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    • 1. 发明申请
    • HIGH PERFORMANCE PHP
    • 高性能PHP
    • US20110179347A1
    • 2011-07-21
    • US12891554
    • 2010-09-27
    • Iain Andrew Russell ProctorMinghui YangHaiping Zhao
    • Iain Andrew Russell ProctorMinghui YangHaiping Zhao
    • G06F17/00
    • G06F8/31G06F8/51G06F17/2247
    • Markup language documents including server side scripting code using PHP syntax are executed efficiently in response to requests received by a server. The processing of the markup language document results in generation of a transformed markup language document that is returned in response to the request. The server side script code is input to a compiler that generates C++ code (or code in any object-based language based on C language) implementing the functionality of the server side script code. The C++ code is compiled to generated object code which is executed in order to process the markup language document. The generated C++ code includes functionality supported by PHP language including redeclaration of functions, dynamic variables, global variables, and the like. The generated C++ code invokes memory allocation code that allocates and deallocates objects obtained by instantiating the generated C++ classes.
    • 包含使用PHP语法的服务器端脚本代码的标记语言文档可以有效地执行,以响应服务器接收到的请求。 标记语言文档的处理导致产生响应于该请求返回的变换的标记语言文档。 将服务器端脚本代码输入到生成C ++代码(或基于C语言的任何基于对象的语言中的代码)的编译器,以实现服务器端脚本代码的功能。 C ++代码被编译成生成的对象代码,它被执行以处理标记语言文档。 生成的C ++代码包括PHP语言支持的功能,包括重新声明函数,动态变量,全局变量等。 生成的C ++代码调用分配和释放通过实例化生成的C ++类获得的对象的内存分配代码。
    • 2. 发明授权
    • Semiconductor for measuring biological interactions
    • 用于测量生物相互作用的半导体
    • US08614466B2
    • 2013-12-24
    • US13128851
    • 2009-11-18
    • Avraham RasoolyMinghui YangHugh A. BruckYordan Kostov
    • Avraham RasoolyMinghui YangHugh A. BruckYordan Kostov
    • H01L29/772
    • G01N33/5438
    • An apparatus and method are disclosed for electrically directly detecting biomolecular binding in a semiconductor. The semiconductor can be based on electrical percolation of nanomaterial formed in the gate region. In one embodiment of an apparatus, a semiconductor includes first and second electrodes with a gate region there between. The gate region includes a multilayered matrix of electrically conductive material with capture molecules for binding target molecules, such as antibody, receptors, DNA, RNA, peptides and aptamer. The molecular interactions between the capture molecules and the target molecules disrupts the matrix's continuity resulting in a change in electrical resistance, capacitance or impedance. The increase in resistance, capacitance or impedance can be directly measured electronically, without the need for optical sensors or labels. The multi-layered matrix can be formed from a plurality of single-walled nanotubes, graphene, or buckeyballs or any kind of conductive nanowire, such as metal nanowires or nanowires made from conductive polymers.
    • 公开了用于直接检测半导体中的生物分子结合的装置和方法。 半导体可以基于在栅极区域中形成的纳米材料的电渗透。 在装置的一个实施例中,半导体包括其间具有栅极区的第一和第二电极。 栅极区域包括具有用于结合靶分子(例如抗体,受体,DNA,RNA,肽和适体)的捕获分子的导电材料的多层基质。 捕获分子与靶分子之间的分子相互作用会破坏矩阵的连续性,从而导致电阻,电容或阻抗的变化。 电阻,电容或阻抗的增加可以直接以电子方式进行测量,而不需要光学传感器或标签。 多层矩阵可以由多个单壁纳米管,石墨烯或buckeyball或任何种类的导电纳米线形成,例如由导电聚合物制成的金属纳米线或纳米线。
    • 4. 发明申请
    • A SEMICONDUCTOR FOR MEASURING BIOLOGICAL INTERACTIONS
    • 用于测量生物相互作用的半导体
    • US20110217763A1
    • 2011-09-08
    • US13128851
    • 2009-11-18
    • Avraham RasoolyMinghui YangHugh A. BruckYordan Kostov
    • Avraham RasoolyMinghui YangHugh A. BruckYordan Kostov
    • G01N27/04H01L29/772H01L21/335C12M1/34B82Y30/00
    • G01N33/5438
    • An apparatus and method are disclosed for electrically directly detecting biomolecular binding in a semiconductor. The semiconductor can be based on electrical percolation of nanomaterial formed in the gate region. In one embodiment of an apparatus, a semiconductor includes first and second electrodes with a gate region there between. The gate region includes a multilayered matrix of electrically conductive material with capture molecules for binding target molecules, such as antibody, receptors, DNA, RNA, peptides and aptamer. The molecular interactions between the capture molecules and the target molecules disrupts the matrix's continuity resulting in a change in electrical resistance, capacitance or impedance. The increase in resistance, capacitance or impedance can be directly measured electronically, without the need for optical sensors or labels. The multi-layered matrix can be formed from a plurality of single-walled nanotubes, graphene, or buckeyballs or any kind of conductive nanowire, such as metal nanowires or nanowires made from conductive polymers.
    • 公开了用于直接检测半导体中的生物分子结合的装置和方法。 半导体可以基于在栅极区域中形成的纳米材料的电渗透。 在装置的一个实施例中,半导体包括其间具有栅极区的第一和第二电极。 栅极区域包括具有用于结合靶分子(例如抗体,受体,DNA,RNA,肽和适体)的捕获分子的导电材料的多层基质。 捕获分子与靶分子之间的分子相互作用会破坏矩阵的连续性,从而导致电阻,电容或阻抗的变化。 电阻,电容或阻抗的增加可以直接以电子方式进行测量,而不需要光学传感器或标签。 多层矩阵可以由多个单壁纳米管,石墨烯或buckeyball或任何种类的导电纳米线形成,例如由导电聚合物制成的金属纳米线或纳米线。
    • 5. 发明申请
    • Method and apparatus for performing conditional compilation
    • 用于执行条件编译的方法和装置
    • US20080028373A1
    • 2008-01-31
    • US11495850
    • 2006-07-27
    • Minghui YangChandrasekharan IyerCharles Wetherell
    • Minghui YangChandrasekharan IyerCharles Wetherell
    • G06F9/45
    • G06F8/443
    • One embodiment of the present invention provides a system that facilitates performing conditional compilation. The system operates by analyzing programming language source code prior to compilation to locate a preprocessing directive that specifies a condition to be evaluated, and also identifies source code to be conditionally included during compilation of the source code. Next, the system generates evaluation source code that evaluates the condition. The system then evaluates the condition by evaluating ordinary programming language and environmental variables within the evaluation source code. Note that the run-time variables are also available at run-time during execution of a compiled version of the original source code. Next, the system conditionally includes source code associated with a result of the evaluation and compiles the revised source code. Finally, the system records the use of any variables during condition evaluation in a persistent manner and automatically restarts the entire processing if any of the recorded variables may have been changed subsequent to the original compilation.
    • 本发明的一个实施例提供一种便于执行条件编译的系统。 该系统通过在编译之前分析编程语言源代码来操作,以定位一个指定要评估的条件的预处理指令,并且还识别在编译源代码期间有条件地包含的源代码。 接下来,系统生成评估条件的评估源代码。 然后,系统通过评估评估源代码中的普通编程语言和环境变量来评估条件。 请注意,在执行原始源代码的编译版本期间,运行时变量也可在运行时使用。 接下来,系统有条件地包括与评估结果相关联的源代码并编译修改的源代码。 最后,系统以持续的方式在条件评估期间记录任何变量的使用,并且如果在原始编译之后任何记录的变量可能已被更改,则自动重新启动整个处理。
    • 8. 发明授权
    • Executing server side script code specified using PHP on a server to generate dynamic web pages
    • 在服务器上执行使用PHP指定的服务器端脚本代码来生成动态网页
    • US08707161B2
    • 2014-04-22
    • US12891554
    • 2010-09-27
    • Iain Andrew Russell ProctorMinghui YangHaiping Zhao
    • Iain Andrew Russell ProctorMinghui YangHaiping Zhao
    • G06F17/28
    • G06F8/31G06F8/51G06F17/2247
    • Markup language documents including server side scripting code using PHP syntax are executed efficiently in response to requests received by a server. The processing of the markup language document results in generation of a transformed markup language document that is returned in response to the request. The server side script code is input to a compiler that generates C++ code (or code in any object-based language based on C language) implementing the functionality of the server side script code. The C++ code is compiled to generated object code which is executed in order to process the markup language document. The generated C++ code includes functionality supported by PHP language including redeclaration of functions, dynamic variables, global variables, and the like. The generated C++ code invokes memory allocation code that allocates and deallocates objects obtained by instantiating the generated C++ classes.
    • 包含使用PHP语法的服务器端脚本代码的标记语言文档可以有效地执行,以响应服务器接收到的请求。 标记语言文档的处理导致产生响应于该请求返回的变换的标记语言文档。 将服务器端脚本代码输入到生成C ++代码(或基于C语言的任何基于对象的语言中的代码)的编译器,以实现服务器端脚本代码的功能。 C ++代码被编译成生成的对象代码,它被执行以处理标记语言文档。 生成的C ++代码包括PHP语言支持的功能,包括重新声明函数,动态变量,全局变量等。 生成的C ++代码调用分配和释放通过实例化生成的C ++类获得的对象的内存分配代码。
    • 10. 发明授权
    • Method and apparatus for performing conditional compilation
    • 用于执行条件编译的方法和装置
    • US08161465B2
    • 2012-04-17
    • US11495850
    • 2006-07-27
    • Minghui YangChandrasekharan IyerCharles Wetherell
    • Minghui YangChandrasekharan IyerCharles Wetherell
    • G06F9/45
    • G06F8/443
    • One embodiment of the present invention provides a system that facilitates performing conditional compilation. The system operates by analyzing programming language source code prior to compilation to locate a preprocessing directive that specifies a condition to be evaluated, and also identifies source code to be conditionally included during compilation of the source code. Next, the system generates evaluation source code that evaluates the condition. The system then evaluates the condition by evaluating ordinary programming language and environmental variables within the evaluation source code. Note that the run-time variables are also available at run-time during execution of a compiled version of the original source code. Next, the system conditionally includes source code associated with a result of the evaluation and compiles the revised source code. Finally, the system records the use of any variables during condition evaluation in a persistent manner and automatically restarts the entire processing if any of the recorded variables may have been changed subsequent to the original compilation.
    • 本发明的一个实施例提供一种便于执行条件编译的系统。 该系统通过在编译之前分析编程语言源代码来操作,以定位一个指定要评估的条件的预处理指令,并且还识别在编译源代码期间有条件地包含的源代码。 接下来,系统生成评估条件的评估源代码。 然后,系统通过评估评估源代码中的普通编程语言和环境变量来评估条件。 请注意,在执行原始源代码的编译版本期间,运行时变量也可在运行时使用。 接下来,系统有条件地包括与评估结果相关联的源代码并编译修改的源代码。 最后,系统以持续的方式在条件评估期间记录任何变量的使用,并且如果在原始编译之后任何记录的变量可能已被更改,则自动重新启动整个处理。