90a0749716
a region of virtual memory. Now the same one works for getting the pages of the kernel driver and memory objects allocated via vmalloc(). Converted to using Linux interfaces to walk the page tables to get at the physical memory addresses above. The old code was digging up this info starting with looking at CR3. Linux has functions/macros to do this, which can handle 2/3-level cases. Wrapped the page table walk with proper locks. A spin lock for new Linuxes, a big kernel lock for old ones.
76 lines
2.3 KiB
Plaintext
76 lines
2.3 KiB
Plaintext
Fix monPrint and friends.
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monpanic breaks up into 2 monprints which hit user space twice.
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Could put the GDT/LDT in linear memory where the guest
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expects them.
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Synchronize page writes with iCache in bochs.
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Deal with cycle counts of guest execution in VM, and in
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bochs/plex86 shim.
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Deal with page_usage. How do we update this between timeslices?
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Do we always clear it? Maybe we should keep a log of things to
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clear (page_usage, GDT entries, PDE entries, ...) and clear those
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before returning to user space.
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GDT entries for guest need to be cleared upon return from guest
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execution, or just cleared before invocation of the guest.
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Task segment must be a 32-bit'er.
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Save/restore floating point state of host/VM.
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deduct off some cycles for the IRET/int sequence.
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Conditions for bochs compile using plex86:
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- Not compiled for debug
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- x86 host
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- Not PCI supported (for now).
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paging-mon.c: We can eliminate any code other than CPL==3.
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Fix extra PDBR reload in nexus.S
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Manipulation/reading of host page tables needs to be SMP/preempt
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compatible. Need to do spin-lock (big kernel lock for old Linux)
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on vma.
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==================== From previous plex86 TODO file ====================
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This is a list of the major tasks/achievements/milestones yet to-do.
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We should keep this list prioritized, creating sort of a road map.
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Hopefully, this will reduce duplicate suggestions on the developers
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channels, and let people know where we are in the development process.
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Entries listed first have highest priority.
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<NEAR-TERM>
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- Fix plex86 on Linux 2.4.x/SMP or with 1P and LAPIC enabled.
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- Save FPU state on host <--> monitor context switch.
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- Special guest-specific drivers and special emulated pseudo-devices
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for faster graphics/network/disk access.
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- Allow some of the inactive guest pages be host swappable.
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Currently, all pages are locked down.
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- Many performance enhancements (see PERFORMANCE)
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- Allow memory to be mapped anywhere in the physical address
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space.
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- Allow certain guest pages to be swap eligible by the host.
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This means they will have to be unavailable by the guest
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during that time. Need a dynamic algorith for this.
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- Test on 2.4 with SMP/APIC enabled on single processor machine.
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- Deal with guest use of TF.
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- Deal with LDT
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unallocVmPages/unreserve_guest_pages called twice,
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release & teardown.
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