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path: root/arch/sh/mm/tlb-pteaex.c
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2012-03-28Disintegrate asm/system.h for SHDavid Howells1-1/+0
Disintegrate asm/system.h for SH. Signed-off-by: David Howells <dhowells@redhat.com> cc: linux-sh@vger.kernel.org
2010-04-02sh: Fix up the SH-3 build for recent TLB changes.Paul Mundt1-0/+28
While the MMUCR.URB and ITLB/UTLB differentiation works fine for all SH-4 and later TLBs, these features are absent on SH-3. This splits out local_flush_tlb_all() in to SH-4 and PTEAEX copies while restoring the old SH-3 one, subsequently fixing up the build. This will probably want some further reordering and tidying in the future, but that's out of scope at present. Signed-off-by: Paul Mundt <lethal@linux-sh.org>
2010-03-23sh: Flush ITLB too in PTEAEX's flush_tlb_page()Matt Fleming1-0/+2
flush_tlb_page() can be used to flush TLB entries that map executable pages. Therefore, we need to ensure that the ITLB is also flushed in local_flush_tlb_page(). Signed-off-by: Matt Fleming <matt@console-pimps.org> Signed-off-by: Paul Mundt <lethal@linux-sh.org>
2010-01-21sh: Kill off the special uncached section and fixmap.Paul Mundt1-2/+1
Now that cached_to_uncached works as advertized in 32-bit mode and we're never going to be able to map < 16MB anyways, there's no need for the special uncached section. Kill it off. Signed-off-by: Paul Mundt <lethal@linux-sh.org>
2010-01-19sh: Split out MMUCR.URB based entry wiring in to shared helper.Paul Mundt1-66/+0
Presently this is duplicated between tlb-sh4 and tlb-pteaex. Split the helpers out in to a generic tlb-urb that can be used by any parts equipped with MMUCR.URB. At the same time, move the SH-5 code out-of-line, as we require single global state for DTLB entry wiring. Signed-off-by: Paul Mundt <lethal@linux-sh.org>
2010-01-16sh: New extended page flag to wire/unwire TLB entriesMatt Fleming1-0/+66
Provide a new extended page flag, _PAGE_WIRED and an SH4 implementation for wiring TLB entries and use it in the fixmap code path so that we can wire the fixmap TLB entry. Signed-off-by: Matt Fleming <matt@console-pimps.org>
2009-07-29sh: Handle a NULL vma in __update_tlb() for the fast-path.Paul Mundt1-1/+1
The TLB miss fast-path presently calls in to update_mmu_cache() to set up the entry, and does so with a NULL vma. Check for vma validity in the __update_tlb() ptrace checks. Signed-off-by: Paul Mundt <lethal@linux-sh.org>
2009-07-29sh: update_mmu_cache() consolidation.Paul Mundt1-7/+6
This splits out a separate __update_cache()/__update_tlb() for update_mmu_cache() to wrap in to. This lets us share the common __update_cache() bits while keeping special __update_tlb() handling broken out. Signed-off-by: Paul Mundt <lethal@linux-sh.org>
2009-07-22sh: Migrate from PG_mapped to PG_dcache_dirty.Paul Mundt1-17/+0
This inverts the delayed dcache flush a bit to be more in line with other platforms. At the same time this also gives us the ability to do some more optimizations and cleanup. Now that the update_mmu_cache() callsite only tests for the bit, the implementation can gradually be split out and made generic, rather than relying on special implementations for each of the peculiar CPU types. SH7705 in 32kB mode and SH-4 still need slightly different handling, but this is something that can remain isolated in the varying page copy/clear routines. On top of that, SH-X3 is dcache coherent, so there is no need to bother with any of these tests in the PTEAEX version of update_mmu_cache(), so we kill that off too. Signed-off-by: Paul Mundt <lethal@linux-sh.org>
2009-03-17sh: tlb-pteaex: Kill off legacy PTEA updates.Paul Mundt1-3/+0
While harmless, PTEA has different semantics on these parts, and is only used in extended TLB mode. Kill off the legacy support. Signed-off-by: Paul Mundt <lethal@linux-sh.org>
2009-03-17sh: Support for extended ASIDs on PTEAEX-capable SH-X3 cores.Paul Mundt1-0/+99
This adds support for extended ASIDs (up to 16-bits) on newer SH-X3 cores that implement the PTAEX register and respective functionality. Presently only the 65nm SH7786 (90nm only supports legacy 8-bit ASIDs). The main change is in how the PTE is written out when loading the entry in to the TLB, as well as in how the TLB entry is selectively flushed. While SH-X2 extended mode splits out the memory-mapped U and I-TLB data arrays for extra bits, extended ASID mode splits out the address arrays. While we don't use the memory-mapped data array access, the address array accesses are necessary for selective TLB flushes, so these are implemented newly and replace the generic SH-4 implementation. With this, TLB flushes in switch_mm() are almost non-existent on newer parts. Signed-off-by: Paul Mundt <lethal@linux-sh.org>