SDIO-WIFI data transmission method and system with buffer area
A data transmission method and technology of a data transmission system, which are applied in the input/output process of data processing, electrical digital data processing, input/output to record carriers, etc., can solve the problem of large throughput jitter, low WIFI throughput efficiency, and waiting time scheduling. speed and other issues, to achieve the effect of improving throughput efficiency, improving communication efficiency, and reducing throughput jitter
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Embodiment 1
[0043] Such as figure 1 Shown, a kind of SDIO-WIFI data transmission method with buffer zone, comprises the following steps:
[0044] S1: Receive data, pack the data into data packets, and then write the data packets into the first-in-first-out buffer.
[0045] S2: Read the data packet from the buffer area; parse the data packet to obtain the data; then send the data from the SDIO interface to the external device.
[0046] The first-in first-out buffer area is characterized in that the writing or reading of data in the buffer area can be performed concurrently. In this way, the WIFI driver can process other work, such as preparing other data, without waiting for the SDIO driver to finish sending the data. The WIFI throughput efficiency is improved, and the throughput jitter is small, which can reduce the delay at the terminal and improve the communication efficiency.
[0047] Pack the data length, data address, etc. When packing the data, do not copy the data, but only copy...
Embodiment 2
[0074] Such as Figure 5 As shown, a SDIO-WIFI data transmission system with a buffer area includes a WIFI driver module 1, an SDIO driver module 2, and a buffer module 3.
[0075] WIFI driver module 1 obtains the data after kernel encapsulation, packs the data into data packets, and then writes the data packets into the first-in first-out cache module 3; cache module 3 caches the data packets; Read the data packet; parse the data packet to obtain the data; then send the data from the SDIO interface to the external device.
[0076] The first-in-first-out cache module 3 is characterized in that writing or reading data in the cache area can be executed concurrently. In this way, after the WIFI driver module 1 sends the current data to the cache module 3, it can prepare for the next data transmission without waiting for the SDIO driver module 2 to send the data. The WIFI driver module 1 and the SDIO driver module 2 work in parallel to improve the WIFI throughput , and reduce th...
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