diff options
author | Linus Torvalds | 2016-03-24 10:02:14 -0700 |
---|---|---|
committer | Linus Torvalds | 2016-03-24 10:02:14 -0700 |
commit | 3fa2fe2ce09c5a16be69c5319eb3347271a99735 (patch) | |
tree | 7067760e7006dec7ac6fe18fe3d09851293b63ea /arch | |
parent | d88f48e12821ab4b2244124d50ac094568f48db5 (diff) | |
parent | 05f5ece76a88a2cd4859bc93f90379733dd8b4a3 (diff) |
Merge branch 'perf-urgent-for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip
Pull perf fixes from Ingo Molnar:
"This tree contains various perf fixes on the kernel side, plus three
hw/event-enablement late additions:
- Intel Memory Bandwidth Monitoring events and handling
- the AMD Accumulated Power Mechanism reporting facility
- more IOMMU events
... and a final round of perf tooling updates/fixes"
* 'perf-urgent-for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (44 commits)
perf llvm: Use strerror_r instead of the thread unsafe strerror one
perf llvm: Use realpath to canonicalize paths
perf tools: Unexport some methods unused outside strbuf.c
perf probe: No need to use formatting strbuf method
perf help: Use asprintf instead of adhoc equivalents
perf tools: Remove unused perf_pathdup, xstrdup functions
perf tools: Do not include stringify.h from the kernel sources
tools include: Copy linux/stringify.h from the kernel
tools lib traceevent: Remove redundant CPU output
perf tools: Remove needless 'extern' from function prototypes
perf tools: Simplify die() mechanism
perf tools: Remove unused DIE_IF macro
perf script: Remove lots of unused arguments
perf thread: Rename perf_event__preprocess_sample_addr to thread__resolve
perf machine: Rename perf_event__preprocess_sample to machine__resolve
perf tools: Add cpumode to struct perf_sample
perf tests: Forward the perf_sample in the dwarf unwind test
perf tools: Remove misplaced __maybe_unused
perf list: Fix documentation of :ppp
perf bench numa: Fix assertion for nodes bitfield
...
Diffstat (limited to 'arch')
-rw-r--r-- | arch/x86/Kconfig | 9 | ||||
-rw-r--r-- | arch/x86/events/Makefile | 1 | ||||
-rw-r--r-- | arch/x86/events/amd/ibs.c | 37 | ||||
-rw-r--r-- | arch/x86/events/amd/iommu.c | 5 | ||||
-rw-r--r-- | arch/x86/events/amd/power.c | 353 | ||||
-rw-r--r-- | arch/x86/events/core.c | 4 | ||||
-rw-r--r-- | arch/x86/events/intel/cqm.c | 454 | ||||
-rw-r--r-- | arch/x86/events/intel/ds.c | 5 | ||||
-rw-r--r-- | arch/x86/events/intel/rapl.c | 2 | ||||
-rw-r--r-- | arch/x86/events/intel/uncore_snbep.c | 7 | ||||
-rw-r--r-- | arch/x86/include/asm/cpufeatures.h | 4 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/amd.c | 18 | ||||
-rw-r--r-- | arch/x86/kernel/cpu/common.c | 4 |
13 files changed, 864 insertions, 39 deletions
diff --git a/arch/x86/Kconfig b/arch/x86/Kconfig index 54478b7635de..2dc18605831f 100644 --- a/arch/x86/Kconfig +++ b/arch/x86/Kconfig @@ -1210,6 +1210,15 @@ config MICROCODE_OLD_INTERFACE def_bool y depends on MICROCODE +config PERF_EVENTS_AMD_POWER + depends on PERF_EVENTS && CPU_SUP_AMD + tristate "AMD Processor Power Reporting Mechanism" + ---help--- + Provide power reporting mechanism support for AMD processors. + Currently, it leverages X86_FEATURE_ACC_POWER + (CPUID Fn8000_0007_EDX[12]) interface to calculate the + average power consumption on Family 15h processors. + config X86_MSR tristate "/dev/cpu/*/msr - Model-specific register support" ---help--- diff --git a/arch/x86/events/Makefile b/arch/x86/events/Makefile index fdfea1511cc0..f59618a39990 100644 --- a/arch/x86/events/Makefile +++ b/arch/x86/events/Makefile @@ -1,6 +1,7 @@ obj-y += core.o obj-$(CONFIG_CPU_SUP_AMD) += amd/core.o amd/uncore.o +obj-$(CONFIG_PERF_EVENTS_AMD_POWER) += amd/power.o obj-$(CONFIG_X86_LOCAL_APIC) += amd/ibs.o msr.o ifdef CONFIG_AMD_IOMMU obj-$(CONFIG_CPU_SUP_AMD) += amd/iommu.o diff --git a/arch/x86/events/amd/ibs.c b/arch/x86/events/amd/ibs.c index 51087c29b2c2..3ea25c3917c0 100644 --- a/arch/x86/events/amd/ibs.c +++ b/arch/x86/events/amd/ibs.c @@ -376,7 +376,13 @@ static void perf_ibs_start(struct perf_event *event, int flags) hwc->state = 0; perf_ibs_set_period(perf_ibs, hwc, &period); + /* + * Set STARTED before enabling the hardware, such that + * a subsequent NMI must observe it. Then clear STOPPING + * such that we don't consume NMIs by accident. + */ set_bit(IBS_STARTED, pcpu->state); + clear_bit(IBS_STOPPING, pcpu->state); perf_ibs_enable_event(perf_ibs, hwc, period >> 4); perf_event_update_userpage(event); @@ -390,7 +396,7 @@ static void perf_ibs_stop(struct perf_event *event, int flags) u64 config; int stopping; - stopping = test_and_clear_bit(IBS_STARTED, pcpu->state); + stopping = test_bit(IBS_STARTED, pcpu->state); if (!stopping && (hwc->state & PERF_HES_UPTODATE)) return; @@ -398,8 +404,24 @@ static void perf_ibs_stop(struct perf_event *event, int flags) rdmsrl(hwc->config_base, config); if (stopping) { + /* + * Set STOPPING before disabling the hardware, such that it + * must be visible to NMIs the moment we clear the EN bit, + * at which point we can generate an !VALID sample which + * we need to consume. + */ set_bit(IBS_STOPPING, pcpu->state); perf_ibs_disable_event(perf_ibs, hwc, config); + /* + * Clear STARTED after disabling the hardware; if it were + * cleared before an NMI hitting after the clear but before + * clearing the EN bit might think it a spurious NMI and not + * handle it. + * + * Clearing it after, however, creates the problem of the NMI + * handler seeing STARTED but not having a valid sample. + */ + clear_bit(IBS_STARTED, pcpu->state); WARN_ON_ONCE(hwc->state & PERF_HES_STOPPED); hwc->state |= PERF_HES_STOPPED; } @@ -527,20 +549,24 @@ static int perf_ibs_handle_irq(struct perf_ibs *perf_ibs, struct pt_regs *iregs) u64 *buf, *config, period; if (!test_bit(IBS_STARTED, pcpu->state)) { +fail: /* * Catch spurious interrupts after stopping IBS: After * disabling IBS there could be still incoming NMIs * with samples that even have the valid bit cleared. * Mark all this NMIs as handled. */ - return test_and_clear_bit(IBS_STOPPING, pcpu->state) ? 1 : 0; + if (test_and_clear_bit(IBS_STOPPING, pcpu->state)) + return 1; + + return 0; } msr = hwc->config_base; buf = ibs_data.regs; rdmsrl(msr, *buf); if (!(*buf++ & perf_ibs->valid_mask)) - return 0; + goto fail; config = &ibs_data.regs[0]; perf_ibs_event_update(perf_ibs, event, config); @@ -599,7 +625,7 @@ static int perf_ibs_handle_irq(struct perf_ibs *perf_ibs, struct pt_regs *iregs) throttle = perf_event_overflow(event, &data, ®s); out: if (throttle) - perf_ibs_disable_event(perf_ibs, hwc, *config); + perf_ibs_stop(event, 0); else perf_ibs_enable_event(perf_ibs, hwc, period >> 4); @@ -611,6 +637,7 @@ out: static int perf_ibs_nmi_handler(unsigned int cmd, struct pt_regs *regs) { + u64 stamp = sched_clock(); int handled = 0; handled += perf_ibs_handle_irq(&perf_ibs_fetch, regs); @@ -619,6 +646,8 @@ perf_ibs_nmi_handler(unsigned int cmd, struct pt_regs *regs) if (handled) inc_irq_stat(apic_perf_irqs); + perf_sample_event_took(sched_clock() - stamp); + return handled; } NOKPROBE_SYMBOL(perf_ibs_nmi_handler); diff --git a/arch/x86/events/amd/iommu.c b/arch/x86/events/amd/iommu.c index 635e5eba0caf..40625ca7a190 100644 --- a/arch/x86/events/amd/iommu.c +++ b/arch/x86/events/amd/iommu.c @@ -118,6 +118,11 @@ static struct amd_iommu_event_desc amd_iommu_v2_event_descs[] = { AMD_IOMMU_EVENT_DESC(cmd_processed, "csource=0x11"), AMD_IOMMU_EVENT_DESC(cmd_processed_inv, "csource=0x12"), AMD_IOMMU_EVENT_DESC(tlb_inv, "csource=0x13"), + AMD_IOMMU_EVENT_DESC(ign_rd_wr_mmio_1ff8h, "csource=0x14"), + AMD_IOMMU_EVENT_DESC(vapic_int_non_guest, "csource=0x15"), + AMD_IOMMU_EVENT_DESC(vapic_int_guest, "csource=0x16"), + AMD_IOMMU_EVENT_DESC(smi_recv, "csource=0x17"), + AMD_IOMMU_EVENT_DESC(smi_blk, "csource=0x18"), { /* end: all zeroes */ }, }; diff --git a/arch/x86/events/amd/power.c b/arch/x86/events/amd/power.c new file mode 100644 index 000000000000..55a3529dbf12 --- /dev/null +++ b/arch/x86/events/amd/power.c @@ -0,0 +1,353 @@ +/* + * Performance events - AMD Processor Power Reporting Mechanism + * + * Copyright (C) 2016 Advanced Micro Devices, Inc. + * + * Author: Huang Rui <ray.huang@amd.com> + * + * This program is free software; you can redistribute it and/or modify + * it under the terms of the GNU General Public License version 2 as + * published by the Free Software Foundation. + */ + +#include <linux/module.h> +#include <linux/slab.h> +#include <linux/perf_event.h> +#include <asm/cpu_device_id.h> +#include "../perf_event.h" + +#define MSR_F15H_CU_PWR_ACCUMULATOR 0xc001007a +#define MSR_F15H_CU_MAX_PWR_ACCUMULATOR 0xc001007b +#define MSR_F15H_PTSC 0xc0010280 + +/* Event code: LSB 8 bits, passed in attr->config any other bit is reserved. */ +#define AMD_POWER_EVENT_MASK 0xFFULL + +/* + * Accumulated power status counters. + */ +#define AMD_POWER_EVENTSEL_PKG 1 + +/* + * The ratio of compute unit power accumulator sample period to the + * PTSC period. + */ +static unsigned int cpu_pwr_sample_ratio; + +/* Maximum accumulated power of a compute unit. */ +static u64 max_cu_acc_power; + +static struct pmu pmu_class; + +/* + * Accumulated power represents the sum of each compute unit's (CU) power + * consumption. On any core of each CU we read the total accumulated power from + * MSR_F15H_CU_PWR_ACCUMULATOR. cpu_mask represents CPU bit map of all cores + * which are picked to measure the power for the CUs they belong to. + */ +static cpumask_t cpu_mask; + +static void event_update(struct perf_event *event) +{ + struct hw_perf_event *hwc = &event->hw; + u64 prev_pwr_acc, new_pwr_acc, prev_ptsc, new_ptsc; + u64 delta, tdelta; + + prev_pwr_acc = hwc->pwr_acc; + prev_ptsc = hwc->ptsc; + rdmsrl(MSR_F15H_CU_PWR_ACCUMULATOR, new_pwr_acc); + rdmsrl(MSR_F15H_PTSC, new_ptsc); + + /* + * Calculate the CU power consumption over a time period, the unit of + * final value (delta) is micro-Watts. Then add it to the event count. + */ + if (new_pwr_acc < prev_pwr_acc) { + delta = max_cu_acc_power + new_pwr_acc; + delta -= prev_pwr_acc; + } else + delta = new_pwr_acc - prev_pwr_acc; + + delta *= cpu_pwr_sample_ratio * 1000; + tdelta = new_ptsc - prev_ptsc; + + do_div(delta, tdelta); + local64_add(delta, &event->count); +} + +static void __pmu_event_start(struct perf_event *event) +{ + if (WARN_ON_ONCE(!(event->hw.state & PERF_HES_STOPPED))) + return; + + event->hw.state = 0; + + rdmsrl(MSR_F15H_PTSC, event->hw.ptsc); + rdmsrl(MSR_F15H_CU_PWR_ACCUMULATOR, event->hw.pwr_acc); +} + +static void pmu_event_start(struct perf_event *event, int mode) +{ + __pmu_event_start(event); +} + +static void pmu_event_stop(struct perf_event *event, int mode) +{ + struct hw_perf_event *hwc = &event->hw; + + /* Mark event as deactivated and stopped. */ + if (!(hwc->state & PERF_HES_STOPPED)) + hwc->state |= PERF_HES_STOPPED; + + /* Check if software counter update is necessary. */ + if ((mode & PERF_EF_UPDATE) && !(hwc->state & PERF_HES_UPTODATE)) { + /* + * Drain the remaining delta count out of an event + * that we are disabling: + */ + event_update(event); + hwc->state |= PERF_HES_UPTODATE; + } +} + +static int pmu_event_add(struct perf_event *event, int mode) +{ + struct hw_perf_event *hwc = &event->hw; + + hwc->state = PERF_HES_UPTODATE | PERF_HES_STOPPED; + + if (mode & PERF_EF_START) + __pmu_event_start(event); + + return 0; +} + +static void pmu_event_del(struct perf_event *event, int flags) +{ + pmu_event_stop(event, PERF_EF_UPDATE); +} + +static int pmu_event_init(struct perf_event *event) +{ + u64 cfg = event->attr.config & AMD_POWER_EVENT_MASK; + + /* Only look at AMD power events. */ + if (event->attr.type != pmu_class.type) + return -ENOENT; + + /* Unsupported modes and filters. */ + if (event->attr.exclude_user || + event->attr.exclude_kernel || + event->attr.exclude_hv || + event->attr.exclude_idle || + event->attr.exclude_host || + event->attr.exclude_guest || + /* no sampling */ + event->attr.sample_period) + return -EINVAL; + + if (cfg != AMD_POWER_EVENTSEL_PKG) + return -EINVAL; + + return 0; +} + +static void pmu_event_read(struct perf_event *event) +{ + event_update(event); +} + +static ssize_t +get_attr_cpumask(struct device *dev, struct device_attribute *attr, char *buf) +{ + return cpumap_print_to_pagebuf(true, buf, &cpu_mask); +} + +static DEVICE_ATTR(cpumask, S_IRUGO, get_attr_cpumask, NULL); + +static struct attribute *pmu_attrs[] = { + &dev_attr_cpumask.attr, + NULL, +}; + +static struct attribute_group pmu_attr_group = { + .attrs = pmu_attrs, +}; + +/* + * Currently it only supports to report the power of each + * processor/package. + */ +EVENT_ATTR_STR(power-pkg, power_pkg, "event=0x01"); + +EVENT_ATTR_STR(power-pkg.unit, power_pkg_unit, "mWatts"); + +/* Convert the count from micro-Watts to milli-Watts. */ +EVENT_ATTR_STR(power-pkg.scale, power_pkg_scale, "1.000000e-3"); + +static struct attribute *events_attr[] = { + EVENT_PTR(power_pkg), + EVENT_PTR(power_pkg_unit), + EVENT_PTR(power_pkg_scale), + NULL, +}; + +static struct attribute_group pmu_events_group = { + .name = "events", + .attrs = events_attr, +}; + +PMU_FORMAT_ATTR(event, "config:0-7"); + +static struct attribute *formats_attr[] = { + &format_attr_event.attr, + NULL, +}; + +static struct attribute_group pmu_format_group = { + .name = "format", + .attrs = formats_attr, +}; + +static const struct attribute_group *attr_groups[] = { + &pmu_attr_group, + &pmu_format_group, + &pmu_events_group, + NULL, +}; + +static struct pmu pmu_class = { + .attr_groups = attr_groups, + /* system-wide only */ + .task_ctx_nr = perf_invalid_context, + .event_init = pmu_event_init, + .add = pmu_event_add, + .del = pmu_event_del, + .start = pmu_event_start, + .stop = pmu_event_stop, + .read = pmu_event_read, +}; + +static void power_cpu_exit(int cpu) +{ + int target; + + if (!cpumask_test_and_clear_cpu(cpu, &cpu_mask)) + return; + + /* + * Find a new CPU on the same compute unit, if was set in cpumask + * and still some CPUs on compute unit. Then migrate event and + * context to new CPU. + */ + target = cpumask_any_but(topology_sibling_cpumask(cpu), cpu); + if (target < nr_cpumask_bits) { + cpumask_set_cpu(target, &cpu_mask); + perf_pmu_migrate_context(&pmu_class, cpu, target); + } +} + +static void power_cpu_init(int cpu) +{ + int target; + + /* + * 1) If any CPU is set at cpu_mask in the same compute unit, do + * nothing. + * 2) If no CPU is set at cpu_mask in the same compute unit, + * set current STARTING CPU. + * + * Note: if there is a CPU aside of the new one already in the + * sibling mask, then it is also in cpu_mask. + */ + target = cpumask_any_but(topology_sibling_cpumask(cpu), cpu); + if (target >= nr_cpumask_bits) + cpumask_set_cpu(cpu, &cpu_mask); +} + +static int +power_cpu_notifier(struct notifier_block *self, unsigned long action, void *hcpu) +{ + unsigned int cpu = (long)hcpu; + + switch (action & ~CPU_TASKS_FROZEN) { + case CPU_DOWN_FAILED: + case CPU_STARTING: + power_cpu_init(cpu); + break; + case CPU_DOWN_PREPARE: + power_cpu_exit(cpu); + break; + default: + break; + } + + return NOTIFY_OK; +} + +static struct notifier_block power_cpu_notifier_nb = { + .notifier_call = power_cpu_notifier, + .priority = CPU_PRI_PERF, +}; + +static const struct x86_cpu_id cpu_match[] = { + { .vendor = X86_VENDOR_AMD, .family = 0x15 }, + {}, +}; + +static int __init amd_power_pmu_init(void) +{ + int cpu, target, ret; + + if (!x86_match_cpu(cpu_match)) + return 0; + + if (!boot_cpu_has(X86_FEATURE_ACC_POWER)) + return -ENODEV; + + cpu_pwr_sample_ratio = cpuid_ecx(0x80000007); + + if (rdmsrl_safe(MSR_F15H_CU_MAX_PWR_ACCUMULATOR, &max_cu_acc_power)) { + pr_err("Failed to read max compute unit power accumulator MSR\n"); + return -ENODEV; + } + + cpu_notifier_register_begin(); + + /* Choose one online core of each compute unit. */ + for_each_online_cpu(cpu) { + target = cpumask_first(topology_sibling_cpumask(cpu)); + if (!cpumask_test_cpu(target, &cpu_mask)) + cpumask_set_cpu(target, &cpu_mask); + } + + ret = perf_pmu_register(&pmu_class, "power", -1); + if (WARN_ON(ret)) { + pr_warn("AMD Power PMU registration failed\n"); + goto out; + } + + __register_cpu_notifier(&power_cpu_notifier_nb); + + pr_info("AMD Power PMU detected\n"); + +out: + cpu_notifier_register_done(); + + return ret; +} +module_init(amd_power_pmu_init); + +static void __exit amd_power_pmu_exit(void) +{ + cpu_notifier_register_begin(); + __unregister_cpu_notifier(&power_cpu_notifier_nb); + cpu_notifier_register_done(); + + perf_pmu_unregister(&pmu_class); +} +module_exit(amd_power_pmu_exit); + +MODULE_AUTHOR("Huang Rui <ray.huang@amd.com>"); +MODULE_DESCRIPTION("AMD Processor Power Reporting Mechanism"); +MODULE_LICENSE("GPL v2"); diff --git a/arch/x86/events/core.c b/arch/x86/events/core.c index 9b6ad08aa51a..041e442a3e28 100644 --- a/arch/x86/events/core.c +++ b/arch/x86/events/core.c @@ -1602,8 +1602,7 @@ __init struct attribute **merge_attr(struct attribute **a, struct attribute **b) return new; } -ssize_t events_sysfs_show(struct device *dev, struct device_attribute *attr, - char *page) +ssize_t events_sysfs_show(struct device *dev, struct device_attribute *attr, char *page) { struct perf_pmu_events_attr *pmu_attr = \ container_of(attr, struct perf_pmu_events_attr, attr); @@ -1615,6 +1614,7 @@ ssize_t events_sysfs_show(struct device *dev, struct device_attribute *attr, return x86_pmu.events_sysfs_show(page, config); } +EXPORT_SYMBOL_GPL(events_sysfs_show); EVENT_ATTR(cpu-cycles, CPU_CYCLES ); EVENT_ATTR(instructions, INSTRUCTIONS ); diff --git a/arch/x86/events/intel/cqm.c b/arch/x86/events/intel/cqm.c index 93cb412a5579..7b5fd811ef45 100644 --- a/arch/x86/events/intel/cqm.c +++ b/arch/x86/events/intel/cqm.c @@ -13,8 +13,16 @@ #define MSR_IA32_QM_CTR 0x0c8e #define MSR_IA32_QM_EVTSEL 0x0c8d +#define MBM_CNTR_WIDTH 24 +/* + * Guaranteed time in ms as per SDM where MBM counters will not overflow. + */ +#define MBM_CTR_OVERFLOW_TIME 1000 + static u32 cqm_max_rmid = -1; static unsigned int cqm_l3_scale; /* supposedly cacheline size */ +static bool cqm_enabled, mbm_enabled; +unsigned int mbm_socket_max; /** * struct intel_pqr_state - State cache for the PQR MSR @@ -42,8 +50,37 @@ struct intel_pqr_state { * interrupts disabled, which is sufficient for the protection. */ static DEFINE_PER_CPU(struct intel_pqr_state, pqr_state); +static struct hrtimer *mbm_timers; +/** + * struct sample - mbm event's (local or total) data + * @total_bytes #bytes since we began monitoring + * @prev_msr previous value of MSR + */ +struct sample { + u64 total_bytes; + u64 prev_msr; +}; /* + * samples profiled for total memory bandwidth type events + */ +static struct sample *mbm_total; +/* + * samples profiled for local memory bandwidth type events + */ +static struct sample *mbm_local; + +#define pkg_id topology_physical_package_id(smp_processor_id()) +/* + * rmid_2_index returns the index for the rmid in mbm_local/mbm_total array. + * mbm_total[] and mbm_local[] are linearly indexed by socket# * max number of + * rmids per socket, an example is given below + * RMID1 of Socket0: vrmid = 1 + * RMID1 of Socket1: vrmid = 1 * (cqm_max_rmid + 1) + 1 + * RMID1 of Socket2: vrmid = 2 * (cqm_max_rmid + 1) + 1 + */ +#define rmid_2_index(rmid) ((pkg_id * (cqm_max_rmid + 1)) + rmid) +/* * Protects cache_cgroups and cqm_rmid_free_lru and cqm_rmid_limbo_lru. * Also protects event->hw.cqm_rmid * @@ -65,9 +102,13 @@ static cpumask_t cqm_cpumask; #define RMID_VAL_ERROR (1ULL << 63) #define RMID_VAL_UNAVAIL (1ULL << 62) -#define QOS_L3_OCCUP_EVENT_ID (1 << 0) - -#define QOS_EVENT_MASK QOS_L3_OCCUP_EVENT_ID +/* + * Event IDs are used to program IA32_QM_EVTSEL before reading event + * counter from IA32_QM_CTR + */ +#define QOS_L3_OCCUP_EVENT_ID 0x01 +#define QOS_MBM_TOTAL_EVENT_ID 0x02 +#define QOS_MBM_LOCAL_EVENT_ID 0x03 /* * This is central to the rotation algorithm in __intel_cqm_rmid_rotate(). @@ -211,6 +252,21 @@ static void __put_rmid(u32 rmid) list_add_tail(&entry->list, &cqm_rmid_limbo_lru); } +static void cqm_cleanup(void) +{ + int i; + + if (!cqm_rmid_ptrs) + return; + + for (i = 0; i < cqm_max_rmid; i++) + kfree(cqm_rmid_ptrs[i]); + + kfree(cqm_rmid_ptrs); + cqm_rmid_ptrs = NULL; + cqm_enabled = false; +} + static int intel_cqm_setup_rmid_cache(void) { struct cqm_rmid_entry *entry; @@ -218,7 +274,7 @@ static int intel_cqm_setup_rmid_cache(void) int r = 0; nr_rmids = cqm_max_rmid + 1; - cqm_rmid_ptrs = kmalloc(sizeof(struct cqm_rmid_entry *) * + cqm_rmid_ptrs = kzalloc(sizeof(struct cqm_rmid_entry *) * nr_rmids, GFP_KERNEL); if (!cqm_rmid_ptrs) return -ENOMEM; @@ -249,11 +305,9 @@ static int intel_cqm_setup_rmid_cache(void) mutex_unlock(&cache_mutex); return 0; -fail: - while (r--) - kfree(cqm_rmid_ptrs[r]); - kfree(cqm_rmid_ptrs); +fail: + cqm_cleanup(); return -ENOMEM; } @@ -281,9 +335,13 @@ static bool __match_event(struct perf_event *a, struct perf_event *b) /* * Events that target same task are placed into the same cache group. + * Mark it as a multi event group, so that we update ->count + * for every event rather than just the group leader later. */ - if (a->hw.target == b->hw.target) + if (a->hw.target == b->hw.target) { + b->hw.is_group_event = true; return true; + } /* * Are we an inherited event? @@ -392,10 +450,26 @@ static bool __conflict_event(struct perf_event *a, struct perf_event *b) struct rmid_read { u32 rmid; + u32 evt_type; atomic64_t value; }; static void __intel_cqm_event_count(void *info); +static void init_mbm_sample(u32 rmid, u32 evt_type); +static void __intel_mbm_event_count(void *info); + +static bool is_mbm_event(int e) +{ + return (e >= QOS_MBM_TOTAL_EVENT_ID && e <= QOS_MBM_LOCAL_EVENT_ID); +} + +static void cqm_mask_call(struct rmid_read *rr) +{ + if (is_mbm_event(rr->evt_type)) + on_each_cpu_mask(&cqm_cpumask, __intel_mbm_event_count, rr, 1); + else + on_each_cpu_mask(&cqm_cpumask, __intel_cqm_event_count, rr, 1); +} /* * Exchange the RMID of a group of events. @@ -413,12 +487,12 @@ static u32 intel_cqm_xchg_rmid(struct perf_event *group, u32 rmid) */ if (__rmid_valid(old_rmid) && !__rmid_valid(rmid)) { struct rmid_read rr = { - .value = ATOMIC64_INIT(0), .rmid = old_rmid, + .evt_type = group->attr.config, + .value = ATOMIC64_INIT(0), }; - on_each_cpu_mask(&cqm_cpumask, __intel_cqm_event_count, - &rr, 1); + cqm_mask_call(&rr); local64_set(&group->count, atomic64_read(&rr.value)); } @@ -430,6 +504,22 @@ static u32 intel_cqm_xchg_rmid(struct perf_event *group, u32 rmid) raw_spin_unlock_irq(&cache_lock); + /* + * If the allocation is for mbm, init the mbm stats. + * Need to check if each event in the group is mbm event + * because there could be multiple type of events in the same group. + */ + if (__rmid_valid(rmid)) { + event = group; + if (is_mbm_event(event->attr.config)) + init_mbm_sample(rmid, event->attr.config); + + list_for_each_entry(event, head, hw.cqm_group_entry) { + if (is_mbm_event(event->attr.config)) + init_mbm_sample(rmid, event->attr.config); + } + } + return old_rmid; } @@ -837,6 +927,72 @@ static void intel_cqm_rmid_rotate(struct work_struct *work) schedule_delayed_work(&intel_cqm_rmid_work, delay); } +static u64 update_sample(unsigned int rmid, u32 evt_type, int first) +{ + struct sample *mbm_current; + u32 vrmid = rmid_2_index(rmid); + u64 val, bytes, shift; + u32 eventid; + + if (evt_type == QOS_MBM_LOCAL_EVENT_ID) { + mbm_current = &mbm_local[vrmid]; + eventid = QOS_MBM_LOCAL_EVENT_ID; + } else { + mbm_current = &mbm_total[vrmid]; + eventid = QOS_MBM_TOTAL_EVENT_ID; + } + + wrmsr(MSR_IA32_QM_EVTSEL, eventid, rmid); + rdmsrl(MSR_IA32_QM_CTR, val); + if (val & (RMID_VAL_ERROR | RMID_VAL_UNAVAIL)) + return mbm_current->total_bytes; + + if (first) { + mbm_current->prev_msr = val; + mbm_current->total_bytes = 0; + return mbm_current->total_bytes; + } + + /* + * The h/w guarantees that counters will not overflow + * so long as we poll them at least once per second. + */ + shift = 64 - MBM_CNTR_WIDTH; + bytes = (val << shift) - (mbm_current->prev_msr << shift); + bytes >>= shift; + + bytes *= cqm_l3_scale; + + mbm_current->total_bytes += bytes; + mbm_current->prev_msr = val; + + return mbm_current->total_bytes; +} + +static u64 rmid_read_mbm(unsigned int rmid, u32 evt_type) +{ + return update_sample(rmid, evt_type, 0); +} + +static void __intel_mbm_event_init(void *info) +{ + struct rmid_read *rr = info; + + update_sample(rr->rmid, rr->evt_type, 1); +} + +static void init_mbm_sample(u32 rmid, u32 evt_type) +{ + struct rmid_read rr = { + .rmid = rmid, + .evt_type = evt_type, + .value = ATOMIC64_INIT(0), + }; + + /* on each socket, init sample */ + on_each_cpu_mask(&cqm_cpumask, __intel_mbm_event_init, &rr, 1); +} + /* * Find a group and setup RMID. * @@ -849,6 +1005,7 @@ static void intel_cqm_setup_event(struct perf_event *event, bool conflict = false; u32 rmid; + event->hw.is_group_event = false; list_for_each_entry(iter, &cache_groups, hw.cqm_groups_entry) { rmid = iter->hw.cqm_rmid; @@ -856,6 +1013,8 @@ static void intel_cqm_setup_event(struct perf_event *event, /* All tasks in a group share an RMID */ event->hw.cqm_rmid = rmid; *group = iter; + if (is_mbm_event(event->attr.config) && __rmid_valid(rmid)) + init_mbm_sample(rmid, event->attr.config); return; } @@ -872,6 +1031,9 @@ static void intel_cqm_setup_event(struct perf_event *event, else rmid = __get_rmid(); + if (is_mbm_event(event->attr.config) && __rmid_valid(rmid)) + init_mbm_sample(rmid, event->attr.config); + event->hw.cqm_rmid = rmid; } @@ -893,7 +1055,10 @@ static void intel_cqm_event_read(struct perf_event *event) if (!__rmid_valid(rmid)) goto out; - val = __rmid_read(rmid); + if (is_mbm_event(event->attr.config)) + val = rmid_read_mbm(rmid, event->attr.config); + else + val = __rmid_read(rmid); /* * Ignore this reading on error states and do not update the value. @@ -924,10 +1089,100 @@ static inline bool cqm_group_leader(struct perf_event *event) return !list_empty(&event->hw.cqm_groups_entry); } +static void __intel_mbm_event_count(void *info) +{ + struct rmid_read *rr = info; + u64 val; + + val = rmid_read_mbm(rr->rmid, rr->evt_type); + if (val & (RMID_VAL_ERROR | RMID_VAL_UNAVAIL)) + return; + atomic64_add(val, &rr->value); +} + +static enum hrtimer_restart mbm_hrtimer_handle(struct hrtimer *hrtimer) +{ + struct perf_event *iter, *iter1; + int ret = HRTIMER_RESTART; + struct list_head *head; + unsigned long flags; + u32 grp_rmid; + + /* + * Need to cache_lock as the timer Event Select MSR reads + * can race with the mbm/cqm count() and mbm_init() reads. + */ + raw_spin_lock_irqsave(&cache_lock, flags); + + if (list_empty(&cache_groups)) { + ret = HRTIMER_NORESTART; + goto out; + } + + list_for_each_entry(iter, &cache_groups, hw.cqm_groups_entry) { + grp_rmid = iter->hw.cqm_rmid; + if (!__rmid_valid(grp_rmid)) + continue; + if (is_mbm_event(iter->attr.config)) + update_sample(grp_rmid, iter->attr.config, 0); + + head = &iter->hw.cqm_group_entry; + if (list_empty(head)) + continue; + list_for_each_entry(iter1, head, hw.cqm_group_entry) { + if (!iter1->hw.is_group_event) + break; + if (is_mbm_event(iter1->attr.config)) + update_sample(iter1->hw.cqm_rmid, + iter1->attr.config, 0); + } + } + + hrtimer_forward_now(hrtimer, ms_to_ktime(MBM_CTR_OVERFLOW_TIME)); +out: + raw_spin_unlock_irqrestore(&cache_lock, flags); + + return ret; +} + +static void __mbm_start_timer(void *info) +{ + hrtimer_start(&mbm_timers[pkg_id], ms_to_ktime(MBM_CTR_OVERFLOW_TIME), + HRTIMER_MODE_REL_PINNED); +} + +static void __mbm_stop_timer(void *info) +{ + hrtimer_cancel(&mbm_timers[pkg_id]); +} + +static void mbm_start_timers(void) +{ + on_each_cpu_mask(&cqm_cpumask, __mbm_start_timer, NULL, 1); +} + +static void mbm_stop_timers(void) +{ + on_each_cpu_mask(&cqm_cpumask, __mbm_stop_timer, NULL, 1); +} + +static void mbm_hrtimer_init(void) +{ + struct hrtimer *hr; + int i; + + for (i = 0; i < mbm_socket_max; i++) { + hr = &mbm_timers[i]; + hrtimer_init(hr, CLOCK_MONOTONIC, HRTIMER_MODE_REL); + hr->function = mbm_hrtimer_handle; + } +} + static u64 intel_cqm_event_count(struct perf_event *event) { unsigned long flags; struct rmid_read rr = { + .evt_type = event->attr.config, .value = ATOMIC64_INIT(0), }; @@ -940,7 +1195,9 @@ static u64 intel_cqm_event_count(struct perf_event *event) return __perf_event_count(event); /* - * Only the group leader gets to report values. This stops us + * Only the group leader gets to report values except in case of + * multiple events in the same group, we still need to read the + * other events.This stops us * reporting duplicate values to userspace, and gives us a clear * rule for which task gets to report the values. * @@ -948,7 +1205,7 @@ static u64 intel_cqm_event_count(struct perf_event *event) * specific packages - we forfeit that ability when we create * task events. */ - if (!cqm_group_leader(event)) + if (!cqm_group_leader(event) && !event->hw.is_group_event) return 0; /* @@ -975,7 +1232,7 @@ static u64 intel_cqm_event_count(struct perf_event *event) if (!__rmid_valid(rr.rmid)) goto out; - on_each_cpu_mask(&cqm_cpumask, __intel_cqm_event_count, &rr, 1); + cqm_mask_call(&rr); raw_spin_lock_irqsave(&cache_lock, flags); if (event->hw.cqm_rmid == rr.rmid) @@ -1046,8 +1303,14 @@ static int intel_cqm_event_add(struct perf_event *event, int mode) static void intel_cqm_event_destroy(struct perf_event *event) { struct perf_event *group_other = NULL; + unsigned long flags; mutex_lock(&cache_mutex); + /* + * Hold the cache_lock as mbm timer handlers could be + * scanning the list of events. + */ + raw_spin_lock_irqsave(&cache_lock, flags); /* * If there's another event in this group... @@ -1079,6 +1342,14 @@ static void intel_cqm_event_destroy(struct perf_event *event) } } + raw_spin_unlock_irqrestore(&cache_lock, flags); + + /* + * Stop the mbm overflow timers when the last event is destroyed. + */ + if (mbm_enabled && list_empty(&cache_groups)) + mbm_stop_timers(); + mutex_unlock(&cache_mutex); } @@ -1086,11 +1357,13 @@ static int intel_cqm_event_init(struct perf_event *event) { struct perf_event *group = NULL; bool rotate = false; + unsigned long flags; if (event->attr.type != intel_cqm_pmu.type) return -ENOENT; - if (event->attr.config & ~QOS_EVENT_MASK) + if ((event->attr.config < QOS_L3_OCCUP_EVENT_ID) || + (event->attr.config > QOS_MBM_LOCAL_EVENT_ID)) return -EINVAL; /* unsupported modes and filters */ @@ -1110,9 +1383,21 @@ static int intel_cqm_event_init(struct perf_event *event) mutex_lock(&cache_mutex); + /* + * Start the mbm overflow timers when the first event is created. + */ + if (mbm_enabled && list_empty(&cache_groups)) + mbm_start_timers(); + /* Will also set rmid */ intel_cqm_setup_event(event, &group); + /* + * Hold the cache_lock as mbm timer handlers be + * scanning the list of events. + */ + raw_spin_lock_irqsave(&cache_lock, flags); + if (group) { list_add_tail(&event->hw.cqm_group_entry, &group->hw.cqm_group_entry); @@ -1131,6 +1416,7 @@ static int intel_cqm_event_init(struct perf_event *event) rotate = true; } + raw_spin_unlock_irqrestore(&cache_lock, flags); mutex_unlock(&cache_mutex); if (rotate) @@ -1145,6 +1431,16 @@ EVENT_ATTR_STR(llc_occupancy.unit, intel_cqm_llc_unit, "Bytes"); EVENT_ATTR_STR(llc_occupancy.scale, intel_cqm_llc_scale, NULL); EVENT_ATTR_STR(llc_occupancy.snapshot, intel_cqm_llc_snapshot, "1"); +EVENT_ATTR_STR(total_bytes, intel_cqm_total_bytes, "event=0x02"); +EVENT_ATTR_STR(total_bytes.per-pkg, intel_cqm_total_bytes_pkg, "1"); +EVENT_ATTR_STR(total_bytes.unit, intel_cqm_total_bytes_unit, "MB"); +EVENT_ATTR_STR(total_bytes.scale, intel_cqm_total_bytes_scale, "1e-6"); + +EVENT_ATTR_STR(local_bytes, intel_cqm_local_bytes, "event=0x03"); +EVENT_ATTR_STR(local_bytes.per-pkg, intel_cqm_local_bytes_pkg, "1"); +EVENT_ATTR_STR(local_bytes.unit, intel_cqm_local_bytes_unit, "MB"); +EVENT_ATTR_STR(local_bytes.scale, intel_cqm_local_bytes_scale, "1e-6"); + static struct attribute *intel_cqm_events_attr[] = { EVENT_PTR(intel_cqm_llc), EVENT_PTR(intel_cqm_llc_pkg), @@ -1154,9 +1450,38 @@ static struct attribute *intel_cqm_events_attr[] = { NULL, }; +static struct attribute *intel_mbm_events_attr[] = { + EVENT_PTR(intel_cqm_total_bytes), + EVENT_PTR(intel_cqm_local_bytes), + EVENT_PTR(intel_cqm_total_bytes_pkg), + EVENT_PTR(intel_cqm_local_bytes_pkg), + EVENT_PTR(intel_cqm_total_bytes_unit), + EVENT_PTR(intel_cqm_local_bytes_unit), + EVENT_PTR(intel_cqm_total_bytes_scale), + EVENT_PTR(intel_cqm_local_bytes_scale), + NULL, +}; + +static struct attribute *intel_cmt_mbm_events_attr[] = { + EVENT_PTR(intel_cqm_llc), + EVENT_PTR(intel_cqm_total_bytes), + EVENT_PTR(intel_cqm_local_bytes), + EVENT_PTR(intel_cqm_llc_pkg), + EVENT_PTR(intel_cqm_total_bytes_pkg), + EVENT_PTR(intel_cqm_local_bytes_pkg), + EVENT_PTR(intel_cqm_llc_unit), + EVENT_PTR(intel_cqm_total_bytes_unit), + EVENT_PTR(intel_cqm_local_bytes_unit), + EVENT_PTR(intel_cqm_llc_scale), + EVENT_PTR(intel_cqm_total_bytes_scale), + EVENT_PTR(intel_cqm_local_bytes_scale), + EVENT_PTR(intel_cqm_llc_snapshot), + NULL, +}; + static struct attribute_group intel_cqm_events_group = { .name = "events", - .attrs = intel_cqm_events_attr, + .attrs = NULL, }; PMU_FORMAT_ATTR(event, "config:0-7"); @@ -1303,12 +1628,70 @@ static const struct x86_cpu_id intel_cqm_match[] = { {} }; +static void mbm_cleanup(void) +{ + if (!mbm_enabled) + return; + + kfree(mbm_local); + kfree(mbm_total); + mbm_enabled = false; +} + +static const struct x86_cpu_id intel_mbm_local_match[] = { + { .vendor = X86_VENDOR_INTEL, .feature = X86_FEATURE_CQM_MBM_LOCAL }, + {} +}; + +static const struct x86_cpu_id intel_mbm_total_match[] = { + { .vendor = X86_VENDOR_INTEL, .feature = X86_FEATURE_CQM_MBM_TOTAL }, + {} +}; + +static int intel_mbm_init(void) +{ + int ret = 0, array_size, maxid = cqm_max_rmid + 1; + + mbm_socket_max = topology_max_packages(); + array_size = sizeof(struct sample) * maxid * mbm_socket_max; + mbm_local = kmalloc(array_size, GFP_KERNEL); + if (!mbm_local) + return -ENOMEM; + + mbm_total = kmalloc(array_size, GFP_KERNEL); + if (!mbm_total) { + ret = -ENOMEM; + goto out; + } + + array_size = sizeof(struct hrtimer) * mbm_socket_max; + mbm_timers = kmalloc(array_size, GFP_KERNEL); + if (!mbm_timers) { + ret = -ENOMEM; + goto out; + } + mbm_hrtimer_init(); + +out: + if (ret) + mbm_cleanup(); + + return ret; +} + static int __init intel_cqm_init(void) { - char *str, scale[20]; + char *str = NULL, scale[20]; int i, cpu, ret; - if (!x86_match_cpu(intel_cqm_match)) + if (x86_match_cpu(intel_cqm_match)) + cqm_enabled = true; + + if (x86_match_cpu(intel_mbm_local_match) && + x86_match_cpu(intel_mbm_total_match)) + mbm_enabled = true; + + if (!cqm_enabled && !mbm_enabled) return -ENODEV; cqm_l3_scale = boot_cpu_data.x86_cache_occ_scale; @@ -1365,16 +1748,41 @@ static int __init intel_cqm_init(void) cqm_pick_event_reader(i); } - __perf_cpu_notifier(intel_cqm_cpu_notifier); + if (mbm_enabled) + ret = intel_mbm_init(); + if (ret && !cqm_enabled) + goto out; + + if (cqm_enabled && mbm_enabled) + intel_cqm_events_group.attrs = intel_cmt_mbm_events_attr; + else if (!cqm_enabled && mbm_enabled) + intel_cqm_events_group.attrs = intel_mbm_events_attr; + else if (cqm_enabled && !mbm_enabled) + intel_cqm_events_group.attrs = intel_cqm_events_attr; ret = perf_pmu_register(&intel_cqm_pmu, "intel_cqm", -1); - if (ret) + if (ret) { pr_err("Intel CQM perf registration failed: %d\n", ret); - else + goto out; + } + + if (cqm_enabled) pr_info("Intel CQM monitoring enabled\n"); + if (mbm_enabled) + pr_info("Intel MBM enabled\n"); + /* + * Register the hot cpu notifier once we are sure cqm + * is enabled to avoid notifier leak. + */ + __perf_cpu_notifier(intel_cqm_cpu_notifier); out: cpu_notifier_register_done(); + if (ret) { + kfree(str); + cqm_cleanup(); + mbm_cleanup(); + } return ret; } diff --git a/arch/x86/events/intel/ds.c b/arch/x86/events/intel/ds.c index ce7211a07c0b..8584b90d8e0b 100644 --- a/arch/x86/events/intel/ds.c +++ b/arch/x86/events/intel/ds.c @@ -570,11 +570,12 @@ int intel_pmu_drain_bts_buffer(void) * We will overwrite the from and to address before we output * the sample. */ + rcu_read_lock(); perf_prepare_sample(&header, &data, event, ®s); if (perf_output_begin(&handle, event, header.size * (top - base - skip))) - return 1; + goto unlock; for (at = base; at < top; at++) { /* Filter out any records that contain kernel addresses. */ @@ -593,6 +594,8 @@ int intel_pmu_drain_bts_buffer(void) /* There's new data available. */ event->hw.interrupts++; event->pending_kill = POLL_IN; +unlock: + rcu_read_unlock(); return 1; } diff --git a/arch/x86/events/intel/rapl.c b/arch/x86/events/intel/rapl.c index b834a3f55a01..70c93f9b03ac 100644 --- a/arch/x86/events/intel/rapl.c +++ b/arch/x86/events/intel/rapl.c @@ -711,6 +711,7 @@ static int __init rapl_pmu_init(void) rapl_pmu_events_group.attrs = rapl_events_cln_attr; break; case 63: /* Haswell-Server */ + case 79: /* Broadwell-Server */ apply_quirk = true; rapl_cntr_mask = RAPL_IDX_SRV; rapl_pmu_events_group.attrs = rapl_events_srv_attr; @@ -718,6 +719,7 @@ static int __init rapl_pmu_init(void) case 60: /* Haswell */ case 69: /* Haswell-Celeron */ case 61: /* Broadwell */ + case 71: /* Broadwell-H */ rapl_cntr_mask = RAPL_IDX_HSW; rapl_pmu_events_group.attrs = rapl_events_hsw_attr; break; diff --git a/arch/x86/events/intel/uncore_snbep.c b/arch/x86/events/intel/uncore_snbep.c index 93f6bd9bf761..ab2bcaaebe38 100644 --- a/arch/x86/events/intel/uncore_snbep.c +++ b/arch/x86/events/intel/uncore_snbep.c @@ -46,7 +46,6 @@ (SNBEP_PMON_CTL_EV_SEL_MASK | \ SNBEP_PCU_MSR_PMON_CTL_OCC_SEL_MASK | \ SNBEP_PMON_CTL_EDGE_DET | \ - SNBEP_PMON_CTL_EV_SEL_EXT | \ SNBEP_PMON_CTL_INVERT | \ SNBEP_PCU_MSR_PMON_CTL_TRESH_MASK | \ SNBEP_PCU_MSR_PMON_CTL_OCC_INVERT | \ @@ -148,7 +147,6 @@ /* IVBEP PCU */ #define IVBEP_PCU_MSR_PMON_RAW_EVENT_MASK \ (SNBEP_PMON_CTL_EV_SEL_MASK | \ - SNBEP_PMON_CTL_EV_SEL_EXT | \ SNBEP_PCU_MSR_PMON_CTL_OCC_SEL_MASK | \ SNBEP_PMON_CTL_EDGE_DET | \ SNBEP_PCU_MSR_PMON_CTL_TRESH_MASK | \ @@ -258,7 +256,6 @@ SNBEP_PCU_MSR_PMON_CTL_OCC_SEL_MASK | \ SNBEP_PMON_CTL_EDGE_DET | \ SNBEP_CBO_PMON_CTL_TID_EN | \ - SNBEP_PMON_CTL_EV_SEL_EXT | \ SNBEP_PMON_CTL_INVERT | \ KNL_PCU_MSR_PMON_CTL_TRESH_MASK | \ SNBEP_PCU_MSR_PMON_CTL_OCC_INVERT | \ @@ -472,7 +469,7 @@ static struct attribute *snbep_uncore_cbox_formats_attr[] = { }; static struct attribute *snbep_uncore_pcu_formats_attr[] = { - &format_attr_event_ext.attr, + &format_attr_event.attr, &format_attr_occ_sel.attr, &format_attr_edge.attr, &format_attr_inv.attr, @@ -1313,7 +1310,7 @@ static struct attribute *ivbep_uncore_cbox_formats_attr[] = { }; static struct attribute *ivbep_uncore_pcu_formats_attr[] = { - &format_attr_event_ext.attr, + &format_attr_event.attr, &format_attr_occ_sel.attr, &format_attr_edge.attr, &format_attr_thresh5.attr, diff --git a/arch/x86/include/asm/cpufeatures.h b/arch/x86/include/asm/cpufeatures.h index 3d1a84383162..8f9afefd2dc5 100644 --- a/arch/x86/include/asm/cpufeatures.h +++ b/arch/x86/include/asm/cpufeatures.h @@ -94,7 +94,7 @@ #define X86_FEATURE_REP_GOOD ( 3*32+16) /* rep microcode works well */ #define X86_FEATURE_MFENCE_RDTSC ( 3*32+17) /* "" Mfence synchronizes RDTSC */ #define X86_FEATURE_LFENCE_RDTSC ( 3*32+18) /* "" Lfence synchronizes RDTSC */ -/* free, was #define X86_FEATURE_11AP ( 3*32+19) * "" Bad local APIC aka 11AP */ +#define X86_FEATURE_ACC_POWER ( 3*32+19) /* AMD Accumulated Power Mechanism */ #define X86_FEATURE_NOPL ( 3*32+20) /* The NOPL (0F 1F) instructions */ #define X86_FEATURE_ALWAYS ( 3*32+21) /* "" Always-present feature */ #define X86_FEATURE_XTOPOLOGY ( 3*32+22) /* cpu topology enum extensions */ @@ -245,6 +245,8 @@ /* Intel-defined CPU QoS Sub-leaf, CPUID level 0x0000000F:1 (edx), word 12 */ #define X86_FEATURE_CQM_OCCUP_LLC (12*32+ 0) /* LLC occupancy monitoring if 1 */ +#define X86_FEATURE_CQM_MBM_TOTAL (12*32+ 1) /* LLC Total MBM monitoring */ +#define X86_FEATURE_CQM_MBM_LOCAL (12*32+ 2) /* LLC Local MBM monitoring */ /* AMD-defined CPU features, CPUID level 0x80000008 (ebx), word 13 */ #define X86_FEATURE_CLZERO (13*32+0) /* CLZERO instruction */ diff --git a/arch/x86/kernel/cpu/amd.c b/arch/x86/kernel/cpu/amd.c index e51021c9207a..6e47e3a916f1 100644 --- a/arch/x86/kernel/cpu/amd.c +++ b/arch/x86/kernel/cpu/amd.c @@ -309,7 +309,6 @@ static void amd_get_topology(struct cpuinfo_x86 *c) u32 eax, ebx, ecx, edx; cpuid(0x8000001e, &eax, &ebx, &ecx, &edx); - nodes_per_socket = ((ecx >> 8) & 7) + 1; node_id = ecx & 7; /* get compute unit information */ @@ -320,7 +319,6 @@ static void amd_get_topology(struct cpuinfo_x86 *c) u64 value; rdmsrl(MSR_FAM10H_NODE_ID, value); - nodes_per_socket = ((value >> 3) & 7) + 1; node_id = value & 7; } else return; @@ -522,6 +520,18 @@ static void bsp_init_amd(struct cpuinfo_x86 *c) if (cpu_has(c, X86_FEATURE_MWAITX)) use_mwaitx_delay(); + + if (boot_cpu_has(X86_FEATURE_TOPOEXT)) { + u32 ecx; + + ecx = cpuid_ecx(0x8000001e); + nodes_per_socket = ((ecx >> 8) & 7) + 1; + } else if (boot_cpu_has(X86_FEATURE_NODEID_MSR)) { + u64 value; + + rdmsrl(MSR_FAM10H_NODE_ID, value); + nodes_per_socket = ((value >> 3) & 7) + 1; + } } static void early_init_amd(struct cpuinfo_x86 *c) @@ -539,6 +549,10 @@ static void early_init_amd(struct cpuinfo_x86 *c) set_sched_clock_stable(); } + /* Bit 12 of 8000_0007 edx is accumulated power mechanism. */ + if (c->x86_power & BIT(12)) + set_cpu_cap(c, X86_FEATURE_ACC_POWER); + #ifdef CONFIG_X86_64 set_cpu_cap(c, X86_FEATURE_SYSCALL32); #else diff --git a/arch/x86/kernel/cpu/common.c b/arch/x86/kernel/cpu/common.c index 9988caf42161..8394b3d1f94f 100644 --- a/arch/x86/kernel/cpu/common.c +++ b/arch/x86/kernel/cpu/common.c @@ -692,7 +692,9 @@ void get_cpu_cap(struct cpuinfo_x86 *c) cpuid_count(0x0000000F, 1, &eax, &ebx, &ecx, &edx); c->x86_capability[CPUID_F_1_EDX] = edx; - if (cpu_has(c, X86_FEATURE_CQM_OCCUP_LLC)) { + if ((cpu_has(c, X86_FEATURE_CQM_OCCUP_LLC)) || + ((cpu_has(c, X86_FEATURE_CQM_MBM_TOTAL)) || + (cpu_has(c, X86_FEATURE_CQM_MBM_LOCAL)))) { c->x86_cache_max_rmid = ecx; c->x86_cache_occ_scale = ebx; } |