argv_array_init(&child->env_array);
}
+void child_process_clear(struct child_process *child)
+{
+ argv_array_clear(&child->args);
+ argv_array_clear(&child->env_array);
+}
+
struct child_to_clean {
pid_t pid;
struct child_to_clean *next;
fail_pipe:
error("cannot create %s pipe for %s: %s",
str, cmd->argv[0], strerror(failed_errno));
- argv_array_clear(&cmd->args);
- argv_array_clear(&cmd->env_array);
+ child_process_clear(cmd);
errno = failed_errno;
return -1;
}
close_pair(fderr);
else if (cmd->err)
close(cmd->err);
- argv_array_clear(&cmd->args);
- argv_array_clear(&cmd->env_array);
+ child_process_clear(cmd);
errno = failed_errno;
return -1;
}
int finish_command(struct child_process *cmd)
{
int ret = wait_or_whine(cmd->pid, cmd->argv[0], 0);
- argv_array_clear(&cmd->args);
- argv_array_clear(&cmd->env_array);
+ child_process_clear(cmd);
return ret;
}
{
vreportf("fatal: ", err, params);
- if (!pthread_equal(main_thread, pthread_self())) {
+ if (in_async()) {
struct async *async = pthread_getspecific(async_key);
if (async->proc_in >= 0)
close(async->proc_in);
return ret != NULL;
}
+int in_async(void)
+{
+ if (!main_thread_set)
+ return 0; /* no asyncs started yet */
+ return !pthread_equal(main_thread, pthread_self());
+}
+
#else
static struct {
}
#define atexit git_atexit
+static int process_is_async;
+int in_async(void)
+{
+ return process_is_async;
+}
+
#endif
int start_async(struct async *async)
if (need_out)
close(fdout[0]);
git_atexit_clear();
+ process_is_async = 1;
exit(!!async->proc(proc_in, proc_out, async->data));
}