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author | Linus Torvalds <torvalds@linux-foundation.org> | 2018-08-15 01:39:13 +0200 |
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committer | Linus Torvalds <torvalds@linux-foundation.org> | 2018-08-15 01:39:13 +0200 |
commit | 1202f4fdbcb6deeffd3eb39c94b8dc0cc8202b16 (patch) | |
tree | b822d71e82e13846d3a77ffd08b8ef6e571d7d37 /virt | |
parent | x86/smp: fix non-SMP broken build due to redefinition of apic_id_is_primary_t... (diff) | |
parent | arm64: alternative: Use true and false for boolean values (diff) | |
download | linux-1202f4fdbcb6deeffd3eb39c94b8dc0cc8202b16.tar.xz linux-1202f4fdbcb6deeffd3eb39c94b8dc0cc8202b16.zip |
Merge tag 'arm64-upstream' of git://git.kernel.org/pub/scm/linux/kernel/git/arm64/linux
Pull arm64 updates from Will Deacon:
"A bunch of good stuff in here. Worth noting is that we've pulled in
the x86/mm branch from -tip so that we can make use of the core
ioremap changes which allow us to put down huge mappings in the
vmalloc area without screwing up the TLB. Much of the positive
diffstat is because of the rseq selftest for arm64.
Summary:
- Wire up support for qspinlock, replacing our trusty ticket lock
code
- Add an IPI to flush_icache_range() to ensure that stale
instructions fetched into the pipeline are discarded along with the
I-cache lines
- Support for the GCC "stackleak" plugin
- Support for restartable sequences, plus an arm64 port for the
selftest
- Kexec/kdump support on systems booting with ACPI
- Rewrite of our syscall entry code in C, which allows us to zero the
GPRs on entry from userspace
- Support for chained PMU counters, allowing 64-bit event counters to
be constructed on current CPUs
- Ensure scheduler topology information is kept up-to-date with CPU
hotplug events
- Re-enable support for huge vmalloc/IO mappings now that the core
code has the correct hooks to use break-before-make sequences
- Miscellaneous, non-critical fixes and cleanups"
* tag 'arm64-upstream' of git://git.kernel.org/pub/scm/linux/kernel/git/arm64/linux: (90 commits)
arm64: alternative: Use true and false for boolean values
arm64: kexec: Add comment to explain use of __flush_icache_range()
arm64: sdei: Mark sdei stack helper functions as static
arm64, kaslr: export offset in VMCOREINFO ELF notes
arm64: perf: Add cap_user_time aarch64
efi/libstub: Only disable stackleak plugin for arm64
arm64: drop unused kernel_neon_begin_partial() macro
arm64: kexec: machine_kexec should call __flush_icache_range
arm64: svc: Ensure hardirq tracing is updated before return
arm64: mm: Export __sync_icache_dcache() for xen-privcmd
drivers/perf: arm-ccn: Use devm_ioremap_resource() to map memory
arm64: Add support for STACKLEAK gcc plugin
arm64: Add stack information to on_accessible_stack
drivers/perf: hisi: update the sccl_id/ccl_id when MT is supported
arm64: fix ACPI dependencies
rseq/selftests: Add support for arm64
arm64: acpi: fix alignment fault in accessing ACPI
efi/arm: map UEFI memory map even w/o runtime services enabled
efi/arm: preserve early mapping of UEFI memory map longer for BGRT
drivers: acpi: add dependency of EFI for arm64
...
Diffstat (limited to 'virt')
-rw-r--r-- | virt/kvm/arm/aarch32.c | 20 |
1 files changed, 10 insertions, 10 deletions
diff --git a/virt/kvm/arm/aarch32.c b/virt/kvm/arm/aarch32.c index efc84cbe8277..5abbe9b3c652 100644 --- a/virt/kvm/arm/aarch32.c +++ b/virt/kvm/arm/aarch32.c @@ -108,9 +108,9 @@ static void __hyp_text kvm_adjust_itstate(struct kvm_vcpu *vcpu) { unsigned long itbits, cond; unsigned long cpsr = *vcpu_cpsr(vcpu); - bool is_arm = !(cpsr & COMPAT_PSR_T_BIT); + bool is_arm = !(cpsr & PSR_AA32_T_BIT); - if (is_arm || !(cpsr & COMPAT_PSR_IT_MASK)) + if (is_arm || !(cpsr & PSR_AA32_IT_MASK)) return; cond = (cpsr & 0xe000) >> 13; @@ -123,7 +123,7 @@ static void __hyp_text kvm_adjust_itstate(struct kvm_vcpu *vcpu) else itbits = (itbits << 1) & 0x1f; - cpsr &= ~COMPAT_PSR_IT_MASK; + cpsr &= ~PSR_AA32_IT_MASK; cpsr |= cond << 13; cpsr |= (itbits & 0x1c) << (10 - 2); cpsr |= (itbits & 0x3) << 25; @@ -138,7 +138,7 @@ void __hyp_text kvm_skip_instr32(struct kvm_vcpu *vcpu, bool is_wide_instr) { bool is_thumb; - is_thumb = !!(*vcpu_cpsr(vcpu) & COMPAT_PSR_T_BIT); + is_thumb = !!(*vcpu_cpsr(vcpu) & PSR_AA32_T_BIT); if (is_thumb && !is_wide_instr) *vcpu_pc(vcpu) += 2; else @@ -164,16 +164,16 @@ static void prepare_fault32(struct kvm_vcpu *vcpu, u32 mode, u32 vect_offset) { unsigned long cpsr; unsigned long new_spsr_value = *vcpu_cpsr(vcpu); - bool is_thumb = (new_spsr_value & COMPAT_PSR_T_BIT); + bool is_thumb = (new_spsr_value & PSR_AA32_T_BIT); u32 return_offset = return_offsets[vect_offset >> 2][is_thumb]; u32 sctlr = vcpu_cp15(vcpu, c1_SCTLR); - cpsr = mode | COMPAT_PSR_I_BIT; + cpsr = mode | PSR_AA32_I_BIT; if (sctlr & (1 << 30)) - cpsr |= COMPAT_PSR_T_BIT; + cpsr |= PSR_AA32_T_BIT; if (sctlr & (1 << 25)) - cpsr |= COMPAT_PSR_E_BIT; + cpsr |= PSR_AA32_E_BIT; *vcpu_cpsr(vcpu) = cpsr; @@ -192,7 +192,7 @@ static void prepare_fault32(struct kvm_vcpu *vcpu, u32 mode, u32 vect_offset) void kvm_inject_undef32(struct kvm_vcpu *vcpu) { - prepare_fault32(vcpu, COMPAT_PSR_MODE_UND, 4); + prepare_fault32(vcpu, PSR_AA32_MODE_UND, 4); } /* @@ -216,7 +216,7 @@ static void inject_abt32(struct kvm_vcpu *vcpu, bool is_pabt, fsr = &vcpu_cp15(vcpu, c5_DFSR); } - prepare_fault32(vcpu, COMPAT_PSR_MODE_ABT | COMPAT_PSR_A_BIT, vect_offset); + prepare_fault32(vcpu, PSR_AA32_MODE_ABT | PSR_AA32_A_BIT, vect_offset); *far = addr; |