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2021-07-07Merge tag 'x86-fpu-2021-07-07' of ↵Linus Torvalds1-3/+3
git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull x86 fpu updates from Thomas Gleixner: "Fixes and improvements for FPU handling on x86: - Prevent sigaltstack out of bounds writes. The kernel unconditionally writes the FPU state to the alternate stack without checking whether the stack is large enough to accomodate it. Check the alternate stack size before doing so and in case it's too small force a SIGSEGV instead of silently corrupting user space data. - MINSIGSTKZ and SIGSTKSZ are constants in signal.h and have never been updated despite the fact that the FPU state which is stored on the signal stack has grown over time which causes trouble in the field when AVX512 is available on a CPU. The kernel does not expose the minimum requirements for the alternate stack size depending on the available and enabled CPU features. ARM already added an aux vector AT_MINSIGSTKSZ for the same reason. Add it to x86 as well. - A major cleanup of the x86 FPU code. The recent discoveries of XSTATE related issues unearthed quite some inconsistencies, duplicated code and other issues. The fine granular overhaul addresses this, makes the code more robust and maintainable, which allows to integrate upcoming XSTATE related features in sane ways" * tag 'x86-fpu-2021-07-07' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (74 commits) x86/fpu/xstate: Clear xstate header in copy_xstate_to_uabi_buf() again x86/fpu/signal: Let xrstor handle the features to init x86/fpu/signal: Handle #PF in the direct restore path x86/fpu: Return proper error codes from user access functions x86/fpu/signal: Split out the direct restore code x86/fpu/signal: Sanitize copy_user_to_fpregs_zeroing() x86/fpu/signal: Sanitize the xstate check on sigframe x86/fpu/signal: Remove the legacy alignment check x86/fpu/signal: Move initial checks into fpu__restore_sig() x86/fpu: Mark init_fpstate __ro_after_init x86/pkru: Remove xstate fiddling from write_pkru() x86/fpu: Don't store PKRU in xstate in fpu_reset_fpstate() x86/fpu: Remove PKRU handling from switch_fpu_finish() x86/fpu: Mask PKRU from kernel XRSTOR[S] operations x86/fpu: Hook up PKRU into ptrace() x86/fpu: Add PKRU storage outside of task XSAVE buffer x86/fpu: Dont restore PKRU in fpregs_restore_userspace() x86/fpu: Rename xfeatures_mask_user() to xfeatures_mask_uabi() x86/fpu: Move FXSAVE_LEAK quirk info __copy_kernel_to_fpregs() x86/fpu: Rename __fpregs_load_activate() to fpregs_restore_userregs() ...
2021-06-24perf/x86/intel/lbr: Zero the xstate buffer on allocationThomas Gleixner1-1/+2
XRSTORS requires a valid xstate buffer to work correctly. XSAVES does not guarantee to write a fully valid buffer according to the SDM: "XSAVES does not write to any parts of the XSAVE header other than the XSTATE_BV and XCOMP_BV fields." XRSTORS triggers a #GP: "If bytes 63:16 of the XSAVE header are not all zero." It's dubious at best how this can work at all when the buffer is not zeroed before use. Allocate the buffers with __GFP_ZERO to prevent XRSTORS failure. Fixes: ce711ea3cab9 ("perf/x86/intel/lbr: Support XSAVES/XRSTORS for LBR context switch") Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Ingo Molnar <mingo@kernel.org> Link: https://lore.kernel.org/r/87wnr0wo2z.ffs@nanos.tec.linutronix.de
2021-06-23x86/fpu/xstate: Sanitize handling of independent featuresThomas Gleixner1-3/+3
The copy functions for the independent features are horribly named and the supervisor and independent part is just overengineered. The point is that the supplied mask has either to be a subset of the independent features or a subset of the task->fpu.xstate managed features. Rewrite it so it checks for invalid overlaps of these areas in the caller supplied feature mask. Rename it so it follows the new naming convention for these operations. Mop up the function documentation. This allows to use that function for other purposes as well. Suggested-by: Peter Zijlstra <peterz@infradead.org> Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Borislav Petkov <bp@suse.de> Tested-by: Kan Liang <kan.liang@linux.intel.com> Link: https://lkml.kernel.org/r/20210623121455.004880675@linutronix.de
2021-06-23x86/fpu: Rename "dynamic" XSTATEs to "independent"Andy Lutomirski1-3/+3
The salient feature of "dynamic" XSTATEs is that they are not part of the main task XSTATE buffer. The fact that they are dynamically allocated is irrelevant and will become quite confusing when user math XSTATEs start being dynamically allocated. Rename them to "independent" because they are independent of the main XSTATE code. This is just a search-and-replace with some whitespace updates to keep things aligned. Signed-off-by: Andy Lutomirski <luto@kernel.org> Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Borislav Petkov <bp@suse.de> Link: https://lore.kernel.org/r/1eecb0e4f3e07828ebe5d737ec77dc3b708fad2d.1623388344.git.luto@kernel.org Link: https://lkml.kernel.org/r/20210623121454.911450390@linutronix.de
2021-05-18perf/x86/lbr: Remove cpuc->lbr_xsave allocation from atomic contextLike Xu1-6/+20
If the kernel is compiled with the CONFIG_LOCKDEP option, the conditional might_sleep_if() deep in kmem_cache_alloc() will generate the following trace, and potentially cause a deadlock when another LBR event is added: [] BUG: sleeping function called from invalid context at include/linux/sched/mm.h:196 [] Call Trace: [] kmem_cache_alloc+0x36/0x250 [] intel_pmu_lbr_add+0x152/0x170 [] x86_pmu_add+0x83/0xd0 Make it symmetric with the release_lbr_buffers() call and mirror the existing DS buffers. Fixes: c085fb8774 ("perf/x86/intel/lbr: Support XSAVES for arch LBR read") Signed-off-by: Like Xu <like.xu@linux.intel.com> [peterz: simplified] Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Tested-by: Kan Liang <kan.liang@linux.intel.com> Link: https://lkml.kernel.org/r/20210430052247.3079672-2-like.xu@linux.intel.com
2021-04-28Merge tag 'perf-core-2021-04-28' of ↵Linus Torvalds1-4/+5
git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull perf event updates from Ingo Molnar: - Improve Intel uncore PMU support: - Parse uncore 'discovery tables' - a new hardware capability enumeration method introduced on the latest Intel platforms. This table is in a well-defined PCI namespace location and is read via MMIO. It is organized in an rbtree. These uncore tables will allow the discovery of standard counter blocks, but fancier counters still need to be enumerated explicitly. - Add Alder Lake support - Improve IIO stacks to PMON mapping support on Skylake servers - Add Intel Alder Lake PMU support - which requires the introduction of 'hybrid' CPUs and PMUs. Alder Lake is a mix of Golden Cove ('big') and Gracemont ('small' - Atom derived) cores. The CPU-side feature set is entirely symmetrical - but on the PMU side there's core type dependent PMU functionality. - Reduce data loss with CPU level hardware tracing on Intel PT / AUX profiling, by fixing the AUX allocation watermark logic. - Improve ring buffer allocation on NUMA systems - Put 'struct perf_event' into their separate kmem_cache pool - Add support for synchronous signals for select perf events. The immediate motivation is to support low-overhead sampling-based race detection for user-space code. The feature consists of the following main changes: - Add thread-only event inheritance via perf_event_attr::inherit_thread, which limits inheritance of events to CLONE_THREAD. - Add the ability for events to not leak through exec(), via perf_event_attr::remove_on_exec. - Allow the generation of SIGTRAP via perf_event_attr::sigtrap, extend siginfo with an u64 ::si_perf, and add the breakpoint information to ::si_addr and ::si_perf if the event is PERF_TYPE_BREAKPOINT. The siginfo support is adequate for breakpoints right now - but the new field can be used to introduce support for other types of metadata passed over siginfo as well. - Misc fixes, cleanups and smaller updates. * tag 'perf-core-2021-04-28' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (53 commits) signal, perf: Add missing TRAP_PERF case in siginfo_layout() signal, perf: Fix siginfo_t by avoiding u64 on 32-bit architectures perf/x86: Allow for 8<num_fixed_counters<16 perf/x86/rapl: Add support for Intel Alder Lake perf/x86/cstate: Add Alder Lake CPU support perf/x86/msr: Add Alder Lake CPU support perf/x86/intel/uncore: Add Alder Lake support perf: Extend PERF_TYPE_HARDWARE and PERF_TYPE_HW_CACHE perf/x86/intel: Add Alder Lake Hybrid support perf/x86: Support filter_match callback perf/x86/intel: Add attr_update for Hybrid PMUs perf/x86: Add structures for the attributes of Hybrid PMUs perf/x86: Register hybrid PMUs perf/x86: Factor out x86_pmu_show_pmu_cap perf/x86: Remove temporary pmu assignment in event_init perf/x86/intel: Factor out intel_pmu_check_extra_regs perf/x86/intel: Factor out intel_pmu_check_event_constraints perf/x86/intel: Factor out intel_pmu_check_num_counters perf/x86: Hybrid PMU support for extra_regs perf/x86: Hybrid PMU support for event constraints ...
2021-04-28Merge tag 'x86_core_for_v5.13' of ↵Linus Torvalds1-5/+5
git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull x86 updates from Borislav Petkov: - Turn the stack canary into a normal __percpu variable on 32-bit which gets rid of the LAZY_GS stuff and a lot of code. - Add an insn_decode() API which all users of the instruction decoder should preferrably use. Its goal is to keep the details of the instruction decoder away from its users and simplify and streamline how one decodes insns in the kernel. Convert its users to it. - kprobes improvements and fixes - Set the maximum DIE per package variable on Hygon - Rip out the dynamic NOP selection and simplify all the machinery around selecting NOPs. Use the simplified NOPs in objtool now too. - Add Xeon Sapphire Rapids to list of CPUs that support PPIN - Simplify the retpolines by folding the entire thing into an alternative now that objtool can handle alternatives with stack ops. Then, have objtool rewrite the call to the retpoline with the alternative which then will get patched at boot time. - Document Intel uarch per models in intel-family.h - Make Sub-NUMA Clustering topology the default and Cluster-on-Die the exception on Intel. * tag 'x86_core_for_v5.13' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (53 commits) x86, sched: Treat Intel SNC topology as default, COD as exception x86/cpu: Comment Skylake server stepping too x86/cpu: Resort and comment Intel models objtool/x86: Rewrite retpoline thunk calls objtool: Skip magical retpoline .altinstr_replacement objtool: Cache instruction relocs objtool: Keep track of retpoline call sites objtool: Add elf_create_undef_symbol() objtool: Extract elf_symbol_add() objtool: Extract elf_strtab_concat() objtool: Create reloc sections implicitly objtool: Add elf_create_reloc() helper objtool: Rework the elf_rebuild_reloc_section() logic objtool: Fix static_call list generation objtool: Handle per arch retpoline naming objtool: Correctly handle retpoline thunk calls x86/retpoline: Simplify retpolines x86/alternatives: Optimize optimize_nops() x86: Add insn_decode_kernel() x86/kprobes: Move 'inline' to the beginning of the kprobe_is_ss() declaration ...
2021-04-19perf/x86: Track pmu in per-CPU cpu_hw_eventsKan Liang1-4/+5
Some platforms, e.g. Alder Lake, have hybrid architecture. In the same package, there may be more than one type of CPU. The PMU capabilities are different among different types of CPU. Perf will register a dedicated PMU for each type of CPU. Add a 'pmu' variable in the struct cpu_hw_events to track the dedicated PMU of the current CPU. Current x86_get_pmu() use the global 'pmu', which will be broken on a hybrid platform. Modify it to apply the 'pmu' of the specific CPU. Initialize the per-CPU 'pmu' variable with the global 'pmu'. There is nothing changed for the non-hybrid platforms. The is_x86_event() will be updated in the later patch ("perf/x86: Register hybrid PMUs") for hybrid platforms. For the non-hybrid platforms, nothing is changed here. Suggested-by: Peter Zijlstra (Intel) <peterz@infradead.org> Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1618237865-33448-4-git-send-email-kan.liang@linux.intel.com
2021-03-18x86: Fix various typos in commentsIngo Molnar1-1/+1
Fix ~144 single-word typos in arch/x86/ code comments. Doing this in a single commit should reduce the churn. Signed-off-by: Ingo Molnar <mingo@kernel.org> Cc: Borislav Petkov <bp@alien8.de> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Paolo Bonzini <pbonzini@redhat.com> Cc: Bjorn Helgaas <bhelgaas@google.com> Cc: linux-kernel@vger.kernel.org
2021-03-15perf/x86/intel/ds: Check return values of insn decoder functionsBorislav Petkov1-5/+5
branch_type() doesn't need to call the full insn_decode() because it doesn't need it in all cases thus leave the calls separate. Signed-off-by: Borislav Petkov <bp@suse.de> Link: https://lkml.kernel.org/r/20210304174237.31945-9-bp@alien8.de
2020-12-15Merge tag 'perf-core-2020-12-14' of ↵Linus Torvalds1-1/+1
git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip Pull perf updates from Thomas Gleixner: "Core: - Better handling of page table leaves on archictectures which have architectures have non-pagetable aligned huge/large pages. For such architectures a leaf can actually be part of a larger entry. - Prevent a deadlock vs exec_update_mutex Architectures: - The related updates for page size calculation of leaf entries - The usual churn to support new CPUs - Small fixes and improvements all over the place" * tag 'perf-core-2020-12-14' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (24 commits) perf/x86/intel: Add Tremont Topdown support uprobes/x86: Fix fall-through warnings for Clang perf/x86: Fix fall-through warnings for Clang kprobes/x86: Fix fall-through warnings for Clang perf/x86/intel/lbr: Fix the return type of get_lbr_cycles() perf/x86/intel: Fix rtm_abort_event encoding on Ice Lake x86/kprobes: Restore BTF if the single-stepping is cancelled perf: Break deadlock involving exec_update_mutex sparc64/mm: Implement pXX_leaf_size() support powerpc/8xx: Implement pXX_leaf_size() support arm64/mm: Implement pXX_leaf_size() support perf/core: Fix arch_perf_get_page_size() mm: Introduce pXX_leaf_size() mm/gup: Provide gup_get_pte() more generic perf/x86/intel: Add event constraint for CYCLE_ACTIVITY.STALLS_MEM_ANY perf/x86/intel/uncore: Add Rocket Lake support perf/x86/msr: Add Rocket Lake CPU support perf/x86/cstate: Add Rocket Lake CPU support perf/x86/intel: Add Rocket Lake CPU support perf,mm: Handle non-page-table-aligned hugetlbfs ...
2020-12-09perf/x86/intel/lbr: Fix the return type of get_lbr_cycles()Kan Liang1-1/+1
The cycle count of a timed LBR is always 1 in perf record -D. The cycle count is stored in the first 16 bits of the IA32_LBR_x_INFO register, but the get_lbr_cycles() return Boolean type. Use u16 to replace the Boolean type. Fixes: 47125db27e47 ("perf/x86/intel/lbr: Support Architectural LBR") Reported-by: Stephane Eranian <eranian@google.com> Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Cc: stable@vger.kernel.org Link: https://lkml.kernel.org/r/20201125213720.15692-2-kan.liang@linux.intel.com
2020-10-26perf/x86: Avoid TIF_IA32 when checking 64bit modeGabriel Krisman Bertazi1-1/+1
In preparation to remove TIF_IA32, stop using it in perf events code. Tested by running perf on 32-bit, 64-bit and x32 applications. Suggested-by: Andy Lutomirski <luto@kernel.org> Signed-off-by: Gabriel Krisman Bertazi <krisman@collabora.com> Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Acked-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lore.kernel.org/r/20201004032536.1229030-2-krisman@collabora.com
2020-08-24treewide: Use fallthrough pseudo-keywordGustavo A. R. Silva1-1/+1
Replace the existing /* fall through */ comments and its variants with the new pseudo-keyword macro fallthrough[1]. Also, remove unnecessary fall-through markings when it is the case. [1] https://www.kernel.org/doc/html/v5.7/process/deprecated.html?highlight=fallthrough#implicit-switch-case-fall-through Signed-off-by: Gustavo A. R. Silva <gustavoars@kernel.org>
2020-07-08perf/x86/intel/lbr: Support XSAVES for arch LBR readKan Liang1-1/+39
Reading LBR registers in a perf NMI handler for a non-PEBS event causes a high overhead because the number of LBR registers is huge. To reduce the overhead, the XSAVES instruction should be used to replace the LBR registers' reading method. The XSAVES buffer used for LBR read has to be per-CPU because the NMI handler invoked the lbr_read(). The existing task_ctx_data buffer cannot be used which is per-task and only be allocated for the LBR call stack mode. A new lbr_xsave pointer is introduced in the cpu_hw_events as an XSAVES buffer for LBR read. The XSAVES buffer should be allocated only when LBR is used by a non-PEBS event on the CPU because the total size of the lbr_xsave is not small (~1.4KB). The XSAVES buffer is allocated when a non-PEBS event is added, but it is lazily released in x86_release_hardware() when perf releases the entire PMU hardware resource, because perf may frequently schedule the event, e.g. high context switch. The lazy release method reduces the overhead of frequently allocate/free the buffer. If the lbr_xsave fails to be allocated, roll back to normal Arch LBR lbr_read(). Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Reviewed-by: Dave Hansen <dave.hansen@intel.com> Link: https://lkml.kernel.org/r/1593780569-62993-24-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86/intel/lbr: Support XSAVES/XRSTORS for LBR context switchKan Liang1-5/+74
In the LBR call stack mode, LBR information is used to reconstruct a call stack. To get the complete call stack, perf has to save/restore all LBR registers during a context switch. Due to a large number of the LBR registers, this process causes a high CPU overhead. To reduce the CPU overhead during a context switch, use the XSAVES/XRSTORS instructions. Every XSAVE area must follow a canonical format: the legacy region, an XSAVE header and the extended region. Although the LBR information is only kept in the extended region, a space for the legacy region and XSAVE header is still required. Add a new dedicated structure for LBR XSAVES support. Before enabling XSAVES support, the size of the LBR state has to be sanity checked, because: - the size of the software structure is calculated from the max number of the LBR depth, which is enumerated by the CPUID leaf for Arch LBR. The size of the LBR state is enumerated by the CPUID leaf for XSAVE support of Arch LBR. If the values from the two CPUID leaves are not consistent, it may trigger a buffer overflow. For example, a hypervisor may unconsciously set inconsistent values for the two emulated CPUID. - unlike other state components, the size of an LBR state depends on the max number of LBRs, which may vary from generation to generation. Expose the function xfeature_size() for the sanity check. The LBR XSAVES support will be disabled if the size of the LBR state enumerated by CPUID doesn't match with the size of the software structure. The XSAVE instruction requires 64-byte alignment for state buffers. A new macro is added to reflect the alignment requirement. A 64-byte aligned kmem_cache is created for architecture LBR. Currently, the structure for each state component is maintained in fpu/types.h. The structure for the new LBR state component should be maintained in the same place. Move structure lbr_entry to fpu/types.h as well for broader sharing. Add dedicated lbr_save/lbr_restore functions for LBR XSAVES support, which invokes the corresponding xstate helpers to XSAVES/XRSTORS LBR information at the context switch when the call stack mode is enabled. Since the XSAVES/XRSTORS instructions will be eventually invoked, the dedicated functions is named with '_xsaves'/'_xrstors' postfix. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Reviewed-by: Dave Hansen <dave.hansen@intel.com> Link: https://lkml.kernel.org/r/1593780569-62993-23-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86: Remove task_ctx_sizeKan Liang1-1/+0
A new kmem_cache method has replaced the kzalloc() to allocate the PMU specific data. The task_ctx_size is not required anymore. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1593780569-62993-19-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86/intel/lbr: Create kmem_cache for the LBR context dataKan Liang1-2/+19
A new kmem_cache method is introduced to allocate the PMU specific data task_ctx_data, which requires the PMU specific code to create a kmem_cache. Currently, the task_ctx_data is only used by the Intel LBR call stack feature, which is introduced since Haswell. The kmem_cache should be only created for Haswell and later platforms. There is no alignment requirement for the existing platforms. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1593780569-62993-18-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86/intel/lbr: Support Architectural LBRKan Liang1-11/+240
Last Branch Records (LBR) enables recording of software path history by logging taken branches and other control flows within architectural registers now. Intel CPUs have had model-specific LBR for quite some time, but this evolves them into an architectural feature now. The main improvements of Architectural LBR implemented includes: - Linux kernel can support the LBR features without knowing the model number of the current CPU. - Architectural LBR capabilities can be enumerated by CPUID. The lbr_ctl_map is based on the CPUID Enumeration. - The possible LBR depth can be retrieved from CPUID enumeration. The max value is written to the new MSR_ARCH_LBR_DEPTH as the number of LBR entries. - A new IA32_LBR_CTL MSR is introduced to enable and configure LBRs, which replaces the IA32_DEBUGCTL[bit 0] and the LBR_SELECT MSR. - Each LBR record or entry is still comprised of three MSRs, IA32_LBR_x_FROM_IP, IA32_LBR_x_TO_IP and IA32_LBR_x_TO_IP. But they become the architectural MSRs. - Architectural LBR is stack-like now. Entry 0 is always the youngest branch, entry 1 the next youngest... The TOS MSR has been removed. The way to enable/disable Architectural LBR is similar to the previous model-specific LBR. __intel_pmu_lbr_enable/disable() can be reused, but some modifications are required, which include: - MSR_ARCH_LBR_CTL is used to enable and configure the Architectural LBR. - When checking the value of the IA32_DEBUGCTL MSR, ignoring the DEBUGCTLMSR_LBR (bit 0) for Architectural LBR, which has no meaning and always return 0. - The FREEZE_LBRS_ON_PMI has to be explicitly set/clear, because MSR_IA32_DEBUGCTLMSR is not touched in __intel_pmu_lbr_disable() for Architectural LBR. - Only MSR_ARCH_LBR_CTL is cleared in __intel_pmu_lbr_disable() for Architectural LBR. Some Architectural LBR dedicated functions are implemented to reset/read/save/restore LBR. - For reset, writing to the ARCH_LBR_DEPTH MSR clears all Arch LBR entries, which is a lot faster and can improve the context switch latency. - For read, the branch type information can be retrieved from the MSR_ARCH_LBR_INFO_*. But it's not fully compatible due to OTHER_BRANCH type. The software decoding is still required for the OTHER_BRANCH case. LBR records are stored in the age order as well. Reuse intel_pmu_store_lbr(). Check the CPUID enumeration before accessing the corresponding bits in LBR_INFO. - For save/restore, applying the fast reset (writing ARCH_LBR_DEPTH). Reading 'lbr_from' of entry 0 instead of the TOS MSR to check if the LBR registers are reset in the deep C-state. If 'the deep C-state reset' bit is not set in CPUID enumeration, ignoring the check. XSAVE support for Architectural LBR will be implemented later. The number of LBR entries cannot be hardcoded anymore, which should be retrieved from CPUID enumeration. A new structure x86_perf_task_context_arch_lbr is introduced for Architectural LBR. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1593780569-62993-15-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86/intel/lbr: Factor out intel_pmu_store_lbrKan Liang1-26/+56
The way to store the LBR information from a PEBS LBR record can be reused in Architecture LBR, because - The LBR information is stored like a stack. Entry 0 is always the youngest branch. - The layout of the LBR INFO MSR is similar. The LBR information may be retrieved from either the LBR registers (non-PEBS event) or a buffer (PEBS event). Extend rdlbr_*() to support both methods. Explicitly check the invalid entry (0s), which can avoid unnecessary MSR access if using a non-PEBS event. For a PEBS event, the check should slightly improve the performance as well. The invalid entries are cut. The intel_pmu_lbr_filter() doesn't need to check and filter them out. Cannot share the function with current model-specific LBR read, because the direction of the LBR growth is opposite. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1593780569-62993-14-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86/intel/lbr: Factor out rdlbr_all() and wrlbr_all()Kan Liang1-16/+50
The previous model-specific LBR and Architecture LBR (legacy way) use a similar method to save/restore the LBR information, which directly accesses the LBR registers. The codes which read/write a set of LBR registers can be shared between them. Factor out two functions which are used to read/write a set of LBR registers. Add lbr_info into structure x86_pmu, and use it to replace the hardcoded LBR INFO MSR, because the LBR INFO MSR address of the previous model-specific LBR is different from Architecture LBR. The MSR address should be assigned at boot time. For now, only Sky Lake and later platforms have the LBR INFO MSR. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1593780569-62993-13-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86/intel/lbr: Mark the {rd,wr}lbr_{to,from} wrappers __always_inlineKan Liang1-4/+4
The {rd,wr}lbr_{to,from} wrappers are invoked in hot paths, e.g. context switch and NMI handler. They should be always inline to achieve better performance. However, the CONFIG_OPTIMIZE_INLINING allows the compiler to uninline functions marked 'inline'. Mark the {rd,wr}lbr_{to,from} wrappers as __always_inline to force inline the wrappers. Suggested-by: Peter Zijlstra (Intel) <peterz@infradead.org> Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1593780569-62993-12-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86/intel/lbr: Unify the stored format of LBR informationKan Liang1-10/+10
Current LBR information in the structure x86_perf_task_context is stored in a different format from the PEBS LBR record and Architecture LBR, which prevents the sharing of the common codes. Use the format of the PEBS LBR record as a unified format. Use a generic name lbr_entry to replace pebs_lbr_entry. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1593780569-62993-11-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86/intel/lbr: Support LBR_CTLKan Liang1-0/+43
An IA32_LBR_CTL is introduced for Architecture LBR to enable and config LBR registers to replace the previous LBR_SELECT. All the related members in struct cpu_hw_events and struct x86_pmu have to be renamed. Some new macros are added to reflect the layout of LBR_CTL. The mapping from PERF_SAMPLE_BRANCH_* to the corresponding bits in LBR_CTL MSR is saved in lbr_ctl_map now, which is not a const value. The value relies on the CPUID enumeration. For the previous model-specific LBR, most of the bits in LBR_SELECT operate in the suppressed mode. For the bits in LBR_CTL, the polarity is inverted. For the previous model-specific LBR format 5 (LBR_FORMAT_INFO), if the NO_CYCLES and NO_FLAGS type are set, the flag LBR_NO_INFO will be set to avoid the unnecessary LBR_INFO MSR read. Although Architecture LBR also has a dedicated LBR_INFO MSR, perf doesn't need to check and set the flag LBR_NO_INFO. For Architecture LBR, XSAVES instruction will be used as the default way to read the LBR MSRs all together. The overhead which the flag tries to avoid doesn't exist anymore. Dropping the flag can save the extra check for the flag in the lbr_read() later, and make the code cleaner. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1593780569-62993-10-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86/intel/lbr: Use dynamic data structure for task_ctxKan Liang1-33/+26
The type of task_ctx is hardcoded as struct x86_perf_task_context, which doesn't apply for Architecture LBR. For example, Architecture LBR doesn't have the TOS MSR. The number of LBR entries is variable. A new struct will be introduced for Architecture LBR. Perf has to determine the type of task_ctx at run time. The type of task_ctx pointer is changed to 'void *', which will be determined at run time. The generic LBR optimization can be shared between Architecture LBR and model-specific LBR. Both need to access the structure for the generic LBR optimization. A helper task_context_opt() is introduced to retrieve the pointer of the structure at run time. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1593780569-62993-7-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86/intel/lbr: Factor out a new struct for generic optimizationKan Liang1-17/+21
To reduce the overhead of a context switch with LBR enabled, some generic optimizations were introduced, e.g. avoiding restore LBR if no one else touched them. The generic optimizations can also be used by Architecture LBR later. Currently, the fields for the generic optimizations are part of structure x86_perf_task_context, which will be deprecated by Architecture LBR. A new structure should be introduced for the common fields of generic optimization, which can be shared between Architecture LBR and model-specific LBR. Both 'valid_lbrs' and 'tos' are also used by the generic optimizations, but they are not moved into the new structure, because Architecture LBR is stack-like. The 'valid_lbrs' which records the index of the valid LBR is not required anymore. The TOS MSR will be removed. LBR registers may be cleared in the deep Cstate. If so, the generic optimizations should not be applied. Perf has to unconditionally restore the LBR registers. A generic function is required to detect the reset due to the deep Cstate. lbr_is_reset_in_cstate() is introduced. Currently, for the model-specific LBR, the TOS MSR is used to detect the reset. There will be another method introduced for Architecture LBR later. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1593780569-62993-6-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86/intel/lbr: Add the function pointers for LBR save and restoreKan Liang1-30/+49
The MSRs of Architectural LBR are different from previous model-specific LBR. Perf has to implement different functions to save and restore them. The function pointers for LBR save and restore are introduced. Perf should initialize the corresponding functions at boot time. The generic optimizations, e.g. avoiding restore LBR if no one else touched them, still apply for Architectural LBRs. The related codes are not moved to model-specific functions. Current model-specific LBR functions are set as default. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1593780569-62993-5-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86/intel/lbr: Add a function pointer for LBR readKan Liang1-6/+3
The method to read Architectural LBRs is different from previous model-specific LBR. Perf has to implement a different function. A function pointer for LBR read is introduced. Perf should initialize the corresponding function at boot time, and avoid checking lbr_format at run time. The current 64-bit LBR read function is set as default. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1593780569-62993-4-git-send-email-kan.liang@linux.intel.com
2020-07-08perf/x86/intel/lbr: Add a function pointer for LBR resetKan Liang1-17/+3
The method to reset Architectural LBRs is different from previous model-specific LBR. Perf has to implement a different function. A function pointer is introduced for LBR reset. The enum of LBR_FORMAT_* is also moved to perf_event.h. Perf should initialize the corresponding functions at boot time, and avoid checking lbr_format at run time. The current 64-bit LBR reset function is set as default. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/1593780569-62993-3-git-send-email-kan.liang@linux.intel.com
2020-07-02perf/x86: Keep LBR records unchanged in host context for guest usageLike Xu1-5/+26
When a guest wants to use the LBR registers, its hypervisor creates a guest LBR event and let host perf schedules it. The LBR records msrs are accessible to the guest when its guest LBR event is scheduled on by the perf subsystem. Before scheduling this event out, we should avoid host changes on IA32_DEBUGCTLMSR or LBR_SELECT. Otherwise, some unexpected branch operations may interfere with guest behavior, pollute LBR records, and even cause host branches leakage. In addition, the read operation on host is also avoidable. To ensure that guest LBR records are not lost during the context switch, the guest LBR event would enable the callstack mode which could save/restore guest unread LBR records with the help of intel_pmu_lbr_sched_task() naturally. However, the guest LBR_SELECT may changes for its own use and the host LBR event doesn't save/restore it. To ensure that we doesn't lost the guest LBR_SELECT value when the guest LBR event is running, the vlbr_constraint is bound up with a new constraint flag PERF_X86_EVENT_LBR_SELECT. Signed-off-by: Like Xu <like.xu@linux.intel.com> Signed-off-by: Wei Wang <wei.w.wang@intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/20200514083054.62538-6-like.xu@linux.intel.com
2020-07-02perf/x86: Add constraint to create guest LBR event without hw counterLike Xu1-0/+4
The hypervisor may request the perf subsystem to schedule a time window to directly access the LBR records msrs for its own use. Normally, it would create a guest LBR event with callstack mode enabled, which is scheduled along with other ordinary LBR events on the host but in an exclusive way. To avoid wasting a counter for the guest LBR event, the perf tracks its hw->idx via INTEL_PMC_IDX_FIXED_VLBR and assigns it with a fake VLBR counter with the help of new vlbr_constraint. As with the BTS event, there is actually no hardware counter assigned for the guest LBR event. Signed-off-by: Like Xu <like.xu@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/20200514083054.62538-5-like.xu@linux.intel.com
2020-07-02perf/x86/lbr: Add interface to get LBR informationLike Xu1-0/+20
The LBR records msrs are model specific. The perf subsystem has already obtained the base addresses of LBR records based on the cpu model. Therefore, an interface is added to allow callers outside the perf subsystem to obtain these LBR information. It's useful for hypervisors to emulate the LBR feature for guests with less code. Signed-off-by: Like Xu <like.xu@linux.intel.com> Signed-off-by: Wei Wang <wei.w.wang@intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Link: https://lkml.kernel.org/r/20200613080958.132489-4-like.xu@linux.intel.com
2020-02-11perf/x86/intel: Output LBR TOS information correctlyKan Liang1-3/+9
For Intel LBR, the LBR Top-of-Stack (TOS) information is the HW index of raw branch record for the most recent branch. For non-adaptive PEBS and non-PEBS, the TOS information can be directly retrieved from TOS MSR read in intel_pmu_lbr_read(). For adaptive PEBS, the LBR information stored in PEBS record doesn't include the TOS information. For single PEBS, TOS can be directly read from MSR, because the PMI is triggered immediately after PEBS is written. TOS MSR is still unchanged. For large PEBS, TOS MSR has stale value. Set -1ULL to indicate that the TOS information is not available. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Signed-off-by: Ingo Molnar <mingo@kernel.org> Link: https://lkml.kernel.org/r/20200127165355.27495-3-kan.liang@linux.intel.com
2020-02-11perf/core: Add new branch sample type for HW index of raw branch recordsKan Liang1-0/+3
The low level index is the index in the underlying hardware buffer of the most recently captured taken branch which is always saved in branch_entries[0]. It is very useful for reconstructing the call stack. For example, in Intel LBR call stack mode, the depth of reconstructed LBR call stack limits to the number of LBR registers. With the low level index information, perf tool may stitch the stacks of two samples. The reconstructed LBR call stack can break the HW limitation. Add a new branch sample type to retrieve low level index of raw branch records. The low level index is between -1 (unknown) and max depth which can be retrieved in /sys/devices/cpu/caps/branches. Only when the new branch sample type is set, the low level index information is dumped into the PERF_SAMPLE_BRANCH_STACK output. Perf tool should check the attr.branch_sample_type, and apply the corresponding format for PERF_SAMPLE_BRANCH_STACK samples. Otherwise, some user case may be broken. For example, users may parse a perf.data, which include the new branch sample type, with an old version perf tool (without the check). Users probably get incorrect information without any warning. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Signed-off-by: Ingo Molnar <mingo@kernel.org> Link: https://lkml.kernel.org/r/20200127165355.27495-2-kan.liang@linux.intel.com
2019-10-28perf/x86/intel: Implement LBR callstack context synchronizationAlexey Budankov1-0/+23
Implement intel_pmu_lbr_swap_task_ctx() method updating counters of the events that requested LBR callstack data on a sample. The counter can be zero for the case when task context belongs to a thread that has just come from a block on a futex and the context contains saved (lbr_stack_state == LBR_VALID) LBR register values. For the values to be restored at LBR registers on the next thread's switch-in event it swaps the counter value with the one that is expected to be non zero at the previous equivalent task perf event context. Swap operation type ensures the previous task perf event context stays consistent with the amount of events that requested LBR callstack data on a sample. Signed-off-by: Alexey Budankov <alexey.budankov@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Cc: Alexander Shishkin <alexander.shishkin@linux.intel.com> Cc: Arnaldo Carvalho de Melo <acme@kernel.org> Cc: Arnaldo Carvalho de Melo <acme@redhat.com> Cc: Ian Rogers <irogers@google.com> Cc: Jiri Olsa <jolsa@redhat.com> Cc: Kan Liang <kan.liang@linux.intel.com> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Mark Rutland <mark.rutland@arm.com> Cc: Namhyung Kim <namhyung@kernel.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Song Liu <songliubraving@fb.com> Cc: Stephane Eranian <eranian@google.com> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: Vince Weaver <vincent.weaver@maine.edu> Link: https://lkml.kernel.org/r/261ac742-9022-c3f4-5885-1eae7415b091@linux.intel.com Signed-off-by: Ingo Molnar <mingo@kernel.org>
2019-09-03perf/x86: Make more stuff staticValdis Klētnieks1-1/+1
When building with C=2, sparse makes note of a number of things: arch/x86/events/intel/rapl.c:637:30: warning: symbol 'rapl_attr_update' was not declared. Should it be static? arch/x86/events/intel/cstate.c:449:30: warning: symbol 'core_attr_update' was not declared. Should it be static? arch/x86/events/intel/cstate.c:457:30: warning: symbol 'pkg_attr_update' was not declared. Should it be static? arch/x86/events/msr.c:170:30: warning: symbol 'attr_update' was not declared. Should it be static? arch/x86/events/intel/lbr.c:276:1: warning: symbol 'lbr_from_quirk_key' was not declared. Should it be static? And they can all indeed be static. Signed-off-by: Valdis Kletnieks <valdis.kletnieks@vt.edu> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Cc: Alexander Shishkin <alexander.shishkin@linux.intel.com> Cc: Arnaldo Carvalho de Melo <acme@redhat.com> Cc: Jiri Olsa <jolsa@redhat.com> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Thomas Gleixner <tglx@linutronix.de> Link: https://lkml.kernel.org/r/128059.1565286242@turing-police Signed-off-by: Ingo Molnar <mingo@kernel.org>
2019-04-16perf/x86/lbr: Avoid reading the LBRs when adaptive PEBS handles themAndi Kleen1-1/+12
With adaptive PEBS the CPU can directly supply the LBR information, so we don't need to read it again. But the LBRs still need to be enabled. Add a special count to the cpuc that distinguishes these two cases, and avoid reading the LBRs unnecessarily when PEBS is active. Signed-off-by: Andi Kleen <ak@linux.intel.com> Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Cc: Alexander Shishkin <alexander.shishkin@linux.intel.com> Cc: Arnaldo Carvalho de Melo <acme@redhat.com> Cc: Jiri Olsa <jolsa@redhat.com> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Stephane Eranian <eranian@google.com> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: Vince Weaver <vincent.weaver@maine.edu> Cc: acme@kernel.org Cc: jolsa@kernel.org Link: https://lkml.kernel.org/r/20190402194509.2832-7-kan.liang@linux.intel.com Signed-off-by: Ingo Molnar <mingo@kernel.org>
2019-04-16perf/x86/intel: Support adaptive PEBS v4Kan Liang1-0/+22
Adaptive PEBS is a new way to report PEBS sampling information. Instead of a fixed size record for all PEBS events it allows to configure the PEBS record to only include the information needed. Events can then opt in to use such an extended record, or stay with a basic record which only contains the IP. The major new feature is to support LBRs in PEBS record. Besides normal LBR, this allows (much faster) large PEBS, while still supporting callstacks through callstack LBR. So essentially a lot of profiling can now be done without frequent interrupts, dropping the overhead significantly. The main requirement still is to use a period, and not use frequency mode, because frequency mode requires reevaluating the frequency on each overflow. The floating point state (XMM) is also supported, which allows efficient profiling of FP function arguments. Introduce specific drain function to handle variable length records. Use a new callback to parse the new record format, and also handle the STATUS field now being at a different offset. Add code to set up the configuration register. Since there is only a single register, all events either get the full super set of all events, or only the basic record. Originally-by: Andi Kleen <ak@linux.intel.com> Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Cc: Alexander Shishkin <alexander.shishkin@linux.intel.com> Cc: Arnaldo Carvalho de Melo <acme@redhat.com> Cc: Jiri Olsa <jolsa@redhat.com> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Stephane Eranian <eranian@google.com> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: Vince Weaver <vincent.weaver@maine.edu> Cc: acme@kernel.org Cc: jolsa@kernel.org Link: https://lkml.kernel.org/r/20190402194509.2832-6-kan.liang@linux.intel.com [ Renamed GPRS => GP. ] Signed-off-by: Ingo Molnar <mingo@kernel.org>
2019-01-29x86/events: Mark expected switch-case fall-throughsGustavo A. R. Silva1-0/+1
In preparation to enable -Wimplicit-fallthrough by default, mark switch-case statements where fall-through is intentional, explicitly in order to fix a couple of -Wimplicit-fallthrough warnings. Warning level 3 was used: -Wimplicit-fallthrough=3. [ bp: Massasge and trim commit message. ] Signed-off-by: Gustavo A. R. Silva <gustavo@embeddedor.com> Signed-off-by: Borislav Petkov <bp@suse.de> Acked-by: Peter Zijlstra <peterz@infradead.org> Cc: Andi Kleen <ak@linux.intel.com> Cc: "H. Peter Anvin" <hpa@zytor.com> Cc: Ingo Molnar <mingo@redhat.com> Cc: Jacek Tomaka <jacek.tomaka@poczta.fm> Cc: Jia Zhang <qianyue.zj@alibaba-inc.com> Cc: Jiri Olsa <jolsa@kernel.org> Cc: Kan Liang <kan.liang@linux.intel.com> Cc: Kees Cook <keescook@chromium.org> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: x86-ml <x86@kernel.org> Link: https://lkml.kernel.org/r/20190125184917.GA7289@embeddedor
2018-09-10perf/x86/intel: Add support/quirk for the MISPREDICT bit on Knights Landing CPUsJacek Tomaka1-0/+4
Problem: perf did not show branch predicted/mispredicted bit in brstack. Output of perf -F brstack for profile collected Before: 0x4fdbcd/0x4fdc03/-/-/-/0 0x45f4c1/0x4fdba0/-/-/-/0 0x45f544/0x45f4bb/-/-/-/0 0x45f555/0x45f53c/-/-/-/0 0x7f66901cc24b/0x45f555/-/-/-/0 0x7f66901cc22e/0x7f66901cc23d/-/-/-/0 0x7f66901cc1ff/0x7f66901cc20f/-/-/-/0 0x7f66901cc1e8/0x7f66901cc1fc/-/-/-/0 After: 0x4fdbcd/0x4fdc03/P/-/-/0 0x45f4c1/0x4fdba0/P/-/-/0 0x45f544/0x45f4bb/P/-/-/0 0x45f555/0x45f53c/P/-/-/0 0x7f66901cc24b/0x45f555/P/-/-/0 0x7f66901cc22e/0x7f66901cc23d/P/-/-/0 0x7f66901cc1ff/0x7f66901cc20f/P/-/-/0 0x7f66901cc1e8/0x7f66901cc1fc/P/-/-/0 Cause: As mentioned in Software Development Manual vol 3, 17.4.8.1, IA32_PERF_CAPABILITIES[5:0] indicates the format of the address that is stored in the LBR stack. Knights Landing reports 1 (LBR_FORMAT_LIP) as its format. Despite that, registers containing FROM address of the branch, do have MISPREDICT bit but because of the format indicated in IA32_PERF_CAPABILITIES[5:0], LBR did not read MISPREDICT bit. Solution: Teach LBR about above Knights Landing quirk and make it read MISPREDICT bit. Signed-off-by: Jacek Tomaka <jacek.tomaka@poczta.fm> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Thomas Gleixner <tglx@linutronix.de> Link: http://lkml.kernel.org/r/20180802013830.10600-1-jacekt@dugeo.com Signed-off-by: Ingo Molnar <mingo@kernel.org>
2018-06-21perf/x86/intel/lbr: Optimize context switches for the LBR call stackKan Liang1-1/+23
Context switches with perf LBR call stack context are fairly expensive because they do a lot of MSR writes. Currently we unconditionally do the expensive operation when LBR call stack is enabled. It's not necessary for some common cases, e.g task -> other kernel thread -> same task. The LBR registers are not changed, hence they don't need to be rewritten/restored. Introduce per-CPU variables to track the last LBR call stack context. If the same context is scheduled in, the rewrite/restore is not required, with the following two exceptions: - The LBR registers may be modified by a normal LBR event, i.e., adding a new LBR event or scheduling an existing LBR event. In both cases, the LBR registers are reset first. The last LBR call stack information is cleared in intel_pmu_lbr_reset(). Restoring the LBR registers is required. - The LBR registers are initialized to zero in C6. If the LBR registers which TOS points is cleared, C6 must be entered while swapped out. Restoring the LBR registers is required as well. These exceptions are not common. Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Arnaldo Carvalho de Melo <acme@redhat.com> Cc: Jiri Olsa <jolsa@redhat.com> Cc: Stephane Eranian <eranian@google.com> Cc: Vince Weaver <vincent.weaver@maine.edu> Cc: Alexander Shishkin <alexander.shishkin@linux.intel.com> Cc: acme@kernel.org Cc: eranian@google.com Link: https://lore.kernel.org/lkml/1528213126-4312-2-git-send-email-kan.liang@linux.intel.com Signed-off-by: Ingo Molnar <mingo@kernel.org>
2018-06-21perf/x86/intel/lbr: Fix incomplete LBR call stackKan Liang1-6/+26
LBR has a limited stack size. If a task has a deeper call stack than LBR's stack size, only the overflowed part is reported. A complete call stack may not be reconstructed by perf tool. Current code doesn't access all LBR registers. It only read the ones below the TOS. The LBR registers above the TOS will be discarded unconditionally. When a CALL is captured, the TOS is incremented by 1 , modulo max LBR stack size. The LBR HW only records the call stack information to the register which the TOS points to. It will not touch other LBR registers. So the registers above the TOS probably still store the valid call stack information for an overflowed call stack, which need to be reported. To retrieve complete call stack information, we need to start from TOS, read all LBR registers until an invalid entry is detected. 0s can be used to detect the invalid entry, because: - When a RET is captured, the HW zeros the LBR register which TOS points to, then decreases the TOS. - The LBR registers are reset to 0 when adding a new LBR event or scheduling an existing LBR event. - A taken branch at IP 0 is not expected The context switch code is also modified to save/restore all valid LBR registers. Furthermore, the LBR registers, which don't have valid call stack information, need to be reset in restore, because they may be polluted while swapped out. Here is a small test program, tchain_deep. Its call stack is deeper than 32. noinline void f33(void) { int i; for (i = 0; i < 10000000;) { if (i%2) i++; else i++; } } noinline void f32(void) { f33(); } noinline void f31(void) { f32(); } ... ... noinline void f1(void) { f2(); } int main() { f1(); } Here is the test result on SKX. The max stack size of SKX is 32. Without the patch: $ perf record -e cycles --call-graph lbr -- ./tchain_deep $ perf report --stdio # # Children Self Command Shared Object Symbol # ........ ........ ........... ................ ................. # 100.00% 99.99% tchain_deep tchain_deep [.] f33 | --99.99%--f30 f31 f32 f33 With the patch: $ perf record -e cycles --call-graph lbr -- ./tchain_deep $ perf report --stdio # Children Self Command Shared Object Symbol # ........ ........ ........... ................ .................. # 99.99% 0.00% tchain_deep tchain_deep [.] f1 | ---f1 f2 f3 f4 f5 f6 f7 f8 f9 f10 f11 f12 f13 f14 f15 f16 f17 f18 f19 f20 f21 f22 f23 f24 f25 f26 f27 f28 f29 f30 f31 f32 f33 Signed-off-by: Kan Liang <kan.liang@linux.intel.com> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Arnaldo Carvalho de Melo <acme@redhat.com> Cc: Jiri Olsa <jolsa@redhat.com> Cc: Stephane Eranian <eranian@google.com> Cc: Vince Weaver <vincent.weaver@maine.edu> Cc: Alexander Shishkin <alexander.shishkin@linux.intel.com> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: acme@kernel.org Cc: eranian@google.com Link: https://lore.kernel.org/lkml/1528213126-4312-1-git-send-email-kan.liang@linux.intel.com Signed-off-by: Ingo Molnar <mingo@kernel.org>
2018-02-15x86/cpu: Rename cpu_data.x86_mask to cpu_data.x86_steppingJia Zhang1-1/+1
x86_mask is a confusing name which is hard to associate with the processor's stepping. Additionally, correct an indent issue in lib/cpu.c. Signed-off-by: Jia Zhang <qianyue.zj@alibaba-inc.com> [ Updated it to more recent kernels. ] Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: bp@alien8.de Cc: tony.luck@intel.com Link: http://lkml.kernel.org/r/1514771530-70829-1-git-send-email-qianyue.zj@alibaba-inc.com Signed-off-by: Ingo Molnar <mingo@kernel.org>
2017-11-02License cleanup: add SPDX GPL-2.0 license identifier to files with no licenseGreg Kroah-Hartman1-0/+1
Many source files in the tree are missing licensing information, which makes it harder for compliance tools to determine the correct license. By default all files without license information are under the default license of the kernel, which is GPL version 2. Update the files which contain no license information with the 'GPL-2.0' SPDX license identifier. The SPDX identifier is a legally binding shorthand, which can be used instead of the full boiler plate text. This patch is based on work done by Thomas Gleixner and Kate Stewart and Philippe Ombredanne. How this work was done: Patches were generated and checked against linux-4.14-rc6 for a subset of the use cases: - file had no licensing information it it. - file was a */uapi/* one with no licensing information in it, - file was a */uapi/* one with existing licensing information, Further patches will be generated in subsequent months to fix up cases where non-standard license headers were used, and references to license had to be inferred by heuristics based on keywords. The analysis to determine which SPDX License Identifier to be applied to a file was done in a spreadsheet of side by side results from of the output of two independent scanners (ScanCode & Windriver) producing SPDX tag:value files created by Philippe Ombredanne. Philippe prepared the base worksheet, and did an initial spot review of a few 1000 files. The 4.13 kernel was the starting point of the analysis with 60,537 files assessed. Kate Stewart did a file by file comparison of the scanner results in the spreadsheet to determine which SPDX license identifier(s) to be applied to the file. She confirmed any determination that was not immediately clear with lawyers working with the Linux Foundation. Criteria used to select files for SPDX license identifier tagging was: - Files considered eligible had to be source code files. - Make and config files were included as candidates if they contained >5 lines of source - File already had some variant of a license header in it (even if <5 lines). All documentation files were explicitly excluded. The following heuristics were used to determine which SPDX license identifiers to apply. - when both scanners couldn't find any license traces, file was considered to have no license information in it, and the top level COPYING file license applied. For non */uapi/* files that summary was: SPDX license identifier # files ---------------------------------------------------|------- GPL-2.0 11139 and resulted in the first patch in this series. If that file was a */uapi/* path one, it was "GPL-2.0 WITH Linux-syscall-note" otherwise it was "GPL-2.0". Results of that was: SPDX license identifier # files ---------------------------------------------------|------- GPL-2.0 WITH Linux-syscall-note 930 and resulted in the second patch in this series. - if a file had some form of licensing information in it, and was one of the */uapi/* ones, it was denoted with the Linux-syscall-note if any GPL family license was found in the file or had no licensing in it (per prior point). Results summary: SPDX license identifier # files ---------------------------------------------------|------ GPL-2.0 WITH Linux-syscall-note 270 GPL-2.0+ WITH Linux-syscall-note 169 ((GPL-2.0 WITH Linux-syscall-note) OR BSD-2-Clause) 21 ((GPL-2.0 WITH Linux-syscall-note) OR BSD-3-Clause) 17 LGPL-2.1+ WITH Linux-syscall-note 15 GPL-1.0+ WITH Linux-syscall-note 14 ((GPL-2.0+ WITH Linux-syscall-note) OR BSD-3-Clause) 5 LGPL-2.0+ WITH Linux-syscall-note 4 LGPL-2.1 WITH Linux-syscall-note 3 ((GPL-2.0 WITH Linux-syscall-note) OR MIT) 3 ((GPL-2.0 WITH Linux-syscall-note) AND MIT) 1 and that resulted in the third patch in this series. - when the two scanners agreed on the detected license(s), that became the concluded license(s). - when there was disagreement between the two scanners (one detected a license but the other didn't, or they both detected different licenses) a manual inspection of the file occurred. - In most cases a manual inspection of the information in the file resulted in a clear resolution of the license that should apply (and which scanner probably needed to revisit its heuristics). - When it was not immediately clear, the license identifier was confirmed with lawyers working with the Linux Foundation. - If there was any question as to the appropriate license identifier, the file was flagged for further research and to be revisited later in time. In total, over 70 hours of logged manual review was done on the spreadsheet to determine the SPDX license identifiers to apply to the source files by Kate, Philippe, Thomas and, in some cases, confirmation by lawyers working with the Linux Foundation. Kate also obtained a third independent scan of the 4.13 code base from FOSSology, and compared selected files where the other two scanners disagreed against that SPDX file, to see if there was new insights. The Windriver scanner is based on an older version of FOSSology in part, so they are related. Thomas did random spot checks in about 500 files from the spreadsheets for the uapi headers and agreed with SPDX license identifier in the files he inspected. For the non-uapi files Thomas did random spot checks in about 15000 files. In initial set of patches against 4.14-rc6, 3 files were found to have copy/paste license identifier errors, and have been fixed to reflect the correct identifier. Additionally Philippe spent 10 hours this week doing a detailed manual inspection and review of the 12,461 patched files from the initial patch version early this week with: - a full scancode scan run, collecting the matched texts, detected license ids and scores - reviewing anything where there was a license detected (about 500+ files) to ensure that the applied SPDX license was correct - reviewing anything where there was no detection but the patch license was not GPL-2.0 WITH Linux-syscall-note to ensure that the applied SPDX license was correct This produced a worksheet with 20 files needing minor correction. This worksheet was then exported into 3 different .csv files for the different types of files to be modified. These .csv files were then reviewed by Greg. Thomas wrote a script to parse the csv files and add the proper SPDX tag to the file, in the format that the file expected. This script was further refined by Greg based on the output to detect more types of files automatically and to distinguish between header and source .c files (which need different comment types.) Finally Greg ran the script using the .csv files to generate the patches. Reviewed-by: Kate Stewart <kstewart@linuxfoundation.org> Reviewed-by: Philippe Ombredanne <pombredanne@nexb.com> Reviewed-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
2017-07-30Merge branch 'perf/urgent' into perf/core, to pick up latest fixes and ↵Ingo Molnar1-0/+4
refresh the tree Signed-off-by: Ingo Molnar <mingo@kernel.org>
2017-07-21perf/x86/intel: Add proper condition to run sched_task callbacksJiri Olsa1-0/+4
We have 2 functions using the same sched_task callback: - PEBS drain for free running counters - LBR save/store Both of them are called from intel_pmu_sched_task() and either of them can be unwillingly triggered when the other one is configured to run. Let's say there's PEBS drain configured in sched_task callback for the event, but in the callback itself (intel_pmu_sched_task()) we will also run the code for LBR save/restore, which we did not ask for, but the code in intel_pmu_sched_task() does not check for that. This can lead to extra cycles in some perf monitoring, like when we monitor PEBS event without LBR data. # perf record --no-timestamp -c 10000 -e cycles:p ./perf bench sched pipe -l 1000000 (We need PEBS, non freq/non timestamp event to enable the sched_task callback) The perf stat of cycles and msr:write_msr for above command before the change: ... Performance counter stats for './perf record --no-timestamp -c 10000 -e cycles:p \ ./perf bench sched pipe -l 1000000' (5 runs): 18,519,557,441 cycles:k 91,195,527 msr:write_msr 29.334476406 seconds time elapsed And after the change: ... Performance counter stats for './perf record --no-timestamp -c 10000 -e cycles:p \ ./perf bench sched pipe -l 1000000' (5 runs): 18,704,973,540 cycles:k 27,184,720 msr:write_msr 16.977875900 seconds time elapsed There's no affect on cycles:k because the sched_task happens with events switched off, however the msr:write_msr tracepoint counter together with almost 50% of time speedup show the improvement. Monitoring LBR event and having extra PEBS drain processing in sched_task callback showed just a little speedup, because the drain function does not do much extra work in case there is no PEBS data. Adding conditions to recognize the configured work that needs to be done in the x86_pmu's sched_task callback. Suggested-by: Peter Zijlstra <peterz@infradead.org> Signed-off-by: Jiri Olsa <jolsa@kernel.org> Acked-by: Peter Zijlstra (Intel) <peterz@infradead.org> Cc: Kan Liang <kan.liang@intel.com> Cc: Alexander Shishkin <alexander.shishkin@linux.intel.com> Cc: Jiri Olsa <jolsa@kernel.org> Link: http://lkml.kernel.org/r/20170719075247.GA27506@krava Signed-off-by: Ingo Molnar <mingo@kernel.org>
2017-07-19perf/x86/intel: Record branch typeJin Yao1-1/+51
Perf already has support for disassembling the branch instruction and using the branch type for filtering. The patch just records the branch type in perf_branch_entry. Before recording, the patch converts the x86 branch type to common branch type. Change log: v10: Set the branch_map array to be static. The previous version has it on stack then makes the compiler to create it every time when the function gets called. v9: Use __ffs() to find first bit in type in common_branch_type(). It lets the code be clear. v8: Change PERF_BR_NONE to PERF_BR_UNKNOWN. v7: Just convert following x86 branch types to common branch types. X86_BR_CALL -> PERF_BR_CALL X86_BR_RET -> PERF_BR_RET X86_BR_JCC -> PERF_BR_COND X86_BR_JMP -> PERF_BR_UNCOND X86_BR_IND_CALL -> PERF_BR_IND_CALL X86_BR_ZERO_CALL -> PERF_BR_CALL X86_BR_IND_JMP -> PERF_BR_IND X86_BR_SYSCALL -> PERF_BR_SYSCALL X86_BR_SYSRET -> PERF_BR_SYSRET Others are set to PERF_BR_NONE v6: Not changed. v5: Just fix the merge error. No other update. v4: Comparing to previous version, the major changes are: 1. Uses a lookup table to convert x86 branch type to common branch type. 2. Move the JCC forward/JCC backward and cross page computing to user space. 3. Initialize branch type to 0 in intel_pmu_lbr_read_32 and intel_pmu_lbr_read_64 Signed-off-by: Yao Jin <yao.jin@linux.intel.com> Acked-by: Jiri Olsa <jolsa@kernel.org> Acked-by: Peter Zijlstra <peterz@infradead.org> Cc: Alexander Shishkin <alexander.shishkin@linux.intel.com> Cc: Andi Kleen <ak@linux.intel.com> Cc: Kan Liang <kan.liang@intel.com> Cc: Michael Ellerman <mpe@ellerman.id.au> Link: http://lkml.kernel.org/r/1500379995-6449-3-git-send-email-yao.jin@linux.intel.com Signed-off-by: Arnaldo Carvalho de Melo <acme@redhat.com>
2017-06-30perf/x86/intel: Constify the 'lbr_desc[]' array and make a function staticColin Ian King1-2/+2
A few minor clean-ups: constify the lbr_desc[] array and make local function lbr_from_signext_quirk_rd() static to fix a sparse warning: "symbol 'lbr_from_signext_quirk_rd' was not declared. Should it be static?" Signed-off-by: Colin Ian King <colin.king@canonical.com> Cc: Dan Carpenter <dan.carpenter@oracle.com> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: kernel-janitors@vger.kernel.org Link: http://lkml.kernel.org/r/20170629091406.9870-1-colin.king@canonical.com Signed-off-by: Ingo Molnar <mingo@kernel.org>
2017-04-14perf/x86: Avoid exposing wrong/stale data in intel_pmu_lbr_read_32()Peter Zijlstra1-0/+3
When the perf_branch_entry::{in_tx,abort,cycles} fields were added, intel_pmu_lbr_read_32() wasn't updated to initialize them. Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: linux-kernel@vger.kernel.org Cc: <stable@vger.kernel.org> Fixes: 135c5612c460 ("perf/x86/intel: Support Haswell/v4 LBR format") Signed-off-by: Ingo Molnar <mingo@kernel.org>
2016-10-16perf/x86/intel: Remove an inconsistent NULL checkDan Carpenter1-2/+2
Smatch complains that we don't check "event->ctx" consistently. It's never NULL so we can just remove the check. Signed-off-by: Dan Carpenter <dan.carpenter@oracle.com> Cc: Alexander Shishkin <alexander.shishkin@linux.intel.com> Cc: Arnaldo Carvalho de Melo <acme@redhat.com> Cc: David Carrillo-Cisneros <davidcc@google.com> Cc: Jiri Olsa <jolsa@redhat.com> Cc: Kan Liang <kan.liang@intel.com> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Stephane Eranian <eranian@google.com> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: Vince Weaver <vincent.weaver@maine.edu> Cc: kernel-janitors@vger.kernel.org Cc: linux-kernel@vger.kernel.org Signed-off-by: Ingo Molnar <mingo@kernel.org>