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    • 1. 发明授权
    • Hardware specific code generation
    • 硬件特定代码生成
    • US08701081B2
    • 2014-04-15
    • US13220080
    • 2011-08-29
    • James E. CarrickPeter SzpakRobert O. AbergAndrew C. BartlettXiaocang LinHongbo Yang
    • James E. CarrickPeter SzpakRobert O. AbergAndrew C. BartlettXiaocang LinHongbo Yang
    • G06F9/44
    • G06F8/34G06F8/35G06F8/37G06F8/38
    • A computer-implemented method for generating code based on a graphical model may include: translating the graphical model into a graphical model code, the graphical model code including a first graphical model code function; performing a lookup of the first graphical model code function in a hardware specific library, the hardware specific library comprising a plurality of relationships between graphical model code functions and hardware specific functions, where the first graphical model code function is one of the graphical model code functions; obtaining a matched hardware specific function based on the lookup, wherein the matched hardware specific function is one of the hardware specific functions from the hardware specific library; and modifying the graphical model code based on the matched hardware specific function.
    • 用于基于图形模型生成代码的计算机实现的方法可以包括:将所述图形模型转换成图形模型代码,所述图形模型代码包括第一图形模型代码功能; 在硬件特定库中执行对第一图形模型代码功能的查找,硬件特定库包括图形模型代码功能和硬件特定功能之间的多个关系,其中第一图形模型代码功能是图形模型代码功能之一 ; 基于查找获得匹配的硬件特定功能,其中匹配的硬件特定功能是来自硬件特定库的硬件特定功能之一; 并基于匹配的硬件特定功能修改图形模型代码。
    • 2. 发明授权
    • Simplified data signal support for diagramming environment languages
    • 简化的数据信号支持图表环境语言
    • US08280712B2
    • 2012-10-02
    • US12771359
    • 2010-04-30
    • Peter SzpakMatthew Englehart
    • Peter SzpakMatthew Englehart
    • G06F17/50G06G7/62G06G7/48
    • G06F17/5009G06F2217/74
    • A computer-implemented method may include defining an input bus signal in a graphical block diagram model by associating the input bus signal with a first group of signals, at least two of the first group of signals having a different data type; defining an output bus signal in the graphical block diagram model by associating the second bus signal with a second group of signals, each of the second group of signals corresponding to one of the first group of signals; defining an input to a non-virtual operation block in the graphical block diagram model as the input bus signal; defining an output to the non-virtual operation block in the graphical block diagram as the output bus signal; and simulating an operation performed on the input bus signal by the non-virtual operation block, the operation being performed on each of the first group of signals and output to each of the second group of signals.
    • 计算机实现的方法可以包括通过将输入总线信号与第一组信号相关联来定义图形框图模型中的输入总线信号,第一组信号中的至少两个具有不同的数据类型; 通过将所述第二总线信号与第二组信号相关联来在所述图形框图模型中定义输出总线信号,所述第二组信号中的每一个对应于所述第一组信号之一; 将图形框图模型中的非虚拟操作块的输入定义为输入总线信号; 将图形框图中的非虚拟操作块的输出定义为输出总线信号; 以及模拟通过所述非虚拟操作块对所述输入总线信号执行的操作,对所述第一组信号中的每一个执行所述操作并输出到所述第二组信号中的每一个。
    • 5. 发明授权
    • Simplified data signal support for diagramming environment languages
    • 简化的数据信号支持图表环境语言
    • US07519523B2
    • 2009-04-14
    • US11842008
    • 2007-08-20
    • Peter SzpakMatthew Englehart
    • Peter SzpakMatthew Englehart
    • G06G7/62
    • G06F17/5009G06F2217/74
    • A computer-implemented method may include defining an input bus signal in a graphical block diagram model by associating the input bus signal with a first group of signals, at least two of the first group of signals having a different data type; defining an output bus signal in the graphical block diagram model by associating the second bus signal with a second group of signals, each of the second group of signals corresponding to one of the first group of signals; defining an input to a non-virtual operation block in the graphical block diagram model as the input bus signal; defining an output to the non-virtual operation block in the graphical block diagram as the output bus signal; and simulating an operation performed on the input bus signal by the non-virtual operation block, the operation being performed on each of the first group of signals and output to each of the second group of signals.
    • 计算机实现的方法可以包括通过将输入总线信号与第一组信号相关联来定义图形框图模型中的输入总线信号,第一组信号中的至少两个具有不同的数据类型; 通过将所述第二总线信号与第二组信号相关联来在所述图形框图模型中定义输出总线信号,所述第二组信号中的每一个对应于所述第一组信号之一; 将图形框图模型中的非虚拟操作块的输入定义为输入总线信号; 将图形框图中的非虚拟操作块的输出定义为输出总线信号; 以及模拟通过所述非虚拟操作块对所述输入总线信号执行的操作,对所述第一组信号中的每一个执行所述操作并输出到所述第二组信号中的每一个。
    • 6. 发明授权
    • Shared code management
    • 共享代码管理
    • US07500220B1
    • 2009-03-03
    • US10749294
    • 2003-12-30
    • Yang FengPeter SzpakVijay RaghavanJan Sjodin
    • Yang FengPeter SzpakVijay RaghavanJan Sjodin
    • G06F9/44
    • G06F8/71
    • An electronic device and method are provided to enable the management of shared code. Code may be shared if the environmental configuration is suitable for execution of the code and the functionality of the code matches. An identifier is provided to correspond to the functionality for a unit of code. Examples of identifiers can include file names, function names, macro names and class names. A checksum may also be used to identify the functionality of the unit of code. An organizational structure is configured to have constituents corresponding to environmental configurations suitable to execute the unit of code. Examples of the organizational structure include a directory structure or a class structure. The various units of code may be stored in the organizational structure and located by the constituent in which they are located and their functionality determined by the identifier to enable sharing.
    • 提供一种电子设备和方法来实现对共享代码的管理。 如果环境配置适合执行代码并且代码的功能匹配,则可以共享代码。 提供标识符以对应于代码单元的功能。 标识符的示例可以包括文件名,函数名,宏名和类名。 还可以使用校验和来识别代码单元的功能。 组织结构被配置为具有对应于适于执行代码单元的环境配置的组成部分。 组织结构的示例包括目录结构或类结构。 各种代码单元可以存储在组织结构中并且由其所在的组成部分定位,并且由标识符确定其功能以实现共享。
    • 8. 发明授权
    • Simplified data signal support for diagramming environment languages
    • 简化的数据信号支持图表环境语言
    • US08768676B2
    • 2014-07-01
    • US12771397
    • 2010-04-30
    • Peter SzpakMatthew Englehart
    • Peter SzpakMatthew Englehart
    • G06F17/50G06G7/62G06G7/48
    • G06F17/5009G06F2217/74
    • A computer-implemented method may include defining an input bus signal in a graphical block diagram model by associating the input bus signal with a first group of signals, at least two of the first group of signals having a different data type; defining an output bus signal in the graphical block diagram model by associating the second bus signal with a second group of signals, each of the second group of signals corresponding to one of the first group of signals; defining an input to a non-virtual operation block in the graphical block diagram model as the input bus signal; defining an output to the non-virtual operation block in the graphical block diagram as the output bus signal; and simulating an operation performed on the input bus signal by the non-virtual operation block, the operation being performed on each of the first group of signals and output to each of the second group of signals.
    • 计算机实现的方法可以包括通过将输入总线信号与第一组信号相关联来定义图形框图模型中的输入总线信号,第一组信号中的至少两个具有不同的数据类型; 通过将所述第二总线信号与第二组信号相关联来在所述图形框图模型中定义输出总线信号,所述第二组信号中的每一个对应于所述第一组信号之一; 将图形框图模型中的非虚拟操作块的输入定义为输入总线信号; 将图形框图中的非虚拟操作块的输出定义为输出总线信号; 以及模拟通过所述非虚拟操作块对所述输入总线信号执行的操作,对所述第一组信号中的每一个执行所述操作并输出到所述第二组信号中的每一个。
    • 10. 发明授权
    • System and method for generating source code from a graphical model
    • 用于从图形模型生成源代码的系统和方法
    • US08504983B1
    • 2013-08-06
    • US12706572
    • 2010-02-16
    • Matthew EnglehartPeter Szpak
    • Matthew EnglehartPeter Szpak
    • G06F9/44
    • G06F8/34
    • A graphical user interface that enables a user to create and specify the properties of custom storage classes is disclosed. The characteristics of each storage class are specified via parameter settings accessible from the graphical interface. Each custom storage class designed through the interface is defined by a combination of parameter settings. A code preview window in the graphical interface displays salient aspects of the source code references to model data given the selected parameter settings. The display is shown dynamically and adjusted to reflect subsequent changes in parameter settings.
    • 公开了一种使用户能够创建和指定自定义存储类的属性的图形用户界面。 每个存储类的特性通过可从图形界面访问的参数设置来指定。 通过接口设计的每个自定义存储类都由参数设置的组合来定义。 图形界面中的代码预览窗口显示给定所选参数设置的源代码引用模型数据的显着方面。 显示屏将动态显示并进行调整,以反映参数设置的后续更改。