Commit Graph

13 Commits

Author SHA1 Message Date
neel
16ee311597 Emulate MSR 0xC0011024 when running on AMD processors.
OpenBSD guests test bit 0 of this MSR to detect whether the workaround for
erratum 721 has been applied.

Reported by:	Jason Tubnor (jason@tubnor.net)
MFC after:	1 week
2015-02-24 05:15:40 +00:00
neel
13e9198693 Don't advertise the "OS visible workarounds" feature in cpuid.80000001H:ECX.
bhyve doesn't emulate the MSRs needed to support this feature at this time.

Don't expose any model-specific RAS and performance monitoring features in
cpuid leaf 80000007H.

Emulate a few more MSRs for AMD: TSEG base address, TSEG address mask and
BIOS signature and P-state related MSRs.

This eliminates all the unimplemented MSRs accessed by Linux/x86_64 kernels
2.6.32, 3.10.0 and 3.17.0.
2014-10-19 21:38:58 +00:00
neel
170f49cd34 Don't advertise the Instruction Based Sampling feature because it requires
emulating a large number of MSRs.

Ignore writes to a couple more AMD-specific MSRs and return 0 on read.

This further reduces the unimplemented MSRs accessed by a Linux guest on boot.
2014-10-17 06:23:04 +00:00
neel
b194fc5a2b Hide extended PerfCtr MSRs on AMD processors by clearing bits 23, 24 and 28 in
CPUID.80000001H:ECX.

Handle accesses to PerfCtrX and PerfEvtSelX MSRs by ignoring writes and
returning 0 on reads.

This further reduces the number of unimplemented MSRs hit by a Linux guest
during boot.
2014-10-17 03:04:38 +00:00
neel
7108d4bd75 Emulate the "Hardware Configuration" MSR when running on an AMD host.
This gets rid of the "TSC doesn't count with P0 frequency!" message when
booting a Linux guest.

Tested on an "AMD Opteron 6320" courtesy of Ben Perrault.
2014-10-16 19:27:26 +00:00
neel
f443215307 Support Intel-specific MSRs that are accessed when booting up a linux in bhyve:
- MSR_PLATFORM_INFO
- MSR_TURBO_RATIO_LIMITx
- MSR_RAPL_POWER_UNIT

Reviewed by:	grehan
MFC after:	1 week
2014-10-09 19:13:33 +00:00
neel
46721cc2c7 Restructure the MSR handling so it is entirely handled by processor-specific
code. There are only a handful of MSRs common between the two so there isn't
too much duplicate functionality.

The VT-x code has the following types of MSRs:

- MSRs that are unconditionally saved/restored on every guest/host context
  switch (e.g., MSR_GSBASE).

- MSRs that are restored to guest values on entry to vmx_run() and saved
  before returning. This is an optimization for MSRs that are not used in
  host kernel context (e.g., MSR_KGSBASE).

- MSRs that are emulated and every access by the guest causes a trap into
  the hypervisor (e.g., MSR_IA32_MISC_ENABLE).

Reviewed by:	grehan
2014-09-20 02:35:21 +00:00
neel
0601994645 Ignore writes to microcode update MSR. This MSR is accessed by RHEL7 guest.
Add KTR tracepoints to annotate wrmsr and rdmsr VM exits.
2014-04-30 02:08:27 +00:00
neel
5dab6f9ed3 Add an option to ignore accesses by the guest to unimplemented MSRs.
Also, ignore a couple of SandyBridge uncore PMC MSRs that Centos 6.4 writes
to during boot.

Reviewed by:	grehan
2013-12-19 22:27:28 +00:00
neel
c34be7b811 Add an explicit exit code 'SPINUP_AP' to tell the controlling process that an
AP needs to be activated by spinning up an execution context for it.

The local apic emulation is now completely done in the hypervisor and it will
detect writes to the ICR_LO register that try to bring up the AP. In response
to such writes it will return to userspace with an exit code of SPINUP_AP.

Reviewed by: grehan
2012-09-25 02:33:25 +00:00
grehan
9de15373c3 Ignore legacy INIT de-asserts in x2apic mode before verifying
the contents of the IPI.
Uncovered by jhb's x2apic patch.

Obtained from:	NetApp
2011-10-18 18:52:22 +00:00
jhb
dc43ebc8b3 First cut to port bhyve, vmmctl, and libvmmapi to HEAD. 2011-05-15 04:03:11 +00:00
grehan
d45b7f14ae Import of bhyve hypervisor and utilities, part 1.
vmm.ko - kernel module for VT-x, VT-d and hypervisor control
  bhyve  - user-space sequencer and i/o emulation
  vmmctl - dump of hypervisor register state
  libvmm - front-end to vmm.ko chardev interface

bhyve was designed and implemented by Neel Natu.

Thanks to the following folk from NetApp who helped to make this available:
	Joe CaraDonna
	Peter Snyder
	Jeff Heller
	Sandeep Mann
	Steve Miller
	Brian Pawlowski
2011-05-13 04:54:01 +00:00