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c90399fbd7
19467 Commits
Author | SHA1 | Message | Date | |
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Thomas Gleixner
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c90399fbd7 |
x86/cpu: Ensure that CPU info updates are propagated on UP
The boot sequence evaluates CPUID information twice:
1) During early boot
2) When finalizing the early setup right before
mitigations are selected and alternatives are patched.
In both cases the evaluation is stored in boot_cpu_data, but on UP the
copying of boot_cpu_data to the per CPU info of the boot CPU happens
between #1 and #2. So any update which happens in #2 is never propagated to
the per CPU info instance.
Consolidate the whole logic and copy boot_cpu_data right before applying
alternatives as that's the point where boot_cpu_data is in it's final
state and not supposed to change anymore.
This also removes the voodoo mb() from smp_prepare_cpus_common() which
had absolutely no purpose.
Fixes:
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Masami Hiramatsu (Google)
|
4e51653d5d |
kprobes/x86: Use copy_from_kernel_nofault() to read from unsafe address
Read from an unsafe address with copy_from_kernel_nofault() in
arch_adjust_kprobe_addr() because this function is used before checking
the address is in text or not. Syzcaller bot found a bug and reported
the case if user specifies inaccessible data area,
arch_adjust_kprobe_addr() will cause a kernel panic.
[ mingo: Clarified the comment. ]
Fixes:
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Dave Young
|
fc7f27cda8 |
x86/kexec: Do not update E820 kexec table for setup_data
crashkernel reservation failed on a Thinkpad t440s laptop recently. Actually the memblock reservation succeeded, but later insert_resource() failed. Test steps: kexec load -> /* make sure add crashkernel param eg. crashkernel=160M */ kexec reboot -> dmesg|grep "crashkernel reserved"; crashkernel memory range like below reserved successfully: 0x00000000d0000000 - 0x00000000da000000 But no such "Crash kernel" region in /proc/iomem The background story: Currently the E820 code reserves setup_data regions for both the current kernel and the kexec kernel, and it inserts them into the resources list. Before the kexec kernel reboots nobody passes the old setup_data, and kexec only passes fresh SETUP_EFI/SETUP_IMA/SETUP_RNG_SEED if needed. Thus the old setup data memory is not used at all. Due to old kernel updates the kexec e820 table as well so kexec kernel sees them as E820_TYPE_RESERVED_KERN regions, and later the old setup_data regions are inserted into resources list in the kexec kernel by e820__reserve_resources(). Note, due to no setup_data is passed in for those old regions they are not early reserved (by function early_reserve_memory), and the crashkernel memblock reservation will just treat them as usable memory and it could reserve the crashkernel region which overlaps with the old setup_data regions. And just like the bug I noticed here, kdump insert_resource failed because e820__reserve_resources has added the overlapped chunks in /proc/iomem already. Finally, looking at the code, the old setup_data regions are not used at all as no setup_data is passed in by the kexec boot loader. Although something like SETUP_PCI etc could be needed, kexec should pass the info as new setup_data so that kexec kernel can take care of them. This should be taken care of in other separate patches if needed. Thus drop the useless buggy code here. Signed-off-by: Dave Young <dyoung@redhat.com> Signed-off-by: Ingo Molnar <mingo@kernel.org> Cc: Jiri Bohac <jbohac@suse.cz> Cc: Eric DeVolder <eric.devolder@oracle.com> Cc: Baoquan He <bhe@redhat.com> Cc: Ard Biesheuvel <ardb@kernel.org> Cc: Kees Cook <keescook@chromium.org> Cc: "Kirill A. Shutemov" <kirill.shutemov@linux.intel.com> Link: https://lore.kernel.org/r/Zf0T3HCG-790K-pZ@darkstar.users.ipa.redhat.com |
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Borislav Petkov (AMD)
|
5c84b051bd |
x86/CPU/AMD: Update the Zenbleed microcode revisions
Update them to the correct revision numbers.
Fixes:
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Linus Torvalds
|
4f712ee0cb |
S390:
* Changes to FPU handling came in via the main s390 pull request * Only deliver to the guest the SCLP events that userspace has requested. * More virtual vs physical address fixes (only a cleanup since virtual and physical address spaces are currently the same). * Fix selftests undefined behavior. x86: * Fix a restriction that the guest can't program a PMU event whose encoding matches an architectural event that isn't included in the guest CPUID. The enumeration of an architectural event only says that if a CPU supports an architectural event, then the event can be programmed *using the architectural encoding*. The enumeration does NOT say anything about the encoding when the CPU doesn't report support the event *in general*. It might support it, and it might support it using the same encoding that made it into the architectural PMU spec. * Fix a variety of bugs in KVM's emulation of RDPMC (more details on individual commits) and add a selftest to verify KVM correctly emulates RDMPC, counter availability, and a variety of other PMC-related behaviors that depend on guest CPUID and therefore are easier to validate with selftests than with custom guests (aka kvm-unit-tests). * Zero out PMU state on AMD if the virtual PMU is disabled, it does not cause any bug but it wastes time in various cases where KVM would check if a PMC event needs to be synthesized. * Optimize triggering of emulated events, with a nice ~10% performance improvement in VM-Exit microbenchmarks when a vPMU is exposed to the guest. * Tighten the check for "PMI in guest" to reduce false positives if an NMI arrives in the host while KVM is handling an IRQ VM-Exit. * Fix a bug where KVM would report stale/bogus exit qualification information when exiting to userspace with an internal error exit code. * Add a VMX flag in /proc/cpuinfo to report 5-level EPT support. * Rework TDP MMU root unload, free, and alloc to run with mmu_lock held for read, e.g. to avoid serializing vCPUs when userspace deletes a memslot. * Tear down TDP MMU page tables at 4KiB granularity (used to be 1GiB). KVM doesn't support yielding in the middle of processing a zap, and 1GiB granularity resulted in multi-millisecond lags that are quite impolite for CONFIG_PREEMPT kernels. * Allocate write-tracking metadata on-demand to avoid the memory overhead when a kernel is built with i915 virtualization support but the workloads use neither shadow paging nor i915 virtualization. * Explicitly initialize a variety of on-stack variables in the emulator that triggered KMSAN false positives. * Fix the debugregs ABI for 32-bit KVM. * Rework the "force immediate exit" code so that vendor code ultimately decides how and when to force the exit, which allowed some optimization for both Intel and AMD. * Fix a long-standing bug where kvm_has_noapic_vcpu could be left elevated if vCPU creation ultimately failed, causing extra unnecessary work. * Cleanup the logic for checking if the currently loaded vCPU is in-kernel. * Harden against underflowing the active mmu_notifier invalidation count, so that "bad" invalidations (usually due to bugs elsehwere in the kernel) are detected earlier and are less likely to hang the kernel. x86 Xen emulation: * Overlay pages can now be cached based on host virtual address, instead of guest physical addresses. This removes the need to reconfigure and invalidate the cache if the guest changes the gpa but the underlying host virtual address remains the same. * When possible, use a single host TSC value when computing the deadline for Xen timers in order to improve the accuracy of the timer emulation. * Inject pending upcall events when the vCPU software-enables its APIC to fix a bug where an upcall can be lost (and to follow Xen's behavior). * Fall back to the slow path instead of warning if "fast" IRQ delivery of Xen events fails, e.g. if the guest has aliased xAPIC IDs. RISC-V: * Support exception and interrupt handling in selftests * New self test for RISC-V architectural timer (Sstc extension) * New extension support (Ztso, Zacas) * Support userspace emulation of random number seed CSRs. ARM: * Infrastructure for building KVM's trap configuration based on the architectural features (or lack thereof) advertised in the VM's ID registers * Support for mapping vfio-pci BARs as Normal-NC (vaguely similar to x86's WC) at stage-2, improving the performance of interacting with assigned devices that can tolerate it * Conversion of KVM's representation of LPIs to an xarray, utilized to address serialization some of the serialization on the LPI injection path * Support for _architectural_ VHE-only systems, advertised through the absence of FEAT_E2H0 in the CPU's ID register * Miscellaneous cleanups, fixes, and spelling corrections to KVM and selftests LoongArch: * Set reserved bits as zero in CPUCFG. * Start SW timer only when vcpu is blocking. * Do not restart SW timer when it is expired. * Remove unnecessary CSR register saving during enter guest. * Misc cleanups and fixes as usual. Generic: * cleanup Kconfig by removing CONFIG_HAVE_KVM, which was basically always true on all architectures except MIPS (where Kconfig determines the available depending on CPU capabilities). It is replaced either by an architecture-dependent symbol for MIPS, and IS_ENABLED(CONFIG_KVM) everywhere else. * Factor common "select" statements in common code instead of requiring each architecture to specify it * Remove thoroughly obsolete APIs from the uapi headers. * Move architecture-dependent stuff to uapi/asm/kvm.h * Always flush the async page fault workqueue when a work item is being removed, especially during vCPU destruction, to ensure that there are no workers running in KVM code when all references to KVM-the-module are gone, i.e. to prevent a very unlikely use-after-free if kvm.ko is unloaded. * Grab a reference to the VM's mm_struct in the async #PF worker itself instead of gifting the worker a reference, so that there's no need to remember to *conditionally* clean up after the worker. Selftests: * Reduce boilerplate especially when utilize selftest TAP infrastructure. * Add basic smoke tests for SEV and SEV-ES, along with a pile of library support for handling private/encrypted/protected memory. * Fix benign bugs where tests neglect to close() guest_memfd files. -----BEGIN PGP SIGNATURE----- iQFIBAABCAAyFiEE8TM4V0tmI4mGbHaCv/vSX3jHroMFAmX0iP8UHHBib256aW5p QHJlZGhhdC5jb20ACgkQv/vSX3jHroND7wf+JZoNvwZ+bmwWe/4jn/YwNoYi/C5z eypn8M1gsWEccpCpqPBwznVm9T29rF4uOlcMvqLEkHfTpaL1EKUUjP1lXPz/ileP 6a2RdOGxAhyTiFC9fjy+wkkjtLbn1kZf6YsS0hjphP9+w0chNbdn0w81dFVnXryd j7XYI8R/bFAthNsJOuZXSEjCfIHxvTTG74OrTf1B1FEBB+arPmrgUeJftMVhffQK Sowgg8L/Ii/x6fgV5NZQVSIyVf1rp8z7c6UaHT4Fwb0+RAMW8p9pYv9Qp1YkKp8y 5j0V9UzOHP7FRaYimZ5BtwQoqiZXYylQ+VuU/Y2f4X85cvlLzSqxaEMAPA== =mqOV -----END PGP SIGNATURE----- Merge tag 'for-linus' of git://git.kernel.org/pub/scm/virt/kvm/kvm Pull kvm updates from Paolo Bonzini: "S390: - Changes to FPU handling came in via the main s390 pull request - Only deliver to the guest the SCLP events that userspace has requested - More virtual vs physical address fixes (only a cleanup since virtual and physical address spaces are currently the same) - Fix selftests undefined behavior x86: - Fix a restriction that the guest can't program a PMU event whose encoding matches an architectural event that isn't included in the guest CPUID. The enumeration of an architectural event only says that if a CPU supports an architectural event, then the event can be programmed *using the architectural encoding*. The enumeration does NOT say anything about the encoding when the CPU doesn't report support the event *in general*. It might support it, and it might support it using the same encoding that made it into the architectural PMU spec - Fix a variety of bugs in KVM's emulation of RDPMC (more details on individual commits) and add a selftest to verify KVM correctly emulates RDMPC, counter availability, and a variety of other PMC-related behaviors that depend on guest CPUID and therefore are easier to validate with selftests than with custom guests (aka kvm-unit-tests) - Zero out PMU state on AMD if the virtual PMU is disabled, it does not cause any bug but it wastes time in various cases where KVM would check if a PMC event needs to be synthesized - Optimize triggering of emulated events, with a nice ~10% performance improvement in VM-Exit microbenchmarks when a vPMU is exposed to the guest - Tighten the check for "PMI in guest" to reduce false positives if an NMI arrives in the host while KVM is handling an IRQ VM-Exit - Fix a bug where KVM would report stale/bogus exit qualification information when exiting to userspace with an internal error exit code - Add a VMX flag in /proc/cpuinfo to report 5-level EPT support - Rework TDP MMU root unload, free, and alloc to run with mmu_lock held for read, e.g. to avoid serializing vCPUs when userspace deletes a memslot - Tear down TDP MMU page tables at 4KiB granularity (used to be 1GiB). KVM doesn't support yielding in the middle of processing a zap, and 1GiB granularity resulted in multi-millisecond lags that are quite impolite for CONFIG_PREEMPT kernels - Allocate write-tracking metadata on-demand to avoid the memory overhead when a kernel is built with i915 virtualization support but the workloads use neither shadow paging nor i915 virtualization - Explicitly initialize a variety of on-stack variables in the emulator that triggered KMSAN false positives - Fix the debugregs ABI for 32-bit KVM - Rework the "force immediate exit" code so that vendor code ultimately decides how and when to force the exit, which allowed some optimization for both Intel and AMD - Fix a long-standing bug where kvm_has_noapic_vcpu could be left elevated if vCPU creation ultimately failed, causing extra unnecessary work - Cleanup the logic for checking if the currently loaded vCPU is in-kernel - Harden against underflowing the active mmu_notifier invalidation count, so that "bad" invalidations (usually due to bugs elsehwere in the kernel) are detected earlier and are less likely to hang the kernel x86 Xen emulation: - Overlay pages can now be cached based on host virtual address, instead of guest physical addresses. This removes the need to reconfigure and invalidate the cache if the guest changes the gpa but the underlying host virtual address remains the same - When possible, use a single host TSC value when computing the deadline for Xen timers in order to improve the accuracy of the timer emulation - Inject pending upcall events when the vCPU software-enables its APIC to fix a bug where an upcall can be lost (and to follow Xen's behavior) - Fall back to the slow path instead of warning if "fast" IRQ delivery of Xen events fails, e.g. if the guest has aliased xAPIC IDs RISC-V: - Support exception and interrupt handling in selftests - New self test for RISC-V architectural timer (Sstc extension) - New extension support (Ztso, Zacas) - Support userspace emulation of random number seed CSRs ARM: - Infrastructure for building KVM's trap configuration based on the architectural features (or lack thereof) advertised in the VM's ID registers - Support for mapping vfio-pci BARs as Normal-NC (vaguely similar to x86's WC) at stage-2, improving the performance of interacting with assigned devices that can tolerate it - Conversion of KVM's representation of LPIs to an xarray, utilized to address serialization some of the serialization on the LPI injection path - Support for _architectural_ VHE-only systems, advertised through the absence of FEAT_E2H0 in the CPU's ID register - Miscellaneous cleanups, fixes, and spelling corrections to KVM and selftests LoongArch: - Set reserved bits as zero in CPUCFG - Start SW timer only when vcpu is blocking - Do not restart SW timer when it is expired - Remove unnecessary CSR register saving during enter guest - Misc cleanups and fixes as usual Generic: - Clean up Kconfig by removing CONFIG_HAVE_KVM, which was basically always true on all architectures except MIPS (where Kconfig determines the available depending on CPU capabilities). It is replaced either by an architecture-dependent symbol for MIPS, and IS_ENABLED(CONFIG_KVM) everywhere else - Factor common "select" statements in common code instead of requiring each architecture to specify it - Remove thoroughly obsolete APIs from the uapi headers - Move architecture-dependent stuff to uapi/asm/kvm.h - Always flush the async page fault workqueue when a work item is being removed, especially during vCPU destruction, to ensure that there are no workers running in KVM code when all references to KVM-the-module are gone, i.e. to prevent a very unlikely use-after-free if kvm.ko is unloaded - Grab a reference to the VM's mm_struct in the async #PF worker itself instead of gifting the worker a reference, so that there's no need to remember to *conditionally* clean up after the worker Selftests: - Reduce boilerplate especially when utilize selftest TAP infrastructure - Add basic smoke tests for SEV and SEV-ES, along with a pile of library support for handling private/encrypted/protected memory - Fix benign bugs where tests neglect to close() guest_memfd files" * tag 'for-linus' of git://git.kernel.org/pub/scm/virt/kvm/kvm: (246 commits) selftests: kvm: remove meaningless assignments in Makefiles KVM: riscv: selftests: Add Zacas extension to get-reg-list test RISC-V: KVM: Allow Zacas extension for Guest/VM KVM: riscv: selftests: Add Ztso extension to get-reg-list test RISC-V: KVM: Allow Ztso extension for Guest/VM RISC-V: KVM: Forward SEED CSR access to user space KVM: riscv: selftests: Add sstc timer test KVM: riscv: selftests: Change vcpu_has_ext to a common function KVM: riscv: selftests: Add guest helper to get vcpu id KVM: riscv: selftests: Add exception handling support LoongArch: KVM: Remove unnecessary CSR register saving during enter guest LoongArch: KVM: Do not restart SW timer when it is expired LoongArch: KVM: Start SW timer only when vcpu is blocking LoongArch: KVM: Set reserved bits as zero in CPUCFG KVM: selftests: Explicitly close guest_memfd files in some gmem tests KVM: x86/xen: fix recursive deadlock in timer injection KVM: pfncache: simplify locking and make more self-contained KVM: x86/xen: remove WARN_ON_ONCE() with false positives in evtchn delivery KVM: x86/xen: inject vCPU upcall vector when local APIC is enabled KVM: x86/xen: improve accuracy of Xen timers ... |
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Linus Torvalds
|
ab522e1478 |
Devicetree updates for v6.9:
DT core: - Add cleanup.h based auto release of struct device_node pointers via __free marking and new for_each_child_of_node_scoped() iterator to use it. - Always create a base skeleton DT when CONFIG_OF is enabled. This supports several usecases of adding DT data on non-DT booted systems. - Move around some /reserved-memory code in preparation for further improvements - Add a stub for_each_property_of_node() for !OF - Adjust the printk levels on some messages - Fix __be32 sparse warning - Drop RESERVEDMEM_OF_DECLARE usage from Freescale qbman driver (currently orphaned) - Add Saravana Kannan and drop Frank Rowand as DT maintainers DT bindings: - Convert Mediatek timer, Mediatek sysirq, fsl,imx6ul-tsc, fsl,imx6ul-pinctrl, Atmel AIC, Atmel HLCDC, FPGA region, and xlnx,sd-fec to DT schemas - Add existing, but undocumented fsl,imx-anatop binding - Add bunch of undocumented vendor prefixes used in compatible strings - Drop obsolete brcm,bcm2835-pm-wdt binding - Drop obsolete i2c.txt which as been replaced with schema in dtschema - Add DPS310 device and sort trivial-devices.yaml - Enable undocumented compatible checks on DT binding examples - More QCom maintainer fixes/updates - Updates to writing-schema.rst and DT submitting-patches.rst to cover some frequent review comments - Clean-up SPDX tags to use 'OR' rather than 'or' -----BEGIN PGP SIGNATURE----- iQIzBAABCgAdFiEEktVUI4SxYhzZyEuo+vtdtY28YcMFAmX0foEACgkQ+vtdtY28 YcOkUg//T5Q+ZudVn/oJGre3crfPU4O/RHbG+brbwpBZEdiwTGlIjI8ceThjumCO MY25yRewCIZtS8MLlRb/lNPUjQxPeyYWnpO3KZHbOJhU8bJCl2M5P0CQOYJNp0fl fMFhFU5bKVoXyK6y3qx7ivZTXSBCz9KzB1HxY3LueMHVgWiO1Oi++XjLfcos86Mh 7dKZKNbpcnBFkXiESMksQS+asZkoRtZloFg4iFjniSLa8AgYJLsZXd7iW4s0IXy+ Xj+5IcIRcPv2xQoXfCvlcKMheJyePDA1coYpO8pmOYOpjCQzsCnnbzoNERW6hc9u 0DF2IWnq9WLlQ8RVijbECRPgwW6zuU+aklUZLz2q0AiwCVySHaMdC9iYe+KK/7GH m0F21x5mpfK0LVfOMWLsmuqKWn9J164VAeTY9zHqcWuvCohD5ulftvQgRBEiSDtv V3l668t6v67iMkYa8SncbuMkV/NSShWPGne+yP3smvL0pe0P0MJYb1XSstlbNXuK whTDaCydEHx3JPJ6VS/1aJnELFm+uZVl8wjhfrgbWo2hIC83qjN3k0yV+vFNdFzT 5PUfI858fvgYOrGsswYCCJXmb/s37NImCnIF/sjqvj50BA468261KYAFtapa2Vlj uvpKgIZHJEDOK6TPlk5n7+aaOwoLMYzm+yov/0gyRpRKqsXu52U= =YzNN -----END PGP SIGNATURE----- Merge tag 'devicetree-for-6.9' of git://git.kernel.org/pub/scm/linux/kernel/git/robh/linux Pull devicetree updates from Rob Herring: "DT core: - Add cleanup.h based auto release of struct device_node pointers via __free marking and new for_each_child_of_node_scoped() iterator to use it. - Always create a base skeleton DT when CONFIG_OF is enabled. This supports several usecases of adding DT data on non-DT booted systems. - Move around some /reserved-memory code in preparation for further improvements - Add a stub for_each_property_of_node() for !OF - Adjust the printk levels on some messages - Fix __be32 sparse warning - Drop RESERVEDMEM_OF_DECLARE usage from Freescale qbman driver (currently orphaned) - Add Saravana Kannan and drop Frank Rowand as DT maintainers DT bindings: - Convert Mediatek timer, Mediatek sysirq, fsl,imx6ul-tsc, fsl,imx6ul-pinctrl, Atmel AIC, Atmel HLCDC, FPGA region, and xlnx,sd-fec to DT schemas - Add existing, but undocumented fsl,imx-anatop binding - Add bunch of undocumented vendor prefixes used in compatible strings - Drop obsolete brcm,bcm2835-pm-wdt binding - Drop obsolete i2c.txt which as been replaced with schema in dtschema - Add DPS310 device and sort trivial-devices.yaml - Enable undocumented compatible checks on DT binding examples - More QCom maintainer fixes/updates - Updates to writing-schema.rst and DT submitting-patches.rst to cover some frequent review comments - Clean-up SPDX tags to use 'OR' rather than 'or'" * tag 'devicetree-for-6.9' of git://git.kernel.org/pub/scm/linux/kernel/git/robh/linux: (56 commits) dt-bindings: soc: imx: fsl,imx-anatop: add imx6q regulators of: unittest: Use for_each_child_of_node_scoped() of: Introduce for_each_*_child_of_node_scoped() to automate of_node_put() handling of: Add cleanup.h based auto release via __free(device_node) markings of: Move all FDT reserved-memory handling into of_reserved_mem.c of: Add KUnit test to confirm DTB is loaded of: unittest: treat missing of_root as error instead of fixing up x86/of: Unconditionally call unflatten_and_copy_device_tree() um: Unconditionally call unflatten_device_tree() of: Create of_root if no dtb provided by firmware of: Always unflatten in unflatten_and_copy_device_tree() dt-bindings: timer: mediatek: Convert to json-schema dt-bindings: interrupt-controller: fsl,intmux: Include power-domains support soc: fsl: qbman: Remove RESERVEDMEM_OF_DECLARE usage dt-bindings: fsl-imx-sdma: fix HDMI audio index dt-bindings: soc: imx: fsl,imx-iomuxc-gpr: add imx6 dt-bindings: soc: imx: fsl,imx-anatop: add binding dt-bindings: input: touchscreen: fsl,imx6ul-tsc convert to YAML dt-bindings: pinctrl: fsl,imx6ul-pinctrl: convert to YAML of: make for_each_property_of_node() available to to !OF ... |
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Linus Torvalds
|
902861e34c |
- Sumanth Korikkar has taught s390 to allocate hotplug-time page frames
from hotplugged memory rather than only from main memory. Series "implement "memmap on memory" feature on s390". - More folio conversions from Matthew Wilcox in the series "Convert memcontrol charge moving to use folios" "mm: convert mm counter to take a folio" - Chengming Zhou has optimized zswap's rbtree locking, providing significant reductions in system time and modest but measurable reductions in overall runtimes. The series is "mm/zswap: optimize the scalability of zswap rb-tree". - Chengming Zhou has also provided the series "mm/zswap: optimize zswap lru list" which provides measurable runtime benefits in some swap-intensive situations. - And Chengming Zhou further optimizes zswap in the series "mm/zswap: optimize for dynamic zswap_pools". Measured improvements are modest. - zswap cleanups and simplifications from Yosry Ahmed in the series "mm: zswap: simplify zswap_swapoff()". - In the series "Add DAX ABI for memmap_on_memory", Vishal Verma has contributed several DAX cleanups as well as adding a sysfs tunable to control the memmap_on_memory setting when the dax device is hotplugged as system memory. - Johannes Weiner has added the large series "mm: zswap: cleanups", which does that. - More DAMON work from SeongJae Park in the series "mm/damon: make DAMON debugfs interface deprecation unignorable" "selftests/damon: add more tests for core functionalities and corner cases" "Docs/mm/damon: misc readability improvements" "mm/damon: let DAMOS feeds and tame/auto-tune itself" - In the series "mm/mempolicy: weighted interleave mempolicy and sysfs extension" Rakie Kim has developed a new mempolicy interleaving policy wherein we allocate memory across nodes in a weighted fashion rather than uniformly. This is beneficial in heterogeneous memory environments appearing with CXL. - Christophe Leroy has contributed some cleanup and consolidation work against the ARM pagetable dumping code in the series "mm: ptdump: Refactor CONFIG_DEBUG_WX and check_wx_pages debugfs attribute". - Luis Chamberlain has added some additional xarray selftesting in the series "test_xarray: advanced API multi-index tests". - Muhammad Usama Anjum has reworked the selftest code to make its human-readable output conform to the TAP ("Test Anything Protocol") format. Amongst other things, this opens up the use of third-party tools to parse and process out selftesting results. - Ryan Roberts has added fork()-time PTE batching of THP ptes in the series "mm/memory: optimize fork() with PTE-mapped THP". Mainly targeted at arm64, this significantly speeds up fork() when the process has a large number of pte-mapped folios. - David Hildenbrand also gets in on the THP pte batching game in his series "mm/memory: optimize unmap/zap with PTE-mapped THP". It implements batching during munmap() and other pte teardown situations. The microbenchmark improvements are nice. - And in the series "Transparent Contiguous PTEs for User Mappings" Ryan Roberts further utilizes arm's pte's contiguous bit ("contpte mappings"). Kernel build times on arm64 improved nicely. Ryan's series "Address some contpte nits" provides some followup work. - In the series "mm/hugetlb: Restore the reservation" Breno Leitao has fixed an obscure hugetlb race which was causing unnecessary page faults. He has also added a reproducer under the selftest code. - In the series "selftests/mm: Output cleanups for the compaction test", Mark Brown did what the title claims. - Kinsey Ho has added the series "mm/mglru: code cleanup and refactoring". - Even more zswap material from Nhat Pham. The series "fix and extend zswap kselftests" does as claimed. - In the series "Introduce cpu_dcache_is_aliasing() to fix DAX regression" Mathieu Desnoyers has cleaned up and fixed rather a mess in our handling of DAX on archiecctures which have virtually aliasing data caches. The arm architecture is the main beneficiary. - Lokesh Gidra's series "per-vma locks in userfaultfd" provides dramatic improvements in worst-case mmap_lock hold times during certain userfaultfd operations. - Some page_owner enhancements and maintenance work from Oscar Salvador in his series "page_owner: print stacks and their outstanding allocations" "page_owner: Fixup and cleanup" - Uladzislau Rezki has contributed some vmalloc scalability improvements in his series "Mitigate a vmap lock contention". It realizes a 12x improvement for a certain microbenchmark. - Some kexec/crash cleanup work from Baoquan He in the series "Split crash out from kexec and clean up related config items". - Some zsmalloc maintenance work from Chengming Zhou in the series "mm/zsmalloc: fix and optimize objects/page migration" "mm/zsmalloc: some cleanup for get/set_zspage_mapping()" - Zi Yan has taught the MM to perform compaction on folios larger than order=0. This a step along the path to implementaton of the merging of large anonymous folios. The series is named "Enable >0 order folio memory compaction". - Christoph Hellwig has done quite a lot of cleanup work in the pagecache writeback code in his series "convert write_cache_pages() to an iterator". - Some modest hugetlb cleanups and speedups in Vishal Moola's series "Handle hugetlb faults under the VMA lock". - Zi Yan has changed the page splitting code so we can split huge pages into sizes other than order-0 to better utilize large folios. The series is named "Split a folio to any lower order folios". - David Hildenbrand has contributed the series "mm: remove total_mapcount()", a cleanup. - Matthew Wilcox has sought to improve the performance of bulk memory freeing in his series "Rearrange batched folio freeing". - Gang Li's series "hugetlb: parallelize hugetlb page init on boot" provides large improvements in bootup times on large machines which are configured to use large numbers of hugetlb pages. - Matthew Wilcox's series "PageFlags cleanups" does that. - Qi Zheng's series "minor fixes and supplement for ptdesc" does that also. S390 is affected. - Cleanups to our pagemap utility functions from Peter Xu in his series "mm/treewide: Replace pXd_large() with pXd_leaf()". - Nico Pache has fixed a few things with our hugepage selftests in his series "selftests/mm: Improve Hugepage Test Handling in MM Selftests". - Also, of course, many singleton patches to many things. Please see the individual changelogs for details. -----BEGIN PGP SIGNATURE----- iHUEABYIAB0WIQTTMBEPP41GrTpTJgfdBJ7gKXxAjgUCZfJpPQAKCRDdBJ7gKXxA joxeAP9TrcMEuHnLmBlhIXkWbIR4+ki+pA3v+gNTlJiBhnfVSgD9G55t1aBaRplx TMNhHfyiHYDTx/GAV9NXW84tasJSDgA= =TG55 -----END PGP SIGNATURE----- Merge tag 'mm-stable-2024-03-13-20-04' of git://git.kernel.org/pub/scm/linux/kernel/git/akpm/mm Pull MM updates from Andrew Morton: - Sumanth Korikkar has taught s390 to allocate hotplug-time page frames from hotplugged memory rather than only from main memory. Series "implement "memmap on memory" feature on s390". - More folio conversions from Matthew Wilcox in the series "Convert memcontrol charge moving to use folios" "mm: convert mm counter to take a folio" - Chengming Zhou has optimized zswap's rbtree locking, providing significant reductions in system time and modest but measurable reductions in overall runtimes. The series is "mm/zswap: optimize the scalability of zswap rb-tree". - Chengming Zhou has also provided the series "mm/zswap: optimize zswap lru list" which provides measurable runtime benefits in some swap-intensive situations. - And Chengming Zhou further optimizes zswap in the series "mm/zswap: optimize for dynamic zswap_pools". Measured improvements are modest. - zswap cleanups and simplifications from Yosry Ahmed in the series "mm: zswap: simplify zswap_swapoff()". - In the series "Add DAX ABI for memmap_on_memory", Vishal Verma has contributed several DAX cleanups as well as adding a sysfs tunable to control the memmap_on_memory setting when the dax device is hotplugged as system memory. - Johannes Weiner has added the large series "mm: zswap: cleanups", which does that. - More DAMON work from SeongJae Park in the series "mm/damon: make DAMON debugfs interface deprecation unignorable" "selftests/damon: add more tests for core functionalities and corner cases" "Docs/mm/damon: misc readability improvements" "mm/damon: let DAMOS feeds and tame/auto-tune itself" - In the series "mm/mempolicy: weighted interleave mempolicy and sysfs extension" Rakie Kim has developed a new mempolicy interleaving policy wherein we allocate memory across nodes in a weighted fashion rather than uniformly. This is beneficial in heterogeneous memory environments appearing with CXL. - Christophe Leroy has contributed some cleanup and consolidation work against the ARM pagetable dumping code in the series "mm: ptdump: Refactor CONFIG_DEBUG_WX and check_wx_pages debugfs attribute". - Luis Chamberlain has added some additional xarray selftesting in the series "test_xarray: advanced API multi-index tests". - Muhammad Usama Anjum has reworked the selftest code to make its human-readable output conform to the TAP ("Test Anything Protocol") format. Amongst other things, this opens up the use of third-party tools to parse and process out selftesting results. - Ryan Roberts has added fork()-time PTE batching of THP ptes in the series "mm/memory: optimize fork() with PTE-mapped THP". Mainly targeted at arm64, this significantly speeds up fork() when the process has a large number of pte-mapped folios. - David Hildenbrand also gets in on the THP pte batching game in his series "mm/memory: optimize unmap/zap with PTE-mapped THP". It implements batching during munmap() and other pte teardown situations. The microbenchmark improvements are nice. - And in the series "Transparent Contiguous PTEs for User Mappings" Ryan Roberts further utilizes arm's pte's contiguous bit ("contpte mappings"). Kernel build times on arm64 improved nicely. Ryan's series "Address some contpte nits" provides some followup work. - In the series "mm/hugetlb: Restore the reservation" Breno Leitao has fixed an obscure hugetlb race which was causing unnecessary page faults. He has also added a reproducer under the selftest code. - In the series "selftests/mm: Output cleanups for the compaction test", Mark Brown did what the title claims. - Kinsey Ho has added the series "mm/mglru: code cleanup and refactoring". - Even more zswap material from Nhat Pham. The series "fix and extend zswap kselftests" does as claimed. - In the series "Introduce cpu_dcache_is_aliasing() to fix DAX regression" Mathieu Desnoyers has cleaned up and fixed rather a mess in our handling of DAX on archiecctures which have virtually aliasing data caches. The arm architecture is the main beneficiary. - Lokesh Gidra's series "per-vma locks in userfaultfd" provides dramatic improvements in worst-case mmap_lock hold times during certain userfaultfd operations. - Some page_owner enhancements and maintenance work from Oscar Salvador in his series "page_owner: print stacks and their outstanding allocations" "page_owner: Fixup and cleanup" - Uladzislau Rezki has contributed some vmalloc scalability improvements in his series "Mitigate a vmap lock contention". It realizes a 12x improvement for a certain microbenchmark. - Some kexec/crash cleanup work from Baoquan He in the series "Split crash out from kexec and clean up related config items". - Some zsmalloc maintenance work from Chengming Zhou in the series "mm/zsmalloc: fix and optimize objects/page migration" "mm/zsmalloc: some cleanup for get/set_zspage_mapping()" - Zi Yan has taught the MM to perform compaction on folios larger than order=0. This a step along the path to implementaton of the merging of large anonymous folios. The series is named "Enable >0 order folio memory compaction". - Christoph Hellwig has done quite a lot of cleanup work in the pagecache writeback code in his series "convert write_cache_pages() to an iterator". - Some modest hugetlb cleanups and speedups in Vishal Moola's series "Handle hugetlb faults under the VMA lock". - Zi Yan has changed the page splitting code so we can split huge pages into sizes other than order-0 to better utilize large folios. The series is named "Split a folio to any lower order folios". - David Hildenbrand has contributed the series "mm: remove total_mapcount()", a cleanup. - Matthew Wilcox has sought to improve the performance of bulk memory freeing in his series "Rearrange batched folio freeing". - Gang Li's series "hugetlb: parallelize hugetlb page init on boot" provides large improvements in bootup times on large machines which are configured to use large numbers of hugetlb pages. - Matthew Wilcox's series "PageFlags cleanups" does that. - Qi Zheng's series "minor fixes and supplement for ptdesc" does that also. S390 is affected. - Cleanups to our pagemap utility functions from Peter Xu in his series "mm/treewide: Replace pXd_large() with pXd_leaf()". - Nico Pache has fixed a few things with our hugepage selftests in his series "selftests/mm: Improve Hugepage Test Handling in MM Selftests". - Also, of course, many singleton patches to many things. Please see the individual changelogs for details. * tag 'mm-stable-2024-03-13-20-04' of git://git.kernel.org/pub/scm/linux/kernel/git/akpm/mm: (435 commits) mm/zswap: remove the memcpy if acomp is not sleepable crypto: introduce: acomp_is_async to expose if comp drivers might sleep memtest: use {READ,WRITE}_ONCE in memory scanning mm: prohibit the last subpage from reusing the entire large folio mm: recover pud_leaf() definitions in nopmd case selftests/mm: skip the hugetlb-madvise tests on unmet hugepage requirements selftests/mm: skip uffd hugetlb tests with insufficient hugepages selftests/mm: dont fail testsuite due to a lack of hugepages mm/huge_memory: skip invalid debugfs new_order input for folio split mm/huge_memory: check new folio order when split a folio mm, vmscan: retry kswapd's priority loop with cache_trim_mode off on failure mm: add an explicit smp_wmb() to UFFDIO_CONTINUE mm: fix list corruption in put_pages_list mm: remove folio from deferred split list before uncharging it filemap: avoid unnecessary major faults in filemap_fault() mm,page_owner: drop unnecessary check mm,page_owner: check for null stack_record before bumping its refcount mm: swap: fix race between free_swap_and_cache() and swapoff() mm/treewide: align up pXd_leaf() retval across archs mm/treewide: drop pXd_large() ... |
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Linus Torvalds
|
01732755ee |
Probes updates for v6.9:
- x96/kprobes: Use boolean for some function return instead of 0 and 1. - x86/kprobes: Prohibit probing on INT/UD. This prevents user to put kprobe on INTn/INT1/INT3/INTO and UD0/UD1/UD2 because these are used for a special purpose in the kernel. - x86/kprobes: Boost Grp instructions. Because a few percent of kernel instructions are Grp 2/3/4/5 and those are safe to be executed without ip register fixup, allow those to be boosted (direct execution on the trampoline buffer with a JMP). - tracing/probes: Add function argument access from return events (kretprobe and fprobe). This allows user to compare how a data structure field is changed after executing a function. With BTF, return event also accepts function argument access by name. This also includes below patches; . Fix a wrong comment (using "Kretprobe" in fprobe) . Cleanup a big probe argument parser function into three parts, type parser, post-processing function, and main parser. . Cleanup to set nr_args field when initializing trace_probe instead of counting up it while parsing. . Cleanup a redundant #else block from tracefs/README source code. . Update selftests to check entry argument access from return probes. . Documentation update about entry argument access from return probes. -----BEGIN PGP SIGNATURE----- iQFPBAABCgA5FiEEh7BulGwFlgAOi5DV2/sHvwUrPxsFAmXwW4kbHG1hc2FtaS5o aXJhbWF0c3VAZ21haWwuY29tAAoJENv7B78FKz8bH80H/3H6JENlDAjaSLi4vYrP Qyw/cOGIuGu8cDEzkkOaFMol3TY23M7tQZH1lFefvV92gebZ0ttXnrQhSsKeO5XT PCZ6Eoift5rwJCY967W4V6O0DrAkOGHlPtlKs47APJnTXwn8RcFTqWlQmhWg1AfD g/FCWV7cs3eewZgV9iQcLydOoLLgRMr3G3rtPYQbCXhPzze0WTu4dSOXxCTjFe04 riHQy7R+ut6Cur8njpoqZl6bCMkQqAylByXf6wK96HjcS0+ZI7Ivi8Ey3l2aAFen EeIViMU2Bl02XzBszj7Xq2cT/ebYAgDonFW3/5ZKD1YMO6F7wPoVH5OHrQ518Xuw hQ8= =O6l5 -----END PGP SIGNATURE----- Merge tag 'probes-v6.9' of git://git.kernel.org/pub/scm/linux/kernel/git/trace/linux-trace Pull probes updates from Masami Hiramatsu: "x86 kprobes: - Use boolean for some function return instead of 0 and 1 - Prohibit probing on INT/UD. This prevents user to put kprobe on INTn/INT1/INT3/INTO and UD0/UD1/UD2 because these are used for a special purpose in the kernel - Boost Grp instructions. Because a few percent of kernel instructions are Grp 2/3/4/5 and those are safe to be executed without ip register fixup, allow those to be boosted (direct execution on the trampoline buffer with a JMP) tracing: - Add function argument access from return events (kretprobe and fprobe). This allows user to compare how a data structure field is changed after executing a function. With BTF, return event also accepts function argument access by name. - Fix a wrong comment (using "Kretprobe" in fprobe) - Cleanup a big probe argument parser function into three parts, type parser, post-processing function, and main parser - Cleanup to set nr_args field when initializing trace_probe instead of counting up it while parsing - Cleanup a redundant #else block from tracefs/README source code - Update selftests to check entry argument access from return probes - Documentation update about entry argument access from return probes" * tag 'probes-v6.9' of git://git.kernel.org/pub/scm/linux/kernel/git/trace/linux-trace: Documentation: tracing: Add entry argument access at function exit selftests/ftrace: Add test cases for entry args at function exit tracing/probes: Support $argN in return probe (kprobe and fprobe) tracing: Remove redundant #else block for BTF args from README tracing/probes: cleanup: Set trace_probe::nr_args at trace_probe_init tracing/probes: Cleanup probe argument parser tracing/fprobe-event: cleanup: Fix a wrong comment in fprobe event x86/kprobes: Boost more instructions from grp2/3/4/5 x86/kprobes: Prohibit kprobing on INT and UD x86/kprobes: Refactor can_{probe,boost} return type to bool |
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Linus Torvalds
|
9434467959 |
ACPI updates for 6.9-rc1
- Rearrange Device Check and Bus Check notification handling in the ACPI device hotplug code to make it get the "enabled" _STA bit into account (Rafael Wysocki). - Modify acpi_processor_add() to skip processors with the "enabled" _STA bit clear, as per the specification (Rafael Wysocki). - Stop failing Device Check notification handling without a valid reason (Rafael Wysocki). - Defer enumeration of devices that depend on a device with an ACPI device ID equalt to INTC10CF to address probe ordering issues on some platforms (Wentong Wu). - Constify acpi_bus_type (Ricardo Marliere). - Make the ACPI-specific suspend-to-idle code take the Low-Power S0 Idle MSFT UUID into account on non-AMD systems (Rafael Wysocki). - Add ACPI IRQ override quirks for some new platforms (Sergey Kalinichev, Maxim Kudinov, Alexey Froloff, Sviatoslav Harasymchuk, Nicolas Haye). - Make the NFIT parsing code use acpi_evaluate_dsm_typed() (Andy Shevchenko). - Fix a memory leak in acpi_processor_power_exit() (Armin Wolf). - Make it possible to quirk the CSI-2 and MIPI DisCo for Imaging properties parsing and add a quirk for Dell XPS 9315 (Sakari Ailus). - Prevent false-positive static checker warnings from triggering by intializing some variables in the ACPI thermal code to zero (Colin Ian King). - Add DELL0501 handling to acpi_quirk_skip_serdev_enumeration() and make that function generic (Hans de Goede). - Make the ACPI backlight code handle fetching EDID that is longer than 256 bytes (Mario Limonciello). - Skip initialization of GHES_ASSIST structures for Machine Check Architecture in APEI (Avadhut Naik). - Convert several plaform drivers in the ACPI subsystem to using a remove callback that returns void (Uwe Kleine-König). - Drop the long-deprecated custom_method debugfs interface that is problematic from the security standpoint (Rafael Wysocki). - Use %pe in a couple of places in the ACPI code for easier error decoding (Onkarnath). - Fix register width information handling during system memory accesses in the ACPI CPPC library (Jarred White). - Add AMD CPPC V2 support for family 17h processors to the ACPI CPPC library (Perry Yuan). -----BEGIN PGP SIGNATURE----- iQJGBAABCAAwFiEE4fcc61cGeeHD/fCwgsRv/nhiVHEFAmXvJFISHHJqd0Byand5 c29ja2kubmV0AAoJEILEb/54YlRxtWMP/0IySac8M0jkQJrlJeIqXHhV/akwpe5H kWtuT8bZ8iiQmB+orDW+hpLhdATc2vv1XPRApnkkd9QtrLEVBBIoLrDxzUJy/tzv 0qgj2s0A1pc6gRpX1y3Wc94U3PnTzOodVpjZq6L9rGQ3enBkIU7H3CWs2LIq3VfB lUSY1dmVB2rv1MHfsoxTM6eiRYEZSAc3v8b0jpIjfaHsxdUPsqZLMPXTVzgGWfu4 ePCN1oDKX9xQkVV9/hnxBYwTSO+ySBq1jgtG2PaqRmJXIaZR/24A1tHTr2UQvTss x39WnjWIrKOwO6TfwoX8KlsdBaJeQo0biH42QQV08UIYUWfQmoUVVffZMPGrlGvV F3vPMLZADMROJhtfoD4hXIcj+Asa/uqi6lKN1mctb0akozOGlHbX4yNXq4MZS9Hj sXO9gMXgWjh5cnC/NSekcdVbLbARj2g7JWdpq1dZmgh9eaXP07/D6DcrVbcdZSHs ySb6DNNAEXPL0PgSU+cLiwRRH43C+ilVz/OMrdHxb4jSuAVDluD4hwi1IwwB4feG k0s9i0OQKAkC/9UXcJrlTFs1fE4ftZ0gYVZDiSeDDy9FUo1ZYCRhOP7yfrjoCHhH Wc7sllUKHsy1TPi3Wh3ANxUaZhviNn59rL3JPAKeX1Qjx2LB+qHS6j08/v/F3m6W Srp8VJsItb/D =Yngi -----END PGP SIGNATURE----- Merge tag 'acpi-6.9-rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/rafael/linux-pm Pull ACPI updates from Rafael Wysocki: "These modify the ACPI device events and processor enumeration code to take the 'enabled' _STA bit into account as mandated by the ACPI specification, convert several platform drivers to using a remove callback that returns void, add some new quirks for ACPI IRQ override and other things, address assorted issues and clean up code. Specifics: - Rearrange Device Check and Bus Check notification handling in the ACPI device hotplug code to make it get the "enabled" _STA bit into account (Rafael Wysocki) - Modify acpi_processor_add() to skip processors with the "enabled" _STA bit clear, as per the specification (Rafael Wysocki) - Stop failing Device Check notification handling without a valid reason (Rafael Wysocki) - Defer enumeration of devices that depend on a device with an ACPI device ID equalt to INTC10CF to address probe ordering issues on some platforms (Wentong Wu) - Constify acpi_bus_type (Ricardo Marliere) - Make the ACPI-specific suspend-to-idle code take the Low-Power S0 Idle MSFT UUID into account on non-AMD systems (Rafael Wysocki) - Add ACPI IRQ override quirks for some new platforms (Sergey Kalinichev, Maxim Kudinov, Alexey Froloff, Sviatoslav Harasymchuk, Nicolas Haye) - Make the NFIT parsing code use acpi_evaluate_dsm_typed() (Andy Shevchenko) - Fix a memory leak in acpi_processor_power_exit() (Armin Wolf) - Make it possible to quirk the CSI-2 and MIPI DisCo for Imaging properties parsing and add a quirk for Dell XPS 9315 (Sakari Ailus) - Prevent false-positive static checker warnings from triggering by intializing some variables in the ACPI thermal code to zero (Colin Ian King) - Add DELL0501 handling to acpi_quirk_skip_serdev_enumeration() and make that function generic (Hans de Goede) - Make the ACPI backlight code handle fetching EDID that is longer than 256 bytes (Mario Limonciello) - Skip initialization of GHES_ASSIST structures for Machine Check Architecture in APEI (Avadhut Naik) - Convert several plaform drivers in the ACPI subsystem to using a remove callback that returns void (Uwe Kleine-König) - Drop the long-deprecated custom_method debugfs interface that is problematic from the security standpoint (Rafael Wysocki) - Use %pe in a couple of places in the ACPI code for easier error decoding (Onkarnath) - Fix register width information handling during system memory accesses in the ACPI CPPC library (Jarred White) - Add AMD CPPC V2 support for family 17h processors to the ACPI CPPC library (Perry Yuan)" * tag 'acpi-6.9-rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/rafael/linux-pm: (35 commits) ACPI: resource: Use IRQ override on Maibenben X565 ACPI: CPPC: Use access_width over bit_width for system memory accesses ACPI: CPPC: enable AMD CPPC V2 support for family 17h processors ACPI: APEI: Skip initialization of GHES_ASSIST structures for Machine Check Architecture ACPI: scan: Consolidate Device Check and Bus Check notification handling ACPI: scan: Rework Device Check and Bus Check notification handling ACPI: scan: Make acpi_processor_add() check the device enabled bit ACPI: scan: Relocate acpi_bus_trim_one() ACPI: scan: Fix device check notification handling ACPI: resource: Add MAIBENBEN X577 to irq1_edge_low_force_override ACPI: pfr_update: Convert to platform remove callback returning void ACPI: pfr_telemetry: Convert to platform remove callback returning void ACPI: fan: Convert to platform remove callback returning void ACPI: GED: Convert to platform remove callback returning void ACPI: DPTF: Convert to platform remove callback returning void ACPI: AGDI: Convert to platform remove callback returning void ACPI: TAD: Convert to platform remove callback returning void ACPI: APEI: GHES: Convert to platform remove callback returning void ACPI: property: Polish ignoring bad data nodes ACPI: thermal_lib: Initialize temp_decik to zero ... |
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Linus Torvalds
|
07abb19a9b |
Power management updates for 6.9-rc1
- Allow the Energy Model to be updated dynamically (Lukasz Luba). - Add support for LZ4 compression algorithm to the hibernation image creation and loading code (Nikhil V). - Fix and clean up system suspend statistics collection (Rafael Wysocki). - Simplify device suspend and resume handling in the power management core code (Rafael Wysocki). - Fix PCI hibernation support description (Yiwei Lin). - Make hibernation take set_memory_ro() return values into account as appropriate (Christophe Leroy). - Set mem_sleep_current during kernel command line setup to avoid an ordering issue with handling it (Maulik Shah). - Fix wake IRQs handling when pm_runtime_force_suspend() is used as a driver's system suspend callback (Qingliang Li). - Simplify pm_runtime_get_if_active() usage and add a replacement for pm_runtime_put_autosuspend() (Sakari Ailus). - Add a tracepoint for runtime_status changes tracking (Vilas Bhat). - Fix section title markdown in the runtime PM documentation (Yiwei Lin). - Enable preferred core support in the amd-pstate cpufreq driver (Meng Li). - Fix min_perf assignment in amd_pstate_adjust_perf() and make the min/max limit perf values in amd-pstate always stay within the (highest perf, lowest perf) range (Tor Vic, Meng Li). - Allow intel_pstate to assign model-specific values to strings used in the EPP sysfs interface and make it do so on Meteor Lake (Srinivas Pandruvada). - Drop long-unused cpudata::prev_cummulative_iowait from the intel_pstate cpufreq driver (Jiri Slaby). - Prevent scaling_cur_freq from exceeding scaling_max_freq when the latter is an inefficient frequency (Shivnandan Kumar). - Change default transition delay in cpufreq to 2ms (Qais Yousef). - Remove references to 10ms minimum sampling rate from comments in the cpufreq code (Pierre Gondois). - Honour transition_latency over transition_delay_us in cpufreq (Qais Yousef). - Stop unregistering cpufreq cooling on CPU hot-remove (Viresh Kumar). - General enhancements / cleanups to ARM cpufreq drivers (tianyu2, Nícolas F. R. A. Prado, Erick Archer, Arnd Bergmann, Anastasia Belova). - Update cpufreq-dt-platdev to block/approve devices (Richard Acayan). - Make the SCMI cpufreq driver get a transition delay value from firmware (Pierre Gondois). - Prevent the haltpoll cpuidle governor from shrinking guest poll_limit_ns below grow_start (Parshuram Sangle). - Avoid potential overflow in integer multiplication when computing cpuidle state parameters (C Cheng). - Adjust MWAIT hint target C-state computation in the ACPI cpuidle driver and in intel_idle to return a correct value for C0 (He Rongguang). - Address multiple issues in the TPMI RAPL driver and add support for new platforms (Lunar Lake-M, Arrow Lake) to Intel RAPL (Zhang Rui). - Fix freq_qos_add_request() return value check in dtpm_cpu (Daniel Lezcano). - Fix kernel-doc for dtpm_create_hierarchy() (Yang Li). - Fix file leak in get_pkg_num() in x86_energy_perf_policy (Samasth Norway Ananda). - Fix cpupower-frequency-info.1 man page typo (Jan Kratochvil). - Fix a couple of warnings in the OPP core code related to W=1 builds (Viresh Kumar). - Move dev_pm_opp_{init|free}_cpufreq_table() to pm_opp.h (Viresh Kumar). - Extend dev_pm_opp_data with turbo support (Sibi Sankar). - dt-bindings: drop maxItems from inner items (David Heidelberg). -----BEGIN PGP SIGNATURE----- iQJGBAABCAAwFiEE4fcc61cGeeHD/fCwgsRv/nhiVHEFAmXvI/ISHHJqd0Byand5 c29ja2kubmV0AAoJEILEb/54YlRx24sP/jxg6fOGme8raHQvpTXG3/H56wlGzQ4P YUvvKUXnfD3yf1zNISsUl7VQebZqDt8rygkwSdymXlUVZX1eubN0RpCFc0F8GZuc THG/YQhYQr/9zro3FpKhfDj5evk21PCQzjf+dGvfQF9qVMxNPG1JzEFK6PnolT5X 2BvkonY1XFWZjCMbZ83B/jt35lTDb0cmeNbCpfD5UJgcnxmMOtZYpORdyfPWTJpG GVCwmAFVVXxXlust/AIpt3mmOpKzSA9GnrtJkhtQe5GN+Y4OjnJiFJmTC7EfCctj JlWgVUA716mtFMUrjXgjfI54firF2oQpqaSa2HG/V/A96JWQqjarGz5dAV1IrPEt ZmYpvMe4E90S411wF1OWyrEqjXUuDnH1OWUvUdWSt4E7DhFw3esDi/jLW2tyVKAT hIy+/O4wzbDSTX/h9Cgt1Qjhew6lKUIwvhEXclB3fuJ+JoviWNkC9lnK93e2H0A3 VYfkd/lpUD74035l0FrCJ/49MjX9kqrsn+TipHsIlSXAi8ZRdKbVvxOTD8RYudcI GvCiDDrkMgNwGlyedgbtTBUepCvSg93b+vVmRj7YMPtBhioOUo3qCn6wpqhxfnth 9BCnPW7JxqUw/NJdlk9hKumaUZq+MK8G+kdYcIDg6xmAkWSUVP2QKlWavfMCxqRP +dN6T2iHsKFe =UePT -----END PGP SIGNATURE----- Merge tag 'pm-6.9-rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/rafael/linux-pm Pull power management updates from Rafael Wysocki: "From the functional perspective, the most significant change here is the addition of support for Energy Models that can be updated dynamically at run time. There is also the addition of LZ4 compression support for hibernation, the new preferred core support in amd-pstate, new platforms support in the Intel RAPL driver, new model-specific EPP handling in intel_pstate and more. Apart from that, the cpufreq default transition delay is reduced from 10 ms to 2 ms (along with some related adjustments), the system suspend statistics code undergoes a significant rework and there is a usual bunch of fixes and code cleanups all over. Specifics: - Allow the Energy Model to be updated dynamically (Lukasz Luba) - Add support for LZ4 compression algorithm to the hibernation image creation and loading code (Nikhil V) - Fix and clean up system suspend statistics collection (Rafael Wysocki) - Simplify device suspend and resume handling in the power management core code (Rafael Wysocki) - Fix PCI hibernation support description (Yiwei Lin) - Make hibernation take set_memory_ro() return values into account as appropriate (Christophe Leroy) - Set mem_sleep_current during kernel command line setup to avoid an ordering issue with handling it (Maulik Shah) - Fix wake IRQs handling when pm_runtime_force_suspend() is used as a driver's system suspend callback (Qingliang Li) - Simplify pm_runtime_get_if_active() usage and add a replacement for pm_runtime_put_autosuspend() (Sakari Ailus) - Add a tracepoint for runtime_status changes tracking (Vilas Bhat) - Fix section title markdown in the runtime PM documentation (Yiwei Lin) - Enable preferred core support in the amd-pstate cpufreq driver (Meng Li) - Fix min_perf assignment in amd_pstate_adjust_perf() and make the min/max limit perf values in amd-pstate always stay within the (highest perf, lowest perf) range (Tor Vic, Meng Li) - Allow intel_pstate to assign model-specific values to strings used in the EPP sysfs interface and make it do so on Meteor Lake (Srinivas Pandruvada) - Drop long-unused cpudata::prev_cummulative_iowait from the intel_pstate cpufreq driver (Jiri Slaby) - Prevent scaling_cur_freq from exceeding scaling_max_freq when the latter is an inefficient frequency (Shivnandan Kumar) - Change default transition delay in cpufreq to 2ms (Qais Yousef) - Remove references to 10ms minimum sampling rate from comments in the cpufreq code (Pierre Gondois) - Honour transition_latency over transition_delay_us in cpufreq (Qais Yousef) - Stop unregistering cpufreq cooling on CPU hot-remove (Viresh Kumar) - General enhancements / cleanups to ARM cpufreq drivers (tianyu2, Nícolas F. R. A. Prado, Erick Archer, Arnd Bergmann, Anastasia Belova) - Update cpufreq-dt-platdev to block/approve devices (Richard Acayan) - Make the SCMI cpufreq driver get a transition delay value from firmware (Pierre Gondois) - Prevent the haltpoll cpuidle governor from shrinking guest poll_limit_ns below grow_start (Parshuram Sangle) - Avoid potential overflow in integer multiplication when computing cpuidle state parameters (C Cheng) - Adjust MWAIT hint target C-state computation in the ACPI cpuidle driver and in intel_idle to return a correct value for C0 (He Rongguang) - Address multiple issues in the TPMI RAPL driver and add support for new platforms (Lunar Lake-M, Arrow Lake) to Intel RAPL (Zhang Rui) - Fix freq_qos_add_request() return value check in dtpm_cpu (Daniel Lezcano) - Fix kernel-doc for dtpm_create_hierarchy() (Yang Li) - Fix file leak in get_pkg_num() in x86_energy_perf_policy (Samasth Norway Ananda) - Fix cpupower-frequency-info.1 man page typo (Jan Kratochvil) - Fix a couple of warnings in the OPP core code related to W=1 builds (Viresh Kumar) - Move dev_pm_opp_{init|free}_cpufreq_table() to pm_opp.h (Viresh Kumar) - Extend dev_pm_opp_data with turbo support (Sibi Sankar) - dt-bindings: drop maxItems from inner items (David Heidelberg)" * tag 'pm-6.9-rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/rafael/linux-pm: (95 commits) dt-bindings: opp: drop maxItems from inner items OPP: debugfs: Fix warning around icc_get_name() OPP: debugfs: Fix warning with W=1 builds cpufreq: Move dev_pm_opp_{init|free}_cpufreq_table() to pm_opp.h OPP: Extend dev_pm_opp_data with turbo support Fix cpupower-frequency-info.1 man page typo cpufreq: scmi: Set transition_delay_us firmware: arm_scmi: Populate fast channel rate_limit firmware: arm_scmi: Populate perf commands rate_limit cpuidle: ACPI/intel: fix MWAIT hint target C-state computation PM: sleep: wakeirq: fix wake irq warning in system suspend powercap: dtpm: Fix kernel-doc for dtpm_create_hierarchy() function cpufreq: Don't unregister cpufreq cooling on CPU hotplug PM: suspend: Set mem_sleep_current during kernel command line setup cpufreq: Honour transition_latency over transition_delay_us cpufreq: Limit resolving a frequency to policy min/max Documentation: PM: Fix runtime_pm.rst markdown syntax cpufreq: amd-pstate: adjust min/max limit perf cpufreq: Remove references to 10ms min sampling rate cpufreq: intel_pstate: Update default EPPs for Meteor Lake ... |
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Linus Torvalds
|
b29f377119 |
x86/boot changes for v6.9:
- Continuing work by Ard Biesheuvel to improve the x86 early startup code, with the long-term goal to make it position independent: - Get rid of early accesses to global objects, either by moving them to the stack, deferring the access until later, or dropping the globals entirely. - Move all code that runs early via the 1:1 mapping into .head.text, and move code that does not out of it, so that build time checks can be added later to ensure that no inadvertent absolute references were emitted into code that does not tolerate them. - Remove fixup_pointer() and occurrences of __pa_symbol(), which rely on the compiler emitting absolute references, which is not guaranteed. - Improve the early console code. - Add early console message about ignored NMIs, so that users are at least warned about their existence - even if we cannot do anything about them. - Improve the kexec code's kernel load address handling. - Enable more X86S (simplified x86) bits. - Simplify early boot GDT handling - Micro-optimize the boot code a bit - Misc cleanups. Signed-off-by: Ingo Molnar <mingo@kernel.org> -----BEGIN PGP SIGNATURE----- iQJFBAABCgAvFiEEBpT5eoXrXCwVQwEKEnMQ0APhK1gFAmXwIg8RHG1pbmdvQGtl cm5lbC5vcmcACgkQEnMQ0APhK1jVHg//bzqXyzhoppEP4QMPVEHQdhy3UN33djwF HsjNgw/V1P5O5CPvQehCOgrJOcQ8LLPSA68ugG7FY9mzBjvnGnINXzWzukaaQGTh EXIwz/uw2++m3JMDt2PAzfeNZ8LlHb8V2xgexfkBFE7O3BX6ThIg9BKaFH1n7XOY AQXRRxlB5YThS3Rcqqeo/jN9bQZn7crqeWVS5Dk0bL1f53Y8SJjKIA4mHUb4xjbo LX0Z61G9Qz5e26U1U89tloW82zmiD/pvvuIQUnVVtPVMhSoFKhrxYI9MTPLjj0vt p+5UwMutFdJyjbTIsito7YSE6OG6RA2d1uoQjTQCx0sr6NtABbDE5QrciQTfHRGa 1TyScbineiCf3GtQMuDRAKTbaUzWlUzmk9SrpUxK8UR+R6xVvA4GElUUvGe0/dKh QnYD+i6wr71S80t3gHqbBGcs4xjUS5rmpTXJ86VPp9hHB+l/2tvBnNro1JNxM/Ei wchQLHbaeWwztnceaGOWlsfAln0prtIYvVOUeTbn6rUFTjgSE2kS2h6GD3h3ZVnM az5G+bhjWm6eDL6QoBN6XsZ1UF0O7hcjOa2UpS8N1ek0b4E/LVwtMnmpexM09ehE FoBAsxYy5SuGCYab636rMmAmHwRjDozwNNJG+6RrrAYwqoQDqKiSnIismJwcOEKD 6UzK/KBwxuI= =zvw3 -----END PGP SIGNATURE----- Merge tag 'x86-boot-2024-03-12' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull x86 boot updates from Ingo Molnar: - Continuing work by Ard Biesheuvel to improve the x86 early startup code, with the long-term goal to make it position independent: - Get rid of early accesses to global objects, either by moving them to the stack, deferring the access until later, or dropping the globals entirely - Move all code that runs early via the 1:1 mapping into .head.text, and move code that does not out of it, so that build time checks can be added later to ensure that no inadvertent absolute references were emitted into code that does not tolerate them - Remove fixup_pointer() and occurrences of __pa_symbol(), which rely on the compiler emitting absolute references, which is not guaranteed - Improve the early console code - Add early console message about ignored NMIs, so that users are at least warned about their existence - even if we cannot do anything about them - Improve the kexec code's kernel load address handling - Enable more X86S (simplified x86) bits - Simplify early boot GDT handling - Micro-optimize the boot code a bit - Misc cleanups * tag 'x86-boot-2024-03-12' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (22 commits) x86/sev: Move early startup code into .head.text section x86/sme: Move early SME kernel encryption handling into .head.text x86/boot: Move mem_encrypt= parsing to the decompressor efi/libstub: Add generic support for parsing mem_encrypt= x86/startup_64: Simplify virtual switch on primary boot x86/startup_64: Simplify calculation of initial page table address x86/startup_64: Defer assignment of 5-level paging global variables x86/startup_64: Simplify CR4 handling in startup code x86/boot: Use 32-bit XOR to clear registers efi/x86: Set the PE/COFF header's NX compat flag unconditionally x86/boot/64: Load the final kernel GDT during early boot directly, remove startup_gdt[] x86/boot/64: Use RIP_REL_REF() to access early_top_pgt[] x86/boot/64: Use RIP_REL_REF() to access early page tables x86/boot/64: Use RIP_REL_REF() to access '__supported_pte_mask' x86/boot/64: Use RIP_REL_REF() to access early_dynamic_pgts[] x86/boot/64: Use RIP_REL_REF() to assign 'phys_base' x86/boot/64: Simplify global variable accesses in GDT/IDT programming x86/trampoline: Bypass compat mode in trampoline_start64() if not needed kexec: Allocate kernel above bzImage's pref_address x86/boot: Add a message about ignored early NMIs ... |
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Linus Torvalds
|
0e33cf955f |
* Mitigate RFDS vulnerability
-----BEGIN PGP SIGNATURE----- iQIzBAABCgAdFiEEV76QKkVc4xCGURexaDWVMHDJkrAFAmXvZgoACgkQaDWVMHDJ krC2Eg//aZKBp97/DSzRqXKDwJzVUr0sGJ9cii0gVT1sI+1U6ZZCh/roVH4xOT5/ HqtOOnQ+X0mwUx2VG3Yv2VPI7VW68sJ3/y9D8R4tnMEsyQ4CmDw96Pre3NyKr/Av jmW7SK94fOkpNFJOMk3zpk7GtRUlCsVkS1P61dOmMYduguhel/V20rWlx83BgnAY Rf/c3rBjqe8Ri3rzBP5icY/d6OgwoafuhME31DD/j6oKOh+EoQBvA4urj46yMTMX /mrK7hCm/wqwuOOvgGbo7sfZNBLCYy3SZ3EyF4beDERhPF1DaSvCwOULpGVJroqu SelFsKXAtEbYrDgsan+MYlx3bQv43q7PbHska1gjkH91plO4nAsssPr5VsusUKmT sq8jyBaauZb40oLOSgooL4RqAHrfs8q5695Ouwh/DB/XovMezUI1N/BkpGFmqpJI o2xH9P5q520pkB8pFhN9TbRuFSGe/dbWC24QTq1DUajo3M3RwcwX6ua9hoAKLtDF pCV5DNcVcXHD3Cxp0M5dQ5JEAiCnW+ZpUWgxPQamGDNW5PEvjDmFwql2uWw/qOuW lkheOIffq8ejUBQFbN8VXfIzzeeKQNFiIcViaqGITjIwhqdHAzVi28OuIGwtdh3g ywLzSC8yvyzgKrNBgtFMr3ucKN0FoPxpBro253xt2H7w8srXW64= =5V9t -----END PGP SIGNATURE----- Merge tag 'rfds-for-linus-2024-03-11' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull x86 RFDS mitigation from Dave Hansen: "RFDS is a CPU vulnerability that may allow a malicious userspace to infer stale register values from kernel space. Kernel registers can have all kinds of secrets in them so the mitigation is basically to wait until the kernel is about to return to userspace and has user values in the registers. At that point there is little chance of kernel secrets ending up in the registers and the microarchitectural state can be cleared. This leverages some recent robustness fixes for the existing MDS vulnerability. Both MDS and RFDS use the VERW instruction for mitigation" * tag 'rfds-for-linus-2024-03-11' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: KVM/x86: Export RFDS_NO and RFDS_CLEAR to guests x86/rfds: Mitigate Register File Data Sampling (RFDS) Documentation/hw-vuln: Add documentation for RFDS x86/mmio: Disable KVM mitigation when X86_FEATURE_CLEAR_CPU_BUF is set |
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Ingo Molnar
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2e2bc42c83 |
Merge branch 'linus' into x86/boot, to resolve conflict
There's a new conflict with Linus's upstream tree, because in the following merge conflict resolution in <asm/coco.h>: |
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Linus Torvalds
|
685d982112 |
Core x86 changes for v6.9:
- The biggest change is the rework of the percpu code, to support the 'Named Address Spaces' GCC feature, by Uros Bizjak: - This allows C code to access GS and FS segment relative memory via variables declared with such attributes, which allows the compiler to better optimize those accesses than the previous inline assembly code. - The series also includes a number of micro-optimizations for various percpu access methods, plus a number of cleanups of %gs accesses in assembly code. - These changes have been exposed to linux-next testing for the last ~5 months, with no known regressions in this area. - Fix/clean up __switch_to()'s broken but accidentally working handling of FPU switching - which also generates better code. - Propagate more RIP-relative addressing in assembly code, to generate slightly better code. - Rework the CPU mitigations Kconfig space to be less idiosyncratic, to make it easier for distros to follow & maintain these options. - Rework the x86 idle code to cure RCU violations and to clean up the logic. - Clean up the vDSO Makefile logic. - Misc cleanups and fixes. [ Please note that there's a higher number of merge commits in this branch (three) than is usual in x86 topic trees. This happened due to the long testing lifecycle of the percpu changes that involved 3 merge windows, which generated a longer history and various interactions with other core x86 changes that we felt better about to carry in a single branch. ] Signed-off-by: Ingo Molnar <mingo@kernel.org> -----BEGIN PGP SIGNATURE----- iQJFBAABCgAvFiEEBpT5eoXrXCwVQwEKEnMQ0APhK1gFAmXvB0gRHG1pbmdvQGtl cm5lbC5vcmcACgkQEnMQ0APhK1jUqRAAqnEQPiabF5acQlHrwviX+cjSobDlqtH5 9q2AQy9qaEHapzD0XMOxvFye6XIvehGOGxSPvk6CoviSxBND8rb56lvnsEZuLeBV Bo5QSIL2x42Zrvo11iPHwgXZfTIusU90sBuKDRFkYBAxY3HK2naMDZe8MAsYCUE9 nwgHF8DDc/NYiSOXV8kosWoWpNIkoK/STyH5bvTQZMqZcwyZ49AIeP1jGZb/prbC e/rbnlrq5Eu6brpM7xo9kELO0Vhd34urV14KrrIpdkmUKytW2KIsyvW8D6fqgDBj NSaQLLcz0pCXbhF+8Nqvdh/1coR4L7Ymt08P1rfEjCsQgb/2WnSAGUQuC5JoGzaj ngkbFcZllIbD9gNzMQ1n4Aw5TiO+l9zxCqPC/r58Uuvstr+K9QKlwnp2+B3Q73Ft rojIJ04NJL6lCHdDgwAjTTks+TD2PT/eBWsDfJ/1pnUWttmv9IjMpnXD5sbHxoiU 2RGGKnYbxXczYdq/ALYDWM6JXpfnJZcXL3jJi0IDcCSsb92xRvTANYFHnTfyzGfw EHkhbF4e4Vy9f6QOkSP3CvW5H26BmZS9DKG0J9Il5R3u2lKdfbb5vmtUmVTqHmAD Ulo5cWZjEznlWCAYSI/aIidmBsp9OAEvYd+X7Z5SBIgTfSqV7VWHGt0BfA1heiVv F/mednG0gGc= =3v4F -----END PGP SIGNATURE----- Merge tag 'x86-core-2024-03-11' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull core x86 updates from Ingo Molnar: - The biggest change is the rework of the percpu code, to support the 'Named Address Spaces' GCC feature, by Uros Bizjak: - This allows C code to access GS and FS segment relative memory via variables declared with such attributes, which allows the compiler to better optimize those accesses than the previous inline assembly code. - The series also includes a number of micro-optimizations for various percpu access methods, plus a number of cleanups of %gs accesses in assembly code. - These changes have been exposed to linux-next testing for the last ~5 months, with no known regressions in this area. - Fix/clean up __switch_to()'s broken but accidentally working handling of FPU switching - which also generates better code - Propagate more RIP-relative addressing in assembly code, to generate slightly better code - Rework the CPU mitigations Kconfig space to be less idiosyncratic, to make it easier for distros to follow & maintain these options - Rework the x86 idle code to cure RCU violations and to clean up the logic - Clean up the vDSO Makefile logic - Misc cleanups and fixes * tag 'x86-core-2024-03-11' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (52 commits) x86/idle: Select idle routine only once x86/idle: Let prefer_mwait_c1_over_halt() return bool x86/idle: Cleanup idle_setup() x86/idle: Clean up idle selection x86/idle: Sanitize X86_BUG_AMD_E400 handling sched/idle: Conditionally handle tick broadcast in default_idle_call() x86: Increase brk randomness entropy for 64-bit systems x86/vdso: Move vDSO to mmap region x86/vdso/kbuild: Group non-standard build attributes and primary object file rules together x86/vdso: Fix rethunk patching for vdso-image-{32,64}.o x86/retpoline: Ensure default return thunk isn't used at runtime x86/vdso: Use CONFIG_COMPAT_32 to specify vdso32 x86/vdso: Use $(addprefix ) instead of $(foreach ) x86/vdso: Simplify obj-y addition x86/vdso: Consolidate targets and clean-files x86/bugs: Rename CONFIG_RETHUNK => CONFIG_MITIGATION_RETHUNK x86/bugs: Rename CONFIG_CPU_SRSO => CONFIG_MITIGATION_SRSO x86/bugs: Rename CONFIG_CPU_IBRS_ENTRY => CONFIG_MITIGATION_IBRS_ENTRY x86/bugs: Rename CONFIG_CPU_UNRET_ENTRY => CONFIG_MITIGATION_UNRET_ENTRY x86/bugs: Rename CONFIG_SLS => CONFIG_MITIGATION_SLS ... |
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Linus Torvalds
|
fcc196579a |
Misc cleanups, including a large series from Thomas Gleixner to
cure Sparse warnings. Signed-off-by: Ingo Molnar <mingo@kernel.org> -----BEGIN PGP SIGNATURE----- iQJFBAABCgAvFiEEBpT5eoXrXCwVQwEKEnMQ0APhK1gFAmXvAFQRHG1pbmdvQGtl cm5lbC5vcmcACgkQEnMQ0APhK1hkDRAAwASVCQ88kiGqNQtHibXlK54mAFGsc0xv T8OPds15DUzoLg/y8lw0X0DHly6MdGXVmygybejNIw2BN4lhLjQ7f4Ria7rv7LDy FcI1jfvysEMyYRFHGRefb/GBFzuEfKoROwf+QylGmKz0ZK674gNMngsI9pwOBdbe wElq3IkHoNuTUfH9QA4BvqGam1n122nvVTop3g0PMHWzx9ky8hd/BEUjXFZhfINL zZk3fwUbER2QYbhHt+BN2GRbdf2BrKvqTkXpKxyXTdnpiqAo0CzBGKerZ62H82qG n737Nib1lrsfM5yDHySnau02aamRXaGvCJUd6gpac1ZmNpZMWhEOT/0Tr/Nj5ztF lUAvKqMZn/CwwQky1/XxD0LHegnve0G+syqQt/7x7o1ELdiwTzOWMCx016UeodzB yyHf3Xx9J8nt3snlrlZBaGEfegg9ePLu5Vir7iXjg3vrloUW8A+GZM62NVxF4HVV QWF80BfWf8zbLQ/OS1382t1shaioIe5pEXzIjcnyVIZCiiP2/5kP2O6P4XVbwVlo Ca5eEt8U1rtsLUZaCzI2ZRTQf/8SLMQWyaV+ZmkVwcVdFoARC31EgdE5wYYoZOf6 7Vl+rXd+rZCuTWk0ZgznCZEm75aaqukaQCBa2V8hIVociLFVzhg/Tjedv7s0CspA hNfxdN1LDZc= =0eJ7 -----END PGP SIGNATURE----- Merge tag 'x86-cleanups-2024-03-11' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull x86 cleanups from Ingo Molnar: "Misc cleanups, including a large series from Thomas Gleixner to cure sparse warnings" * tag 'x86-cleanups-2024-03-11' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: x86/nmi: Drop unused declaration of proc_nmi_enabled() x86/callthunks: Use EXPORT_PER_CPU_SYMBOL_GPL() for per CPU variables x86/cpu: Provide a declaration for itlb_multihit_kvm_mitigation x86/cpu: Use EXPORT_PER_CPU_SYMBOL_GPL() for x86_spec_ctrl_current x86/uaccess: Add missing __force to casts in __access_ok() and valid_user_address() x86/percpu: Cure per CPU madness on UP smp: Consolidate smp_prepare_boot_cpu() x86/msr: Add missing __percpu annotations x86/msr: Prepare for including <linux/percpu.h> into <asm/msr.h> perf/x86/amd/uncore: Fix __percpu annotation x86/nmi: Remove an unnecessary IS_ENABLED(CONFIG_SMP) x86/apm_32: Remove dead function apm_get_battery_status() x86/insn-eval: Fix function param name in get_eff_addr_sib() |
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Linus Torvalds
|
d69ad12c78 |
x86/build changes for v6.9:
- Reduce <asm/bootparam.h> dependencies - Simplify <asm/efi.h> - Unify *_setup_data definitions into <asm/setup_data.h> - Reduce the size of <asm/bootparam.h> Signed-off-by: Ingo Molnar <mingo@kernel.org> -----BEGIN PGP SIGNATURE----- iQJFBAABCgAvFiEEBpT5eoXrXCwVQwEKEnMQ0APhK1gFAmXu+VERHG1pbmdvQGtl cm5lbC5vcmcACgkQEnMQ0APhK1jQCxAAiESAaRnUY3IzENu502LHWdUUihbgCUdp zNE5GDX4+FCt4w7DXUGbkoRchsrZEISR4LeEmuQ29wkvclPOhr9LlI3uNpM4l/E+ e52B8/ig6Yd+D3g7FL7ck+OnTjEQ+V/SifR/5YGKr5TownLoCJXBlitaZsShvVcT 70+NN/BiJC/n3D8/CYzFUYB6uj3YjZYidFb0dTyJOCVEJxe5m0NCQAtk3bMovwpl xmvqVs++VFCEYdcTxK40XBlbcP6KF5DZFVvGw9/vKdU6TKsXwCkrh7GCiFXOJ8bj vEHuFAx9tspAaAAnVCQCp42RLbjldvSqGCmif/iswN8JLwAd1FwWf0VXQJaf1qtZ XDB+KBRDIrM+arD9qrZb6ghYkenovq8yyEwXETHq79h7ICpCAqm9XE2PQKP/IJZ6 7A1zdXnHaa/VJEKUZg7Jg9E9c1BsqXCGrOUpLIuEnks//nNgU68JbsRr+9LF9UnB LEPQBUuAwPR8cb+JVmN7NNOJpCrjIikx2yKU+BJ5ywCZ5qKs7VA6IxbPLvtBVEv7 eokYFHJb4Wzgauxxisy6KaaLJc+hIz680bMfjMBFnZ95cgh7ZYTMxO0G0eozAVNX BzOQTfPocLBWJ4qiyMnItvWKE1ioUjcWneq46Y+njD5Ow66H/Y/uOmPa3dBj9AxD aGkMg3ceTy0= =leh5 -----END PGP SIGNATURE----- Merge tag 'x86-build-2024-03-11' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull x86 build updates from Ingo Molnar: - Reduce <asm/bootparam.h> dependencies - Simplify <asm/efi.h> - Unify *_setup_data definitions into <asm/setup_data.h> - Reduce the size of <asm/bootparam.h> * tag 'x86-build-2024-03-11' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: x86: Do not include <asm/bootparam.h> in several files x86/efi: Implement arch_ima_efi_boot_mode() in source file x86/setup: Move internal setup_data structures into setup_data.h x86/setup: Move UAPI setup structures into setup_data.h |
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Linus Torvalds
|
1f75619a72 |
- Fix a wrong check in the function reporting whether a CPU executes (or
not) a NMI handler - Ratelimit unknown NMIs messages in order to not potentially slow down the machine - Other fixlets -----BEGIN PGP SIGNATURE----- iQIzBAABCgAdFiEEzv7L6UO9uDPlPSfHEsHwGGHeVUoFAmXvN0wACgkQEsHwGGHe VUqZLg//fo0puvI2XVjcyW2aNZXNyCWUID5J0HvIZqLveQQQzOopfuX4NLfgKSRR GUX3k/jlfO9pku+gz6rQRYi8kaTlY8rScf9XpbUBgZZg3Pz2/ySel5uhPpHatgZ7 Zj455XALGVLA3T4bFKfCvUGKmRVmSTyXgPg3i/yFpfVzRZ8yhvAyJWJSWxJpFOpC Eeg/cXUUPjlb2qOom0Bk9BEjG8Ez76yImAlN5ys/csG2Fe7iE3rU+DQ2IfU/yLfI 22QNZa8xGJY47c7iP1A/tGsxKGu5Pjsz4I2QvobWhteeiu+03g2NUWUcAaP+3/GN 6hj2IeiNAkhDcWaJMS9U5vaVAcfDZzTEErkPf896bk6lrR0UY1CRQlJzEQZLz1Vy 0ZVUuppY2hBcTj3YA9h65a/+sdsxAUG4BdsUJ63jHejJYEPN5YSFvL5wXZlxj3GO XVVMsHMs9Lgnz1x+xzAB8SmmoPSj6qdMneY1Xp92cEtV6QQM/EinTfIcTUtvDACZ 9FJ77Iu6Up4hemftTGOC8eVqr+V0Q8M5x2Xs8NQAwlq9dnFVQCIwd/LjdRDyJ3Gw ksFrq6Cv94Fi4bqmQi4CY04GH3kc5ua9sDeTM7rkBMm6RRSTO2NBgIOqHcBbrlOT B3kSUqoUB6BEqlRRqP/YZ8YSOL5FWk2A2WDKtp8+ThkDYixGy1M= =Jt9B -----END PGP SIGNATURE----- Merge tag 'x86_misc_for_v6.9_rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull misc x86 fixes from Borislav Petkov: - Fix a wrong check in the function reporting whether a CPU executes (or not) a NMI handler - Ratelimit unknown NMIs messages in order to not potentially slow down the machine - Other fixlets * tag 'x86_misc_for_v6.9_rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: x86/nmi: Fix the inverse "in NMI handler" check Documentation/maintainer-tip: Add C++ tail comments exception Documentation/maintainer-tip: Add Closes tag x86/nmi: Rate limit unknown NMI messages Documentation/kernel-parameters: Add spec_rstack_overflow to mitigations=off |
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Linus Torvalds
|
38b334fc76 |
- Add the x86 part of the SEV-SNP host support. This will allow the
kernel to be used as a KVM hypervisor capable of running SNP (Secure Nested Paging) guests. Roughly speaking, SEV-SNP is the ultimate goal of the AMD confidential computing side, providing the most comprehensive confidential computing environment up to date. This is the x86 part and there is a KVM part which did not get ready in time for the merge window so latter will be forthcoming in the next cycle. - Rework the early code's position-dependent SEV variable references in order to allow building the kernel with clang and -fPIE/-fPIC and -mcmodel=kernel - The usual set of fixes, cleanups and improvements all over the place -----BEGIN PGP SIGNATURE----- iQIzBAABCgAdFiEEzv7L6UO9uDPlPSfHEsHwGGHeVUoFAmXvH0wACgkQEsHwGGHe VUrzmA//VS/n6dhHRnm/nAGngr4PeegkgV1OhyKYFfiZ272rT6P9QvblQrgcY0dc Ij1DOhEKlke51pTHvMOQ33B3P4Fuc0mx3dpCLY0up5V26kzQiKCjRKEkC4U1bcw8 W4GqMejaR89bE14bYibmwpSib9T/uVsV65eM3xf1iF5UvsnoUaTziymDoy+nb43a B1pdd5vcl4mBNqXeEvt0qjg+xkMLpWUI9tJDB8mbMl/cnIFGgMZzBaY8oktHSROK QpuUnKegOgp1RXpfLbNjmZ2Q4Rkk4MNazzDzWq3EIxaRjXL3Qp507ePK7yeA2qa0 J3jCBQc9E2j7lfrIkUgNIzOWhMAXM2YH5bvH6UrIcMi1qsWJYDmkp2MF1nUedjdf Wj16/pJbeEw1aKKIywJGwsmViSQju158vY3SzXG83U/A/Iz7zZRHFmC/ALoxZptY Bi7VhfcOSpz98PE3axnG8CvvxRDWMfzBr2FY1VmQbg6VBNo1Xl1aP/IH1I8iQNKg /laBYl/qP+1286TygF1lthYROb1lfEIJprgi2xfO6jVYUqPb7/zq2sm78qZRfm7l 25PN/oHnuidfVfI/H3hzcGubjOG9Zwra8WWYBB2EEmelf21rT0OLqq+eS4T6pxFb GNVfc0AzG77UmqbrpkAMuPqL7LrGaSee4NdU3hkEdSphlx1/YTo= =c1ps -----END PGP SIGNATURE----- Merge tag 'x86_sev_for_v6.9_rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull x86 SEV updates from Borislav Petkov: - Add the x86 part of the SEV-SNP host support. This will allow the kernel to be used as a KVM hypervisor capable of running SNP (Secure Nested Paging) guests. Roughly speaking, SEV-SNP is the ultimate goal of the AMD confidential computing side, providing the most comprehensive confidential computing environment up to date. This is the x86 part and there is a KVM part which did not get ready in time for the merge window so latter will be forthcoming in the next cycle. - Rework the early code's position-dependent SEV variable references in order to allow building the kernel with clang and -fPIE/-fPIC and -mcmodel=kernel - The usual set of fixes, cleanups and improvements all over the place * tag 'x86_sev_for_v6.9_rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (36 commits) x86/sev: Disable KMSAN for memory encryption TUs x86/sev: Dump SEV_STATUS crypto: ccp - Have it depend on AMD_IOMMU iommu/amd: Fix failure return from snp_lookup_rmpentry() x86/sev: Fix position dependent variable references in startup code crypto: ccp: Make snp_range_list static x86/Kconfig: Remove CONFIG_AMD_MEM_ENCRYPT_ACTIVE_BY_DEFAULT Documentation: virt: Fix up pre-formatted text block for SEV ioctls crypto: ccp: Add the SNP_SET_CONFIG command crypto: ccp: Add the SNP_COMMIT command crypto: ccp: Add the SNP_PLATFORM_STATUS command x86/cpufeatures: Enable/unmask SEV-SNP CPU feature KVM: SEV: Make AVIC backing, VMSA and VMCB memory allocation SNP safe crypto: ccp: Add panic notifier for SEV/SNP firmware shutdown on kdump iommu/amd: Clean up RMP entries for IOMMU pages during SNP shutdown crypto: ccp: Handle legacy SEV commands when SNP is enabled crypto: ccp: Handle non-volatile INIT_EX data when SNP is enabled crypto: ccp: Handle the legacy TMR allocation when SNP is enabled x86/sev: Introduce an SNP leaked pages list crypto: ccp: Provide an API to issue SEV and SNP commands ... |
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Linus Torvalds
|
2edfd1046f |
- Rework different aspects of the resctrl code like adding arch-specific
accessors and splitting the locking, in order to accomodate ARM's MPAM implementation of hw resource control and be able to use the same filesystem control interface like on x86. Work by James Morse - Improve the memory bandwidth throttling heuristic to handle workloads with not too regular load levels which end up penalized unnecessarily - Use CPUID to detect the memory bandwidth enforcement limit on AMD - The usual set of fixes -----BEGIN PGP SIGNATURE----- iQIzBAABCgAdFiEEzv7L6UO9uDPlPSfHEsHwGGHeVUoFAmXvGP8ACgkQEsHwGGHe VUo7nw//e3qGYx09qA6UShcIjz4e9cVM3gUraBn82rd4T6oeIfU5ecJn6auJzlVO cvlRFumaLbrNZXHd+Ww5VG0g0LVEcLmqS2ER295Rbp5gTvbDTNrmIAgriUpxER42 UkVtI4/y+P5980Y0Jl1j5xECACIdXFxJEGO3Eiok0rk3ZRhcFZgf1T2/35F2Jiif hXAtvmkeTBxldhcdgovdaoR7SIY4MBZjgB1zX5WqJGlFdxfc6RaYbpCnl8rVXF2J 2DSUvHjtXco9MWNDm9c2bwNzXHV3EaAvUiCwmfoNeXCCJEqpyYFaPs3U61RnlwQe ucAtSXeRx8YmJAVNJTjSR4Cou0stQDJdLZx0yYgoAvhXqwcpePilMzfHwdHkZ/5V K7Kwl+VbJ1JxnTJgYmcgJ3juF7R7VW+stiKZOTkFYvBsWzXvCK5w+w1JScbdphqa P878tySa58ehIaEf9/472QpA+zbItENsf1OFytfbJPKAJhnKMG73X4lrt6swSZBW a1rmTGqG0ufuPiXT9XDajgeFR/15RQWcYtXPVXmWLaIJ+hHhRc57v11qy0uIMs9V o0uRtdJP2SL+7rEm26VPjBXyS3orf2tvigrXnYeyNpTR/RVhMHL4n+0kxs4p9ELf 3oD4vd/KqyGHo7LO5QMm52eSxfHLpJzgFL02inBgFTFtmWMWpy8= =v7bo -----END PGP SIGNATURE----- Merge tag 'x86_cache_for_v6.9_rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull resource control updates from Borislav Petkov: - Rework different aspects of the resctrl code like adding arch-specific accessors and splitting the locking, in order to accomodate ARM's MPAM implementation of hw resource control and be able to use the same filesystem control interface like on x86. Work by James Morse - Improve the memory bandwidth throttling heuristic to handle workloads with not too regular load levels which end up penalized unnecessarily - Use CPUID to detect the memory bandwidth enforcement limit on AMD - The usual set of fixes * tag 'x86_cache_for_v6.9_rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (30 commits) x86/resctrl: Remove lockdep annotation that triggers false positive x86/resctrl: Separate arch and fs resctrl locks x86/resctrl: Move domain helper migration into resctrl_offline_cpu() x86/resctrl: Add CPU offline callback for resctrl work x86/resctrl: Allow overflow/limbo handlers to be scheduled on any-but CPU x86/resctrl: Add CPU online callback for resctrl work x86/resctrl: Add helpers for system wide mon/alloc capable x86/resctrl: Make rdt_enable_key the arch's decision to switch x86/resctrl: Move alloc/mon static keys into helpers x86/resctrl: Make resctrl_mounted checks explicit x86/resctrl: Allow arch to allocate memory needed in resctrl_arch_rmid_read() x86/resctrl: Allow resctrl_arch_rmid_read() to sleep x86/resctrl: Queue mon_event_read() instead of sending an IPI x86/resctrl: Add cpumask_any_housekeeping() for limbo/overflow x86/resctrl: Move CLOSID/RMID matching and setting to use helpers x86/resctrl: Allocate the cleanest CLOSID by searching closid_num_dirty_rmid x86/resctrl: Use __set_bit()/__clear_bit() instead of open coding x86/resctrl: Track the number of dirty RMID a CLOSID has x86/resctrl: Allow RMID allocation to be scoped by CLOSID x86/resctrl: Access per-rmid structures by index ... |
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Linus Torvalds
|
bfdb395a7c |
- Relax the PAT MSR programming which was unnecessarily using the MTRR
programming protocol of disabling the cache around the changes. The reason behind this is the current algorithm triggering a #VE exception for TDX guests and unnecessarily complicating things -----BEGIN PGP SIGNATURE----- iQIzBAABCgAdFiEEzv7L6UO9uDPlPSfHEsHwGGHeVUoFAmXux8sACgkQEsHwGGHe VUodOw//diEAM3//Ht733soDDMYuc3pnLBgpIvEYtU7nvo7rVuNJASUny+WmQNVl Szm1ATl88I0H1t54CAdvd398csKlZPmsO/puu/sLiJrvmjXtH4raE/u9lFjpdBwo yoSbgb8v15No0JlszeE782rJfAHQ01FK7LbEuV0EKF3dx+KDZQPY8E+/LGVNeyh4 X7OWh2RJHUKENYxYgQBBuw2Hkm9HXIgyQiKe9eIrEwpHskCmZ/y8F8LazohVmw8L XqlUZFCmKPwHsLE44sWq5coXoN28RKZfQ2D7jvhts8AwwU1RRoFv5WgCXhFe0Rfe dPfLm93PvxxUYV0OHyCsKeJJkA8KH+vuXiaC1iw7Za6Ipkio1LzNAc/pxa/Q4x8Y dwOM+WI/OdXz8KHQAJlU37ZNGbnA/ETWumNN7SrqqxvKzUbjcjDwZqIqneFT0dg6 c5quB/fgj+lL1xXk9EDE4HrOkzLv3/ax449oLFkJ3JKfRRMAzQalRaTwjTh/hufM 7Eig3iNRN+G6bItXC6XoQjDBEEJP7LplXT8jNQkVbHyMg8WPPToxtJGXBnR73PQp q8+Iv3gLqM5EPqetdAtElVRhikmPHPqCdcBj47EHCoPFsQ1E9b72BUutDH0MVEG4 BIFCWQ4DS+3OXX/BZf7P5UOcPDcGkP+2PqbUmiBRB5I3174XQDQ= =nNC0 -----END PGP SIGNATURE----- Merge tag 'x86_mtrr_for_v6.9_rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull x86 MTRR update from Borislav Petkov: - Relax the PAT MSR programming which was unnecessarily using the MTRR programming protocol of disabling the cache around the changes. The reason behind this is the current algorithm triggering a #VE exception for TDX guests and unnecessarily complicating things * tag 'x86_mtrr_for_v6.9_rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: x86/pat: Simplify the PAT programming protocol |
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Linus Torvalds
|
742582acec |
- Have AMD Zen common init code run on all families from Zen1 onwards
in order to save some future enablement effort -----BEGIN PGP SIGNATURE----- iQIzBAABCgAdFiEEzv7L6UO9uDPlPSfHEsHwGGHeVUoFAmXuxn4ACgkQEsHwGGHe VUolmQ//djDJa11FTQ5Zfnu8RjH4LFe6ZanLMIP93urT8rRuOfhlOZLHqxFGvJHy 1K1yT34NmHdXBsVWX7MxDmyhRJMOhgkkgGhYaBqZWrcV1RO26PKg8FS5B/a3BsVI Y7ryOOqWNg0Hf/++Qm0zSq21VEH3Ehq4gYitK0irX/gBbHQMdui63pbLqOHwdszG bhgMSI42EjZxpbR1ow5Bx7dia0ChBODbV4WeVB0eZo47mSJU4eu8yDPuy5+5ywwA fOOVWZ2e12HrisfJYxL01vivU/pK0WYB2gJlAKv0tp+Q2ReIvo/vh4w2MHC1c+YT X8e95rz1jzzlTkEKt4iWE/NZ1XS30z77jGbKVLxl8lsWswTtup48xLw0idLHc39L M0ayY3yXbWRVxSltucH2DVKMzG8IP5XNeG53qfiMqIHsoYbmnVgxWk/0HrtgcrSL jvcU4f2hwehO/ZvwlRyRlQACOlDSHGehNHmAVK3BqxYxM2+a9ArTA2KmnbC6+U9u LAKaXlf+lMo6lszHDqKb+GUePqZ4EX01X4EuSTRX/G6qD4RMZIu1+4sBwfr79miE uKJvRIT9DH74+OLPeSt/osdbGAK26BzJM9ZnqkdcggOMM/tHPNkQ5YTK/lStP3gl JAh8ih/Or9p3LQHNKIU1zoT0MOKv6Mbr8n+MPYAhaS/oNpST6Bs= =h7IU -----END PGP SIGNATURE----- Merge tag 'x86_cpu_for_v6.9_rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull x86 cpu update from Borislav Petkov: - Have AMD Zen common init code run on all families from Zen1 onwards in order to save some future enablement effort * tag 'x86_cpu_for_v6.9_rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: x86/CPU/AMD: Do the common init on future Zens too |
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Linus Torvalds
|
d8941ce52b |
- Constify yet another static struct bus_type instance now that the
driver core can handle that -----BEGIN PGP SIGNATURE----- iQIzBAABCgAdFiEEzv7L6UO9uDPlPSfHEsHwGGHeVUoFAmXuxYIACgkQEsHwGGHe VUrVGBAAgOB8RglOqSCaF2m//92E2TyXKGSpXXuiizuHbV4G7v+yRgunbX99XOBa wGkeja0rqovmjaSNOK3B4Hp6/eSXycdKgL8KfMRqa7VzGcla4oN097d6Nvz1YPo3 YL/8sJ04wy1CrF2Hgxj9bFF/ni0WFUgRr8GvlzKqeYGm7rRP2V8kNk64beAMa1GR XTwoqSVq9cA88/Xnw4/qnYG2HxIL+Eu1uJWtkb47EWGD6qzsgC7t+PE0aKrqcTC8 jzcbiINHPK10FxoXGq3xa1yJQH02E83w0EmjhGmQ06/3gHQVoSUFrO0k4rOJJ7KI GvAOYMGjkG/vuX0a2+FcxYoU/ODUuA8tiHK9x1HBkqLPzkiz3FPwQQ0yjfqOyo95 6dPd2EeUPjSK12xZ2LM22jyfhkIX6v02QjbmkwkP5pVcQ2WQOQVaOQzITZ/5vhLu /Eaw+wRj8PBf2Jxv8yX885+qT9owkZIH2jSsVajGpMdoOTkS4R0CmUtPq7D43pGb PEUabjcGBkSLGvHeKV0xmMeGAMDrsYNcqZ09RJdnIJ4LExI7tsR7lw5jwRSf0M/O 3Vg8ZSW4WlWkTzK5ikFitB8p6fWCe2MhE22zdEJhOei4Wzfz1MmvfcgQW6k9i2KB AqZGlkg148ItHA56+NMUIgKUqPyblQixR97VkpZoHUAlMdaSdd4= =RL7O -----END PGP SIGNATURE----- Merge tag 'ras_core_for_v6.9_rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull RAS fixlet from Borislav Petkov: - Constify yet another static struct bus_type instance now that the driver core can handle that * tag 'ras_core_for_v6.9_rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: x86/mce: Make mce_subsys const |
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Linus Torvalds
|
720c857907 |
Support for x86 Fast Return and Event Delivery (FRED):
FRED is a replacement for IDT event delivery on x86 and addresses most of the technical nightmares which IDT exposes: 1) Exception cause registers like CR2 need to be manually preserved in nested exception scenarios. 2) Hardware interrupt stack switching is suboptimal for nested exceptions as the interrupt stack mechanism rewinds the stack on each entry which requires a massive effort in the low level entry of #NMI code to handle this. 3) No hardware distinction between entry from kernel or from user which makes establishing kernel context more complex than it needs to be especially for unconditionally nestable exceptions like NMI. 4) NMI nesting caused by IRET unconditionally reenabling NMIs, which is a problem when the perf NMI takes a fault when collecting a stack trace. 5) Partial restore of ESP when returning to a 16-bit segment 6) Limitation of the vector space which can cause vector exhaustion on large systems. 7) Inability to differentiate NMI sources FRED addresses these shortcomings by: 1) An extended exception stack frame which the CPU uses to save exception cause registers. This ensures that the meta information for each exception is preserved on stack and avoids the extra complexity of preserving it in software. 2) Hardware interrupt stack switching is non-rewinding if a nested exception uses the currently interrupt stack. 3) The entry points for kernel and user context are separate and GS BASE handling which is required to establish kernel context for per CPU variable access is done in hardware. 4) NMIs are now nesting protected. They are only reenabled on the return from NMI. 5) FRED guarantees full restore of ESP 6) FRED does not put a limitation on the vector space by design because it uses a central entry points for kernel and user space and the CPUstores the entry type (exception, trap, interrupt, syscall) on the entry stack along with the vector number. The entry code has to demultiplex this information, but this removes the vector space restriction. The first hardware implementations will still have the current restricted vector space because lifting this limitation requires further changes to the local APIC. 7) FRED stores the vector number and meta information on stack which allows having more than one NMI vector in future hardware when the required local APIC changes are in place. The series implements the initial FRED support by: - Reworking the existing entry and IDT handling infrastructure to accomodate for the alternative entry mechanism. - Expanding the stack frame to accomodate for the extra 16 bytes FRED requires to store context and meta information - Providing FRED specific C entry points for events which have information pushed to the extended stack frame, e.g. #PF and #DB. - Providing FRED specific C entry points for #NMI and #MCE - Implementing the FRED specific ASM entry points and the C code to demultiplex the events - Providing detection and initialization mechanisms and the necessary tweaks in context switching, GS BASE handling etc. The FRED integration aims for maximum code reuse vs. the existing IDT implementation to the extent possible and the deviation in hot paths like context switching are handled with alternatives to minimalize the impact. The low level entry and exit paths are seperate due to the extended stack frame and the hardware based GS BASE swichting and therefore have no impact on IDT based systems. It has been extensively tested on existing systems and on the FRED simulation and as of now there are know outstanding problems. -----BEGIN PGP SIGNATURE----- iQJHBAABCgAxFiEEQp8+kY+LLUocC4bMphj1TA10mKEFAmXuKPgTHHRnbHhAbGlu dXRyb25peC5kZQAKCRCmGPVMDXSYoWyUEACevJMHU+Ot9zqBPizSWxByM1uunHbp bjQXhaFeskd3mt7k7HU6GsPRSmC3q4lliP1Y9ypfbU0DvYSI2h/PhMWizjhmot2y nIvFpl51r/NsI+JHx1oXcFetz0eGHEqBui/4YQ/swgOCMymYgfqgHhazXTdldV3g KpH9/8W3AeGvw79uzXFH9tjBzTkbvywpam3v0LYNDJWTCuDkilyo8PjhsgRZD4x3 V9f1nLD7nSHZW8XLoktdJJ38bKwI2Lhao91NQ0ErwopekA4/9WphZEKsDpidUSXJ sn1O148oQ8X92IO2OaQje8XC5pLGr5GqQBGPWzRH56P/Vd3+WOwBxaFoU6Drxc5s tIe23ZjkVcpA8EEG7BQBZV1Un/NX7XaCCnMniOt0RauXw+1NaslX7t/tnUAh5F1V TWCH4D0I0oJ0qJ7kNliGn2BP3agYXOVg81xVEUjT6KfHcYU4ImUrwi+BkeNXuXtL Ch5ADnbYAcUjWLFnAmEmaRtfmfNGY5T7PeGFHW2RRkaOJ88v5g14Voo6gPJaDUPn wMQ0nLq1xN4xZWF6ZgfRqAhArvh20k38ZujRku5vXEqnhOugQ76TF2UYiFEwOXbQ 8jcM+yEBLGgBz7tGMwmIAml6kfxaFF1KPpdrtcPxNkGlbE6KTSuIolLx2YGUvlSU 6/O8nwZy49ckmQ== =Ib7w -----END PGP SIGNATURE----- Merge tag 'x86-fred-2024-03-10' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull x86 FRED support from Thomas Gleixner: "Support for x86 Fast Return and Event Delivery (FRED). FRED is a replacement for IDT event delivery on x86 and addresses most of the technical nightmares which IDT exposes: 1) Exception cause registers like CR2 need to be manually preserved in nested exception scenarios. 2) Hardware interrupt stack switching is suboptimal for nested exceptions as the interrupt stack mechanism rewinds the stack on each entry which requires a massive effort in the low level entry of #NMI code to handle this. 3) No hardware distinction between entry from kernel or from user which makes establishing kernel context more complex than it needs to be especially for unconditionally nestable exceptions like NMI. 4) NMI nesting caused by IRET unconditionally reenabling NMIs, which is a problem when the perf NMI takes a fault when collecting a stack trace. 5) Partial restore of ESP when returning to a 16-bit segment 6) Limitation of the vector space which can cause vector exhaustion on large systems. 7) Inability to differentiate NMI sources FRED addresses these shortcomings by: 1) An extended exception stack frame which the CPU uses to save exception cause registers. This ensures that the meta information for each exception is preserved on stack and avoids the extra complexity of preserving it in software. 2) Hardware interrupt stack switching is non-rewinding if a nested exception uses the currently interrupt stack. 3) The entry points for kernel and user context are separate and GS BASE handling which is required to establish kernel context for per CPU variable access is done in hardware. 4) NMIs are now nesting protected. They are only reenabled on the return from NMI. 5) FRED guarantees full restore of ESP 6) FRED does not put a limitation on the vector space by design because it uses a central entry points for kernel and user space and the CPUstores the entry type (exception, trap, interrupt, syscall) on the entry stack along with the vector number. The entry code has to demultiplex this information, but this removes the vector space restriction. The first hardware implementations will still have the current restricted vector space because lifting this limitation requires further changes to the local APIC. 7) FRED stores the vector number and meta information on stack which allows having more than one NMI vector in future hardware when the required local APIC changes are in place. The series implements the initial FRED support by: - Reworking the existing entry and IDT handling infrastructure to accomodate for the alternative entry mechanism. - Expanding the stack frame to accomodate for the extra 16 bytes FRED requires to store context and meta information - Providing FRED specific C entry points for events which have information pushed to the extended stack frame, e.g. #PF and #DB. - Providing FRED specific C entry points for #NMI and #MCE - Implementing the FRED specific ASM entry points and the C code to demultiplex the events - Providing detection and initialization mechanisms and the necessary tweaks in context switching, GS BASE handling etc. The FRED integration aims for maximum code reuse vs the existing IDT implementation to the extent possible and the deviation in hot paths like context switching are handled with alternatives to minimalize the impact. The low level entry and exit paths are seperate due to the extended stack frame and the hardware based GS BASE swichting and therefore have no impact on IDT based systems. It has been extensively tested on existing systems and on the FRED simulation and as of now there are no outstanding problems" * tag 'x86-fred-2024-03-10' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (38 commits) x86/fred: Fix init_task thread stack pointer initialization MAINTAINERS: Add a maintainer entry for FRED x86/fred: Fix a build warning with allmodconfig due to 'inline' failing to inline properly x86/fred: Invoke FRED initialization code to enable FRED x86/fred: Add FRED initialization functions x86/syscall: Split IDT syscall setup code into idt_syscall_init() KVM: VMX: Call fred_entry_from_kvm() for IRQ/NMI handling x86/entry: Add fred_entry_from_kvm() for VMX to handle IRQ/NMI x86/entry/calling: Allow PUSH_AND_CLEAR_REGS being used beyond actual entry code x86/fred: Fixup fault on ERETU by jumping to fred_entrypoint_user x86/fred: Let ret_from_fork_asm() jmp to asm_fred_exit_user when FRED is enabled x86/traps: Add sysvec_install() to install a system interrupt handler x86/fred: FRED entry/exit and dispatch code x86/fred: Add a machine check entry stub for FRED x86/fred: Add a NMI entry stub for FRED x86/fred: Add a debug fault entry stub for FRED x86/idtentry: Incorporate definitions/declarations of the FRED entries x86/fred: Make exc_page_fault() work for FRED x86/fred: Allow single-step trap and NMI when starting a new task x86/fred: No ESPFIX needed when FRED is enabled ... |
||
Linus Torvalds
|
ca7e917769 |
Rework of APIC enumeration and topology evaluation:
The current implementation has a couple of shortcomings: - It fails to handle hybrid systems correctly. - The APIC registration code which handles CPU number assignents is in the middle of the APIC code and detached from the topology evaluation. - The various mechanisms which enumerate APICs, ACPI, MPPARSE and guest specific ones, tweak global variables as they see fit or in case of XENPV just hack around the generic mechanisms completely. - The CPUID topology evaluation code is sprinkled all over the vendor code and reevaluates global variables on every hotplug operation. - There is no way to analyze topology on the boot CPU before bringing up the APs. This causes problems for infrastructure like PERF which needs to size certain aspects upfront or could be simplified if that would be possible. - The APIC admission and CPU number association logic is incomprehensible and overly complex and needs to be kept around after boot instead of completing this right after the APIC enumeration. This update addresses these shortcomings with the following changes: - Rework the CPUID evaluation code so it is common for all vendors and provides information about the APIC ID segments in a uniform way independent of the number of segments (Thread, Core, Module, ..., Die, Package) so that this information can be computed instead of rewriting global variables of dubious value over and over. - A few cleanups and simplifcations of the APIC, IO/APIC and related interfaces to prepare for the topology evaluation changes. - Seperation of the parser stages so the early evaluation which tries to find the APIC address can be seperately overridden from the late evaluation which enumerates and registers the local APIC as further preparation for sanitizing the topology evaluation. - A new registration and admission logic which - encapsulates the inner workings so that parsers and guest logic cannot longer fiddle in it - uses the APIC ID segments to build topology bitmaps at registration time - provides a sane admission logic - allows to detect the crash kernel case, where CPU0 does not run on the real BSP, automatically. This is required to prevent sending INIT/SIPI sequences to the real BSP which would reset the whole machine. This was so far handled by a tedious command line parameter, which does not even work in nested crash scenarios. - Associates CPU number after the enumeration completed and prevents the late registration of APICs, which was somehow tolerated before. - Converting all parsers and guest enumeration mechanisms over to the new interfaces. This allows to get rid of all global variable tweaking from the parsers and enumeration mechanisms and sanitizes the XEN[PV] handling so it can use CPUID evaluation for the first time. - Mopping up existing sins by taking the information from the APIC ID segment bitmaps. This evaluates hybrid systems correctly on the boot CPU and allows for cleanups and fixes in the related drivers, e.g. PERF. The series has been extensively tested and the minimal late fallout due to a broken ACPI/MADT table has been addressed by tightening the admission logic further. -----BEGIN PGP SIGNATURE----- iQJHBAABCgAxFiEEQp8+kY+LLUocC4bMphj1TA10mKEFAmXuDawTHHRnbHhAbGlu dXRyb25peC5kZQAKCRCmGPVMDXSYobE7EACngItF+UOTCoCV6och2lL6HVoIdZD1 Y5oaAgD+WzQSz/lBkH6b9kZSyvjlMo6O9GlnGX+ii+VUnijDp4VrspnxbJDaKEq3 gOfsSg2Tk+ps50HqMcZawjjBYJb/TmvKwEV2XuzIBPOONSWLNjvN7nBSzLl1eF9/ 8uCE39/8aB5K3GXryRyXdo2uLu6eHTVC0aYFu/kLX1/BbVqF5NMD3sz9E9w8+D/U MIIMEMXy4Fn+P2o0vVH+gjUlwI76mJbB1WqCX/sqbVacXrjl3KfNJRiisTFIOOYV 8o+rIV0ef5X9xmZqtOXAdyZQzj++Gwmz9+4TU1M4YHtS7UkYn6AluOjvVekCc+gc qXE3WhqKfCK2/carRMLQxAMxNeRylkZG+Wuv1Qtyjpe9JX2dTqtems0f4DMp9DKf b7InO3z39kJanpqcUG2Sx+GWanetfnX+0Ho2Moqu6Xi+2ATr1PfMG/Wyr5/WWOfV qApaHSTwa+J43mSzP6BsXngEv085EHSGM5tPe7u46MCYFqB21+bMl+qH82KjMkOe c6uZovFQMmX2WBlqJSYGVCH+Jhgvqq8HFeRs19Hd4enOt3e6LE3E74RBVD1AyfLV 1b/m8tYB/o871ZlEZwDCGVrV/LNnA7PxmFpq5ZHLpUt39g2/V0RH1puBVz1e97pU YsTT7hBCUYzgjQ== =/5oR -----END PGP SIGNATURE----- Merge tag 'x86-apic-2024-03-10' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull x86 APIC updates from Thomas Gleixner: "Rework of APIC enumeration and topology evaluation. The current implementation has a couple of shortcomings: - It fails to handle hybrid systems correctly. - The APIC registration code which handles CPU number assignents is in the middle of the APIC code and detached from the topology evaluation. - The various mechanisms which enumerate APICs, ACPI, MPPARSE and guest specific ones, tweak global variables as they see fit or in case of XENPV just hack around the generic mechanisms completely. - The CPUID topology evaluation code is sprinkled all over the vendor code and reevaluates global variables on every hotplug operation. - There is no way to analyze topology on the boot CPU before bringing up the APs. This causes problems for infrastructure like PERF which needs to size certain aspects upfront or could be simplified if that would be possible. - The APIC admission and CPU number association logic is incomprehensible and overly complex and needs to be kept around after boot instead of completing this right after the APIC enumeration. This update addresses these shortcomings with the following changes: - Rework the CPUID evaluation code so it is common for all vendors and provides information about the APIC ID segments in a uniform way independent of the number of segments (Thread, Core, Module, ..., Die, Package) so that this information can be computed instead of rewriting global variables of dubious value over and over. - A few cleanups and simplifcations of the APIC, IO/APIC and related interfaces to prepare for the topology evaluation changes. - Seperation of the parser stages so the early evaluation which tries to find the APIC address can be seperately overridden from the late evaluation which enumerates and registers the local APIC as further preparation for sanitizing the topology evaluation. - A new registration and admission logic which - encapsulates the inner workings so that parsers and guest logic cannot longer fiddle in it - uses the APIC ID segments to build topology bitmaps at registration time - provides a sane admission logic - allows to detect the crash kernel case, where CPU0 does not run on the real BSP, automatically. This is required to prevent sending INIT/SIPI sequences to the real BSP which would reset the whole machine. This was so far handled by a tedious command line parameter, which does not even work in nested crash scenarios. - Associates CPU number after the enumeration completed and prevents the late registration of APICs, which was somehow tolerated before. - Converting all parsers and guest enumeration mechanisms over to the new interfaces. This allows to get rid of all global variable tweaking from the parsers and enumeration mechanisms and sanitizes the XEN[PV] handling so it can use CPUID evaluation for the first time. - Mopping up existing sins by taking the information from the APIC ID segment bitmaps. This evaluates hybrid systems correctly on the boot CPU and allows for cleanups and fixes in the related drivers, e.g. PERF. The series has been extensively tested and the minimal late fallout due to a broken ACPI/MADT table has been addressed by tightening the admission logic further" * tag 'x86-apic-2024-03-10' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (76 commits) x86/topology: Ignore non-present APIC IDs in a present package x86/apic: Build the x86 topology enumeration functions on UP APIC builds too smp: Provide 'setup_max_cpus' definition on UP too smp: Avoid 'setup_max_cpus' namespace collision/shadowing x86/bugs: Use fixed addressing for VERW operand x86/cpu/topology: Get rid of cpuinfo::x86_max_cores x86/cpu/topology: Provide __num_[cores|threads]_per_package x86/cpu/topology: Rename topology_max_die_per_package() x86/cpu/topology: Rename smp_num_siblings x86/cpu/topology: Retrieve cores per package from topology bitmaps x86/cpu/topology: Use topology logical mapping mechanism x86/cpu/topology: Provide logical pkg/die mapping x86/cpu/topology: Simplify cpu_mark_primary_thread() x86/cpu/topology: Mop up primary thread mask handling x86/cpu/topology: Use topology bitmaps for sizing x86/cpu/topology: Let XEN/PV use topology from CPUID/MADT x86/xen/smp_pv: Count number of vCPUs early x86/cpu/topology: Assign hotpluggable CPUIDs during init x86/cpu/topology: Reject unknown APIC IDs on ACPI hotplug x86/topology: Add a mechanism to track topology via APIC IDs ... |
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Linus Torvalds
|
80a76c60e5 |
Updates for timekeeping and PTP core:
The cross-timestamp mechanism which allows to correlate hardware clocks uses clocksource pointers for describing the correlation. That's suboptimal as drivers need to obtain the pointer, which requires needless exports and exposing internals. This can be completely avoided by assigning clocksource IDs and using them for describing the correlated clock source. This update adds clocksource IDs to all clocksources in the tree which can be exposed to this mechanism and removes the pointer and now needless exports. This is separate from the timer core changes as it was provided to the PTP folks to build further changes on top. A related improvement for the core and the correlation handling has not made it this time, but is expected to get ready for the next round. -----BEGIN PGP SIGNATURE----- iQJHBAABCgAxFiEEQp8+kY+LLUocC4bMphj1TA10mKEFAmXuAsoTHHRnbHhAbGlu dXRyb25peC5kZQAKCRCmGPVMDXSYoQSFD/0Qvyrm/tKgJwdOZrXAmcPkCRu4amrv z5GiZtMt6/GHN6JA6ZkR9tjpYnh/NrhxaGxD2k9kcUsaj1tEZyGULNYtfPXsS/j0 SVOVpuagqppPGryfqnxgnZk7M+zjGAxb58miGMEkk08Ex7ysAkujGnmfHzNBP1mz Ryeeime6aOVB8jhISS68GtAYZ5fD0fWjXfN7DN9G1faJwmF82nJLKkGFy7E1TV9Y IYaW4r/EZuRATXesnIg6YAjop3l3qK1J8hMAam7OqvOqVzGCs0QNg9usg9Pf6je4 BaELA6GIwDw8ncR5865ONVC8Qpw8/AgChNf7WJrXsP1xBL56FFDmyTPGJMcUFXya G7s/YIQSj+yXg9+LPMAQqFTqLolnwspBw/fz2ctShpbnGbs8lmnAOTAjNz5lBddd vrQSn3Gtcj9vHP5OTKXSzHIYGmbvTZp0acsTtuSQGGzJySgVD43m1/xwY5eb11gp vS57GADgqTli8mrgipVPZCQ3o87RxNMqqda9lrEG/6lfuJ1rUGZWTkvqoasJI/jq mGiWidFhDOGHaJJUQajLIHPXLll+NN2LIa4wcZqPWE4qdtBAqtutkPfVAC5O0Qot dA1eWjW02i1Hy7SsUwlpivlDO+MoMn7hqmfXxA01u/x4y8UCnB+vSjWs0LdVlG3G xWIbTzzp7HKEwg== =xKya -----END PGP SIGNATURE----- Merge tag 'timers-ptp-2024-03-10' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull clocksource updates from Thomas Gleixner: "Updates for timekeeping and PTP core. The cross-timestamp mechanism which allows to correlate hardware clocks uses clocksource pointers for describing the correlation. That's suboptimal as drivers need to obtain the pointer, which requires needless exports and exposing internals. This can all be completely avoided by assigning clocksource IDs and using them for describing the correlated clock source. So this adds clocksource IDs to all clocksources in the tree which can be exposed to this mechanism and removes the pointer and now needless exports. A related improvement for the core and the correlation handling has not made it this time, but is expected to get ready for the next round" * tag 'timers-ptp-2024-03-10' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: kvmclock: Unexport kvmclock clocksource treewide: Remove system_counterval_t.cs, which is never read timekeeping: Evaluate system_counterval_t.cs_id instead of .cs ptp/kvm, arm_arch_timer: Set system_counterval_t.cs_id to constant x86/kvm, ptp/kvm: Add clocksource ID, set system_counterval_t.cs_id x86/tsc: Add clocksource ID, set system_counterval_t.cs_id timekeeping: Add clocksource ID to struct system_counterval_t x86/tsc: Correct kernel-doc notation |
||
Linus Torvalds
|
4527e83780 |
Updates for the MSI interrupt subsystem and RISC-V initial MSI support:
- Core and platform-MSI The core changes have been adopted from previous work which converted ARM[64] to the new per device MSI domain model, which was merged to support multiple MSI domain per device. The ARM[64] changes are being worked on too, but have not been ready yet. The core and platform-MSI changes have been split out to not hold up RISC-V and to avoid that RISC-V builds on the scheduled for removal interfaces. The core support provides new interfaces to handle wire to MSI bridges in a straight forward way and introduces new platform-MSI interfaces which are built on top of the per device MSI domain model. Once ARM[64] is converted over the old platform-MSI interfaces and the related ugliness in the MSI core code will be removed. - Drivers: - Add a new driver for the Andes hart-level interrupt controller - Rework the SiFive PLIC driver to prepare for MSI suport - Expand the RISC-V INTC driver to support the new RISC-V AIA controller which provides the basis for MSI on RISC-V - A few fixup for the fallout of the core changes. The actual MSI parts for RISC-V were finalized late and have been post-poned for the next merge window. -----BEGIN PGP SIGNATURE----- iQJHBAABCgAxFiEEQp8+kY+LLUocC4bMphj1TA10mKEFAmXt7MsTHHRnbHhAbGlu dXRyb25peC5kZQAKCRCmGPVMDXSYofrMD/9Dag12ttmbE2uqzTzlTxc7RHC2MX5n VJLt84FNNwGPA4r7WLOOqHrfuvfoGjuWT9pYMrVaXCglRG1CMvL10kHMB2f28UWv Qpc5PzbJwpD6tqyfRSFHMoJp63DAI8IpS7J3I8bqnRD8+0PwYn3jMA1+iMZkH0B7 8uO3mxlFhQ7BFvIAeMEAhR0szuAfvXqEtpi1iTgQTrQ4Je4Rf1pmLjEe2rkwDvF4 p3SAmPIh4+F3IjO7vNsVkQ2yOarTP2cpSns6JmO8mrobLIVX7ZCQ6uVaVCfBhxfx WttuJO6Bmh/I15yDe/waH6q9ym+0VBwYRWi5lonMpViGdq4/D2WVnY1mNeLRIfjl X65aMWE1+bhiqyIIUfc24hacf0UgBIlMEW4kJ31VmQzb+OyLDXw+UvzWg1dO6XdA 3L6j1nRgHk0ea5yFyH6SfH/mrfeyqHuwHqo17KFyHxD3jM2H1RRMplpbwXiOIepp KJJ/O06eMEzHqzn4B8GCT2EvX6L2ehgoWbLeEDNLQh/3LwA9OdcBzPr6gsweEl0U Q7szJgUWZHeMr39F2rnt0GmvkEuu6muEp/nQzfnohjoYZ0PhpMLSq++4Gi+Ko3fz 2IyecJ+tlbSfyM5//8AdNnOSpsTG3f8u6B/WwhGp5lIDwMnMzCssgfQmRnc3Uyv5 kU3pdMjURJaTUA== =7aXj -----END PGP SIGNATURE----- Merge tag 'irq-msi-2024-03-10' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull MSI updates from Thomas Gleixner: "Updates for the MSI interrupt subsystem and initial RISC-V MSI support. The core changes have been adopted from previous work which converted ARM[64] to the new per device MSI domain model, which was merged to support multiple MSI domain per device. The ARM[64] changes are being worked on too, but have not been ready yet. The core and platform-MSI changes have been split out to not hold up RISC-V and to avoid that RISC-V builds on the scheduled for removal interfaces. The core support provides new interfaces to handle wire to MSI bridges in a straight forward way and introduces new platform-MSI interfaces which are built on top of the per device MSI domain model. Once ARM[64] is converted over the old platform-MSI interfaces and the related ugliness in the MSI core code will be removed. The actual MSI parts for RISC-V were finalized late and have been post-poned for the next merge window. Drivers: - Add a new driver for the Andes hart-level interrupt controller - Rework the SiFive PLIC driver to prepare for MSI suport - Expand the RISC-V INTC driver to support the new RISC-V AIA controller which provides the basis for MSI on RISC-V - A few fixup for the fallout of the core changes" * tag 'irq-msi-2024-03-10' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (29 commits) irqchip/riscv-intc: Fix low-level interrupt handler setup for AIA x86/apic/msi: Use DOMAIN_BUS_GENERIC_MSI for HPET/IO-APIC domain search genirq/matrix: Dynamic bitmap allocation irqchip/riscv-intc: Add support for RISC-V AIA irqchip/sifive-plic: Improve locking safety by using irqsave/irqrestore irqchip/sifive-plic: Parse number of interrupts and contexts early in plic_probe() irqchip/sifive-plic: Cleanup PLIC contexts upon irqdomain creation failure irqchip/sifive-plic: Use riscv_get_intc_hwnode() to get parent fwnode irqchip/sifive-plic: Use devm_xyz() for managed allocation irqchip/sifive-plic: Use dev_xyz() in-place of pr_xyz() irqchip/sifive-plic: Convert PLIC driver into a platform driver irqchip/riscv-intc: Introduce Andes hart-level interrupt controller irqchip/riscv-intc: Allow large non-standard interrupt number genirq/irqdomain: Don't call ops->select for DOMAIN_BUS_ANY tokens irqchip/imx-intmux: Handle pure domain searches correctly genirq/msi: Provide MSI_FLAG_PARENT_PM_DEV genirq/irqdomain: Reroute device MSI create_mapping genirq/msi: Provide allocation/free functions for "wired" MSI interrupts genirq/msi: Optionally use dev->fwnode for device domain genirq/msi: Provide DOMAIN_BUS_WIRED_TO_MSI ... |
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Pawan Gupta
|
8076fcde01 |
x86/rfds: Mitigate Register File Data Sampling (RFDS)
RFDS is a CPU vulnerability that may allow userspace to infer kernel stale data previously used in floating point registers, vector registers and integer registers. RFDS only affects certain Intel Atom processors. Intel released a microcode update that uses VERW instruction to clear the affected CPU buffers. Unlike MDS, none of the affected cores support SMT. Add RFDS bug infrastructure and enable the VERW based mitigation by default, that clears the affected buffers just before exiting to userspace. Also add sysfs reporting and cmdline parameter "reg_file_data_sampling" to control the mitigation. For details see: Documentation/admin-guide/hw-vuln/reg-file-data-sampling.rst Signed-off-by: Pawan Gupta <pawan.kumar.gupta@linux.intel.com> Signed-off-by: Dave Hansen <dave.hansen@linux.intel.com> Reviewed-by: Thomas Gleixner <tglx@linutronix.de> Acked-by: Josh Poimboeuf <jpoimboe@kernel.org> |
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Pawan Gupta
|
e95df4ec0c |
x86/mmio: Disable KVM mitigation when X86_FEATURE_CLEAR_CPU_BUF is set
Currently MMIO Stale Data mitigation for CPUs not affected by MDS/TAA is to only deploy VERW at VMentry by enabling mmio_stale_data_clear static branch. No mitigation is needed for kernel->user transitions. If such CPUs are also affected by RFDS, its mitigation may set X86_FEATURE_CLEAR_CPU_BUF to deploy VERW at kernel->user and VMentry. This could result in duplicate VERW at VMentry. Fix this by disabling mmio_stale_data_clear static branch when X86_FEATURE_CLEAR_CPU_BUF is enabled. Signed-off-by: Pawan Gupta <pawan.kumar.gupta@linux.intel.com> Signed-off-by: Dave Hansen <dave.hansen@linux.intel.com> Reviewed-by: Dave Hansen <dave.hansen@linux.intel.com> |
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Paolo Bonzini
|
b00471a552 |
KVM VMX changes for 6.9:
- Fix a bug where KVM would report stale/bogus exit qualification information when exiting to userspace due to an unexpected VM-Exit while the CPU was vectoring an exception. - Add a VMX flag in /proc/cpuinfo to report 5-level EPT support. - Clean up the logic for massaging the passthrough MSR bitmaps when userspace changes its MSR filter. -----BEGIN PGP SIGNATURE----- iQIzBAABCgAdFiEEKTobbabEP7vbhhN9OlYIJqCjN/0FAmXrUh4ACgkQOlYIJqCj N/2CRA//VKa4KE8zgF3xM6Btyt2NegPgmGYVyhmMHTvARyHDIl5nURy++uXseb4f UXQLGcoGS+CIiaMohQFhCOjoNvv/2LR9P72qVV2WjQjFxVGBchybz8bjrqIDSSvY TuiPJApIfZtLryFFcowo8jLEBQv3JKgfgn9r2hBwVDcYP13wSz0Z4AWntHIqBxNa DW75wo7wnBFzy2RfUdtAgucpbmEihqSoKA+YjUT+0GRLBI7rWbFxdEKqe3BIM/7n 4NoJXbOmw7mlhTNumZYsF5sKiyOihBOdtUL1TDgKWjJScgmwG+KCSvrp5Ko4PZpo uyWWcIbskQ+cTO6dHDoIJTVPsCDxo3PgVJKG1T60CV68NavwxXCUGri1n1ZNyYH/ bXxEW7dTGHX0TDSt3dcyVOYdZFHbaIbqpu1EXlrzBm1hnruQ1C1uBQGHZ/X+Yo86 0qdq9SgXJ48tykr8BDruIHMy0Q8jbXxl67oXR0CdRjJGM+H9f+7RefnRN9wPYFhy n6Hl3kbezwCZb+8RO34Hq2CpKzNlKRHlJDhUq1ypd2vXPw8FDq1aQYKih0jAzyJQ yCdUueBJgo8OJtSL4HGEHvgkLHR4/XERgbCOxpSYNbqIjahAwNtbfHryUnJRWRb5 V3QczG/TtGfEpVblbRzn3Atbft4rM5a9Z3+s0siB6C2w8wyPmZg= =oJso -----END PGP SIGNATURE----- Merge tag 'kvm-x86-vmx-6.9' of https://github.com/kvm-x86/linux into HEAD KVM VMX changes for 6.9: - Fix a bug where KVM would report stale/bogus exit qualification information when exiting to userspace due to an unexpected VM-Exit while the CPU was vectoring an exception. - Add a VMX flag in /proc/cpuinfo to report 5-level EPT support. - Clean up the logic for massaging the passthrough MSR bitmaps when userspace changes its MSR filter. |
||
Paolo Bonzini
|
233d0bc4d8 |
LoongArch KVM changes for v6.9
1. Set reserved bits as zero in CPUCFG. 2. Start SW timer only when vcpu is blocking. 3. Do not restart SW timer when it is expired. 4. Remove unnecessary CSR register saving during enter guest. -----BEGIN PGP SIGNATURE----- iQJKBAABCAA0FiEEzOlt8mkP+tbeiYy5AoYrw/LiJnoFAmXoeWIWHGNoZW5odWFj YWlAa2VybmVsLm9yZwAKCRAChivD8uImehb3D/9C5IrdyU/2f3fEUuuXO0a2ZS1p l2OT+yr7C6/jATokGcd+53CF8MzYawzuAT3tSXYyoqAxRu0HUkvuS1oA/eFM4EwV iIoUC3jnqcsQ5LCPt6yt+Tzgug64Xm5F4btYWIpmXgCJWx/VVG6+z3JarXAfA2it vgVMGgrrfHt68sEsenNFNgiJ5tCCubjR7XFwjM8rsL7AzUDdmXpF7gFyH2Ufgosi a5CxcPPauO1y5ZCGU4JU9QvxnVqW1kt/TRZIGqqGfULtlBSoZbD9zP3OcCQkL+ai SPNxvU5I+BeX6honpmO6aR/F1EphQhRji3ZKxI8UBo4aJD5+FtMG/YOEPI+ZAS0/ JPuWpDqJH46SN3jfKTQay8jXc+mcnOYXJ9Yrixd4UCf66WJit/+BOma/wP638u2j RUzm1kqhNGad6QiDDtSjISM6sg6FozAGc/KhCkWAhV+lHLnfkXtaf3S+GIu5OiWz ETCKlmIGiy0y774+iftlD7RDRGmtrC4cx5ibl7cKKi62Y5vgujCdDofAyYC+D5cW puaIuHOx1hWtPRT9p1WfUL310ED+Qj3N2pDDcJcqdCIiRRZ5l/hxGS7V687a30WV GcegEqh19CjI9KDat4E1ld4jUHJxaFrw3pr2z3SP7cW3IgdngPJL57M0M2jSazaQ 479xZPJ/i4xhJaKACg== =8HOW -----END PGP SIGNATURE----- Merge tag 'loongarch-kvm-6.9' of git://git.kernel.org/pub/scm/linux/kernel/git/chenhuacai/linux-loongson into HEAD LoongArch KVM changes for v6.9 * Set reserved bits as zero in CPUCFG. * Start SW timer only when vcpu is blocking. * Do not restart SW timer when it is expired. * Remove unnecessary CSR register saving during enter guest. |
||
Paolo Bonzini
|
7d8942d8e7 |
KVM GUEST_MEMFD fixes for 6.8:
- Make KVM_MEM_GUEST_MEMFD mutually exclusive with KVM_MEM_READONLY to avoid creating ABI that KVM can't sanely support. - Update documentation for KVM_SW_PROTECTED_VM to make it abundantly clear that such VMs are purely a development and testing vehicle, and come with zero guarantees. - Limit KVM_SW_PROTECTED_VM guests to the TDP MMU, as the long term plan is to support confidential VMs with deterministic private memory (SNP and TDX) only in the TDP MMU. - Fix a bug in a GUEST_MEMFD negative test that resulted in false passes when verifying that KVM_MEM_GUEST_MEMFD memslots can't be dirty logged. -----BEGIN PGP SIGNATURE----- iQIzBAABCgAdFiEEKTobbabEP7vbhhN9OlYIJqCjN/0FAmXZB/8ACgkQOlYIJqCj N/3XlQ//RIsvqr38k7kELSKhCMyWgF4J57itABrHpMqAZu3gaAo5sETX8AGcHEe5 mxmquxyNQSf4cthhWy1kzxjGCy6+fk+Z0Z7wzfz0Yd5D+FI6vpo3HhkjovLb2gpt kSrHuhJyuj2vkftNvdaz0nHX1QalVyIEnXnR3oqTmxUUsg6lp1x/zr5SP0KBXjo8 ZzJtyFd0fkRXWpA792T7XPRBWrzPV31HYZBLX8sPlYmJATcbIx9rYSThgCN6XuVN bfE6wATsC+mwv5BpCoDFpCKmFcqSqamag9NGe5qE5mOby5DQGYTCRMCQB8YXXBR0 97ppaY9ZJV4nOVjrYJn6IMOSMVNfoG7nTRFfcd0eFP4tlPEgHwGr5BGDaBtQPkrd KcgWJw8nS02eCA2iOE+FtCXvGJwKhTTjQ45w7rU4EcfUk603L5J4GO1ddmjMhPcP upGGcWDK9vCGrSUFTm8pyWp/NKRJPvAQEiQd/BweSk9+isQHTX2RYCQgPAQnwlTS wTg7ZPNSLoUkRYmd6r+TUT32ELJGNc8GLftMnxIwweq6V7AgNMi0HE60eMovuBNO 7DAWWzfBEZmJv+0mNNZPGXczHVv4YvMWysRdKkhztBc3+sO7P3AL1zWIDlm5qwoG LpFeeI3qo3o5ZNaqGzkSop2pUUGNGpWCH46WmP0AG7RpzW/Natw= =M0td -----END PGP SIGNATURE----- Merge tag 'kvm-x86-guest_memfd_fixes-6.8' of https://github.com/kvm-x86/linux into HEAD KVM GUEST_MEMFD fixes for 6.8: - Make KVM_MEM_GUEST_MEMFD mutually exclusive with KVM_MEM_READONLY to avoid creating ABI that KVM can't sanely support. - Update documentation for KVM_SW_PROTECTED_VM to make it abundantly clear that such VMs are purely a development and testing vehicle, and come with zero guarantees. - Limit KVM_SW_PROTECTED_VM guests to the TDP MMU, as the long term plan is to support confidential VMs with deterministic private memory (SNP and TDX) only in the TDP MMU. - Fix a bug in a GUEST_MEMFD negative test that resulted in false passes when verifying that KVM_MEM_GUEST_MEMFD memslots can't be dirty logged. |
||
Stephen Boyd
|
40f18dbbb4 |
x86/of: Unconditionally call unflatten_and_copy_device_tree()
Call this function unconditionally so that we can populate an empty DTB on platforms that don't boot with a firmware provided or builtin DTB. There's no harm in calling unflatten_device_tree() unconditionally here. If there isn't a non-NULL 'initial_boot_params' pointer then unflatten_device_tree() returns early. Cc: Rob Herring <robh+dt@kernel.org> Cc: Frank Rowand <frowand.list@gmail.com> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: Ingo Molnar <mingo@redhat.com> Cc: Borislav Petkov <bp@alien8.de> Cc: Dave Hansen <dave.hansen@linux.intel.com> Cc: x86@kernel.org Cc: H. Peter Anvin <hpa@zytor.com> Tested-by: Saurabh Sengar <ssengar@linux.microsoft.com> Signed-off-by: Stephen Boyd <sboyd@kernel.org> Link: https://lore.kernel.org/r/20240217010557.2381548-5-sboyd@kernel.org Signed-off-by: Rob Herring <robh@kernel.org> |
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Changbin Du
|
c0935fca6b |
x86/sev: Disable KMSAN for memory encryption TUs
Instrumenting sev.c and mem_encrypt_identity.c with KMSAN will result in a triple-faulting kernel. Some of the code is invoked too early during boot, before KMSAN is ready. Disable KMSAN instrumentation for the two translation units. [ bp: Massage commit message. ] Signed-off-by: Changbin Du <changbin.du@huawei.com> Signed-off-by: Borislav Petkov (AMD) <bp@alien8.de> Link: https://lore.kernel.org/r/20240308044401.1120395-1-changbin.du@huawei.com |
||
Xin Li (Intel)
|
c416b5bac6 |
x86/fred: Fix init_task thread stack pointer initialization
As TOP_OF_KERNEL_STACK_PADDING was defined as 0 on x86_64, it went unnoticed that the initialization of the .sp field in INIT_THREAD and some calculations in the low level startup code do not take the padding into account. FRED enabled kernels require a 16 byte padding, which means that the init task initialization and the low level startup code use the wrong stack offset. Subtract TOP_OF_KERNEL_STACK_PADDING in all affected places to adjust for this. Fixes: |
||
Jinghao Jia
|
290eb13f1a |
x86/kprobes: Boost more instructions from grp2/3/4/5
With the instruction decoder, we are now able to decode and recognize instructions with opcode extensions. There are more instructions in these groups that can be boosted: Group 2: ROL, ROR, RCL, RCR, SHL/SAL, SHR, SAR Group 3: TEST, NOT, NEG, MUL, IMUL, DIV, IDIV Group 4: INC, DEC (byte operation) Group 5: INC, DEC (word/doubleword/quadword operation) These instructions are not boosted previously because there are reserved opcodes within the groups, e.g., group 2 with ModR/M.nnn == 110 is unmapped. As a result, kprobes attached to them requires two int3 traps as being non-boostable also prevents jump-optimization. Some simple tests on QEMU show that after boosting and jump-optimization a single kprobe on these instructions with an empty pre-handler runs 10x faster (~1000 cycles vs. ~100 cycles). Since these instructions are mostly ALU operations and do not touch special registers like RIP, let's boost them so that we get the performance benefit. Link: https://lore.kernel.org/all/20240204031300.830475-4-jinghao7@illinois.edu/ Signed-off-by: Jinghao Jia <jinghao7@illinois.edu> Signed-off-by: Masami Hiramatsu (Google) <mhiramat@kernel.org> |
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Jinghao Jia
|
e884edbb84 |
x86/kprobes: Prohibit kprobing on INT and UD
Both INT (INT n, INT1, INT3, INTO) and UD (UD0, UD1, UD2) serve special purposes in the kernel, e.g., INT3 is used by KGDB and UD2 is involved in LLVM-KCFI instrumentation. At the same time, attaching kprobes on these instructions (particularly UD) will pollute the stack trace dumped in the kernel ring buffer, since the exception is triggered in the copy buffer rather than the original location. Check for INT and UD in can_probe and reject any kprobes trying to attach to these instructions. Link: https://lore.kernel.org/all/20240204031300.830475-3-jinghao7@illinois.edu/ Suggested-by: Masami Hiramatsu (Google) <mhiramat@kernel.org> Signed-off-by: Jinghao Jia <jinghao7@illinois.edu> Signed-off-by: Masami Hiramatsu (Google) <mhiramat@kernel.org> |
||
Jinghao Jia
|
e4778a0ef3 |
x86/kprobes: Refactor can_{probe,boost} return type to bool
Both can_probe and can_boost have int return type but are using int as boolean in their context. Refactor both functions to make them actually return boolean. Link: https://lore.kernel.org/all/20240204031300.830475-2-jinghao7@illinois.edu/ Signed-off-by: Jinghao Jia <jinghao7@illinois.edu> Acked-by: Masami Hiramatsu (Google) <mhiramat@kernel.org> Signed-off-by: Masami Hiramatsu (Google) <mhiramat@kernel.org> |
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Thomas Gleixner
|
f0551af021 |
x86/topology: Ignore non-present APIC IDs in a present package
Borislav reported that one of his systems has a broken MADT table which
advertises eight present APICs and 24 non-present APICs in the same
package.
The non-present ones are considered hot-pluggable by the topology
evaluation code, which is obviously bogus as there is no way to hot-plug
within the same package.
As the topology evaluation code accounts for hot-pluggable CPUs in a
package, the maximum number of cores per package is computed wrong, which
in turn causes the uncore performance counter driver to access non-existing
MSRs. It will probably confuse other entities which rely on the maximum
number of cores and threads per package too.
Cure this by ignoring hot-pluggable APIC IDs within a present package.
In theory it would be reasonable to just do this unconditionally, but then
there is this thing called reality^Wvirtualization which ruins
everything. Virtualization is the only existing user of "physical" hotplug
and the virtualization tools allow the above scenario. Whether that is
actually in use or not is unknown.
As it can be argued that the virtualization case is not affected by the
issues which exposed the reported problem, allow the bogosity if the kernel
determined that it is running in a VM for now.
Fixes:
|
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He Rongguang
|
6b8e288f49 |
cpuidle: ACPI/intel: fix MWAIT hint target C-state computation
According to x86 spec ([1] and [2]), MWAIT hint_address[7:4] plus 1 is the corresponding C-state, and 0xF means C0. ACPI C-state table usually only contains C1+, but nothing prevents ACPI firmware from presenting a C-state (maybe C1+) but using MWAIT address C0 (i.e., 0xF in ACPI FFH MWAIT hint address). And if this is the case, Linux erroneously treat this cstate as C16, while actually this should be valid C0 instead of C16, as per the specifications. Since ACPI firmware is out of Linux kernel scope, fix the kernel handling of 0xF ->(to) C0 in this situation. This is found when a tweaked ACPI C-state table is presented by Qemu to VM. Also modify the intel_idle case for code consistency. [1]. Intel SDM Vol 2, Table 4-11. MWAIT Hints Register (EAX): "Value of 0 means C1; 1 means C2 and so on Value of 01111B means C0". [2]. AMD manual Vol 3, MWAIT: "The processor C-state is EAX[7:4]+1, so to request C0 is to place the value F in EAX[7:4] and to request C1 is to place the value 0 in EAX[7:4].". Signed-off-by: He Rongguang <herongguang@linux.alibaba.com> [ rjw: Subject and changelog edits, whitespace fixups ] Signed-off-by: Rafael J. Wysocki <rafael.j.wysocki@intel.com> |
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Perry Yuan
|
a51ab63b29 |
ACPI: CPPC: enable AMD CPPC V2 support for family 17h processors
As there are some AMD processors which only support CPPC V2 firmware and
BIOS implementation, the amd_pstate driver will be failed to load when
system booting with below kernel warning message:
[ 0.477523] amd_pstate: the _CPC object is not present in SBIOS or ACPI disabled
To make the amd_pstate driver can be loaded on those TR40 processors, it
needs to match x86_model from 0x30 to 0x7F for family 17H.
With the change, the system can load amd_pstate driver as expected.
Reviewed-by: Mario Limonciello <mario.limonciello@amd.com>
Reported-by: Gino Badouri <badouri.g@gmail.com>
Closes: https://bugzilla.kernel.org/show_bug.cgi?id=218171
Fixes:
|
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Ard Biesheuvel
|
428080c9b1 |
x86/sev: Move early startup code into .head.text section
In preparation for implementing rigorous build time checks to enforce that only code that can support it will be called from the early 1:1 mapping of memory, move SEV init code that is called in this manner to the .head.text section. Signed-off-by: Ard Biesheuvel <ardb@kernel.org> Signed-off-by: Borislav Petkov (AMD) <bp@alien8.de> Tested-by: Tom Lendacky <thomas.lendacky@amd.com> Link: https://lore.kernel.org/r/20240227151907.387873-19-ardb+git@google.com |
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Ard Biesheuvel
|
8282639576 |
x86/startup_64: Simplify virtual switch on primary boot
The secondary startup code is used on the primary boot path as well, but in this case, the initial part runs from a 1:1 mapping, until an explicit cross-jump is made to the kernel virtual mapping of the same code. On the secondary boot path, this jump is pointless as the code already executes from the mapping targeted by the jump. So combine this cross-jump with the jump from startup_64() into the common boot path. This simplifies the execution flow, and clearly separates code that runs from a 1:1 mapping from code that runs from the kernel virtual mapping. Note that this requires a page table switch, so hoist the CR3 assignment into startup_64() as well. And since absolute symbol references will no longer be permitted in .head.text once we enable the associated build time checks, a RIP-relative memory operand is used in the JMP instruction, referring to an absolute constant in the .init.rodata section. Given that the secondary startup code does not require a special placement inside the executable, move it to the .text section. Signed-off-by: Ard Biesheuvel <ardb@kernel.org> Signed-off-by: Borislav Petkov (AMD) <bp@alien8.de> Tested-by: Tom Lendacky <thomas.lendacky@amd.com> Link: https://lore.kernel.org/r/20240227151907.387873-15-ardb+git@google.com |
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Ard Biesheuvel
|
d6a41f184d |
x86/startup_64: Simplify calculation of initial page table address
Determining the address of the initial page table to program into CR3 involves: - taking the physical address - adding the SME encryption mask On the primary entry path, the code is mapped using a 1:1 virtual to physical translation, so the physical address can be taken directly using a RIP-relative LEA instruction. On the secondary entry path, the address can be obtained by taking the offset from the virtual kernel base (__START_kernel_map) and adding the physical kernel base. This is implemented in a slightly confusing way, so clean this up. Signed-off-by: Ard Biesheuvel <ardb@kernel.org> Signed-off-by: Borislav Petkov (AMD) <bp@alien8.de> Tested-by: Tom Lendacky <thomas.lendacky@amd.com> Link: https://lore.kernel.org/r/20240227151907.387873-14-ardb+git@google.com |
||
Ard Biesheuvel
|
63bed96604 |
x86/startup_64: Defer assignment of 5-level paging global variables
Assigning the 5-level paging related global variables from the earliest C code using explicit references that use the 1:1 translation of memory is unnecessary, as the startup code itself does not rely on them to create the initial page tables, and this is all it should be doing. So defer these assignments to the primary C entry code that executes via the ordinary kernel virtual mapping. Signed-off-by: Ard Biesheuvel <ardb@kernel.org> Signed-off-by: Borislav Petkov (AMD) <bp@alien8.de> Tested-by: Tom Lendacky <thomas.lendacky@amd.com> Link: https://lore.kernel.org/r/20240227151907.387873-13-ardb+git@google.com |
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Ard Biesheuvel
|
dada858706 |
x86/startup_64: Simplify CR4 handling in startup code
When paging is enabled, the CR4.PAE and CR4.LA57 control bits cannot be changed, and so they can simply be preserved rather than reason about whether or not they need to be set. CR4.MCE should be preserved unless the kernel was built without CONFIG_X86_MCE, in which case it must be cleared. CR4.PSE should be set explicitly, regardless of whether or not it was set before. CR4.PGE is set explicitly, and then cleared and set again after programming CR3 in order to flush TLB entries based on global translations. This makes the first assignment redundant, and can therefore be omitted. So clear PGE by omitting it from the preserve mask, and set it again explicitly after switching to the new page tables. [ bp: Document the exact operation of CR4.PGE ] Signed-off-by: Ard Biesheuvel <ardb@kernel.org> Signed-off-by: Borislav Petkov (AMD) <bp@alien8.de> Tested-by: Tom Lendacky <thomas.lendacky@amd.com> Link: https://lore.kernel.org/r/20240227151907.387873-12-ardb+git@google.com |
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Thomas Gleixner
|
35ce64922c |
x86/idle: Select idle routine only once
The idle routine selection is done on every CPU bringup operation and has a guard in place which is effective after the first invocation, which is a pointless exercise. Invoke it once on the boot CPU and mark the related functions __init. The guard check has to stay as xen_set_default_idle() runs early. Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Borislav Petkov (AMD) <bp@alien8.de> Link: https://lore.kernel.org/r/87edcu6vaq.ffs@tglx |
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Thomas Gleixner
|
5f75916ec6 |
x86/idle: Let prefer_mwait_c1_over_halt() return bool
The return value is truly boolean. Make it so. No functional change. Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Borislav Petkov (AMD) <bp@alien8.de> Link: https://lore.kernel.org/r/20240229142248.518723854@linutronix.de |
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Thomas Gleixner
|
f3d7eab7be |
x86/idle: Cleanup idle_setup()
Updating the static call for x86_idle() from idle_setup() is counter-intuitive. Let select_idle_routine() handle it like the other idle choices, which allows to simplify the idle selection later on. While at it rewrite comments and return a proper error code and not -1. Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Borislav Petkov (AMD) <bp@alien8.de> Link: https://lore.kernel.org/r/20240229142248.455616019@linutronix.de |
||
Thomas Gleixner
|
0ab562875c |
x86/idle: Clean up idle selection
Clean up the code to make it readable. No functional change. Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Borislav Petkov (AMD) <bp@alien8.de> Link: https://lore.kernel.org/r/20240229142248.392017685@linutronix.de |
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Thomas Gleixner
|
cb81deefb5 |
x86/idle: Sanitize X86_BUG_AMD_E400 handling
amd_e400_idle(), the idle routine for AMD CPUs which are affected by erratum 400 violates the RCU constraints by invoking tick_broadcast_enter() and tick_broadcast_exit() after the core code has marked RCU non-idle. The functions can end up in lockdep or tracing, which rightfully triggers a RCU warning. The core code provides now a static branch conditional invocation of the broadcast functions. Remove amd_e400_idle(), enforce default_idle() and enable the static branch on affected CPUs to cure this. [ bp: Fold in a fix for a IS_ENABLED() check fail missing a "CONFIG_" prefix which tglx spotted. ] Reported-by: Borislav Petkov <bp@alien8.de> Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Borislav Petkov (AMD) <bp@alien8.de> Link: https://lore.kernel.org/r/877cim6sis.ffs@tglx |