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    • 4. 发明公开
    • 휴대 단말기에서 객체 이동 방법 및 장치
    • 移动终端移动目标的方法和装置
    • KR1020140010685A
    • 2014-01-27
    • KR1020120077265
    • 2012-07-16
    • 삼성전자주식회사
    • 윤의선문지중박봉희여인춘이창성
    • G06F3/048G06F3/14H04B1/40
    • G06F3/04842G06F3/017G06F3/0481G06F3/04815G06F3/04847G06F3/0486G06F3/0488G06F3/04883
    • The present invention relates to a method and a device for moving an object in a mobile terminal. The method of the present invention comprises the step of indicating the object; the step of receiving a movement command for the indicated object; and the step of configuring the moving distance of each object per unit time differently for moving the object from a current position to a target position before indicating. [Reference numerals] (AA) START; (S210) Displaying an object; (S220) Is the position of the object changed?; (S230) Initialization of variables; (S240) Current position = target position?; (S250) Calculating a moving direction and a full moving distance; (S260) Calculating the distance per unit time; (S270) Calculating the position of a screen where the object is displayed; (S280) Displaying the object; (S290) Is the position of the target changed?
    • 本发明涉及一种用于移动移动终端中的对象的方法和装置。 本发明的方法包括指示对象的步骤; 接收针对所指示的对象的移动命令的步骤; 以及为了在指示之前将对象从当前位置移动到目标位置,以单位时间的方式配置每个对象的移动距离的步骤不同。 (附图标记)(AA)START; (S210)显示对象; (S220)对象的位置是否改变? (S230)变量初始化; (S240)当前位置=目标位置 (S250)计算移动方向和全移动距离; (S260)计算单位时间的距离; (S270)计算显示对象的画面位置; (S280)显示对象; (S290)目标的位置是否改变?
    • 5. 发明公开
    • GPU의 자원 할당을 위한 방법 및 장치
    • GPU资源分配的方法与装置
    • KR1020130087257A
    • 2013-08-06
    • KR1020120008453
    • 2012-01-27
    • 삼성전자주식회사
    • 김권식안영우송정익여인춘
    • G06F9/50
    • G06F9/5011G06F9/5066G06T1/20
    • PURPOSE: A method for allocating resources of a graphic processing unit (GPU) and a device thereof are provided to reduce the request processing number of the GPU by improving the efficiency of core application. CONSTITUTION: A memory (230) stores requests, and a control unit (210) stores operations by receiving a task including the operations. The control unit sets the request unit by combining the data of the operations and allocates resources of a GPU (240) according to the execution order of the request. The control unit sets the operation according to the request units and determines whether the number of the requests is over threshold values. [Reference numerals] (220) GPU resource assignor; (230) Memory
    • 目的:提供一种用于分配图形处理单元(GPU)及其装置的资源的方法,以通过提高核心应用的效率来减少GPU的请求处理次数。 构成:存储器(230)存储请求,并且控制单元(210)通过接收包括操作的任务来存储操作。 控制单元通过组合操作的数据来设置请求单元,并根据请求的执行顺序分配GPU(240)的资源。 控制单元根据请求单元设置操作,并确定请求数是否超过阈值。 (220)GPU资源分配器; (230)内存
    • 6. 发明授权
    • 프로세싱 유닛의 동적 자원 할당을 위한 방법 및 장치
    • 加工单位动态资源分配的方法与装置
    • KR101710910B1
    • 2017-03-13
    • KR1020100093330
    • 2010-09-27
    • 삼성전자주식회사
    • 김경훈여인춘이승욱김중백이일호송정익
    • G06F9/50G06F9/38
    • G06F9/5066G06F2209/5017
    • 본발명은적어도하나의프로세싱유닛을포함하는시스템의동적자원할당방법및 장치에관한것으로서, 본발명은자원할당될태스크에대한정보를수신하고, 상기태스크를적어도하나의태스크병렬유닛으로분할하는단계, 상기태스크병렬유닛들의처리예상시간및 상호간의존성에따라상기태스크를임의의다각형형상을가지는태스크블록으로설정하는단계, 상기태스크블록을시간에따른가로축과적어도하나의프로세싱유닛에따른세로축으로이루어지는자원할당평면에배치하여자원할당하는단계및 상기자원할당정보에따라상기태스크를수행하는단계를포함하는것을특징으로한다. 본발명에따르면시스템이구비하는 CPU와 GPU 자원을동시에효율적으로사용할수 있어시스템의전체적인효율을향상시킬수 있다.
    • 公开了一种具有至少一个处理单元的系统中用于动态资源分配的方法和装置。 动态资源分配方法包括接收资源被分配的任务的信息,并将该任务划分为一个或多个任务并行单元; 根据任务并行单元的预期执行时间和任务并行单元之间的依赖性将任务转换为具有多边形形状的任务块; 通过将任务块放置在具有水平时间轴和处理单元的垂直轴的资源分配平面上来将资源分配给任务块; 并根据资源分配信息执行该任务。 因此,系统中的CPU资源和GPU资源可以同时并行使用,从而提高整体系统的效率。
    • 7. 发明公开
    • 멀티 코어 시스템의 인터럽트 할당 방법 및 장치
    • 用于多核系统中断分配的方法和装置
    • KR1020130021637A
    • 2013-03-06
    • KR1020110084020
    • 2011-08-23
    • 삼성전자주식회사
    • 한상복김홍철여인춘박종철
    • G06F13/24
    • G06F13/24Y02D10/14
    • PURPOSE: An interrupt allocating method of a multi core system and a device thereof are provided to efficiently and quickly process interrupt by transmitting a signal for changing a corresponding interrupt control register into an interrupt processing impossible state to the interrupt control register. CONSTITUTION: An interrupt control register unit(110) records the interrupt processing performance of each core(130). When interrupt is received, an interrupt allocating unit(120) confirms the interrupt control register unit and allocates the interrupt to a core processing the interrupt. When the interrupt is allocated, the core transmits a signal for changing a corresponding interrupt control register into an interrupt processing impossible state to the interrupt control register unit and processes the interrupt. The core transmits the signal for changing the interrupt control register into the interrupt processing impossible state to the interrupt control register unit after the completion of interrupt processing. [Reference numerals] (110) Interrupt control register unit; (120) Interrupt allocating unit; (AA,BB) Interrupt
    • 目的:提供多核系统的中断分配方法及其装置,以通过向中断控制寄存器发送用于将相应的中断控制寄存器改变为中断处理不可能状态的信号来有效地并快速地处理中断。 构成:中断控制寄存器单元(110)记录每个核心(130)的中断处理性能。 当接收到中断时,中断分配单元(120)确认中断控制寄存器单元,并将中断分配给处理中断的内核。 当分配中断时,核心将中断控制寄存器的一个信号发送到中断处理不可能状态,并将该中断处理。 在中断处理完成后,核心将中断控制寄存器的信号发送到中断处理不可能状态到中断控制寄存器单元。 (附图标记)(110)中断控制寄存器单元; (120)中断分配单元; (AA,BB)中断
    • 8. 发明公开
    • 단말 및 그 단말에서 어플리케이션 수행 방법
    • 用于执行应用的终端和方法
    • KR1020130021172A
    • 2013-03-05
    • KR1020110083541
    • 2011-08-22
    • 삼성전자주식회사
    • 송정익이일호여인춘안영우
    • G06F9/44G06F9/45
    • G06F9/505G06F7/504G06F9/5044G06T1/20Y02D10/22G06F8/37
    • PURPOSE: A terminal and a method for executing an application in the terminal are provided to improve the performance of the whole terminal and dynamic resource allocation by generating a code corresponding to an application as a binary type by confirming the performance and workload of a CPU and a GPU during compiling. CONSTITUTION: When a code for an application to be executed is inputted, a workload of an operation processing unit and a graphic operation processing unit is confirmed(520). The workload of the operation processing unit and the graphic operation processing unit is compared with a threshold value of a set processing amount(530). The code is compiled according to the comparison result(535). The operation processing unit and/or graphic operation processing unit generates a binary for executing the application by using the compiled code(540). The application is executed through the generated binary(550). [Reference numerals] (510) Inputting a code for an application to be executed; (515) Generating an intermediate code; (520) Confirming workloads of a CPU and a GPU; (525) Workload of the CPU is equal to or greater than a first processing amount threshold?; (530) Workload of the CPU is equal to or greater than a second processing amount threshold?; (535) Performing compiling for a binary for the GPU; (540) Generating a binary for the GPU; (545) Feeding back for each generated binary; (550) Executing the corresponding application; (560) Performing compiling for a binary for the CPU; (565) Generating a binary for the CPU; (AA) Start; (BB) End
    • 目的:提供一种用于在终端中执行应用的终端和方法,以通过产生与应用程序相对应的代码作为二进制类型,通过确定CPU的性能和工作负载来提高整个终端的性能和动态资源分配, 一个GPU在编译时。 构成:当输入要执行的应用程序的代码时,确认操作处理单元和图形操作处理单元的工作量(520)。 操作处理单元和图形操作处理单元的工作量与设定处理量的阈值(530)进行比较。 代码根据比较结果进行编译(535)。 操作处理单元和/或图形操作处理单元通过使用编译代码生成用于执行应用程序的二进制码(540)。 该应用程序通过生成的二进制执行(550)。 (附图标记)(510)输入要执行的应用的代码; (515)生成中间代码; (520)确认CPU和GPU的工作负载; (525)CPU的工作负载等于或大于第一处理量阈值α; (530)CPU的工作负载等于或大于第二处理量阈值α; (535)执行GPU的二进制编译; (540)为GPU生成二进制码; (545)为每个生成的二进制文件反馈; (550)执行相应的申请; (560)执行CPU的二进制编译; (565)为CPU生成二进制数据; (AA)开始; (BB)结束
    • 9. 发明授权
    • 단말 및 그 단말에서 어플리케이션 수행 방법
    • 如何在终端及其终端上执行应用程序
    • KR101845328B1
    • 2018-04-04
    • KR1020110083541
    • 2011-08-22
    • 삼성전자주식회사
    • 송정익이일호여인춘안영우
    • G06F9/44G06F9/45
    • G06F9/505G06F7/504G06F9/5044G06T1/20Y02D10/22
    • 본발명은단말및 그단말에서어플리케이션을수행하는방법에관한것으로, 수행될어플리케이션에대한코드가입력되면, 연산처리부와그래픽연산처리부의워크로드를확인하는과정과, 상기확인된연산처리부의워크로드와그래픽연산처리부의워크로드를미리설정된처리량임계값과비교하는과정과, 상기비교결과에따라상기코드를컴파일하는과정과, 상기컴파일된코드를이용하여상기연산처리부또는상기그래픽연산처리부에서어플리케이션수행을위한바이너리를생성하는과정과, 상기생성된바이너리를통해상기어플리케이션을수행하는과정으로구성된다. 따라서 CPU와 GPU에서처리되는작업량을조절할수 있으며, 전체시스템의성능이향상되며, 수행시간이짧아지기때문에저전력의효과를얻을수 있다.
    • 本发明是一种终端和一种用于在终端上执行的应用程序的方法,该代码被输入到该应用程序被执行时,图形操作处理的操作部的工作,并且所识别的操作处理,以确定处理负荷的工作负荷 和图形比较预设吞吐量阈值,编译基于比较结果的代码的过程的操作部分的工作量,并进行了使用经编译的代码中的操作处理的应用或图形运算处理 为生成的二进制生成二进制文件,并通过生成的二进制文件执行应用程序。 因此,可以控制CPU和GPU处理的工作量,提高整个系统的性能,缩短执行时间,从而实现低功耗。