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path: root/drivers/memory/tegra/mc.c
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2019-06-11memory: tegra: Fix integer overflow on tick value calculationDmitry Osipenko1-1/+1
commit b906c056b6023c390f18347169071193fda57dde upstream. Multiplying the Memory Controller clock rate by the tick count results in an integer overflow and in result the truncated tick value is being programmed into hardware, such that the GR3D memory client performance is reduced by two times. Cc: stable <stable@vger.kernel.org> Signed-off-by: Dmitry Osipenko <digetx@gmail.com> Signed-off-by: Thierry Reding <treding@nvidia.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-08-06memory: tegra: Apply interrupts mask per SoCDmitry Osipenko1-18/+3
[ Upstream commit 1c74d5c0de0c2cc29fef97a19251da2ad6f579bd ] Currently we are enabling handling of interrupts specific to Tegra124+ which happen to overlap with previous generations. Let's specify interrupts mask per SoC generation for consistency and in a preparation of squashing of Tegra20 driver into the common one that will enable handling of GART faults which may be undesirable by newer generations. Signed-off-by: Dmitry Osipenko <digetx@gmail.com> Signed-off-by: Thierry Reding <treding@nvidia.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2018-08-06memory: tegra: Do not handle spurious interruptsDmitry Osipenko1-1/+4
[ Upstream commit bf3fbdfbec947cdd04b2f2c4bce11534c8786eee ] The ISR reads interrupts-enable mask, but doesn't utilize it. Apply the mask to the interrupt status and don't handle interrupts that MC driver haven't asked for. Kernel would disable spurious MC IRQ and report the error. This would happen only in a case of a very severe bug. Signed-off-by: Dmitry Osipenko <digetx@gmail.com> Signed-off-by: Thierry Reding <treding@nvidia.com> Signed-off-by: Sasha Levin <alexander.levin@microsoft.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2015-08-13memory: tegra: Add Tegra210 supportThierry Reding1-0/+3
Add the table of memory clients and SWGROUPs for Tegra210 to enable SMMU support for this new SoC. Signed-off-by: Thierry Reding <treding@nvidia.com>
2015-08-13memory: tegra: Add support for a variable-size client ID bitfieldPaul Walmsley1-2/+3
Recent versions of the Tegra MC hardware extend the size of the client ID bitfield in the MC_ERR_STATUS register by one bit. While one could simply extend the bitfield for older hardware, that would allow data from reserved bits into the driver code, which is generally a bad idea on principle. So this patch instead passes in the client ID mask from from the per-SoC MC data. There's no MC support for T210 (yet), but when that support winds up in the kernel, the appropriate soc->client_id_mask value for that chip will be 0xff. Based on an original patch by David Ung <davidu@nvidia.com>. Signed-off-by: Paul Walmsley <paul@pwsan.com> Cc: Paul Walmsley <pwalmsley@nvidia.com> Cc: Thierry Reding <treding@nvidia.com> Cc: David Ung <davidu@nvidia.com> Signed-off-by: Thierry Reding <treding@nvidia.com>
2015-05-13Merge tag 'tegra-for-4.2-emc' of ↵Arnd Bergmann1-0/+136
git://git.kernel.org/pub/scm/linux/kernel/git/tegra/linux into next/drivers Merge "ARM: tegra: Add EMC driver for v4.2-rc1" from Thierry Reding: This introduces the EMC driver that's required to scale the external memory frequency. * tag 'tegra-for-4.2-emc' of git://git.kernel.org/pub/scm/linux/kernel/git/tegra/linux: memory: tegra: Add EMC frequency debugfs entry memory: tegra: Add EMC (external memory controller) driver memory: tegra: Add API needed by the EMC driver of: Add Tegra124 EMC bindings of: Document timings subnode of nvidia,tegra-mc
2015-05-05memory: tegra: Add API needed by the EMC driverMikko Perttunen1-0/+136
The EMC driver needs to know the number of external memory devices and also needs to update the EMEM configuration based on the new rate of the memory bus. To know how to update the EMEM config, looks up the values of the burst regs in the DT, for a given timing. Signed-off-by: Mikko Perttunen <mperttunen@nvidia.com> Signed-off-by: Tomeu Vizoso <tomeu.vizoso@collabora.com> Signed-off-by: Thierry Reding <treding@nvidia.com>
2015-05-04memory: tegra: Disable ARBITRATION_EMEM interruptTomeu Vizoso1-2/+2
As this interrupt is just for development purposes, as the TRM says, and the sheer amount of interrupts fired can seriously disrupt userspace when testing the lower frequencies supported by the EMC. From the TRM: "There is one performance warning type interrupt: ARBITRATION_EMEM. It fires when the MC detects that a request has been pending in the Row Sorter long enough to hit the DEADLOCK_PREVENTION_SLACK_THRESHOLD. In addition to true performance problems, this interrupt may fire in situations such as clock-change where the EMC backpressures pending traffic for long periods of time. This interrupt helps developers identify and debug performance issues and configuration issues." Signed-off-by: Tomeu Vizoso <tomeu.vizoso@collabora.com> Signed-off-by: Thierry Reding <treding@nvidia.com>
2015-05-04memory: tegra: Add Tegra132 supportThierry Reding1-0/+3
The memory controller on Tegra132 is very similar to the one found on Tegra124. But the Denver CPUs don't have an outer cache, so dcache maintenance is done slightly differently. Signed-off-by: Thierry Reding <treding@nvidia.com>
2014-12-04memory: Add NVIDIA Tegra memory controller supportThierry Reding1-0/+301
The memory controller on NVIDIA Tegra exposes various knobs that can be used to tune the behaviour of the clients attached to it. Currently this driver sets up the latency allowance registers to the HW defaults. Eventually an API should be exported by this driver (via a custom API or a generic subsystem) to allow clients to register latency requirements. This driver also registers an IOMMU (SMMU) that's implemented by the memory controller. It is supported on Tegra30, Tegra114 and Tegra124 currently. Tegra20 has a GART instead. The Tegra SMMU operates on memory clients and SWGROUPs. A memory client is a unidirectional, special-purpose DMA master. A SWGROUP represents a set of memory clients that form a logical functional unit corresponding to a single device. Typically a device has two clients: one client for read transactions and one client for write transactions, but there are also devices that have only read clients, but many of them (such as the display controllers). Because there is no 1:1 relationship between memory clients and devices the driver keeps a table of memory clients and the SWGROUPs that they belong to per SoC. Note that this is an exception and due to the fact that the SMMU is tightly integrated with the rest of the Tegra SoC. The use of these tables is discouraged in drivers for generic IOMMU devices such as the ARM SMMU because the same IOMMU could be used in any number of SoCs and keeping such tables for each SoC would not scale. Acked-by: Joerg Roedel <jroedel@suse.de> Signed-off-by: Thierry Reding <treding@nvidia.com>