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    • 4. 发明授权
    • Instantaneous random early detection packet dropping
    • 瞬时随机早期检测分组丢弃
    • US09319333B2
    • 2016-04-19
    • US14205824
    • 2014-03-12
    • Netronome Systems, Inc.
    • Ron Lamar Swartzentruber
    • H04L12/801H04L12/54H04L12/24H04L12/823H04L12/863
    • H04L47/326H04L47/29H04L47/30H04L47/54
    • A device that receives a packet descriptor and a queue number that indicates a queue stored within a memory unit, and in response determines an instantaneous queue depth of the queue. The instantaneous queue depth is used to determine a drop probability. The drop probability is used to randomly determine if the packet descriptor should be stored in the queue. The queue has a first queue depth range and a second queue depth range that do not overlap. A first drop probability is associated with the first queue depth range and a second drop probability is associated with the second queue depth range. The first drop probability is used when the queue depth is within the first queue depth range. The second drop probability is used with the queue depth is within the second queue depth range. The device includes a random value generator and a drop indicator generator.
    • 接收分组描述符的设备和指示存储在存储器单元中的队列的队列号,并且作为响应确定队列的瞬时队列深度。 瞬时队列深度用于确定丢弃概率。 丢弃概率用于随机确定包描述符是否应该存储在队列中。 队列具有不重叠的第一队列深度范围和第二队列深度范围。 第一丢弃概率与第一队列深度范围相关联,并且第二丢弃概率与第二队列深度范围相关联。 当队列深度在第一队列深度范围内时,使用第一个丢弃概率。 第二个丢弃概率用于队列深度在第二个队列深度范围内。 该装置包括随机值发生器和下降指示器发生器。
    • 5. 发明申请
    • SIMULTANEOUS QUEUE RANDOM EARLY DETECTION DROPPING AND GLOBAL RANDOM EARLY DETECTION DROPPING SYSTEM
    • 同时排队随机早期检测和全球随机早期检测系统
    • US20160099882A1
    • 2016-04-07
    • US14507652
    • 2014-10-06
    • Netronome Systems, Inc.
    • Ron Lamar Swartzentruber
    • H04L12/823H04L12/865
    • H04L47/326H04L47/6275H04L49/00
    • A method for receiving a packet descriptor associated with a packet and a queue number indicating a queue stored within a memory unit, determining a priority level of the packet and an amount of free memory available in the memory unit. Applying a global drop probability to generate a global drop indicator and applying a queue drop probability to generate a queue drop indicator. The global drop probability is a function of the amount of free memory. The queue drop probability is a function of instantaneous queue depth or drop precedence value. The packet is transmitted whenever the priority level is high. When the priority level is low, the packet is transmitted when both the global drop indicator and the queue drop indicator are a logic low value. When the priority level is low, the packet is not transmitted when either drop indicator is a logic low value.
    • 一种用于接收与分组相关联的分组描述符的方法和指示存储在存储器单元中的队列的队列号,确定分组的优先级和可用存储器单元中的可用内存量。 应用全局丢弃概率来生成全局丢弃指示符并应用队列丢弃概率来生成队列丢弃指示符。 全局丢弃概率是空闲内存量的函数。 队列丢弃概率是瞬时队列深度或丢弃优先级值的函数。 每当优先级高时,传输数据包。 当优先级低时,当全局丢弃指示符和队列丢弃指示符均为逻辑低值时,传输数据包。 当优先级低时,当任一个丢包指示符为逻辑低电平值时,该数据包不传输。
    • 7. 发明授权
    • Method to verify a drop probability curve
    • 验证掉落概率曲线的方法
    • US08593972B2
    • 2013-11-26
    • US13248181
    • 2011-09-29
    • Yu Gu
    • Yu Gu
    • H04J1/06H04L12/28
    • H04L43/0858H04L43/50H04L47/326
    • In one embodiment, a test technique verifies a drop probability curve implemented by an intermediate node of a computer network, wherein a test point of the drop probability curve has a drop probability value and a queue length value. Traffic may be loaded into a queue of the node at a constant bit rate that is based on the drop probability value and an output rate associated with queue. An average traffic latency may then be measured, and an actual queue length may be calculated by multiplying the measured average traffic latency with the output rate. The drop probability curve may be verified when the calculated queue length is within a specified tolerance of the queue length value associated with the test point.
    • 在一个实施例中,测试技术验证由计算机网络的中间节点实现的丢弃概率曲线,其中丢弃概率曲线的测试点具有丢弃概率值和队列长度值。 流量可以以基于丢弃概率值和与队列相关联的输出速率的恒定比特率加载到节点的队列中。 然后可以测量平均流量延迟,并且可以通过将测量的平均流量等待时间与输出速率相乘来计算实际的队列长度。 当计算的队列长度在与测试点相关联的队列长度值的指定公差内时,可以验证丢弃概率曲线。
    • 8. 发明申请
    • METHOD TO VERIFY A DROP PROBABILITY CURVE
    • 验证DROP可行性曲线的方法
    • US20130083657A1
    • 2013-04-04
    • US13248181
    • 2011-09-29
    • Yu Gu
    • Yu Gu
    • H04L12/26
    • H04L43/0858H04L43/50H04L47/326
    • In one embodiment, a test technique verifies a drop probability curve implemented by an intermediate node of a computer network, wherein a test point of the drop probability curve has a drop probability value and a queue length value. Traffic may be loaded into a queue of the node at a constant bit rate that is based on the drop probability value and an output rate associated with queue. An average traffic latency may then be measured, and an actual queue length may be calculated by multiplying the measured average traffic latency with the output rate. The drop probability curve may be verified when the calculated queue length is within a specified tolerance of the queue length value associated with the test point.
    • 在一个实施例中,测试技术验证由计算机网络的中间节点实现的丢弃概率曲线,其中丢弃概率曲线的测试点具有丢弃概率值和队列长度值。 流量可以以基于丢弃概率值和与队列相关联的输出速率的恒定比特率加载到节点的队列中。 然后可以测量平均流量延迟,并且可以通过将测量的平均流量等待时间与输出速率相乘来计算实际的队列长度。 当计算的队列长度在与测试点相关联的队列长度值的指定公差内时,可以验证丢弃概率曲线。