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    • 1. 发明申请
    • A METHOD AND SYSTEM FOR SUBSCRIBER JOURNEY ANALYTICS
    • 一种用于订阅者分析的方法和系统
    • WO2011079385A1
    • 2011-07-07
    • PCT/CA2010/002058
    • 2010-12-22
    • NEURALITIC SYSTEMSTREMBLAY, MarcMÉLIN, Eric
    • TREMBLAY, MarcMÉLIN, Eric
    • H04L12/26H04W24/00G06Q30/00H04L12/16H04L12/58H04N21/258H04W4/00
    • H04W24/08G06Q30/02H04L51/16H04L51/34H04N21/24H04N21/25866H04N21/6125H04N21/64723
    • The present method and system relate to analyzing journeys of at least one subscriber consuming a plurality of Internet services, using at least one device over multiple access technologies. The method and system store in a database, for each subscriber, a series of unique identifiers, each unique identifier corresponding to a specific device of the subscriber. The method and system collect, by means of multiple monitoring probes, real time data from IP traffic; and extract information from the collected real time data, the information comprising one of the unique identifiers. The information is transmitted to an analytic system, where it is aggregated per subscriber, using the unique identifiers to federate the plurality of devices for the same subscriber over the multiple access technologies. For each subscriber, a journey is generated, by processing the aggregated information with the analytic system.
    • 本方法和系统涉及使用多个接入技术的至少一个设备来分析消耗多个因特网服务的至少一个用户的旅程。 方法和系统存储在数据库中,对于每个订户,一系列唯一标识符,每个唯一标识符对应于订户的特定设备。 该方法和系统通过多个监控探测器收集来自IP流量的实时数据; 并从所收集的实时数据中提取信息,所述信息包括唯一标识符之一。 信息被传送到分析系统,其中每个订户聚合的信息,使用唯一标识符来通过多址接入技术来为相同用户联合多个设备。 对于每个用户,通过使用分析系统处理聚合信息来生成旅程。
    • 6. 发明申请
    • A METHOD AND SYSTEM FOR EFFICIENT AND EXHAUSTIVE URL CATEGORIZATION
    • 一种有效和排他性URL分类的方法和系统
    • WO2011069255A1
    • 2011-06-16
    • PCT/CA2010/001952
    • 2010-12-08
    • NEURALITIC SYSTEMSMIRANDETTE, OlivierTREMBLAY, MarcMELIN, Eric
    • MIRANDETTE, OlivierTREMBLAY, MarcMELIN, Eric
    • H04L12/26
    • H04L67/22G06F17/30876
    • The present method and system relate to categorizing URLs (Uniform Resource Locators) of web pages accessed by multiple users over an IP (Internet Protocol) based data network. The method and system collect real time data from IP data traffic occurring on the IP based data network, and extract parameters from the collected real time data, the parameters including an URL of a web page. The URL is processed by a rule based categorization engine, to associate a matching category to the URL of the web page. When no matching category is inferred, the URL is transferred to a semantic based categorization engine. A matching category is associated to the transferred URL by the semantic based categorization engine, based on a semantic analysis of the textual content extracted from the web page associated to the URL.
    • 本方法和系统涉及通过基于IP(因特网协议)的数据网络对由多个用户访问的网页的URL(统一资源定位符)进行分类。 该方法和系统从基于IP的数据网络上发生的IP数据流量收集实时数据,并从收集的实时数据中提取参数,参数包括网页的URL。 URL由基于规则的分类引擎处理,以将匹配的类别与网页的URL相关联。 当不推测出匹配的类别时,URL被传送到基于语义的分类引擎。 基于从与URL相关联的网页提取的文本内容的语义分析,基于语义的分类引擎将匹配的类别与传送的URL相关联。
    • 8. 发明申请
    • AVOIDING LOCKS BY TRANSACTIONALLY EXECUTING CRITICAL SECTIONS
    • 通过交易执行关键部分避开锁定
    • WO2007015925A1
    • 2007-02-08
    • PCT/US2006/028152
    • 2006-07-21
    • SUN MICROSYSTEMS, INC.MOIR, Mark S.TREMBLAY, MarcCHAUDHRY, Shailender
    • MOIR, Mark S.TREMBLAY, MarcCHAUDHRY, Shailender
    • G06F9/46G06F9/52
    • G06F9/528G06F8/52G06F9/3004G06F9/30087G06F9/3834G06F9/3859G06F9/467
    • A system that avoids locks by transactionally executing critical sections. The system receives a program which includes critical sections which are protected by locks. The system modifies the program so that the critical sections are executed transactionally without acquiring locks. The program is modified so that: (1) during transactional execution of a critical section, the program first determines if a lock associated with the critical section is held by another process and if so aborts the transactional execution; (2) if the transactional execution completes without encountering an interfering data access from another process, the program commits changes made during the transactional execution and optionally resumes normal non-transactional execution of the program past the critical section; and (3) if an interfering data access from another process is encountered during transactional execution, the program discards changes made during the transactional execution, and attempts to re-execute the critical section.
    • 通过事务执行关键部分来避免锁定的系统。 系统接收一个包含受锁保护的关键部分的程序。 系统修改程序,以便关键部分在事务上执行而不需要锁定。 该程序被修改为:(1)在关键部分的事务执行期间,程序首先确定与关键部分相关联的锁是否被另一进程保持,如果是这样,中止事务执行; (2)如果事务执行完成而没有遇到来自另一进程的干扰数据访问,则该程序提交在事务执行期间所做的更改,并且可选地恢复通过关键部分的程序的正常非事务性执行; 和(3)如果在事务执行期间遇到来自其他进程的干扰数据访问,则程序将丢弃事务执行期间所做的更改,并尝试重新执行关键部分。
    • 9. 发明申请
    • ENTERING SCOUT-MODE WHEN SPECULATIIVE STORES EXCEED THE CAPACITY OF THE STORE BUFFER
    • 当商店存储超过存储缓冲区的容量时进入SCOUT模式
    • WO2005106648A3
    • 2006-05-18
    • PCT/US2005012110
    • 2005-04-08
    • SUN MICROSYSTEMS INCCHAUDHRY SHAILENDERTREMBLAY MARCCAPRIOLI PAUL
    • CHAUDHRY SHAILENDERTREMBLAY MARCCAPRIOLI PAUL
    • G06F9/38G06F9/00G06F9/315
    • G06F9/3863G06F9/383G06F9/3834G06F9/3836G06F9/3838G06F9/384G06F9/3842G06F9/3857G06F9/3865
    • One embodiment of the present invention provides a system that facilitates deferring execution of instructions with unresolved data dependencies as they are issued for execution in program order. During normal execution mode, the system issues instructions for execution in program order. Upon encountering an unresolved data dependency during execution of an instruction, the system generates a checkpoint that can subsequently be used to return execution of the program to the point of the instruction. Next, the system executes the instruction and subsequent instructions in an execute-ahead mode, wherein instructions that cannot be executed because of an unresolved data dependency are deferred, and wherein other non-deferred instructions are executed in program order. Upon encountering a store during the execute-ahead mode, the system determines if the store buffer is full. If so, the system prefetches a cache line for the store, and defers execution of the store. If the number of stores that are encountered during execute-ahead mode exceeds the capacity of the store buffer, which means that the store buffer will never have additional space to accept additional stores during the execute-ahead mode because the store buffer is gated, the system directly enters scout mode, without waiting for the deferred queue to eventually fill.
    • 本发明的一个实施例提供了一种系统,其有助于在按照程序顺序执行时,推迟执行具有未解决的数据依赖性的指令。 在正常执行模式下,系统以程序顺序发出执行指令。 在执行指令期间遇到未解决的数据依赖性时,系统产生一个检查点,随后可以使用该检查点将程序的执行返回到指令点。 接下来,系统以执行模式执行指令和后续指令,其中由于未解决的数据依赖性而不能执行的指令被延迟,并且其中以程序顺序执行其他非延迟指令。 在执行提前模式期间遇到存储器时,系统确定存储缓冲区是否已满。 如果是这样,系统将预取商店的高速缓存线,并延迟商店的执行。 如果在执行超前模式期间遇到的存储器数量超过存储缓冲区的容量,这意味着由于存储缓冲区被选通,在执行提前模式期间,存储缓冲区将永远不会有额外的空间来接受附加存储, 系统直接进入侦察模式,无需等待延期队列最终填满。