Apply Associate Dynamics of Surrounding Theory Used to Cut Off Any Possible Probable Complex Fuzzy...

70
 Apply ass ociate dyn amics of {(c lear , not), (amo unt, event ), (process, i nvest), (fet ch<up, unt il>, transaction<adjust, conserve>)} across any function form of thought to assign something clear exactly true inside system economy and financial effects = {{SA = signal adjustment and system architecture} {!" = mode insight and modeling intelligence}} Said Mchaalia (draft copy, November 24  sd  2013) In fact, the major main real operating aim object of this work is to assign an associate easy simple dynamics involving within applied dynamics of {(clear , not), (amount, event), (process, invest), (fetch<up, until>, transaction<ad just, conserve>)} function form of thought to assign something clear to any signal adjustment during deep investigation of system architecture. Hence, digital verification rule the test, trip and travel of information's transportatio n tests to evolve an exactly true right processing within any environment reality flow of sequential digital data proceeding. hus, the major most significant threads, tasks, and job scheduling opportunitie s are the use of dictionary logics language, which has been started by  Lempel  and Ziv since !"#$ %&. (urthermore, the major maintaining thread is to search and investigate the mathematical illustration and implementation of the envisage corresponding )something clear*. +ecause, the mathematical illustration and implementation has to rule the basic built in principle dynamics across the associate mode's insight and modeling intelligence, the main advances within the approval proposal approach is to assign the exactly required mathematical intentional surrounding amount quantities during the elaboration and evolving processing of the envisage corresponding sequential digital data processing. measurable amount quantity within any  possible probable dynamic design, whereby something clear clear = mathematical intentional surrounding adjustments mounting illustrations mathematical implementation mode insight and modeling intelligence to allow  justification o f using job schedul ing within any app lied math such that - {if ( (f() > a) (f() < #)) then do {instruction statements; many as it could be} mapping pairing couple  y = ( sin / () cos / () ) / sin / ( ) cos / ( ) ,  ! = !  y =  sin / ( ) cos / ( ) ( sin / ()cos / ( )) / 0 or mapping pairing couple    y =sin / () ,  ! =!  y =cos / ( ) 0 or mapping pairing couple    y =!+ ! sin / ( ) ,  ! =!+ ! cos / ( ) 0 or mapping pairing couple    y = tan / ( ) ,  ! = !  y =  ! tan / () 0 1ince the advances within system economy and financial effects, the major huge hard hierarchy home of conserving any primordial principle environment reality flow of mode insight within any modeling intelligence. hus, )22134 55 26I44 apply 2clear, not0, amount, event0, process, invest0, fetch7up, until8, transaction7adju st, conserve804 function form of thought to assign something clear exactly true inside system economy and financial effects*, has to evolve the manufacturing industry involving inside huge hard hierarchy homes of using technology. herefore, to apply primordial principle of 2clear, not0, amount, event0, process, invest0, fetch7up, until8, transaction7adjust, conserve804 function form of thought to assign something clear exactly true inside system economy , financial effects, transmission's transportation and robust control*. In fact, the ruling processing of any job scheduling is to exploit the main real operating threads, task, principles,

Transcript of Apply Associate Dynamics of Surrounding Theory Used to Cut Off Any Possible Probable Complex Fuzzy...

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 Apply associate dynamics of {(clear, not), (amount, event), (process, invest), (fetch<up, until>,

transaction<adjust, conserve>)} across any function form of thought to assign something clear

exactly true inside system economy and financial effects = {{SA = signal adjustment and system

architecture} {!" = mode insight and modeling intelligence}}

Said Mchaalia

(draft copy, November 24

 sd 

 2013)

In fact, the major main real operating aim object of this work is to assign an associate easy simple dynamicsinvolving within applied dynamics of {(clear, not), (amount, event), (process, invest), (fetch<up, until>,

transaction<adjust, conserve>)} function form of thought to assign something clear to any signal adjustmentduring deep investigation of system architecture. Hence, digital verification rule the test, trip and travel ofinformation's transportation tests to evolve an exactly true right processing within any environment reality flowof sequential digital data proceeding. hus, the major most significant threads, tasks, and job schedulingopportunities are the use of dictionary logics language, which has been started by  Lempel  and Ziv since !"#$ %&.

(urthermore, the major maintaining thread is to search and investigate the mathematical illustration andimplementation of the envisage corresponding )something clear*. +ecause, the mathematical illustration andimplementation has to rule the basic built in principle dynamics across the associate mode's insight and modelingintelligence, the main advances within the approval proposal approach is to assign the exactly requiredmathematical intentional surrounding amount quantities during the elaboration and evolving processing of theenvisage corresponding sequential digital data processing.

measurable amountquantity within any possible probabledynamic design,

whereby somethingclear

clear =mathematical 

intentional 

surrounding 

adjustments

mounting 

illustrations

mathematical implementation mode insight and modeling intelligence to allow justification of using job scheduling within any applied math such that -

{if ( (f() > a) (f() < #)) then do {instruction statements; many as it could be}

mapping pairing couple

 y=(sin/()−cos

/())/

sin/() cos/()

,  ! =!

 y=

  sin/( ) cos/()

(sin/()−cos/())/

0

or mapping pairing couple

   y=sin/() ,  ! =!− y=cos

/() 0

or mapping pairing couple

   y=−!+!

sin/()

,  ! =−!+!

cos/()

0

or mapping pairing couple

    y=tan/() ,  ! =

!

 y=

  !

tan/()

0

1ince the advances within system economy and financial effects, the major huge hard hierarchy home ofconserving any primordial principle environment reality flow of mode insight within any modeling intelligence.hus, )22134 55 26I44 apply 2clear, not0, amount, event0, process, invest0, fetch7up, until8,transaction7adjust, conserve804 function form of thought to assign something clear exactly true inside systemeconomy and financial effects*, has to evolve the manufacturing industry involving inside huge hard hierarchyhomes of using technology. herefore, to apply primordial principle of 2clear, not0, amount, event0, process,invest0, fetch7up, until8, transaction7adjust, conserve804 function form of thought to assign something clearexactly true inside system economy, financial effects, transmission's transportation and robust control*.

In fact, the ruling processing of any job scheduling is to exploit the main real operating threads, task, principles,

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acts, and dynamics of the symbolic synchroni9ed surrounding set 2fetch, decode, execute, encode, write back4.hus, the {(clear, not), (amount, event), (process, i=invest), (fetch<up, until>, transaction<adjust, conserve>)},

has to handle any possible probable huge hard hierarchy homes of job scheduling involving the primordial principle dynamics of symbolic synchroni9ed surrounding set 2fetch, decode, execute, encode, write back4, theassociate mode's insight within such a job scheduling processing is defined as follows-

1 fetch a tra"sactio" of si#"als $ amo%"t &%a"tity of si#"als i"volvi"# discrete eve"t sim%latio" of ma'or

a"d mi"or occ%rre"ces of s%rro%"d sy"chro"i!ed symbolic eve"ts

2 decode e"visa#e tra"sactio" $ ad'%st(e"visa#e tra"sactio") co"serve its e"tities (compo"e"ts) to

be ha"dled i"side the proposal processi"# ('ob sched%li"#)

3 eec%te $ process i"volvi"# a"y slidi"# *i"do* slice processi"# *ithi" mappi"# pair fetch<up, until>$

4 e"code $ %si"# clear $ mathematical i"te"tio"al secrets across mod%latio" processi"# to e"vlop a"y

 possible probable se&%e"tial di#ital tra"sactio" (mode+s i"si#ht across pairi"# (clear $ f(), "ot $ ratio

of o"e to clear) )

*rite bac- $ e"viro"me"t reality flo* of tra"sactio"s to co"serve (store) i"volvi"# discrete eve"t

 sim%latio" of ma'or a"d mi"or occ%rre"ces of s%rro%"d sy"chro"i!ed symbolic eve"ts

:. ;sing four satellite dish design to acess any possible probable magnetic electronics just by inserting aninside switcher within the approval proposal electronics, which has been used within any commercialdish to capture < pictures and access internet or general sequential digital data at any time. hus, themajor most main real operating dynamics across the four satellite dish design for any approval proposalmagnetic electronics, involves the dynamic mechanism of possible probable following focus on functionform is the evolving mathemtical intentional surrounding architectures across the old mathematicaldescription of < motion 3mpere 6axwell dynamics0.

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 .i#%re 0/ mai" real operati"# dy"amics across the fo%r satellite dish desi#"

In fact, fi#%re 0 is showing the major most main real operating dynamics across the four satellite dish design forany approval proposal magnetic electronics, whereby the dynamic mechanism of possible probable followingfocus on function form is the evolving mathemtical intentional surrounding architectures across the oldmathematical description of < motion 3mpere 6axwell dynamics0.

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 .i#%re 1/ a" overvie* of %sb i"terface data str%ct%res

In fact, fi#%re 1 is showing an overview of usb interface for any possible probable data structures.

he main real operating thread task is to follow within this focus on function form, which has to mount anymathematical inspiration involving inide -

!.   sin/()=

 somethi"# clear 

!+∑i==

i="

 somethi"# clear 

, whereby the  somethi"# clear =vectorsi!e() is the motor

kernel of any sequential digital transaction due to tra"sactio"={   S (t ="0 )

i==,... ," } .

2. or cos/()=

  somethi"# clear 

!+∑i==

i="

 somethi"# clear 

>hen it is missing )something clear*, which could be a mthematical intentional surrounding amount quantity todescribe any possible probable evolving processsing within signal adjustment across any system architecture.

Hence, the major real operating threads and tasks within the evolving user interface is to satisfy soul's desirable

aim object, the mounting dynamics is to introduce any similar menu to basic operating menus of start up insidethe most operating system leaf like 6icrosoft, ?ebian, and any other @inux distribution.Hence, the mode insight and modeling intelligence of signal adjustment across system architecture is asurrounding symbolic huge hard hierarchy homes of research and safe scientific procedures, the major mostmaintaining effect inside the mathematical intentional surrounding symbolic signed system advances is tocomply within a safe stronger securing signed liable laws such that those of Aodhood's dynamics andmehanisms.

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 .i#%re 2/ mai" real operati"# i"terface to acess a"y arra"#eme"t adva"ces of 'ob sched%li"# processi"# 

In fact, fi#%re 2 is showing the main real operating interface to acess any arrangement advances of jobscheduling processing.

?ue to the major real operating thread and task to conserve a solid robust job scheduling design, which has toevolve the required dynamics during any possible probable timing simulation. hus, the envisage corresponding job scheduling is to process any possible probable sooul's satisfaction, whereby the major real operatinginterface of any user has to involve a graphical interface. Hence, the major main menu is a basic built in menu toenhance the similar window menus, whereby the user has to communicate any information by )mouse clic*during any possible probable communication within the envisage corresponding software.

In fact, the mathematical intentional surrounding dynamics has to assign any modeling intelligence and modeinsight for any possible probable corresponding dynamics and mechanism. hus, since the major real operatingthread task across symbolic synchroni9ed society, the major most mounting maintaining the dynamic primordial principles across the smart smooth safe scientific society is the mathematical implementation of any possible probable mathematical insight and mode inspiration.

In fact, the motor kernel dynamics across any possible probable job scheduling aim object is to find anyassociate structured involving design within the major main real operating principle thread, which is defined asfollows notice that the typename is equal to a defined classname- integer, float, string, char, struct, ...0-

template<typename T>

 T As() const

{...}

template<typename T>

std::shared_ptr<const T> As() const

{

  return std::dynamic_pointer_cast<const 

T,const Obect>(shared_!rom_this())"

}

In fact, the major most real operating thread within o and  is the template7class 8 class 6 24, whichcould be illustrated as follows-

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template<typename T>

std::shared_ptr<T> As(){

  return 

std::dynamic_pointer_cast<T, Obect>(shared_!rom_this())"

}

template<typename T>bool #s() const

{

  auto do$ncasted % As<T>()"

  i!(do$ncasted)

  {

  return true"

  }

  return !alse"

}

hus, the major most tasks is to use the )mouse on lick0* processing to assign any possible probable thread toassociate software design in order to achieve desirable aim object. Bext to use is the defined structured menucommunication processing, which has to be shown as follows-

&'#_*+OT -enu::-enu(std::shared_ptr<-enu&andle>menu&andle)

  : ase( ),handle( menu&andle )

{

  i!(menu&andle)

  {

  &-/ h-enu % menu&andle0>1et&-/()"

  i!(h-enu)

  {

  AddTo-enu-ap(h-enu,this)"

  }

  }

  items % std::ma2e_shared<-enu#tems>(this)" }

&'#_*+OT -enu3 -enu::Add4tyle(5'O5 style) {

  -/#6O menuin!o % {si7eo!(menuin!o),8}"

  menuin!o.!-as2 % -#-_4T9"

  1et-enu#n!o(menuin!o)"

  menuin!o.d$4tyle ;% style"

  4et-enu#n!o(menuin!o)"

  return this"

}

&'#_*+OT =oid -enu#tem::5oOn-enuommand(-essa?e3 messa?e) {

  Onlic2( )" }

(urthermore, the next step within the associate corresponding job scheduling, which should achieve any possible probable enhancement inside the approval proposal mathematical intentional secrets is to defined a menu usageas below-

&'#_*+OT std::shared_ptr<itmap&andle> itmap&andle::oad6rom6ile(const 4trin?3 the6ile-ame)

{

  auto !actory % #ma?in?6actory::reate()"

  auto decoder % !actory.reate5ecoder6rom6ilename(the6ile-ame)"

  auto !rame % decoder.1et6rame(8)"  auto result % !rame.Asitmap&andle()"

  return result"

}

=oid  -y6orm::#nitiali7e-enuar()

{  auto sel! % As<-y6orm>()"

  auto !ilee$-enu#tem % ma2e_component<Te@t-enu#tem>(sel!,3e$)"

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  auto !ileOpen-enu#tem % ma2e_component<Te@t-enu#tem>(sel!,3Open)"

  auto !ile4a=e-enu#tem % ma2e_component<Te@t-enu#tem>(sel!,34a=e)"

  auto !ile4eparator % ma2e_component<4eparator-enu#tem>(sel!)"

  auto !ile@it-enu#tem % ma2e_component<Te@t-enu#tem>(sel!,3@it)"

  !ilee$-enu#tem0>Onlic2.connect(B3C(-enu#tem){ te@t % e$ selected" #n=alidateect()" })"

  !ileOpen-enu#tem0>Onlic2.connect(B3C(-enu#tem){ te@t % Open selected"#n=alidateect()" })"  !ile4a=e-enu#tem0>Onlic2.connect(B3C(-enu#tem){ te@t % 4a=e selected"#n=alidateect()" })"

  !ile@it-enu#tem0>Onlic2.connect(B3C(-enu#tem){ lose()" })"

  auto !ile4ub-enu % ma2e_component<4ub-enu#tem>(sel!,36ile)"

  !ile4ub-enu0>Add(!ilee$-enu#tem)"

  !ile4ub-enu0>Add(!ileOpen-enu#tem)"

  !ile4ub-enu0>Add(!ile4a=e-enu#tem)"

  !ile4ub-enu0>Add(!ile4eparator)"

  !ile4ub-enu0>Add(!ile@it-enu#tem)"

  auto edit4ub-enu % ma2e_component<4ub-enu#tem>(sel!,3dit)"

 

auto editut-enu#tem % edit4ub-enu0>Add-enu#tem(u3t)"

  auto editopy-enu#tem % edit4ub-enu0>Add-enu#tem(3opy)"

  auto edit+aste-enu#tem % edit4ub-enu0>Add-enu#tem(3+aste)"

  editut-enu#tem0>Onlic2.connect(B3C(-enu#tem){ te@t % ut selected" #n=alidateect()" })"

  editopy-enu#tem0>Onlic2.connect(B3C(-enu#tem){ te@t % opy selected"#n=alidateect()" })"  edit+aste-enu#tem0>Onlic2.connect(B3C(-enu#tem){ te@t % +aste selected" #n=alidateect()"

})"

  auto =ie$4ub-enu % ma2e_component<4ub-enu#tem>(sel!,3Die$)"

  auto =ie$Time % =ie$4ub-enu0>Add-enu#tem(3Time)"

  =ie$Time0>Onlic2.connect(B3C(-enu#tem)

  {5ateTime no$ % 5ateTime::o$()"

  i!(no$.#s5ayli?ht4a=in?Time())

  {

  te@t % no$.To4trin?() E 5ayli?ht sa=in? time"

}

  else  {

  te@t % no$.To4trin?() E 4tandard time"

}

  #n=alidateect()"

})"

  auto menuar % ma2e_component<-enuar>(sel!)"

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  menuar0>Add(!ile4ub-enu)"

  menuar0>Add(edit4ub-enu)"

  menuar0>Add(=ie$4ub-enu)"

  4et-enu(menuar)"}

whereby, the major most task is to simplify the general use of global definition of any possible probableenvironment reality flow of applied job scheduling to achieve any digital sequential processing across theoptimi9ation of storage space and the organi9ation of scheduling timing simulation. (urthermore, the major mostsignificant dynamics is to define the envisage corresponding communication processing of handling job tasks asfollows-

&'#_*+OT =oid ontrol::&andle-essa?e(-essa?e3 messa?e) {

s$itch(messa?e.messa?e) {

.

  .  case '-_5A'#T-:

  this0>5oOn5ra$#tem(messa?e)"

  brea2"

  .

  .

  case '-_-A4/#T-:

  this0>5oOn-easure#tem(messa?e)"

  brea2"

  case '-_-/O--A5:

  this0>5oOn-enuommand(messa?e)"

  brea2"

  .

  .} }

class -essa?e : public ta?-41{public:  typedef LRESULT Result;

  Result result;

  bool handled;

  Message()  : result()!  handled(false)  { "e"set(#h$nd!!si%eof(tagMS&));  '

';

Hence, any possible probable number, which has been defined within the high holy +ook, has to process within a philosophy processing belong to corresponding symbolic synchroni9ed society. (urthermore, the main realoperating integer number, which has been inside the huge hard high holy +ook is the number five )&* or thenumber four )C* or the number ten )!=*, or the number nine )"* or the number seven )#* or the number three)D* or any other number. hus, the symbolic synchroni9ed society is belong to the major main real operatingnumber four )C* due to the possible probable change of dynamics across any symbolic synchroni9ed scientific

themes based on the binary basic built in, whereby C=/

/

=[(=,!)∨(!,=)]

/

is a major real operating threadsand main returning organi9ed tasks to handle any sequential digital processing across the symbolic synchroni9edsociety during any possible probable timing simulaiton.

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*+,E-./RTMenu0ar::Menu0ar()  : 0ase(1reateandle()){ 2ddStyle(M+S,+/T*3404./S);

'

*+,E-./RT 5irtual5oid6o/nMenu1o""and(Message# "essage);

typede! struct ta?-41 {

  +6 h$nd;  U*+T "essage;  .2R2M $.ara";  L.2R2M l.ara";  6/R6 ti"e;  ./*+T pt;

' MS&! 7.MS&! +E2R7+.MS&! 32R 7L.MS&;

*+,E-./RTstd::shared,ptr8Menuandle9Menu0ar::1reateandle(){

ME+U hMenu ::1reateMenu();  if(hMenu)

  {  Thro$Last/SError();  '  auto result std::"a<e,shared8Menuandle9(hMenu!true);  return result;'

(urthermore, the associate numbesr C=//=[(=,!)∨(!,=)]/ , which has to involve a logics language of

)EF* to handle the possible probable processsing of stochastic, statistical, probabilistic, choatic inside the fatal

focus on segment of 0, 1 based on assigned function form, which has to be defined within the famousmathematical insight and mode's implementation such as sin

/() or cos/() or  f   (sin/() ,cos/()) or 

 f  (!

sin/()

 ,!

cos/()

) or any other similar function form has to evolve mathematical intentional surrounding

amount quantity inside the fatal focus on segment 0, 1. Gven though, some searcher such as laude 1hannon, did choose to use another function form, which has been defined inside the fatal focus on segment 0, 1.

hus, that function form was the  f   ()= plo# (!

 p) why +ecause the associate processing has to involve the

environment reality flow of information theory, whereby the basic built in principles are transmission'stransportation dynamics and deep investigation of fu99y implementation across corresponding transaction'sseries. herefore, the major most serial processing has to evolve and involve timing simulation principles inorder to introduce the )*ait for *, or )*ait %"til * or )*ait * or the )*a-e %p* processing of any possible probable process() dy"amic desi#".

Indeed, the number of C.  mo"ey

i"come so%rce= 5 

&is very interesting due to its relationship to the hundred 1000,

 by nthe way that!==

C  =/&=&

/. Hence, &====!=!bi"ary , which has to deliver many philosophy

 processing across system economy, financial effect, transmission's transportation, safe soul science's satisfaction,robust control processing, logics language and more.

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 .i#%re 3/ mai" real operati"# dy"amics across the mappi"# pairi"# effects, *hereby the re&%ired mathematical i"te"tio"al 

 secrets are searchi"# meas%rable core+s processi"# *ithi" mode i"si#ht a"d modeli"# i"telli#e"ce

In fact, fi#%re 3 is showing the main real operating dynamics across the mapping pairing effects, whereby therequired mathematical intentional secrets are searching measurable core's processing within mode insight andmodeling intelligence. hus, the main real operating thread task of actual symbolic synchroni9ed society tosearch a suitable symbolic solution to rotation effect to allow a sufficient signed dynamics across electricalmotor and to implement a robust controling mechanism across magnetic electronics, whose major intentionaleffect is the measurable core's processing across the mapping pairs. >hat is a pair his is the surroundingsubject of any philosophy processing inside system economy, financial effect, robust controlJ transmission'stransportation, logics language, and searching liable laws yes search surrounding liable laws such as laws ofKirchoff, laws of Bewton, natural laws, Aodhood's laws, etc L, comply with yeah liable law's logics language,wherby the major main real operating thread tasks are surrounding architectural mathematical intentional

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symbolic synchroni9ations inside any mode insight and modeling intelligence of signal adjustment across systemarchitectures.0

 .i#%re 4/ mai" real meas%rable compo"e"ts to allo* a fatal foc%s o" of mathematical i"te"tio"al s%rro%"di"# si#"al 

ad'%stme"t across a"y system architect%re

hus, fi#%re 4 is showing main real measurable components to allow a fatal focus on of mathematical intentional

surrounding signal adjustment across any system architecture. herefore, the major main real operatingcomponent inside the symbolic synchroni9ed society is the current edge flow, which could be inside any deepinvestigation implement of virstualism as )custom7adjust, consumer8* dynamics's effect, whereby )customadjust any probable possible consumer is the dynamic effect of optimi9ation of any measurable amount quantityto allow fatal focus on processing inside the evovling environment reality flow. Hence, the current edge flow is acustom of flow of any posisble probable measurable amount quantity from a defined corresponding source,which could be easy simple called consumer of node to any another node or consumer, where this custom should be an incoming valuable variable value, which has to be evaluated and then returned to flow agin inside thedefined networking processing or )Arid, which is equal to scheduling envisage corresponding timing simulationthread, task or job*.

 .i#%re / mai" real meas%rable compo"e"t i"isde the evolvi"# of a"y motor -er"el flo* *ithi" rotatio" motio" dy"amics

In fact, fi#%re is showing the main real measurable component inisde the evolving of any motor kernel flow

within rotation motion dynamics, whereby the major primordial processing across this motor kernel dynamicsinside the defined aim object within the processing at any possible probable timing simulation within theenvisage corresponding effects and aspects of rotation motion, which has been investigated to implement anymanufacturing industry of electrical energy fashion flows of any energy fashion function form.

1ystem economy

&====!=!bi"ary={=="o }∪{!=e)ista"ce }∪{== false }∪{!=tr%e }Hence, the 20 $ "o4 is the major huge hard hierarchy home to tell anyinability MnoM, the principle thread is to search surround signs, what is Nthis  processing of search surround signs0, next what is Nthis0 again his is a

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structure of defined elements component, entity or nucleus or somethingclear is something nuclear, which should be equal to elementary measurableamount quantity inside any symbolic shining synchroni9ed signed dynamics,what is a dynamics then Eops, this the huge hard hierarchy home of any philosophy processing, justification looking for any leaf like liable laws.

transmission's transportation

&====!=!bi"ary={=.amount }∪{!.amount }∪{== false}∪{!=tr%e }

Hence, the amount quantity is measurable for any symbolic synchroni9edsigned processing. >hat is transmission's transportationhus, any transmission's transportation is measurable, how then

safe soul science's satisfaction&====!=!bi"ary={=.amount }∪{!.amount }∪{== false}∪{!=tr%e }

+e there where anyone could never reach it.

robust control processing&====!=!bi"ary={=="o }∪{!=e)ista"ce }∪{== false }∪{!=tr%e }

robust control processing choose to suitable flow flexible within thingswhich have damages, dangers, disasters, destructive effects, L

logics language&====!=!bi"ary={=.amount }∪{!.amount }∪{== false}∪{!=tr%e }

logics language symbolic synchroni9ed signed safe surround signaladjustment and system architecture to evolve any involving dynamics andmechanism inside structured soul's satisfaction justification looking for anyleaf like liable laws.

6anufacturing industry&====!=!bi"ary={=="o }∪{!=e)ista"ce }∪{== false }∪{!=tr%e }

6anufacturing industry implement, install, enhance, improve, invent,intend, ...., instruction inside intentional aim objects to be achievable for anysoul's satisfaction across mode's insight and modeling intelligence.

Hence, the

!==

C   =/&=&

/

is very interest and important symbolic synchroni9ed sign to implement, install,

intend, and enhance instruction across any manufacturing dynamics and mechanism during justifying symbolicsigned synchroni9ation across knowledge cultures, mode insight, modeling intelligence, mathematicalintentional secrets and manufacturing industry.

herefore, this  =

!==

C  =&

/is the symbolic synchroni9ed dynamics to proceed within any system economy

and financial effects in order to allow any component, any nuclear element inside the corresponding society to bealive within his envisage soul's satisfaction at any time, wherby the motor kernel of such a signed simulation isthe timing mechanism to flow any focus on fashion flow's of energy enhancements inside any possible probableenvironment reality flow handling function forms across adjustment judge any advances of possible probable

arrangement0.

(urthermore, the this ) =

!==

C  =&

/has to judge the symbolic synchroni9ed sign of work and job scheduling

within any smart smooth society, within the mathematical intentional surrounding symbolic adjustment

mechanism, justification of twenty five /&=  this ) =

!==

C  =&

/0 could then be the first focus on fatal function

form of discrete event simulation to judge working dynamics inside the selective signed elementary componentinvolving within any possible probable society.

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 .i#%re 6/ ma'or most real operati"# dy"amics, *hich evolve ma#"etic effects, impleme"ted mathematical i"si#ht acrossmode i"spiratio" a"d modeli"# i"telli#e"ce a"d i"vesti#atio" of a"y approval porposal differe"tial e&%atio"s across %"der 

co"s%mer+s seal sim%latio"

Hence, fi#%re 6  is showing the major most real operating dynamics, which evolve magnetic effects, implemented

mathematical insight across mode inspiration and modeling intelligence and investigation of any approval porposal differential equations across under consumer's seal simulation. hus, to resolve the approval prposaldifferential equal in such a function form-

  a∂/

 f   ( )∂t /

  +b∂  f  ()∂ t 

  +cf  ()== e&%atio" 10

whereby the f() is focus on function form of envisage corresponding major mathematical intentional surroundingadvancing motor implementation of signal adjustment maintaining the proposal system architecture.

Gven though, to resolve the approval proposal differential equation for any possible complex system, whose

valuable variable extensible components are the inductor's effects, the capacitor's aspects, then the motor kernelflows, is huge hard hierarchy homes of intentional investigation across non linear systems and signal adjustmentfor any symbolic synchroni9ed advances within the approval proposal society signs.

herefore, twenty five years 2 years0 of work should be enough to allow any another to get into workingdynamics at any needed time, whose huge hard hierarchy home of soul's sanctification is to bring a safe securityup. Hence, the major most signification question is what is a safe soul's satisfaction surround security. Hence, atany timing simulation processing, the major primordial principle is to assign the mapping pairing (start %p, e"d

off) for any possible probable token simulation processing. hus, the this  =

!==

C  =&

/rules the major main

real operating thread task to fix any focus on function form of symbolic synchroni9ed signed safe society, theshining )start up* node consumer or any real main major operating focal function form0 is the age of be able to

distinguish between )this is true* and ) this is false*.

herefore, the childhood needs the parenthood to permit a solid sure safe soul's satisfaction for being at summitof symbolic synchroni9ed safe society involving the smart smooth signs of science to be applied for any humanaim object to reach the desirable symbolic synchroni9ation within the safe scientific symbols.

(urthermore, 1 years, years0 could be the mapping pairing couple for (first start %p, last start %p) of any possible probable job processing get up into working thread task proceeding0. Hence, because the soul'ssatisfaction of any human person is searching any safe signed security across summit and symbolic scheduling atany possible probable timing simulation during any period of time starting from the possible probable !&Oyear of 

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 be ready to begin a huge hard shining signs of incoming money from different source in order to choose the basic built in processing for a fixing focus on fatal function form, which has to define a reflexive aim object anddesirable wishes. +ecause, the random processing, whereby the stochastic, probabilistic, statistical and chaoticdynamics should be always applied to enhance and support any symbolic synchroni9ed effect of makingcomplexity within the fatal focus on segment 0, 1, whereby the major most signed mathematical intentionalsecrets should engender and envelop any following function form within the mathematical insight as below- application of huge hard high holy +ooks should be the subject of anyone has interest within this subject. Gven

though, the major main real operating dynamics inside system economy and financial effect is the followingfocus on function form defined below as follows-

   5 i"come

 parts=:={  5 

i"come parts=:

:  ,C.

(   5 i"come

 parts=:−  5 

i"come parts=:

:  )

&  }

Hence, the C.  mo"ey

i"come so%rce= 5 

& is an intentional implementation of incoming money to deliver to any

required dynamics inside the symbolic synchroni9ed society. hus, this four times C. [ f  ()

&  ] , whereby f() is

the fatal focus on function form to define the incoming money at any timing simulation. herefore, the four 40is a basic built in integer number to progress within any system economy and financial effect during thedetermining of the suitable smart system inside the financial effect's measurable processing.

 .i#%re 7/ mai" real operati"# varatio" across the defi"ed C.  mo"ey

i"come so%rce= 5 

&eo e"#e"der a"y mo"ey i"comi"# 

dy"amics across a"y possible probable symbolic sy"chro"i!ed society

In fact, fi#%re 7  is showing the main real operating varation across the defined C.mo"ey

i"come so%rce= 5 

&to

evolve and engender any money incoming dynamics across any possible probable symbolic synchroni9edsociety.

0

500

1000

1500

2000

2500

3000 C.mo"ey

i"come so%rce= 5 

&

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 .i#%re 8/ mai" real operati"# ill%stratio" ofmo"ey

i"come so%rce= 5 

&to evolve the se&%e"tial dy"amics across mode

i"si#ht at a"y symbolic sy"chro"i!ed society searchi"# to develop the modeli"# i"telli#e"ce mecha"ism

Hence, fi#%re 8 is showing the main real operating illustration ofmo"ey

i"come so%rce= 5 

&to evolve the sequential

dynamics across mode insight at any symbolic synchroni9ed society searching to develop the modelingintelligence mechanism.

In fact, the integer number four C0 depicts four primordial principle distinct of symbolic synchroni9ed signkinds inside any possible probable society. hus, these four kinds of symbolic synchroni9ed signs are-

(a) "earest compo"e"ts (h%ma" perso"s) to correspo"di"# perso" i"volvi"# i"side

C.  mo"ey

i"come so%rce= 5 

&

(b) losi"# sec%rity+s perso" belo"# to the e"visa#e perso" s%ch that this perso" if ide"tified by/

C.mo"ey

i"come so%rce= 5 

&

(c) for a"y perso", *ho has "o i"come belo"# to a"y perso" i"volvi"# i"side C.mo"ey

i"come so%rce= 5 

&

(d) for a"y perso", *ho does "ot has e"o%#h mo"ey to live belo"# to a"y perso" i"volvi"# i"side

  C.  mo"ey

i"come so%rce= 5 

&

(urthermore, the system eocnomy is evolving within any symbolic synchroni9ed society, whereby thegovernment ahead knows how to identify any kind of the four defined above cathegories, any person involving

0

100

200

300

400

500

600

700

800mo"ey

i"come so%rce= 5 

&

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within C.  mo"ey

i"come so%rce= 5 

&, has to deliver the government system the required money to be delivered to

any kind of the four cathegories defined above0 in order to get into the soul's satisfaction within )be smart bemy smooth desirable aim object* adage and hand ons.

In fact, the main real operating job scheduling is to assign any possible probable symbolic synchroni9edkeyword's system engendering signal archichtectures and handling signal adjustments for any possible probabletiming simulation involving within any principle of discrete event simulation.

Hence, the follow approval proposal surround symbolic synchroni9ed set 9(clear, "ot), (amo%"t, eve"t),

(process, i"vest), (fetch:%p, %"til;, tra"sactio":ad'%st, co"serve;)< f%"ctio" form of tho%#ht to assignsomething clear exactly true, has to rule any sequential digital transaction during timing simulation.

 .i#%re =/ the mai" real operati"# variatio" of 

mo"eyi"come

 so%rce= 5 −(C.mo"ey

i"come so%rce= 5 

&  +

mo"eyi"come

 so%rce= 5 

:  ) to s%pport a"y sysetm eoc"omy a"d 

 fi"a"cial predictio" ill%stratio" d%ri"# sy"chro"i!i"# a"y symbolic society *ithi" the si#"ed dy"amics i"volvi"# i"side a"yh%#e hard hi#her holy >oo-

In fact, fi#%re = is showing the - the main real operating variation of 

mo"eyi"come

 so%rce= 5 −(C.  mo"ey

i"come so%rce= 5 

&  +

  mo"eyi"come

 so%rce= 5 

:  ) to support any sysetm eocnomy and

financial prediction illustration during synchroni9ing any symbolic society within the signed dynamics involving

inside any huge hard higher holy +ook.

herefore, the symbolic synchroni9ed surrounding set {(clear, not), (amount, event), (process, i=invest),

(fetch<up, until>, transaction<adjust, conserve>)}, has to trace any transaction dynamics across signal's

adjustment and system's architecture. herefore, tra"sactio"={   S (t ="0 )

i==,... ," } , just choose pairing couple

(", i) to identify the major most signal involving within any possible probable transaction, such that

  tra"sactio"={ S (t ="0 )

i==,... ," }

0

100

200

300

400

500

600

700

800

mo"eyi"come

 so%rce= 5 −(C.mo"ey

i"come so%rce= 5 

&  +

mo"eyi"come

 so%rce= 5 

:  )

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hus, a transaction is a set of signal to be used within any further processing, the evolving dynamics acrosssignal's adjustment and system's architecture, whom valuable variable extensible available surroundingmeasurable intentional symbolic synchroni9ed set {(clear, not), (amount, event), (process, i=invest),

(fetch<up, until>, transaction<adjust, conserve>)}, has to handle any possible probable fu99y, genetic andmimetic approaches. herefore,

clearmathematical illustration

mapping pair 

  y (sin

/()−cos/())/

sin/()cos

/(), 9

sin/()cos

/()(sin

/()−cos/())/

0

or mapping pair 

  y sin/( ) , 9 cos

/() 0

or mapping pair 

  y −!+  !

sin/()

, 9 −!+  !

cos/()

0

not "ot(clear) $ virt%alism $ %si"# i"volvi"# 'ob sched%li"# $ 99S? $ sho%ld advise $*hile(co"strai"t co"ditio"s) do 9 i"str%ctio" stateme"ts@<< 9MA $ mode+s i"si#ht $middle avera#e dy"amics $ 9(a$a b $) BB (a$ b$b) s%ch that $ (ab)C2<<

amount a"y meas%rable amo%"t &%a"tity $ search s%rro%"di"# system to be %sed i"side

meas%rable dy"amics a"d mecha"ism

event eve"t $ (" s%ch that t$", val%e $ somethi"# clear to be defi"ed) $ deep i"vesti#atio"

of discrete eve"t sim%latio"

m move to cha"#e i" positio" from o"e poi"t to a"other  , t o pro#ress i" se&%e"ces, to pro#ress

to*ard a partic%lar state or co"ditio", to follo* a specified co%rse, to start off@ depart

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i invest

fetch to dama#e or brea- the threads of (of a"y possible probable co"servi"# tra"sactio" bloc-),

to mo%"t (a"y bi"ary basic b%ilt i" tra"sactio" bloc- to be co"served for f%rther %se), to

clear of a "at%ral coveri"# or #ro*th(to i"volve a"y similar #e"etic dy"amics *ithi"

correspo"di"# processi"#), to fall a*ay (apply mai" real operati"# pri"ciples of discrete

eve"t sim%latio")

transaction tra"sactio"={ S ( t ="0 )

i==,... ," }

Hence, the real operating dynamics across the mathematical insight is to conserve a robust algorithm, which hasto prove advanced job scheduling. hus, any, job scheduling required making processing dynamics, the firstthread to evolve is a make file, which could be described as follows-

all - executablee=ecutable : file>?o file@?o  gcc Ao e=ecutable file>?o file@?ofile>?o : file>?c file>?h  gcc Ac file>?cfile@?o : file@?c file>?h file@?h  gcc Ac file@?cclean :  r" file>?o file@?o e=ecutable core

P make clean

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r" file>?o file@?o e=ecutable corer": cannot re"o5e BcoreC: +o such file or directoryD "a<egcc Ac file>?cgcc Ac file@?cgcc Ao e=ecutable file>?o file@?oD touch file@?hD "a<e

gcc Ac file@?cgcc Ao e=ecutable file>?o file@?oD touch file@?oD "a<egcc Ao e=ecutable file>?o file@?oD touch file>?hD "a<egcc Ac file>?cgcc Ac file@?cgcc Ao e=ecutable file>?o file@?o

3n other example of any make file could be written as follows-

gcc13L2&S A/@ Ac/0S file>?o file@?o

all : e=ecutable?c?o :  F(11) F(13L2&S) F8e=ecutable : F(/0S)  F(11) Ao FG F(/0S)

P cat 6akefile11 gcc13L2&S A/@ Ac

/0S file>?o file@?oSR1S file>?c file@?c

all : e=ecutable?c?o :  F(11) F(13L2&S) F8e=ecutable : F(/0S)  F(11) Ao FG F(/0S)11 gccdepend :  "a<edepend A*? F(SR1)D cat file>?cHinclude Ifile>?hI"ain() {'

D cat file@?cHinclude Ifile@?hIHinclude Ifile>?hID "a<edepend A*? file>?c file@?cD cat Ma<efile11 gcc13L2&S A/@ Ac/0S file>?o file@?oSR1S file>?c file@?c

all : e=ecutable

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?c?o :  F(11) F(13L2&S) F8e=ecutable : F(/0S)  F(11) Ao FG F(/0S)11 gccdepend :  "a<edepend A*? F(SR1)

H 6/ +/T 6ELETE

file>?o: ?Jfile>?hfile@?o: ?Jfile@?h ?Jfile>?h

all : de5elop"ent?ps inde=?ht"l

inde=?ht"l : de5elop"ent?sg"l  Kade Aiht"l At sg"l Ad for"ation?dslHht"l de5elop"ent?sg"lde5elop"ent?te= : de5elop"ent?sg"l  Kade At te= Ad for"ation?dslHprint de5elop"ent?sg"lde5elop"ent?d5i : de5elop"ent?te=  Kadete= F8de5elop"ent?ps : de5elop"ent?d5i

  d5ips Ao FG F8

all: hello

hello: hello?o "ain?o  gcc Ao hello hello?o "ain?o

hello?o: hello?c  gcc Ao hello?o Ac hello?c A Aall Aansi Apedantic

"ain?o: "ain?c hello?h  gcc Ao "ain?o Ac "ain?c A Aall Aansi Apedantic

clean:  r" Arf 7?o

"rproper: clean  r" Arf hello

11gcc13L2&SA Aall Aansi ApedanticL63L2&SE-E1hello

all: F(E-E1)

hello: hello?o "ain?o  F(11) Ao hello hello?o "ain?o F(L63L2&S)

hello?o: hello?c  F(11) Ao hello?o Ac hello?c F(13L2&S)

"ain?o: "ain?c hello?h  F(11) Ao "ain?o Ac "ain?c F(13L2&S)

clean:  r" Arf 7?o

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"rproper: clean  r" Arf F(E-E1)

11gcc13L2&SA Aall Aansi ApedanticL63L2&SE-E1helloSR1 hello?c "ain?c/0 F(SR1:?c?o)

all: F(E-E1)

hello: F(/0)  F(11) Ao FG F F(L63L2&S)

"ain?o: hello?h

D?o: D?c  F(11) Ao FG Ac F8 F(13L2&S)

?./+4: clean "rproper

clean:  r" Arf 7?o

"rproper: clean  r" Arf F(E-E1)

6E0U&yes11gccifeN (F(6E0U&)!yes)  13L2&SA Aall Aansi Apedantic Ag  L63L2&S

else  13L2&SA Aall Aansi Apedantic  L63L2&SendifE-E1helloSR1 F($ildcard 7?c)/0 F(SR1:?c?o)

all: F(E-E1)ifeN (F(6E0U&)!yes)  Gecho I&OnOration en "ode debugIelse  Gecho I&OnOration en "ode releaseIendif

hello: F(/0)  GF(11) Ao FG F F(L63L2&S)

"ain?o: hello?h

D?o: D?c  GF(11) Ao FG Ac F8 F(13L2&S)

?./+4: clean "rproper

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clean:  Gr" Arf 7?o

"rproper: clean  Gr" Arf F(E-E1)

e=port 11gcce=port 13L2&SA Aall Aansi Apedantice=port L63L2&SELL/,6*RhelloE-E1F(ELL/,6*R)Jhello

all: F(E-E1) F(E-E1):  G(cd F(ELL/,6*R) ## F(M2PE))

?./+4: clean "rproper F(E-E1)

clean:  G(cd F(ELL/,6*R) ## F(M2PE) FG)

"rproper: clean  G(cd F(ELL/,6*R) ## F(M2PE) FG)

E-E1hello

SR1 F($ildcard 7?c)/0 F(SR1:?c?o)

all: F(E-E1)

hello: F(/0)  GF(11) Ao FG F F(L63L2&S)

D?o: D?c  GF(11) Ao FG Ac F8 F(13L2&S)

?./+4: clean "rproper

clean:  Gr" Arf 7?o

"rproper: clean

(urthermore, the major real operating threads and jobs is to evolve job scheduling involving some graphical user interface to satisfy any possible probable soul's satisfaction. Hence, the foucs on procedures are evolved as below-

i!(stream)

{

  stream.4ee2(F88,4ee2Ori?in::4tartO!6ile)"

  .

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  .

  .

}

&'#_*+OT =oid -enu::5oOn-enuommand(-essa?e3 messa?e)

{  On-enuommand(messa?e)"

  i!(Gmessa?e.handled)

  {

  int position % messa?e.$+aram"

  std::shared_ptr<-enu#tem> item % 1et#tem(position)"

  i!(item)

  {

  item0>5oOn-enuommand(messa?e)"

  }

  }

}

&'#_*+OT =oid ontrol::5oOn-enuommand(-essa?e3 messa?e)

{  On-enuommand(messa?e)"

  i!(Gmessa?e.handled)

  {

  &-/ h-enu % (&-/)messa?e.l+aram"

 i!(h-enu)

  {

  auto menu % -enu::1et6rom-enu-ap(h-enu)"

  i!(menu)

  {

  menu0>5oOn-enuommand(messa?e)"

  }

  }

  }}

&'#_*+OT =oid ontrol::5oOn5ra$#tem(-essa?e3 messa?e)

{  On5ra$#tem(messa?e)"

  i!(Gmessa?e.handled)

  {

  5A'#T-4T/T dra$#tem4truct % (5A'#T-4T/T)messa?e.l+aram"

  i!(dra$#tem4truct 33 dra$#tem4truct0>tlType %% O5T_-/)

  {

  -enu#tem menu#tem % (-enu#tem)dra$#tem4truct0>item5ata"

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  i!(menu#tem)

  {

  menu#tem0>5oOn5ra$#tem(dra$#tem4truct)"

  messa?e.handled % true"

  messa?e.result % true"

  }

  }

  }}

&'#_*+OT =oid ontrol::5oOn-easure#tem(-essa?e3 messa?e)

{  On-easure#tem(messa?e)"

  i!(Gmessa?e.handled)

  {

  -A4/#T-4T/T measure#tem4truct % (-A4/#T-4T/T)messa?e.l+aram"

  i!(measure#tem4truct 33 measure#tem4truct0>tlType %% O5T_-/)

  {

  -enu#tem menu#tem % (-enu#tem)measure#tem4truct0>item5ata"

  i!(menu#tem)

  {

  menu#tem0>5oOn-easure#tem(measure#tem4truct)"

  messa?e.handled % true"

  messa?e.result % true"

  }

  }

  }}

&'#_*+OT -enu#tem3 -enu#tem::5oOnAdd()

{

  auto menu % +arent-enu()"

  i!(menu)

  {

  -/#T-#6O in!o"

  this0>#nitiali7e-enu#tem#n!o(in!o)"

  auto inde@ % #nde@O!()"

  menu0>1et&andle()0>#nsert-enu#tem(inde@, true,in!o)"

  }

  return this"

}

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class -enu#tem : public omponent

{

  !riend class ontrol"

  !riend class -enu"

  !riend class -enu#tems"

  std::$ea2_ptr<-enu> parent-enu"

  .

  .

public:

typede! omponent ase"

  &'#_*+OT -enu#tem( )"

  &'#_*+OT H-enu#tem( )"

  &'#_*+OT std::shared_ptr<-enu#tems> +arent-enu#tems() const"

  &'#_*+OT std::shared_ptr<-enu> +arent-enu() const"

  &'#_*+OT int #nde@O!( ) const"

  &'#_*+OT std::shared_ptr<itmap&andle> itmap() const"

  &'#_*+OT -enu#tem3 4etitmap(std::shared_ptr<itmap&andle> theitmap)"

  &'#_*+OT std::shared_ptr<itmap&andle> hec2editmap() const"

  &'#_*+OT -enu#tem3 4ethec2editmap(std::shared_ptr<itmap&andle> thehec2editmap)"

  &'#_*+OT std::shared_ptr<itmap&andle> /nchec2editmap() const"

  &'#_*+OT -enu#tem3 4et/nchec2editmap(std::shared_ptr<itmap&andle> the/nchec2editmap)"

  &'#_*+OT bool #shec2ed() const"

  &'#_*+OT -enu#tem3 4ethec2ed(bool =alue % true)"

  &'#_*+OT bool #s5e!ault() const"

  &'#_*+OT -enu#tem3 4et5e!ault(bool =alue % true)"

  &'#_*+OT bool #s5isabled() const"

  &'#_*+OT -enu#tem3 4et5isabled(bool =alue % true)"

  &'#_*+OT bool #snabled() const"

  &'#_*+OT -enu#tem3 4etnabled(bool =alue % true)" 

&'#_*+OT bool #s1rayed() const"

  &'#_*+OT -enu#tem3 4et1rayed(bool =alue % true)"

  &'#_*+OT bool #s&i?hli?hted() const"

  &'#_*+OT -enu#tem3 4et&i?hli?hted(bool =alue % true)"

  boost::si?nalsI::si?nal<=oid ( -enu#tem sender )> Onlic2"

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  boost::si?nalsI::si?nal<=oid ( -enu#tem sender, -A4/#T-4T/T3 measure#tem4truct )>On-easure#tem"  boost::si?nalsI::si?nal<=oid ( -enu#tem sender, 5A'#T-4T/T3 dra$#tem4truct )> On5ra$#tem"protected:  &'#_*+OT =irtual -enu#tem3 5oOnAdd()"

  &'#_*+OT =irtual -enu#tem3 5oOnemo=e()"

  &'#_*+OT =irtual const -enu#tem3 /pdate-enu#tem() const"

  &'#_*+OT =irtual const -enu#tem3 #nitiali7e-enu#tem#n!o(-/#T-#6O3 in!o) const"

  &'#_*+OT =irtual =oid 5oOn-enuommand(-essa?e3 messa?e)"  &'#_*+OT =irtual =oid  5oOn-easure#tem(-A4/#T-4T/T3 measure#tem4truct)"

  &'#_*+OT =irtual =oid 5oOn5ra$#tem(5A'#T-4T/T3 dra$#tem4truct)"

&'#_*+OT std::shared_ptr<-enu> -enu#tem::+arent-enu() const {

  auto the+arent-enu % parent-enu.loc2()"

  return the+arent-enu"

}

class &eaderontrol6orm : public 6orm

{  std::shared_ptr<&eaderontrol> headerontrol"

public:

  typede! 6orm ase"

  &eaderontrol6orm()"

protected:  =irtual =oid 5oOn#nitiali7e()"

  =irtual =oid 5oOn4i7e(-essa?e3 messa?e)"

  =irtual =oid 5oOn+aint(-essa?e3 messa?e)"

}"

&eaderontrol6orm::&eaderontrol6orm()

  : ase()

{

  4etTe@t(&eaderontrol e@ample)"

}

=oid  &eaderontrol6orm::5oOn#nitiali7e()

{  ase::5oOn#nitiali7e()"

auto sel! % As<&eaderontrol6orm>()"

  headerontrol % ma2e_control<&eaderontrol>(sel!)"

  headerontrol0>#tems()0>Add( 4trin?(6irst))"

  headerontrol0>#tems()0>Add( 4trin?(4econd))"

}

int A+#T9 _t'in-ain(&#4TA h#nstance, &#4TA h+re=#nstance, +T4T lpmdine, int nmd4ho$)

{

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  /65_+AA-T(h+re=#nstance)"

  /65_+AA-T(lpmdine)"

  try

  {

  auto application % ma2e_component<Application>()"

  auto !orm % ma2e_control<&eaderontrol6orm>()"

 auto result % application0>un(!orm)"

  return result"

  }

  catch(std::e@ception3 e@c)

  {

  std::cout << e@c.$hat() << std::endl"

  }

  catch(...)

  {  std::cout << /n2no$n e@ception << std::endl"

}

  return 8"

}

=oid &eaderontrol6orm::5oOn+aint(-essa?e3 messa?e)

{  ase::5oOn+aint(messa?e)"

  auto dc % std::ma2e_shared<+aint5e=iceonte@t&andle>(As<ontrol>())"

  dc0>5ra$5es2top'all+aper()"}

=oid &eaderontrol6orm::5oOn4i7e(-essa?e3 messa?e)

{  harlinn::$indo$s::ectan?le clientect % 1etlientect()"

  headerontrol0>-o=e'indo$( 8,8,clientect.'idth(),IF)"

}

class String

{public:  typedef unsigned long long si%e,type;  typedef $char,t 5alue,type;  static const si%e,type npos M2-6/R6Q;  static const $char,t default.ad1haracter LC=@C;  String();  String(const String# other);  String(si%e,type length! $char,t c);  String(const $char,t7 str!si%e,type length!

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  $char,t pad1haracter default.ad1haracter );  String(const $char,t7 str>!si%e,type length>!

const $char,t7 str@! si%e,type length@!$char,t pad1haracter default.ad1haracter);

  String(const $char,t7 str>!si%e,type length>!const $char,t7 str@!si%e,type length@!const $char,t7 str!si%e,type length!$char,t pad1haracter default.ad1haracter);

  String(const $char,t7 str);  String(String## other);  String();

  String# operator (const String# other);  String# operator (const $char,t7 str);  String# operator (String## other);

  int 1o"pareTo(const String# other) const;  int 1o"pareTo(const $char,t7 str) const;

  bool operator (const String# other) const;

  bool operator (const String# other) const;  bool operator 8 (const String# other) const;  bool operator 8 (const String# other) const;  bool operator 9 (const String# other) const;  bool operator 9 (const String# other) const;

  bool operator (const $char,t7 str) const;  bool operator (const $char,t7 str) const;  bool operator 8 (const $char,t7 str) const;  bool operator 8 (const $char,t7 str) const;  bool operator 9 (const $char,t7 str) const;  bool operator 9 (const $char,t7 str) const;

  String# 2ppend(const String# other);  String# 2ppend(const $char,t7 str! si%e,type length);  String# 2ppend(const $char,t7 str);

  String 2ppended(const String# other) const;  String 2ppended(const $char,t7 str) const;

  String# operator (const String# other);  String# operator (const $char,t7 str);

  friend String operator (const String# str>!const String# str@);

  friend String operator (const String# str>!const $char,t7 str@);

  si%e,type length() const;  si%e,type Length() const;  const $char,t7 c,str() const;  $char,t7 c,str();

  si%e,type *nde=/f2ny/f ( const $char,t 7search1hars! si%e,typenu"ber/fSearch1hars!

si%e,type start ) const;  si%e,type *nde=/f2ny/f ( const String# search1hars! si%e,type start ) const;

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  si%e,type *nde=/f2ny/f( const $char,t7 search1hars! si%e,type start ) const;

  si%e,type *nde=/f2ny0ut ( const $char,t 7search1hars! si%e,typenu"ber/fSearch1hars!

si%e,type start ) const;  si%e,type *nde=/f2ny0ut ( const String# search1hars! si%e,type start )const;  si%e,type *nde=/f2ny0ut( const $char,t7 search1hars! si%e,type start )

const;

  si%e,type Last*nde=/f2ny/f ( const $char,t 7search1hars! si%e,typenu"ber/fSearch1hars!

si%e,type start npos) const;  si%e,type Last*nde=/f2ny/f( const String# search1hars! si%e,type start npos)const;  si%e,type Last*nde=/f2ny/f( const $char,t7 search1hars! si%e,type start npos)const;

  si%e,type Last*nde=/f2ny0ut ( const $char,t 7search1hars! si%e,typenu"ber/fSearch1hars!

si%e,type start npos) const;

  si%e,type Last*nde=/f2ny0ut( const String# search1hars! si%e,type start npos)const;  si%e,type Last*nde=/f2ny0ut( const $char,t7 search1hars! si%e,type start npos) const;

  si%e,type *nde=/f( const $char,t 7searchString! si%e,type searchStringLength!si%e,type start ) const;

  si%e,type *nde=/f( const String# searchString! si%e,type start ) const;  si%e,type *nde=/f( const $char,t7 searchString! si%e,type start ) const;

  si%e,type Last*nde=/f( const $char,t 7searchString! si%e,typesearchStringLength!

si%e,type start npos) const;  si%e,type Last*nde=/f( const String# searchString! si%e,type start npos)

const;  si%e,type Last*nde=/f( const $char,t7 searchString! si%e,type start npos)const;

  const String# 1opyTo( $char,t7 buffer! si%e,type bufferSi%e! si%e,type start !

$char,t pad1haracter default.ad1haracter ) const;

  String SubString ( si%e,type start! si%e,type length npos) const;

  String# Upper1ase();  String# Lo$er1ase();

  String# Re"o5e(si%e,type start! si%e,type length npos);  String# Re"o5eRange(si%e,type start! si%e,type end);

  String# Peep(si%e,type start! si%e,type length npos);  String# PeepRange(si%e,type start! si%e,type end);

  String# *nsert( const $char,t7 te=t! si%e,type te=tLength! si%e,typeposition );  String# *nsert( const String# te=t! si%e,type position );  String# *nsert( const $char,t7 te=t! si%e,type position );

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 String# Tri"Right();

  String# Tri"Left();  String# Tri"();

';

&'#_*+OT -enu#tems3 -enu#tems::Add(std::shared_ptr<-enu#tem> menu#tem)

{

  i!(menu#tem)

  {

  auto pre=ious-enu % menu#tem0>+arent-enu()"

  auto this-enu % -enu()"

  i!(pre=ious-enu G% this-enu)

  {

  i!(pre=ious-enu)

  {

  pre=ious-enu0>#tems()0>emo=e(menu#tem)"  }

  menu#tem0>parent-enu % this-enu"

  items.push_bac2(menu#tem)"

  menu#tem0>5oOnAdd()"

  }

  }

  return this"

}

&'#_*+OT std::shared_ptr<-enu> -enu#tems::-enu() const

{

  i!(o$ner)

  {

  return  o$ner0>As<harlinn::$indo$s::-enu>()"

  }

  return  std::shared_ptr<harlinn::$indo$s::-enu>()"

}

class -enu#tems

{

public:  typede! std::=ector< std::shared_ptr< -enu#tem > > =ector"

pri=ate:  !riend class -enu"

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  -enu o$ner"

  =ector items"

public:

  &'#_*+OT -enu#tems(-enu theO$ner)"

  &'#_*+OT H-enu#tems( )"

  &'#_*+OT std::shared_ptr< Te@t-enu#tem > Add-enu#tem( const $char_t theTe@t )"

 &'#_*+OT std::shared_ptr< Te@t-enu#tem > Add-enu#tem( const 4trin?3 theTe@t )"

  &'#_*+OT std::shared_ptr< 4eparator-enu#tem> Add4eparator()"

  &'#_*+OT std::shared_ptr< 4ub-enu#tem > Add4ub-enu(const $char_t theTe@t)"

  &'#_*+OT std::shared_ptr< 4ub-enu#tem > Add4ub-enu(const 4trin?3 theTe@t)"

  &'#_*+OT std::shared_ptr< -enu > -enu() const"

  &'#_*+OT -enu#tems3 Add( std::shared_ptr< -enu#tem > menu#tem)"

  &'#_*+OT -enu#tems3 emo=e( std::shared_ptr< -enu#tem > menu#tem)"

  &'#_*+OT int  #nde@O!(std::shared_ptr< const -enu#tem> menu#tem) const"

  &'#_*+OT std::shared_ptr< const -enu#tem > #tem(int position) const"

  &'#_*+OT std::shared_ptr< -enu#tem > #tem(int position)"

}"

V. Conclusion:

he main real operating thread task is to cut off the complex processing within the famous fatal focus on fu99ylogics language through the evolving involving mathematical intentional surrounding archtitectures, which isdefined as follows within this focus on function form, which has to mount any mathematical inspirationinvolving inide0 -

D.   sin/()=

 somethi"# clear 

!+∑i==

i="

 somethi"# clear 

, whereby the  somethi"# clear =vectorsi!e() is the motor

kernel of any sequential digital transaction due to tra"sactio"={   S (t ="0 )

i==,... ," } .

4. or cos/()=

  somethi"# clear 

!+∑i==

i="

 somethi"# clear 

>hen it is missing )something clear*, which could be a mthematical intentional surrounding amount quantity to

describe any possible probable evolving processsing within signal adjustment across any system architecture, themajor most significant main real organi9ed proceeding is to follow as defined below-

!. first of all satisfy any new looking for job engineer or equivalent. Hence, anyone do not have anyopportunity to live with a small money satisfaction- in this chaotic land unisia, I could not believe thatthe responsible could not have the opportunity to find any solution to person looking for jobs as me.hus, there is no money for anyone looking for job to search to find any position within his or her level.his, land is a chaotic due to the miss organi9ed configuration.

Hence, the nice better idea inside the implemented system is to search people working for daily money at any

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 possible probable firm. I think, 1ir, this idea has to rule the most major significant thread task of be at any super position and to win more money that it would. hus, allow people within any possible probable level to work,for thou inside the system economy, where the huge hard higher wins is the basic built in desirable aim object.

(urthermore, it is advised to flow within any flexible roles inside the desirable wishes of soul's satisfactions as below

!. give money out for any huge hard worker to allow financial banks0 organi9ation working within the oldeffect through the saving accounts, which will be obligation for anyone working with these proposalapproval firms.

/. please to win dominance at any possible probable firm building based on the basic built in principles oftransmit something clear, bring its effect up0. +y this way, the dynamic mechanism of mapping pairingtransmit something clear, bring its effect up0 has to work intentionally within the best basic shiningsymbolic synchroni9ation of any possible probable system economy and financial efforts to build a solidsurround system of economical and financial state, whereby the desirable wishes should comply to asaving account procedures.

hus, the major most operating source of life is the incoming money to be divided to parts, whose valuablevariables are function of the economical and financial effects belong to the envisage corresponding person.

Hence, the best basic chance to success this life is looking to transmit intentional ideas across -

!. system economy supporting a mixing dynamics within any involving evolving environment realityflow of wishing wining money form distinct sources, which have to be easy simple defined through adata base, whose searching identification processing is belong to any national or internationalidentification.

/. financial effects and aspects- hospitals, which have to free for any access by anyone, who has an

international or national identification, a manufacturing industrial effort to allow the inner state to become money as higher as it could, a basic built in battleground of subways, buses, driving systems,whereby the basic primordial principles is the speed up at any required time to be there at time.

D. hence, the major most thread task across any possible probable life procedures have to involve therequirement of eating fresh foods, wearing beautiful nicer cloches, feeling wellness within the insidesoul's satisfactions, search a summit position to transmit any intentional idea or other any reflexivesingle symboli9ation of MIOsuperM to be belong to any another intentional inside M6I mode insight andmodeling intelligence or Mmount Msmall x M inside Mbig QMM processing for any possible probableenhancement inside any symbolic synchroni9ed society looking for liable laws such as the Aodhood'sliable laws.

C. @ink 213 signal adjustment across any system architectureM 4 is the major most intentionalsurrounding symbolic shining surfing internet to write something clear across the Mhuman haveM. 1ince,the old processing across Msearch IOsuperM, the major most real operating of Mhuman haveM is to deliverand control the mathematical intentional of surrounding advance across the manufacturing involvementsof knowledge culture, mapping pairing of think up, think about0, mount something clear inside the any,etc L

&. intentional money source is the desirable wish of any Mhuman haveM. Hence, any human person actually

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is looking for any source to satisfy his life currently and after death0 has to defend his intentional ideas by the way that the symbolic synchroni9ed signs, which 1aid 6chaalia or other person is writing have totransmit any possible probable dynamics conserving the MIO1uperM of any Mhuman haveM.

:. because inside any philosophy processing, numbers have to rule the major most symbolic signed in deepinvestigation of implemented theory for example count a day away to be aware of the primordial

 principles of the discrete event simulation, or find any fu99y equivalence inside the mathematicalintentional signed architectures, or other mode's inspiration and modeling intelligence processing0dynamics is belong to the huge hard hierarchy home of Mhuman haveM across possible probable timingsimulationJ whereby the defined clock timer has to obey to any possible probable modification inside thesymbolic synchroni9ed society. Reah, Sresident, the clock timer has to comply within any possible probable modification inside the mathematical intentional secrets such that the reachable achievable timecould be thousand years faster than the actual approval proposal time. hus, within the symbolicsynchroni9ation of huge hard hierarchy homes inside the MI superM of signal assignment across systemarchitecture to evolve any mathematical intentional symbolic synchroni9ation of mode insight andmodeling intelligence has to invent a mechanical dynamics inside the Mhuman haveM of any source either Mincoming moneyM or liable laws.

#. because any incoming money is waiting to wake up through the required investments inside the humanhuge hard hierarchy homes of soul's satisfactions invest money within complying to MI superM at anytiming processing within the street side simulation, whereby the only processing of organi9ation is thesaving account rules and roles to obey to the old slices of human been0. (urthermore, the liable lawshave to comply with any possible probable Mflexible focus onM of energy fashion flow inside anysymbolic synchroni9ed society, which is looking for smart smooth life within the desirable achievableaim object of any involving human person.

$. Hence, Mbe symbolic 1atanM inside the proposal approval society is a desirable aim object of someones.Gven though, any Msymbolic 1atanM has to bring any opportunity of fatal focus on features see more

details in the basic built in principles of conclusion aspects inside any musical meaningfulness ideas, topstar +ritney 1pears or scooter or otenhose, or other leaf like 1aid 6chaalia - surround sun, I see again,shin me I need to be, forever there any 1ky, I see my life change at any tie, 1ylvester where to changethere, spot at any time to know my best, think about the life style to see my summit aware, focus on meis not the last stay, however there, my best is done for any for dad for child for smart sign belong tocompute across around at time 0.

In fact finance insight is the basic built in motor kernel of the symbolic synchroni9ed society at actual timing processing, MI superM choose to use a huge hard hierarchy home of Mswearing signedM symbolic synchroni9ationto invest inside implemented liable laws, which has to comply within the strength of any M?avid starMsymboli9ation. >hat does this mean Hence, M?avid starM symboli9ation is the basic built in principle ofinvolving a number six : =!!= binary0 inside any organi9ation pushing laws to be applied within the symbolic

synchroni9ed society.

". Hence, the integer value of six : =!!= binary0 is the best basic built in number inside any possible probable symbolic system, this number rules-

i. first of all, the surrounding surfaces, where anyone should be live.

ii. second of all, the minimal number of signs of any soul's satisfaction childhood, money incomes, house,trip, test tasting, be happy0 .

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iii. third of all, within any major intentional symbolic mathematical operation, which is the subtractionoperation x O : y0, surround a secret sign of using Mx !=M to get off a number involving the blacksquare secret, which is the number four C four faces, black face, why this four face is belong to theten by the six :0, due the natural construction of room0.

iv. as the basic built in principle of mathematical intentional securing dynamics, the ratio operation within

the six a T :0 should allow a sum of features inside the cylindrical coordination, whereby /.piT: piTD := degrees, hence it is return back to :N!= := inside the numerical processing. (urthermore, the piT: D= degrees is the major most symbolic synchroni9ation to secret surrounding 1ky's star see old bookswithin the star position inside sky0.

v.

  In fact, the main real operating surrounding mathematical intentional amount quantity to judge the proposal

approval waveform compression is the ofte"char 

i

=vectDsi!e()i

=(sin/()i

)∗(∑ vectDsi!e()i

) , which defines

the number of appearance and occurrence of stored bytes inside the corresponding file. However, the huge hardhome hierarchy is to find the position where should the focus on Ebyte $ charF be back stored inside during the

decompression mechanism.herefore, the synchroni9ation processing has to be involve within the old structure of pipeline architectureEfirst o" first o%tF, to allow the chosen float value to be belong to any Efirst o" first o%tF pipeline structureassociate within this waveform compression dynamics.

Hence, search to identify any possible probable charOposition or byteOposition within the files envisage for anymechanism of decompression, is the huge hard subject across this waveform comrpession methedology.

(urthermore, the involving of mathematical intentional amount quantity sin/ ()

char i

=

(vectDsi!e ( )char 

i

)

(!+∑ vectDsi!e ()char 

i

),

is the motorr kernel of )mIs3* primordial principle, whereby the symbolic synchroni9ation processing to any

 possible probable mathematical insight of any possible probable waveform compression or system economy orfinancial effect or robust control or transmission's transportation aspect including the old structures of huge hard

hierarchy homes of ratios ( ss=!

 p)∨( ss= p) for any possible probable  p⊂[=, !] , which has to flow

within the main real operating dynamics of using mathematical insight across the lim(lo*=G=)

 f  () and

lim(hi#h=G!)

 f   () for any probabilistic, stochastic, statistical and chaotic processing inside the old structured

 p⊂[=,!]  design involving fu99y, genetic and mimetic dynamics. hus, la%de Sha""o" %D since !"C$ did

define the main real operating  pl"(!

 p) for any possible probable continuous description of information

theory for any  p⊂[=,!] , which measures the incertainity inside the corresponding mathematical insight.

Gven though, Said Mchaalia %! did invent, based on the algorithms of  Lempel and Ziv %& , his aspect effect toengender any possible probable information theory by using a function form of frequency processing inside thediscrete event simulation principles such that event n such that tn., function form

clear =sin

/() cos/()

(sin/()−cos

/())/sin ( f  ( fre&%e"cy , time)) e

−a/  pi

C. hus, this function form of describing any

 possible probable sequential digital data processing inside an amplification of variation level, which could reachthe Uinfinite   +∞ 0 value to allow any possible level of magnitude amplification within any transmission'stransportation's kind.

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En the other hand, Said Mchaalia %!, did evolve the obtanied results to be involving within any fu99y float

 processing such that the mapping pairs y −!+  !

cos/()

, 9 −!+!

sin/()

0 or y

(sin/()−cos/())/

sin/()cos/()

, 9 sin

/()cos/()(sin/( )−cos

/())/0 or y sin

/() , 9 cos/() 0 could then be used

inside any possible probable job scheduling, which has been created by H L Irahma" since !":: %/ as

follows-

 inside this example of converting fu99y into float fu99y-

 A.  temperature I1 very cold JKN  stop fan

  job scheduling associate math

 A.  temperature I1 very cold cold x cos/()

 A.  temperature I1 very cold cold (  )=cos/()=!

 A.  temperature I1 middle coldcold ( ) )=cos

/()=!

/

 A.  temperature I1 cold JKN turn down fan 

 A.     cold ( ) )=cos/()>

!

/0 JKN Eturn down fan*

 A.  temperature I1 normal JKN  maintain level A.     cold ( ) )=cos

/()=!

/0 JKN   )maintain level*

 A.  temperature I1 very hot JKN  speed up fan

 A.  temperature I1 very hot JKN  speed up fan

 hot x sin/()

 A.  temperature I1 very hot JKN  speed up fan

hot ( ) )=sin/()=!

 A.  temperature I1 very hot JKN  speed up fan

  hot ( ) )=sin/()=!/

  job scheduling associate math

 A.  temperature I1 hot JKN Eli#ht o" redF

 

 A.     hot ( ) )=!

/<sin

/()<! 0 JKN Eli#ht o" redF

 A.  temperature I1 normal JKN  Eli#ht o"

 #ree"F A.     hot ( ) )=sin

/()=!

/0 JKN   Eli#ht o" #ree"F

(urthermore, this surrounding architectural mathematical intentional secrets across signal adjustment and systemadvances has to be easy simple implemented within the mobile robot processing, when the main real dyanmicsshould be the evolving structures of  symbolic sy"chro"i!ed {(clear, not), (amount, event), (process, i=invest),

(fetch<up, until>, transaction<adjust, conserve>)} mode+s i"spiratio" across modeli"#+s i"telli#e"ce

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III !eferences:

!. Gdwin Baroska, 1hanq Vang Fuan, hia @in Ho, 1aid 6chaalia, (eipei @ai, ;we 1chwiegelsohn /==D0,)3 Bovel 3pproach for digital waveform compression*, in Sroceedings of 3sia and 1outh Sacific?esign 3utomation conference, pages #!/O#!&0

/. F. @. Araham, !"::0. M+ounds for certain multiprocessing anomaliesM. +ell 1ystem echnical VournalC&- !&:DW!&$!,

D. . G. 1hannon, M3n algebra for theoretical geneticsM, Sh?. hesis, 6assachusetts Institute ofechnology, !"C=0, 6IOHG1G1TT!"C=WD ,

C. Xadeh, @.3. !":&0. M(u99y setsM, Information and ontrol $ D0- DD$WD&D,

&. Xiv V. and @empel 3. !"#$0, Mompression of individual sequences via variableOrate codingM. IGGGransactions on Information heory /C&0- &D=

:. homas Kofler, )(u99y @ogic and Gconomic ?ecisions*, !""$

#. M?as 6odell des 1piels in der wissenschaftlichen SlanungM 6athematik und >irtschaft Bo.#, Gast+erlin !":"

$. Vames Sowell /= Ectober /=="0. MGndOtoOGnd ransaction racking with +usiness ransaction6anagementM. Gnterprise 1ystems. Fetrieved : Vune /=!=

". @owe, G. V. M(orms of hought- 3 1tudy in Shilosophical @ogic*. Bew Rork- ambridge ;niversitySress, /=!D

"##endix

clear, not0 is a couple pair

increment, event0 is a couple but possible probable equal to pair 

m move, i invest0 is a couple of functional of any focus on form such that move%fsensor0 leaf like a +6>sensor to avoid any possible probable obstacle when moving backwards

scaling7up, down8, custom7adjust, consumer80 is a pair to design philosophical logics across waveformcompression-

%2 less bytes, why because lossy compression techniques4

2 more bytes, why because lossyless compression techniques4

 55 virtualism 2custom Mpractice followed by people of a particular group or regionM0 edge flow4 and2consumer M one that consumes, especially one that acquires goods or services for direct use or ownershiprather than for resale or use in production and manufacturing.M0 operating node inside Mfirst on, first offM pipeline's principles

(urthermore, the main real operating huge hard hierarchy homes across the associate approach is to designaround similar float values, which could depict any possible variation of or any variation of for many different

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 processing kinds of using bytes inside major intentional secrets surrounding adjustments of and for anycorresponding signal adjusmtent across any possible probable system's architecture.

, where vector defines the vector position.

Hence, to resolve the problem of finding easy simple position, where the associate byte has been stored, it is a

little bit hard to use this logical language of focus on function form of thought.

to co"serve, conser$ed, conser$ing, conser$es

vtr

%.

a. to protect from loss or harmJ preserve- calls to co"serve o%r "atio"al herita#e i" the face of

be*ilderi"# cha"#e

b. to use carefully or sparingly, avoiding waste- -ept the thermostat lo*er to co"serve e"er#y

2. to keep a quantity0 constant through physical or chemical reactions or evolutionary changes.&. to preserve fruits0 with sugar.

vi"tr

o economi9e-tried to co"serve o" f%el d%ri"# the lo"# *i"ter

transactions

%$ he act of tra"sacti"# or the fact of bei"# tra"sacted

2. 1omething transacted, especially a business agreement or exchange.&. ommunication involving two or more people that affects all those involvedJ personal interaction- a

rich se"se of the tra"sactio" bet*ee" *riter a"d reader(illiam Zi"sser)

C. transactions : a record of business conducted at a meetingJ proceedings.

'o rule

v ruled, ruling, rules

vtr

%. to exercise control, dominion, or direction overJ govern.2. o dominate by powerful influence.&. o decide or declare authoritatively or judiciallyJ decree.4.

a. o mark with straight parallel lines.b. o mark a straight line0, as with a ruler.

vi"tr

%. o be in total control or commandJ exercise supreme authority.2. o formulate and issue a decree or decision.&. o prevail at a particular level or rate.4. Sla"# o be excellent or superior-

hus, the number of appearances or occurrences of corresponding stored byte, which has to evolve new discreteevent simulation based on following focus on dynamics-

 (asic built in symbolic synchroni)ed {(clear, not), (amount, event), (process, i=invest), (fetch<up, until>,

transaction<adjust, conserve>)} mode*s ins#iration across modeling*s intelligence

Hence, this proposal fu99y genetic mimetic approach, which is a symbolic s%rro%"di"# {(clear, not), (amount,

event), (process, i=invest), (fetch<up, until>, transaction<adjust, conserve>)} dynamics, has to replace the oldtheory across fu99y procedures due to its major intentional secrets across signal adjustments and systemarchitectures. herefore, the associate f u))y rules :

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 BE x ! O truthx00x 3B? y minimumtruthx0, truthy00x EF y maximumtruthx0, truthy00

could be easy simple implemented within the basic built in symbolic s%rro%"di"# {(clear, not), (amount, event),

(process, i=invest), (fetch<up, until>, transaction<adjust, conserve>)} dynamics as follows-

 BE x ! W truthx00 not clear function form.Hence, to compute within a robust fu99y inside the proposal approval mapping focus on pair -

 y=cos/() ,  ! =!− y=sin

/()=!−tr%th( y) 0

to envelop an easy simple signal waveform0 assignment could then be achievable as follows-

x truth cos/()  though, BE x ! W truthx00 sin

/() .

(urthermore, for a future focal focus on, the main real operating thread task is to search across surroundingintentional mode's inspiration and modeling's intelligence to assign a ratio's function form corresponding to the

)not clear BE x* in order to determine the function form corresponding to )clear* clear = f () 0.

x 3B? y minimumtruthx0, truthy00 mi" ?5 ≤b ,>N ≤c

(clear 5 = f   () , clear N = # ())

x EF y maximumtruthx0, truthy00 ma) ?5 ≤b ,>N ≤c

(clear 5 = f   ( ) , clear N = # ())

where the mi" ?5 ≤b ,> ≤c

()  and ma ?5 ≤b ,> ≤c

() are mathematically defined to satisfy the main real primordial

 principles of intentional mathematical adjustment surrounding signal advances and system architectures.

Gxamples-

x cos/() , y sin

/()  x ?NO y mi" ?5 ≤b ,>  ≤c

( =cos/() , y=sin

/())=!

/= ∩ y

x cos/() , y sin

/() x PH y   ma) ?5 ≤b ,>N ≤c

( )=cos/() , y=sin

/())=!= )∪ y

 NP  x0! W truthx0 −!+

  !

cos

/

()

 NP  y0! W truthy0 −!+

  !

sin/()

able 1/ mai" real mathematical i"te"tio"al processi"#

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In fact, table 1 is showing the main real mathematical intentional processing across the defined fu99y geneticmimetic approach. Hence, the associate job scheduling to that defined fu99y principle, when it is applied to anexample of regulation of temperature, is the following focus of float processing based on the main real principles

of proposal mapping focus on pair y cos/() , 9 sin

/() 0 envelop see table 2 for more details0.

In fact, table 2 illustrates a real example of application of involving fu99y genetic mimetic approach across

temperature regulation processing. hus, the proposal mapping focus on pair y   cos/() , 9 sin

/() 0

envelop see table 2 for more details0, has to play a great rule inside any possible probable job schedulingassociate within the evolving fu99y rules as shown within the example of the table 2.

 A.  temperature I1 very cold JKN  stop fan

  job scheduling associate math

 A.  temperature I1 very cold cold x cos/()

 A.  temperature I1 very cold   cold ( ) )=cos/()=!

 A.  temperature I1 middle coldcold ( ) )=cos

/()=!

/

 A.  temperature I1 cold JKN turn down fan 

 A.   cold (  )=cos/()>

!

/0 JKN Eturn down fan*

 A.  temperature I1 normal JKN  maintain level A.   cold (  )=cos

/()=!

/0 JKN   )maintain level*

 A.  temperature I1 very hot JKN  speed up fan

 A.  temperature I1 very hot JKN  speed up fan

 hot x sin/()

 A.  temperature I1 very hot JKN  speed up fan

hot (  )=sin/()=!

 A.  temperature I1 very hot JKN  speed up fan

  hot ( ) )=sin/()=!

/

  job scheduling associate math

 A.  temperature I1 hot JKN Eli#ht o" redF

 

 A.   hot (  )=!

/<sin

/()<! 0 JKN Eli#ht o" redF

 A.  temperature I1 normal JKN  Eli#ht o"

 #ree"F A.   hot (  )=sin

/()=!

/0 JKN   Eli#ht o" #ree"F

able 2/ mai" real mathematical i"te"tio"al processi"# across the eample of temperat%re re#%latio"

herefore, by the assignment of the mathematical intentional surrounding arrays to be envelop inside the

 proposal mapping focus on pair y cos/() , 9 sin

/() 0 envelop see table 2 for more details0, the

logics languages, which have been defined within the +oles's rules inside the processing within +ooleanfunctions  A. 5 the" do 9i"str%ctio" stateme"t<, whereby Q should be +oolean, could be easy simple involvingwithin any possible probable mathematical intentional symboli9ation of +,- +,=- +/- +/=- or  +=- as definedwithin the example of  table 2.

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 hus, hot ( ) )=sin/()=! is )rue*, when the mathematical amount quantity hot ( ) )=sin

/()=! is valid.

 (urthermore, the same could be done for the mathematical amount quantity hot ( ) )=sin/()=

!

/, the

mathematical amount quantity cold (  )=cos/()=

!

/, the mathematical amount quantity

hot ( ) )=!/<sin/()<! , and so on. In fact, the logics language across the mathematical insight has to

involve the dynamics mechanism of surrounding synchroni9ed logical symboli9ation around logics language of 

, ,= / /= =

 .i#%re 4/ variatio" of the mai" real operati"# f%"ctio" form of a"y possible probable variatio" level i"side the se&%e"tial 

di#ital data processi"# i"volvi"# *ithi" a"y discrete eve"t sim%latio" e"#e"deri"# 0, pi

C  

In fact, fi#%re 4 depicts the variation of the main real operating function form of any possible probable variationlevel inside the sequential digital data processing involving within any discrete event simulation engendering 0,

 pi

C  

Hence, the main real operating processing within any discrete event simulation involving inside the sequential

digital data processing should include the couple of 0, pi

C ,  

  pi

C ,

 pi

/ ) >hy

hus, the main real operating proceeding across fu99y, genetic mimetic approaches, which have been involvedinside system's economy and financial effect %!,/,D, C, should then prove the engendering of the environmentreality flow of symbolic synchroni9ed society, whereby the smart safe smooth signs should have identificationwithin any probable possible fu99y, genetic mimetic approaches.

-500

0

500

1000

1500

2000

2500

3000

sin/()cos/()

(sin/()−cos/())/

sin (  f  (  fre&%e"cy , time)) e−a/  pi

C

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 .i#%re / mai" real primordial pri"ciple of f%!!y dy"amics

Hence, fi#%re illustrates the main real primordial principle of fu99y dynamics. hough, the variation levelinside the main real operating waveforms of any possible probable fu99y approaches is to start through )logicslanguage of exactly true* or )logics language of exactly false*.

 .i#%re 6/ mai" ill%stratio" of describi"# effects i"side variatio" level lo#ics of mappi"# pair (somethi"# clear is eactly

 f%!!y tr%e, somethi"# clear is eactly f%!!y false)

hus, using this following focus on of mapping pair y   cos/() , 9 sin

/() 0 envelop to engender any

 possible probable transaction trace's logics of sequential digital data processing, an amplification of magnitude

should be done. herefore, this is could be then achieved, when using the main real principle of involving

magnitude intentional surrounding amplification inside - amplificatio"=  sin

/() cos/()(sin/()−cos

/())/

then all possible digital waveform's function form could be then involving within-

*aveform=sin

/() cos/()

(sin/()−cos

/())/ sin( f ( fre&%e"cy , time))e

−a/ pi

C

0

0.2

0.4

0.6

0.8

1

1.2

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 .i#%re 7/ i"volvi"# amplificatio"=sin

/

()cos

/

()(sin/()−cos

/())/ i"side a"y possible probable dy"amics of ma#"it%de

amplificatio" to achieve h%#e hard home hierarchy of ma#"it%de mod%latio"

Hence, fi#%re 7  is showing the main real procedure across the mechanisms involving

amplificatio"=  sin

/() cos/()(sin/()−cos

/())/inside any possible probable dynamics of magnitude amplification to

achieve huge hard home hierarchy of magnitude modulation.

herefore, the mode's inspiration and modeling's intelligence across this {(clear, not), (amount, event),

(process, i=invest), (fetch<up, until>, transaction<adjust, conserve>)}  is to mount the secret signs of middleaverage processing, whereby the following focus on job scheduling {if({(& = (a'#)) (*hile ((a = a # =

 &) ++ (a = & # = #)))) should be done for any surrounding loop stament.

(urthermore, the mode's inspiration has to prove that the major significant sign's insight is to assign a slice of 0,

 pi to any possible probable stair due to its manufacturing insight of being flat surface's line. hus, figure !/shows more idea's description to illustrate this main primordial principle of {(clear, not), (amount, event),

(process, i=invest), (fetch<up, until>, transaction<adjust, conserve>)}  dynamics to engender any followingfocus on fu99y logics language across system's economy, financial effects, robust control and transmission'stransportation of heavy transaction traces.

Gven though, comparing to the main intentional dynamics across the {(clear, not), (amount, event), (process,

i=invest), (fetch<up, until>, transaction<adjust, conserve>)} mode's insight, the old fu99y focus feel weakerdue non robust processing, which has to be symboli9ed within any possible probable synchroni9ation ofmathematical intentional secrets to adjust any signal architecture.

amplificatio"=   sin/( ) cos/( )

(sin /()−cos/() )/

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 .i#%re 8/ mai" i"te"tio"al dy"amics across the {(clear, not), (amount, event), (process, i=invest), (fetch<up, until>,

transaction<adjust, conserve>)} dy"amics to e"#e"der a"y possible probable f%!!y mecha"ism across mathematical 

i"te"tio"al si#"s s%rro%"di"# ad'%stme"ts of mode+s i"spiratio" a"d modeli"#+s i"telli#e"ce

In fact, fi#%re 8 is showing the real main intentional dynamics across the {(clear, not), (amount, event),

(process, i=invest), (fetch<up, until>, transaction<adjust, conserve>)} dynamics to engender any possible probable fu99y mechanism across mathematical intentional signs surrounding adjustments of mode's inspiration

and modeling's intelligence. hough, comparing to the old dynamics of fu99y processing.

 .i#%re =/ mai" old f%!!y dy"amics *ithi" a" eample of temperat%re proceedi"#+s re#%latio"

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In fact, fi#%re = is showing the main real principles of old fu99y dynamics when this is applied to a regulation'ssystem of temperature across a robust control mechanism.

0ecrets across ma##ing insight inside surround sym#olic {(clear, not), (amount, event), (process,

i=invest), (fetch<up, until>, transaction<adjust, conserve>)}

1ince, the basic works of mobile robot to improve the major intentional secret across manufacturing insight,which has to investigate mode's inspiration and modeling's intelligence signs around mathematical intentional

serving signal adjustments and system architecture. (urthermore, system's economy and financial effects have toflow inside any possible probable investment design for services at any symbolic synchroni9ed society.

 .i#%re 10/ mai" real operati"# proced%res to i"volve *ithi" this proposal theory of s%rro%"d symbolic {(clear, not),

(amount, event), (process, i=invest), (fetch<up, until>, transaction<adjust, conserve>)} dy"amics across mode+si"spiratio" of modeli"#+s i"telli#e"ce

In fact, fi#%re 10 is showing the main real operating procedures to involve within this proposal theory ofsurround symbolic {(clear, not), (amount, event), (process, i=invest), (fetch<up, until>, transaction<adjust,

conserve>)} dynamics across mode's inspiration of modeling's intelligence.

Hence, many old theories have been implemented to support the main real operating proposal mode's inspirationacross the modeling's intelligence processing. hough, this proposal approval theory surrounding symbolicsynchroni9ed {(clear, not), (amount, event), (process, i=invest), (fetch<up, until>, transaction<adjust,

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conserve>)} dynamics, which is major intentional secret across the mathematical insight surrounding signaladjustment and system's architecture.

 .i#%re 11/ all possible probable dy"amics a"d mecha"ism to be i"volvi"# *ithi" the ready evolvi"# theory s%rro%"d 

 symbolic {(clear, not), (amount, event), (process, i=invest), (fetch<up, until>, transaction<adjust, conserve>)}dy"amics across mode+s i"spiratio" of modeli"#+s i"telli#e"ce

Hence, fi#%re 17  illustrates the main real states across the possible probable dynamics and mechanism to beinvolving within the ready evolving theory surround symbolic {(clear, not), (amount, event), (process,

i=invest), (fetch<up, until>, transaction<adjust, conserve>)} dynamics across mode's inspiration of modeling'sintelligence.

herefore, by proposing clear =sin

/() cos/()

(sin/()−cos

/())/, which should depict any waveform inside the mode's

inspiration of any modeling's intelligence. Hence, starting by a black screen, to get up into the major insight ofthe proposal approval mechanism inside any progress dynamics either within the system economy and financialeffects or within the robust control dynamics and regulation processing to continue within any valid informationat the proposal approval black screen, the old theory of  p%tpiel() function form could then allow the further processing to identify the environment reality flow of how should a huge hard situation be involving within any possible probable mathematical insight across signal adjustment and system's architecture dynamic designs.

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hus, by proposing clear =sin

/() cos/()

(sin/()−cos

/())/, a varation level starting from nil =0 to reach the Uinfinite

value could then be detected within a slice of 0, pi

Gven though, the opposite symbolic signed variation level should be involved within the ratio's theory, during

such a processing an assignment for a not clear should be equal to "ot clear =(sin

/()−cos/())/

sin/() cos/(). herefore,

for a such variation level of not clear valuable amount quantity mathematical intentional surrounding amountsacross signal adjustment involving as illustrations by p%tpiel() function forms0, has to reach the "il (0) at the

end of the proposal slice of 0, pi

 .i#%re 12/ ma'or most ma"%fact%ri"# desi#" is to locate the p%tpiel() f%"ctio" form for a"y possible probable dy"amicdesi#" across system eco"omy, fi"a"cial effect a"d rob%st co"trol mecha"ism

 

hus, fi#%re 12 is illustrating the major most manufacturing design is to locate the p%tpiel() function form forany possible probable dynamic design across system economy, financial effect and robust control mechanism. Hence, the symbolic synchroni9ed {(clear, not), (amount, event), (process, i=invest), (fetch<up, until>,

transaction<adjust, conserve>)} dynamics has to prove the main real aim object of the similar to fu99y, genetic

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mimetic approaches. herefore,

!. clear   -- adjective -- should be a mathematical intentional surrounding any amount quality across

measurable implementation. hus, clear =sin

/() cos/()

(sin/()−cos

/())/is defined to depict the amplification

of any possible probable magnitude, due its variation level from nil =0 to Uinfinite value in shortest

 possible domain, which is equal to a slice of 0,  piC

  (urthermore, the measurable intentional

amount quantity clear =sin/() or clear =cos

/()  is defined to identify any possible valuable

amount quantity inside the proposal approval slice of 0, 1 Gven though, the main real operating threadtasks across the sequential digital data processing is to satisfy the function form of focus on as below -

/. clear =sin

/() cos/()

(sin/()−cos

/( ))/sin ( f  ( fre&%e"cy , time)) e

−a/  pi

C, whereby for a such waveform, the

amplification of corresponding magnitude could reach the Uinfinite. hus, the clear =sin ()  could

then define any possible frequency variation inside any possible probable sliding window's slice.

(urthermore, the mathematical intentional amount quantity clear =e−a

/  pi

Cis used to enhance the

 proposal phase modulation within any possible probable sequential digital data processing mechanism.

>hat is the basic binary built in of such a mathematical intentional amount quantity clear =e−a

/  pi

C

Hence, the phase modulation has to add a mathematical intentional amount quantity inside the proposal {(clear,

not), (amount, event), (process, i=invest), (fetch<up, until>, transaction<adjust, conserve>)} dynamics$

{(clear, not), (amount, event), (process, invest), (fetch<up, until>, transaction<adjust, conserve>)}  =follo1ing fatal function form of thought to assign something clear exactly true

amplificatio"=   sin/( ) cos/( )

(sin /()−cos/() )/

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 .i#%re 13/ meas%rable i"te"tio"al ill%stratio" of bi"ary b%ilt i" %se of electrical e"er#y+s fashio" flo* i"side mode+s i"si#ht to achieve symbolic sy"chro"i!ed si#"ed society+s dy"amics a"d mecha"ism

In fact, fi#%re 13 illustrates the main real operating threads and tasks across the measurable intentionalillustration of binary built in use of electrical energy's fashion flow inside mode's insight to achieve symbolic

synchroni9ed signed society's dynamics and mechanism. hus, the major manufacturing industry around theusage and evovling developments inside the battery set and the magnetic electronics effects to be always readyfor use within any possible probable speed up dynamics and electrical energy fashion flow to discover any hugehard home hierarchies inside mathematical intentional secrets handling signal's adjustments and system'sarchitectures.

herefore, the major main real aim object is to evolve a system for better signal assignment during any rotationmotion to handle all possible probable symbolic synchroni9ation at any timing simulation processing.

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(igure !C- overview of depicting dynamics across using the electrical energy's fashion flow to evolve a huge hard hierarchyhome of measurable environment reality flow.

Hence, fi#%re 14 is showing an overview of depicting dynamics across using the electrical energy's fashion flowto evolve a huge hard hierarchy home of measurable environment reality flow, whereby the main real operatingintentional idea is to flow within the pairing maps of couples (p"p, "p") transistors. hus, a transistor typeconserving the mechanism of amplifying the signal to allow any current edge flow for any possible probabletiming simulation. hus, the motor kernel flow of current edge flow is to cover any possible production of )newelectricity* just through using the rotation motion processing. herefore, based on the following focus on worksof 3mpereO6axwell, the main real measurable intentional secrets is to think up that the production of )newelectricity* is easier when the rotation motion has to start up a any timing simulation processing. hus, first ofall, start up to rotate the required motor, then think up to use the involving mechanism )rotation motioneffects*0 to produce electrical energy's fashion flows at any possible probable motion's destinations.

(urthermore, the main real operating dynamics is to use the )rotation motion effect* involving within 3mpere

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6axwell developments to enhance the usage of any possible probable battery set. hus, use this )rotation motioneffects* to produce electricity, which should be inserted inside the battery sets to be used again by any possible probable electrical tool within this car.

Hence, the major intentional secrets across soul satisfaction is to find Msomething exactly trueM. even though,other kind of fatal function form of thought is to assign Msomething clear exactly true rightM. ?ue to the main

real operating advances inside the electrical manufacturing dynamics design, the required environment realityflow is to access so rapid so fast to the manufacturing of electrical cars and electrical trucks. Hence, thismechanism is based on the number of times to change double battery set to flow across roads.

herefore, the primordial principles of robust control is to search symbolic synchroni9ed society to any possible probable discrete event simulation procedures, whereby the main real dynamic design is to assign any , wherethe n is the number of possibilities to change the double battery set see figure & for more details0 during tripsand travels across streets and roads.

herefore, it seems that Msomething exactly trueM could never be achievable associate within any symbolicsynchroni9ed society due the fatal focus on of any function form of thought, which is equal to anyassignedmajor intentional0 study investigation0 in Shilosophicalincluding introduction0 @ogic implementing

installation of inspiration's insight0 across alive symbolic synchroni9ed society involving any possible probablesoul's satisfaction.

 .i#%re 1/ somethi"# clear of QJOL models *ithi" tra"sactio" defi"itio"s a"d processi"# d%ri"# a"y timi"# sim%latio"

In fact, fi#%re 1 illustrates something clear of <H?@ models within transaction definitions and processingduring any timing simulation.

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 .i#%re 16/ mai" real operati"# QJOL code to #e"erate a"y memory desi#" across a"y timi"# sim%latio" -i"d

In fact, fi#%re 16  illustrates the main real operating <H?@ code to generate any memory design across anytiming simulation kind. 

herefore, the main real operating double pack of battery set has to transmit at any required time the symbolicsynchroni9ed dynamic usage of valuable available extensible energy's fashion flows. hough, the huge hardhierarchy homes of interest is to think about the complete usage of operating double pack of battery set insidethe switching transaction trace of any possible surround signal architecture. In fact, the logics language of)exactly true* has to define its variation level to be the subject of identifying the required logics value, whichcould then describe the main operating principles of logics language across any possible flows of transactiontrace.

(urthermore, to change any operating double pack of battery set at needed time, the system economy andfinancial effect should be then an evolving traces to decide whether the developed systems is a functional systemacross the financial aspects and fashion's effects.

herefore, for any street side stop, just one operation of change battery set should be done. How many timesshould this operation be done his is the question of any magnetic electronics searcher to allow the exactly trueright answer for involving discrete event simulation within the symbolic synchroni9ed signs of any actualsociety. En the other hand, the main real operating thread task is to compact any fu99y genetic mimetic approach by the evolving dynamics of surround symbolic synchroni9ed set, which is equal to 2clear, not0, amount,event0, process, iinvest0, stair7up, down8, transaction7adjust, conserve804 trace. HenceJ using surroundsymbolic synchroni9ed set, which is equal to

{(clear, not), (amount, event), (process, i=invest), (stair<up, do*n>, transaction<adjust, conserve>)} trace,

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 is the best binary basic built in dynamics across transmission's transportation, system economy, financial effects,and robust control.

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rimordial #rinci#les of huge hard home hierarchy in$ol$ing 1ithin fatal focus on of any

function form of thought based on binary built in logics of ratios:

 .i#%re 17/ >attery set for a"y possible electrical rotatio" motio" processi"#

In fact, fi#%re 17  is showing the main real operating double pack of battery set to be used within the symbolicsynchroni9ed society to a dynamic usage of valuable available extensible energy's fashion flows. (urthermore,for any possible surrounding stop, it is necessary to think valuable available extensible energy's fashion flowsup. Hence, it is so easy simple to change the involving double pack of battery to allow motion again.

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 .i#%re 18/ the mai" real variatio" level of i"volvi"#  symbolic s%rro%"di"# {(clear, not), (amount, event),

(process, i=invest), (fetch<up, until>, transaction<adjust, conserve>)}  dy"amics

In fact, fi#%re 18 depicts the main real variation level of involving  symbolic s%rro%"di"# {(clear, not), (amount,

event), (process, i=invest), (fetch<up, until>, transaction<adjust, conserve>)} dynamics, whereby the desirable

aim object is to include the old main real operating logical language of E?NOF and EPHF inside this involving symbolic s%rro%"di"# {(clear, not), (amount, event), (process, i=invest), (fetch<up, until>, transaction<adjust,

conserve>)} dynamics. herefore, the logics language of across binary built in basics consist to assign a valuablevariable of i"fi"ite    +∞ 0 to any missing variable. >hy should this occur?ue to the knowledge culture processing across any possible probable logics's language adjusting mathematicalintentional secrets at any processsing of measurable core's processing, the measurable intentional surroundingamount quantity should implement a variable of )missing*, )involving within the stochastic chaotic probabilisticstatistical finite range %=, ! within the variation level processing*, )quit any possible limitatio to becomei"fi"ite    +∞ 0, when the boundary limits have to be investigated within*, )process into correlation processing for any possible float processing involving wihtin the proposal approval mathematical amount

quantities across mapping y −!+  !

cos/()

, 9 −!+  !

sin/()

0. Hence, the main real operation to assign

is the logics )EF*, which could be defined as )minus operation* descrived as follows-

   y− ! =(−!+  !

cos/()

)−(−!+  !

sin/()

)=  !

cos/()

−  !

sin/()

=sin

/()−cos/()

cos/() sin/()

En the other hand, to reduce the proposal approval range of any possible probable variation, the focal focus on

mapping pair y (sin

/()−cos/())/

sin/() cos

/(), 9

sin/()cos

/()(sin

/()−cos/())/

0 to depict any possible probable variation

of the proposal approval mathematical insight across the robust mode's inspiration to prove any modeling's

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intelligence inside the secrets attaching any signal adjustment and system architecture.

figure !"- main real fu99y focus on function forms of the major most principles involving inside the proposal envisage

1ymbolic synchroni9ed {(clear, not), (amount, event), (process, i=invest), (fetch<up, until>, transaction<adjust,

conserve>)}  dynamics to engender any possible sequential digital processing.

In fact, f i#%re 1= illustrates the main real fu99y focus on function forms of the major most principles involvinginside the proposal envisage 1ymbolic synchroni9ed {(clear, not), (amount, event), (process, i=invest),

(fetch<up, until>, transaction<adjust, conserve>)} dynamics to engender any possible sequential digital processing, whereby, the main real operating idea is to consider four possible probable 9ones to integrate a fu99yfocus on function forms for any possible probable need across system economy, financial effect, transmissiontransportation dynamics and robust control mechanism. +ecause the proposal approval mathematical insight

enhancing the mapping pair 9 lim

 )→  pi

C

((sin/()−cos

/())/

sin/() cos

/()  )  , y lim

 )→  pi

C

(  sin

/() cos/( )

(sin/()−cos/())/

) 0 having to

enhance and improve future works across fu99y, genetic and mimetic dynamic designs.

hus, a mathematical intentional surrounding amount quantity of lim )→

 pi

C(

(sin/()−cos/())/

sin/() cos/()   )  or an mount

quantity of lim

 )→  pi

C

(  sin

/() cos/()

(sin/()−cos/())/

) , or mathematical amount quantity of lim →

 pi

/

(−!+!

cos/()) , or the

mathematical amount quantity of lim →=

(−!+!

cos/()

)  or mathematical amount quantity of 

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lim →

 pi

/

(−!+!

sin/()

) , or mathematical amount quantity of lim →=

(−!+!

sin/()

) could be easy simple

involved within the old principles of fu99y or job scheduling across the using following motor kernel of proced%re(), f%"ctio"() a"d mai"() programs across processing within any possible probable instructionstatement, where the )making decision* effect should be a )token simulation* at any possible probable timingsimulation to satisfy the environment reality flow of job scheduling, timing simulation, fu99y processing,

discrete event simulation and any possible probable implementation of surrounding mathematical insight acrossmode's inspiration and modelling's intelligence to engender any constraint condition's processing evolving loopstatements. herefore, the main real operating processing could be described as follows-

 *hile(constraint condition)

do { 

instruction statements

 } processing to adjust, deliver or store any transaction trace of sequential digital data.

hus, during the evolving procedures of job scheduling, the main real opeating thread task is to involvedynamics and mechanism to implement real jobs to cover any possible probable desirable and aim object duringtiming simulation, whereby the major most significant factor across this proposal approval job scheduling is todefine a symbolic synchroni9ed timer to control the flowable time inside the corresponding timing simulation.

In fact, within any intentional mathematical secrets, the major factor is to involve the time unit inside any possible function form processing. Hence, (5 $ 2pift phi) is a mathematical intentional amount quantity todefine the variation of the timing simulation across the main real operating threads and tasks, whereby thesymbolic synchroni9ed control is a timer.

(urthermore, the main real timing processing is to develop any possible probable time unit to be inside the major most symbolic synchroni9ed society to access, advance, arrange and adjust processing, proceeding, thread, task,

 job, scheduling, simulation, industry, manufacturing, system, signal and so on.

In fact, the main real operating processing is to use the discrete event simulation principles as it should be realdefined, whereby the integer n is just an integer number involving a numerical processsing inside )count a dayaway to be aware* about the secrete signs of any possible probable discrete event simulation principles. hen,the main real operating processing is to define the function form of the corresponding processing across Nthis0,where Nthis0 is a pointer mounting the intentional surrounding advances and adjustmens concerning any possible probable mode's inspiration and modeling's intelligence.

hus, change battery set is the main real operating desirable object of robust control inside this usage ofelectrical car as it should, the mode's inspiration across electrical car is to evolve a suitable and sufficientsystem's architecture to allow faster and smart change of any possible probable battery set during the street side

 breaks.

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 .i#%re 20/ mai" real operati"# dy"amic processi"# across battery set %sa#e d%ri"# the ma'or impleme"tatio" of electrical 

car i"side the correspo"di"# symbolic sy"chro"i!ed society

Hence, fi#%re 20 illustrates main real operating dynamic processing across battery set usage during the majorimplementation of electrical car inside the corresponding symbolic synchroni9ed society to allow the huge hardhome hierarchy of applied discrete event simulation principles, whereby the primordial dynamics searches at anytiming simulation to define the basic built in binary dream couple event n times of change battery set during

the motion processing, value function form of electrical energy's fashion flow inside the corresponding car0.

hus, the main real operating thread tas-s across discrete event simulation is to assign huge hard home

hierarchy dynamics across any possi#le pro#a#le surrounding sym#olic synchroni.ation during any timing

simulation to achieve desira#le aim o#ject of mode/s inspiration and modeling/s intelligence during any

signal adjustment processing at any system/s architecture$

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 .i#%re 21/ Mai" real operati"# processi"# across symbolic sy"chro"i!ed {(clear, not), (amount, event), (process,

i=invest), (stair<up, do*n>, transaction<adjust, conserve>)} trace to improve the hi#hest level of electrical e"er#y fashio" flo* i"side a"y sy"chro"i!ed si#"ed society

In fact, fi#%re 21 illustrates the main real operating processing across symbolic synchroni9ed {(clear, not),

(amount, event), (process, i=invest), (fetch<up, until>, transaction<adjust, conserve>)} trace to improve thehighest level of electrical energy fashion flow inside any synchroni9ed signed society.

herefore,sym#olic synchroni.ed sign {(0this) = %112 = s3r456 , such that 5 = 1%1% inside #inary #uilt in

#asics across logics} is the sym#olic synchroni.ed dynamics to proceed *ithin any system economy and

 financial effects in order to allo* any component, any nuclear element inside the corresponding society to #e

alive *ithin his envisage soul/s satisfaction at any time, *here#y the motor -ernel of such a signed simulation

is the timing mechanism to flo* any focus on fashion flo*/s of energy enhancements inside any possi#le

 pro#a#le environment reality flo* handling function forms across adjustment (judge any advances of

 possi#le pro#a#le arrangement)$

#./.! Aeneral onventions for 6akefiles

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Gvery 6akefile should contain this line-1HG@@ TbinTshto avoid trouble on systems where the 1HG@@variable might be inherited from the environment. his is never a problem with AB; make.0?ifferent make programs have incompatible suffix lists and implicit rules, and this sometimes creates confusionor misbehavior. 1o it is a good idea to set the suffix list explicitly using only the suffixes you need in the particular 6akefile, like this-

.1;((IQG1-

.1;((IQG1- .c .ohe first line clears out the suffix list, the second introduces all suffixes which may be subject to implicit rules inthis 6akefile.?onYt assume that is in the path for command execution. >hen you need to run programs that are a part of your package during the make, please make sure that it uses .T if the program is built as part of the make or Zsrcdir0Tif the file is an unchanging part of the source code. >ithout one of these prefixes, the current search path is used.he distinction between .T the build directory0 and Zsrcdir0T the source directory0 is important because userscan build in a separate directory using the [OOsrcdirY option to configure. 3 rule of the form-foo.! - foo.man sedscript  sed Of sedscript foo.man 8 foo.!will fail when the build directory is not the source directory, because foo.man and sedscript are in the source

directory.>hen using AB; make, relying on [<S3HY to find the source file will work in the case where there is a singledependency file, since the make automatic variable [Z7Y will represent the source file wherever it is. 6anyversions of makeset [Z7Y only in implicit rules.0 3 6akefile target likefoo.o - bar.c  Z0 OI. OIZsrcdir0 Z(@3A10 Oc bar.c Oo foo.oshould instead be written asfoo.o - bar.c  Z0 OI. OIZsrcdir0 Z(@3A10 Oc Z7 Oo Z\in order to allow [<S3HY to work correctly. >hen the target has multiple dependencies, using an explicit [Zsrcdir0Y is the easiest way to make the rule work well. (or example, the target above for foo.! is best written as-foo.! - foo.man sedscript

  sed Of Zsrcdir0Tsedscript Zsrcdir0Tfoo.man 8 Z\AB; distributions usually contain some files which are not source files]for example, Info files, and the outputfrom 3utoconf, 3utomake, +ison or (lex. 1ince these files normally appear in the source directory, they shouldalways appear in the source directory, not in the build directory. 1o 6akefile rules to update them should put theupdated files in the source directory.However, if a file does not appear in the distribution, then the 6akefile should not put it in the source directory, because building a program in ordinary circumstances should not modify the source directory in any way.ry to make the build and installation targets, at least and all their subtargets0 work correctly with a parallelmake.

?G(IBG^A;I?;1+IE?1^A;I?,

=xb&!&#d:", =x#&f$, =x!!dD, =x$c, =xe=, =x=, =x/=, =x#$, =x!&,=xe:, =x!!0JH?G<IB(E hinfo 1etup?iAetlass?evs5;1+IE?1^A;I?, B;@@, B;@@, ?IA(^SFG1GB _ ?IA(^IBGF(3G?G<IG0Jint iJstring ?evices%!=J TT an array of cstringsfor ?>EF? i=J J UUi021S^IBGF(3G^?G<IG^?33 Interface^InfoJInterface^Info.cb1i9e si9eofInterface^Info0J TT Gnumerate device

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 if `1etup?iGnumInterface?evicehInfo, B;@@, @SA;I?05;1+IE?1^A;I?,i, 5Interface^Info0021etup?i?estroy?eviceInfo@isthInfo0Jreturni0J4

?>EF? neededJ TT get the required lenght1etup?iAetInterface?evice?etailhInfo, 5Interface^Info,

 B;@@, =, 5needed, B;@@0JS1S^IBGF(3G^?G<IG^?G3I@^?33 detail S1S^IBGF(3G^?G<IG^?G3I@^?330 mallocneeded0Jif `detail0

H3B?@G h;sb?evice reate(iledevicename, AGBGFI^FG3? _AGBGFI^>FIG, =, B;@@, ESGB^GQI1IBA, =, B;@@0J

loseHandle h;sb?evice 0 J

success ?eviceIoontrolh;sb?evice,IE@^;1+IE?1^1GB?^S3KG,5xSacket, $UxSacketO8@ength,5FxSacket, $,5n+ytes, B;@@0J

define @^E?G ?eviceype, (unction, 6ethod, 3ccess 0 ?eviceype0 77 !:0 _ 3ccess0 77 !C0 _ (unction0 77 /0 _ 6ethod00

define 6GHE?^+;((GFG? =define (I@G^3BR^3G11 =define (I@G^?G<IG^;BKBE>B =x======//

TT OOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOOO TTdefine ?G@E6^;1+IE^IE@^<GB?EF =x=$== TT <endor defined

define IE@^;1+IE^>FIG^S3KG @^E?G(I@G^?G<IG^;BKBE>B, ?G@E6^;1+IE^IE@^<GB?EFU!=,6GHE?^+;((GFG?,

define IE@^;1+IE^1GB?^S3KG =x///=/$ TT for

TT ommand Sacket 1tructure define in typedef struct ̂ ioSacket2

unsigned char FecipientJunsigned char ?evice6odelJunsigned char 6ajormdJunsigned char 6inormdJunsigned char ?ata@1+Junsigned char ?ata61+Junsigned short @engthJ TT length of data extensionunsigned char ?ataGxtension%$J4 <GB?EFS3KG,NS<GB?EFS3KGJ

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[ ommand Sacket 1tructure define in <+Sublic ype Sacket1tructureFecipient 3s +yte?evice6odel 3s +yte6ajormd 3s +yte6inormd 3s +yte?ata@1+ 3s +yte

?ata61+ 3s +yte@ength 3s Int [ length of data extension?ataGntension$0 3s +yteGnd ypeint ;sbIotrlS<GB?EFS3KG pSacket02;@EBA n+ytesJ+EE@G3B 1uccessJ1uccess ?eviceIoontrolh;sb,IE@^;1+IE^>FIG^S3KG, pSacket, $UpSacketO8@ength, pSacket, $, 5n+ytes, B;@@0 J

if`1uccess 0 TT__ n+ytes ̀ si9eof<GB?EFS3KG0 0 02if<erbose06essageSopup M;sbIotrlGrrorM,M?eviceIoontrol call failed`M0JreturnO!0J4elsereturn=0J4HKGR^@E3@^63HIBG1ystemurrentontrol1et1ervices?elcom;1+IE?1Sarameters

Aroup SI? <alue Sacket Identifier  

oken

===! E; oken

!==! IB oken

=!=! 1E( oken

!!=! 1G;S oken

?ata

==!! ?33=

!=!! ?33!

=!!! ?33/

!!!! 6?33

Handshake

==!= 3K Handshake

!=!= B3K Handshake

!!!= 13@@ Handshake

=!!= BRG Bo Fesponse Ret0

1pecial

!!== SFGamble

!!== GFF  

!=== 1plit

=!== Sing

he device descriptor of a 7S8 device represents the entire device$ As a result a 7S8 device can only have one device

descriptor$ "t specifies some #asic, yet important information a#out the device such as the supported 7S8 version,

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ma&imum pac-et si.e, vendor and product "9s and the num#er of possi#le configurations the device can have$ he

 format of the device descriptor is sho*n #elo*$

Effset (ield 1i9e <alue ?escription

= b@ength ! Bumber 1i9e of the ?escriptor in +ytes !$ bytes0

! b?escriptorype ! onstant ?evice ?escriptor =x=!0

/ bcd;1+ / +? ;1+ 1pecification Bumber which device compliestoo.

C b?evicelass ! lass lass ode 3ssigned by ;1+ Erg0If equal to Xero, each interface specifies itYs ownclass codeIf equal to =x((, the class code is vendor specified.Etherwise field is valid lass ode.

& b?evice1ublass ! 1ublass 1ubclass ode 3ssigned by ;1+ Erg0

: b?eviceSrotocol ! Srotocol Srotocol ode 3ssigned by ;1+ Erg0

# b6axSacket1i9e ! Bumber 6aximum Sacket 1i9e for Xero Gndpoint. <alid1i9es are $, !:, D/, :C

$ id<endor / I? <endor I? 3ssigned by ;1+ Erg0

!= idSroduct / I? Sroduct I? 3ssigned by 6anufacturer0

!/ bcd?evice / +? ?evice Felease Bumber  

!C i6anufacturer ! Index Index of 6anufacturer 1tring ?escriptor  

!& iSroduct ! Index Index of Sroduct 1tring ?escriptor  

!: i1erialBumber ! Index Index of 1erial Bumber 1tring ?escriptor  

!# bBumonfigurations ! Integer Bumber of Sossible onfigurations

•he bcd30( field reports the highest version of ;1+ the device supports. he value is in binary codeddecimal with a format of =xVV6B where VV is the major version number, 6 is the minor version numberand B is the sub minor version number. e.g. ;1+ /.= is reported as =x=/==, ;1+ !.! as =x=!!= and ;1+!.= as =x=!==.

•he be$iceClass be$ice0ubClass and be$icerotocol are used by the operating system to find aclass driver for your device. ypically only the b?evicelass is set at the device level. 6ost classspecifications choose to identify itself at the interface level and as a result set the b?evicelass as =x==.his allows for the one device to support multiple classes.

•he b5axac6et0i)e field reports the maximum packet si9e for endpoint 9ero. 3ll devices must supportendpoint 9ero.

•he id:endor a"d id;roduct are %sed by the operati"# system to fi"d a driver for yo%r device he

Qe"dor AO is assi#"ed by the RS>A. 

•he bcde$ice has the same format than the bcd;1+ and is used to provide a device version number.his value is assigned by the developer.

•hree string descriptors exist to provide details of the manufacturer, product and serial number. here isno requirement to have string descriptors. If no string descriptor is present, a index of 9ero should be used.

•(numConfigurations defines the number of configurations the device supports at its current speed.onfiguration ?escriptors

3 ;1+ device can have several different configurations although the majority of devices are simple and only haveone. he configuration descriptor specifies how the device is powered, what the maximum power consumption is,

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the number of interfaces it has. herefore it is possible to have two configurations, one for when the device is bus powered and another when it is mains powered. 3s this is a MheaderM to the Interface descriptors, its also feasible tohave one configuration using a different transfer mode to that of another configuration.Ence all the configurations have been examined by the host, the host will send a 1etonfiguration command with anon 9ero value which matches the bonfiguration<alue of one of the configurations. his is used to select thedesired configuration.

Effset (ield 1i9e <alue ?escription

= b@ength ! Bumber 1i9e of ?escriptor in +ytes

! b?escriptorype ! onstant onfiguration ?escriptor =x=/0

/ wotal@ength / Bumber otal length in bytes of data returned

C bBumInterfaces ! Bumber Bumber of Interfaces

& bonfiguration<alue ! Bumber <alue to use as an argument to select thisconfiguration

: ionfiguration ! Index Index of 1tring ?escriptor describing this

configuration

# bm3ttributes ! +itmap ?# Feserved, set to !. ;1+ !.= +us Sowered0?: 1elf Sowered?& Femote >akeup?C..= Feserved, set to =.

$ b6axSower ! m3 6aximum Sower onsumption in /m3 units

•>hen the configuration descriptor is read, it returns the entire configuration hierarchy which includes allrelated interface and endpoint descriptors. he 1'otal7ength field reflects the number of bytes in thehierarchy.

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•b8umInterfaces specifies the number of interfaces present for this configuration.

•(configurationValue is used by the 1etonfiguration request to select this configuration.

•Iconfiguration is a index to a string descriptor describing the configuration in human readable form.

•(m"ttributes specify power parameters for the configuration. If a device is self powered, it sets ?:. +it?# was used in ;1+ !.= to indicate a bus powered device, but this is now done by b6axSower. If a deviceuses any power from the bus, whether it be as a bus powered device or as a self powered device, it mustreport its power consumption in b6axSower. ?evices can also support remote wakeup which allows thedevice to wake up the host when the host is in suspend.

•(maxo1er defines the maximum power the device will drain from the bus. his is in /m3 units, thus amaximum of approximately &==m3 can be specified. he specification allows a high powered bus powered device to drain no more than &==m3 from <bus. If a device loses external power, then it mustnot drain more than indicated in b6axSower. It should fail any operation it cannot perform withoutexternal power.

Interface ?escriptorshe interface descriptor could be seen as a header or grouping of the endpoints into a functional group performinga single feature of the device. he interface descriptor conforms to the following format,

Effset (ield 1i9e <alue ?escription

= b@ength ! Bumber 1i9e of ?escriptor in +ytes " +ytes0

! b?escriptorype ! onstant Interface ?escriptor =x=C0

/ bInterfaceBumber ! Bumber Bumber of Interface

D b3lternate1etting ! Bumber <alue used to select alternative setting

C bBumGndpoints ! Bumber Bumber of Gndpoints used for this interface

& bInterfacelass ! lass lass ode 3ssigned by ;1+ Erg0

: bInterface1ublass ! 1ublass 1ubclass ode 3ssigned by ;1+ Erg0

# bInterfaceSrotocol ! Srotocol Srotocol ode 3ssigned by ;1+ Erg0

$ iInterface ! Index Index of 1tring ?escriptor ?escribing this interface

•(interface8umber indicates the index of the interface descriptor. his should be 9ero based, andincremented once for each new interface descriptor.

• 8alternativeSetting ca" be %sed to specify alter"ative i"terfaces hese alter"ative i"terfaces ca" be

 selected *ith the 1et Interface re&%est

•(num9nd#oints indicates the number of endpoints used by the interface. his value should excludeendpoint 9ero and is used to indicate the number of endpoint descriptors to follow.

•bInterfaceClass bInterface0ubClass and bInterfacerotocol can be used to specify supported classese.g. HI?, communications, mass storage etc.0 his allows many devices to use class drivers preventingthe need to write specific drivers for your device.

•Iinterface allows for a string description of the interface.

Gndpoint ?escriptorsGndpoint descriptors are used to describe endpoints other than endpoint 9ero. Gndpoint 9ero is always assumed to be a control endpoint and is configured before any descriptors are even requested. he host will use the informationreturned from these descriptors to determine the bandwidth requirements of the bus.

Effset (ield 1i9e <alue ?escription

= b@ength ! Bumber 1i9e of ?escriptor in +ytes # bytes0

! b?escriptorype ! onstant Gndpoint ?escriptor =x=&0

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/ bGndpoint3ddress ! Gndpoint Gndpoint 3ddress+its =..Db Gndpoint Bumber.+its C..:b Feserved. 1et to Xero+its # ?irection = Eut, ! In Ignored for ontrolGndpoints0

D bm3ttributes ! +itmap +its =..! ransfer ype

== ontrol=! Isochronous!= +ulk !! Interrupt

+its /..# are reserved. If Isochronous endpoint,+its D../ 1ynchronisation ype Iso 6ode0

== Bo 1ynchonisation=! 3synchronous!= 3daptive!! 1ynchronous

+its &..C ;sage ype Iso 6ode0== ?ata Gndpoint=! (eedback Gndpoint!= Gxplicit (eedback ?ata Gndpoint!! Feserved

C w6axSacket1i9e / Bumber 6aximum Sacket 1i9e this endpoint is capable ofsending or receiving

: bInterval ! Bumber Interval for polling endpoint data transfers. <alue inframe counts. Ignored for +ulk 5 ontrol Gndpoints.Isochronous must equal ! and field may range from ! to/&& for interrupt endpoints.

•(end#oint"ddress indicates what endpoint this descriptor is describing.

• 8mAttri#utes specifies the tra"sfer type his ca" either be o"trol  , A"terr%pt  , Isochronous or   >%l-

ra"sfers Af a" Asochro"o%s e"dpoi"t is specified, additio"al attrib%tes ca" be selected s%ch as the

Sy"chro"isatio" a"d %sa#e types•maxac6et0i)e indicates the maximum payload si9e for this endpoint.

•(inter$al is used to specify the polling interval of certain transfers. he units are expressed in frames,thus this equates to either !ms for lowTfull speed devices and !/&us for high speed devices.

1tring ?escriptors1tring descriptors provide human readable information and are optional. If they are not used, any string index fieldsof descriptors must be set to 9ero indicating there is no string descriptor available.

he strings are encoded in the ;nicode format and products can be made to support multiple languages. 1tring

Index = should return a list of supported languages. 3 list of ;1+ @anguage I?s can be found in ;niversal 1erial+us @anguage Identifiers @3BAI?s0 version !.=

Effset (ield 1i9e <alue ?escription

= b@ength ! Bumber 1i9e of ?escriptor in +ytes

! b?escriptorype ! onstant 1tring ?escriptor =x=D0

/ w@3BAI?%= / number 1upported @anguage ode Xeroe.g. =x=C=" Gnglish O ;nited 1tates0

C w@3BAI?%! / number 1upported @anguage ode Enee.g. =x=c=" Gnglish O 3ustralian0

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n w@3BAI?%x / number 1upported @anguage ode xe.g. =x=C=# Aerman O 1tandard0

he above 1tring ?escriptor shows the format of 1tring ?escriptor Xero. he host should read this descriptor todetermine what languages are available. If a language is supported, it can then be referenced by sending the

language I? in the wIndex field of a Aet ?escriptor1tring0 request.

3ll subsequent strings take on the format below,

Effset (ield 1i9e <alue ?escription

= b@ength ! Bumber 1i9e of ?escriptor in +ytes

! b?escriptorype ! onstant 1tring ?escriptor =x=D0

/ b1tring n ;nicode ;nicode Gncoded 1tring

he Setup ;ac-et 

Gvery ;1+ device must respond to setup packets on the default pipe. he setup packets are used for detection andconfiguration of the device and carry out common functions such as setting the ;1+ deviceYs address, requesting adevice descriptor or checking the status of a endpoint.

3 ;1+ compliant Host expects all requests to be processed within a maximum period of & seconds. It also specifiesstricter timing for specific requests -

•1tandard ?evice requests without a data stage must be completed in &=ms.

•1tandard ?evice requests with a data stage must start to return data &==ms after the request.

•Gach data packet must be sent within &==ms of the successful transmission of the previous packet.

•he status stage must complete within &=ms after the transmission of the last data packet.

•he 1et3ddress command which contains a data phase0 must process the command and return statuswithin &=ms. he device then has /ms to change address before the next request is sent.

hese timeout periods are quite acceptable for even the slowest of devices, but can be a restriction duringdebugging. &=m1 doesn't provide for many debugging characters to be sent at ":==bps on an asynchronous serial port or for a In ircuit ?ebuggerTGmulator to single step or to break execution to examine the internal Fegisters. 3sa result, ;1+ requires some different debugging methods to that of other microcontroller projects.

asually reading through the QS ??K, one may note the Host ontroller ?river now has a;1+;1GF^ES^1GB?^EBG^S3KG command which is commented to read Mhis 3SI is used toimplement the 'single step' ;1+ transaction development tool.M >hile such a tool has not been releasedyet, we can only hope to see one soon.

Gach request starts with a $ byte long 1etup Sacket which has the following format,

Effset (ield 1i9e <alue ?escription

= bmFequestype ! +itO6ap ata hase 'ransfer irection

= Host to ?evice! ?evice to Host<.. 'y#e

= 1tandard! lass/ <endor D Feserved4..> !eci#ient

= ?evice! Interface/ GndpointD Ether C..D! Feserved

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! bFequest ! <alue Fequest

/ w<alue / <alue <alue

C wIndex /Index orEffset

Index

: w@ength / ount Bumber of bytes to transfer if there is adata phase

he bm!e?uest'y#e field will determine the direction of the request, type of request and designated recipient.heb!e?uest field determines the request being made. he bmFequestype is normally parsed and execution is branched to a number of handlers such as a 1tandard ?evice request handler, a 1tandard Interface request handler,a 1tandard Gndpoint request handler, a lass ?evice request handler etc. How you parse the setup packet is entirelyup to your preference. Ethers may choose to parse the bFequest first and then determine the type and recipient based on each request.1tandard requests are common to all ;1+ device's and are detailed in the next coming pages. lass requests arecommon to classes of drivers. (or example, all device conforming to the HI? class will have a common set of classspecific requests. hese will differ to a device conforming to the communications class and differ again to that of adevice conforming to the mass storage class.

3nd last of all are the vendor defined requests. hese are requests which you as the ;1+ device designer canassign. hese are normally different from device to device, but this is all up to your implementation andimagination.3 common request can be directed to different recipients and based on the recipient perform different functions. 3Aet1tatus 1tandard request for example, can be directed at the device, interface or endpoint. >hen directed to adevice it returns flags indicating the status of remote wakeup and if the device is self powered. However if thesame request is directed at the interface it always returns 9ero, or should it be directed at an endpoint will return thehalt flag for the endpoint.he 1Value and 1Index fields allow parameters to be passed with the request. length is used the specify thenumber of bytes to be transferred should there be a data phase.

1tandard Fequests1ection ".C of the ;1+ specification details the M1tandard ?eviceM requests required to be implemented for every;1+ device. he standard provides a single table grouping items by request. onsidering most firmware will parse

the setup packet by recipient we will opt to break up the requests based by recipient for easier examination andimplementation.1tandard ?evice Fequests

here are currently eight 1tandard ?evice requests, all of which are detailed in the table below.

 bmFequestype bFequest w<alue wIndex w@ength ?ata

!=== ====b AG^13;1 =x==0 Xero Xero wo ?evice 1tatus

==== ====b@G3F^(G3;FG=x=!0

(eature 1elector Xero Xero Bone

==== ====b 1G^(G3;FG =x=D0 (eature 1elector Xero Xero Bone

==== ====b 1G^3??FG11 =x=&0 ?evice 3ddress Xero Xero Bone

!=== ====bAG^?G1FISEF=x=:0

?escriptor ype5 Index

Xero or@anguageI?

?escriptor@ength

?escriptor 

==== ====b1G^?G1FISEF=x=#0

?escriptor ype5 Index

Xero or@anguageI?

?escriptor@ength

?escriptor 

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!=== ====bAG^EB(IA;F3IE B =x=$0

Xero Xero !onfiguration<alue

==== ====b1G^EB(IA;F3IE B =x="0

onfiguration<alue

Xero Xero Bone

•he @et 0tatus request directed at the device will return two bytes during the data stage with thefollowing format,

?!& ?!C ?!D ?!/ ?!! ?!= ?" ?$ ?# ?: ?& ?C ?D ?/ ?! ?=

FeservedFemote>akeup

1elfSowered

If ?= is set, then this indicates the device is self powered. If clear, the device is bus powered. If ?! is set,the device has remote wakeup enabled and can wake the host up during suspend. he remote wakeup bitcan be by the 1et(eature and lear(eature requests with a feature selector of?G<IG^FG6EG^>3KG;S =x=!0

•Clear Aeature and 0et Aeature requests can be used to set boolean features. >hen the designatedrecipient is the device, the only two feature selectors available are ?G<IG^FG6EG^>3KG;S andG1^6E?G. est mode allows the device to exhibit various conditions. hese are further documented in

the ;1+ 1pecification Fevision /.=.• Set Address is %sed d%ri"# e"%meratio" to assi#" a %"i&%e address to the RS> device he address is

 specified i" *Qal%e a"d ca" o"ly be a maim%m of 127 his re&%est is %"i&%e i" that the device does "ot

 set its address %"til after the completio" of the stat%s sta#e (See o"trol ra"sfers ) ?ll other re&%ests

m%st complete before the stat%s sta#e

•0et escri#tor@et escri#tor is used to return the specified descriptor in w<alue. 3 request for theconfiguration descriptor will return the device descriptor and all interface and endpoint descriptors in theone request.

•Gndpoint ?escriptors ca""ot be accessed directly by a IetOescriptorCSetOescriptor

 He&%est

•Interface ?escriptors ca""ot be accessed directly by a IetOescriptorCSetOescriptor

 He&%est

•1tring ?escriptors i"cl%de a La"#%a#e AO i" *A"de to allo* for m%ltiple la"#%a#e s%pport•et onfigurationSet onfiguration is %sed to re&%est or set the c%rre"t device co"fi#%ratio" A" the

case of a Iet o"fi#%ratio" re&%est, a byte *ill be ret%r"ed d%ri"# the data sta#e i"dicati"# the devices

 stat%s ? !ero val%e mea"s the device is "ot co"fi#%red a"d a "o"!ero val%e i"dicates the device is

co"fi#%red Set o"fi#%ratio" is %sed to e"able a device At sho%ld co"tai" the val%e of

bo"fi#%ratio"Qal%e of the desired configuration descriptor  i" the lo*er byte of *Qal%e to select

*hich co"fi#%ratio" to e"able1tandard Interface Fequests

he specification currently defines five 1tandard Interface requests which are detailed in the table below.Interestingly enough, only two requests do anything intelligible.

 bmFequestype bFequest w<alue wIndex w@ength ?ata

!=== ===!b AG^13;1 =x==0 Xero Interface woInterface1tatus

==== ===!b@G3F^(G3;FG=x=!0

(eature1elector 

Interface Xero Bone

==== ===!b 1G^(G3;FG =x=D0(eature1elector 

Interface Xero Bone

!=== ===!b AG^IBGF(3G Xero Interface Ene 3lternate

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=x=30 Interface

==== ===!b1G^IBGF(3G=x!!0

3lternative1etting

Interface Xero Bone

•1Index is normally used to specify the referring interface for requests directed at the interface. Its format is shown below.

?!& ?!C ?!D ?!/ ?!! ?!= ?" ?$ ?# ?: ?& ?C ?D ?/ ?! ?=

Feserved Interface Bumber  

•@et 0tatus is used to return the status of the interface. 1uch a request to the interface should return two bytes of=x==, =x==. +oth bytes are reserved for future use0

•Clear Aeature and 0et Aeature requests can be used to set boolean features. >hen the designated recipient is theinterface, the current ;1+ 1pecification Fevision / specifies no interface features.

•et "nterface a"d Set "nterface set the 3lternative Interface  setti"# *hich is described i" more detail %"der

the A"terface Oescriptor 1tandard Gndpoint Fequests

1tandard Gndpoint requests come in the four varieties listed below.

 bmFequestype bFequest w<alue >index w@ength ?ata

!=== ==!=bAG^13;1=x==0

Xero Gndpoint wo Gndpoint 1tatus

==== ==!=b@G3F^(G3;FG=x=!0

(eature1elector 

Gndpoint Xero Bone

==== ==!=b1G^(G3;FG=x=D0

(eature1elector 

Gndpoint Xero Bone

!=== ==!=b1RBH^(F36G=x!/0

Xero Gndpoint wo (rameBumber  

•he 1Index field is normally used to specify the referring endpoint and direction for requests directed toan endpoint. Its format is shown below.

?!& ?!C ?!D ?!/ ?!! ?!= ?" ?$ ?# ?: ?& ?C ?D ?/ ?! ?=

Feserved ?ir Feserved Gndpoint Bumber  

•@et 0tatus returns two bytes indicating the status HaltedT1talled0 of a endpoint. he format of the two bytes returned is illustrated below.

?!& ?!C ?!D ?!/ ?!! ?!= ?" ?$ ?# ?: ?& ?C ?D ?/ ?! ?=

Feserved Halt•Clear Aeature and 0et Aeature are used to set Gndpoint (eatures he standard currently defines one