, which requires a certain amount of data to be queued up before sending it over the airwaves in order to maximize throughput. This is because wifi signals are subject to interference and other factors that can cause packet loss or delays, so buffering and queuing data helps to ensure that enough packets make it through without interruption. Other examples include TCP/IP window sizes, which determine how much data can be sent before waiting for an acknowledgement, and disk I/O buffers, which optimize read/write operations by minimizing the number of times data needs to be transferred between memory and storage. In general, queuing mechanisms are used throughout computer systems to improve performance and reliability by managing the flow of data between different components.
Alas, some drivers / subsystems require a fair amount of queued bytes to ensure line rate. One example is wifi aggregation
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