/** \file sched.c Paraslash's scheduling functions. */
#include <regex.h>
-#include <dirent.h> /* readdir() */
#include <assert.h>
#include <sys/time.h>
{
if (!initialized)
return;
+ assert(t->error < 0);
PARA_INFO_LOG("unregistering %s (%s)\n", t->status,
- t->error <0? para_strerror(-t->error) : "shutdown");
+ para_strerror(-t->error));
if (t->pre_select)
list_del(&t->pre_select_node);
if (t->post_select)
list_del(&t->post_select_node);
- t->error = -E_TASK_UNREGISTERED;
}
-
static void sched_preselect(struct sched *s)
{
struct task *t, *tmp;
list_for_each_entry_safe(t, tmp, &pre_select_list, pre_select_node) {
- if (t->error >= 0 && t->pre_select)
+ if (t->pre_select)
t->pre_select(s, t);
-// PARA_INFO_LOG("%s \n", t->status);
- if (t->error >= 0)
- continue;
- /*
- * We have to check whether the list is empty because the call
- * to ->pre_select() might have called sched_shutdown(). In
- * this case t has been unregistered already, so we must not
- * unregister it again.
- */
- if (list_empty(&pre_select_list))
- return;
- unregister_task(t);
+ if (t->error < 0)
+ unregister_task(t);
}
}
// PARA_INFO_LOG("%s: %d\n", t->status, t->ret);
if (t->error >= 0)
continue;
- /* nec., see sched_preselect() */
+ /*
+ * We have to check whether the list is empty because the call
+ * to ->post_select() might have called sched_shutdown(). In
+ * this case t has been unregistered already, so we must not
+ * unregister it again.
+ */
if (list_empty(&post_select_list))
return;
unregister_task(t);
* Unregister all tasks.
*
* This will cause \a schedule() to return immediately because both the
- * \a pre_select_list and the \a post_select_list are empty.
+ * \a pre_select_list and the \a post_select_list are empty. This function
+ * must be called from the post_select (rather than the pre_select) method.
*/
void sched_shutdown(void)
{
if (!initialized)
return;
- list_for_each_entry_safe(t, tmp, &pre_select_list, pre_select_node)
+ list_for_each_entry_safe(t, tmp, &pre_select_list, pre_select_node) {
+ t->error = -E_SCHED_SHUTDOWN;
unregister_task(t);
- list_for_each_entry_safe(t, tmp, &post_select_list, post_select_node)
+ }
+ list_for_each_entry_safe(t, tmp, &post_select_list, post_select_node) {
+ t->error = -E_SCHED_SHUTDOWN;
unregister_task(t);
+ }
initialized = 0;
}
*
* \return The task list.
*
- * Each entry of the list contains an identifier which is simply a hex number
- * that may be used in \a kill_task() to terminate the task.
+ * Each entry of the list contains an identifier which is simply a hex number.
* The result is dynamically allocated and must be freed by the caller.
*/
char *get_task_list(void)
return msg;
}
-/**
- * Simulate an error for the given task.
- *
- * \param id The task identifier.
- *
- * Find the task identified by \a id, set the tasks' error value to
- * \p -E_TASK_KILLED and unregister the task.
- *
- * \return Positive on success, negative on errors (e.g. if \a id does not
- * correspond to a registered task).
- */
-int kill_task(char *id)
-{
- struct task *t, *tmp;
- char buf[20];
-
- if (!initialized)
- return -E_NOT_INITIALIZED;
- list_for_each_entry_safe(t, tmp, &pre_select_list, pre_select_node) {
- sprintf(buf, "%p", t);
- if (strcmp(id, buf))
- continue;
- t->error = -E_TASK_KILLED;
- return 1;
- }
- list_for_each_entry_safe(t, tmp, &post_select_list, post_select_node) {
- sprintf(buf, "%p", t);
- if (strcmp(id, buf))
- continue;
- t->error = -E_TASK_KILLED;
- return 1;
- }
- return -E_NO_SUCH_TASK;
-}
-
/**
* Set the select timeout to the minimal possible value.
*
*/
void sched_min_delay(struct sched *s)
{
- s->select_timeout.tv_sec = 0;
- s->select_timeout.tv_usec = 1;
+ s->select_timeout.tv_sec = s->select_timeout.tv_usec = 0;
}
/**