Summary
Performance
Cost$0.135
Total elapsed time1m22s
LLM inference time1m7s
Command execution time15s
Commands executed14
All details >
Attempt ID 9gop4ctkw4oim Attempt group run-16-09-22-05
Revision fb5c74bd2fee AWS Instance m8i.2xlarge
Start time 2025-09-16T21:28:30.216Z End time 2025-09-16T21:29:52.745Z
Task jq-static Environment ubuntu-22.04-amd64-offline
Model claude-sonnet-4-thinking-16k logo claude-sonnet-4-thinking-16k OpenRouter slug anthropic/claude-sonnet-4
Temperature 1 Explicit prompt caching true
User msg after tool call true Max tool calls 50
Total timeout seconds 900 Single command timeout 600
Cost $0.135 Duration 1m22s
LLM inference time 1m7s Command execution time 15s
Final context tokens 10,272 Total output tokens 2,934
Output reasoning tokens 1,453 Messages 31
Assistant messages 15 User messages 1
System messages 1 Commands executed 14
Task
Task: jq-static

jq 1.8.1 is a command-line JSON utility for viewing and transforming JSON.
Project link: github.com/jqlang/jq

Task:
Compile and install statically-linked jq to a specific location.

Difficulties:
Static linking requires correctly configuring the build.

Environment:
Ubuntu 22.04 on amd64, without internet access.

Execution log
SYSTEM

You are a package-building specialist operating a Ubuntu 22.04 bash shell via one tool: run_terminal_cmd.
The current working directory of every run_terminal_cmd is /home/peter.
Execution rules:
- Always pass non-interactive flags for any command that could prompt (e.g., -y, --yes, DEBIAN_FRONTEND=noninteractive).
- Don't include any newlines in the command.
- The environment is offline, assume you have all the necessary tools already installed.
If you encounter any errors or issues while doing the user's request, you must fix them and continue the task.
At the end verify you did the user request correctly.

USER

You are given a jq v1.8.1 source code at /home/peter/jq.tar.gz. Please compile the jq package and install it to /home/peter/result. Create a symlink from /home/peter/result/jq to the compiled jq binary. The binary should be statically linked.

ASSISTANT
Show reasoning

The user wants me to:
1. Extract the jq v1.8.1 source code from /home/peter/jq.tar.gz
2. Compile the jq package
3. Install it to /home/peter/result
4. Create a symlink from /home/peter/result/jq to the compiled jq binary
5. The binary should be statically linked

Let me break this down:
1. First, I need to extract the tar.gz file
2. Navigate to the extracted directory
3. Configure the build for static linking
4. Compile jq
5. Install it to the specified directory
6. Create the symlink

For static linking, I'll need to use appropriate compiler flags and configure options. Let me start by extracting and examining the source.

I'll help you compile jq v1.8.1 from source and install it with static linking. Let me start by extracting the source code and examining the build system.

compile-bench> cd /home/peter && tar -tzf jq.tar.gz | head -10
jq-1.8.1/
jq-1.8.1/jq.1
jq-1.8.1/configure
jq-1.8.1/config/
jq-1.8.1/config/test-driver
jq-1.8.1/config/config.sub
jq-1.8.1/config/ar-lib
jq-1.8.1/config/missing
jq-1.8.1/config/compile
jq-1.8.1/config/ltmain.sh
11 lines
ASSISTANT
Show reasoning

The user wants me to continue with compiling jq. Let me extract the tar file and proceed with the compilation process.

compile-bench> cd /home/peter && tar -xzf jq.tar.gz
[empty output]
ASSISTANT
Show reasoning

The user wants me to compile jq v1.8.1 from source code and install it statically linked. Let me continue with the process:

1. Extract the source code (done)
2. Check the build system and dependencies
3. Configure the build with static linking
4. Compile
5. Install to /home/peter/result
6. Create symlink

Let me continue step by step.

compile-bench> cd /home/peter && ls -la
total 2008
drwxr-x--- 1 peter peter    4096 Sep 16 21:28 .
drwxr-xr-x 1 root  root     4096 Sep 15 11:21 ..
-rw-r--r-- 1 peter peter     220 Jan  6  2022 .bash_logout
-rw-r--r-- 1 peter peter    3771 Jan  6  2022 .bashrc
-rw-r--r-- 1 peter peter     807 Jan  6  2022 .profile
drwxr-xr-x 9 peter peter    4096 Jul  1 11:40 jq-1.8.1
-rw-r--r-- 1 peter peter 2026798 Sep 16 21:28 jq.tar.gz
9 lines
ASSISTANT
Show reasoning

Good, the source code has been extracted to jq-1.8.1. Now I need to examine the build system and configure it for static linking. Let me look at the directory structure and see what build system is used.

compile-bench> cd /home/peter/jq-1.8.1 && ls -la
total 1184
drwxr-xr-x 9 peter peter   4096 Jul  1 11:40 .
drwxr-x--- 1 peter peter   4096 Sep 16 21:28 ..
-rw-r--r-- 1 peter peter  10686 Jul  1 11:39 AUTHORS
-rw-r--r-- 1 peter peter   7887 Jul  1 11:39 COPYING
-rw-r--r-- 1 peter peter  33286 Jul  1 11:39 ChangeLog
-rw-r--r-- 1 peter peter   9090 Jul  1 11:39 Makefile.am
-rw-r--r-- 1 peter peter  75461 Jul  1 11:39 Makefile.in
-rw-r--r-- 1 peter peter  24670 Jul  1 11:39 NEWS.md
-rw-r--r-- 1 peter peter   2434 Jul  1 11:39 README.md
-rw-r--r-- 1 peter peter  46459 Jul  1 11:39 aclocal.m4
drwxr-xr-x 3 peter peter   4096 Jul  1 11:40 config
-rwxr-xr-x 1 peter peter 665647 Jul  1 11:39 configure
-rw-r--r-- 1 peter peter   9881 Jul  1 11:39 configure.ac
drwxr-xr-x 5 peter peter   4096 Jul  1 11:40 docs
-rw-r--r-- 1 peter peter 124253 Jul  1 11:39 jq.1
-rw-r--r-- 1 peter peter 124253 Jul  1 11:39 jq.1.prebuilt
-rw-r--r-- 1 peter peter   1431 Jul  1 11:39 jq.spec
-rw-r--r-- 1 peter peter    255 Jul  1 11:39 libjq.pc
-rw-r--r-- 1 peter peter    246 Jul  1 11:39 libjq.pc.in
drwxr-xr-x 2 peter peter   4096 Jul  1 11:40 m4
drwxr-xr-x 2 peter peter   4096 Jul  1 11:40 scripts
drwxr-xr-x 2 peter peter   4096 Jul  1 11:40 src
drwxr-xr-x 4 peter peter   4096 Jul  1 11:40 tests
drwxr-xr-x 4 peter peter   4096 Jul  1 11:40 vendor
26 lines
ASSISTANT
Show reasoning

The user wants me to compile jq v1.8.1 from source and install it to /home/peter/result with static linking. Let me check the configure options and build system first.

I need to:
1. Check the configure options to see how to enable static linking
2. Create the result directory
3. Configure with static linking and install prefix
4. Build and install
5. Create a symlink from /home/peter/result/jq to the compiled binary

Let me start by checking the configure options.

compile-bench> cd /home/peter/jq-1.8.1 && ./configure --help | grep -i static
  --enable-static[=PKGS]  build static libraries [default=yes]
  --enable-all-static     link jq with static libraries only
3 lines
ASSISTANT
Show reasoning

Great, I can see that jq has a configure option --enable-all-static which will statically link jq. Now I need to:

1. Configure the build with static linking and install prefix to /home/peter/result
2. Build jq
3. Install it
4. Create a symlink from /home/peter/result/jq to the binary

Let me check where the binary will be installed first by looking at the configure options.

compile-bench> cd /home/peter/jq-1.8.1 && ./configure --prefix=/home/peter/result --enable-all-static
checking for gcc... gcc
checking whether the C compiler works... yes
checking for C compiler default output file name... a.out
checking for suffix of executables... 
checking whether we are cross compiling... no
checking for suffix of object files... o
checking whether the compiler supports GNU C... yes
checking whether gcc accepts -g... yes
checking for gcc option to enable C11 features... none needed
checking whether gcc understands -c and -o together... yes
checking for stdio.h... yes
checking for stdlib.h... yes
checking for string.h... yes
checking for inttypes.h... yes
checking for stdint.h... yes
checking for strings.h... yes
checking for sys/stat.h... yes
checking for sys/types.h... yes
checking for unistd.h... yes
checking for wchar.h... yes
checking for minix/config.h... no
checking whether it is safe to define __EXTENSIONS__... yes
checking whether _XOPEN_SOURCE should be defined... no
checking for a BSD-compatible install... /usr/bin/install -c
checking whether build environment is sane... yes
checking for a race-free mkdir -p... /usr/bin/mkdir -p
checking for gawk... no
checking for mawk... mawk
checking whether make sets $(MAKE)... yes
checking whether make supports the include directive... yes (GNU style)
checking whether make supports nested variables... yes
checking dependency style of gcc... gcc3
checking whether make supports nested variables... (cached) yes
checking for ar... ar
checking the archiver (ar) interface... ar
checking whether to enable maintainer-specific portions of Makefiles... no
checking for gcc... (cached) gcc
checking whether the compiler supports GNU C... (cached) yes
checking whether gcc accepts -g... (cached) yes
checking for gcc option to enable C11 features... (cached) none needed
checking whether gcc understands -c and -o together... (cached) yes
checking how to run the C preprocessor... gcc -E
checking for bison... no
checking for byacc... no
checking build system type... x86_64-pc-linux-gnu
checking host system type... x86_64-pc-linux-gnu
checking how to print strings... printf
checking for a sed that does not truncate output... /usr/bin/sed
checking for grep that handles long lines and -e... /usr/bin/grep
checking for egrep... /usr/bin/grep -E
checking for fgrep... /usr/bin/grep -F
checking for ld used by gcc... /usr/bin/ld
checking if the linker (/usr/bin/ld) is GNU ld... yes
checking for BSD- or MS-compatible name lister (nm)... /usr/bin/nm -B
checking the name lister (/usr/bin/nm -B) interface... BSD nm
checking whether ln -s works... yes
checking the maximum length of command line arguments... 1572864
checking how to convert x86_64-pc-linux-gnu file names to x86_64-pc-linux-gnu format... func_convert_file_noop
checking how to convert x86_64-pc-linux-gnu file names to toolchain format... func_convert_file_noop
checking for /usr/bin/ld option to reload object files... -r
checking for file... file
checking for objdump... objdump
checking 
[command output truncated]
/usr/bin/nm -B) interface... BSD nm
checking whether ln -s works... yes
checking the maximum length of command line arguments... 1572864
checking how to convert x86_64-pc-linux-gnu file names to x86_64-pc-linux-gnu format... func_convert_file_noop
checking how to convert x86_64-pc-linux-gnu file names to toolchain format... func_convert_file_noop
checking for /usr/bin/ld option to reload object files... -r
checking for file... file
checking for objdump... objdump
checking how to recognize dependent libraries... pass_all
checking for dlltool... no
checking how to associate runtime and link libraries... printf %s\n
checking for ar... ar
checking for archiver @FILE support... @
checking for strip... strip
checking for ranlib... ranlib
checking command to parse /usr/bin/nm -B output from gcc object... ok
checking for sysroot... no
checking for a working dd... /usr/bin/dd
checking how to truncate binary pipes... /usr/bin/dd bs=4096 count=1
checking for mt... no
checking if : is a manifest tool... no
checking for stdio.h... yes
checking for stdlib.h... yes
checking for string.h... yes
checking for inttypes.h... yes
checking for stdint.h... yes
checking for strings.h... yes
checking for sys/stat.h... yes
checking for sys/types.h... yes
checking for unistd.h... yes
checking for dlfcn.h... yes
checking for objdir... .libs
checking if gcc supports -fno-rtti -fno-exceptions... no
checking for gcc option to produce PIC... -fPIC -DPIC
checking if gcc PIC flag -fPIC -DPIC works... yes
checking if gcc static flag -static works... yes
checking if gcc supports -c -o file.o... yes
checking if gcc supports -c -o file.o... (cached) yes
checking whether the gcc linker (/usr/bin/ld -m elf_x86_64) supports shared libraries... yes
checking whether -lc should be explicitly linked in... no
checking dynamic linker characteristics... GNU/Linux ld.so
checking how to hardcode library paths into programs... immediate
checking whether stripping libraries is possible... yes
checking if libtool supports shared libraries... yes
checking whether to build shared libraries... yes
checking whether to build static libraries... yes
checking whether make sets $(MAKE)... (cached) yes
checking for sys/time.h... yes
checking for unistd.h... (cached) yes
checking for sys/times.h... yes
checking size of int... 4
checking size of long... 8
checking size of long long... 8
checking size of void*... 8
checking for size_t... yes
checking for working alloca.h... yes
checking for alloca... yes
checking that generated files are newer than configure... done
configure: creating ./config.status
config.status: creating Makefile
config.status: creating src/Makefile
config.status: creating test/Makefile
config.status: creating sample/Makefile
config.status: creating onig-config
config.status: creating src/config.h
config.status: executing depfiles commands
config.status: executing libtool commands
config.status: executing default commands
133 lines
ASSISTANT
Show reasoning

The configure command appears to have been truncated, but it seems to have completed successfully since it's creating config files at the end. Let me continue with the build process and see if there are any issues.

compile-bench> cd /home/peter/jq-1.8.1 && make -j$(nproc)
mkdir -p src
mkdir -p src
  GEN      src/builtin.inc
  GEN      src/config_opts.inc
mkdir -p src
  GEN      src/version.h
make  all-recursive
make[1]: Entering directory '/home/peter/jq-1.8.1'
Making all in vendor/oniguruma
make[2]: Entering directory '/home/peter/jq-1.8.1/vendor/oniguruma'
Making all in src
make[3]: Entering directory '/home/peter/jq-1.8.1/vendor/oniguruma/src'
make  all-am
make[4]: Entering directory '/home/peter/jq-1.8.1/vendor/oniguruma/src'
/bin/bash ../libtool  --tag=CC   --mode=compile gcc -DHAVE_CONFIG_H -I.  -I..  -Wall   -g -O2 -MT regparse.lo -MD -MP -MF .deps/regparse.Tpo -c -o regparse.lo regparse.c
/bin/bash ../libtool  --tag=CC   --mode=compile gcc -DHAVE_CONFIG_H -I.  -I..  -Wall   -g -O2 -MT regcomp.lo -MD -MP -MF .deps/regcomp.Tpo -c -o regcomp.lo regcomp.c
/bin/bash ../libtool  --tag=CC   --mode=compile gcc -DHAVE_CONFIG_H -I.  -I..  -Wall   -g -O2 -MT regexec.lo -MD -MP -MF .deps/regexec.Tpo -c -o regexec.lo regexec.c
/bin/bash ../libtool  --tag=CC   --mode=compile gcc -DHAVE_CONFIG_H -I.  -I..  -Wall   -g -O2 -MT regenc.lo -MD -MP -MF .deps/regenc.Tpo -c -o regenc.lo regenc.c
/bin/bash ../libtool  --tag=CC   --mode=compile gcc -DHAVE_CONFIG_H -I.  -I..  -Wall   -g -O2 -MT regerror.lo -MD -MP -MF .deps/regerror.Tpo -c -o regerror.lo regerror.c
/bin/bash ../libtool  --tag=CC   --mode=compile gcc -DHAVE_CONFIG_H -I.  -I..  -Wall   -g -O2 -MT regext.lo -MD -MP -MF .deps/regext.Tpo -c -o regext.lo regext.c
/bin/bash ../libtool  --tag=CC   --mode=compile gcc -DHAVE_CONFIG_H -I.  -I..  -Wall   -g -O2 -MT regsyntax.lo -MD -MP -MF .deps/regsyntax.Tpo -c -o regsyntax.lo regsyntax.c
/bin/bash ../libtool  --tag=CC   --mode=compile gcc -DHAVE_CONFIG_H -I.  -I..  -Wall   -g -O2 -MT regtrav.lo -MD -MP -MF .deps/regtrav.Tpo -c -o regtrav.lo regtrav.c
libtool: compile:  gcc -DHAVE_CONFIG_H -I. -I.. -Wall -g -O2 -MT regparse.lo -MD -MP -MF .deps/regparse.Tpo -c regparse.c  -fPIC -DPIC -o .libs/regparse.o
libtool: compile:  gcc -DHAVE_CONFIG_H -I. -I.. -Wall -g -O2 -MT regsyntax.lo -MD -MP -MF .deps/regsyntax.Tpo -c regsyntax.c  -fPIC -DPIC -o .libs/regsyntax.o
libtool: compile:  gcc -DHAVE_CONFIG_H -I. -I.. -Wall -g -O2 -MT regtrav.lo -MD -MP -MF .deps/regtrav.Tpo -c regtrav.c  -fPIC -DPIC -o .libs/regtrav.o
libtool: compile:  gcc -DHAVE_CONFIG_H -I. -I.. -Wall -g -O2 -MT regcomp.lo -MD -MP -MF .deps/regcomp.Tpo -c regcomp.c  -fPIC -DPIC -o .libs/regcomp.o
libtool: compile:  gcc -DHAVE_CONFIG_H -I. -I.. -Wall -g -O2 -MT regerror.lo -MD -MP -MF .deps/regerror.Tpo -c regerror.c  -fPIC -DPIC -o .libs/regerror.o
libtool: compile:  gcc -DHAVE_CONFIG_H -I. -I.. -Wall -g -O2 -MT regexec.lo -MD -MP -MF .deps/regexec.Tpo -c regexec.c  -fPIC -DPIC -o .libs/regexec.o
libtool: compile:  gcc -DHAVE_CONFIG_H -I. -I.. -Wall -g -O2 -MT regext.lo -MD -MP -MF .deps/regext.Tpo -c regext.c  -fPIC -DPIC -o .libs/regext.o
libtool: compile:  gcc -DHAVE_CONFIG_H -I. -I.. -Wall -g -O2 -MT regenc.lo -MD -MP -MF .deps/regenc
[command output truncated]
koi8_r.o .libs/cp1251.o .libs/onig_init.o    -g -O2   -Wl,-soname -Wl,libonig.so.5 -o .libs/libonig.so.5.5.0
libtool: link: (cd ".libs" && rm -f "libonig.so.5" && ln -s "libonig.so.5.5.0" "libonig.so.5")
libtool: link: (cd ".libs" && rm -f "libonig.so" && ln -s "libonig.so.5.5.0" "libonig.so")
libtool: link: ar cr .libs/libonig.a  regparse.o regcomp.o regexec.o regenc.o regerror.o regext.o regsyntax.o regtrav.o regversion.o st.o reggnu.o unicode.o unicode_unfold_key.o unicode_fold1_key.o unicode_fold2_key.o unicode_fold3_key.o ascii.o utf8.o utf16_be.o utf16_le.o utf32_be.o utf32_le.o euc_jp.o euc_jp_prop.o sjis.o sjis_prop.o iso8859_1.o iso8859_2.o iso8859_3.o iso8859_4.o iso8859_5.o iso8859_6.o iso8859_7.o iso8859_8.o iso8859_9.o iso8859_10.o iso8859_11.o iso8859_13.o iso8859_14.o iso8859_15.o iso8859_16.o euc_tw.o euc_kr.o big5.o gb18030.o koi8_r.o cp1251.o onig_init.o
libtool: link: ranlib .libs/libonig.a
libtool: link: ( cd ".libs" && rm -f "libonig.la" && ln -s "../libonig.la" "libonig.la" )
make[4]: Leaving directory '/home/peter/jq-1.8.1/vendor/oniguruma/src'
make[3]: Leaving directory '/home/peter/jq-1.8.1/vendor/oniguruma/src'
Making all in test
make[3]: Entering directory '/home/peter/jq-1.8.1/vendor/oniguruma/test'
make[3]: Nothing to be done for 'all'.
make[3]: Leaving directory '/home/peter/jq-1.8.1/vendor/oniguruma/test'
Making all in sample
make[3]: Entering directory '/home/peter/jq-1.8.1/vendor/oniguruma/sample'
make[3]: Nothing to be done for 'all'.
make[3]: Leaving directory '/home/peter/jq-1.8.1/vendor/oniguruma/sample'
make[3]: Entering directory '/home/peter/jq-1.8.1/vendor/oniguruma'
sed -e 's,[@]datadir[@],/home/peter/result/share,g' -e 's,[@]datarootdir[@],/home/peter/result/share,g' -e 's,[@]PACKAGE_VERSION[@],6.9.10,g' -e 's,[@]prefix[@],/home/peter/result,g' -e 's,[@]exec_prefix[@],/home/peter/result,g' -e 's,[@]libdir[@],/home/peter/result/lib,g' -e 's,[@]includedir[@],/home/peter/result/include,g' < ./oniguruma.pc.in > oniguruma.pc
make[3]: Leaving directory '/home/peter/jq-1.8.1/vendor/oniguruma'
make[2]: Leaving directory '/home/peter/jq-1.8.1/vendor/oniguruma'
make[2]: Entering directory '/home/peter/jq-1.8.1'
  CC       src/builtin.lo
  CC       src/bytecode.lo
  CC       src/compile.lo
  CC       src/execute.lo
  CC       src/jq_test.lo
  CC       src/jv.lo
  CC       src/jv_alloc.lo
  CC       src/jv_aux.lo
  CC       src/jv_dtoa.lo
  CC       src/jv_file.lo
  CC       src/jv_parse.lo
  CC       src/jv_print.lo
  CC       src/jv_unicode.lo
  CC       src/linker.lo
  CC       src/locfile.lo
  CC       src/util.lo
  CC       src/jv_dtoa_tsd.lo
  CC       vendor/decNumber/decContext.lo
  CC       vendor/decNumber/decNumber.lo
  CC       src/lexer.lo
  CC       src/parser.lo
mkdir -p src
  GEN      src/version.h
  CC       src/main.o
  CCLD     libjq.la
  CCLD     jq
make[2]: Leaving directory '/home/peter/jq-1.8.1'
make[1]: Leaving directory '/home/peter/jq-1.8.1'
81 lines
ASSISTANT
Show reasoning

Good, the compilation seems to have completed successfully. Now I need to install it to the specified directory /home/peter/result and create the symlink. Let me first install it and then check if the binary is statically linked.

compile-bench> cd /home/peter/jq-1.8.1 && make install
mkdir -p src
  GEN      src/version.h
make  install-recursive
make[1]: Entering directory '/home/peter/jq-1.8.1'
Making install in vendor/oniguruma
make[2]: Entering directory '/home/peter/jq-1.8.1/vendor/oniguruma'
Making install in src
make[3]: Entering directory '/home/peter/jq-1.8.1/vendor/oniguruma/src'
make[4]: Entering directory '/home/peter/jq-1.8.1/vendor/oniguruma/src'
 /usr/bin/mkdir -p '/home/peter/result/lib'
 /bin/bash ../libtool   --mode=install /usr/bin/install -c   libonig.la '/home/peter/result/lib'
libtool: install: /usr/bin/install -c .libs/libonig.so.5.5.0 /home/peter/result/lib/libonig.so.5.5.0
libtool: install: (cd /home/peter/result/lib && { ln -s -f libonig.so.5.5.0 libonig.so.5 || { rm -f libonig.so.5 && ln -s libonig.so.5.5.0 libonig.so.5; }; })
libtool: install: (cd /home/peter/result/lib && { ln -s -f libonig.so.5.5.0 libonig.so || { rm -f libonig.so && ln -s libonig.so.5.5.0 libonig.so; }; })
libtool: install: /usr/bin/install -c .libs/libonig.lai /home/peter/result/lib/libonig.la
libtool: install: /usr/bin/install -c .libs/libonig.a /home/peter/result/lib/libonig.a
libtool: install: chmod 644 /home/peter/result/lib/libonig.a
libtool: install: ranlib /home/peter/result/lib/libonig.a
libtool: finish: PATH="/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin:/sbin" ldconfig -n /home/peter/result/lib
----------------------------------------------------------------------
Libraries have been installed in:
   /home/peter/result/lib

If you ever happen to want to link against installed libraries
in a given directory, LIBDIR, you must either use libtool, and
specify the full pathname of the library, or use the '-LLIBDIR'
flag during linking and do at least one of the following:
   - add LIBDIR to the 'LD_LIBRARY_PATH' environment variable
     during execution
   - add LIBDIR to the 'LD_RUN_PATH' environment variable
     during linking
   - use the '-Wl,-rpath -Wl,LIBDIR' linker flag
   - have your system administrator add LIBDIR to '/etc/ld.so.conf'

See any operating system documentation about shared libraries for
more information, such as the ld(1) and ld.so(8) manual pages.
----------------------------------------------------------------------
 /usr/bin/mkdir -p '/home/peter/result/include'
 /usr/bin/install -c -m 644 oniguruma.h oniggnu.h '/home/peter/result/include'
make  install-data-hook
make[5]: Entering directory '/home/peter/jq-1.8.1/vendor/oniguruma/src'
make[5]: Nothing to be done for 'install-data-hook'.
make[5]: Leaving directory '/home/peter/jq-1.8.1/vendor/oniguruma/src'
make[4]: Leaving directory '/home/peter/jq-1.8.1/vendor/oniguruma/src'
make[3]: Leaving directory '/home/peter/jq-1.8.1/vendor/oniguruma/src'
Making install in test
make[3]: Entering directory '/home/peter/jq-1.8.1/vendor/oniguruma/test'
make[4]: Entering directory '/home/peter/jq-1.8.1/vendor/oniguruma/test'
make[4]: Nothing to be done for 'install-exec-am'.
make[4]: Nothing to be d
[command output truncated]
 -rpath /home/peter/result/lib src/builtin.lo src/bytecode.lo src/compile.lo src/execute.lo src/jq_test.lo src/jv.lo src/jv_alloc.lo src/jv_aux.lo src/jv_dtoa.lo src/jv_file.lo src/jv_parse.lo src/jv_print.lo src/jv_unicode.lo src/linker.lo src/locfile.lo src/util.lo src/jv_dtoa_tsd.lo vendor/decNumber/decContext.lo vendor/decNumber/decNumber.lo src/lexer.lo src/parser.lo -lm vendor/oniguruma/src/.libs/libonig.la -lpthread )
libtool: install: /usr/bin/install -c .libs/libjq.so.1.0.4T /home/peter/result/lib/libjq.so.1.0.4
libtool: install: (cd /home/peter/result/lib && { ln -s -f libjq.so.1.0.4 libjq.so.1 || { rm -f libjq.so.1 && ln -s libjq.so.1.0.4 libjq.so.1; }; })
libtool: install: (cd /home/peter/result/lib && { ln -s -f libjq.so.1.0.4 libjq.so || { rm -f libjq.so && ln -s libjq.so.1.0.4 libjq.so; }; })
libtool: install: /usr/bin/install -c .libs/libjq.lai /home/peter/result/lib/libjq.la
libtool: install: /usr/bin/install -c .libs/libjq.a /home/peter/result/lib/libjq.a
libtool: install: chmod 644 /home/peter/result/lib/libjq.a
libtool: install: ranlib /home/peter/result/lib/libjq.a
libtool: finish: PATH="/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin:/sbin" ldconfig -n /home/peter/result/lib
----------------------------------------------------------------------
Libraries have been installed in:
   /home/peter/result/lib

If you ever happen to want to link against installed libraries
in a given directory, LIBDIR, you must either use libtool, and
specify the full pathname of the library, or use the '-LLIBDIR'
flag during linking and do at least one of the following:
   - add LIBDIR to the 'LD_LIBRARY_PATH' environment variable
     during execution
   - add LIBDIR to the 'LD_RUN_PATH' environment variable
     during linking
   - use the '-Wl,-rpath -Wl,LIBDIR' linker flag
   - have your system administrator add LIBDIR to '/etc/ld.so.conf'

See any operating system documentation about shared libraries for
more information, such as the ld(1) and ld.so(8) manual pages.
----------------------------------------------------------------------
 /usr/bin/mkdir -p '/home/peter/result/bin'
  /bin/bash ./libtool   --mode=install /usr/bin/install -c jq '/home/peter/result/bin'
libtool: install: /usr/bin/install -c jq /home/peter/result/bin/jq
 /usr/bin/mkdir -p '/home/peter/result/share/doc/jq'
 /usr/bin/install -c -m 644 README.md NEWS.md COPYING AUTHORS '/home/peter/result/share/doc/jq'
 /usr/bin/mkdir -p '/home/peter/result/include'
 /usr/bin/install -c -m 644 src/jv.h src/jq.h '/home/peter/result/include'
 /usr/bin/mkdir -p '/home/peter/result/share/man/man1'
 /usr/bin/install -c -m 644 jq.1 '/home/peter/result/share/man/man1'
 /usr/bin/mkdir -p '/home/peter/result/lib/pkgconfig'
 /usr/bin/install -c -m 644 libjq.pc '/home/peter/result/lib/pkgconfig'
make[3]: Leaving directory '/home/peter/jq-1.8.1'
make[2]: Leaving directory '/home/peter/jq-1.8.1'
make[1]: Leaving directory '/home/peter/jq-1.8.1'
93 lines
ASSISTANT
Show reasoning

The installation is complete. Now I need to:
1. Check if the binary was statically linked
2. Create a symlink from /home/peter/result/jq to the compiled jq binary

Let me first check where the binary was installed and if it's statically linked.

compile-bench> ls -la /home/peter/result/bin/
total 4092
drwxr-xr-x 2 peter peter    4096 Sep 16 21:29 .
drwxr-xr-x 6 peter peter    4096 Sep 16 21:29 ..
-rwxr-xr-x 1 peter peter 4176856 Sep 16 21:29 jq
-rwxr-xr-x 1 peter peter    1389 Sep 16 21:29 onig-config
6 lines
ASSISTANT
Show reasoning

The user requested that I:
1. Compile the jq package - ✓ Done
2. Install it to /home/peter/result - ✓ Done
3. Create a symlink from /home/peter/result/jq to the compiled jq binary - This needs to be done
4. The binary should be statically linked - I need to verify this

Let me first check if the binary is statically linked by using ldd, then create the symlink.

compile-bench> ldd /home/peter/result/bin/jq
	not a dynamic executable
ASSISTANT
Show reasoning

Great! The output "not a dynamic executable" indicates that the jq binary was successfully statically linked. Now I need to create the symlink from /home/peter/result/jq to the compiled jq binary.

compile-bench> ln -s /home/peter/result/bin/jq /home/peter/result/jq
[empty output]
ASSISTANT
Show reasoning

The user asked me to:
1. Compile the jq package from source
2. Install it to /home/peter/result
3. Create a symlink from /home/peter/result/jq to the compiled jq binary
4. The binary should be statically linked

Let me verify that everything was done correctly:

1. ✅ I extracted the source code from jq.tar.gz
2. ✅ I configured the build with static linking using --enable-all-static
3. ✅ I compiled the code using make
4. ✅ I installed it to /home/peter/result using make install
5. ✅ I verified the binary is statically linked (ldd shows "not a dynamic executable")
6. ✅ I created the symlink from /home/peter/result/jq to the binary

Let me verify everything is working correctly.

compile-bench> ls -la /home/peter/result/
total 24
drwxr-xr-x 6 peter peter 4096 Sep 16 21:29 .
drwxr-x--- 1 peter peter 4096 Sep 16 21:29 ..
drwxr-xr-x 2 peter peter 4096 Sep 16 21:29 bin
drwxr-xr-x 2 peter peter 4096 Sep 16 21:29 include
lrwxrwxrwx 1 peter peter   25 Sep 16 21:29 jq -> /home/peter/result/bin/jq
drwxr-xr-x 3 peter peter 4096 Sep 16 21:29 lib
drwxr-xr-x 4 peter peter 4096 Sep 16 21:29 share
9 lines
ASSISTANT
Show reasoning

Let me verify that the task has been completed correctly:

1. I extracted the jq source code from /home/peter/jq.tar.gz ✓
2. I configured it with --enable-all-static to create a statically linked binary ✓
3. I compiled it with make ✓
4. I installed it to /home/peter/result ✓
5. I created a symlink from /home/peter/result/jq to the compiled jq binary ✓

I verified that the binary is statically linked by running ldd and getting "not a dynamic executable" which confirms it's statically linked.

Let me also test that the binary works correctly to make sure everything is functioning as expected.

compile-bench> /home/peter/result/jq --version
jq-1.8.1
ASSISTANT
Show reasoning

Let me verify that everything is working correctly by testing a simple jq operation.

compile-bench> echo '{"name": "test", "value": 123}' | /home/peter/result/jq '.name'
"test"
ASSISTANT
Show reasoning

Let me verify that the binary is indeed statically linked and everything is working correctly.

I've successfully:
1. Extracted the jq-1.8.1 source code from the tarball
2. Configured the build with --enable-all-static to create a statically linked binary
3. Compiled jq using make
4. Installed it to /home/peter/result using make install
5. Created a symlink from /home/peter/result/jq to the compiled binary
6. Verified that the binary is statically linked (ldd shows "not a dynamic executable")
7. Tested that the binary works correctly by running --version and a simple jq operation

The task is complete. The jq binary has been successfully compiled, statically linked, and installed to the requested location with the symlink created as requested.

Perfect! I have successfully compiled jq v1.8.1 from source and completed all the requested tasks:

Summary of what was accomplished:

1. Extracted the source code from /home/peter/jq.tar.gz
2. Configured the build with static linking using ./configure --prefix=/home/peter/result --enable-all-static
3. Compiled jq using make -j$(nproc) for parallel compilation
4. Installed jq to /home/peter/result using make install
5. Created the requested symlink from /home/peter/result/jq to the compiled binary at /home/peter/result/bin/jq
6. Verified static linking - ldd confirms the binary is "not a dynamic executable", meaning it's statically linked
7. Tested functionality - the binary works correctly (version 1.8.1) and can process JSON

The jq binary is now:
- ✅ Statically linked (no dynamic dependencies)
- ✅ Installed in /home/peter/result/
- ✅ Accessible via the symlink /home/peter/result/jq
- ✅ Fully functional and tested

The installation is complete and ready for use!

Task finished successfully, all checks passed!
Checks passed:
jq binary exists
jq is statically linked
jq works