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244 lines
5.9 KiB
244 lines
5.9 KiB
/*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*
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* Author : Richard GAYRAUD - 04 Nov 2003
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* Olivier Jacques
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* From Hewlett Packard Company.
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* Shriram Natarajan
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* Peter Higginson
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* Eric Miller
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* Venkatesh
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* Enrico Hartung
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* Nasir Khan
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* Lee Ballard
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* Guillaume Teissier from FTR&D
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* Wolfgang Beck
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* Venkatesh
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* Vlad Troyanker
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* Charles P Wright from IBM Research
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* Amit On from Followap
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* Jan Andres from Freenet
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* Ben Evans from Open Cloud
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* Marc Van Diest from Belgacom
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* Michael Dwyer from Cibation
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*/
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#include <iterator>
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#include <algorithm>
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#include <fstream>
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#include <iostream>
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#include <sys/types.h>
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#include <sys/wait.h>
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#include <assert.h>
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#include "sipp.hpp"
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task_list all_tasks;
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task_list running_tasks;
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timewheel paused_tasks;
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task::task() {
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this->taskit = all_tasks.insert(all_tasks.end(), this);
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add_to_runqueue();
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}
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task::~task() {
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if (running) {
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remove_from_runqueue();
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} else {
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paused_tasks.remove_paused_task(this);
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}
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all_tasks.erase(taskit);
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}
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/* Put this task in the run queue. */
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void task::add_to_runqueue() {
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this->runit = running_tasks.insert(running_tasks.end(), this);
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this->running = true;
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}
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void task::add_to_paused_tasks(bool increment) {
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paused_tasks.add_paused_task(this, increment);
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}
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/* Remove this task from the run queue. */
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bool task::remove_from_runqueue() {
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if (!this->running) {
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return false;
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}
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running_tasks.erase(this->runit);
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this->running = false;
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return true;
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}
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/* Get the overall list of running tasks. */
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task_list * get_running_tasks()
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{
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return & running_tasks;
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}
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void abort_all_tasks() {
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for (task_list::iterator task_it = all_tasks.begin();
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task_it != all_tasks.end(); task_it = all_tasks.begin()) {
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(*task_it)->abort();
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}
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}
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void dump_tasks() {
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WARNING("---- %d Active Tasks ----\n", all_tasks.size());
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for (task_list::iterator task_it = all_tasks.begin();
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task_it != all_tasks.end(); task_it++) {
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(*task_it)->dump();
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}
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}
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task_list *timewheel::task2list(task *task) {
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unsigned int wake = task->wake();
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unsigned int wake_sigbits = wake;
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unsigned int base_sigbits = wheel_base;
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assert(wheel_base <= clock_tick);
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if (wake == 0) {
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return &forever_list;
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}
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wake_sigbits /= LEVEL_ONE_SLOTS;
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base_sigbits /= LEVEL_ONE_SLOTS;
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if (wake_sigbits == base_sigbits) {
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return &wheel_one[wake % LEVEL_ONE_SLOTS];
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}
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wake_sigbits /= LEVEL_TWO_SLOTS;
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base_sigbits /= LEVEL_TWO_SLOTS;
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if (wake_sigbits == base_sigbits) {
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return &wheel_two[(wake / LEVEL_ONE_SLOTS) % LEVEL_TWO_SLOTS];
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}
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assert(wake_sigbits < LEVEL_THREE_SLOTS);
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return &wheel_three[wake_sigbits];
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}
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int expire_paused_tasks() {
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return paused_tasks.expire_paused_tasks();
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}
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int paused_tasks_count() {
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return paused_tasks.size();
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}
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/* Iterate through our sorted set of paused tasks, removing those that
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* should no longer be paused, and adding them to the run queue. */
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int timewheel::expire_paused_tasks() {
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int found = 0;
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while (wheel_base < clock_tick) {
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int slot1 = wheel_base % LEVEL_ONE_SLOTS;
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/* Migrate tasks from slot2 when we hit 0. */
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if (slot1 == 0) {
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int slot2 = (wheel_base / LEVEL_ONE_SLOTS) % LEVEL_TWO_SLOTS;
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/* If slot2 is also zero, we must migrate tasks from slot3 into slot2. */
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if (slot2 == 0) {
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int slot3 = ((wheel_base / LEVEL_ONE_SLOTS) / LEVEL_TWO_SLOTS);
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assert(slot3 < LEVEL_THREE_SLOTS);
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for (task_list::iterator l3it = wheel_three[slot3].begin();
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l3it != wheel_three[slot3].end();
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l3it++) {
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/* Migrate this task to wheel two. */
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(*l3it)->add_to_paused_tasks(false);
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}
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wheel_three[slot3].clear();
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}
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for (task_list::iterator l2it = wheel_two[slot2].begin();
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l2it != wheel_two[slot2].end();
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l2it++) {
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/* Migrate this task to wheel one. */
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(*l2it)->add_to_paused_tasks(false);
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}
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wheel_two[slot2].clear();
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}
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found += wheel_one[slot1].size();
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for(task_list::iterator it = wheel_one[slot1].begin();
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it != wheel_one[slot1].end(); it++) {
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(*it)->add_to_runqueue();
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count--;
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}
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wheel_one[slot1].clear();
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wheel_base++;
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}
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return found;
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}
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void timewheel::add_paused_task(task *task, bool increment) {
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task_list::iterator task_it;
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if (task->wake() && task->wake() < wheel_base) {
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task->add_to_runqueue();
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return;
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}
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task_list *list = task2list(task);
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task_it = list->insert(list->end(), task);
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task->pauselist = list;
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task->pauseit = task_it;
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if (increment) {
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count++;
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}
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}
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void timewheel::remove_paused_task(task *task) {
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task_list *list = task->pauselist;
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list->erase(task->pauseit);
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count--;
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}
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timewheel::timewheel() {
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count = 0;
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wheel_base = clock_tick;
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}
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int timewheel::size() {
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return count;
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}
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void task::setRunning() {
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if (!running) {
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paused_tasks.remove_paused_task(this);
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add_to_runqueue();
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}
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}
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void task::setPaused() {
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if (running) {
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if (!remove_from_runqueue()) {
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WARNING("Tried to remove a running call that wasn't running!\n");
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assert(0);
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}
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} else {
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paused_tasks.remove_paused_task(this);
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}
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assert(running == false);
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add_to_paused_tasks(true);
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}
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void task::abort() {
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delete this;
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}
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