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kernel. When access restrictions are added to a page table entry, we flush the corresponding virtual address mapping from the TLB. In contrast, when access restrictions are removed from a page table entry, we do not flush the virtual address mapping from the TLB. This is exactly as recommended in AMD's documentation. In effect, when access restrictions are removed from a page table entry, AMD's MMUs will transparently refresh a stale TLB entry. In short, this saves us from having to perform potentially costly TLB flushes. In contrast, Intel's MMUs are allowed to generate a spurious page fault based upon the stale TLB entry. Usually, such spurious page faults are handled by vm_fault() without incident. However, when we are executing no-fault sections of the kernel, we are not allowed to execute vm_fault(). This change introduces special-case handling for spurious page faults that occur in no-fault sections of the kernel. In collaboration with: kib Tested by: gibbs (an earlier version) I would also like to acknowledge Hiroki Sato's assistance in diagnosing this problem. MFC after: 1 week |
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.. | ||
default_pager.c | ||
device_pager.c | ||
memguard.c | ||
memguard.h | ||
phys_pager.c | ||
pmap.h | ||
redzone.c | ||
redzone.h | ||
sg_pager.c | ||
swap_pager.c | ||
swap_pager.h | ||
uma_core.c | ||
uma_dbg.c | ||
uma_dbg.h | ||
uma_int.h | ||
uma.h | ||
vm_contig.c | ||
vm_extern.h | ||
vm_fault.c | ||
vm_glue.c | ||
vm_init.c | ||
vm_kern.c | ||
vm_kern.h | ||
vm_map.c | ||
vm_map.h | ||
vm_meter.c | ||
vm_mmap.c | ||
vm_object.c | ||
vm_object.h | ||
vm_page.c | ||
vm_page.h | ||
vm_pageout.c | ||
vm_pageout.h | ||
vm_pager.c | ||
vm_pager.h | ||
vm_param.h | ||
vm_phys.c | ||
vm_phys.h | ||
vm_reserv.c | ||
vm_reserv.h | ||
vm_unix.c | ||
vm_zeroidle.c | ||
vm.h | ||
vnode_pager.c | ||
vnode_pager.h |