ruby/eval_jump.c
Nobuyoshi Nakada 0d7e50a174 [Bug #22191] Report EXIT handler exceptions after END blocks
Keep exceptions raised by `EXIT` traps until `END` handlers finish.
That leaves them available for reporting during cleanup.

Print `END` handler exceptions without replaying causes already
reported from earlier exit handlers. This keeps the previous handler
exception visible while avoiding duplicate diagnostics.
2026-07-13 04:22:19 +09:00

145 lines
3.1 KiB
C

/* -*-c-*- */
/*
* from eval.c
*/
#include "eval_intern.h"
#include "internal/ractor.h"
/* exit */
void
rb_call_end_proc(VALUE data)
{
rb_proc_call(data, rb_ary_new());
}
/*
* call-seq:
* at_exit { block } -> proc
*
* Converts _block_ to a +Proc+ object (and therefore
* binds it at the point of call) and registers it for execution when
* the program exits. If multiple handlers are registered, they are
* executed in reverse order of registration.
*
* def do_at_exit(str1)
* at_exit { print str1 }
* end
* at_exit { puts "cruel world" }
* do_at_exit("goodbye ")
* exit
*
* <em>produces:</em>
*
* goodbye cruel world
*/
static VALUE
rb_f_at_exit(VALUE _)
{
VALUE proc;
if (!rb_block_given_p()) {
rb_raise(rb_eArgError, "called without a block");
}
rb_ractor_ensure_main_ractor("can not call at_exit from non-main Ractors");
proc = rb_block_proc();
rb_set_end_proc(rb_call_end_proc, proc);
return proc;
}
struct end_proc_data {
void (*func) (VALUE);
VALUE data;
struct end_proc_data *next;
};
static struct end_proc_data *end_procs, *ephemeral_end_procs;
void
rb_set_end_proc(void (*func)(VALUE), VALUE data)
{
struct end_proc_data *link = ALLOC(struct end_proc_data);
struct end_proc_data **list;
rb_thread_t *th = GET_THREAD();
if (th->top_wrapper) {
list = &ephemeral_end_procs;
}
else {
list = &end_procs;
}
link->next = *list;
link->func = func;
link->data = data;
*list = link;
}
void
rb_mark_end_proc(void)
{
struct end_proc_data *link;
link = end_procs;
while (link) {
rb_gc_mark(link->data);
link = link->next;
}
link = ephemeral_end_procs;
while (link) {
rb_gc_mark(link->data);
link = link->next;
}
}
static void
exec_end_procs_chain(struct end_proc_data *volatile *procs, VALUE *errp)
{
struct end_proc_data volatile endproc;
struct end_proc_data *link;
VALUE errinfo = *errp;
while ((link = *procs) != 0) {
*procs = link->next;
endproc = *link;
SIZED_FREE(link);
(*endproc.func) (endproc.data);
*errp = errinfo;
}
}
static void
rb_ec_exec_end_proc(rb_execution_context_t * ec)
{
enum ruby_tag_type state;
volatile VALUE errinfo = ec->errinfo;
/* Share only among END/at_exit handlers to avoid repeated causes. */
VALUE shown_causes = 0;
volatile bool finished = false;
while (!finished) {
EC_PUSH_TAG(ec);
if ((state = EC_EXEC_TAG()) == TAG_NONE) {
exec_end_procs_chain(&ephemeral_end_procs, &ec->errinfo);
exec_end_procs_chain(&end_procs, &ec->errinfo);
finished = true;
}
EC_POP_TAG();
if (state != TAG_NONE) {
VALUE err = ec->errinfo;
add_shown_cause(errinfo, &shown_causes);
error_handle_with_shown_causes(ec, err, state, &shown_causes);
if (!NIL_P(err)) errinfo = err;
}
}
ec->errinfo = errinfo;
}
void
Init_jump(void)
{
rb_define_global_function("at_exit", rb_f_at_exit, 0);
}