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    • 1. 发明授权
    • Algorithm to bypass L4 processing in an internet protocol forwarding processor
    • 在互联网协议转发处理器中绕过L4处理的算法
    • US06700883B1
    • 2004-03-02
    • US09543145
    • 2000-04-05
    • Anthony Matteo GalloBrahmanand Kumar GortiDonald Newland JonesNatarajan VaidhyanathanColin Beaton Verrilli
    • Anthony Matteo GalloBrahmanand Kumar GortiDonald Newland JonesNatarajan VaidhyanathanColin Beaton Verrilli
    • H04L1256
    • H04L29/06H04L69/32
    • A controllable mechanism for by-passing Layer 4 (L4) classification is based on the insertion into a set of Layer 3 (L3) rules in an L3 lookup tree set of Layer 4 (L4) Classification Required Flags. The state of the L4 classification flag is set by comparing the L4 classification rule to an IP (Internet Protocol) lookup rule. Routing is accomplished by selecting which rule to apply to the data packet and reading the state of the corresponding L4 Classification Required Flag. In response to a first state of the corresponding L4 Classification Required Flag, an L4 classification is performed followed by a routing of the data packet. In response to a second state of the corresponding L4 Classification Required Flag performing a routing of said data packet. In a second embodiment, the method inserts into a set of L3 rules in L3 lookup means a set L4 Classification Required Flags and Global Flags. A first state of the L4 Classification Required Flag is set when a new rule is added to L4 classification means, the new rule being correlatable to a single entry in L3 lookup means. Routing is accomplished by selecting which rule to apply to the data packet and reading the state of the corresponding L4 classification required flag. In response to a first state of the corresponding L4 classification flag, a L4 classification is performed followed by a routing of the data packet. In response to a second state of the corresponding L4 classification flag, the state of the Global Flag is read, and in response to a first state of the Global flag, a L4 classification is performed followed by a routing of the data packet. In response to a second state of the Global Flag, the data packet is routed.
    • 用于旁路第4层(L4)分类的可控机制是基于在第4层(L4)分类要求标志的L3查找树集中插入到一组第3层(L3)规则中。 通过将L4分类规则与IP(因特网协议)查找规则进行比较来设定L4分类标志的状态。 通过选择应用于数据包的规则并读取相应的L4分类要求标志的状态来完成路由。 响应于对应的L4分类要求标志的第一状态,执行L4分类,然后进行数据分组的路由。 响应于相应的L4分类要求标志的第二状态来执行所述数据分组的路由。 在第二实施例中,该方法在L3查找中插入一组L3规则,即集合L4分类要求标志和全局标志。 当将新规则添加到L4分类装置时,设置L4分类要求标志的第一状态,新规则可与L3查找装置中的单个条目相关。 通过选择应用于数据包的规则并读取相应的L4分类所需标志的状态来完成路由。 响应对应的L4分类标志的第一状态,执行L4分类,然后进行数据分组的路由。 响应对应的L4分类标志的第二状态,读取全局标志的状态,并且响应于全局标志的第一状态,执行L4分类,然后进行数据分组的路由。 响应全局标志的第二状态,数据包被路由。
    • 2. 发明授权
    • Algorithm to bypass L4 processing in an internet protocol forwarding processor
    • 在互联网协议转发处理器中绕过L4处理的算法
    • US06654372B1
    • 2003-11-25
    • US09543144
    • 2000-04-05
    • Francis ArtsOlivier Didier DuroyonAnthony Matteo GalloBrahmanand Kumar GortiDonald Newland JonesNatarajan VaidhyanathanColin Beaton Verrilli
    • Francis ArtsOlivier Didier DuroyonAnthony Matteo GalloBrahmanand Kumar GortiDonald Newland JonesNatarajan VaidhyanathanColin Beaton Verrilli
    • H04L1256
    • H04L45/00H04L45/302
    • A controllable mechanism for by-passing Layer 4 (L4) classification is based on the insertion into a set of MAC rules in SA MAC lookup means a set of Layer 4 (L4) Skip Classification Flags. Routing is accomplished by selecting which rule to apply to the packet and reading the state of the corresponding L4 Skip Classification Flag. In response to a first state of said corresponding L4 Skip Classification Flag, performing an L4 classification followed by a routing of the data packet. In response to a second state of said corresponding L4 Skip Classification Flag, reading the state of a Global Classification Flag. In response to a first state of said Global Classification Flag, performing an L4 classification followed by a routing of said data packet. In response to a second state of said Global Classification Flag performing a routing of the data packet. The L4 Skip option change does not use the option change of reading the L4 Skip Classification Flag from the port table, whereas the second embodiment uses this option. The third and fourth embodiments are similar to the first and second embodiments but with the. addition of inserting into a set of Layer 3 (L3) rules in L3 lookup means a set of Layer 4 (L4) Classification Required Flags. The third embodiment does not use the option of reading the L4 Skip Classification Flag from the port table, whereas the fourth embodiment uses this option.
    • 用于旁路第4层(L4)分类的可控机制是基于在SA MAC查找中插入一组MAC规则的方法,即一组第4层(L4)跳过分类标志。 通过选择哪个规则应用于分组并读取相应的L4跳过分类标志的状态来完成路由。 响应于所述对应的L4跳过分类标志的第一状态,执行L4分类,然后进行数据分组的路由。 响应于所述对应的L4跳过分类标志的第二状态,读取全局分类标志的状态。 响应于所述全局分类标志的第一状态,执行L4分类,然后进行所述数据分组的路由。 响应于所述全局分类标志的第二状态执行数据分组的路由。 L4跳过选项更改不使用从端口表读取L4跳过分类标志的选项更改,而第二个实施例使用此选项。 第三和第四实施例类似于第一和第二实施例,但是与。 在L3查找中插入到一组第3层(L3)规则中的添加意味着一组第4层(L4)分类要求标志。 第三实施例不使用从端口表读取L4跳过分类标志的选项,而第四实施例使用该选项。
    • 9. 发明授权
    • Network processor/software control architecture
    • 网络处理器/软件控制架构
    • US06898179B1
    • 2005-05-24
    • US09544896
    • 2000-04-07
    • Brian Mitchell BassJean Louis CalvignacAnthony Matteo GalloMarco C. HeddesMark Anthony RinaldiMichael Steven SiegelColin Beaton VerrilliFabrice Jean Verplanken
    • Brian Mitchell BassJean Louis CalvignacAnthony Matteo GalloMarco C. HeddesMark Anthony RinaldiMichael Steven SiegelColin Beaton VerrilliFabrice Jean Verplanken
    • G06F11/00H04B7/216H04L1/16H04L12/26
    • G06F15/17
    • The transport protocol for communicating between general purpose processors acting as contact points and network processors in a packet processing environment such as Ethernet is provided. In such an environment, there is at least one single control point processor (CP) and a plurality of network processors (NP), sometimes referred to as blades. A typical system could contain two to sixteen network processors, and each network processor connects to a plurality of devices which communicate with each other over a network transport, such as Ethernet. The CP typically controls the functionality and the functioning of the network processors to function in a way that connects one end user with another, whether or not the end user is on the same network processor or a different network processor. There are three types of communication provided; first, there is communication generally referred to as control services and normally there will be only one pico processor which operates as a GCH (guided cell handler) and only one that operates as a guided tree handler (GTH). A path is provided for the controls to the GCH and the GTH commands, and a separate path is provided for the data frames between the GDH's (general data handler) and the CP.
    • 提供了用于在诸如以太网的分组处理环境中用作接触点的通用处理器和网络处理器之间进行通信的传输协议。 在这样的环境中,存在至少一个单个控制点处理器(CP)和多个网络处理器(NP),有时称为刀片。 典型的系统可以包含两到十六个网络处理器,并且每个网络处理器连接到通过诸如以太网的网络传输彼此通信的多个设备。 CP通常控制网络处理器的功能和功能,以使终端用户与另一终端用户相连的方式起作用,无论终端用户是否在同一个网络处理器或不同的网络处理器上。 提供三种通讯方式; 首先,通常被称为控制服务的通信,并且通常将只有一个微微处理器作为GCH(引导的单元处理器)操作,并且只有一个作为引导树处理器(GTH)操作。 为GCH和GTH命令的控制提供路径,并为GDH(通用数据处理程序)和CP之间的数据帧提供单独的路径。