mirror of https://github.com/ipxe/ipxe.git
204 lines
5.5 KiB
C
204 lines
5.5 KiB
C
/*
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* Copyright (C) 2006 Michael Brown <mbrown@fensystems.co.uk>.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as
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* published by the Free Software Foundation; either version 2 of the
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* License, or any later version.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* 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., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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FILE_LICENCE ( GPL2_OR_LATER );
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#include <stddef.h>
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#include <ipxe/timer.h>
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#include <ipxe/list.h>
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#include <ipxe/process.h>
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#include <ipxe/init.h>
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#include <ipxe/retry.h>
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/** @file
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*
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* Retry timers
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*
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* A retry timer is a binary exponential backoff timer. It can be
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* used to build automatic retransmission into network protocols.
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*
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* This implementation of the timer is designed to satisfy RFC 2988
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* and therefore be usable as a TCP retransmission timer.
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*
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*
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*/
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/* The theoretical minimum that the algorithm in stop_timer() can
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* adjust the timeout back down to is seven ticks, so set the minimum
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* timeout to at least that value for the sake of consistency.
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*/
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#define MIN_TIMEOUT 7
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/** List of running timers */
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static LIST_HEAD ( timers );
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/**
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* Start timer
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*
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* @v timer Retry timer
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*
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* This starts the timer running with the current timeout value. If
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* stop_timer() is not called before the timer expires, the timer will
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* be stopped and the timer's callback function will be called.
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*/
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void start_timer ( struct retry_timer *timer ) {
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if ( ! timer->running ) {
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list_add ( &timer->list, &timers );
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ref_get ( timer->refcnt );
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}
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timer->start = currticks();
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timer->running = 1;
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/* 0 means "use default timeout" */
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if ( timer->min_timeout == 0 )
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timer->min_timeout = DEFAULT_MIN_TIMEOUT;
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/* We must never be less than MIN_TIMEOUT under any circumstances */
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if ( timer->min_timeout < MIN_TIMEOUT )
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timer->min_timeout = MIN_TIMEOUT;
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/* Honor user-specified minimum timeout */
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if ( timer->timeout < timer->min_timeout )
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timer->timeout = timer->min_timeout;
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DBG2 ( "Timer %p started at time %ld (expires at %ld)\n",
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timer, timer->start, ( timer->start + timer->timeout ) );
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}
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/**
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* Start timer with a specified fixed timeout
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*
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* @v timer Retry timer
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* @v timeout Timeout, in ticks
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*/
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void start_timer_fixed ( struct retry_timer *timer, unsigned long timeout ) {
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start_timer ( timer );
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timer->timeout = timeout;
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DBG2 ( "Timer %p expiry time changed to %ld\n",
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timer, ( timer->start + timer->timeout ) );
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}
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/**
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* Stop timer
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*
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* @v timer Retry timer
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*
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* This stops the timer and updates the timer's timeout value.
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*/
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void stop_timer ( struct retry_timer *timer ) {
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unsigned long old_timeout = timer->timeout;
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unsigned long now = currticks();
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unsigned long runtime;
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/* If timer was already stopped, do nothing */
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if ( ! timer->running )
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return;
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list_del ( &timer->list );
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runtime = ( now - timer->start );
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timer->running = 0;
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DBG2 ( "Timer %p stopped at time %ld (ran for %ld)\n",
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timer, now, runtime );
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/* Update timer. Variables are:
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*
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* r = round-trip time estimate (i.e. runtime)
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* t = timeout value (i.e. timer->timeout)
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* s = smoothed round-trip time
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*
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* By choice, we set t = 4s, i.e. allow for four times the
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* normal round-trip time to pass before retransmitting.
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*
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* We want to smooth according to s := ( 7 s + r ) / 8
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*
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* Since we don't actually store s, this reduces to
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* t := ( 7 t / 8 ) + ( r / 2 )
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*
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*/
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if ( timer->count ) {
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timer->count--;
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} else {
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timer->timeout -= ( timer->timeout >> 3 );
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timer->timeout += ( runtime >> 1 );
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if ( timer->timeout != old_timeout ) {
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DBG ( "Timer %p timeout updated to %ld\n",
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timer, timer->timeout );
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}
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}
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ref_put ( timer->refcnt );
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}
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/**
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* Handle expired timer
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*
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* @v timer Retry timer
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*/
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static void timer_expired ( struct retry_timer *timer ) {
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struct refcnt *refcnt = timer->refcnt;
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int fail;
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/* Stop timer without performing RTT calculations */
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DBG2 ( "Timer %p stopped at time %ld on expiry\n",
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timer, currticks() );
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assert ( timer->running );
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list_del ( &timer->list );
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timer->running = 0;
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timer->count++;
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/* Back off the timeout value */
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timer->timeout <<= 1;
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if ( timer->max_timeout == 0 ) /* 0 means "use default timeout" */
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timer->max_timeout = DEFAULT_MAX_TIMEOUT;
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if ( ( fail = ( timer->timeout > timer->max_timeout ) ) )
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timer->timeout = timer->max_timeout;
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DBG ( "Timer %p timeout backed off to %ld\n",
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timer, timer->timeout );
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/* Call expiry callback */
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timer->expired ( timer, fail );
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/* If refcnt is NULL, then timer may already have been freed */
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ref_put ( refcnt );
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}
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/**
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* Single-step the retry timer list
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*
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* @v process Retry timer process
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*/
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static void retry_step ( struct process *process __unused ) {
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struct retry_timer *timer;
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unsigned long now = currticks();
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unsigned long used;
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/* Process at most one timer expiry. We cannot process
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* multiple expiries in one pass, because one timer expiring
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* may end up triggering another timer's deletion from the
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* list.
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*/
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list_for_each_entry ( timer, &timers, list ) {
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used = ( now - timer->start );
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if ( used >= timer->timeout ) {
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timer_expired ( timer );
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break;
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}
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}
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}
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/** Retry timer process */
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PERMANENT_PROCESS ( retry_process, retry_step );
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