* target/i386/kvm: Intel TDX support
* target/i386/emulate: more lflags cleanups
* meson: remove need for explicit listing of dependencies in hw_common_arch and
target_common_arch
* rust: small fixes
* hpet: Reorganize register decoding to be more similar to Rust code
* target/i386: fixes for AMD models
* target/i386: new EPYC-Turin CPU model
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* tag 'for-upstream' of https://gitlab.com/bonzini/qemu: (77 commits)
target/i386/tcg/helper-tcg: fix file references in comments
target/i386: Add support for EPYC-Turin model
target/i386: Update EPYC-Genoa for Cache property, perfmon-v2, RAS and SVM feature bits
target/i386: Add couple of feature bits in CPUID_Fn80000021_EAX
target/i386: Update EPYC-Milan CPU model for Cache property, RAS, SVM feature bits
target/i386: Update EPYC-Rome CPU model for Cache property, RAS, SVM feature bits
target/i386: Update EPYC CPU model for Cache property, RAS, SVM feature bits
rust: make declaration of dependent crates more consistent
docs: Add TDX documentation
i386/tdx: Validate phys_bits against host value
i386/tdx: Make invtsc default on
i386/tdx: Don't treat SYSCALL as unavailable
i386/tdx: Fetch and validate CPUID of TD guest
target/i386: Print CPUID subleaf info for unsupported feature
i386: Remove unused parameter "uint32_t bit" in feature_word_description()
i386/cgs: Introduce x86_confidential_guest_check_features()
i386/tdx: Define supported KVM features for TDX
i386/tdx: Add XFD to supported bit of TDX
i386/tdx: Add supported CPUID bits relates to XFAM
i386/tdx: Add supported CPUID bits related to TD Attributes
...
Signed-off-by: Stefan Hajnoczi <stefanha@redhat.com>
On Emscripten, function pointer casts can result in runtime failures due to
strict function signature checks. This affects the use of g_list_sort and
g_slist_sort, which internally perform function pointer casts that are not
supported by Emscripten. To avoid these issues, g_list_sort_with_data and
g_slist_sort_with_data should be used instead, as they do not rely on
function pointer casting.
Signed-off-by: Kohei Tokunaga <ktokunaga.mail@gmail.com>
Link: https://lore.kernel.org/r/d917055d35f5ff7316ccdcbdf57af9a7bd85bf29.1745820062.git.ktokunaga.mail@gmail.com
Signed-off-by: Paolo Bonzini <pbonzini@redhat.com>
Combine 3 different pointer returns into one structure return.
Include a cflags field in TCGTBCPUState, not filled in by
cpu_get_tb_cpu_state, but used by all callers. This fills
a hole in the structure and is useful in some subroutines.
Reviewed-by: Pierrick Bouvier <pierrick.bouvier@linaro.org>
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
For some targets, simply remove the local definition.
For other targets, move the inline definition out of line.
Reviewed-by: Pierrick Bouvier <pierrick.bouvier@linaro.org>
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
The only place we really need to know the minimum is within
page-vary-target.c. Rename the target/arm TARGET_PAGE_BITS_MIN
to TARGET_PAGE_BITS_LEGACY to emphasize what it really means.
Move the assertions related to minimum page size as well.
Reviewed-by: Pierrick Bouvier <pierrick.bouvier@linaro.org>
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
Relatively few objects in qemu care about watchpoints, so split
out to a new header. Removes an instance of CONFIG_USER_ONLY
from hw/core/cpu.h.
Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org>
Reviewed-by: Pierrick Bouvier <pierrick.bouvier@linaro.org>
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
Commit 60d30cff84 ("target/ppc: Move SPR indirect registers into
PnvCore") was mismerged and moved the SPRs to power8-only, instead
of power9/10-only.
Fixes: 60d30cff84 ("target/ppc: Move SPR indirect registers into PnvCore")
Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org>
Cc: qemu-stable@nongnu.org
Signed-off-by: Nicholas Piggin <npiggin@gmail.com>
The per-core SCRATCH0-7 registers are shared between big cores, which
was missed in the big-core implementation. It is difficult to model
well with the big-core == 2xPnvCore scheme we moved to, this fix
uses the even PnvCore to store the scrach data.
Also remove a stray log message that came in with the same patch that
introduced patch.
Fixes: c26504afd5 ("ppc/pnv: Add a big-core mode that joins two regular cores")
Cc: qemu-stable@nongnu.org
Signed-off-by: Nicholas Piggin <npiggin@gmail.com>
Facility interrupt checks in general should come after the ISA version
check, because the facility interrupt and facility type themselves are
ISA dependent and should not appear on CPUs where the instruction does
not exist at all.
This resolves a QEMU crash booting NetBSD/macppc due to
qemu: fatal: Raised an exception without defined vector 94
Resolves: https://gitlab.com/qemu-project/qemu/-/issues/2741
Cc: Chinmay Rath <rathc@linux.ibm.com>
Cc: qemu-stable@nongnu.org
Debugged-by: Richard Henderson <richard.henderson@linaro.org>
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
Fixes: aa0f34ec3f ("target/ppc: implement vrlq")
Fixes: 7419dc5b2b ("target/ppc: Move VSX vector storage access insns to decodetree.")
Signed-off-by: Nicholas Piggin <npiggin@gmail.com>
This change takes the CPUPPCState 'quiesced' field added for powernv
hardware CPU core controls (used to stop and start cores), and extends
it to spapr to model the "RTAS stopped" state. This prevents the
schedulers attempting to run stopped CPUs unexpectedly, which can cause
hangs and possibly other unexpected behaviour.
The detail of the problematic situation is this:
A KVM spapr guest boots with all secondary CPUs defined to be in the
"RTAS stopped" state. In this state, the CPU is only responsive to the
start-cpu RTAS call. This behaviour is modeled in QEMU with the
start_powered_off feature, which sets ->halted on secondary CPUs at
boot. ->halted=true looks like an idle / sleep / power-save state which
typically is responsive to asynchronous interrupts, but spapr clears
wake-on-interrupt bits in the LPCR SPR. This more-or-less works.
Commit e8291ec16d ("target/ppc: fix timebase register reset state")
recently caused the decrementer to expire sooner at boot, causing a
decrementer exception on secondary CPUs in RTAS stopped state. This
was not a problem on TCG, but KVM limits how a guest can modify LPCR, in
particular it prevents the clearing of wake-on-interrupt bits, and so in
the course of CPU register synchronisation, the LPCR as set by spapr to
model the RTAS stopped state is overwritten with KVM's LPCR value, and
that then causes QEMU's interrupt code to notice the expired decrementer
exception, turn that into an interrupt, and set CPU_INTERRUPT_HARD.
That causes the CPU to be kicked, and the KVM vCPU thread to loop
calling kvm_cpu_exec(). kvm_cpu_exec() calls
kvm_arch_process_async_events(), which on ppc just returns ->halted.
This is still true, so it returns immediately with EXCP_HLT, and the
vCPU never goes to sleep because qemu_wait_io_event() sees
CPU_INTERRUPT_HARD is set. All this while the vCPU holds the bql. This
causes the boot CPU to eventually lock up when it needs the bql.
So make 'quiesced' represent the "RTAS stopped" state, and have it
explicitly not respond to exceptions (interrupt conditions) rather than
rely on machine register state to model that state. This matches the
powernv quiesced state very well because it essentially turns off the
CPU core via a side-band control unit.
There are still issues with QEMU and KVM idea of LPCR diverging and that
is quite ugly and fragile that should be fixed. spapr should synchronize
its LPCR properly with KVM, and not try to use values that KVM does not
support.
Reported-by: Misbah Anjum N <misanjum@linux.ibm.com>
Tested-by: Misbah Anjum N <misanjum@linux.ibm.com>
Signed-off-by: Nicholas Piggin <npiggin@gmail.com>
A translation that encounters a process table entry that is zero is
something that Linux does to cause certain kernel NULL pointer
dereferences to fault. It is not itself a programming error, so avoid
the guest error log.
Message-ID: <20241219034035.1826173-5-npiggin@gmail.com>
Signed-off-by: Nicholas Piggin <npiggin@gmail.com>
From the Freescale PowerPC Architecture Primer:
Alternate time base APU. This APU, implemented on the e500v2, defines
a 64-bit time base counter that differs from the PowerPC defined time
base in that it is not writable and counts at a different, and
typically much higher, frequency. The alternate time base always
counts up, wrapping when the 64-bit count overflows.
This implementation of ATB uses the same frequency as the TB. The
existing spr_read_atbu/l functions are unused without this patch
to wire them into the SPR.
RTEMS uses this SPR on the e6500, though this hasn't been tested.
Message-ID: <20241219034035.1826173-6-npiggin@gmail.com>
Signed-off-by: Nicholas Piggin <npiggin@gmail.com>
As per the PAPR, bit 0 of byte 64 in pa-features property
indicates availability of 2nd DAWR registers. i.e. If this bit is set, 2nd
DAWR is present, otherwise not. Use KVM_CAP_PPC_DAWR1 capability to find
whether kvm supports 2nd DAWR or not. If it's supported, allow user to set
the pa-feature bit in guest DT using cap-dawr1 machine capability.
Reviewed-by: Nicholas Piggin <npiggin@gmail.com>
Reviewed-by: Harsh Prateek Bora <harshpb@linux.ibm.com>
Signed-off-by: Ravi Bangoria <ravi.bangoria@linux.ibm.com>
Signed-off-by: Shivaprasad G Bhat <sbhat@linux.ibm.com>
Message-ID: <173708681866.1678.11128625982438367069.stgit@linux.ibm.com>
Signed-off-by: Nicholas Piggin <npiggin@gmail.com>