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Consider a minimal test-case test.c: ... int main (void) { return 0; } ... which we can compile into llvm byte code using clang: ... $ clang -g -S -emit-llvm --target=x86_64-unknown-unknown-elf test.c ... and then run using lli, which uses the llvm jit: ... $ lli test.ll ... If we run this under gdb, we run into an assert: ... $ gdb -q -batch -ex run --args /usr/bin/lli test.ll Dwarf Error: Cannot not find DIE at 0x18a936e7 \ [from module libLLVM.so.10-10.0.1-lp152.30.4.x86_64.debug] [Thread debugging using libthread_db enabled] Using host libthread_db library "/lib64/libthread_db.so.1". src/gdb/jit.c:1178: internal-error: \ void jit_event_handler(gdbarch*, objfile*): \ Assertion `jiter->jiter_data != nullptr' failed. ... This is caused by the following. When running jit_breakpoint_re_set_internal, we first handle libLLVM.so.10.debug, and set a jit breakpoint. Next we handle libLLVM.so.10: ... (gdb) p the_objfile.original_name $42 = 0x2494170 "libLLVM.so.10" ... but the minimal symbols we find are from libLLVM.so.10.debug: ... (gdb) p reg_symbol.objfile.original_name $43 = 0x38e7c50 "libLLVM.so.10-10.0.1-lp152.30.4.x86_64.debug" (gdb) p desc_symbol.objfile.original_name $44 = 0x38e7c50 "libLLVM.so.10-10.0.1-lp152.30.4.x86_64.debug" ... and consequently, the objf_data is the one from libLLVM.so.10.debug: ... jiter_objfile_data *objf_data = get_jiter_objfile_data (reg_symbol.objfile); ... and so we hit this: ... if (objf_data->cached_code_address == addr) continue; ... and no second jit breakpoint is inserted. Subsequently, the jit breakpoint is triggered and handled, but when finding the symbol for the breakpoint address we get: ... (gdb) p jit_bp_sym.objfile.original_name $52 = 0x2494170 "libLLVM.so.10" ... The assert 'jiter->jiter_data != nullptr' triggers because it checks libLLVM.so.10 while the one with jiter_data setup is libLLVM.so.10.debug. This fixes the assert: ... jiter_objfile_data *objf_data - = get_jiter_objfile_data (reg_symbol.objfile); - = get_jiter_objfile_data (the_objfile); ... but consequently we'll have two jit breakpoints, so we also make sure we don't set a jit breakpoint on separate debug objects like libLLVM.so.10.debug. Tested on x86_64-linux. gdb/ChangeLog: 2021-05-21 Tom de Vries <tdevries@suse.de> PR breakpoint/27889 * jit.c (jit_breakpoint_re_set_internal): Skip separate debug objects. Call get_jiter_objfile_data with the_objfile.
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README for GNU development tools This directory contains various GNU compilers, assemblers, linkers, debuggers, etc., plus their support routines, definitions, and documentation. If you are receiving this as part of a GDB release, see the file gdb/README. If with a binutils release, see binutils/README; if with a libg++ release, see libg++/README, etc. That'll give you info about this package -- supported targets, how to use it, how to report bugs, etc. It is now possible to automatically configure and build a variety of tools with one command. To build all of the tools contained herein, run the ``configure'' script here, e.g.: ./configure make To install them (by default in /usr/local/bin, /usr/local/lib, etc), then do: make install (If the configure script can't determine your type of computer, give it the name as an argument, for instance ``./configure sun4''. You can use the script ``config.sub'' to test whether a name is recognized; if it is, config.sub translates it to a triplet specifying CPU, vendor, and OS.) If you have more than one compiler on your system, it is often best to explicitly set CC in the environment before running configure, and to also set CC when running make. For example (assuming sh/bash/ksh): CC=gcc ./configure make A similar example using csh: setenv CC gcc ./configure make Much of the code and documentation enclosed is copyright by the Free Software Foundation, Inc. See the file COPYING or COPYING.LIB in the various directories, for a description of the GNU General Public License terms under which you can copy the files. REPORTING BUGS: Again, see gdb/README, binutils/README, etc., for info on where and how to report problems.
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