On Fri, May 08, 2020 at 02:26:04PM +0300, Andy Shevchenko wrote: > On Fri, May 08, 2020 at 01:53:02PM +0300, Serge Semin wrote: > > Multi-block support provides a way to map the kernel-specific SG-table so > > the DW DMA device would handle it as a whole instead of handling the > > SG-list items or so called LLP block items one by one. So if true LLP > > list isn't supported by the DW DMA engine, then soft-LLP mode will be > > utilized to load and execute each LLP-block one by one. A problem may > > happen for multi-block DMA slave transfers, when the slave device buffers > > (for example Tx and Rx FIFOs) depend on each other and have size smaller > > than the block size. In this case writing data to the DMA slave Tx buffer > > may cause the Rx buffer overflow if Rx DMA channel is paused to > > reinitialize the DW DMA controller with a next Rx LLP item. In particular > > We've discovered this problem in the framework of the DW APB SPI device > Mark, do we have any adjustment knobs in SPI core to cope with this? Frankly I'm not sure I follow what the issue is - is an LLP block item different from a SG list entry? As far as I can tell the problem is that the DMA controller does not support chaining transactions together and possibly also has a limit on the transfer size? Or possibly some issue with the DMA controller locking the CPU out of the I/O bus for noticable periods? I can't really think what we could do about that if the issue is transfer sizes, that just seems like hardware which is never going to work reliably. If the issue is not being able to chain transfers then possibly an option to linearize messages into a single transfer as suggested to cope with PIO devices with ill considered automated chip select handling, though at some point you have to worry about the cost of the memcpy() vs the cost of just doing PIO. > > working in conjunction with DW DMA. Since there is no comprehensive way to > > fix it right now lets at least print a warning for the first found > > multi-blockless DW DMAC channel. This shall point a developer to the > > possible cause of the problem if one would experience a sudden data loss. I thought from the description of the SPI driver I just reviewed that this hardware didn't have DMA? Or are there separate blocks in the hardware that have a more standard instantiation of the DesignWare SPI controller with DMA attached?
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