2)

  • mempcpy(3) is a GNU extension. We have added it to <string.h> provided TERMUX_EXPOSE_MEMPCPY is defined, so use something like CFLAGS+=" -DTERMUX_EXPOSE_MEMPCPY=1" for packages expecting that function to exist.

dlopen() and RTLD_* flags

<dlfcn.h> declares

enum { RTLD_NOW=0, RTLD_LAZY=1, RTLD_LOCAL=0, RTLD_GLOBAL=2,       RTLD_NOLOAD=4}; // 32-bit
enum { RTLD_NOW=2, RTLD_LAZY=1, RTLD_LOCAL=0, RTLD_GLOBAL=0x00100, RTLD_NOLOAD=4}; // 64-bit

These differs from glibc ones in that

  1. They are not preprocessor #define:s so cannot be checked for with #ifdef RTLD_GLOBAL (dln.c in ruby does this)
  2. They differ in value from glibc ones, so cannot be hardcoded in files (DLFCN.py in python does this)
  3. They are missing some values (RTLD_BINDING_MASK, RTLD_NOLOAD, ...)

RPATH, LD_LIBRARY_PATH AND RUNPATH

On desktop linux the linker searches for shared libraries in:

  1. RPATH - a list of directories which is linked into the executable, supported on most UNIX systems. It is ignored if RUNPATH is present.
  2. LD_LIBRARY_PATH - an environment variable which holds a list of directories
  3. RUNPATH - same as RPATH, but searched after LD_LIBRARY_PATH, supported only on most recent UNIX systems

The Android linker (/system/bin/linker) does not support RPATH or RUNPATH, so we set LD_LIBRARY_PATH=$USR/lib and try to avoid building useless rpath entries with --disable-rpath configure flags. Another option to avoid depending on LD_LIBRARY_PATH would be supplying a custom linker - this is not done due to the overhead of maintaining a custom linker.

Warnings about unused DT entries

Starting from 5.1 the Android linker warns about VERNEED (0x6FFFFFFE) and VERNEEDNUM (0x6FFFFFFF) ELF dynamic sections:

WARNING: linker: $BINARY: unused DT entry: type 0x6ffffffe arg ...
WARNING: linker: $BINARY: unused DT entry: type 0x6fffffff arg ...

These may come from version scripts in a Makefile such as:

-Wl,--version-script=$(top_srcdir)/proc/libprocps.sym

The termux-elf-cleaner utilty is run from build-package.sh and should normally take care of that problem.