/*
This file is part of GNUnet
- (C) 2009, 2011 Christian Grothoff (and other contributing authors)
+ Copyright (C) 2009-2016 GNUnet e.V.
GNUnet is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published
- by the Free Software Foundation; either version 2, or (at your
+ by the Free Software Foundation; either version 3, or (at your
option) any later version.
GNUnet is distributed in the hope that it will be useful, but
You should have received a copy of the GNU General Public License
along with GNUnet; see the file COPYING. If not, write to the
- Free Software Foundation, Inc., 59 Temple Place - Suite 330,
- Boston, MA 02111-1307, USA.
+ Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
+ Boston, MA 02110-1301, USA.
*/
/**
* @author Christian Grothoff
*/
#include "platform.h"
-#include "gnunet_common.h"
-#include "gnunet_os_lib.h"
-#include "gnunet_scheduler_lib.h"
-#include "gnunet_signal_lib.h"
-#include "gnunet_time_lib.h"
+#include "gnunet_util_lib.h"
#include "disk.h"
#define LOG(kind,...) GNUNET_log_from (kind, "util-scheduler", __VA_ARGS__)
/**
- * Linked list of pending tasks.
+ * Entry in list of pending tasks.
*/
-struct Task
+struct GNUNET_SCHEDULER_Task
{
/**
* This is a linked list.
*/
- struct Task *next;
+ struct GNUNET_SCHEDULER_Task *next;
+
+ /**
+ * This is a linked list.
+ */
+ struct GNUNET_SCHEDULER_Task *prev;
/**
* Function to run when ready.
*/
- GNUNET_SCHEDULER_Task callback;
+ GNUNET_SCHEDULER_TaskCallback callback;
/**
- * Closure for the callback.
+ * Closure for the @e callback.
*/
void *callback_cls;
*/
struct GNUNET_NETWORK_FDSet *write_set;
- /**
- * Unique task identifier.
- */
- GNUNET_SCHEDULER_TaskIdentifier id;
-
/**
* Absolute timeout value for the task, or
- * GNUNET_TIME_UNIT_FOREVER_ABS for "no timeout".
+ * #GNUNET_TIME_UNIT_FOREVER_ABS for "no timeout".
*/
struct GNUNET_TIME_Absolute timeout;
*/
int lifeness;
+ /**
+ * Is this task run on shutdown?
+ */
+ int on_shutdown;
+
+ /**
+ * Is this task in the ready list?
+ */
+ int in_ready_list;
+
#if EXECINFO
/**
* Array of strings which make up a backtrace from the point when this
/**
- * List of tasks waiting for an event.
+ * Head of list of tasks waiting for an event.
+ */
+static struct GNUNET_SCHEDULER_Task *pending_head;
+
+/**
+ * Tail of list of tasks waiting for an event.
*/
-static struct Task *pending;
+static struct GNUNET_SCHEDULER_Task *pending_tail;
+
+/**
+ * Head of list of tasks waiting for shutdown.
+ */
+static struct GNUNET_SCHEDULER_Task *shutdown_head;
+
+/**
+ * Tail of list of tasks waiting for shutdown.
+ */
+static struct GNUNET_SCHEDULER_Task *shutdown_tail;
/**
* List of tasks waiting ONLY for a timeout event.
* building select sets (we just look at the head
* to determine the respective timeout ONCE).
*/
-static struct Task *pending_timeout;
+static struct GNUNET_SCHEDULER_Task *pending_timeout_head;
+
+/**
+ * List of tasks waiting ONLY for a timeout event.
+ * Sorted by timeout (earliest first). Used so that
+ * we do not traverse the list of these tasks when
+ * building select sets (we just look at the head
+ * to determine the respective timeout ONCE).
+ */
+static struct GNUNET_SCHEDULER_Task *pending_timeout_tail;
/**
* Last inserted task waiting ONLY for a timeout event.
* Used to (heuristically) speed up insertion.
*/
-static struct Task *pending_timeout_last;
+static struct GNUNET_SCHEDULER_Task *pending_timeout_last;
/**
* ID of the task that is running right now.
*/
-static struct Task *active_task;
+static struct GNUNET_SCHEDULER_Task *active_task;
/**
- * List of tasks ready to run right now,
- * grouped by importance.
+ * Head of list of tasks ready to run right now, grouped by importance.
*/
-static struct Task *ready[GNUNET_SCHEDULER_PRIORITY_COUNT];
+static struct GNUNET_SCHEDULER_Task *ready_head[GNUNET_SCHEDULER_PRIORITY_COUNT];
/**
- * Identity of the last task queued. Incremented for each task to
- * generate a unique task ID (it is virtually impossible to start
- * more than 2^64 tasks during the lifetime of a process).
+ * Tail of list of tasks ready to run right now, grouped by importance.
*/
-static GNUNET_SCHEDULER_TaskIdentifier last_id;
+static struct GNUNET_SCHEDULER_Task *ready_tail[GNUNET_SCHEDULER_PRIORITY_COUNT];
/**
* Number of tasks on the ready list.
/**
* Function to use as a select() in the scheduler.
- * If NULL, we use GNUNET_NETWORK_socket_select ().
+ * If NULL, we use GNUNET_NETWORK_socket_select().
*/
static GNUNET_SCHEDULER_select scheduler_select;
/**
- * Closure for 'scheduler_select'.
+ * Task context of the current task.
+ */
+static struct GNUNET_SCHEDULER_TaskContext tc;
+
+/**
+ * Closure for #scheduler_select.
*/
static void *scheduler_select_cls;
+
/**
* Sets the select function to use in the scheduler (scheduler_select).
*
* @param new_select new select function to use
- * @param new_select_cls closure for 'new_select'
+ * @param new_select_cls closure for @a new_select
* @return previously used select function, NULL for default
*/
void
* @param timeout next timeout (updated)
*/
static void
-update_sets (struct GNUNET_NETWORK_FDSet *rs, struct GNUNET_NETWORK_FDSet *ws,
+update_sets (struct GNUNET_NETWORK_FDSet *rs,
+ struct GNUNET_NETWORK_FDSet *ws,
struct GNUNET_TIME_Relative *timeout)
{
- struct Task *pos;
+ struct GNUNET_SCHEDULER_Task *pos;
struct GNUNET_TIME_Absolute now;
struct GNUNET_TIME_Relative to;
now = GNUNET_TIME_absolute_get ();
- pos = pending_timeout;
- if (pos != NULL)
+ pos = pending_timeout_head;
+ if (NULL != pos)
{
to = GNUNET_TIME_absolute_get_difference (now, pos->timeout);
- if (timeout->rel_value > to.rel_value)
+ if (timeout->rel_value_us > to.rel_value_us)
*timeout = to;
- if (pos->reason != 0)
+ if (0 != pos->reason)
*timeout = GNUNET_TIME_UNIT_ZERO;
}
- pos = pending;
- while (pos != NULL)
+ for (pos = pending_head; NULL != pos; pos = pos->next)
{
- if (pos->timeout.abs_value != GNUNET_TIME_UNIT_FOREVER_ABS.abs_value)
+ if (pos->timeout.abs_value_us != GNUNET_TIME_UNIT_FOREVER_ABS.abs_value_us)
{
to = GNUNET_TIME_absolute_get_difference (now, pos->timeout);
- if (timeout->rel_value > to.rel_value)
+ if (timeout->rel_value_us > to.rel_value_us)
*timeout = to;
}
- if (pos->read_fd != -1)
+ if (-1 != pos->read_fd)
GNUNET_NETWORK_fdset_set_native (rs, pos->read_fd);
- if (pos->write_fd != -1)
+ if (-1 != pos->write_fd)
GNUNET_NETWORK_fdset_set_native (ws, pos->write_fd);
- if (pos->read_set != NULL)
+ if (NULL != pos->read_set)
GNUNET_NETWORK_fdset_add (rs, pos->read_set);
- if (pos->write_set != NULL)
+ if (NULL != pos->write_set)
GNUNET_NETWORK_fdset_add (ws, pos->write_set);
- if (pos->reason != 0)
+ if (0 != pos->reason)
*timeout = GNUNET_TIME_UNIT_ZERO;
- pos = pos->next;
}
}
/**
* Check if the ready set overlaps with the set we want to have ready.
* If so, update the want set (set all FDs that are ready). If not,
- * return GNUNET_NO.
+ * return #GNUNET_NO.
*
* @param ready set that is ready
* @param want set that we want to be ready
- * @return GNUNET_YES if there was some overlap
+ * @return #GNUNET_YES if there was some overlap
*/
static int
set_overlaps (const struct GNUNET_NETWORK_FDSet *ready,
* @param now the current time
* @param rs set of FDs ready for reading
* @param ws set of FDs ready for writing
- * @return GNUNET_YES if we can run it, GNUNET_NO if not.
+ * @return #GNUNET_YES if we can run it, #GNUNET_NO if not.
*/
static int
-is_ready (struct Task *task, struct GNUNET_TIME_Absolute now,
+is_ready (struct GNUNET_SCHEDULER_Task *task,
+ struct GNUNET_TIME_Absolute now,
const struct GNUNET_NETWORK_FDSet *rs,
const struct GNUNET_NETWORK_FDSet *ws)
{
enum GNUNET_SCHEDULER_Reason reason;
reason = task->reason;
- if (now.abs_value >= task->timeout.abs_value)
+ if (now.abs_value_us >= task->timeout.abs_value_us)
reason |= GNUNET_SCHEDULER_REASON_TIMEOUT;
if ((0 == (reason & GNUNET_SCHEDULER_REASON_READ_READY)) &&
(((task->read_fd != -1) &&
(GNUNET_YES == GNUNET_NETWORK_fdset_test_native (ws, task->write_fd)))
|| (set_overlaps (ws, task->write_set))))
reason |= GNUNET_SCHEDULER_REASON_WRITE_READY;
- if (reason == 0)
+ if (0 == reason)
return GNUNET_NO; /* not ready */
- reason |= GNUNET_SCHEDULER_REASON_PREREQ_DONE;
+ reason |= GNUNET_SCHEDULER_REASON_PREREQ_DONE;
task->reason = reason;
return GNUNET_YES;
}
* @param task task ready for execution
*/
static void
-queue_ready_task (struct Task *task)
+queue_ready_task (struct GNUNET_SCHEDULER_Task *task)
{
- enum GNUNET_SCHEDULER_Priority p = task->priority;
+ enum GNUNET_SCHEDULER_Priority p = check_priority (task->priority);
- if (0 != (task->reason & GNUNET_SCHEDULER_REASON_SHUTDOWN))
- p = GNUNET_SCHEDULER_PRIORITY_SHUTDOWN;
- task->next = ready[check_priority (p)];
- ready[check_priority (p)] = task;
+ GNUNET_CONTAINER_DLL_insert (ready_head[p],
+ ready_tail[p],
+ task);
+ task->in_ready_list = GNUNET_YES;
ready_count++;
}
check_ready (const struct GNUNET_NETWORK_FDSet *rs,
const struct GNUNET_NETWORK_FDSet *ws)
{
- struct Task *pos;
- struct Task *prev;
- struct Task *next;
+ struct GNUNET_SCHEDULER_Task *pos;
+ struct GNUNET_SCHEDULER_Task *next;
struct GNUNET_TIME_Absolute now;
now = GNUNET_TIME_absolute_get ();
- prev = NULL;
- pos = pending_timeout;
- while (pos != NULL)
+ while (NULL != (pos = pending_timeout_head))
{
- next = pos->next;
- if (now.abs_value >= pos->timeout.abs_value)
+ if (now.abs_value_us >= pos->timeout.abs_value_us)
pos->reason |= GNUNET_SCHEDULER_REASON_TIMEOUT;
if (0 == pos->reason)
break;
- pending_timeout = next;
+ GNUNET_CONTAINER_DLL_remove (pending_timeout_head,
+ pending_timeout_tail,
+ pos);
if (pending_timeout_last == pos)
pending_timeout_last = NULL;
queue_ready_task (pos);
- pos = next;
}
- pos = pending;
- while (pos != NULL)
+ pos = pending_head;
+ while (NULL != pos)
{
- LOG (GNUNET_ERROR_TYPE_DEBUG,
- "Checking readiness of task: %llu / %p\n",
- pos->id, pos->callback_cls);
next = pos->next;
if (GNUNET_YES == is_ready (pos, now, rs, ws))
{
- if (prev == NULL)
- pending = next;
- else
- prev->next = next;
+ GNUNET_CONTAINER_DLL_remove (pending_head,
+ pending_tail,
+ pos);
queue_ready_task (pos);
- pos = next;
- continue;
}
- prev = pos;
pos = next;
}
}
/**
- * Request the shutdown of a scheduler. Marks all currently
- * pending tasks as ready because of shutdown. This will
- * cause all tasks to run (as soon as possible, respecting
- * priorities and prerequisite tasks). Note that tasks
- * scheduled AFTER this call may still be delayed arbitrarily.
+ * Request the shutdown of a scheduler. Marks all tasks
+ * awaiting shutdown as ready. Note that tasks
+ * scheduled with #GNUNET_SCHEDULER_add_shutdown() AFTER this call
+ * will be delayed until the next shutdown signal.
*/
void
GNUNET_SCHEDULER_shutdown ()
{
- struct Task *pos;
- int i;
+ struct GNUNET_SCHEDULER_Task *pos;
- pos = pending_timeout;
- while (pos != NULL)
- {
- pos->reason |= GNUNET_SCHEDULER_REASON_SHUTDOWN;
- /* we don't move the task into the ready queue yet; check_ready
- * will do that later, possibly adding additional
- * readiness-factors */
- pos = pos->next;
- }
- pos = pending;
- while (pos != NULL)
+ while (NULL != (pos = shutdown_head))
{
+ GNUNET_CONTAINER_DLL_remove (shutdown_head,
+ shutdown_tail,
+ pos);
pos->reason |= GNUNET_SCHEDULER_REASON_SHUTDOWN;
- /* we don't move the task into the ready queue yet; check_ready
- * will do that later, possibly adding additional
- * readiness-factors */
- pos = pos->next;
- }
- for (i = 0; i < GNUNET_SCHEDULER_PRIORITY_COUNT; i++)
- {
- pos = ready[i];
- while (pos != NULL)
- {
- pos->reason |= GNUNET_SCHEDULER_REASON_SHUTDOWN;
- /* we don't move the task into the ready queue yet; check_ready
- * will do that later, possibly adding additional
- * readiness-factors */
- pos = pos->next;
- }
+ queue_ready_task (pos);
}
}
* @param t task to destroy
*/
static void
-destroy_task (struct Task *t)
+destroy_task (struct GNUNET_SCHEDULER_Task *t)
{
if (NULL != t->read_set)
GNUNET_NETWORK_fdset_destroy (t->read_set);
}
+/**
+ * Output stack trace of task @a t.
+ *
+ * @param t task to dump stack trace of
+ */
+static void
+dump_backtrace (struct GNUNET_SCHEDULER_Task *t)
+{
+#if EXECINFO
+ unsigned int i;
+
+ for (i = 0; i < t->num_backtrace_strings; i++)
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Task %p trace %u: %s\n",
+ t,
+ i,
+ t->backtrace_strings[i]);
+#endif
+}
+
+
/**
* Run at least one task in the highest-priority queue that is not
* empty. Keep running tasks until we are either no longer running
* @param ws FDs ready for writing
*/
static void
-run_ready (struct GNUNET_NETWORK_FDSet *rs, struct GNUNET_NETWORK_FDSet *ws)
+run_ready (struct GNUNET_NETWORK_FDSet *rs,
+ struct GNUNET_NETWORK_FDSet *ws)
{
enum GNUNET_SCHEDULER_Priority p;
- struct Task *pos;
- struct GNUNET_SCHEDULER_TaskContext tc;
+ struct GNUNET_SCHEDULER_Task *pos;
max_priority_added = GNUNET_SCHEDULER_PRIORITY_KEEP;
do
{
- if (ready_count == 0)
+ if (0 == ready_count)
return;
- GNUNET_assert (ready[GNUNET_SCHEDULER_PRIORITY_KEEP] == NULL);
+ GNUNET_assert (NULL == ready_head[GNUNET_SCHEDULER_PRIORITY_KEEP]);
/* yes, p>0 is correct, 0 is "KEEP" which should
* always be an empty queue (see assertion)! */
for (p = GNUNET_SCHEDULER_PRIORITY_COUNT - 1; p > 0; p--)
{
- pos = ready[p];
- if (pos != NULL)
+ pos = ready_head[p];
+ if (NULL != pos)
break;
}
- GNUNET_assert (pos != NULL); /* ready_count wrong? */
- ready[p] = pos->next;
+ GNUNET_assert (NULL != pos); /* ready_count wrong? */
+ GNUNET_CONTAINER_DLL_remove (ready_head[p],
+ ready_tail[p],
+ pos);
ready_count--;
current_priority = pos->priority;
current_lifeness = pos->lifeness;
active_task = pos;
#if PROFILE_DELAYS
- if (GNUNET_TIME_absolute_get_duration (pos->start_time).rel_value >
- DELAY_THRESHOLD.rel_value)
+ if (GNUNET_TIME_absolute_get_duration (pos->start_time).rel_value_us >
+ DELAY_THRESHOLD.rel_value_us)
{
- LOG (GNUNET_ERROR_TYPE_DEBUG,
- "Task %llu took %s to be scheduled\n",
- (unsigned long long) pos->id,
- GNUNET_STRINGS_relative_time_to_string (GNUNET_TIME_absolute_get_duration (pos->start_time), GNUNET_YES));
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Task %p took %s to be scheduled\n",
+ pos,
+ GNUNET_STRINGS_relative_time_to_string (GNUNET_TIME_absolute_get_duration (pos->start_time),
+ GNUNET_YES));
}
#endif
tc.reason = pos->reason;
- tc.read_ready = (pos->read_set == NULL) ? rs : pos->read_set;
- if ((pos->read_fd != -1) &&
+ tc.read_ready = (NULL == pos->read_set) ? rs : pos->read_set;
+ if ((-1 != pos->read_fd) &&
(0 != (pos->reason & GNUNET_SCHEDULER_REASON_READ_READY)))
GNUNET_NETWORK_fdset_set_native (rs, pos->read_fd);
- tc.write_ready = (pos->write_set == NULL) ? ws : pos->write_set;
- if ((pos->write_fd != -1) &&
+ tc.write_ready = (NULL == pos->write_set) ? ws : pos->write_set;
+ if ((-1 != pos->write_fd) &&
(0 != (pos->reason & GNUNET_SCHEDULER_REASON_WRITE_READY)))
GNUNET_NETWORK_fdset_set_native (ws, pos->write_fd);
- if (((tc.reason & GNUNET_SCHEDULER_REASON_WRITE_READY) != 0) &&
- (pos->write_fd != -1) &&
+ if ((0 != (tc.reason & GNUNET_SCHEDULER_REASON_WRITE_READY)) &&
+ (-1 != pos->write_fd) &&
(!GNUNET_NETWORK_fdset_test_native (ws, pos->write_fd)))
- GNUNET_abort (); // added to ready in previous select loop!
- LOG (GNUNET_ERROR_TYPE_DEBUG,
- "Running task: %llu / %p\n", pos->id,
- pos->callback_cls);
- pos->callback (pos->callback_cls, &tc);
-#if EXECINFO
- int i;
-
- for (i = 0; i < pos->num_backtrace_strings; i++)
- LOG (GNUNET_ERROR_TYPE_ERROR, "Task %llu trace %d: %s\n", pos->id, i,
- pos->backtrace_strings[i]);
-#endif
+ GNUNET_assert (0); // added to ready in previous select loop!
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Running task: %p\n",
+ pos);
+ pos->callback (pos->callback_cls);
+ dump_backtrace (pos);
active_task = NULL;
destroy_task (pos);
tasks_run++;
}
- while ((pending == NULL) || (p >= max_priority_added));
+ while ((NULL == pending_head) || (p >= max_priority_added));
}
+
/**
* Pipe used to communicate shutdown via signal.
*/
return;
}
#endif
+
+
+/**
+ * Wait for a short time.
+ * Sleeps for @a ms ms (as that should be long enough for virtually all
+ * modern systems to context switch and allow another process to do
+ * some 'real' work).
+ *
+ * @param ms how many ms to wait
+ */
+static void
+short_wait (unsigned int ms)
+{
+ struct GNUNET_TIME_Relative timeout;
+
+ timeout = GNUNET_TIME_relative_multiply (GNUNET_TIME_UNIT_MILLISECONDS, ms);
+ (void) GNUNET_NETWORK_socket_select (NULL, NULL, NULL, timeout);
+}
+
+
/**
* Signal handler called for signals that should cause us to shutdown.
*/
if (getpid () != my_pid)
exit (1); /* we have fork'ed since the signal handler was created,
* ignore the signal, see https://gnunet.org/vfork discussion */
- LOG (GNUNET_ERROR_TYPE_DEBUG,
- "Got signal %d from parent, writing to shutdown pipe\n");
GNUNET_DISK_file_write (GNUNET_DISK_pipe_handle
(shutdown_pipe_handle, GNUNET_DISK_PIPE_END_WRITE),
&c, sizeof (c));
/**
- * Check if the system is still life. Trigger shutdown if we
+ * Check if the system is still alive. Trigger shutdown if we
* have tasks, but none of them give us lifeness.
*
- * @return GNUNET_OK to continue the main loop,
- * GNUNET_NO to exit
+ * @return #GNUNET_OK to continue the main loop,
+ * #GNUNET_NO to exit
*/
static int
check_lifeness ()
{
- struct Task *t;
+ struct GNUNET_SCHEDULER_Task *t;
if (ready_count > 0)
return GNUNET_OK;
- for (t = pending; NULL != t; t = t->next)
+ for (t = pending_head; NULL != t; t = t->next)
if (t->lifeness == GNUNET_YES)
return GNUNET_OK;
- for (t = pending_timeout; NULL != t; t = t->next)
+ for (t = shutdown_head; NULL != t; t = t->next)
if (t->lifeness == GNUNET_YES)
return GNUNET_OK;
- if ((NULL != pending) || (NULL != pending_timeout))
+ for (t = pending_timeout_head; NULL != t; t = t->next)
+ if (t->lifeness == GNUNET_YES)
+ return GNUNET_OK;
+ if (NULL != shutdown_head)
{
GNUNET_SCHEDULER_shutdown ();
return GNUNET_OK;
/**
* Initialize and run scheduler. This function will return when all
* tasks have completed. On systems with signals, receiving a SIGTERM
- * (and other similar signals) will cause "GNUNET_SCHEDULER_shutdown"
+ * (and other similar signals) will cause #GNUNET_SCHEDULER_shutdown()
* to be run after the active task is complete. As a result, SIGTERM
* causes all active tasks to be scheduled with reason
- * "GNUNET_SCHEDULER_REASON_SHUTDOWN". (However, tasks added
+ * #GNUNET_SCHEDULER_REASON_SHUTDOWN. (However, tasks added
* afterwards will execute normally!). Note that any particular signal
* will only shut down one scheduler; applications should always only
* create a single scheduler.
*
* @param task task to run immediately
- * @param task_cls closure of task
+ * @param task_cls closure of @a task
*/
void
-GNUNET_SCHEDULER_run (GNUNET_SCHEDULER_Task task, void *task_cls)
+GNUNET_SCHEDULER_run (GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
{
struct GNUNET_NETWORK_FDSet *rs;
struct GNUNET_NETWORK_FDSet *ws;
int ret;
struct GNUNET_SIGNAL_Context *shc_int;
struct GNUNET_SIGNAL_Context *shc_term;
+#if (SIGTERM != GNUNET_TERM_SIG)
+ struct GNUNET_SIGNAL_Context *shc_gterm;
+#endif
#ifndef MINGW
struct GNUNET_SIGNAL_Context *shc_quit;
const struct GNUNET_DISK_FileHandle *pr;
char c;
- GNUNET_assert (active_task == NULL);
+ GNUNET_assert (NULL == active_task);
rs = GNUNET_NETWORK_fdset_create ();
ws = GNUNET_NETWORK_fdset_create ();
- GNUNET_assert (shutdown_pipe_handle == NULL);
- shutdown_pipe_handle = GNUNET_DISK_pipe (GNUNET_NO, GNUNET_NO, GNUNET_NO, GNUNET_NO);
- GNUNET_assert (shutdown_pipe_handle != NULL);
+ GNUNET_assert (NULL == shutdown_pipe_handle);
+ shutdown_pipe_handle = GNUNET_DISK_pipe (GNUNET_NO,
+ GNUNET_NO,
+ GNUNET_NO,
+ GNUNET_NO);
+ GNUNET_assert (NULL != shutdown_pipe_handle);
pr = GNUNET_DISK_pipe_handle (shutdown_pipe_handle,
GNUNET_DISK_PIPE_END_READ);
- GNUNET_assert (pr != NULL);
+ GNUNET_assert (NULL != pr);
my_pid = getpid ();
- shc_int = GNUNET_SIGNAL_handler_install (SIGINT, &sighandler_shutdown);
- shc_term = GNUNET_SIGNAL_handler_install (SIGTERM, &sighandler_shutdown);
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Registering signal handlers\n");
+ shc_int = GNUNET_SIGNAL_handler_install (SIGINT,
+ &sighandler_shutdown);
+ shc_term = GNUNET_SIGNAL_handler_install (SIGTERM,
+ &sighandler_shutdown);
+#if (SIGTERM != GNUNET_TERM_SIG)
+ shc_gterm = GNUNET_SIGNAL_handler_install (GNUNET_TERM_SIG,
+ &sighandler_shutdown);
+#endif
#ifndef MINGW
- shc_pipe = GNUNET_SIGNAL_handler_install (SIGPIPE, &sighandler_pipe);
- shc_quit = GNUNET_SIGNAL_handler_install (SIGQUIT, &sighandler_shutdown);
- shc_hup = GNUNET_SIGNAL_handler_install (SIGHUP, &sighandler_shutdown);
+ shc_pipe = GNUNET_SIGNAL_handler_install (SIGPIPE,
+ &sighandler_pipe);
+ shc_quit = GNUNET_SIGNAL_handler_install (SIGQUIT,
+ &sighandler_shutdown);
+ shc_hup = GNUNET_SIGNAL_handler_install (SIGHUP,
+ &sighandler_shutdown);
#endif
current_priority = GNUNET_SCHEDULER_PRIORITY_DEFAULT;
current_lifeness = GNUNET_YES;
- GNUNET_SCHEDULER_add_continuation (task, task_cls,
- GNUNET_SCHEDULER_REASON_STARTUP);
+ GNUNET_SCHEDULER_add_with_reason_and_priority (task,
+ task_cls,
+ GNUNET_SCHEDULER_REASON_STARTUP,
+ GNUNET_SCHEDULER_PRIORITY_DEFAULT);
active_task = (void *) (long) -1; /* force passing of sanity check */
GNUNET_SCHEDULER_add_now_with_lifeness (GNUNET_NO,
&GNUNET_OS_install_parent_control_handler,
timeout = GNUNET_TIME_UNIT_ZERO;
}
if (NULL == scheduler_select)
- ret = GNUNET_NETWORK_socket_select (rs, ws, NULL, timeout);
+ ret = GNUNET_NETWORK_socket_select (rs,
+ ws,
+ NULL,
+ timeout);
else
- ret = scheduler_select (scheduler_select_cls, rs, ws, NULL, timeout);
+ ret = scheduler_select (scheduler_select_cls,
+ rs,
+ ws,
+ NULL,
+ timeout);
if (ret == GNUNET_SYSERR)
{
if (errno == EINTR)
(void) close (1);
(void) dup2 (2, 1);
if (0 != system (lsof))
- LOG_STRERROR (GNUNET_ERROR_TYPE_WARNING, "system");
+ LOG_STRERROR (GNUNET_ERROR_TYPE_WARNING,
+ "system");
#endif
#endif
- GNUNET_abort ();
+#if DEBUG_FDS
+ struct GNUNET_SCHEDULER_Task *t;
+
+ for (t = pending_head; NULL != t; t = t->next)
+ {
+ if (-1 != t->read_fd)
+ {
+ int flags = fcntl (t->read_fd, F_GETFD);
+ if ((flags == -1) && (errno == EBADF))
+ {
+ LOG (GNUNET_ERROR_TYPE_ERROR,
+ "Got invalid file descriptor %d!\n",
+ t->read_fd);
+ dump_backtrace (t);
+ }
+ }
+ if (-1 != t->write_fd)
+ {
+ int flags = fcntl (t->write_fd, F_GETFD);
+ if ((flags == -1) && (errno == EBADF))
+ {
+ LOG (GNUNET_ERROR_TYPE_ERROR,
+ "Got invalid file descriptor %d!\n",
+ t->write_fd);
+ dump_backtrace (t);
+ }
+ }
+ }
+#endif
+ GNUNET_assert (0);
break;
}
- if ((ret == 0) && (timeout.rel_value == 0) && (busy_wait_warning > 16))
+
+ if ( (0 == ret) &&
+ (0 == timeout.rel_value_us) &&
+ (busy_wait_warning > 16) )
{
- LOG (GNUNET_ERROR_TYPE_WARNING, _("Looks like we're busy waiting...\n"));
- sleep (1); /* mitigate */
+ LOG (GNUNET_ERROR_TYPE_WARNING,
+ "Looks like we're busy waiting...\n");
+ short_wait (100); /* mitigate */
}
check_ready (rs, ws);
run_ready (rs, ws);
}
if (last_tr == tasks_run)
{
+ short_wait (1);
busy_wait_warning++;
}
else
}
GNUNET_SIGNAL_handler_uninstall (shc_int);
GNUNET_SIGNAL_handler_uninstall (shc_term);
+#if (SIGTERM != GNUNET_TERM_SIG)
+ GNUNET_SIGNAL_handler_uninstall (shc_gterm);
+#endif
#ifndef MINGW
GNUNET_SIGNAL_handler_uninstall (shc_pipe);
GNUNET_SIGNAL_handler_uninstall (shc_quit);
/**
- * Obtain the reason code for why the current task was
- * started. Will return the same value as
- * the GNUNET_SCHEDULER_TaskContext's reason field.
+ * Obtain the task context, giving the reason why the current task was
+ * started.
*
- * @return reason(s) why the current task is run
+ * @return current tasks' scheduler context
*/
-enum GNUNET_SCHEDULER_Reason
-GNUNET_SCHEDULER_get_reason ()
+const struct GNUNET_SCHEDULER_TaskContext *
+GNUNET_SCHEDULER_get_task_context ()
{
- GNUNET_assert (active_task != NULL);
- return active_task->reason;
+ GNUNET_assert (NULL != active_task);
+ return &tc;
}
unsigned int
GNUNET_SCHEDULER_get_load (enum GNUNET_SCHEDULER_Priority p)
{
- struct Task *pos;
+ struct GNUNET_SCHEDULER_Task *pos;
unsigned int ret;
- GNUNET_assert (active_task != NULL);
+ GNUNET_assert (NULL != active_task);
if (p == GNUNET_SCHEDULER_PRIORITY_COUNT)
return ready_count;
if (p == GNUNET_SCHEDULER_PRIORITY_KEEP)
p = current_priority;
ret = 0;
- pos = ready[check_priority (p)];
- while (pos != NULL)
- {
- pos = pos->next;
+ for (pos = ready_head[check_priority (p)]; NULL != pos; pos = pos->next)
ret++;
- }
return ret;
}
* @return original closure of the task
*/
void *
-GNUNET_SCHEDULER_cancel (GNUNET_SCHEDULER_TaskIdentifier task)
+GNUNET_SCHEDULER_cancel (struct GNUNET_SCHEDULER_Task *task)
{
- struct Task *t;
- struct Task *prev;
enum GNUNET_SCHEDULER_Priority p;
- int to;
void *ret;
- GNUNET_assert (active_task != NULL);
- to = 0;
- prev = NULL;
- t = pending;
- while (t != NULL)
- {
- if (t->id == task)
- break;
- prev = t;
- t = t->next;
- }
- if (t == NULL)
- {
- prev = NULL;
- to = 1;
- t = pending_timeout;
- while (t != NULL)
- {
- if (t->id == task)
- break;
- prev = t;
- t = t->next;
- }
- if (pending_timeout_last == t)
- pending_timeout_last = NULL;
- }
- p = 0;
- while (t == NULL)
+ GNUNET_assert ( (NULL != active_task) ||
+ (GNUNET_NO == task->lifeness) );
+ if (! task->in_ready_list)
{
- p++;
- if (p >= GNUNET_SCHEDULER_PRIORITY_COUNT)
+ if ( (-1 == task->read_fd) &&
+ (-1 == task->write_fd) &&
+ (NULL == task->read_set) &&
+ (NULL == task->write_set) )
{
- LOG (GNUNET_ERROR_TYPE_ERROR, _("Attempt to cancel dead task %llu!\n"),
- (unsigned long long) task);
- GNUNET_assert (0);
- }
- prev = NULL;
- t = ready[p];
- while (t != NULL)
- {
- if (t->id == task)
- {
- ready_count--;
- break;
- }
- prev = t;
- t = t->next;
- }
- }
- if (prev == NULL)
- {
- if (p == 0)
- {
- if (to == 0)
- {
- pending = t->next;
- }
+ if (GNUNET_YES == task->on_shutdown)
+ GNUNET_CONTAINER_DLL_remove (shutdown_head,
+ shutdown_tail,
+ task);
else
- {
- pending_timeout = t->next;
- }
+ GNUNET_CONTAINER_DLL_remove (pending_timeout_head,
+ pending_timeout_tail,
+ task);
+ if (task == pending_timeout_last)
+ pending_timeout_last = NULL;
}
else
{
- ready[p] = t->next;
+ GNUNET_CONTAINER_DLL_remove (pending_head,
+ pending_tail,
+ task);
}
}
else
{
- prev->next = t->next;
+ p = check_priority (task->priority);
+ GNUNET_CONTAINER_DLL_remove (ready_head[p],
+ ready_tail[p],
+ task);
+ ready_count--;
}
- ret = t->callback_cls;
- LOG (GNUNET_ERROR_TYPE_DEBUG, "Canceling task: %llu / %p\n", task,
- t->callback_cls);
- destroy_task (t);
+ ret = task->callback_cls;
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Canceling task %p\n",
+ task);
+ destroy_task (task);
return ret;
}
+/**
+ * Initialize backtrace data for task @a t
+ *
+ * @param t task to initialize
+ */
+static void
+init_backtrace (struct GNUNET_SCHEDULER_Task *t)
+{
+#if EXECINFO
+ void *backtrace_array[MAX_TRACE_DEPTH];
+
+ t->num_backtrace_strings
+ = backtrace (backtrace_array, MAX_TRACE_DEPTH);
+ t->backtrace_strings =
+ backtrace_symbols (backtrace_array,
+ t->num_backtrace_strings);
+ dump_backtrace (t);
+#endif
+}
+
+
/**
* Continue the current execution with the given function. This is
* similar to the other "add" functions except that there is no delay
* and the reason code can be specified.
*
* @param task main function of the task
- * @param task_cls closure for 'main'
+ * @param task_cls closure for @a task
* @param reason reason for task invocation
* @param priority priority to use for the task
*/
void
-GNUNET_SCHEDULER_add_continuation_with_priority (GNUNET_SCHEDULER_Task task, void *task_cls,
- enum GNUNET_SCHEDULER_Reason reason,
- enum GNUNET_SCHEDULER_Priority priority)
+GNUNET_SCHEDULER_add_with_reason_and_priority (GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls,
+ enum GNUNET_SCHEDULER_Reason reason,
+ enum GNUNET_SCHEDULER_Priority priority)
{
- struct Task *t;
-
-#if EXECINFO
- void *backtrace_array[50];
-#endif
+ struct GNUNET_SCHEDULER_Task *t;
GNUNET_assert (NULL != task);
- GNUNET_assert ((active_task != NULL) ||
- (reason == GNUNET_SCHEDULER_REASON_STARTUP));
- t = GNUNET_malloc (sizeof (struct Task));
-#if EXECINFO
- t->num_backtrace_strings = backtrace (backtrace_array, 50);
- t->backtrace_strings =
- backtrace_symbols (backtrace_array, t->num_backtrace_strings);
-#endif
+ GNUNET_assert ((NULL != active_task) ||
+ (GNUNET_SCHEDULER_REASON_STARTUP == reason));
+ t = GNUNET_new (struct GNUNET_SCHEDULER_Task);
t->read_fd = -1;
t->write_fd = -1;
t->callback = task;
t->callback_cls = task_cls;
- t->id = ++last_id;
#if PROFILE_DELAYS
t->start_time = GNUNET_TIME_absolute_get ();
#endif
t->reason = reason;
t->priority = priority;
t->lifeness = current_lifeness;
- LOG (GNUNET_ERROR_TYPE_DEBUG, "Adding continuation task: %llu / %p\n", t->id,
- t->callback_cls);
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Adding continuation task %p\n",
+ t);
+ init_backtrace (t);
queue_ready_task (t);
}
/**
- * Continue the current execution with the given function. This is
- * similar to the other "add" functions except that there is no delay
- * and the reason code can be specified.
- *
- * @param task main function of the task
- * @param task_cls closure for 'main'
- * @param reason reason for task invocation
- */
-void
-GNUNET_SCHEDULER_add_continuation (GNUNET_SCHEDULER_Task task, void *task_cls,
- enum GNUNET_SCHEDULER_Reason reason)
-{
- GNUNET_SCHEDULER_add_continuation_with_priority (task, task_cls,
- reason,
- GNUNET_SCHEDULER_PRIORITY_DEFAULT);
-}
-
-
-/**
- * Schedule a new task to be run with a specified priority.
- *
- * @param prio how important is the new task?
- * @param task main function of the task
- * @param task_cls closure of task
- * @return unique task identifier for the job
- * only valid until "task" is started!
- */
-GNUNET_SCHEDULER_TaskIdentifier
-GNUNET_SCHEDULER_add_with_priority (enum GNUNET_SCHEDULER_Priority prio,
- GNUNET_SCHEDULER_Task task, void *task_cls)
-{
- return GNUNET_SCHEDULER_add_select (prio,
- GNUNET_TIME_UNIT_ZERO, NULL, NULL, task,
- task_cls);
-}
-
-
-
-/**
- * Schedule a new task to be run with a specified delay. The task
- * will be scheduled for execution once the delay has expired.
+ * Schedule a new task to be run at the specified time. The task
+ * will be scheduled for execution at time @a at.
*
- * @param delay when should this operation time out? Use
- * GNUNET_TIME_UNIT_FOREVER_REL for "on shutdown"
+ * @param at time when the operation should run
* @param priority priority to use for the task
* @param task main function of the task
- * @param task_cls closure of task
+ * @param task_cls closure of @a task
* @return unique task identifier for the job
- * only valid until "task" is started!
+ * only valid until @a task is started!
*/
-GNUNET_SCHEDULER_TaskIdentifier
-GNUNET_SCHEDULER_add_delayed_with_priority (struct GNUNET_TIME_Relative delay,
- enum GNUNET_SCHEDULER_Priority priority,
- GNUNET_SCHEDULER_Task task, void *task_cls)
+struct GNUNET_SCHEDULER_Task *
+GNUNET_SCHEDULER_add_at_with_priority (struct GNUNET_TIME_Absolute at,
+ enum GNUNET_SCHEDULER_Priority priority,
+ GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
{
- struct Task *t;
- struct Task *pos;
- struct Task *prev;
+ struct GNUNET_SCHEDULER_Task *t;
+ struct GNUNET_SCHEDULER_Task *pos;
+ struct GNUNET_SCHEDULER_Task *prev;
-#if EXECINFO
- void *backtrace_array[MAX_TRACE_DEPTH];
-#endif
-
- GNUNET_assert (active_task != NULL);
+ GNUNET_assert (NULL != active_task);
GNUNET_assert (NULL != task);
- t = GNUNET_malloc (sizeof (struct Task));
+ t = GNUNET_new (struct GNUNET_SCHEDULER_Task);
t->callback = task;
t->callback_cls = task_cls;
-#if EXECINFO
- t->num_backtrace_strings = backtrace (backtrace_array, MAX_TRACE_DEPTH);
- t->backtrace_strings =
- backtrace_symbols (backtrace_array, t->num_backtrace_strings);
-#endif
t->read_fd = -1;
t->write_fd = -1;
- t->id = ++last_id;
#if PROFILE_DELAYS
t->start_time = GNUNET_TIME_absolute_get ();
#endif
- t->timeout = GNUNET_TIME_relative_to_absolute (delay);
+ t->timeout = at;
t->priority = priority;
t->lifeness = current_lifeness;
/* try tail first (optimization in case we are
* appending to a long list of tasks with timeouts) */
- prev = pending_timeout_last;
- if (prev != NULL)
+ if ( (NULL == pending_timeout_head) ||
+ (at.abs_value_us < pending_timeout_head->timeout.abs_value_us) )
{
- if (prev->timeout.abs_value > t->timeout.abs_value)
- prev = NULL;
- else
- pos = prev->next; /* heuristic success! */
- }
- if (prev == NULL)
- {
- /* heuristic failed, do traversal of timeout list */
- pos = pending_timeout;
+ GNUNET_CONTAINER_DLL_insert (pending_timeout_head,
+ pending_timeout_tail,
+ t);
}
- while ((pos != NULL) &&
- ((pos->timeout.abs_value <= t->timeout.abs_value) ||
- (pos->reason != 0)))
+ else
{
- prev = pos;
- pos = pos->next;
+ /* first move from heuristic start backwards to before start time */
+ prev = pending_timeout_last;
+ while ( (NULL != prev) &&
+ (prev->timeout.abs_value_us > t->timeout.abs_value_us) )
+ prev = prev->prev;
+ /* now, move from heuristic start (or head of list) forward to insertion point */
+ if (NULL == prev)
+ pos = pending_timeout_head;
+ else
+ pos = prev->next;
+ while ( (NULL != pos) &&
+ ( (pos->timeout.abs_value_us <= t->timeout.abs_value_us) ||
+ (0 != pos->reason) ) )
+ {
+ prev = pos;
+ pos = pos->next;
+ }
+ GNUNET_CONTAINER_DLL_insert_after (pending_timeout_head,
+ pending_timeout_tail,
+ prev,
+ t);
}
- if (prev == NULL)
- pending_timeout = t;
- else
- prev->next = t;
- t->next = pos;
- /* hyper-optimization... */
+ /* finally, update heuristic insertion point to last insertion... */
pending_timeout_last = t;
- LOG (GNUNET_ERROR_TYPE_DEBUG, "Adding task: %llu / %p\n", t->id,
- t->callback_cls);
-#if EXECINFO
- int i;
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Adding task: %p\n",
+ t);
+ init_backtrace (t);
+ return t;
+}
- for (i = 0; i < t->num_backtrace_strings; i++)
- LOG (GNUNET_ERROR_TYPE_DEBUG, "Task %llu trace %d: %s\n", t->id, i,
- t->backtrace_strings[i]);
-#endif
- return t->id;
+
+/**
+ * Schedule a new task to be run with a specified delay. The task
+ * will be scheduled for execution once the delay has expired.
+ *
+ * @param delay when should this operation time out?
+ * @param priority priority to use for the task
+ * @param task main function of the task
+ * @param task_cls closure of @a task
+ * @return unique task identifier for the job
+ * only valid until @a task is started!
+ */
+struct GNUNET_SCHEDULER_Task *
+GNUNET_SCHEDULER_add_delayed_with_priority (struct GNUNET_TIME_Relative delay,
+ enum GNUNET_SCHEDULER_Priority priority,
+ GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
+{
+ return GNUNET_SCHEDULER_add_at_with_priority (GNUNET_TIME_relative_to_absolute (delay),
+ priority,
+ task,
+ task_cls);
+}
+
+
+/**
+ * Schedule a new task to be run with a specified priority.
+ *
+ * @param prio how important is the new task?
+ * @param task main function of the task
+ * @param task_cls closure of @a task
+ * @return unique task identifier for the job
+ * only valid until @a task is started!
+ */
+struct GNUNET_SCHEDULER_Task *
+GNUNET_SCHEDULER_add_with_priority (enum GNUNET_SCHEDULER_Priority prio,
+ GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
+{
+ return GNUNET_SCHEDULER_add_delayed_with_priority (GNUNET_TIME_UNIT_ZERO,
+ prio,
+ task,
+ task_cls);
+}
+
+
+/**
+ * Schedule a new task to be run at the specified time. The task
+ * will be scheduled for execution once specified time has been
+ * reached. It will be run with the DEFAULT priority.
+ *
+ * @param at time at which this operation should run
+ * @param task main function of the task
+ * @param task_cls closure of @a task
+ * @return unique task identifier for the job
+ * only valid until @a task is started!
+ */
+struct GNUNET_SCHEDULER_Task *
+GNUNET_SCHEDULER_add_at (struct GNUNET_TIME_Absolute at,
+ GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
+{
+ return GNUNET_SCHEDULER_add_at_with_priority (at,
+ GNUNET_SCHEDULER_PRIORITY_DEFAULT,
+ task,
+ task_cls);
}
* will be scheduled for execution once the delay has expired. It
* will be run with the DEFAULT priority.
*
- * @param delay when should this operation time out? Use
- * GNUNET_TIME_UNIT_FOREVER_REL for "on shutdown"
+ * @param delay when should this operation time out?
* @param task main function of the task
- * @param task_cls closure of task
+ * @param task_cls closure of @a task
* @return unique task identifier for the job
- * only valid until "task" is started!
+ * only valid until @a task is started!
*/
-GNUNET_SCHEDULER_TaskIdentifier
+struct GNUNET_SCHEDULER_Task *
GNUNET_SCHEDULER_add_delayed (struct GNUNET_TIME_Relative delay,
- GNUNET_SCHEDULER_Task task, void *task_cls)
+ GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
{
return GNUNET_SCHEDULER_add_delayed_with_priority (delay,
GNUNET_SCHEDULER_PRIORITY_DEFAULT,
- task, task_cls);
+ task,
+ task_cls);
}
/**
- * Schedule a new task to be run as soon as possible. The task
- * will be run with the DEFAULT priority.
+ * Schedule a new task to be run as soon as possible. Note that this
+ * does not guarantee that this will be the next task that is being
+ * run, as other tasks with higher priority (or that are already ready
+ * to run) might get to run first. Just as with delays, clients must
+ * not rely on any particular order of execution between tasks
+ * scheduled concurrently.
+ *
+ * The task will be run with the DEFAULT priority.
*
* @param task main function of the task
- * @param task_cls closure of task
+ * @param task_cls closure of @a task
* @return unique task identifier for the job
- * only valid until "task" is started!
+ * only valid until @a task is started!
+ */
+struct GNUNET_SCHEDULER_Task *
+GNUNET_SCHEDULER_add_now (GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
+{
+ return GNUNET_SCHEDULER_add_delayed (GNUNET_TIME_UNIT_ZERO,
+ task,
+ task_cls);
+}
+
+
+/**
+ * Schedule a new task to be run on shutdown, that is when a CTRL-C
+ * signal is received, or when #GNUNET_SCHEDULER_shutdown() is being
+ * invoked.
+ *
+ * @param task main function of the task
+ * @param task_cls closure of @a task
+ * @return unique task identifier for the job
+ * only valid until @a task is started!
*/
-GNUNET_SCHEDULER_TaskIdentifier
-GNUNET_SCHEDULER_add_now (GNUNET_SCHEDULER_Task task, void *task_cls)
+struct GNUNET_SCHEDULER_Task *
+GNUNET_SCHEDULER_add_shutdown (GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
{
- return GNUNET_SCHEDULER_add_delayed (GNUNET_TIME_UNIT_ZERO, task, task_cls);
+ struct GNUNET_SCHEDULER_Task *t;
+
+ GNUNET_assert (NULL != active_task);
+ GNUNET_assert (NULL != task);
+ t = GNUNET_new (struct GNUNET_SCHEDULER_Task);
+ t->callback = task;
+ t->callback_cls = task_cls;
+ t->read_fd = -1;
+ t->write_fd = -1;
+#if PROFILE_DELAYS
+ t->start_time = GNUNET_TIME_absolute_get ();
+#endif
+ t->timeout = GNUNET_TIME_UNIT_FOREVER_ABS;
+ t->priority = GNUNET_SCHEDULER_PRIORITY_SHUTDOWN;
+ t->on_shutdown = GNUNET_YES;
+ t->lifeness = GNUNET_YES;
+ GNUNET_CONTAINER_DLL_insert (shutdown_head,
+ shutdown_tail,
+ t);
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Adding task: %p\n",
+ t);
+ init_backtrace (t);
+ return t;
}
* (transitive) ignore-shutdown flag either explicitly set or
* explicitly enabled. This task (and all tasks created from it,
* other than by another call to this function) will either count or
- * not count for the 'lifeness' of the process. This API is only
+ * not count for the "lifeness" of the process. This API is only
* useful in a few special cases.
*
- * @param lifeness GNUNET_YES if the task counts for lifeness, GNUNET_NO if not.
+ * @param lifeness #GNUNET_YES if the task counts for lifeness, #GNUNET_NO if not.
* @param task main function of the task
- * @param task_cls closure of task
+ * @param task_cls closure of @a task
* @return unique task identifier for the job
- * only valid until "task" is started!
+ * only valid until @a task is started!
*/
-GNUNET_SCHEDULER_TaskIdentifier
+struct GNUNET_SCHEDULER_Task *
GNUNET_SCHEDULER_add_now_with_lifeness (int lifeness,
- GNUNET_SCHEDULER_Task task,
+ GNUNET_SCHEDULER_TaskCallback task,
void *task_cls)
{
- GNUNET_SCHEDULER_TaskIdentifier ret;
-
- ret =
- GNUNET_SCHEDULER_add_select (GNUNET_SCHEDULER_PRIORITY_DEFAULT,
- GNUNET_TIME_UNIT_ZERO, NULL, NULL, task,
- task_cls);
- GNUNET_assert (pending->id == ret);
- pending->lifeness = lifeness;
+ struct GNUNET_SCHEDULER_Task *ret;
+
+ ret = GNUNET_SCHEDULER_add_now (task, task_cls);
+ ret->lifeness = lifeness;
return ret;
}
* (prerequisite-run)
* && (delay-ready
* || any-rs-ready
- * || any-ws-ready
- * || shutdown-active )
+ * || any-ws-ready)
* </code>
*
- * @param delay how long should we wait? Use GNUNET_TIME_UNIT_FOREVER_REL for "forever",
- * which means that the task will only be run after we receive SIGTERM
+ * @param delay how long should we wait?
* @param priority priority to use
* @param rfd file descriptor we want to read (can be -1)
* @param wfd file descriptors we want to write (can be -1)
* @param task main function of the task
- * @param task_cls closure of task
+ * @param task_cls closure of @a task
* @return unique task identifier for the job
- * only valid until "task" is started!
+ * only valid until @a task is started!
*/
#ifndef MINGW
-static GNUNET_SCHEDULER_TaskIdentifier
-add_without_sets (struct GNUNET_TIME_Relative delay,
+static struct GNUNET_SCHEDULER_Task *
+add_without_sets (struct GNUNET_TIME_Relative delay,
enum GNUNET_SCHEDULER_Priority priority,
- int rfd, int wfd,
- GNUNET_SCHEDULER_Task task, void *task_cls)
+ int rfd,
+ int wfd,
+ GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
{
- struct Task *t;
-
-#if EXECINFO
- void *backtrace_array[MAX_TRACE_DEPTH];
-#endif
+ struct GNUNET_SCHEDULER_Task *t;
- GNUNET_assert (active_task != NULL);
+ GNUNET_assert (NULL != active_task);
GNUNET_assert (NULL != task);
- t = GNUNET_malloc (sizeof (struct Task));
+ t = GNUNET_new (struct GNUNET_SCHEDULER_Task);
t->callback = task;
t->callback_cls = task_cls;
-#if EXECINFO
- t->num_backtrace_strings = backtrace (backtrace_array, MAX_TRACE_DEPTH);
- t->backtrace_strings =
- backtrace_symbols (backtrace_array, t->num_backtrace_strings);
-#endif
#if DEBUG_FDS
if (-1 != rfd)
{
if ((flags == -1) && (errno == EBADF))
{
- LOG (GNUNET_ERROR_TYPE_ERROR, "Got invalid file descriptor %d!\n", rfd);
-#if EXECINFO
- int i;
-
- for (i = 0; i < t->num_backtrace_strings; i++)
- LOG (GNUNET_ERROR_TYPE_DEBUG, "Trace: %s\n", t->backtrace_strings[i]);
-#endif
+ LOG (GNUNET_ERROR_TYPE_ERROR,
+ "Got invalid file descriptor %d!\n",
+ rfd);
+ init_backtrace (t);
GNUNET_assert (0);
}
}
if (flags == -1 && errno == EBADF)
{
- LOG (GNUNET_ERROR_TYPE_ERROR, "Got invalid file descriptor %d!\n", wfd);
-#if EXECINFO
- int i;
-
- for (i = 0; i < t->num_backtrace_strings; i++)
- LOG (GNUNET_ERROR_TYPE_DEBUG, "Trace: %s\n", t->backtrace_strings[i]);
-#endif
+ LOG (GNUNET_ERROR_TYPE_ERROR,
+ "Got invalid file descriptor %d!\n",
+ wfd);
+ init_backtrace (t);
GNUNET_assert (0);
}
}
t->read_fd = rfd;
GNUNET_assert (wfd >= -1);
t->write_fd = wfd;
- t->id = ++last_id;
#if PROFILE_DELAYS
t->start_time = GNUNET_TIME_absolute_get ();
#endif
t->timeout = GNUNET_TIME_relative_to_absolute (delay);
t->priority = check_priority ((priority == GNUNET_SCHEDULER_PRIORITY_KEEP) ? current_priority : priority);
t->lifeness = current_lifeness;
- t->next = pending;
- pending = t;
- max_priority_added = GNUNET_MAX (max_priority_added, t->priority);
- LOG (GNUNET_ERROR_TYPE_DEBUG, "Adding task: %llu / %p\n", t->id,
- t->callback_cls);
-#if EXECINFO
- int i;
-
- for (i = 0; i < t->num_backtrace_strings; i++)
- LOG (GNUNET_ERROR_TYPE_DEBUG, "Task %llu trace %d: %s\n", t->id, i,
- t->backtrace_strings[i]);
-#endif
- return t->id;
+ GNUNET_CONTAINER_DLL_insert (pending_head,
+ pending_tail,
+ t);
+ max_priority_added = GNUNET_MAX (max_priority_added,
+ t->priority);
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Adding task %p\n",
+ t);
+ init_backtrace (t);
+ return t;
}
#endif
-
/**
* Schedule a new task to be run with a specified delay or when the
* specified file descriptor is ready for reading. The delay can be
* scheduled for execution once either the delay has expired or the
* socket operation is ready. It will be run with the DEFAULT priority.
*
- * @param delay when should this operation time out? Use
- * GNUNET_TIME_UNIT_FOREVER_REL for "on shutdown"
+ * @param delay when should this operation time out?
* @param rfd read file-descriptor
* @param task main function of the task
- * @param task_cls closure of task
+ * @param task_cls closure of @a task
* @return unique task identifier for the job
- * only valid until "task" is started!
+ * only valid until @a task is started!
*/
-GNUNET_SCHEDULER_TaskIdentifier
+struct GNUNET_SCHEDULER_Task *
GNUNET_SCHEDULER_add_read_net (struct GNUNET_TIME_Relative delay,
struct GNUNET_NETWORK_Handle *rfd,
- GNUNET_SCHEDULER_Task task, void *task_cls)
+ GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
{
return GNUNET_SCHEDULER_add_read_net_with_priority (delay,
GNUNET_SCHEDULER_PRIORITY_DEFAULT,
* either the delay has expired or the socket operation is ready. It
* will be run with the DEFAULT priority.
*
- * @param delay when should this operation time out? Use
- * GNUNET_TIME_UNIT_FOREVER_REL for "on shutdown"
+ * @param delay when should this operation time out?
* @param priority priority to use for the task
* @param rfd read file-descriptor
* @param task main function of the task
- * @param task_cls closure of task
+ * @param task_cls closure of @a task
* @return unique task identifier for the job
- * only valid until "task" is started!
+ * only valid until @a task is started!
*/
-GNUNET_SCHEDULER_TaskIdentifier
+struct GNUNET_SCHEDULER_Task *
GNUNET_SCHEDULER_add_read_net_with_priority (struct GNUNET_TIME_Relative delay,
enum GNUNET_SCHEDULER_Priority priority,
struct GNUNET_NETWORK_Handle *rfd,
- GNUNET_SCHEDULER_Task task, void *task_cls)
+ GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
{
-#if MINGW
- struct GNUNET_NETWORK_FDSet *rs;
- GNUNET_SCHEDULER_TaskIdentifier ret;
-
- GNUNET_assert (rfd != NULL);
- rs = GNUNET_NETWORK_fdset_create ();
- GNUNET_NETWORK_fdset_set (rs, rfd);
- ret =
- GNUNET_SCHEDULER_add_select (priority,
- delay, rs, NULL,
- task, task_cls);
- GNUNET_NETWORK_fdset_destroy (rs);
- return ret;
-#else
- return add_without_sets (delay,
- priority,
- GNUNET_NETWORK_get_fd (rfd), -1, task,
- task_cls);
-#endif
+ return GNUNET_SCHEDULER_add_net_with_priority (delay, priority,
+ rfd,
+ GNUNET_YES,
+ GNUNET_NO,
+ task, task_cls);
}
-
/**
* Schedule a new task to be run with a specified delay or when the
* specified file descriptor is ready for writing. The delay can be
* socket operation is ready. It will be run with the priority of
* the calling task.
*
- * @param delay when should this operation time out? Use
- * GNUNET_TIME_UNIT_FOREVER_REL for "on shutdown"
+ * @param delay when should this operation time out?
* @param wfd write file-descriptor
* @param task main function of the task
- * @param task_cls closure of task
+ * @param task_cls closure of @a task
* @return unique task identifier for the job
- * only valid until "task" is started!
+ * only valid until @a task is started!
*/
-GNUNET_SCHEDULER_TaskIdentifier
+struct GNUNET_SCHEDULER_Task *
GNUNET_SCHEDULER_add_write_net (struct GNUNET_TIME_Relative delay,
struct GNUNET_NETWORK_Handle *wfd,
- GNUNET_SCHEDULER_Task task, void *task_cls)
+ GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
{
-#if MINGW
- struct GNUNET_NETWORK_FDSet *ws;
- GNUNET_SCHEDULER_TaskIdentifier ret;
+ return GNUNET_SCHEDULER_add_net_with_priority (delay,
+ GNUNET_SCHEDULER_PRIORITY_DEFAULT,
+ wfd,
+ GNUNET_NO, GNUNET_YES,
+ task, task_cls);
+}
- GNUNET_assert (wfd != NULL);
- ws = GNUNET_NETWORK_fdset_create ();
- GNUNET_NETWORK_fdset_set (ws, wfd);
- ret =
- GNUNET_SCHEDULER_add_select (GNUNET_SCHEDULER_PRIORITY_DEFAULT,
- delay, NULL, ws,
- task, task_cls);
- GNUNET_NETWORK_fdset_destroy (ws);
+/**
+ * Schedule a new task to be run with a specified delay or when the
+ * specified file descriptor is ready. The delay can be
+ * used as a timeout on the socket being ready. The task will be
+ * scheduled for execution once either the delay has expired or the
+ * socket operation is ready.
+ *
+ * @param delay when should this operation time out?
+ * @param priority priority of the task
+ * @param fd file-descriptor
+ * @param on_read whether to poll the file-descriptor for readability
+ * @param on_write whether to poll the file-descriptor for writability
+ * @param task main function of the task
+ * @param task_cls closure of task
+ * @return unique task identifier for the job
+ * only valid until "task" is started!
+ */
+struct GNUNET_SCHEDULER_Task *
+GNUNET_SCHEDULER_add_net_with_priority (struct GNUNET_TIME_Relative delay,
+ enum GNUNET_SCHEDULER_Priority priority,
+ struct GNUNET_NETWORK_Handle *fd,
+ int on_read,
+ int on_write,
+ GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
+{
+#if MINGW
+ struct GNUNET_NETWORK_FDSet *s;
+ struct GNUNET_SCHEDULER_Task * ret;
+
+ GNUNET_assert (NULL != fd);
+ s = GNUNET_NETWORK_fdset_create ();
+ GNUNET_NETWORK_fdset_set (s, fd);
+ ret = GNUNET_SCHEDULER_add_select (
+ priority, delay,
+ on_read ? s : NULL,
+ on_write ? s : NULL,
+ task, task_cls);
+ GNUNET_NETWORK_fdset_destroy (s);
return ret;
#else
- GNUNET_assert (GNUNET_NETWORK_get_fd (wfd) >= 0);
- return add_without_sets (delay,
- GNUNET_SCHEDULER_PRIORITY_DEFAULT,
- -1, GNUNET_NETWORK_get_fd (wfd), task,
- task_cls);
+ GNUNET_assert (GNUNET_NETWORK_get_fd (fd) >= 0);
+ return add_without_sets (delay, priority,
+ on_read ? GNUNET_NETWORK_get_fd (fd) : -1,
+ on_write ? GNUNET_NETWORK_get_fd (fd) : -1,
+ task, task_cls);
#endif
}
* scheduled for execution once either the delay has expired or the
* socket operation is ready. It will be run with the DEFAULT priority.
*
- * @param delay when should this operation time out? Use
- * GNUNET_TIME_UNIT_FOREVER_REL for "on shutdown"
+ * @param delay when should this operation time out?
* @param rfd read file-descriptor
* @param task main function of the task
- * @param task_cls closure of task
+ * @param task_cls closure of @a task
* @return unique task identifier for the job
- * only valid until "task" is started!
+ * only valid until @a task is started!
*/
-GNUNET_SCHEDULER_TaskIdentifier
+struct GNUNET_SCHEDULER_Task *
GNUNET_SCHEDULER_add_read_file (struct GNUNET_TIME_Relative delay,
const struct GNUNET_DISK_FileHandle *rfd,
- GNUNET_SCHEDULER_Task task, void *task_cls)
+ GNUNET_SCHEDULER_TaskCallback task, void *task_cls)
{
-#if MINGW
- struct GNUNET_NETWORK_FDSet *rs;
- GNUNET_SCHEDULER_TaskIdentifier ret;
-
- GNUNET_assert (rfd != NULL);
- rs = GNUNET_NETWORK_fdset_create ();
- GNUNET_NETWORK_fdset_handle_set (rs, rfd);
- ret =
- GNUNET_SCHEDULER_add_select (GNUNET_SCHEDULER_PRIORITY_DEFAULT,
- delay, rs, NULL,
- task, task_cls);
- GNUNET_NETWORK_fdset_destroy (rs);
- return ret;
-#else
- int fd;
-
- GNUNET_DISK_internal_file_handle_ (rfd, &fd, sizeof (int));
- return add_without_sets (delay,
- GNUNET_SCHEDULER_PRIORITY_DEFAULT,
- fd, -1, task, task_cls);
-
-#endif
+ return GNUNET_SCHEDULER_add_file_with_priority (
+ delay, GNUNET_SCHEDULER_PRIORITY_DEFAULT,
+ rfd, GNUNET_YES, GNUNET_NO,
+ task, task_cls);
}
* scheduled for execution once either the delay has expired or the
* socket operation is ready. It will be run with the DEFAULT priority.
*
- * @param delay when should this operation time out? Use
- * GNUNET_TIME_UNIT_FOREVER_REL for "on shutdown"
+ * @param delay when should this operation time out?
* @param wfd write file-descriptor
* @param task main function of the task
- * @param task_cls closure of task
+ * @param task_cls closure of @a task
* @return unique task identifier for the job
- * only valid until "task" is started!
+ * only valid until @a task is started!
*/
-GNUNET_SCHEDULER_TaskIdentifier
+struct GNUNET_SCHEDULER_Task *
GNUNET_SCHEDULER_add_write_file (struct GNUNET_TIME_Relative delay,
const struct GNUNET_DISK_FileHandle *wfd,
- GNUNET_SCHEDULER_Task task, void *task_cls)
+ GNUNET_SCHEDULER_TaskCallback task, void *task_cls)
{
-#if MINGW
- struct GNUNET_NETWORK_FDSet *ws;
- GNUNET_SCHEDULER_TaskIdentifier ret;
+ return GNUNET_SCHEDULER_add_file_with_priority (
+ delay, GNUNET_SCHEDULER_PRIORITY_DEFAULT,
+ wfd, GNUNET_NO, GNUNET_YES,
+ task, task_cls);
+}
- GNUNET_assert (wfd != NULL);
- ws = GNUNET_NETWORK_fdset_create ();
- GNUNET_NETWORK_fdset_handle_set (ws, wfd);
- ret =
- GNUNET_SCHEDULER_add_select (GNUNET_SCHEDULER_PRIORITY_DEFAULT,
- delay, NULL, ws,
- task, task_cls);
- GNUNET_NETWORK_fdset_destroy (ws);
+
+/**
+ * Schedule a new task to be run with a specified delay or when the
+ * specified file descriptor is ready. The delay can be
+ * used as a timeout on the socket being ready. The task will be
+ * scheduled for execution once either the delay has expired or the
+ * socket operation is ready.
+ *
+ * @param delay when should this operation time out?
+ * @param priority priority of the task
+ * @param fd file-descriptor
+ * @param on_read whether to poll the file-descriptor for readability
+ * @param on_write whether to poll the file-descriptor for writability
+ * @param task main function of the task
+ * @param task_cls closure of @a task
+ * @return unique task identifier for the job
+ * only valid until @a task is started!
+ */
+struct GNUNET_SCHEDULER_Task *
+GNUNET_SCHEDULER_add_file_with_priority (struct GNUNET_TIME_Relative delay,
+ enum GNUNET_SCHEDULER_Priority priority,
+ const struct GNUNET_DISK_FileHandle *fd,
+ int on_read, int on_write,
+ GNUNET_SCHEDULER_TaskCallback task, void *task_cls)
+{
+#if MINGW
+ struct GNUNET_NETWORK_FDSet *s;
+ struct GNUNET_SCHEDULER_Task * ret;
+
+ GNUNET_assert (NULL != fd);
+ s = GNUNET_NETWORK_fdset_create ();
+ GNUNET_NETWORK_fdset_handle_set (s, fd);
+ ret = GNUNET_SCHEDULER_add_select (
+ priority, delay,
+ on_read ? s : NULL,
+ on_write ? s : NULL,
+ task, task_cls);
+ GNUNET_NETWORK_fdset_destroy (s);
return ret;
#else
- int fd;
-
- GNUNET_DISK_internal_file_handle_ (wfd, &fd, sizeof (int));
- GNUNET_assert (fd >= 0);
- return add_without_sets (delay,
- GNUNET_SCHEDULER_PRIORITY_DEFAULT,
- -1, fd, task, task_cls);
-
+ int real_fd;
+
+ GNUNET_DISK_internal_file_handle_ (fd, &real_fd, sizeof (int));
+ GNUNET_assert (real_fd >= 0);
+ return add_without_sets (
+ delay, priority,
+ on_read ? real_fd : -1,
+ on_write ? real_fd : -1,
+ task, task_cls);
#endif
}
-
/**
* Schedule a new task to be run with a specified delay or when any of
* the specified file descriptor sets is ready. The delay can be used
* (prerequisite-run)
* && (delay-ready
* || any-rs-ready
- * || any-ws-ready
- * || (shutdown-active && run-on-shutdown) )
+ * || any-ws-ready) )
* </code>
*
* @param prio how important is this task?
- * @param delay how long should we wait? Use GNUNET_TIME_UNIT_FOREVER_REL for "forever",
- * which means that the task will only be run after we receive SIGTERM
+ * @param delay how long should we wait?
* @param rs set of file descriptors we want to read (can be NULL)
* @param ws set of file descriptors we want to write (can be NULL)
* @param task main function of the task
- * @param task_cls closure of task
+ * @param task_cls closure of @a task
* @return unique task identifier for the job
- * only valid until "task" is started!
+ * only valid until @a task is started!
*/
-GNUNET_SCHEDULER_TaskIdentifier
+struct GNUNET_SCHEDULER_Task *
GNUNET_SCHEDULER_add_select (enum GNUNET_SCHEDULER_Priority prio,
struct GNUNET_TIME_Relative delay,
const struct GNUNET_NETWORK_FDSet *rs,
const struct GNUNET_NETWORK_FDSet *ws,
- GNUNET_SCHEDULER_Task task, void *task_cls)
+ GNUNET_SCHEDULER_TaskCallback task,
+ void *task_cls)
{
- struct Task *t;
-
-#if EXECINFO
- void *backtrace_array[MAX_TRACE_DEPTH];
-#endif
-
- GNUNET_assert (active_task != NULL);
+ struct GNUNET_SCHEDULER_Task *t;
+
+ if ( (NULL == rs) &&
+ (NULL == ws) )
+ return GNUNET_SCHEDULER_add_delayed_with_priority (delay,
+ prio,
+ task,
+ task_cls);
+ GNUNET_assert (NULL != active_task);
GNUNET_assert (NULL != task);
- t = GNUNET_malloc (sizeof (struct Task));
+ t = GNUNET_new (struct GNUNET_SCHEDULER_Task);
t->callback = task;
t->callback_cls = task_cls;
-#if EXECINFO
- t->num_backtrace_strings = backtrace (backtrace_array, MAX_TRACE_DEPTH);
- t->backtrace_strings =
- backtrace_symbols (backtrace_array, t->num_backtrace_strings);
-#endif
t->read_fd = -1;
t->write_fd = -1;
- if (rs != NULL)
+ if (NULL != rs)
{
t->read_set = GNUNET_NETWORK_fdset_create ();
GNUNET_NETWORK_fdset_copy (t->read_set, rs);
}
- if (ws != NULL)
+ if (NULL != ws)
{
t->write_set = GNUNET_NETWORK_fdset_create ();
GNUNET_NETWORK_fdset_copy (t->write_set, ws);
}
- t->id = ++last_id;
#if PROFILE_DELAYS
t->start_time = GNUNET_TIME_absolute_get ();
#endif
GNUNET_SCHEDULER_PRIORITY_KEEP) ? current_priority :
prio);
t->lifeness = current_lifeness;
- t->next = pending;
- pending = t;
+ GNUNET_CONTAINER_DLL_insert (pending_head,
+ pending_tail,
+ t);
max_priority_added = GNUNET_MAX (max_priority_added, t->priority);
- LOG (GNUNET_ERROR_TYPE_DEBUG, "Adding task: %llu / %p\n", t->id,
- t->callback_cls);
-#if EXECINFO
- int i;
-
- for (i = 0; i < t->num_backtrace_strings; i++)
- LOG (GNUNET_ERROR_TYPE_DEBUG, "Task %llu trace %d: %s\n", t->id, i,
- t->backtrace_strings[i]);
-#endif
- return t->id;
+ LOG (GNUNET_ERROR_TYPE_DEBUG,
+ "Adding task %p\n",
+ t);
+ init_backtrace (t);
+ return t;
}
/* end of scheduler.c */