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Looking at the current random signal checks: if (ecs->event_thread->suspend.stop_signal == GDB_SIGNAL_TRAP) random_signal = !((bpstat_explains_signal (ecs->event_thread->control.stop_bpstat, GDB_SIGNAL_TRAP) != BPSTAT_SIGNAL_NO) || stopped_by_watchpoint || ecs->event_thread->control.trap_expected || (ecs->event_thread->control.step_range_end && (ecs->event_thread->control.step_resume_breakpoint == NULL))); else { enum bpstat_signal_value sval; sval = bpstat_explains_signal (ecs->event_thread->control.stop_bpstat, ecs->event_thread->suspend.stop_signal); random_signal = (sval == BPSTAT_SIGNAL_NO); if (sval == BPSTAT_SIGNAL_HIDE) ecs->event_thread->suspend.stop_signal = GDB_SIGNAL_0; } We can observe: - the stepping checks bit: ... || ecs->event_thread->control.trap_expected || (ecs->event_thread->control.step_range_end && (ecs->event_thread->control.step_resume_breakpoint == NULL))); ... is just like currently_stepping: static int currently_stepping (struct thread_info *tp) { return ((tp->control.step_range_end && tp->control.step_resume_breakpoint == NULL) || tp->control.trap_expected || bpstat_should_step ()); } except it misses the bpstat_should_step check (***). It's not really necessary to check bpstat_should_step in the random signal tests, because software watchpoints always end up in the bpstat list anyway, which means bpstat_explains_signal with GDB_SIGNAL_TRAP always returns at least BPSSTAT_SIGNAL_HIDE, but I think the code is clearer if we reuse currently_stepping. *** - bpstat_should_step checks to see if there's any software watchpoint in the breakpoint list, because we need to force the target to single-step all the way, to evaluate the watchpoint's value at each step. - we never hide GDB_SIGNAL_TRAP, even if the bpstat returns BPSTAT_SIGNAL_HIDE, which is actually the default for all breakpoints. If we make the default be BPSTAT_SIGNAL_PASS, then we can merge the two bpstat_explains_signal paths. gdb/ 2013-11-14 Pedro Alves <palves@redhat.com> * breakpoint.c (bpstat_explains_signal) <Moribund locations>: Return BPSTAT_SIGNAL_PASS instead of BPSTAT_SIGNAL_HIDE. (explains_signal_watchpoint): Return BPSTAT_SIGNAL_PASS instead of BPSTAT_SIGNAL_HIDE. (base_breakpoint_explains_signal): Return BPSTAT_SIGNAL_PASS instead of BPSTAT_SIGNAL_HIDE. * infrun.c (handle_inferior_event): Rework random signal checks.
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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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